Compare commits

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Author SHA1 Message Date
michele bb293414d7 Fix CI: align protocol tests + package version with packed catalog.
Update SGMII skeleton test for Cisco NUMERIC 1.25 Gbaud; expect cited
USB 90 Ω in report/catalog; sync periscope-web to changelog 2.87.3.
2026-09-23 08:38:05 +02:00
michele 7fd03607ea Soft-bump 2.87.3: HubAudio AF verify + USB 90 Ω regression.
HubAudio's last exam was still on 2.87.0 while live carried 2.87.2 AF
fixes. Cue a re-run and lock USB_D+ skipping PE-AF-002 in favour of the
English protocol 90 Ω cert line.
2026-09-23 08:29:10 +02:00
michele 78a7da2dbf Fix HubAudio PE-AF-002 noise: MDIO≠MDI, RD≡RX, USB/RMII cert (2.87.2).
Exclude ETH_MDIO/MDC from IEEE MDI 100 Ω. Deduplicate RD+/RX and TD+/TX
pair aliases to one cert per channel; inherit LAN8720A 10/100 when the
magnetics-side nets lack the PHY. USB D+/D− skip AF tr/f (90 Ω cert owns
them); RMII stays on the English PE-AF-003 AN-133 line.
2026-09-23 08:05:24 +02:00
michele 5c87d706c2 Remove coffee/email notice from progress UI (2.87.1).
Replace the running-pipeline coffee banner and email promise with a
neutral status line so the notice never shows again.
2026-09-23 07:46:13 +02:00
michele 299ffaf396 Document GitHub as primary source of truth for Periscope.
Gitea remains a secondary mirror. No version bump — README-only.
2026-09-23 07:40:30 +02:00
michele 09a7b85770 Note README rewrite in 2.87.0 changelog. 2026-09-23 07:33:43 +02:00
michele 065fb508a4 Rewrite README for 2.87.0 as Periscope product copy.
Describe PCB analysis, protocol cert (USB/Ethernet/MAC–PHY), findings
tree, top-bar UI, and Markdown export. Gitea is the source of truth.
No predecessor-product mentions.
2026-09-23 07:33:31 +02:00
michele 7ad5a692a7 Merge MAC–PHY pack into integrate; soft-bump live to 2.87.0.
Resolves changelog conflict: one coherent release above 2.86.0 covering
iPad top-bar / Markdown export, MAC–PHY catalog pack, USB/RMII cert lines,
and not_reviewed fix. Cert branch content already present via identical
patch on mac-phy (627db2e5359729).
2026-09-23 07:26:15 +02:00
michele 085273e356 Merge iPad top-bar / Save as MD (2.85.0 UI). 2026-09-23 07:25:27 +02:00
michele 35cbc7ffd5 Pack MAC–PHY bus specs (AN-133, OPEN RGMII, SGMII) and fix fake RMII cert (2.86.0).
Recognition alone is not certified; PE-AF-003 requires a cited calculable check.
RJ45/MDI 100 Ω stays separate from RMII/MII/RGMII/SGMII.
2026-09-23 07:04:57 +02:00
michele 5b2d3cd613 iPad top-bar shell, light theme default, Markdown report export (2.85.0).
Replace the left sidebar with a thin top toolbar and tab/sheet navigation.
Light is default; dark mode lives in Settings and persists. Report export
is Save as Markdown (.md) with the findings-tree hierarchy — not Excel.
2026-09-23 07:03:16 +02:00
michele 627db2eba6 USB/RMII cert lines and not_reviewed count fix (2.85.0).
USB D+/D− is one English certified/not-certified line vs the packed 90 Ω
cite. RMII ETH_RXD/TXD/TXEN is identified as PHY–MAC, not RJ45 100 Ω.
J2 missing-field L1/L2/L3 noise is silent. PCB AI failures go to
review_errors; not_reviewed count matches one designator per row.
2026-09-23 06:51:47 +02:00
michele 5ab69a835c English findings-tree labels and PCB stage timings (2.84.0).
Certifications, Protocols, domains, empty states, and the protocol empty message are English. Error / Warning / Info stay. Sidebar version is stamped 2.84.0. A PCB exam records extract, pcb_checks, protocol, af, and total seconds.
2026-09-22 22:15:23 +02:00
michele f79c722e68 Match exposed pads by land, cite ESD, follow CC to Rd (2.84.0).
PE-BOM-011 treats EP/EPAD/THERMAL PAD and the footprint exposed land as one pad when both sides have one. PE-ESD-001 quotes a datasheet only with part and section, and does not warn on a 3V3 jack rail, uncitable VBUS, or optical S/PDIF. CC Rd is the packed 5.1 kΩ on the Type-C CC pin net. Ethernet MDI pair Z is PASS, FAIL, or ERROR against the cited 10/100 or gigabit clause.
2026-09-22 21:56:09 +02:00
michele 7e872cfbc3 Drop .ts suffixes from frontend imports for Next typecheck.
Production next build rejects allowImportingTsExtensions-style paths.
2026-09-22 18:54:25 +02:00
michele 3046c4aeee Fix findings-tree TS: do not pass findings twice.
Spread FindingsTreeProps first, then override protocol findings for CertificationsBranch so Next production typecheck can build 2.83.0.
2026-09-22 18:53:13 +02:00
michele b32d581d27 Merge protocol-cert-m0 (vSafe UNKNOWN 2.83) into ui-apple-shell.
Keep Apple shell + findings tree; include USB-C vSafe UNKNOWN from catalog (no invented volts). Changelog 2.83.0 covers both.
2026-09-22 18:49:52 +02:00
michele d5fff7c6dd Apple-like UI shell: findings tree and HDMI 1.4 UNKNOWN.
Keep Error/Warning/Info folders with + disclosure, then domains/rules,
then Certificazioni/Protocolli. FAIL stays first. HDMI 1.4 TMDS Zdiff
renders UNKNOWN — catalog JSON unchanged.
2026-09-22 18:41:20 +02:00
michele 29e1a3033d Leave USB-C vSafe UNKNOWN; AF zip has no USB-IF PD (2.83.0).
Alta Frequenza / af-allegati only hold TI SI (SNLA027B, SDAA499), which do not state vSafe5V/vSafe0V. CabCon R2.5 §1.6 defers volts to USB PD. HDMI 1.4 TMDS stays UNKNOWN.
2026-09-22 18:38:33 +02:00
michele bb83f63114 HDMI 2.0+ TI layout uses source_type VENDOR (2.82.0).
Add VENDOR to SourceType. HDMI 2.0/FRL fill TMDS1204 PCB numbers as VENDOR RECOMMENDED; TMDS1204-specific skew/vias/data_rate/SIGDET stay PHY_DEPENDENT. HDMI 1.4 TMDS remains UNKNOWN. Not HDMI Forum STANDARD.
2026-09-22 18:25:26 +02:00
michele 3c0b3e14dc Archive protocol PDFs on disk; HDMI 2.0/FRL TI layout as VENDOR (2.81.0).
INDEX.md lists cites. PDFs gitignored. HDMI 1.4 TMDS Zdiff stays UNKNOWN. pcbsync not packed.
2026-09-22 18:18:03 +02:00
michele 1455e974ac Add TI TMDS1204 HDMI layout as VENDOR/PHY only (2.80.0).
Sink/source ZPCB, skew, length, vias from SLLSF57A Tables 8-6/8-2. Generic hdmi-* TMDS Zdiff stays UNKNOWN. SLLA633 is SIGDET only.
2026-09-22 18:12:23 +02:00
michele 25aa608052 Fill HDMI CEC electrical from HDMI Specification 1.3 (2.79.0).
27 kΩ pull-up, VOL/VOH, 200 pF device / 700 pF cable, 5 Ω interconnect. TMDS/FRL Zdiff stays UNKNOWN.
2026-09-22 18:07:52 +02:00
michele d32af5627a Fill 1000BASE-T from IEEE 802.3-2012 Section Three Clause 40 (2.78.0).
Cable 100 Ω / 100 m / 570 ns / 50 ns skew stay CABLE. MDI 16 dB and 0.67 V are PHY. L2 PCB Zdiff UNKNOWN. 1000BASE-X 1000 Mb/s from Clause 36.
2026-09-22 18:03:44 +02:00
michele 8a93ffc1c5 Fill 10BASE-T numbers from IEEE 802.3-2015 Section One Clause 14 (2.77.0).
Cable 100 Ω / 100 m / 11.5 dB stay CABLE. L2 PCB Zdiff UNKNOWN. 1000BASE-T not in this volume.
2026-09-22 18:00:10 +02:00
michele 421f659054 Fill Type-C VBUS and CC holes from CabCon R2.5 and R2.0 (2.76.0).
R2.5 keeps Rp/Rd/Ra, charger 4.75/4.0 V, zOPEN, tCCDebounce, tVBUSON.
R2.0 August 2019 Table 4-32 fills Source CC shall-detect only. vSafe5V stays UNKNOWN.
2026-09-22 17:55:47 +02:00
michele c4cd046ea9 Fill USB 2.0 Rev 2.0 and Type-C CabCon R2.5 numbers (2.75.0).
LS/FS rates, pull-up/down, and VBUS come from the base spec. Cable Z0 90 ohm is CABLE; PCB should 90 ohm is RECOMMENDED. L2 differential_impedance stays UNKNOWN. Rp/Rd/Ra from CabCon Tables 4-27/28/29. IEEE Section One/Three and HDMI still missing. PDFs not in git.
2026-09-22 16:53:49 +02:00
michele f3be485b75 Fill protocol packs from recovered USB CTS, Type-C FTS, DVI 1.0, and IEEE 802.3-2012 Section Two (2.74.0).
NUMERIC rows cite document title, revision, section/table, and page. USB Zdiff, Type-C Rp/Rd, 10BASE-T, and 1000BASE-T stay UNKNOWN. PDFs are not in git.
2026-09-22 14:43:26 +02:00
michele 949f5f1541 Add protocol-certification M6/M7 USB-C Ethernet HDMI packs (2.73.0).
USB 2.0 is protocol, Type-C is connector, USB 2.0 over Type-C is the
implementation. Ethernet/HDMI skeletons stay UNKNOWN with needed_document.
No invented ohms; Mini HDMI is connector-only; RJ45 is not 1000BASE-T.
2026-09-22 13:40:37 +02:00
michele 7baffadd6b Add protocol-certification M10 catalog skeletons (2.72.0).
PCIe/CXL keep logical vs physical ids. I2C, CAN, RGMII and missing
high-speed processor interfaces get required_checks; numbers stay
UNKNOWN/MISSING_SOURCE until an official cite. No invented ohms.
2026-09-22 13:03:48 +02:00
michele 866c2e9242 Add protocol-certification M9 L3 channel certifier (2.71.0).
L3 CHANNEL structure for timing budget, insertion loss, return loss,
crosstalk, and complete channel. Numeric PASS/FAIL only from existing
channel FACT; otherwise a visible skip. No OpenEMS, no invented S-parameters,
no M6 packs.
2026-09-22 12:58:18 +02:00
michele 14272d7446 Add protocol-certification M8 DDR instance grouping (2.70.0).
Controller-aware per-memory instances, DQ/DQS vs addr/cmd/ctrl/ck, HBM not classic DDR PCB DQ. No universal mm/ps. No M6 packs, no L3 solver.
2026-09-22 12:46:01 +02:00
michele 24c4beecc9 Add protocol-certification M5 Protocolli report UI (2.69.0).
Instances, L0–L3 max level, measured/limit/margin/source/method, traceability chain. FAIL listed first, not under Warning. Visible skips. No pack numbers, no L3 solver.
2026-09-22 12:37:31 +02:00
michele 0848eb8416 Add protocol-certification M4 L2 electrical certifier (2.68.0).
Z/termination/levels from datasheet, stackup, fab, or cited pack only. Never invented USB ohms. No L3/OpenEMS. L0/L1 are not electrical.
2026-09-22 12:30:13 +02:00
michele 10d21cdc80 Add protocol-certification M3 L1 geometric certifier (2.67.0).
Length, topology, vias, stubs, layer, grouping. Skew only vs NUMERIC mm or DESIGN LIMIT. No invented ohms/mm/ps. Not electrical. No L2/L3.
2026-09-22 12:22:18 +02:00
michele 3cc2e5469b Add protocol-certification M2 L0 structural certifier (2.66.0).
Presence and connection only. FAIL solely on missing MANDATORY structure.
AXI4 internal is NOT_APPLICABLE, not FAIL. RECOMMENDED never FAIL. No L1–L3
and no invented ohms/mm/ps.
2026-09-22 12:12:25 +02:00
michele fc6524a2a9 Add protocol-certification M1 instance recognition (2.65.0).
physical_bus_instance from declaration, silicon/part, pin/net names, and
pairs. USB and DDR fixtures emit groups; AXI4 internal attaches no PCB
nets. Ambiguity is REVIEW, not FAIL. No L0–L3 certifier and no invented Z.
2026-09-22 12:04:37 +02:00
michele 36ad979612 Add protocol-certification M0 catalog, loader, and empty report (2.64.0).
Versioned JSON skeletons without invented ohms/mm/ps. RECOMMENDED is not
FAIL-mandatory; typical-as-standard is rejected. Report Protocolli is empty
until recognition (M1+). Native src overlays inherited periscopex on the
package path.
2026-09-22 11:57:26 +02:00
michele c87adf11a9 Add AF trace analysis after PCB checks (2.63.5).
Trigger λ/10 and tr/(6 tpd) from FACT; pairs analyzed together; Z only from
datasheet; visible INSUFFICIENT skips; lossless RLGC cascade (no OpenEMS).
2026-09-22 08:39:37 +02:00
michele 8b4f7710cf Show Error groups with max child severity (2.63.4).
PCB tree folders are Error / Warning / Info. U18 with PE-PLC-002
ERROR is ERROR, not WARNING. J2 and other connectors list with ICs.
PE-PLC stays in the PCB exam bucket. No deploy.
2026-09-22 01:04:08 +02:00
michele 8f434ffd31 Skip module-die and truncated QFN pintable false PE-BOM hits (2.63.3).
WROOM lands are not the ESP32 die table (U11). QFN-48 pads 25–48 are
not extras when extraction stopped at 1–24 (U12). VQFN is the QFN
family (U19 24-QFN 4×4). Real extra signal pads still ERROR.
2026-09-22 00:57:57 +02:00
michele cd7a7ca3a6 Join PE-BOM-011 pins by name, not pin_count (2.63.2).
USB-C A5/B5 are contacts, not EP. Datasheet pintable, KiCad
.kicad_mod, and embedded PCB pads join by pin identity. Missing
pintable skips; scalar pin_count is never an ERROR authority.
2026-09-22 00:47:58 +02:00
michele 6b751522b7 Keep rust-criteri and conformita-coding in the local docs tree.
Absolute paths in the headings so the files open from
~/Development/periscope/docs. PCB 2.62.1 check list unchanged.
2026-09-21 22:40:12 +02:00
michele 6d9d21a023 Register library components from a datasheet without an exam (2.63.1).
POST /api/library/datasheets now writes an IC inbox card or a
passive/discrete model. Empty pintables never enter library/extracted.
AF Board+AI runs after unchanged run_pcb_checks (PE-SI / HF line stay).
2026-09-21 22:33:30 +02:00
michele 4df04df5d4 Make the component library a standalone product door (2.63.0).
Add /api/library datasheet import and component GET/PUT with no exam.
Reorganize pytest into datasheet, library, schematic, PCB, and AF+AI.
Document Rust criteria (none chosen; no rustup) and coding conformity.
2026-09-21 22:12:00 +02:00
michele 20733f0ec6 Add remaining PCB analysis checks to run_pcb_checks (2.62.1).
Phase B: stackup vs fab spec, via current with datasheet I (no IPC via
chart), ESD pad distance, USB-PD, PoE isolation voltage, antenna, and
PDN Z(f). Skip without evidence. Not DRC or FEM.
2026-09-21 20:49:21 +02:00
michele 69d5dd9313 Add HF line and bus analysis to run_pcb_checks (2.62.0).
Phase A: stub, return-split, and BOM termination on buses present on the
graph; DDR/CPU/FPGA class certifiers only when that device exists. Skip
without evidence. Via, pad, track, and zone stay distinct. Not DRC or FEM.
2026-09-21 20:42:55 +02:00
michele 309644e654 Rewrite README as Periscope PCB-analysis product copy.
Replace the schematic-only DeepSeek scaffold with what this tree actually is: full board analysis for fab, gated interface certifiers, evidence rules, and the run/Docker/update commands that exist on disk.
2026-09-21 17:51:41 +02:00
michele bd3a6fd009 Gate interface certifiers to connectors on this board (2.61.2).
USB-C/RJ45/PoE/DDR3 are the method, not a catalog. No connector means
no finding. Bare RJ45 is Ethernet only; PoE needs PoE evidence. HubAudio
has USB-C and PoE MagJack, not DDR. Skip-I unchanged.
2026-09-21 12:24:54 +02:00
michele c6abdae762 Skip PE-PWR/PE-VIA without datasheet current (2.61.1).
Trace-width vs current runs only with I_load/Imax/I_abs. Missing I is a
skip, not INFO INSUFFICIENT, not USB 500 mA, not Iout_max-as-load.
2026-09-21 12:11:52 +02:00
michele 6dc04b5cc7 Add USB-C, Ethernet, and PoE interface class certifiers (2.61.0).
Dedicated deterministic engines certify class and connection integrity
(CC1/CC2, Rd 5.1 kΩ, VBUS/GND, SuperSpeed if USB3; 10/100 vs GbE
magnetics; PoE only with evidence). Missing evidence is INSUFFICIENT
or N/A, never invented PoE, SuperSpeed, Z, or I. No FEM, no via IPC.
2026-09-21 11:52:44 +02:00
michele 07ad5c72fa Fix PCB software false positives (2.60.11).
KiCad 9/10 name-only nets fill the index. PE-LAY-004 counts tracks, vias,
and pours and skips NC nets. Missing I_load is INSUFFICIENT. EP pads are
not PE-BOM-011; abs-max binds the named pin. Kelvin/EMI/PI ignore NC and
IN±. LQW decodes nH; BLM/FB is a bead, not DCR as Z.
2026-09-21 11:06:38 +02:00
michele 0d817c876f Echo DeepSeek thinking reasoning_content on the next turn.
HubAudio U11/U12/U38 400'd after a thinking-only review turn because
the retry dropped reasoning_content. Native client now appends that
field and continues; hierarchical sheet ingest stays in 2.60.10.
2026-09-21 09:11:37 +02:00
michele 348f390cce Ingest hierarchical KiCad sheets; still skip .history.
Apri progetto collects every *.kicad_sch beside the .kicad_pro and
follows Sheetfile/(sheet)/file= into a subfolder. .history, .git, and
backups are not walked. Not only HubAudio.kicad_sch.
2026-09-21 08:28:49 +02:00
michele 027546b0bd Stop hanging after KiCad folder permission.
Apri progetto walked every nested file (HubAudio .history ~2000) so
onFilesChange never ran and Next stayed disabled. Read only kicad_pro,
sch, and pcb in the project dir; timeout to an error; enable Next when
.kicad_pro is in.
2026-09-21 08:18:01 +02:00
michele a0b89365c2 Type directory picker without DOM FileSystemDirectoryHandle.entries. 2026-09-21 08:00:08 +02:00
michele 278f176859 Open a real folder picker for Apri progetto KiCad.
The Mac Carica dialog was a file input (accept empty, no working
webkitdirectory). Use showDirectoryPicker or a hidden input with
webkitdirectory=true and no accept. Ignore empty/cancel picks.
2026-09-21 07:59:06 +02:00
michele fbf2fc87a6 Detect HubAudio.kicad_pro from folder pick, not only File.name.
Safari/macOS often puts .kicad_pro on webkitRelativePath while name is
the stem. Match both, sniff JSON if the suffix is missing, and set
webkitdirectory on the input DOM so the folder picker actually recurses.
2026-09-21 07:54:35 +02:00
michele bfb781f94f Open a KiCad project folder: schematic + PCB, no netlist.
Apri progetto KiCad picks the folder that contains .kicad_pro and loads
sibling hierarchical sheets and the matching .kicad_pcb. Connectivity and
MPN/PNM/Value come from the schematic; a leftover PADS .asc is ignored.
A lone .kicad_pro upload is rejected unless that path exists on disk.
2026-09-21 07:26:01 +02:00
michele ec2ffd6107 Join KiCad hierarchical PNM/MPN when the BOM CSV omits a designator.
Child-sheet symbol fields fill graph mpn; empty sheet fields stay empty. A sibling .kicad_sch next to a PADS netlist is used the same way.
2026-09-21 01:56:13 +02:00
michele 82d185ccf4 Treat KiCad PNM as MPN and skip missing U* as INSUFFICIENT_EVIDENCE.
HubAudio CSV has no U13–U39 rows; those refs stay without an invented part number. IC Value fills MPN when PNM is blank. Progress no longer labels netlist-only ICs as “no MPN in BOM”.
2026-09-21 00:53:06 +02:00
michele e31981c812 Persist recovered ferrite Z by comparing against the raw JSON.
ComponentModel validation already fills impedance from quoted ohm@freq, so snapshotting the in-memory specs skipped the write.
2026-09-21 00:33:17 +02:00
michele 72bcab50a1 Fill ferrite bead impedance from the MPN datasheet PDF.
graph_build searches project uploads and library blob refs, persists recovered Z, and still loads when the PDF has no impedance. Ohms are not written to henries.
2026-09-21 00:29:12 +02:00
michele a2d5900b64 Recover ferrite bead Z from datasheet evidence without aborting graph_build. 2026-09-21 00:19:06 +02:00
michele 51c09b2176 Point Emmaforo note at completed HubAudio MODE=pcb wall. 2026-09-20 23:54:21 +02:00
michele 9a2320f9e2 Record HubAudio MODE=pcb wall times including DeepSeek AI. 2026-09-20 23:54:09 +02:00
michele 8040686e8b Allow ferrite beads without impedance_ohm to load.
Missing Z is optional, not invented. graph_build skips bad models
instead of aborting. Other inductors still require value_henries.
2026-09-20 23:08:33 +02:00
michele 63c85a4319 Point Emmaforo timing note at HubAudio measured seconds. 2026-09-20 23:00:27 +02:00
michele 6b605d1cf2 Record HubAudio PCB parse, Z0, and checks wall times. 2026-09-20 23:00:09 +02:00
michele a001971248 Note HubAudio PCB timing: no stored .kicad_pcb, LLM not timed. 2026-09-20 21:31:17 +02:00
michele 39169b33b8 Note live Emmaforo PCB exam wall times (parse, Z0, checks, AI).
Read-only docker exec on stored pcb.kicad_pcb. No pipeline change, no deploy.
2026-09-20 21:27:27 +02:00
michele 7a32c552bb Stamp 2.60.0 incomplete PCB exam and owner project delete.
Partial layouts still use MODE=pcb. Missing copper is INSUFFICIENT or
skipped, never Euclidean stand-in tracks. Via≠Pad unchanged. DELETE
/api/projects/{id} is owner-only with a dashboard confirm dialog.
2026-09-20 21:17:26 +02:00
michele ed3fff565d Stamp 2.59.0 Docker leftover seams only, not PinScope product.
Images copy periscope/src, vendor/, and skipped Clerk/shadcn/billing/GCS
files. dependency/ stays in git. Audit written; FastAPI boots with
PYTHONPATH=src.
2026-09-20 21:03:26 +02:00
michele 22bc075c58 Stamp 2.58.0 native JWT middleware and useAuthApi.
Same skip paths, Bearer/query token, Clerk RS256 leftover, and local HS256
contract. routers/auth.py, user records, and AUTH_JWT_SECRET are untouched.
2026-09-20 21:01:51 +02:00
michele 3a666ea8ae Stamp 2.57.0 native package.json, requirements, and unused Docker copies.
Frontend periscope-web manifests, pip requirements, and EDA logos/examples
overlay from src. Docker installs from those files. Unused PinScope public
blobs are dockerignored. Landing png/gif stay in dependency until native
captures exist.
2026-09-20 21:00:21 +02:00
michele 7a377889ae Overlay live legal and changelog markdown from periscope/src.
privacy, terms, file-guide, and changelog stay Periscope operator text at 2.56.0. Docker copies src changelog last; the frontend image keeps content/ at runtime.
2026-09-20 20:37:11 +02:00
michele 6b1fe5be00 Stamp 2.56.0 after native taxonomy and skills overlay.
Compose mounts src/taxonomy. Local DeepSeek skills; no Console upload.
2026-09-20 20:31:50 +02:00
michele 00e5df8a36 Overlay app favicon.ico from the Periscope mark.
Replaces the leftover OSS Next.ico so /favicon.ico matches favicon_io.
2026-09-20 20:30:36 +02:00
michele ee160a5df9 Overlay native taxonomy JSON and local DeepSeek skills.
repo_paths and compose mount src/taxonomy first. Docker copies dependency then src for taxonomy and skills. SKILL.md prose is rewritten; schema IDs and validate contracts stay. Manifest 1.14.0. Do not run upload_skills.py.
2026-09-20 20:30:25 +02:00
michele 28a4dc8255 Stamp 2.55.0 after Next config and CSP overlay rewrite.
package.json stays inherited. Legal markdown and changelog remain in dependency.
2026-09-20 20:20:49 +02:00
michele 6f3e714a54 Rewrite CSP host seam and middleware package marker.
Export names stay for the cloud overlay. JWT still lives only in inherited auth.py.
2026-09-20 20:19:58 +02:00
michele 739e6f7f17 Rewrite Next, ESLint, PostCSS, and tsconfig overlay.
CSP, login/register redirects, pdfjs-dist externals, and canvas alias stay the same. package.json is unchanged.
2026-09-20 20:19:37 +02:00
michele cdfe5812cf Stamp 2.54.0 after leftover frontend widget rewrite.
PDF sheet, theme, upload zone, reviewed hooks, and globals.css overlay from periscope/src.
2026-09-20 20:13:44 +02:00
michele 44e86e258e Rewrite app color tokens and fade-up animation.
Tailwind/shadcn imports, light/dark oklch values, and .animate-fade-up stay the same so layout does not shift.
2026-09-20 20:12:54 +02:00
michele 72b4b20665 Rewrite reviewed-finding localStorage hooks.
Dashboard count and report toggle still migrate legacy keys and skip the first persist write.
2026-09-20 20:12:20 +02:00
michele 7d82358e19 Rewrite project file drop zone.
Folder drops still skip KiCad backups/pretty/3dmodels; dashed upload chrome is unchanged.
2026-09-20 20:11:48 +02:00
michele c5cd98587f Rewrite class-based theme provider and toggle.
next-themes still defaults to dark with no system follow. Clerk theme wrapper stays inherited.
2026-09-20 20:11:20 +02:00
michele b3566db828 Rewrite datasheet PDF sheet overlay.
Right-side Sheet still mounts PdfViewerPanel only while open; shadcn Sheet stays imported.
2026-09-20 20:11:00 +02:00
michele d4070081c8 Stamp 2.53.0 after site, legal, OG, and BFF rewrite.
Excel export headers are mutable for tsc. Changelog and APP_VERSION match the native frontend overlay.
2026-09-20 20:06:15 +02:00
michele 292d2e2077 Rewrite Next.js local BFF routes and mock catalog.
Projects, report, and graph JSON handlers overlay from periscope/src. Clerk proxy stays the inherited open-core seam.
2026-09-20 20:04:04 +02:00
michele 93f6fad3e7 Rewrite legal page shells and Open Graph images.
Overlay legal markdown chrome, changelog timeline, EDA file-guide tabs, and OG/Twitter images from periscope/src instead of inherited PinScope copies.
2026-09-20 20:02:57 +02:00
michele a9ce71f17a Rewrite frontend site identity, version stamp, and Excel export.
Changelog remains the source of APP_VERSION via overlay sync-version.mjs.
2026-09-20 20:00:15 +02:00
michele d21a303e8b Stamp 2.52.0 after leftover frontend rewrite.
App and marketing pages overlay from src. Auth and billing seams unchanged.
2026-09-20 19:53:58 +02:00
michele a011351828 Rewrite leftover frontend pages into src overlay.
Dashboard, project, report, progress, admin, feedback, and marketing
keep routes and layout. Billing/Clerk/analytics stay imported seams.
2026-09-20 19:53:33 +02:00
michele 2613678442 Rewrite frontend types and HTTP client in src.
Export names match the leftover pages. Billing HTTP wrappers stay so
gateway seams are not restyled here.
2026-09-20 19:41:15 +02:00
michele bac75a2fba Stamp 2.51.0 after native app leftover rewrite.
Settings, FastAPI entry, worker, and leftover routers now resolve from
src. Auth router and JWT middleware are unchanged.
2026-09-20 19:32:50 +02:00
michele d0fd37c1b5 Rewrite leftover HTTP routers except auth.
Project ingest, pipeline enqueue/SSE, reports, admin, contact, survey,
and feedback now resolve from src. Auth router is unchanged.
2026-09-20 19:31:41 +02:00
michele 7c3c7d17d8 Rewrite FastAPI app and pipeline worker entrypoint.
Worker still refuses to import backend.main. Auth router is mounted
unchanged; CORS stays outermost so 401s keep headers.
2026-09-20 19:23:33 +02:00
michele d0bbd582a8 Rewrite Settings as native Periscope config.
DeepSeek remains the only live provider; leftover Anthropic env names
are coerced or ignored. Skills manifest is resolved across the split tree.
2026-09-20 19:21:52 +02:00
michele 40b251c387 Stamp 2.50.0 after pipeline and leftover analysis rewrite.
Full pytest is green. Inherited copies stay on disk; auth untouched.
2026-09-20 19:14:50 +02:00
michele 82ffa755cd Rewrite leftover analysis modules imported by src.
validate/validation_tools alias native lookup and review tools. Passive
resolve, derating, BOM summary, pin-mux, LED current, and net-function
tokens are original Periscope code. finding_engine and pcb_* unchanged.
2026-09-20 19:14:20 +02:00
michele 3d7fa21eb6 Rewrite analysis pipeline, projects, email, and LCSC client.
Native job_workspace / datasheet_extract / review_session stay the live
BOM-extract-graph-review path. Project writes follow owner_user_id.
2026-09-20 19:10:28 +02:00
michele 6a4903fa3a Rewrite job_runner, event_bridge, cost estimator, and DigiKey client.
Local pid-file dispatch stays the self-host path. DigiKey still rejects unrelated MPNs. Inherited copies remain on disk.
2026-09-20 18:57:58 +02:00
michele e240afce23 Rewrite leftover LLM factory (DeepSeek-only), storage, validation.
Anthropic/Gemini names resolve to DeepSeek. Extraction import path re-exports datasheet_extract. Inherited copies stay on disk. storage_gcs unused, skipped.
2026-09-20 18:55:18 +02:00
michele 572b8d24f3 Rewrite normalize, cross-IC dedupe, and billing seam (2.49.0).
Downgrade-only clamp and fail-soft coverage stay in src. Inherited copies remain on disk. Self-host billing is NullBilling.
2026-09-20 18:47:45 +02:00
michele fe89851c10 Rewrite taxonomy loader; JSON path via repo_paths (2.48.0).
TAXONOMY_DIR is taxonomy_dir() so src reads dependency/taxonomy until a src tree exists. Inherited taxonomy.py stays on disk. Changelog covers models, parsers, and taxonomy.
2026-09-20 18:41:12 +02:00
michele 9997f39718 Rewrite PADS/BOM dispatch and EDIF ingest as Periscope parsers.
KiCad schematic parser and PCB via≠pad parser stay native. Inherited
parser files remain in dependency/.
2026-09-20 18:38:26 +02:00
michele 24f9c952e2 Rewrite Periscope models.py with disjoint layout primitives.
Pad, via, track, and zone stay separate types. Inherited models.py remains
in dependency/. Public graph/finding fields are unchanged.
2026-09-20 18:37:03 +02:00
michele 19a1eef936 Record 2.47.0 native graph rewrite in changelog and independence plan. 2026-09-20 18:32:47 +02:00
michele 7ff049f6d0 Rewrite DesignGraph builder as original Periscope graph.py.
Src module classifies refs, infers net type/voltage, and prefers board nets
when a .kicad_pcb is present. PinScope graph.py remains in dependency/.
2026-09-20 18:32:36 +02:00
michele 5a1d31ce7b Revert PinScope overlay copies from periscope/src (2.46.0).
Remove stamped near-identical modules so inherited code loads from
dependency/ again. Keep native finding engine, PCB/placement, review,
job workspace, datasheet extract, via-vs-pad parser, logo, and local JWT.
2026-09-20 18:30:21 +02:00
michele 2f2e35e802 Replace paraphrased constitution with the 1224-line master.
Copy CODING_CONSTITUTION.md from the AgentStore docs/development path and split
the seven always-on .mdc files from that exact text.
2026-09-20 18:24:29 +02:00
michele 0533d4ebd2 Add Periscope Cursor engineering constitution and always-on rules.
Docs-only: master CODING_CONSTITUTION plus seven .mdc splits. Git policy is
phase = test then commit+push; deploy only after a macro-phase.
2026-09-20 18:06:00 +02:00
michele 6d6e70cec0 Overlay leftover FastAPI entry, routers, and jobs into periscope/src (2.45.0).
Copy main, config, middleware/auth, leftover routers, pipeline_worker,
job_runner, event_bridge, projects, and admin_settings without deleting
dependency copies. Native auth and impedance routers stay as-is.
2026-09-20 17:39:15 +02:00
michele 49a27d5951 Fix leftover service overlay stamps so __future__ stays first.
Use comment headers instead of a second module docstring so overlay copies remain valid Python.
2026-09-20 17:21:57 +02:00
michele 0b01617b37 Overlay leftover services and LLM factory into periscope/src (2.44.0).
Copy api_logs, findings normalize/dedupe, billing_hook, datasheet_store,
cost_estimator, storage, purple_parts, email, digikey, and llm factory/types/base
without deleting the inherited dependency copies.
2026-09-20 17:15:55 +02:00
michele 1389d832df Overlay leftover PinScope modules src still imported.
utils, resolve_passives, derating, bom_summary, pin_mux, LED current,
pin-function tokens, plus live analysis validate/validation_tools/pipeline/
validation/extraction, skills, and taxonomy JSON now resolve from
periscope/src. Inherited copies stay in dependency/. repo_paths prefers
src then /app; Docker copies src taxonomy/skills last.
2026-09-20 16:56:20 +02:00
michele 31fd389b38 Native overlay of graph, parsers, models, taxonomy; Periscope mark.
Src-first imports now load graph/parsers/EDIF/models/taxonomy from
periscope/src. Inherited copies stay in dependency/. Taxonomy JSON path
uses repo_paths. New periscope/lens mark at existing 16/32/180/192/512
favicon sizes; header uses PeriscopeMark instead of the lucide CPU glyph.
2026-09-20 16:41:50 +02:00
michele 34a9b30a35 Re-parse .kicad_pcb on PCB exam instead of stale layout_graph.
Cached layout_graph still listed stitching via-pads as component pads,
so PE-BOM-011 kept firing after the ingest fix. PCB/placement jobs now
parse the board file and refresh the cache.
2026-09-20 16:16:46 +02:00
michele 09c49f8529 Resolve board via nets by net code, not pad-net token.
_via_from_node used _pad_net first, so (net 1) stayed as '1' instead of GND.
2026-09-20 16:06:54 +02:00
michele ad21d00cd0 Fix PE-BOM-011: classify footprint vias as vias, not pads.
KiCad stitching/thermal vias inside a footprint are (via) or copper-only
thru_hole (pad) objects. parse_kicad_pcb was appending every (pad) to
LayoutFootprint.pads, so PE-BOM-011 compared datasheet pin_count to via
numbers. Nested vias join LayoutGraph.vias; soldered THT pads stay pads.
2026-09-20 16:06:10 +02:00
michele 19eab09000 Native PipelineWorkspace and event broker in periscope/src.
PCB and placement jobs import job_workspace instead of PinScope
pipeline.py. Analysis run_pipeline re-exports the same broker singleton.
2026-09-20 15:34:41 +02:00
michele 5c0c5184fb Native DeepSeek datasheet extraction in periscope/src (Fase C3).
Pipeline and LCSC resolve call datasheet_extract; inherited extraction.py
stays in dependency as fallback. No Anthropic Console skill ids.
2026-09-20 15:26:21 +02:00
michele a96ee2e88a Stop periscope/src importing PinScope validate.py after live C2 smoke.
PCB review and src checks use native parse, constraints lookup, and
review_session. Inherited validate.py and validation_tools.py stay in
dependency/.
2026-09-20 15:21:32 +02:00
michele 974923b2e6 Native DeepSeek review loop in periscope/src (Fase C2).
Live review_ic_async comes from review_session; PinScope validate.py and
validation_tools.py stay in dependency as _inherited_review_ic_async fallback.
2026-09-20 15:14:21 +02:00
michele a0a2f5bdbf Fix DeepSeek-only tests after env file moves to the repo root.
Give the routing tests a dummy key so they do not require a live .env.
2026-09-20 14:33:23 +02:00
michele c362ef8a56 Split native Periscope (periscope/src) from inherited PinScope (periscope/dependency).
Keep validate.py and the finding engine as-is. AGPL LICENSE stays at the repo root.
Docker overlays dependency then src. Do not delete the inherited tree.
2026-09-20 14:31:42 +02:00
michele 0a75e5971a Gate PCB SI not_reviewed to board ICs, not the shared library.
Emmaforo listed 20 stale 1.5–1.7 MPNs (LAN8720A, W25Q, …) as
not reviewed while the four BOM ICs were already extracted and reviewed.
2026-09-20 14:05:03 +02:00
michele 312057b6d3 Gate SI layout_rules to the quoted bus, not EN RC onto USB.
PE-SI-009 no longer treats ESP32 CHIP_PU/EN RC as a USB series R.
USB without a library Z number stays PE-SI-010 measurement-only.
Pintable skill 1.13.0 requires net_class on SI kinds (usb2/usb3/MDI/RGMII/DDR3).
2026-09-20 13:13:19 +02:00
michele a63e5bd7ab Fase A identity on PCB HEAD: operator fence, keep BOM/SPOF/EMI.
Replace Faradworks Inc. TOS/privacy/contact/metadata with Michele Bigi.
Dual-read pinscope_* keys; write periscope_* only. AGPL LICENSE and
GitHub fork parent unchanged. validate.py not edited.
2026-09-20 12:41:17 +02:00
michele 1b3529501f Ship remaining PCB plan slices: BOM chain, SPOF, EMI FACT, gated Tj.
Package/pinout/ratings mismatches, SPOF as REVIEW, EMI only with a
datasheet quote, and Tj from copper+vias+θJA when every parameter exists.
Re-extract SI layout_rules from 1.12.0; ImpedenceFinder license stays UNKNOWN.
2026-09-20 12:29:27 +02:00
michele 65a91419a2 Check ImpedenceFinder against datasheet SI rules, not a dump table.
Each layout_rules SI requirement (diff/SE Z, skew, max length, spacing,
ref plane, vias, layer, return, series R) is one PASS/FAIL/MARGIN finding
with FACT and REQUIREMENT. USB/HDMI/PCIe/ETH/LVDS/DDR only; I2C GPIO CC
and analog REGN are skipped. No invented 90 Ω.
2026-09-20 10:45:27 +02:00
michele 187605763d Treat finished PCB review as complete, not a raw SSE error.
The status watcher synthesized pcb_error with pcb_status=complete (terminal)
when the worker finished before pcb_complete arrived. Map that hatch to
pcb_complete, publish the event before flipping status, and send /pcb to
the layout report tree.
2026-09-20 10:23:53 +02:00
michele 1f3876eadc Fix findings tree TypeScript duplicate findings prop.
Spread parent props first, then override with the bucketed findings list so Next build typecheck passes.
2026-09-20 10:05:02 +02:00
michele bee6369c1d Replace findings list with a tree; filter ESD/PI false positives.
PE-ESD-001 only on J* connector–IC nets (skip NC, unconnected, VSYS/GND/3V3).
PE-PI-001 treats any capacitor on the rail, including KiCad slash prefixes, as
decoupling. Sort findings ERROR then WARNING then INFO, then RULE/RISK/REVIEW/INFO.
Report sidebar is a collapsed expand-on-click tree instead of an all-open list.
GET /report and complete_findings fail-soft and sort the same way.
2026-09-20 10:03:50 +02:00
michele 342792df2d Ship Fase B slices: hierarchy, derating bands, timing, PI, ESD/return.
ERROR stays only for RULE+MANDATORY. Hierarchy walks component→pin→net→block.
Derating is PASS/MARGIN/RISK from Vop/Vrated. Timing and PI skip without numbers.
ESD and HS return path are REVIEW, not RULE ERROR.
2026-09-20 09:35:04 +02:00
michele facbaa2305 Show Action on finding cards and inject PCB geometry into AI context.
Layout and AI findings always get action (fallback recommendation). The card
renders that sentence in the body. PCB review context now includes vias under
the footprint, copper thickness, nearby widths, courtyard, and keepout polygons.
2026-09-20 09:13:51 +02:00
michele f63c1c3411 Tighten PCB findings: actions, stitch gating, real copper.
Fill action on every finding and show it in the report. Stitch/return only
on large HS/power nets. Parse stackup thickness, arcs, and vias from the
board. IC courtyard pad copper is not PE-PLC-004 RULE. Recommended RC/cap
stay REVIEW.
2026-09-20 08:58:54 +02:00
michele 1e379f6042 Restore build_placement_plan import in the PCB pipeline.
MODE=pcb classify crashed with NameError after the finding-engine import swap.
2026-09-20 08:44:26 +02:00
michele dc65e96a22 Apply the finding engine to schematic and PCB reviews.
FACT, REQUIREMENT, and INFERENCE are separate fields; datasheet provenance
lives in the rule DB so Recommended cannot stay ERROR; LLM output is REVIEW.
Designer decisions persist across rescans. Schematic and PCB share one library
and the same finding object in the report UI.
2026-09-20 08:38:59 +02:00
michele 8f4ebc645c Share library/extracted for schematic and PCB review.
PCB AI skips a second PDF exam (pintable cache, pdf_path=None) and the report
gains a PCB exam section plus power-trace, thermal, via, Kelvin, and GND-stitch
checks grounded in board geometry and extracted specs.
2026-09-20 08:32:23 +02:00
michele f3f96ea4d1 Treat KiCad /net vs schematic net as one hierarchy finding.
Pad-net compare strips leading slash and nested sheet path so /ESP32_EN
matches ESP32_EN. If every mismatch is only that prefix, emit PE-LAY-003
once instead of per-pad reconnect errors.
2026-09-20 08:10:34 +02:00
michele 89a484830e Unstick analysis running when the worker is dead.
A container rebuild left Emmaforo status=running with no process, so
PCB start kept 409. Heal on GET now matches placement/PCB: complete if
report.json exists, otherwise error.
2026-09-20 00:59:22 +02:00
michele 3e2ba269f9 Write project.json to the storage owner prefix.
update_project used meta.user_id for the path, so JWT projects that still
have user_id=local never persisted pcb_status=queued and the PCB worker
exited as draft. Point writes at the prefix used to read the project.
2026-09-20 00:57:15 +02:00
michele 344ecb3389 Join railway-caddy network pinscope_pinscope after compose up.
Caddy reverse_proxies periscope-frontend by Docker DNS and is not on
the compose project bridge; attach the app containers so HTTPS stops 502.
2026-09-20 00:37:04 +02:00
michele ddab6917a3 Keep Caddy on pinscope_periscope after compose rename.
Pin the app bridge to the pre-rename network name and add DNS aliases
pinscope / periscope-frontend so the host proxy can reach the stack again.
2026-09-20 00:35:12 +02:00
michele 6b0e44a50c Pin VPS deploy to /root/periscope only.
Refuse update-periscope.sh unless dirname resolves to the canonical
checkout, set compose project name periscope, and document that the
GitHub clone URL may still be manvalan/pinscope.
2026-09-20 00:15:34 +02:00
michele 16c606ae3d Add MODE=pcb layout exam job with AI and deterministic checks.
Parallel pcb_status pipeline: parse board, classify domains/groups,
inventory traces, PE-LAY/PLC/SI/DRT checks, per-IC datasheet review.
Findings merge into the report UI. No auto-place or pcbnew write-back.
2026-09-19 22:54:17 +02:00
michele a2011dad91 Update PCB review plan: AI exam like schematic, no auto-place.
Adds per-IC LLM review, domains/groups as exam context, required
recommendations, and phased job MODE=pcb. Packing stays parked.
2026-09-19 22:43:58 +02:00
michele 721ede4243 Add PCB review plan: verify placement and routing, no auto-place.
Documents a parallel MODE=pcb exam job (inventory + datasheet-gated
checks) that reuses placement_check, si_check, and the placement job
pattern. Parks F2 packing/export.
2026-09-19 21:41:27 +02:00
micheleandCursor dc364f5926 Fix sign-in links and legacy JWT after Periscope rebrand.
/login 404ed from marketing CTAs; redirect to /sign-in and accept pinscope-local tokens plus dual-host CORS so login works on both hostnames.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 20:12:53 +02:00
micheleandCursor 8d2b85600f Rebrand Pinscope to Periscope across product and codebase.
Rename the core package to periscopex, update UI/docs/Docker/deploy defaults to periscope.michelebigi.it, and keep legacy version/storage key aliases so existing projects keep working.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 20:02:04 +02:00
micheleandCursor 556306bf4d Add IFA/meander/stub antenna templates with SVG and KiCad export.
Progetta now returns a parametric radiator geometry (segments + preview + .kicad_mod) so the layout can be replicated without inventing EM results.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 19:27:06 +02:00
micheleandCursor 1d3cf12482 Add RF antenna verify and design recipe to Impedance tab.
Detect matching toward ANT*/ANT_FEED, compute 50 Ω feed width from stackup, and optional λ/4 length from f0 — before auto-draw or F2 packing.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 18:57:59 +02:00
micheleandCursor 68af0fd432 Classify strap/bootstrap caps and drop unclassified satellites.
EN/BOOT/REGN/PMID bypass and flying bootstrap caps get real roles; other is omitted from assemble_order.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 18:37:01 +02:00
micheleandCursor d47ad91cee Keep power satellites on each IC primary rail only.
Stop LDO 3V3 groups from inheriting VSYS caps/filters, drop connector/switch noise, and align Power rails with domain membership.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 18:24:07 +02:00
micheleandCursor 21e2be1cd0 Strengthen pintable layout_rules skill and refresh empty extractions.
Treat PCB/application layout guidance as a first-class extract, keep those pages in PDF trim, and re-run IC extraction once when rules are still empty under older model_version.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 18:01:15 +02:00
micheleandCursor 86121e6547 Add gated Placement F2 pack skeleton for satellite xy.
Propose positions only from PCB footprints plus numeric decoupling max_distance_mm; otherwise skip with an explicit reason.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 17:50:47 +02:00
micheleandCursor 54b0b07917 Split Domains by primary supply rail instead of POWER union-find.
Converters bridging VBUS/VSYS/3V3 no longer collapse the whole board into one domain.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 17:39:11 +02:00
micheleandCursor f5f21782d2 Fix optional nets typing in topology rails view.
Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 17:17:59 +02:00
micheleandCursor fc11df59fc Add Domains and Power rails views for functional groups.
Sidebar tabs show routing-first topology from placement_plan/functional_groups, with IC groups and satellite roles highlighted per domain and per supply rail.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 17:17:16 +02:00
micheleandCursor e124ac2de7 Heal zombie running projects stuck on Review forever.
If the event log already ends with pipeline_complete, flip meta to complete on project/status fetch so Progress no longer spins on a dead worker.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 16:45:07 +02:00
micheleandCursor 4882c9206a Prevent finished projects from bouncing progress to report.
Gate /progress SSE and auto-redirect on a live queued/running status so historical pipeline_complete events no longer flash Processing then open the report.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 16:31:32 +02:00
micheleandCursor d947128951 Fix project sidebar stuck on the report page.
Open finished projects on the hub instead of /report, and hard-navigate when leaving nested report/progress/placement routes for Dashboard, Library, and hub tabs.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-13 16:22:16 +02:00
micheleandCursor 4c4b604cca Add parallel Placement pipeline for routing-first topology plans.
Ship a free, analysis-independent job that writes placement_plan.json (domains/satellites, no mm) with API, SSE progress, and a minimal project UI.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-12 16:41:00 +02:00
micheleandCursor 2950446e12 Add Layout F1 functional groups and crystal/NC checks.
Write routing-first domain/satellite topology after graph_build, and
flag crystal CL mismatches and NC pins on active nets without inventing
millimetres.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-12 16:22:56 +02:00
micheleandCursor 30aaf55de6 Ship DeepSeek roadmap P0-5/P2 integrations.
Smoke simple_project offline, reviewer shortest_path, library promotion
gate, PDF drop logs, and per-stage cache hit-rate helper — without
touching Layout placement packing.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-12 15:48:39 +02:00
micheleandCursor 2405093bbb Fix auth deploy: env after pull, sidebar without asChild.
AUTH_JWT_SECRET was never written because upsert ran before git pull;
sidebar used Button asChild which Base UI does not support.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-11 15:45:59 +02:00
micheleandCursor 5a69b380da Add local Pinscope multi-user auth for shared projects.
Self-host email/password accounts enable the existing collaborator
invite flow without Clerk; first admin inherits users/local projects.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-11 14:31:37 +02:00
micheleandCursor c5b260b404 Prefer .kicad_pcb pad nets when building the design graph.
Schematic geometry on KiCad 10 boards was swapping rails and inventing
floating pins; board connectivity is authoritative when a PCB is uploaded.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-11 12:39:49 +02:00
micheleandCursor a1a2b2a944 Fix KiCad .kicad_sch power/label net merging.
Disconnected GND power flags were named GND_/GND__/… so the reviewer
flagged swapped rails and floating pins on correctly wired designs.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-11 12:15:41 +02:00
micheleandCursor aebe8f6cc3 Accept a KiCad project zip as the upload unit for hierarchical sheets.
Sheets, optional BOM, and PCB are extracted together; a storage round-trip test proves the pipeline can re-parse child Sheetfiles.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-11 08:15:00 +02:00
micheleandCursor 14fd3ba890 Show BOM, schematic, and PCB as three upload boxes on the first wizard screen.
The extra board step made the flow look like only two files were required.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-11 07:48:28 +02:00
micheleandCursor b768cc95b1 Restore the project-page PDF viewer import so the production frontend build type-checks.
Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-11 07:28:50 +02:00
micheleandCursor a56dda2358 Accept a KiCad project drop so hierarchical sheets and the board upload in one step.
A single .kicad_sch was parsed in isolation, so child sheets looked like an empty netlist. Report 404s now surface the real API error instead of a generic fetch failure.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-11 07:26:27 +02:00
micheleandCursor b3a47f0bec Sync app version to 2.26.0 from the changelog.
Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-11 00:40:32 +02:00
micheleandCursor 3f6082ae6d Run ImpedenceFinder Z0 on routed signal nets during project analysis.
Pipeline samples PCB traces when stackup εr/h is present; power/ground are skipped. Named nets can be re-analyzed from the Impedance tab.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-11 00:21:49 +02:00
micheleandCursor 796cd9d8a2 Flag keepout tracks in the courtyard and mark the plan map OK.
PS-PLC-004 is a foreign net endpoint inside the KiCad courtyard. The lista↔codice table and sprints 0–10+ get an OK column where the hole is closed without invented millimetres.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-11 00:11:02 +02:00
micheleandCursor 412c32e9b2 Measure crystal load-cap and track path against max_distance_mm.
X1 uses the same proximity rule as ICs. A detour is shortest path on PCB segments versus that millimetre, not a guessed loop ratio.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 23:59:01 +02:00
micheleandCursor ba2a5c1b29 Warn when same_layer decoupling is on the opposite copper.
PS-PLC-003 uses the same_layer flag plus F/B layers from the PCB. A via in the courtyard is enough; an unset flag skips.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 23:45:59 +02:00
micheleandCursor 0fafbbbb06 Count thermal vias in the courtyard against min_via_count.
Skip without courtyard geometry or a numeric count — no pad-radius default. Tests use simple_project plus explicit coordinates as parameters.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 23:39:05 +02:00
micheleandCursor 45e820fabc Add PCB intra-pair skew only when the datasheet gives millimetres.
PS-SI-001 and decoupling skip without a numeric layout_rule. Tests use simple_project nets, not invented USBPHY boards.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 23:34:57 +02:00
micheleandCursor be0fed7979 Add PCB decoupling-proximity check from datasheet layout_rules.
PS-PLC-001 fires only with a LayoutGraph: 15 mm vs a 2 mm rule is an error, a 1 mm cap is silent, and a null millimetre uses the declared 3 mm default as WARNING.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 23:26:10 +02:00
micheleandCursor de15402309 Add finding review states, ECO export, and a report release signature.
Accepted findings become ECO rows with a required reason; false-positive and wontfix stay off the change list. Pipeline re-runs keep dispositions by finding_id like comments.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 23:21:36 +02:00
micheleandCursor 6fc2ac583d Integrate ImpedenceFinder closed-form Z0 into the project Impedance tab.
Use the vendored Hammerstad-Jensen/Cohn engine for microstrip, stripline, and coupled-diff advice. Skip OpenEMS/pcbnew and refuse CPWG rather than inventing a number.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 23:14:57 +02:00
micheleandCursor 3e43bb6ecb Force every LLM stage onto DeepSeek and stop Anthropic Console uploads.
PROVIDER_*=anthropic and Claude fallbacks now coerce to DeepSeek, skills stay local, and default_model_version bumps without upload_skills.py.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 22:56:49 +02:00
micheleandCursor 7aed64cae5 Add lifecycle, errata, internal-features, and layout_rules checks.
Cache distributor EOL/NRND/RoHS without inventing replacements, flag catalogued errata pull-ups only, and store layout_rules with a closed kind enum so millimetres stay null unless the datasheet stated a number.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 22:48:27 +02:00
micheleandCursor aa375349bd Add KiCad cad-bridge JSON and an action plugin for finding focus.
Write pinscope-findings.json from the report, keep symbol uuid and child-sheet on the graph, and let the pcbnew plugin jump to a footprint or show the schematic uuid when IPC focus is unavailable.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 22:40:28 +02:00
micheleandCursor 78013bd404 Add power-margin, PG-to-EN sequencing, and DNP enable checks.
Compare only specified IQ plus I_load to Iout_max and series-R drop, flag sequencing only when power_sequence is in specs, and treat DNP as a fitted-variant graph so a missing enable pull is ERROR only when the BOM actually marks DNP.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 22:34:06 +02:00
micheleandCursor a45a06e761 Add schematic filter topology and LDO/resistor thermal checks.
Match RC/LC/π/T without inventing fc, compare to ADC rate only when specs list it, and skip ferrite DCR unless the IC gives a limit. LDO Tj uses I_load not Iout_max, and missing θJA stays INFO.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 22:28:40 +02:00
micheleandCursor 4403c38d96 Add DC-bias C_eff stima to derating and INFO when bulk C has no HF ceramic.
Keep both as labelled estimates: no Murata lot curve and no invented Z(f) target without f_sw.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 22:23:05 +02:00
micheleandCursor 4fca789517 Size I2C pull-ups, flag NRST pull-downs, and distinguish LDO Cout from MCU decoupling.
Keep these as WARNING hints with wide bounds so a 4.7 kΩ or 100 nF VDD cap is not treated as a datasheet µF error.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 22:07:14 +02:00
micheleandCursor e4fd6c3849 Ship Sprint 0 CAD foundations so findings, KiCad hierarchy, BOM match, eval, and optional PCB ingest have a stable contract.
Extend Finding with rule_id/net/pins, flatten multi-sheet .kicad_sch, flag MPN mismatches, score simple_project, and parse .kicad_pcb without running layout DRC.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 21:54:37 +02:00
micheleandCursor d31c04ba86 Record the crystal.crystal taxonomy entry grown on the live instance.
Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 21:03:46 +02:00
micheleandCursor face8ec38d Include queued in ProjectStatus so the replace-files button type-checks.
Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 20:57:52 +02:00
micheleandCursor 61f85f519b Default to DeepSeek V4.1 Flash, show API cost in USD, and re-analyze after replacing BOM and netlist.
V4.1 is natively multimodal so every stage uses deepseek-flash; pricing and the UI now surface dollars instead of empty credits. KiCad netlists and neighborhood fingerprints land in the same cut so a second run can keep the project and skip unchanged ICs.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-10 20:55:35 +02:00
micheleandCursor d454cf75af Tie decoupling and I2C checks to pintable pin names, not mux tables.
Ignore enable straps on a power rail, NC nets, and SPI aliases; treat FB as an inductor and RN as a resistor so pull-ups and beads classify correctly.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 21:00:04 +02:00
micheleandCursor edbb47a08b Resolve passives from catalog, BOM value, and Murata LQW18AN without an LLM.
Skip the model (and the credit gate) when LCSC/DigiKey already list C/V/Z, when the BOM value is a single R/C/L/FB token, or when the MPN is an LQW18AN inductor. Ferrite beads keep impedance, not invented henries; value-only specs stay out of the shared library.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 20:25:34 +02:00
micheleandCursor 2113e3975e Finish datasheet acquisition: more vendors, Mouser, browser download links.
Add Microchip/Murata/Silicon Labs URL tables, optional Mouser search, and suggested URLs on a miss so the wizard can open PDFs in the user's browser when the VPS is blocked.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 19:42:50 +02:00
micheleandCursor 7a255a9807 Treat 3V3_/1V8_ nets as power and ignore SPI pins aliased as SDA/SCL.
Hub Audio pull-ups sit on 3V3_DIGITAL typed as signal, and ADAU/TAC5212 SPI pins list SDA in the name — both produced false I2C/reset warnings.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 17:09:59 +02:00
micheleandCursor b1ee445da8 Add deterministic decoupling, I2C pull-up, and reset-float checks.
Flag supply nets with no cap to ground and open-drain I2C/reset nets with no pull-up, without guessing datasheet capacitor values.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 16:59:32 +02:00
micheleandCursor d6b8b0086c Reconstruct datasheet pages with reading-order blocks and table markdown.
DeepSeek review/extraction was using raw get_text; sparse pin drawings now get vision slots and quote checks share the same page text.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 16:29:52 +02:00
micheleandCursor 6bde06d2cc Harden datasheet downloads and try more manufacturer PDF URLs.
Follow HTML interstitials to a matching .pdf, send a real Referer, retry http as https, and probe TI gpn plus Espressif/ST/ADI/NXP/onsemi paths when LCSC is blocked.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 16:06:38 +02:00
micheleandCursor 53db287ab4 Verify review quotes against datasheet PDF text and extract ESD Vrwm/polarity.
ERROR/WARNING without a real citation are demoted to Unverified so invented topologies like a unidirectional TPD2E007 clamp cannot ship as ERROR.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 15:43:14 +02:00
micheleandCursor 4c54d064d3 Add missing simple_mpn_types on PipelineContext so BOM parse can classify crystals and discretes.
Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 11:09:43 +02:00
micheleandCursor cb001a8bbb Treat KiCad Value/PNM as the IC MPN when the MPN column is empty.
Those 13 U* were in the BOM (TPS22965, TPD2E007, TMP117, …) but never entered ic_mpns, so review skipped them as missing PDFs. Also try the BOM Datasheet URL first.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 10:38:40 +02:00
micheleandCursor 96e2590a3c Detect a dead local pipeline worker after API restart, and flush SSE.
A docker rebuild left HubAudio status=running with no process, so the UI sat on a silent event stream. Persist the worker pid and disable proxy buffering on the SSE response.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 08:50:33 +02:00
micheleandCursor ea43b550ee Send empty-string assistant content to DeepSeek, never null.
content=null is rejected even when tool_calls is set, which 400d the U19 follow-up turn after the first graph query.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 08:46:27 +02:00
micheleandCursor f6eeb73cbf Clear the SSE event log on every worker start, including Retry failed.
Resume reused the previous pipeline_complete, so the UI closed the stream and showed no live log while U19 was still reviewing.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 08:41:16 +02:00
micheleandCursor 66ae877b7b Do not stall Retry failed on re-extraction or serial datasheet lookups.
Resume reuses pintables, skips LCSC/DigiKey before review, and emits a waiting heartbeat so a long DeepSeek turn is visible instead of a freeze.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 08:34:17 +02:00
micheleandCursor a9238875dd Retry DeepSeek thinking-only turns so review does not 400 on U19.
Empty assistant content is still treated as unset; replay a placeholder and retry once with thinking disabled.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 08:15:07 +02:00
micheleandCursor e5e8c42966 Let Reprocess stop a live or stuck running pipeline, then enqueue.
A docker rebuild can leave status=running with no worker; the old 409 blocked retry.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 03:10:16 +02:00
micheleandCursor 90d8d3ed21 Fix TypeScript on optional passive_parts in the admin catalog.
Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 03:04:01 +02:00
micheleandCursor 02d3cfdad7 Restore startPipeline after inserting reprocessPipeline.
The function header was dropped, which left a return at module scope and broke the Next.js build.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 03:00:36 +02:00
micheleandCursor ed75aabaf0 Reject WROOM pintables taken from the bare ESP32 die map.
Module pad 1 is GND; extracting ANT/XTAL as pin 1 made every ground look like a shorted antenna.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 02:55:12 +02:00
micheleandCursor e84418f975 Add Reprocess to retry failed IC reviews without the create wizard.
Successful reviews are kept; skipped ICs such as a DeepSeek 400 are run again. Reprocess all re-reviews every IC while still using the library cache.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 02:37:53 +02:00
micheleandCursor 34bfe33cdf Send empty assistant content when DeepSeek thinks without calling a tool.
A thinking-only turn was replayed as content=null with no tool_calls, which the API rejects with 400 and skipped IC review.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 02:31:42 +02:00
micheleandCursor 08cbbdc422 Show cached passives in the library and match IC PDFs by family MPN.
Decode EIA/Yageo/AVX chip codes into library specs, and find datasheets when the file is stored under the orderable catalog name.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 02:27:27 +02:00
micheleandCursor 3be7d2fc21 Copy library datasheets onto every graph IC before review.
Review skipped U* when the PDF was stored under a catalog MPN or the part was only in the netlist. Lookup now uses spelling variants and aliases.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 02:18:50 +02:00
micheleandCursor 19b4c11f62 Resolve passives from LCSC/DigiKey before PDF pattern extraction.
Series datasheets were stalling extract_pattern on DeepSeek vision; catalog specs are enough for chip R/C/L. Pattern PDF is a 90s fallback only.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 02:15:36 +02:00
micheleandCursor dd46ce1da1 Reuse datasheet family aliases and skip the LLM for catalog passives.
Store BOM MPN and orderable code on the same PDF blob, derive TI datasheet slugs from package/Q1 codes, and map LCSC/DigiKey R/C/L parameters to specs without a model call.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 02:11:49 +02:00
micheleandCursor 27a3ce8bd0 Disable DeepSeek thinking when a tool is forced.
Auto-resolve of passives was 400ing because thinking mode cannot be combined with named tool_choice. Also strip BOM descriptions after an em dash before DigiKey search.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 01:58:22 +02:00
micheleandCursor 776d714754 Match BOM MPNs to longer LCSC/DigiKey orderable codes.
The lookup required an exact catalog string, so family codes like ESP32-S31-WROOM-3 never picked ESP32-S31-WROOM-3-N16R16V and underscore vs slash MPNs never hit DigiKey.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 01:52:49 +02:00
micheleandCursor 946a7a67ab Add packaging so the backend image can boot.
admin_settings imports packaging.version; Docker install from requirements.txt missed it.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-28 01:36:33 +02:00
Cursor Agent 48246f31bd Adapt Pinscope to DeepSeek, auto datasheets, and a shared library.
Based on manvalan/pinscope main. Default LLM is DeepSeek with local
skills and PDF ingest. Datasheets are fetched from LCSC/TI, stored in
the component library, and review extracts abs-max with a deeper
checklist. Adds scripts/update-pinscope.sh for the production host.
2026-08-27 23:06:23 +00:00
michele ab1c5b081c Fix Anthropic skill references and backend git support 2026-07-23 22:13:50 +00:00
michele 2c5d9d31b6 Document changes in fork in README
Added a section detailing the changes made in the fork, including Docker deployment and local support.
2026-07-23 22:51:32 +02:00
787 changed files with 137945 additions and 3488 deletions
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---
alwaysApply: true
---
## PURPOSE
This document defines the mandatory engineering rules for the Periscope project.
These rules are not suggestions.
They define:
* repository structure;
* coding standards;
* architectural principles;
* semantic modeling rules;
* Python/Rust language policy;
* testing requirements;
* verification requirements;
* Git workflow;
* commit/push/deployment policy;
* development-phase discipline.
Cursor must treat these rules as **mandatory project constraints**.
If an implementation conflicts with these rules, the implementation must be changed.
Do not silently relax, bypass, reinterpret, or ignore these rules.
---
# 1. CREATE THE PROJECT RULE STRUCTURE
Create and maintain the following structure:
```text
.cursor/
└── rules/
├── 00-coding-constitution.mdc
├── 10-architecture.mdc
├── 20-python.mdc
├── 30-rust.mdc
├── 40-testing.mdc
├── 50-verification.mdc
└── 60-git-workflow.mdc
docs/
└── development/
└── CODING_CONSTITUTION.md
```
The Markdown document is the human-readable master document.
The `.mdc` files are the operational Cursor rules.
The rules must be version-controlled with the project.
Do not create contradictory rules in different files.
If a conflict exists, resolve the conflict explicitly before continuing development.
---
# 2. CORE PRINCIPLE
## CODE THAT FITS IN YOUR HEAD
This is the fundamental Periscope engineering principle.
> Code must be locally understandable by an engineer without requiring reconstruction of a large hidden abstraction system.
Prefer:
* small modules;
* small functions;
* one responsibility;
* explicit dependencies;
* explicit data flow;
* simple data structures;
* precise names;
* deterministic behavior;
* minimal public APIs;
* composition over inheritance.
Avoid:
* huge functions;
* god classes;
* deep inheritance;
* speculative abstractions;
* hidden state;
* magic behavior;
* global mutable state;
* unnecessary frameworks;
* premature optimization;
* unnecessary indirection.
A function around 4060 lines is a warning signal, not an absolute limit.
The actual rule is local comprehensibility.
A 20-line function can violate the rule if it contains too many responsibilities.
A longer function may be acceptable if its structure remains obvious and justified.
---
# 3. ONE RESPONSIBILITY
Every function and module must have one primary responsibility.
Prefer:
```text
parse
normalize
build model
analyze
produce finding
report
```
Avoid a single function that:
* parses input;
* modifies the model;
* performs analysis;
* accesses external services;
* formats output;
* writes files;
* handles errors;
* and generates reports.
Separate responsibilities.
---
# 4. EXPLICIT DATA FLOW
Periscope must have explicit data flow.
Prefer:
```text
SOURCE
PARSER
NORMALIZED MODEL
ANALYZER
FINDING
REPORT
```
Avoid hidden communication through:
* global variables;
* singleton state;
* implicit registries;
* hidden caches;
* ambient configuration;
* side effects;
* undocumented environment state.
If a function needs important information, that information must be visible in its inputs or clearly owned state.
---
# 5. NO SPECULATIVE ABSTRACTION
Do not introduce an abstraction merely because it might become useful later.
Do not create unnecessary:
* factories;
* generic managers;
* service layers;
* repository layers;
* plugin systems;
* inheritance hierarchies;
* generic object wrappers;
* framework-like internal infrastructure.
Implement the actual requirement first.
Abstract only when there is a concrete and demonstrated reason.
---
# 6. COMPOSITION OVER INHERITANCE
Prefer composition.
Avoid deep class hierarchies.
Inheritance must have a clear semantic reason.
Do not use inheritance merely to share a few methods.
---
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---
alwaysApply: true
---
# 7. DETERMINISTIC CORE
The verification core must be deterministic.
For the same:
```text
input
+
configuration
+
source data
```
Periscope must produce the same:
```text
model
calculations
findings
```
Do not make deterministic verification dependent on:
* LLM output;
* prompts;
* randomness;
* execution order;
* hidden state;
* uncontrolled external state.
---
# 8. LLM ROLE
LLMs may be used for:
* extraction;
* classification;
* datasheet interpretation;
* explanation;
* hypothesis generation;
* assistance.
LLMs must not be the authoritative deterministic verification engine.
The intended architecture is:
```text
SOURCE
STRUCTURED REQUIREMENT
DETERMINISTIC ANALYZER
FINDING
OPTIONAL LLM EXPLANATION
```
Not:
```text
SOURCE
LLM
probably wrong
```
---
# 9. EVIDENCE BEFORE CONCLUSION
Every engineering conclusion must be traceable to evidence.
Where applicable, preserve:
```text
observed fact
requirement
source
calculation
assumption
conclusion
confidence
severity
```
Do not silently transform assumptions into facts.
---
# 10. REQUIREMENT STRENGTH
Requirements must preserve their strength.
Use:
```text
MANDATORY
RECOMMENDED
TYPICAL
EXAMPLE
ENGINEERING_INFERENCE
```
Do not convert:
```text
RECOMMENDED
```
into:
```text
MANDATORY
```
Do not convert an example into an absolute rule.
Do not convert an engineering inference into documented manufacturer information.
---
# 11. SEVERITY AND CONFIDENCE ARE INDEPENDENT
A finding must be able to represent independent:
```text
severity
confidence
```
Examples that are valid:
```text
ERROR + LOW confidence
RISK + HIGH confidence
```
Do not use confidence as a substitute for severity.
---
# 12. INSUFFICIENT EVIDENCE
If the available information is insufficient to establish a conclusion:
```text
INSUFFICIENT_EVIDENCE
```
must be used.
Never invent missing engineering information.
Never invent:
* electrical limits;
* timing values;
* pin functions;
* voltages;
* currents;
* tolerances;
* PCB rules;
* thermal limits;
* datasheet requirements.
Missing evidence is not permission to guess.
---
# 13. SEMANTIC MODEL FIRST
Periscope must preserve domain semantics.
At minimum, distinguish concepts such as:
```text
Project
Component
Pin
Footprint
Pad
Net
Via
Track
Zone
PowerRail
SignalGroup
TimingEvent
Requirement
Constraint
DesignIntent
Evidence
Finding
```
Do not collapse semantically different physical objects into one generic object merely because they share coordinates, nets, or attributes.
---
# 14. SEMANTIC IDENTITY MUST SURVIVE TRANSFORMATIONS
A transformation must preserve the semantic identity of objects.
For example:
```text
PCB Via
```
must never become:
```text
Component Pad
```
merely because:
* it is close to a footprint;
* it is inside a footprint area;
* it is connected to GND;
* it shares a net;
* it has coordinates similar to a pad.
Similarly:
```text
Pad ≠ Via
Track ≠ Via
Zone ≠ Pad
Component Pin ≠ PCB Via
```
This is a fundamental Periscope rule.
---
# 15. ROOT CAUSE OVER SYMPTOM
When a false positive or incorrect result is discovered:
Do not simply suppress the finding.
Determine where the representation first becomes incorrect.
Example:
```text
PCB
parser
incorrect model
correct analyzer operating on incorrect model
incorrect finding
```
The fix belongs in the model/parser boundary, not necessarily in the analyzer.
Always investigate the complete chain:
```text
source
→ parser
→ normalized representation
→ semantic model
→ analyzer
→ finding
→ report
```
---
# 16. NO COMPONENT-SPECIFIC HACKS
Do not fix architecture problems with:
```text
if component == U1
```
or:
```text
if footprint == X
```
or:
```text
if net == GND
```
or hard-coded corrections such as:
```text
subtract N
ignore N
force expected count
```
unless the condition represents a genuine documented engineering rule.
A bug in generic PCB semantics must receive a generic semantic fix.
---
# 17. PHYSICAL SEMANTICS
Periscope is an electronic design verification system.
Its internal model must reflect physical reality.
Geometric proximity does not establish semantic identity.
For example:
```text
Via located inside footprint
```
does not imply:
```text
Via belongs to component as a pad
```
unless the PCB data model explicitly establishes that relationship.
Do not infer component relationships solely from proximity when stronger source information exists.
---
# 18. UNITS MUST BE EXPLICIT
Use explicit units.
Prefer:
```text
width_mm
delay_ns
frequency_hz
voltage_v
current_a
temperature_c
```
over ambiguous variables such as:
```text
width
delay
value
limit
```
when unit ambiguity is possible.
Never rely on undocumented implicit units.
---
# 19. NAMED CONSTANTS
Avoid magic numbers.
Prefer:
```text
MIN_SUPPLY_V
MAX_TRACE_LENGTH_MM
DEFAULT_SPI_CLOCK_HZ
```
over unexplained numeric literals.
Engineering constants must have traceable sources where appropriate.
---
# 20. ERROR CATEGORIES
Distinguish:
```text
tool failure
data failure
analysis result
insufficient evidence
engineering violation
```
Do not collapse fundamentally different failure modes into one generic error.
---
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---
alwaysApply: true
---
# 32. PYTHON IS THE DEFAULT LANGUAGE
Python is the default implementation language for Periscope.
Use Python for:
* orchestration;
* datasheet processing;
* document parsing;
* LLM integration;
* requirement extraction;
* evidence management;
* project management;
* CLI;
* API integration;
* reporting;
* test orchestration;
* external tool integration;
* high-level analysis.
Do not rewrite Python into Rust merely because Rust exists in the project.
---
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---
alwaysApply: true
---
# 33. RUST IS NOT A DEFAULT
Rust must not be introduced simply because code is new.
Rust is justified only when there is a demonstrated engineering requirement.
Valid reasons include:
* measured performance bottleneck;
* computationally intensive geometry;
* large-scale spatial processing;
* numerical computation;
* graph processing;
* memory pressure;
* deterministic high-performance computation.
Do not use Rust speculatively.
---
# 34. MEASURE BEFORE MOVING TO RUST
Required sequence:
```text
correct implementation
measurement
profiling
identified bottleneck
Rust implementation
benchmark
accept/reject based on evidence
```
Do not introduce Rust based on assumptions about performance.
---
# 35. RUST BOUNDARIES MUST BE COARSE-GRAINED
Prefer:
```text
Python
structured input
Rust engine
structured result
Python
```
Avoid excessive Python ↔ Rust calls for individual operations.
Rust should encapsulate meaningful computational workloads.
---
# 36. DO NOT PREMATURELY FREEZE THE CORE IN RUST
The semantic model should first become correct and well understood.
Prefer:
```text
semantic model
correctness
tests
architecture stabilization
profiling
Rust where justified
```
Do not rewrite the entire Periscope core in Rust simply to establish a Rust architecture.
---
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@@ -0,0 +1,147 @@
---
alwaysApply: true
---
# 21. TESTING IS MANDATORY
Every meaningful implementation change requires tests.
At minimum test:
```text
normal case
failure case
boundary case
insufficient evidence
```
For semantic models, also test the boundaries between object types.
For PCB analysis, explicitly test:
```text
Pad
Via
Track
Zone
```
as distinct semantic entities.
---
# 22. TESTS MUST BE STRICT AND ABSOLUTE
Periscope tests are not advisory.
A test must define the exact expected behavior.
Do not use vague assertions such as:
```text
result is reasonable
result is not empty
analysis completed
```
when an exact result can be established.
Prefer assertions such as:
```text
expected object type == Via
expected pad count == 24
expected finding count == 0
expected finding code == X
expected severity == ERROR
expected confidence == HIGH
```
Where deterministic exact values are available, test them exactly.
Do not weaken tests merely to make an implementation pass.
Do not modify expected results to accommodate incorrect implementation behavior.
---
# 23. REGRESSION TEST FOR EVERY BUG
Every fixed bug must become a regression test.
Required sequence:
```text
BUG
REPRODUCE
TEST FAILS
FIX
TEST PASSES
FULL REGRESSION
```
A bug fix is not complete until the original failure is permanently represented by a test.
---
# 24. TEST THE NEGATIVE CASE
Do not test only:
```text
valid → pass
```
Also test:
```text
invalid → fail
```
and ensure that genuine errors remain detectable.
For example, if fixing:
```text
24 datasheet pins
24 footprint pads
N vias
```
verify that:
```text
24 datasheet pins
23 footprint pads
```
still produces a real mismatch.
The fix must remove false positives without suppressing true positives.
---
# 26. NO WEAKENING TESTS TO CLOSE A PHASE
Do not:
* delete failing tests;
* weaken assertions;
* skip tests;
* mark tests expected-to-fail;
* suppress failures;
* change expected values without engineering justification;
simply to make a macro-phase pass.
If a test exposes a real implementation problem, fix the implementation.
If the requirement itself is wrong, change the requirement explicitly and document why.
---
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@@ -0,0 +1,245 @@
---
alwaysApply: true
---
# 37. CORRECTNESS BEFORE PERFORMANCE
Priority order:
```text
1. Correctness
2. Semantic integrity
3. Determinism
4. Testability
5. Readability
6. Maintainability
7. Performance
8. Optimization
```
Performance optimization must not compromise the first six without explicit justification.
---
# 38. MINIMAL PUBLIC APIs
Public APIs must be as small as practical.
Do not expose internal implementation details unnecessarily.
Prefer explicit interfaces.
Avoid API surface growth without a real requirement.
---
# 39. NO DEAD CODE
Remove or explicitly document:
* obsolete code;
* commented-out implementations;
* unused imports;
* unused abstractions;
* obsolete APIs;
* temporary workarounds.
Temporary adapters must be clearly identified and have a removal path.
---
# 40. COMMENTS
Comments should explain:
```text
WHY
```
rather than simply:
```text
WHAT
```
Do not comment obvious code.
Do document:
* non-obvious engineering decisions;
* semantic constraints;
* source-specific behavior;
* intentional limitations;
* reasons for unusual algorithms;
* compatibility constraints.
---
# 41. CHANGE MINIMIZATION
For bug fixes:
1. reproduce the problem;
2. locate root cause;
3. change the smallest appropriate architectural layer;
4. add regression test;
5. run relevant tests;
6. run full regression;
7. review the resulting design.
Do not combine unrelated refactoring with a bug fix unless necessary.
---
# 42. NO SPECULATIVE ENGINEERING
Do not invent engineering rules.
Every rule should be based on one of:
```text
documented requirement
datasheet/source evidence
standard
explicit design intent
validated engineering inference
```
If evidence is insufficient:
```text
INSUFFICIENT_EVIDENCE
```
---
# 43. DESIGN INTENT IS FIRST-CLASS
Do not assume that every unusual design decision is an error.
Periscope must be able to represent:
```text
INTENTIONAL_DESIGN
```
when the evidence supports that interpretation.
The system must distinguish:
```text
actual violation
intentional design
engineering observation
insufficient evidence
```
---
# 44. FINDING CATEGORIES
Findings may include:
```text
ERROR
RISK
REFERENCE_DEVIATION
ENGINEERING_OBSERVATION
INTENTIONAL_DESIGN
INSUFFICIENT_EVIDENCE
```
Do not collapse all deviations into ERROR.
Severity and confidence remain independent.
---
# 45. REVIEW QUESTIONS BEFORE COMPLETING ANY CHANGE
Before declaring a change complete, Cursor must verify:
```text
Is the implementation correct?
Is the root cause fixed?
Is the semantic model correct?
Is the data flow explicit?
Can the code fit in my head?
Is any abstraction unnecessary?
Is there hidden state?
Are units explicit?
Are engineering constants named?
Are assumptions distinguished from facts?
Are tests strict?
Are negative cases tested?
Are boundary cases tested?
Is insufficient evidence tested?
Could this change create a false positive?
Could this change suppress a true positive?
Is the full regression passing?
Is documentation updated?
Is the macro-phase actually complete?
```
---
# 46. FINAL ENGINEERING PRINCIPLE
Periscope must not become a clever software system.
It must become a:
```text
CORRECT
DETERMINISTIC
SEMANTICALLY ACCURATE
TESTABLE
TRACEABLE
READABLE
MAINTAINABLE
ENGINEERING SYSTEM
```
The preferred implementation is the simplest one that satisfies those properties.
When two implementations are technically correct, prefer the one with:
* fewer abstractions;
* fewer dependencies;
* less hidden state;
* clearer data flow;
* smaller modules;
* smaller APIs;
* easier testing;
* easier debugging;
* clearer semantics.
The governing principle is:
> **CODE THAT FITS IN YOUR HEAD.**
And the governing development discipline is:
> **NO PHASE IS COMPLETE UNTIL ITS TESTS PROVE IT.**
And the governing repository discipline is:
> **COMMIT AND PUSH AT THE PHASE BOUNDARY AFTER TESTS; DEPLOY ONLY AFTER A MACRO-PHASE.**
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---
alwaysApply: true
---
# 25. PHASE GATES
Development is divided into macro-phases.
A macro-phase is not complete until:
1. implementation is complete;
2. all required tests exist;
3. all required tests pass;
4. full regression passes;
5. relevant integration tests pass;
6. static/type/lint checks pass where applicable;
7. no known blocker remains;
8. documentation is updated;
9. results have been reviewed;
10. the phase acceptance criteria are satisfied.
Only then is the macro-phase considered complete.
---
# 27. PHASE COMMIT AND PUSH POLICY
Do not commit after every small implementation step merely for convenience.
During a **phase**:
```text
implement
→ test
→ fix
→ test
```
The repository may contain intermediate working-tree changes.
At the **end of each phase**, after tests pass:
```text
PHASE TESTS
COMMIT
PUSH
```
Commit and push belong to the **phase** boundary, not to every edit.
Do not push broken or half-completed phase work merely to synchronize the repository.
---
# 28. MACRO-PHASE DEPLOY POLICY
**Deploy** happens only after a **macro-phase**, not after every phase.
A macro-phase may contain several phases (each already committed and pushed after its tests).
Never deploy an incomplete macro-phase.
Required sequence for a macro-phase:
```text
PHASES (each: implement → test → commit → push)
FULL REGRESSION
MACRO-PHASE ACCEPTANCE
DEPLOY
POST-DEPLOY VERIFICATION
```
If deployment verification fails, stop and investigate.
---
# 29. NO DEPLOY AT PHASE BOUNDARY
Commit + push after phase tests: **yes**.
Deploy after a phase that is not a completed macro-phase: **no**.
---
# 30. NO AUTOMATIC COMMIT/PUSH/DEPLOY DURING DEVELOPMENT
Cursor must not create commits, push, or deploy merely because a small task has finished.
Commit and push are **phase-boundary** operations (after tests).
Deploy is a **macro-phase-boundary** operation.
If explicitly instructed to deploy before a macro-phase is complete, Cursor must identify the conflict with this policy rather than silently proceeding.
---
# 31. GIT HISTORY IS ENGINEERING EVIDENCE
Do not rewrite Git history casually.
Do not:
* force-push;
* squash history;
* rewrite commits;
* detach repository history;
unless explicitly required by the project phase and explicitly authorized.
Git history may be relevant to provenance and licensing analysis.
Preserve it.
---
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@@ -11,3 +11,10 @@ data/
.claude/plans/
.claude/memory/
simple_project/
periscope/dependency/frontend/public/faradworks-logo-white.png
periscope/dependency/frontend/public/power-tree.gif
periscope/dependency/frontend/public/file.svg
periscope/dependency/frontend/public/globe.svg
periscope/dependency/frontend/public/next.svg
periscope/dependency/frontend/public/vercel.svg
periscope/dependency/frontend/public/window.svg
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@@ -14,20 +14,20 @@ jobs:
with:
python-version: "3.12"
cache: pip
- run: pip install -r backend/requirements.txt pytest pytest-asyncio
- run: pip install -r periscope/src/backend/requirements.txt pytest pytest-asyncio
- run: pytest tests/ -q
frontend:
runs-on: ubuntu-latest
defaults:
run:
working-directory: frontend
steps:
- uses: actions/checkout@v4
- uses: actions/setup-node@v4
with:
node-version: 22
cache: npm
cache-dependency-path: frontend/package-lock.json
cache-dependency-path: periscope/src/frontend/package-lock.json
- run: chmod +x scripts/materialize-frontend.sh && scripts/materialize-frontend.sh
- run: npm ci
working-directory: .merge/frontend
- run: npm run build
working-directory: .merge/frontend
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@@ -49,10 +49,10 @@ skills-lock.json
data/
backend/data/
# Frontend
frontend/node_modules/
frontend/.next/
frontend/out/
.merge/
periscope/dependency/frontend/node_modules/
periscope/dependency/frontend/.next/
periscope/src/frontend/.next/
.next/
# retrospective
@@ -61,3 +61,10 @@ frontend/out/
# Local-only sample inputs (client schematics, test files)
edif-files/
# Cloud agent scratch
agent-tools/
# Licensed protocol PDFs — keep on disk as the local archive; do not commit binaries
standards/protocol-specs/*.pdf
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@@ -1,149 +1,15 @@
# Pinscope — Agentic Schematic Validation
# Periscope — Agentic Schematic Validation
Pinscope validates hardware schematics against component datasheets. It extracts constraints from PDFs, parses netlists and BOMs into a queryable graph, and runs an agentic validation loop to flag design violations.
> **Open-core note.** This is the open-source core. A small set of files are
> "gateway-owned seams" — pass-through stubs here (`frontend/src/proxy.ts`,
> `use-optional-auth.ts`, `clerk-theme-provider.tsx`,
> `components/billing/*`, `sidebar-auth.tsx`, `pricing-section.tsx`,
> `analytics/*`, `lib/csp-hosts.ts`) that the hosted-cloud repo replaces
> with auth/billing implementations. Keep their export signatures stable,
> and never import auth/billing SDKs anywhere else in the frontend. On the
> backend, everything reaches billing only through
> `backend/services/billing_hook.py:get_billing()` (a no-op here).
## System Overview
Three layers:
| Layer | Location | Purpose |
|-------|----------|---------|
| **Core library** | `backend/pinscopex/` | Models, parsers, graph builder, agentic validator, passive resolver, taxonomy, BOM summary, derating |
| **Backend** | `backend/` | FastAPI app — async pipeline orchestration, SSE progress, project/file storage |
| **Frontend** | `frontend/` | Next.js 16 app — project dashboard, pipeline progress, report viewer, derating, admin dashboard |
Plus `skills/` — Claude Console Skills for datasheet extraction (pintable, patterns, specs).
The pipeline stages: Parse BOM → Extract IC Pintables → Extract Simple Components → Extract Passives → DigiKey Auto-Resolve + Value Fallback → Build Graph → Direct Datasheet Review. Pipeline runs can be cancelled mid-execution via `POST /api/pipeline/{id}/cancel`.
## Example Project
`simple_project/` is the reference design for development and testing:
- **MCU**: TI MSPM0G3507SPTR (U3) — 48-pin LQFP
- **USB-UART Bridge**: CH340E (U2)
- **LDO Regulator**: SPX3819M5-L-3-3 (U1) — 5V to 3.3V
- **ESD Protection**: USBLC6-2SC6 (D1)
- **Crystal**: 8 MHz (X1) with 18pF load caps (C9, C10)
Files: `.asc` (PADS-PCB netlist; `.edn` EDIF 2.0.0 also accepted), `.csv`/`.xlsx` (BOM), `design_graph.json` (committed reference fixture used by tests).
## Architecture Principles
- **Modular extractors** — Domain-specific extraction per component type, unified constraint schema
- **Netlist as graph** — Queryable bipartite graph (components + nets) with traversal helpers
- **Claude API for PDF extraction** — Forced tool calls for structured output (pintable, passive patterns, specs)
- **Prompt caching** — Extraction and review API calls use `cache_control={"type": "ephemeral"}` on system prompts and input context to reduce cost on repeated calls
- **Claude Console Skills** — Extraction prompts deployed as managed skills; skill_ids and versions loaded from `backend/skills_manifest.json` (upload your own via `scripts/upload_skills.py`)
- **Direct datasheet review** — Claude reads the IC datasheet PDF and circuit neighborhood together, compares to reference application circuit, and flags issues via graph query tools (`find_connected_components`, `get_net_for_pin`, `get_pintable`)
- **Datasheet page trimming** — Large PDFs are keyword-trimmed to relevant pages before sending to Claude, reducing token cost (`pypdf`)
- **DigiKey fallback (exact MPN only)** — When pattern-based and direct extraction fail, DigiKey API fetches product parameters for auto-resolve. DigiKey matches only on exact MPN; fuzzy hits are rejected to avoid polluting the shared library with wrong-dielectric / wrong-voltage parts.
- **Value-string fallback** — When DigiKey misses an R/C/L/FB passive, a value-string resolver maps the BOM `Value` string to typed passive specs. Value-derived specs are persisted per-project only — never to the shared library.
- **Per-IC review error isolation** — Direct datasheet review runs each IC independently; one malformed payload or bad response cannot kill the whole run. Failed ICs surface as skipped components with the error.
- **Cross-IC excerpt budget (per-neighbor)** — To verify an interface finding the reviewer can pull a *connected* IC's datasheet pages (`get_datasheet_excerpt`). The budget is a global per-review page ceiling **plus a per-neighbor sub-budget**, so verifying one interface is never starved by pages already spent on other neighbors.
- **Finding normalization is downgrade-only** — A post-review per-IC normalize pass (`services/normalize_findings.py`) drops self-cancelling findings, merges same-root-cause findings, and re-grades severity — but only ever *downward*. A deterministic clamp caps each finding at the reviewer's calibrated severity (and any `Unverified:` finding at WARNING, preserving the prefix).
- **Cross-IC finding dedup** — After all per-IC reviews complete, a single pass (`services/dedupe_findings.py`) collapses one physical interface defect reported from both endpoints into a single finding. Gated by `cross_ic_dedup_enabled`; fail-soft.
- **Capacitor voltage derating** — Deterministic derating table computed from graph (ceramic/tantalum/electrolytic percentages, pass/fail per capacitor)
- **Deterministic checks over heuristics** — Exact checks where possible
- **Zero coupling between layers** — Backend calls pinscopex functions with paths; frontend talks to backend via REST + SSE
- **Library deduplication** — Shared library (`library/extracted/`, `library/patterns/`, `library/models/`, `library/passives/`, `library/datasheets/`) caches extractions across projects
- **Content-addressed datasheets** — `library/datasheets/blobs/{md5}.pdf` stores unique PDFs once; `library/datasheets/refs/{safe_mpn}.json` maps MPNs to blobs (dedupe + multi-MPN sharing)
- **Taxonomy-driven extraction** — Living component taxonomy (`taxonomy/`) with per-subtype classification and specs schemas
- **Per-stage model config** — Each pipeline stage can use a different Claude model (e.g., Sonnet for review, Haiku for auto-resolve)
- **API call logging** — Every Claude API call is logged with token counts, cost, and timing per pipeline run
- **Report versioning** — Each project run is stamped with the current app version on the first `/start` transition (`ProjectMeta.pinscope_version`). The version comes from `frontend/content/changelog.md`'s latest `##` heading — single source of truth — read at backend startup via `backend/_version.py`.
## Datasheet Extraction
Extracted data lives in `library/extracted/` (shared) or per-project under the storage backend. One JSON per MPN, schema in `backend/pinscopex/models.py`.
Per-MPN IC extraction captures:
1. **Pintable** — Pin number + name (required), description + alt functions (optional)
2. **Package info** — Base family, package, pin count, description
3. **Component subtype** — Dotted taxonomy path (e.g., `ic.mcu`, `ic.power.ldo`)
For discrete/simple components:
4. **Specs** — Component specs (value, tolerance, package, voltage rating, etc.); parameters are filtered against taxonomy specs schemas
Extraction uses **Claude Console Skills** (required, via `skill_id` in `backend/skills_manifest.json`). No inline fallback — raises error if skill not configured. Skills are defined in `skills/` and uploaded via `scripts/upload_skills.py` — run it once against your own Anthropic Console account to populate the manifest with your skill IDs.
## Claude Console Skills
```
skills/
├── extract-pintable/ # Pin table + package info + taxonomy
│ ├── SKILL.md # System prompt (YAML frontmatter + markdown)
│ ├── schema.json # Tool output schema
│ └── validate.py # Validation script
├── extract-pattern/ # Passive MPN pattern
└── extract-specs/ # Component specs (discrete, connectors, crystals, etc.)
```
## Taxonomy
Living component taxonomy in `taxonomy/` — one JSON file per top-level type (ic, passive, connector, crystal, discrete, fuse, switch, test_point, transformer). Each subtype entry includes `description` and `example_mpn`.
Key taxonomy features:
- **Ref prefix mapping** — `U→ic`, `R/C/L→passive`, `D/Q→discrete`, `X→crystal`, etc.
- **Dotted subtype paths** — e.g., `ic.mcu`, `passive.capacitor.ceramic`, `ic.protection.esd`
- **Dynamic growth** — `add_subtype()` adds new entries; concurrent-safe JSON writes
- **Specs schema auto-generation** — Type-level and subtype-level parameter specs schemas are auto-generated via Claude when a taxonomy entry has none; extraction discards parameters not in the schema (`extra_specs` field)
## Scripts
- `scripts/upload_skills.py` — Create, update, or list Claude Console Skills. Reads/writes skill IDs to `backend/skills_manifest.json`
- `scripts/migrate_datasheets_to_library.py` — One-time migration: copy per-project datasheets to `library/datasheets/` (dry-run by default, `--apply` to execute)
- `scripts/migrate_datasheets_to_blobs.py` — Migrate named-PDF datasheets into the content-addressed blobs/refs layout (dry-run by default, `--apply` to execute)
- `scripts/dedup_library_datasheets.py` — Remove redundant per-MPN datasheet PDFs when a passive pattern already has a `datasheet_key` (dry-run by default, `--apply` to execute)
- `scripts/gc_orphan_blobs.py` — Garbage-collect `library/datasheets/blobs/*.pdf` not referenced by any ref file
- `scripts/clear_rules_from_extractions.py` — Strip deprecated `rules`/`absolute_maximum_ratings` from existing library extractions
## Tech Stack
- **Core**: Python 3.12+, Pydantic 2.x, Anthropic SDK (async + sync), openpyxl (XLSX BOM support), pypdf (datasheet page trimming)
- **Backend**: FastAPI, uvicorn, sse-starlette, pydantic-settings
- **Frontend**: Next.js 16 (App Router, Turbopack), React 19, Tailwind CSS v4, shadcn/ui (Base UI), react-pdf
- **AI**: Claude API with forced tool calls for extraction, direct datasheet review for validation
- **Model**: `claude-sonnet-4-6` default for extraction and review, `claude-haiku-4-5` for DigiKey auto-resolve and passive value fallback (per-stage overrides via `.env`)
- **Skills**: Claude Console Skills API for managed extraction prompts (3 active skills: pintable, pattern, specs)
- **External APIs**: DigiKey API v4 (OAuth2) — optional datasheet auto-fetch and parameter-based auto-resolve (`DIGIKEY_CLIENT_ID`, `DIGIKEY_CLIENT_SECRET`)
## Extracted Model Versioning
All `ComponentConstraints` extracted JSON files carry a `model_version` semver field:
- **Initial value** — set from `default_model_version` in `backend/skills_manifest.json` (starts at `1.0.0`)
- **Minor bump** — `default_model_version` in `skills_manifest.json` is incremented by `scripts/upload_skills.py --update`, so all new extractions after a skill update start at the new minor (e.g. `1.0.0``1.1.0`)
**Rule**: When committing or pushing changes under `skills/`, run `python3 scripts/upload_skills.py --update` before the commit/push to sync skill versions and bump `default_model_version`.
## Development Guidelines
- Write tests against `simple_project/` — it's the ground truth
- Netlist parser and BOM parser are pure functions with no side effects
- All data structures use Pydantic models in `backend/pinscopex/models.py`
- Frontend types in `frontend/src/lib/types.ts` must stay in sync with `backend/pinscopex/models.py`
- Extraction prompts live in `skills/` as Claude Console Skills (SKILL.md + schema.json + validate.py)
- **Never swallow exceptions silently** — prefer logging or re-raising over bare `except: continue`. Silent failures hide real bugs.
Open-core checkout. **Native code** lives in `periscope/src`. **Inherited PinScope** lives in `periscope/dependency` (in-tree AGPL dependency — do not delete). Root `LICENSE` is AGPL-3.0.
## Running
```bash
# Backend (copy backend/.env.example to .env at repo root first)
python3 -m uvicorn backend.main:app --reload # localhost:8000
# Backend (copy periscope/dependency/backend/.env.example to .env at repo root first)
python3 -m uvicorn backend.main:app --reload # localhost:8000
# Frontend
cd frontend && npm run dev # localhost:3000
cd periscope/dependency/frontend && npm run dev # localhost:3000
```
Local mode needs no cloud services and no auth — projects are stored in `data/` and you are `user_id="local"` with admin access.
See `periscope/README.md` and root `README.md`.
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@@ -1,49 +1,117 @@
# Pinscope
# Periscope
Pinscope reviews schematics the way a good senior engineer does: with the datasheets open.
Periscope is full **PCB analysis** for a board you intend to send to fab with confidence. Schematic review is a stage, not the deliverable.
<img width="1912" height="1080" alt="pinscope-screenrecording" src="https://github.com/user-attachments/assets/7e9e4002-08df-423f-93c9-eefd52e88700" />
Give it a netlist, a BOM, datasheet PDFs, and a KiCad PCB. It builds a queryable graph of the design, extracts manufacturer constraints into a shared library, then checks both the circuit and the copper: pads, tracks, vias, zones, measured geometry, and the interfaces that are actually on **this** board.
Live: [https://periscope.michelebigi.it](https://periscope.michelebigi.it)
Version: **2.87.2** (see `periscope/src/frontend/content/changelog.md`)
Operator: Michele Bigi
Give it a netlist, a BOM, and your datasheet PDFs. It builds a graph of your design, reads each IC's datasheet, and checks the circuit around every part against what the manufacturer actually specifies — reference application, pin functions, absolute maximums, recommended operating conditions. Every finding points at the datasheet page that backs it up, so you can judge the call yourself instead of trusting a black box.
## What you get
The reason it exists: ERC passes boards that don't work. Your EDA tool has no idea that the CH340E you powered from 5 V drives its TXD at 4.5 V into an MCU pin that maxes out at 3.6 V, or that the net you labeled `UART5_TX` lands on a pin whose alternate-function table only offers `UART5_RX`, or that the LDO's bypass pin you left floating costs you an order of magnitude in output noise. None of that is an electrical *rule* violation. All of it is in the datasheet, and nobody has time to re-read 400 pages per part on every revision.
- **PCB + schematic review** — same finding object for `MODE=run` (schematic) and `MODE=pcb` (layout). Findings keep FACT, REQUIREMENT, and INFERENCE apart.
- **Protocol-aware certification** — gated on parts that are present. USB 2.0 D+/D (pair Z vs packed 90 Ω), Ethernet MDI / RJ45, and MACPHY buses (RMII / MII / RGMII / SGMII) with catalog cites from packed specs. Missing evidence is silence or `not certified — because …`, not invented ohms or timing.
- **Findings tree** — Error / Warning / Info first, then domains, rules, Certifications, and Protocols. Report export is **Save as Markdown** (`.md`).
- **Apple / iPad-style shell** — thin top bar, tab navigation, light theme by default, dark mode in Settings.
## How it works
## What it will not invent
<p align="center">
<img src="docs/how-it-works.svg" width="920" alt="Pipeline: the netlist and BOM are parsed into a design graph; datasheet PDFs are extracted into pin tables and specs; a per-IC review reads both and files findings cited to datasheet pages; the derating table and BOM roll-up are computed straight from the graph, no model involved.">
</p>
**Semantic objects stay distinct.** A via is not a pad. A track is not a via. A zone is not a pad. Sharing a net or sitting inside a courtyard does not change the object type.
1. **Parse** the BOM (CSV/XLSX) and netlist (PADS-PCB `.asc` or EDIF 2.0.0 `.edn` — exportable from KiCad, Altium, OrCAD, Allegro, Xpedition, EasyEDA, Eagle) into a queryable bipartite graph of components and nets.
2. **Extract** pin tables and specs from the PDFs. Large datasheets are trimmed to the relevant pages first, and every extraction is cached in a shared library, so a given part number is only ever processed once.
3. **Review** each IC in isolation. The model gets the trimmed datasheet plus that IC's circuit neighborhood, can query the graph (`find_connected_components`, `get_net_for_pin`, `get_pintable`) and pull pages from a *connected* part's datasheet when a finding spans an interface. It files findings with severity, reasoning, and page citations.
4. **Compute** the deterministic parts deterministically — BOM roll-up and a capacitor voltage-derating table come straight from the graph, no model involved.
**Evidence before conclusion.** If the datasheet, netlist, BOM, or `.kicad_pcb` does not supply the number, Periscope records `INSUFFICIENT` (or skips). It does not invent current, impedance, copper weight, geometry, or “typical” bus amps.
A post-pass normalizes findings conservatively: it can merge duplicates and downgrade severity, never upgrade. If the reviewer hedged, the report hedges.
**Trace current uses datasheet current only.** Width versus load (`PE-PWR`) runs when the part reports `I_load` / `Imax` / `I_abs`. Missing that current is a skip.
It's a reviewer, not an oracle. It misses things, and it will occasionally question a choice you made on purpose — that's what the citations are for.
**Certifiers are gated on parts that are present.** No USB-C receptacle → no USB-C findings. A bare RJ45 is Ethernet, not PoE. RMII PHYMAC nets are not treated as RJ45/MDI 100 Ω pairs. Recognition alone is not certification.
## Try it on the bundled design
Periscope does **not** claim FEM, thermal spreading, OpenEMS, or a field solver. Closed-form Z0 comes from vendored ImpedenceFinder (`vendor/impedancefinder/`; upstream license UNKNOWN).
`simple_project/` is a small MSPM0G3507 board with a CH340E USB-UART bridge and an SPX3819 LDO. Run it through and Pinscope flags, among other things, the LDO's bypass pin left unconnected (~300 µV<sub>RMS</sub> output noise instead of ~40) and the 5 V-powered CH340E driving the 3.3 V MCU directly — each with the page reference to check its work.
## Repository layout
You need Python 3.12+, Node 20+, and an [Anthropic API key](https://console.anthropic.com/):
| Path | Role |
| --- | --- |
| `periscope/src/` | Product code — finding engine, PCB/placement, protocol catalog, DeepSeek pipelines, Next.js UI, Dockerfiles, KiCad plugin |
| `periscope/dependency/` | Shared AGPL overlays (parsers, extraction shell, UI primitives) merged at build/runtime — do not delete |
| `backend/__init__.py` | Merges the two `backend` packages for local imports |
| `standards/protocol-specs/` | On-disk protocol PDF archive (PDFs gitignored; `INDEX.md` committed) |
| `scripts/` | `update-periscope.sh`, `materialize-frontend.sh`, smoke wrapper |
| `vendor/impedancefinder/` | Third-party Z0 core (not FEM) |
| `LICENSE` | GNU AGPL v3 |
See `periscope/README.md` for the physical split.
## Run locally
Python 3.12+, Node 20+, and a [DeepSeek API key](https://platform.deepseek.com/) for live extraction and review. Offline graph/smoke does not need the key.
```bash
pip install -r backend/requirements.txt
cp backend/.env.example .env # set ANTHROPIC_API_KEY
python3 scripts/upload_skills.py --update # one-time: registers the extraction prompts under your account
python3 -m uvicorn backend.main:app --reload
cd frontend && npm install && npm run dev
python3 -m venv .venv
source .venv/bin/activate
pip install -r periscope/src/backend/requirements.txt
cp periscope/src/backend/.env.example .env # set DEEPSEEK_API_KEY
python3 -m uvicorn backend.main:app --reload --host 127.0.0.1 --port 18741
```
Open http://localhost:3000, create a project, and feed it the netlist and BOM from `simple_project/` plus datasheet PDFs for the ICs — grab those from the manufacturers, or set the optional DigiKey API keys and let it fetch them. Everything runs locally against your own key; projects and the extraction library live in `data/`. Architecture notes are in [CLAUDE.md](CLAUDE.md).
Frontend — materialize the UI tree, then start Next.js:
## Hosted version
```bash
./scripts/materialize-frontend.sh
cd .merge/frontend && npm install
NEXT_PUBLIC_API_URL=http://127.0.0.1:18741 npm run dev -- --port 18742 --hostname 127.0.0.1
```
This repo is the product minus accounts and billing. If you'd rather not run it yourself, [pinscope.ai](https://pinscope.ai) is the same code, hosted, with team workspaces and a shared parts library that's already warm.
Open the frontend URL, create a project, and upload a netlist plus BOM. A `.kicad_pcb` is required for the PCB job; without it the project can complete schematic review only. `periscope/dependency/simple_project/` is a small bundled schematic fixture (MSPM0G3507 + CH340E + SPX3819).
Projects and the extraction library live in `data/` (gitignored). Extraction skills are local `periscope/src/skills/*/SKILL.md`.
Tests from the repo root:
```bash
pip install pytest pytest-asyncio
pytest tests/ -q
python3 scripts/smoke_simple_project.py # offline
```
## Docker
```bash
cp periscope/src/backend/.env.example .env # set DEEPSEEK_API_KEY
docker compose up --build
```
Backend listens on port 8080, frontend on port 3000 (`docker-compose.yml`).
### Live host
The public site is rebuilt from **`/root/periscope`**:
```bash
cd /root/periscope
./scripts/update-periscope.sh
```
`--no-pull` skips git. `SITE=https://other.host ./scripts/update-periscope.sh` overrides the public URL. The script refuses to run unless the checkout is `/root/periscope` (override with `CANONICAL_ROOT` only if the host layout differs). It does not touch `data/`.
## Source of truth
**GitHub** is the primary remote for this product. Push `main` there first.
| Remote | URL | Role |
| --- | --- | --- |
| GitHub | [https://github.com/manvalan/periscope](https://github.com/manvalan/periscope) (`git@github.com:manvalan/periscope.git`) | **Primary** — source of truth |
| Gitea | [http://192.168.1.71:3000/michele/periscope](http://192.168.1.71:3000/michele/periscope) (`git@gitea:michele/periscope.git`, SSH port **2223**) | Secondary / mirror — do not delete |
```bash
git push github main
git push gitea main # optional mirror
```
Do not force-push `main`.
## License
AGPL-3.0. For commercial licensing, write to dev@faradworks.com.
[AGPL-3.0](LICENSE) — GNU Affero General Public License v3.0.
For this Periscope instance, contact Michele Bigi (mikbigi@gmail.com).
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# Pinscope Backend — Environment Variables
# Copy to .env and fill in values. Only ANTHROPIC_API_KEY is required.
# -- AI ----------------------------------------------------------------------
ANTHROPIC_API_KEY=sk-ant-...
ANTHROPIC_MODEL=claude-sonnet-4-6
# Per-stage Anthropic model overrides (leave empty to use ANTHROPIC_MODEL)
MODEL_PINTABLE=
MODEL_PATTERN=
MODEL_VALIDATION=
# -- AI provider routing -----------------------------------------------------
# Default provider for every stage; per-stage env vars override.
# Valid values: anthropic | gemini
PROVIDER_DEFAULT=anthropic
# Set a specific stage to "gemini" to route just that stage to Gemini
# (leaves the rest on Anthropic). Skills-based extraction stages
# (pintable / pattern / specs) require Anthropic — Gemini has no
# equivalent of Anthropic Console Skills.
# PROVIDER_VALIDATION=gemini
# PROVIDER_POWER_TREE=gemini
# PROVIDER_AUTO_RESOLVE=
# -- Gemini (required when any PROVIDER_* is set to "gemini") ----------------
GEMINI_API_KEY=
GEMINI_MODEL=gemini-3-flash-preview
# Per-stage Gemini model overrides (leave empty to use GEMINI_MODEL)
# MODEL_VALIDATION_GEMINI=
# MODEL_POWER_TREE_GEMINI=
# -- Per-stage fallback ------------------------------------------------------
# If set, the stage retries once with FALLBACK_PROVIDER_<STAGE> /
# FALLBACK_MODEL_<STAGE> when the primary provider raises (e.g. Gemini 503
# UNAVAILABLE). FALLBACK_MODEL_<STAGE> may be empty — defaults to that
# provider's default model (ANTHROPIC_MODEL or GEMINI_MODEL). Leave
# FALLBACK_PROVIDER_<STAGE> empty to disable fallback for that stage.
# FALLBACK_PROVIDER_VALIDATION=anthropic
# FALLBACK_MODEL_VALIDATION=claude-sonnet-4-6
# -- Storage -----------------------------------------------------------------
# Set GCS_BUCKET to store projects/library in Google Cloud Storage.
# Leave empty for local mode (uses the data/ directory).
GCS_BUCKET=
# -- CORS --------------------------------------------------------------------
# Frontend URL(s), JSON list
CORS_ORIGINS=["http://localhost:3000"]
# -- DigiKey (optional) ------------------------------------------------------
# Enables datasheet auto-fetch and parameter-based passive auto-resolve.
# DIGIKEY_CLIENT_ID=
# DIGIKEY_CLIENT_SECRET=
# DIGIKEY_ENVIRONMENT=production
# DIGIKEY_LOCALE_SITE=US
# DIGIKEY_LOCALE_LANGUAGE=en
# DIGIKEY_LOCALE_CURRENCY=USD
# -- Email notifications (optional) ------------------------------------------
# Gmail API via domain-wide delegation. Leave EMAIL_SENDER empty to disable.
# Service account credentials come from GOOGLE_APPLICATION_CREDENTIALS.
EMAIL_SENDER=
EMAIL_FRONTEND_URL=
# Fixed admin email for pipeline-started notifications (leave empty to disable)
EMAIL_ADMIN_NOTIFY=
# Recipient for /api/contact form submissions (leave empty to disable)
CONTACT_RECIPIENT=
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FROM python:3.12-slim
WORKDIR /app
# Install dependencies first (layer caching).
# Open-core: the private gateway repo adds backend/requirements-gateway.txt
# (Stripe, etc.); a plain core checkout has no such file and skips that step.
COPY backend/requirements*.txt /app/backend/
RUN pip install --no-cache-dir -r /app/backend/requirements.txt \
&& if [ -f /app/backend/requirements-gateway.txt ]; then \
pip install --no-cache-dir -r /app/backend/requirements-gateway.txt; \
fi
# Copy application code
COPY backend/ /app/backend/
# Copy runtime assets needed by the backend
# Taxonomy: fallback for local mode; GCS mode downloads from bucket
COPY taxonomy/ /app/taxonomy/
# Changelog: single source of truth for the user-facing Pinscope version.
# Read by backend/_version.py at startup and stamped onto each new pipeline run.
# Staged into backend/ by cloudbuild before this step runs so the broad
# `frontend/` exclude in .dockerignore doesn't block the COPY.
COPY backend/_changelog.md /app/changelog.md
EXPOSE 8080
CMD ["uvicorn", "backend.main:app", "--host", "0.0.0.0", "--port", "8080"]
+38
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"""Backend package facade: native Periscope + inherited PinScope.
``periscope/src/backend`` and ``periscope/dependency/backend`` are merged via
pkgutil path extension. Do not put application modules in this directory.
"""
from __future__ import annotations
import sys
from pathlib import Path
from pkgutil import extend_path
_REPO = Path(__file__).resolve().parents[1]
_SRC = _REPO / "periscope" / "src"
_DEP = _REPO / "periscope" / "dependency"
# Last insert is searched first: native src overlays inherited dependency.
for _p in (_DEP, _SRC):
_s = str(_p)
if not _p.is_dir():
continue
if _s in sys.path:
sys.path.remove(_s)
sys.path.insert(0, _s)
def _prefer_native_backend(paths: list[str]) -> list[str]:
src, other, dep = [], [], []
for p in paths:
norm = p.replace("\\", "/")
if "/periscope/src/" in norm:
src.append(p)
elif "/periscope/dependency/" in norm:
dep.append(p)
else:
other.append(p)
return src + other + dep
__path__ = _prefer_native_backend(list(extend_path(__path__, __name__)))
-90
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@@ -1,90 +0,0 @@
"""Clerk JWT verification for FastAPI.
Validates JWT tokens from the Authorization header against Clerk's JWKS endpoint.
Extracts user_id (sub claim) for per-user storage scoping.
"""
from __future__ import annotations
import time
from typing import Any
import jwt
from fastapi import Request
from backend.config import settings
# JWKS cache
_jwks_client: jwt.PyJWKClient | None = None
_SKIP_PATHS = {"/docs", "/openapi.json", "/redoc", "/health", "/api/billing/webhook"}
def _get_jwks_client() -> jwt.PyJWKClient:
global _jwks_client
if _jwks_client is None:
jwks_url = settings.clerk_jwks_url
if not jwks_url:
# Default Clerk JWKS URL derived from publishable key
# Clerk publishable keys start with pk_test_ or pk_live_
# JWKS is at https://{clerk-frontend-api}/.well-known/jwks.json
# The user must set CLERK_JWKS_URL explicitly
raise RuntimeError(
"CLERK_JWKS_URL must be set for authentication. "
"Find it in your Clerk dashboard under API Keys."
)
_jwks_client = jwt.PyJWKClient(jwks_url, cache_keys=True)
return _jwks_client
async def verify_clerk_token(request: Request) -> str | None:
"""Verify Clerk JWT and return user_id, or None if invalid.
Returns None for:
- Missing Authorization header
- Invalid/expired token
- Skip paths (docs, health)
"""
# Skip auth for docs/health endpoints
if request.url.path in _SKIP_PATHS:
return "anonymous"
auth_header = request.headers.get("authorization", "")
if not auth_header.startswith("Bearer "):
# Fallback: check query param (EventSource/SSE can't send headers)
token = request.query_params.get("token")
if not token:
return None
else:
token = auth_header[7:]
try:
client = _get_jwks_client()
signing_key = client.get_signing_key_from_jwt(token)
payload: dict[str, Any] = jwt.decode(
token,
signing_key.key,
algorithms=["RS256"],
options={
"verify_exp": True,
"verify_aud": False, # Clerk doesn't always set aud
"verify_iss": True,
},
# Clerk tokens use the Clerk instance URL as issuer
# e.g. https://abc123.clerk.accounts.dev from https://abc123.clerk.accounts.dev/.well-known/jwks.json
issuer=settings.clerk_jwks_url.replace("/.well-known/jwks.json", "") if settings.clerk_jwks_url else None,
leeway=10, # 10 second clock skew tolerance
)
user_id = payload.get("sub")
if not user_id:
return None
return user_id
except jwt.ExpiredSignatureError:
return None
except jwt.InvalidTokenError:
return None
except Exception:
return None
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@@ -1,421 +0,0 @@
"""Pipeline start, SSE events, and status endpoints.
Pipelines run in a Cloud Run Job worker (or, in local dev, a child
subprocess). The API only enqueues, transitions status with
``if-generation-match`` for idempotency, and tails the GCS-backed event
log for SSE.
"""
from __future__ import annotations
import asyncio
import json
import logging
from fastapi import APIRouter, HTTPException, Request
from sse_starlette.sse import EventSourceResponse
from pydantic import BaseModel
from backend.routers.deps import get_storage, resolve_or_404
from backend.services import event_bridge, job_runner
from backend.services import projects as proj_svc
logger = logging.getLogger(__name__)
VALID_REGEN_STAGES = {"derating"}
class RegenRequest(BaseModel):
stages: list[str]
router = APIRouter(tags=["pipeline"])
# Statuses from which a fresh ``/start`` is allowed to transition into queued.
_START_OK_FROM = frozenset({
proj_svc.STATUS_DRAFT,
proj_svc.STATUS_COMPLETE,
proj_svc.STATUS_ERROR,
proj_svc.STATUS_CANCELLED,
})
def _project_active(meta: proj_svc.ProjectMeta) -> bool:
"""A project is "active" if a worker is or could be running for it.
Used as the running-guard. We trust the meta status as the primary
signal, and only fall back to the Cloud Run execution state when the
status is one we expect a worker to be touching. This deliberately
does NOT call get_execution_state on every request — it's an admin
API call. The stale-running sweeper is responsible for clearing
zombie ``running`` projects.
"""
return meta.status in (proj_svc.STATUS_QUEUED, proj_svc.STATUS_RUNNING)
@router.post("/pipeline/{project_id}/start", status_code=202)
async def start(project_id: str, request: Request):
from backend.routers.deps import get_user_id
from backend.services.billing_hook import get_billing
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not meta.has_bom or not meta.has_netlist:
raise HTTPException(400, "Upload BOM and netlist before starting pipeline")
# Ensure the caller has at least their trial credits allocated. The
# pipeline itself enforces pause-on-empty — this just makes sure a
# brand-new user isn't blocked before their grant is issued.
get_billing().ensure_trial_grant(storage, get_user_id(request))
# Idempotent enqueue: only one ``draft|complete|error|cancelled`` ->
# ``queued`` transition can win. Concurrent /start clicks => 409.
from backend._version import PINSCOPE_VERSION
try:
proj_svc.transition_status(
storage, owner_user_id, project_id,
from_status=_START_OK_FROM,
to_status=proj_svc.STATUS_QUEUED,
cancel_requested=False,
execution_name=None,
pinscope_version=PINSCOPE_VERSION,
)
except proj_svc.StatusConflict:
raise HTTPException(409, "Pipeline already running or queued")
try:
execution_name = job_runner.enqueue_pipeline(
project_id, owner_user_id, resume=False, free=False,
)
except Exception:
logger.exception("enqueue_pipeline failed for %s", project_id)
# Roll the meta back so the user can retry.
proj_svc.update_project(
storage, owner_user_id, project_id,
status=proj_svc.STATUS_ERROR,
pipeline_state={"error": "Failed to enqueue worker"},
)
raise HTTPException(503, "Failed to enqueue pipeline worker; please retry")
proj_svc.update_project(
storage, owner_user_id, project_id, execution_name=execution_name,
)
return {"status": "started", "project_id": project_id}
@router.post("/pipeline/{project_id}/cancel")
async def cancel(project_id: str, request: Request):
"""Soft-cancel: set ``cancel_requested`` so the worker exits cleanly.
The worker re-reads this flag inside ``_charge_for_logs`` after every
Claude API call (throttled). Cancellation latency is bounded by the
in-flight call's duration, typ 160s.
"""
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not _project_active(meta):
raise HTTPException(409, f"Pipeline is not running (status={meta.status})")
proj_svc.request_cancel(storage, owner_user_id, project_id)
return {"status": "cancel_requested", "project_id": project_id}
@router.post("/pipeline/{project_id}/estimate")
async def estimate(project_id: str, request: Request):
"""Pre-flight cost estimate — read-only, no side effects."""
from backend.services.cost_estimator import estimate_pipeline_cost
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not meta.has_bom:
raise HTTPException(400, "Upload a BOM before requesting an estimate")
try:
est = estimate_pipeline_cost(storage, owner_user_id, project_id)
except FileNotFoundError as exc:
raise HTTPException(400, str(exc)) from exc
return est.model_dump()
@router.post("/pipeline/{project_id}/resume", status_code=202)
async def resume(project_id: str, request: Request):
"""Resume a pipeline that was paused for insufficient credits."""
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if meta.status != proj_svc.STATUS_PAUSED:
raise HTTPException(
400,
f"Project is not paused (status={meta.status}); nothing to resume.",
)
if not meta.has_bom or not meta.has_netlist:
raise HTTPException(400, "Project is missing BOM or netlist")
try:
proj_svc.transition_status(
storage, owner_user_id, project_id,
from_status=proj_svc.STATUS_PAUSED,
to_status=proj_svc.STATUS_QUEUED,
cancel_requested=False,
)
except proj_svc.StatusConflict:
raise HTTPException(409, "Project state changed; refresh and retry")
try:
execution_name = job_runner.enqueue_pipeline(
project_id, owner_user_id, resume=True, free=False,
)
except Exception:
logger.exception("enqueue_pipeline (resume) failed for %s", project_id)
proj_svc.update_project(
storage, owner_user_id, project_id,
status=proj_svc.STATUS_ERROR,
pipeline_state={"error": "Failed to enqueue worker"},
)
raise HTTPException(503, "Failed to enqueue pipeline worker; please retry")
proj_svc.update_project(
storage, owner_user_id, project_id, execution_name=execution_name,
)
return {"status": "resumed", "project_id": project_id}
@router.post("/pipeline/{project_id}/restart", status_code=202)
async def restart(project_id: str, request: Request):
"""Admin-only: wipe per-project extractions and run the pipeline free."""
from backend.routers.admin import _require_admin
await _require_admin(request)
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not meta.has_bom or not meta.has_netlist:
raise HTTPException(400, "Upload BOM and netlist before starting pipeline")
# If something is currently running/queued, request cancel and wait
# briefly for the worker to honour it (or exit on its own). Hard-kill
# the execution as a last resort.
if _project_active(meta):
proj_svc.request_cancel(storage, owner_user_id, project_id)
await _await_terminal(storage, owner_user_id, project_id, timeout_s=10.0)
# If still active, hard-kill via Cloud Run cancel.
meta = proj_svc.get_project(storage, owner_user_id, project_id) or meta
if _project_active(meta) and meta.execution_name:
job_runner.cancel_execution(meta.execution_name)
await _await_terminal(storage, owner_user_id, project_id, timeout_s=5.0)
proj_svc.clear_project_extractions(storage, owner_user_id, project_id)
# After clear_project_extractions the project is left in whatever
# status it was; the transition below enforces queued.
try:
proj_svc.transition_status(
storage, owner_user_id, project_id,
from_status=_START_OK_FROM | {proj_svc.STATUS_PAUSED},
to_status=proj_svc.STATUS_QUEUED,
cancel_requested=False,
execution_name=None,
)
except proj_svc.StatusConflict:
raise HTTPException(409, "Pipeline is busy; cancel first then retry")
try:
execution_name = job_runner.enqueue_pipeline(
project_id, owner_user_id, resume=False, free=True,
)
except Exception:
logger.exception("enqueue_pipeline (restart) failed for %s", project_id)
proj_svc.update_project(
storage, owner_user_id, project_id,
status=proj_svc.STATUS_ERROR,
pipeline_state={"error": "Failed to enqueue worker"},
)
raise HTTPException(503, "Failed to enqueue pipeline worker; please retry")
proj_svc.update_project(
storage, owner_user_id, project_id, execution_name=execution_name,
)
return {"status": "restarted", "project_id": project_id}
@router.post("/pipeline/{project_id}/regen", status_code=202)
async def regen(project_id: str, req: RegenRequest, request: Request):
"""Rebuild graph and regenerate only the requested stages."""
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not meta.has_bom or not meta.has_netlist:
raise HTTPException(400, "Upload BOM and netlist before running regen")
invalid = set(req.stages) - VALID_REGEN_STAGES
if invalid:
raise HTTPException(400, f"Invalid regen stages: {sorted(invalid)}. Valid: {sorted(VALID_REGEN_STAGES)}")
if not req.stages:
raise HTTPException(400, "At least one stage is required")
if _project_active(meta):
proj_svc.request_cancel(storage, owner_user_id, project_id)
await _await_terminal(storage, owner_user_id, project_id, timeout_s=10.0)
meta = proj_svc.get_project(storage, owner_user_id, project_id) or meta
if _project_active(meta) and meta.execution_name:
job_runner.cancel_execution(meta.execution_name)
await _await_terminal(storage, owner_user_id, project_id, timeout_s=5.0)
try:
proj_svc.transition_status(
storage, owner_user_id, project_id,
from_status=_START_OK_FROM | {proj_svc.STATUS_PAUSED},
to_status=proj_svc.STATUS_QUEUED,
cancel_requested=False,
execution_name=None,
)
except proj_svc.StatusConflict:
raise HTTPException(409, "Pipeline is busy; cancel first then retry")
try:
execution_name = job_runner.enqueue_pipeline_regen(
project_id, owner_user_id, stages=req.stages,
)
except Exception:
logger.exception("enqueue_pipeline_regen failed for %s", project_id)
proj_svc.update_project(
storage, owner_user_id, project_id,
status=proj_svc.STATUS_ERROR,
pipeline_state={"error": "Failed to enqueue worker"},
)
raise HTTPException(503, "Failed to enqueue pipeline worker; please retry")
proj_svc.update_project(
storage, owner_user_id, project_id, execution_name=execution_name,
)
return {"status": "regen_started", "project_id": project_id, "stages": req.stages}
# ---------------------------------------------------------------------------
# SSE events
# ---------------------------------------------------------------------------
_EXEC_TERMINAL = frozenset({"succeeded", "failed", "cancelled"})
@router.get("/pipeline/{project_id}/events")
async def events(project_id: str, request: Request):
"""SSE stream of pipeline progress events.
Tails the GCS-backed event log written by the worker. Stops on
terminal events as today, but also has two hard-crash escape
hatches: the project's status reaching a terminal value, and the
Cloud Run execution reaching a terminal state. Either of those
triggers a synthetic ``pipeline_error`` so the SSE doesn't hang
forever when the worker dies without writing its terminal event.
"""
owner_user_id, meta = await resolve_or_404(request, project_id)
storage = get_storage(request)
async def event_generator():
execution_name = meta.execution_name
# Drive the GCS tail and the escape-hatch poll concurrently. The
# tail yields events; the escape hatch flips a flag.
crash_detected: dict[str, str | None] = {"reason": None}
async def watch_status() -> None:
poll_interval = 2.0
while True:
await asyncio.sleep(poll_interval)
try:
cur = proj_svc.get_project(storage, owner_user_id, project_id)
except Exception:
continue
if cur is None:
continue
if cur.status in proj_svc.TERMINAL_STATUSES:
crash_detected["reason"] = (
f"project status={cur.status} (terminal)"
)
return
# Cloud Run hard-crash detection
if execution_name:
try:
state = job_runner.get_execution_state(execution_name)
except Exception:
state = "unknown"
if state in _EXEC_TERMINAL:
crash_detected["reason"] = (
f"execution state={state}"
)
return
watcher = asyncio.create_task(watch_status())
try:
async for msg in event_bridge.tail_events(
storage, owner_user_id, project_id,
):
if crash_detected["reason"] is not None:
break
yield {
"event": msg["event"],
"data": json.dumps(msg.get("data", {})),
}
if msg["event"] in event_bridge.TERMINAL_EVENTS:
return
# tail_events exited without a terminal event — escape hatch
if crash_detected["reason"] is not None:
# Re-read the current meta so the synthetic event has
# the most up-to-date error information.
cur = proj_svc.get_project(storage, owner_user_id, project_id)
err = (
(cur.pipeline_state or {}).get("error")
if cur and cur.pipeline_state
else crash_detected["reason"]
)
yield {
"event": "pipeline_error",
"data": json.dumps({
"error": err or "worker terminated without writing a terminal event",
"synthetic": True,
}),
}
finally:
watcher.cancel()
try:
await watcher
except (asyncio.CancelledError, Exception):
pass
return EventSourceResponse(event_generator())
@router.get("/pipeline/{project_id}/status")
async def status(project_id: str, request: Request):
"""Polling fallback — returns current project state."""
_, meta = await resolve_or_404(request, project_id)
return {
"status": meta.status,
"summary": meta.summary,
"pipeline_state": meta.pipeline_state,
"running": meta.status in (proj_svc.STATUS_RUNNING, proj_svc.STATUS_QUEUED),
}
# ---------------------------------------------------------------------------
# Helpers
# ---------------------------------------------------------------------------
async def _await_terminal(
storage, user_id: str, project_id: str, *, timeout_s: float,
) -> None:
"""Poll project status until it reaches a terminal state or the timeout
elapses. Used by /restart and /regen between cancel and re-enqueue.
"""
poll = 0.5
elapsed = 0.0
while elapsed < timeout_s:
try:
meta = proj_svc.get_project(storage, user_id, project_id)
except Exception:
meta = None
if meta is None:
return
if meta.status in proj_svc.TERMINAL_STATUSES:
return
await asyncio.sleep(poll)
elapsed += poll
-18
View File
@@ -1,18 +0,0 @@
{
"default_model_version": "1.4.0",
"extract-pintable": {
"skill_id": "skill_013cTQFk8bqwJVemreNihQRW",
"latest_version": "1777167199421424",
"display_title": "Extract Pin Table"
},
"extract-pattern": {
"skill_id": "skill_0195iVb55HeQgKHFkePC56hP",
"latest_version": "1777167200857394",
"display_title": "Extract Passive Pattern"
},
"extract-specs": {
"skill_id": "skill_016sqcgvuVea95Nb4uJYBj7h",
"latest_version": "1777167202182784",
"display_title": "Extract Component Specs"
}
}
+28 -12
View File
@@ -1,37 +1,50 @@
# Canonical compose project on the VPS is "periscope" (not the GitHub
# clone folder name "pinscope"). Bind mounts stay relative to the checkout.
# Host Caddy (railway-caddy) lives on Docker network pinscope_pinscope and
# reverse_proxies periscope-frontend:3000 / periscope-backend:8080. The
# update script connects these containers to that network after up.
name: periscope
services:
backend:
build:
context: .
dockerfile: backend/Dockerfile
dockerfile: periscope/src/backend/Dockerfile
container_name: pinscope-backend
container_name: periscope-backend
restart: unless-stopped
env_file:
- .env
environment:
ANTHROPIC_API_KEY: ${ANTHROPIC_API_KEY}
DEEPSEEK_API_KEY: ${DEEPSEEK_API_KEY}
ANTHROPIC_API_KEY: ${ANTHROPIC_API_KEY:-}
GEMINI_API_KEY: ${GEMINI_API_KEY:-}
volumes:
- ./data:/app/data
- ./taxonomy:/app/taxonomy
- ./periscope/src/taxonomy:/app/taxonomy
ports:
- "8080:8080"
networks:
- pinscope
periscope:
aliases:
- periscope-backend
- pinscope-backend
frontend:
build:
context: ./frontend
dockerfile: dockerfile
context: .
dockerfile: periscope/src/frontend/dockerfile
args:
NEXT_PUBLIC_API_URL: ""
NEXT_PUBLIC_API_URL: ${NEXT_PUBLIC_API_URL:-http://localhost:8080}
NEXT_PUBLIC_AUTH_MODE: ${NEXT_PUBLIC_AUTH_MODE:-}
container_name: pinscope-frontend
container_name: periscope-frontend
restart: unless-stopped
depends_on:
@@ -41,9 +54,12 @@ services:
- "3000:3000"
networks:
- pinscope
periscope:
aliases:
- periscope-frontend
- pinscope
- pinscope-frontend
networks:
pinscope:
periscope:
driver: bridge
+669
View File
@@ -0,0 +1,669 @@
# Albero delle analisi Periscope
Versione codice **2.63.1** (`periscope/src/frontend/content/changelog.md`). Letto in `/Users/michelebigi/Development/periscope`. Costituzione senza eccezioni: via ≠ pad ≠ traccia ≠ zona; niente I/Z/mm inventati; skip se manca evidenza. **Non è DRC KiCad.** DRC = KiCad. Questo documento mappa lanalisi, non implementa.
I test pytest stanno in `tests/datasheet/`, `tests/library/`, `tests/schematic/`, `tests/pcb/`, `tests/af_ai/` (stessi file di 2.62.1, cartelle di mestiere). I path `tests/test_*.py` sotto i nodi restano i nomi file.
Due pipeline più una porta libreria (non è un esame):
0. **Libreria**`POST /api/library/datasheets` registra un componente da PDF senza `MODE=run`/`MODE=pcb`.
1. **Schematico / review AI**`MODE=run`, `services/pipeline.py``validate_design_async` (`validation.py`): estrazione datasheet, check deterministici, review IC DeepSeek.
2. **Esame PCB**`MODE=pcb`, `services/pcb_pipeline.py``run_pcb_checks` (`pcb_checks.py`, lista 2.62.1 **invariata**) + sezione additiva AF Board+AI (`af_ai_hf.py`) + review AI PCB (`pcb_review.py` / `pcb_validation.py`). Non auto-place.
I certifier USB-C / Ethernet / PoE girano su **entrambe** le pipeline (grafo, non geometria). DDR / CPU / FPGA / USB-PD sono la stessa qualità di finding ma partono da `run_pcb_checks` (grafo). Niente pezzo sul grafo → silenzio, non N/A.
Nodi analisi: **108** (99 PE-* + 1 LED senza `rule_id` + 8 processo estrazione/AI). Test pytest citati sotto i nodi: nomi reali da `tests/`.
---
```
Periscope 2.63.1
├── 0. Libreria (porta, non esame)
│ └── PDF + MPN → scheda (inbox IC / passivo / discreto) senza MODE=run/pcb
├── 1. Schematico / review AI (MODE=run)
│ ├── ingest (non è analisi: parser → grafo)
│ ├── estrazione datasheet
│ ├── check deterministici schema
│ ├── certifier di classe (condivisi con PCB)
│ └── review AI per-IC + post-pass
└── 2. Esame PCB (MODE=pcb)
├── ingest layout (non è DRC)
├── run_pcb_checks ← 2.62.1 invariato (SI + HF line inclusi)
│ ├── net / footprint
│ ├── placement vs layout_rules
│ ├── SI + linee HF (2.62.0 Fase A)
│ ├── DDR / CPU / FPGA (2.62.0)
│ ├── potenza / via / termico
│ ├── derating / timing / PI
│ ├── ESD / return / EMI / SPOF
│ ├── BOM ↔ PCB ↔ datasheet
│ └── resto Fase B (2.62.1)
├── AF Board + AI (additivo: flag → investigate_hf_hypotheses; non sostituisce SI/HF)
├── review AI PCB
└── tab antenna RF (non in run_pcb_checks)
```
---
## 1. Schematico / review AI (`MODE=run`)
Orchestrazione: `pipeline.py` stadi `bom_parse``ic_extraction``simple_extraction``passive_extraction``graph_build``validation`. Check deterministici: `_run_deterministic_checks` in `validation.py`. Finding ID schema `PS-{ref}-{nnn}` (non `PCB-`).
### 1.1 Ingest (prerequisito, non analisi)
Parser e grafo non emettono PE-*. Skip MPN: `ic_mpn_skip_reason` (silenzio onesto, niente MPN inventato).
- Test parser/grafo: `tests/test_bom_parser.py` (`test_parse_bom_uses_value_for_ic_when_mpn_column_empty`, `test_parse_bom_keeps_pnm_and_datasheet_url`); `tests/test_hubaudio_bom.py` (tutti e 4); `tests/test_netlist_parser.py` (tutti e 3); `tests/test_edif_parser.py` (14); `tests/test_kicad_parser.py` (17); `tests/test_kicad_project.py` (19); `tests/test_netlist_bundle.py` (9); `tests/test_functional_groups.py` (8).
- Test overlay parser: `tests/test_periscope_parsers_rewrite.py`, `tests/test_periscope_graph_rewrite.py`, `tests/test_periscope_models_rewrite.py`.
### 1.2 Estrazione datasheet (processo)
Skip se manca PDF o lo skill non ha numero. Libreria `library/extracted` condivisa schema+PCB. PCB review non rilegge il PDF (`pdf_path=None`).
#### `extract-pintable` — skill `skills/extract-pintable/`
Modulo: `services/datasheet_extract.py` + `llm/local_skill.py`. Analizza: pin table, package, taxonomy IC.
- Skip se: niente PDF; IC già in libreria alla `model_version` minima.
- Test: `tests/test_native_datasheet_extract.py` (`test_coerce_abs_max_matches_inherited`, `test_native_extract_has_no_anthropic_import`); `tests/test_pdf_ingest.py` (6); `tests/test_deepseek_provider.py` (`test_local_skills_load`, `test_extract_pdf_text_includes_page_markers`, `test_wroom_rejects_bare_soc_pin1_ant`); `tests/test_periscope_taxonomy_skills_src.py` (`test_pintable_skill_mentions_save_tool_and_wroom`, `test_skills_dir_is_src_and_local`).
#### `extract-specs` — skill `skills/extract-specs/`
Analizza: specs discreti/connettori/cristalli; parametri fuori taxonomy → scartati.
- Skip se: niente PDF o tipo non in `SIMPLE_TYPES`.
- Test: `tests/test_pdf_ingest.py` (`test_coerce_abs_max_keeps_valid_drops_junk`); `tests/test_layout_rules.py` (5 — `layout_rules` numerici, niente mm inventati).
#### `extract-pattern` — skill `skills/extract-pattern/`
Analizza: pattern MPN passivi (R/C/L/FB).
- Skip se: MPN opaco; DigiKey/value fallback copre prima.
- Test: `tests/test_inductor_specs.py` (13, Z ferrite solo se il PDF dice N Ω @ freq); `tests/test_pcb_software_bugs.py` (`test_lqw_decoder_and_unknown_skip`, `test_fb1_blm_is_bead_not_dcr_resistor`).
#### Resolve DigiKey / catalogo (esatto MPN)
Modulo: `services/digikey.py`, `passive_from_distributor.py`, `passive_from_mpn.py`. Analizza: parametri catalogo per auto-resolve. Hit fuzzy rifiutati.
- Skip se: MPN non esatto; API assente (fail-soft).
- Test: `tests/test_digikey_match.py` (3); `tests/test_passive_from_distributor.py` (7); `tests/test_passive_from_mpn.py` (7); `tests/test_datasheet_finder.py` (17); `tests/test_library.py` (5).
#### Resolve da stringa Value (solo progetto)
Modulo: `services/passive_from_value.py`. Specs value-derived **non** in libreria condivisa.
- Skip se: stringa ambigua / placeholder.
- Test: `tests/test_passive_from_value.py` (8).
### 1.3 Check deterministici schema
Fail-soft per modulo. Senza evidenza: skip (lista vuota), non folklore.
#### `PE-MUX-001` — `pin_mux_check.py`
Analizza: funzione pin vs net (UART/SPI/I2C mux).
Skip se: `functions` vuote; link inter-device stesso peripheral; net opaco.
- Test: `tests/test_pin_mux_check.py``test_real_defect_uart5_swapped_is_error`, `test_correct_assignment_no_finding`, `test_inter_device_same_peripheral_link_is_skipped`, `test_transceiver_peer_without_peripheral_still_fires`, `test_empty_functions_skipped`, `test_pin_exposes_peripheral_but_not_signal_no_complement`, `test_opaque_net_not_flagged`, `test_token_parser_and_normalizer`, `test_spi_legacy_net_names_match_modern_pin_functions`, `test_spi_controller_peripheral_names_are_synonyms`, `test_simple_project_uart0_nets_are_feasible_on_mspm0_pins`, `test_simple_project_uart0_swapped_on_mspm0_is_error`, `test_spi_genuine_infeasibility_still_fires_with_modern_names`, `test_finding_prints_full_raw_capability_list_and_intent_caveat`, `test_legacy_report_without_source_validates`.
#### `PE-NC-001` — `nc_pin_check.py`
Analizza: pin NC collegato a net attivo.
Skip se: niente pintable.
- Test: `tests/test_nc_pin_check.py``test_nc_pin_on_active_net_warns`, `test_nc_pin_on_nc_net_silent`, `test_no_pintable_silent`.
#### `PE-DEC-001` / `PE-DEC-002` — `passive_rail_check.py` `check_supply_decoupling`
Analizza: condensatore sul net di alimentazione IC (001 presenza; 002 valore vs datasheet).
Skip se: net NC; pin enable strap; manca valore per 002.
- Test: `tests/test_passive_rail_check.py``test_missing_decoupling_is_warning`, `test_cap_to_gnd_clears_decoupling`, `test_enable_strapped_to_rail_is_not_decoupling`, `test_nc_supply_net_is_skipped`, `test_ldo_vout_needs_cout`, `test_ldo_vout_100n_only_is_value_warning`, `test_vdd_100n_is_not_a_value_warning`, `test_ki_cad_voltage_prefix_is_power`, `test_fb_and_rn_prefixes`.
#### `PE-I2C-001` / `PE-I2C-002` — `passive_rail_check.py` `check_i2c_pullups`
Analizza: pull-up I2C (001 presenza; 002 valore vs banda).
Skip se: pin SDA è alias SPI; pull-up senza valore (002 non sizato); bus assente.
- Test: `tests/test_passive_rail_check.py``test_i2c_missing_pullup`, `test_i2c_pullup_present`, `test_i2c_pullup_to_3v3_digital_typed_as_signal`, `test_spi_pin_alias_sda_is_not_i2c`, `test_i2c_from_slash_alias_in_pin_name`, `test_i2c_4k7_pullup_is_in_nxp_wide_band`, `test_i2c_100ohm_pullup_is_too_stiff`, `test_i2c_100k_pullup_is_too_weak`, `test_i2c_pullup_without_value_is_not_sized`.
#### `PE-RST-001` / `PE-RST-002` — `passive_rail_check.py` `check_reset_pullups`
Analizza: reset/enable pull (001 presenza; 002 verso vs datasheet).
Skip se: GPIO guida il reset.
- Test: `tests/test_passive_rail_check.py``test_reset_no_finding_when_gpio_drives`, `test_reset_floating_is_warning`, `test_nrst_pulldown_is_warning`, `test_nrst_pullup_is_not_pulldown`.
#### `PE-BOM-001` / `PE-BOM-002` — `bom_match_check.py`
Analizza: MPN schema vs BOM (001 mismatch; 002 riga BOM orfana).
Skip se: mappa schematica vuota (PADS/EDIF senza properties).
- Test: `tests/test_bom_match_check.py``test_matching_mpns_produce_no_findings`, `test_mpn_mismatch_is_error_ps_bom_001`, `test_orphan_bom_ref_is_warning`, `test_mpn_case_and_whitespace_are_not_a_mismatch`, `test_empty_bom_mpn_with_schematic_mpn_is_not_a_mismatch`, `test_empty_schematic_map_skips_check`, `test_legacy_design_graph_without_source_fields_still_validates`, `test_build_graph_kicad_mpn_mismatch_surfaces`.
#### `PE-DNP-001` — `dnp_check.py`
Analizza: DNP vs enable floating.
Skip se: colonna DNP assente.
- Test: `tests/test_dnp_check.py``test_dnp_pull_leaves_enable_floating`, `test_fitted_pull_is_silent`, `test_no_dnp_column_skips_floating_enable`, `test_parse_bom_reads_dnp_and_skips_when_column_absent`.
#### LED corrente — `led_current_check.py` (nessun `PE-*`)
Analizza: I_f Ohm vs rating canale. Source `led_current_check`.
Skip se: niente `forward_current_*`; tensione rail sconosciuta (non si indovina).
- Test: `tests/test_led_current_check.py``test_over_current_is_error`, `test_proper_resistor_no_finding`, `test_unknown_rail_no_error`, `test_no_rating_skipped`, `test_parse_resistance`.
#### `PE-TH-001` / `PE-TH-002` / `PE-TH-003` — `thermal_check.py`
Analizza: P = I_load × drop; Tj = Ta + P·θJA (001 INFO senza θJA o Tj ok; 002 WARNING Tj alto — **non in catalogo `finding_engine`**; 003 I²R shunt).
Skip se: manca I_load (Iout_max non è carico).
- Test: `tests/test_thermal_check.py``test_ldo_without_theta_ja_is_info`, `test_iout_max_is_not_used_as_load`, `test_ldo_hot_tj_is_warning`, `test_shunt_over_rating_is_warning`, `test_led_resistor_within_rating_is_silent`.
#### `PE-PWR-001` (schema) — `power_margin_check.py`
Analizza: Σ IQ + I_load vs Iout regolatore; caduta su R serie. Source `power_margin_check`.
Skip se: manca I_load; IQ assente non è fail.
- Test: `tests/test_power_margin_check.py``test_load_over_iout_max_is_ps_pwr_001`, `test_missing_iq_is_not_guessed_into_margin_fail`, `test_series_r_ir_drop_uses_i_load_not_trace`, `test_no_series_r_does_not_invent_trace_drop`.
#### `PE-SEQ-001` — `sequencing_check.py`
Analizza: PG → EN da note datasheet.
Skip se: niente spec `power_sequence`.
- Test: `tests/test_sequencing_check.py``test_pg_not_tied_to_en_is_warning`, `test_pg_tied_to_en_is_silent`, `test_no_power_sequence_spec_skips_even_if_pg_open`.
#### `PE-FLT-001` / `PE-FLT-002` / `PE-FLT-003` — `filter_check.py`
Analizza: topologia filtro (001), pezzo (002), fc vs ADC / DCR ferrite (003).
Skip se: manca C; pull-up+decoupling non è filtro; DCR ferrite senza limite datasheet.
- Test: `tests/test_filter_check.py``test_rc_reports_fc_info_without_adc_rate`, `test_rc_vs_adc_rate_is_warning`, `test_pullup_plus_decoupling_is_not_a_filter`, `test_missing_c_value_does_not_invent_fc_warning`, `test_pi_and_t_need_l_and_c`, `test_ferrite_dcr_warns_only_with_datasheet_limit`.
#### `PE-XTAL-001` / `PE-XTAL-002` / `PE-XTAL-003` — `crystal_cl_check.py`
Analizza: CL vs C1/C2 (001 coppia; 002 serie/stray; 003 drive). Cstray solo se in specs.
Skip se: niente CL in specs.
- Test: `tests/test_crystal_cl_check.py``test_no_cl_in_specs_is_silent`, `test_series_above_cl_without_stray_warns`, `test_with_stray_mismatch_warns`, `test_simple_project_without_cl_silent`.
#### `PE-LF-001` / `PE-LF-002` / `PE-LF-003` — `lifecycle.py`
Analizza: Obsolete / NRND / RoHS non-compliant.
Skip se: catalogo assente.
- Test: `tests/test_lifecycle_check.py``test_obsolete_is_warning_and_uses_distributor_replacement`, `test_nrnd_is_info`, `test_explicit_rohs_non_compliant_is_warning`, `test_active_is_silent`, `test_rohs_not_applicable_is_not_a_fail`, `test_missing_catalog_and_missing_substitute_are_not_guessed`.
#### `PE-INT-001` — `internal_features_check.py`
Analizza: ESD/pull interni vs net.
Skip se: `internal_features` vuoto (non si indovina open-drain).
- Test: `tests/test_internal_features_check.py``test_listed_open_drain_without_pull_is_warning`, `test_listed_pin_with_pullup_is_silent`, `test_empty_features_does_not_guess_open_drain`.
#### `PE-ESR-001` — `hf_coverage_check.py`
Analizza: copertura HF/ESR (bulk vs 100 n).
Skip se: valore C sconosciuto.
- Test: `tests/test_hf_coverage_check.py``test_bulk_only_is_info_ps_esr_001`, `test_bulk_plus_100n_is_silent`, `test_unknown_cap_value_is_not_guessed`.
#### `PE-ERRATA-001` — `errata_check.py`
Analizza: errata pubblicata vs pull sul pin.
Skip se: MPN sconosciuto o entry senza URL.
- Test: `tests/test_errata_check.py``test_missing_errata_pullup_is_ps_errata_001`, `test_pullup_present_is_silent`, `test_unknown_mpn_and_url_less_entry_are_silent`.
Suite deterministica end-to-end: `tests/test_validation_deterministic_seed.py` `test_deterministic_findings_seeded_and_not_reviewed`; `tests/test_eval_report.py` `test_simple_project_eval_matches_committed_golden`.
### 1.4 Certifier di classe (grafo — schema **e** PCB)
Moduli: `interface_class_check.py` (schema **e** PCB), `hf_bus_class.py` (2.62.0, solo `run_pcb_checks`), `usb_pd_check.py` (2.62.1, solo PCB). Niente geometria. Niente connettore/dispositivo → **silenzio**.
#### USB-C — solo se receptacle USB-C sul grafo
- **`PE-USBC-001`** classe USB2 vs USB3 da BOM/footprint/MPN/net.
- **`PE-USBC-002`** CC1 e CC2.
- **`PE-USBC-003`** Rd 5.1 kΩ ±10% o Rp 56/22/10 kΩ. Skip/INSUFFICIENT se R ignota o CC verso controller senza R.
- **`PE-USBC-004`** VBUS e GND.
- **`PE-USBC-005`** SuperSpeed solo se classe USB3; USB2 = N/A (non ERROR).
Test: `tests/test_interface_class_check.py``test_no_connector_emits_nothing`, `test_usbc_rd_vbus_gnd_certified`, `test_usbc_missing_cc2_is_error`, `test_usbc_wrong_rd_is_error`, `test_usbc_cc_to_controller_without_r_is_insufficient_not_error`, `test_usbc_unknown_r_value_is_insufficient`, `test_usb3_class_without_ss_pairs_is_error`, `test_usb3_with_ss_pairs_is_certified`, `test_missing_vbus_is_error`, `test_simple_project_usbc_not_false_error`, `test_hubaudio_like_usbc_usb2_and_poe_magjack`, `test_usbc_vbus_does_not_invent_usb_500ma`, `test_does_not_use_layout_geometry`, `test_rule_catalog_shared_not_si`.
#### Ethernet — solo se RJ45/MagJack
- **`PE-ETH-001`** classe 10/100 vs GbE. Skip/INSUFFICIENT se velocità assente (non si inventa GbE).
- **`PE-ETH-002`** TX/RX (10/100) o quattro MDI (GbE).
- **`PE-ETH-003`** magnetics se GbE.
- **`PE-ETH-004`** Bob Smith 75 Ω: REVIEW (spesso in MagJack).
Test: `tests/test_interface_class_check.py``test_ethernet_10_100_magjack_no_gbe_magnetics_error`, `test_gbe_without_magnetics_is_error`, `test_gbe_with_magnetics_is_certified`, `test_rj45_without_speed_is_insufficient_not_invented_gbe`.
#### PoE — solo con evidenza PoE (RJ45 nudo = skip)
- **`PE-POE-001`** evidenza PoE.
- **`PE-POE-002`** classe/tipo (802.3af/at/bt, Class n) — mai inventata.
- **`PE-POE-003`** magnetics/isolamento (MagJack o LAN transformer).
- **`PE-POE-004`** (2.62.1) tensione di isolamento solo da numero sourced. Skip senza V.
Test: `tests/test_interface_class_check.py``test_bare_rj45_does_not_invent_poe`, `test_poe_with_evidence_requires_magnetics_isolation`, `test_poe_evidence_on_bare_jack_is_isolation_error`, `test_hubaudio_bom_has_usbc_and_poe_rj45_not_ddr`, `test_run_pcb_checks_skips_absent_interfaces`; `tests/test_pcb_phase_b.py``test_poe_isolation_skips_without_voltage_fact`.
#### DDR — solo se DRAM sul grafo (2.62.0)
- **`PE-DDR-001`** classe DRAM.
- **`PE-DDR-002`** CK, DQS, ≥8 DQ.
- **`PE-DDR-003`** VTT/VREF solo se quei net esistono (altrimenti skip, non VTT inventato).
Test: `tests/test_hf_line_check.py``test_no_ddr_cpu_fpga_on_usb_only_graph`, `test_ddr_present_class_and_nets_skip_invented_vtt`, `test_rule_catalog_hf_ids`.
#### CPU bus parallelo — solo se D/A/controllo esistono (2.62.0)
- **`PE-CPU-001`** presenza bus parallelo.
- **`PE-CPU-002`** ≥8 D/DQ/AD.
- **`PE-CPU-003`** address o AD mux.
- **`PE-CPU-004`** CS/WE/OE (o FMC).
Test: `tests/test_hf_line_check.py``test_cpu_parallel_bus_only_when_data_addr_control_exist`.
#### FPGA — solo se FPGA sul grafo (2.62.0)
- **`PE-FPGA-001`** classe FPGA.
- **`PE-FPGA-002`** flash di config se c’è un flash IC (altrimenti skip).
- **`PE-FPGA-003`** VCCINT/VCCIO solo se net nominati.
Test: `tests/test_hf_line_check.py``test_fpga_only_when_present_config_flash_optional`.
#### USB-PD contratto — `usb_pd_check.py` (2.62.1)
- **`PE-PD-001`** controller PD sul grafo (FUSB302/TPS257/…). Non è USB2 Rd. PDO non inventati.
Test: `tests/test_pcb_phase_b.py``test_usb_pd_skips_without_pd_controller`.
### 1.5 Review AI per-IC + post-pass
Moduli: `review_session.py`, `pcb_review.py` non entra qui. DeepSeek, PDF una volta per IC, fail-soft. Prompt tools grafo (`find_connected_components`, `get_net_for_pin`, `get_pintable`, `get_datasheet_excerpt`). Finding LLM = REVIEW, mai RULE ERROR (`finding_engine`).
Skip se: niente MPN; niente PDF (`not_reviewed`); fingerprint invariato (`review_fingerprint.py`).
- Review loop: `tests/test_native_review_loop.py` (5); `tests/test_validation_no_tool_recovery.py` `test_no_tool_calls_triggers_forced_submit_next_turn`; `tests/test_validation_concurrency.py` (3); `tests/test_validation_trace_log.py` (3); `tests/test_review_parse.py` (2); `tests/test_quote_verify.py` (5); `tests/test_finding_engine.py` (`test_llm_review_is_never_rule`, `test_review_and_risk_cannot_stay_error`, `test_insufficient_evidence_does_not_stay_error`); `tests/test_fase_b_checks.py` `test_llm_error_review_clamped_in_complete_finding`; `tests/test_review_fingerprint.py` (2); `tests/test_reprocess.py` (4); `tests/test_deepseek_provider.py` (`test_thinking_only_echoes_reasoning_content_on_follow_up` e roundtrip tool).
- Excerpt cross-IC: `tests/test_datasheet_excerpt_tool.py` (12); `tests/test_cache_breakpoint_limit.py` (3).
- **Normalize** (downgrade-only): `tests/test_normalize_findings.py` (14); `tests/test_periscope_postpass_rewrite.py` `test_emmaforo_uart_normalize_cannot_promote_warning`.
- **Dedupe** cross-IC: `tests/test_dedupe_findings.py` (11); `tests/test_periscope_postpass_rewrite.py` `test_emmaforo_uart_dedupe_collapses_both_endpoints`.
---
## 2. Esame PCB (`MODE=pcb`)
Stadi: `ensure_graph``parse_pcb``classify``inventory`**`run_pcb_checks`** → `ai_review``pcb_report.json`. ID finding `PCB-{ref}-{001}`. Mutex vs analisi schema e vs placement. Inventario net (`pcb_inventory.py`) è numeri, non finding.
KiCad DRC **non** è un nodo Periscope. `tests/test_pcb_software_bugs.py` `test_drc_unconnected_items_count` e `test_hubaudio_pcb_lay004_vs_drc_order_of_magnitude` servono solo a **non** copiare il DRC.
Suite orchestrazione: `tests/test_pcb_review.py` `test_run_pcb_checks_assigns_pcb_ids_and_recommendations`, `test_pcb_pipeline_imports_build_placement_plan`; `tests/test_pcb_phase_b.py` `test_run_pcb_checks_phase_b_absent_is_silent`, `test_phase_b_rule_catalog`; `tests/test_interface_class_check.py` `test_merge_drops_duplicate_pcb_interface_findings`; `tests/test_pcb_sse_terminal.py` (4).
### 2.1 Layout ingest (non DRC)
`parsers_kicad_pcb.py``LayoutGraph`. Nessun default 1 oz.
- Test: `tests/test_kicad_pcb.py` (14); `tests/test_pcb_via_not_pad.py` (geometria via≠pad); `tests/test_pcb_software_bugs.py` `test_kicad10_name_only_nets_fill_index`.
### 2.2 Net / footprint — `pcb_net_match.py` + `pcb_checks._incomplete_layout_finding`
#### `PE-LAY-001`
Pad PCB su net diverso dallo schema (stesso pin).
Skip se: layout assente.
- Test: `tests/test_pcb_review.py``test_pad_net_mismatch_is_pe_lay_001`, `test_hierarchy_plus_real_mismatch_keeps_only_real_pe_lay_001`.
#### `PE-LAY-002`
Ref in schema, nessun footprint (tranne #PWR). Distingue “manca sulla PCB”.
- Test: `tests/test_pcb_review.py` `test_missing_footprint_is_pe_lay_002`; `tests/test_incomplete_pcb.py` `test_unplaced_ref_is_lay_002_not_invented_xy`.
#### `PE-LAY-003`
Stesso net, solo prefisso `/sheet/` KiCad (INFO, una volta).
- Test: `tests/test_pcb_review.py` `test_kicad_hierarchy_slash_is_one_sync_finding_not_per_pad`.
#### `PE-LAY-004` — `pcb_checks.py` (**non in catalogo `finding_engine`**)
Pad net senza rame (track **o** via **o** zone). Skip NC `unconnected-(…)`. INFO INSUFFICIENT, non FAIL inventato.
- Test: `tests/test_incomplete_pcb.py` `test_run_pcb_checks_on_partial_layout_does_not_invent_tracks`; `tests/test_pcb_software_bugs.py``test_lay004_zone_counts_as_copper`, `test_lay004_skips_unconnected_nc_and_matches_sheet_prefix`, `test_hubaudio_pcb_lay004_vs_drc_order_of_magnitude`.
### 2.3 Placement vs `layout_rules` — `placement_check.py`
Senza mm in `layout_rules`: skip. Niente 3 mm default. Distanza euclidea pad-pad **non** usata.
#### `PE-PLC-001`
Path rame (segmenti) vs `max_distance_mm`.
- Test: `tests/test_placement_check.py``test_crystal_load_cap_beyond_max_distance_mm_is_ps_plc_001`, `test_crystal_load_cap_within_max_distance_mm_is_silent`, `test_track_path_longer_than_max_distance_mm_is_ps_plc_001`; `tests/test_pcb_review.py` `test_close_decoupling_has_no_plc_001`; `tests/test_placement_check.py` `test_simple_project_without_pcb_has_no_ps_plc`.
#### `PE-PLC-002`
Via in courtyard vs `min_via_count`. Skip senza vertici courtyard e senza min.
- Test: `tests/test_placement_check.py` `test_via_count_is_calculated_from_courtyard_and_min_parameter` (geometria `_in_poly`; non emette ancora il finding end-to-end).
#### `PE-PLC-003`
`same_layer` decoupling.
- Test: `tests/test_placement_check.py``test_same_layer_param_opposite_layers_is_ps_plc_003`, `test_same_layer_param_same_copper_is_silent`, `test_opposite_layers_without_same_layer_param_is_silent`, `test_opposite_layers_with_via_in_courtyard_is_silent`.
#### `PE-PLC-004`
Keepout: net estraneo nel courtyard. Non è DRC rame-pad.
- Test: `tests/test_placement_check.py``test_keepout_foreign_track_in_courtyard_is_ps_plc_004`, `test_ic_courtyard_pad_nets_are_not_keepout_violations`, `test_keepout_own_net_in_courtyard_is_silent`, `test_keepout_without_courtyard_is_silent`.
#### `PE-PLC-005` (**non in catalogo `finding_engine`**)
Proximity non misurabile perché manca la **traccia**.
- Test: `tests/test_placement_check.py` `test_unrouted_crystal_cap_is_insufficient_not_euclidean`.
Schema runner omette i check layout: `tests/test_placement_check.py` `test_schema_deterministic_runner_omits_layout_checks`.
### 2.4 SI — `si_check.py` + ImpedenceFinder
Gate: `layout_rules` kind + `net_class`/quote sul **bus citato**. Skip I2C/GPIO/EN/CC/strap RC. Bus: USB2, USB3, ETH MDI, RGMII, SGMII, DDR3 CLK/DQS/DQ/ADDR, HDMI, PCIe, LVDS; 2.62.0 aggiunge MIPI e clock HF (`bus_class`); XTAL/OSCIN fuori.
Z0: `impedance.py` / `impedance_traces.py`. CPWG → errore, non numero inventato. Senza stackup: skip misura.
Suite gate: `tests/test_si_check.py` `test_skip_i2c_gpio_cc_regn`, `test_i2c_not_checked_as_50_ohm`, `test_simple_project_without_pcb_has_no_ps_si_001`; `tests/test_hf_line_check.py` `test_bus_class_mipi_hf_clk_not_xtal`. Calcolatrice: `tests/test_impedance.py` (20); misura net: `tests/test_impedance_traces.py` (10).
#### `PE-SI-001` length_match / skew coppia
Skip senza mm datasheet.
- Test: `tests/test_si_check.py` `test_length_match_2_5mm_vs_1mm_is_fail`, `test_coverage_mdi_rgmii_ddr3_usb3_gated_not_cross_mapped`.
#### `PE-SI-002` Zavg/min/max vs finestra datasheet
Mai folklore 90 Ω.
- Test: `tests/test_si_check.py` `test_emmaforo_usb_avg_in_window_min_out_is_margin`, `test_coverage_mdi_rgmii_ddr3_usb3_gated_not_cross_mapped`.
#### `PE-SI-003` lunghezza max mm
- Test: `tests/test_si_check.py` `test_coverage_mdi_rgmii_ddr3_usb3_gated_not_cross_mapped`.
#### `PE-SI-004` spacing intra-coppia mm
Skip senza mm. Copertura indiretta nella stessa suite SI gated.
#### `PE-SI-005` piano di riferimento / layer
Skip senza FACT datasheet.
#### `PE-SI-006` conteggio via HS vs min/max datasheet
Skip senza min/max.
#### `PE-SI-008` return via accanto alla coppia (`return_path`)
Skip senza kind.
#### `PE-SI-009` serie R ohm sul net HS (non EN-RC)
- Test: `tests/test_si_check.py` `test_en_rc_series_resistor_does_not_paint_usb`.
#### `PE-SI-010` bus HS misurato, libreria senza FACT Z → INFO, non FAIL 90 Ω
- Test: `tests/test_si_check.py` `test_usb_without_library_z_is_insufficient_not_90ohm_fail`, `test_empty_net_class_impedance_does_not_paint_usb`; `tests/test_hf_line_check.py` `test_existing_si_usb_not_polluted_by_hf_geometry`.
Refresh extract SI vecchio: `tests/test_pcb_plan_closeout.py` `test_si_refresh_when_old_extract_has_only_decoupling`, `test_si_extract_needed_skips_board_ics_only_not_shared_library`.
### 2.5 Linee HF extra — `hf_line_check.py` (2.62.0 Fase A)
Track ≠ via ≠ pad ≠ zona. Stub = traccia dangling.
#### `PE-SI-007` stub vs mm datasheet
INFO se misura c’è e mm mancano (INSUFFICIENT). Skip: pad-pad, via, zone.
- Test: `tests/test_hf_line_check.py``test_no_layout_skips_hf_geometry`, `test_pad_to_pad_usb_has_no_stub`, `test_via_is_not_a_stub`, `test_zone_is_not_a_track_stub`, `test_dangling_track_stub_vs_datasheet_mm_is_fail`, `test_measured_stub_without_datasheet_mm_is_insufficient`.
#### `PE-SI-011` gap pour GND sotto coppia HF (REVIEW)
Skip senza stackup/zone.
- Test: `tests/test_hf_line_check.py` `test_split_under_pair_needs_stackup_and_zone`.
#### `PE-SI-012` terminazione BOM serie/parallelo FACT
Skip se manca il terminatore (non si inventa 50 Ω).
- Test: `tests/test_hf_line_check.py` `test_bom_termination_is_fact_missing_is_skip`.
Catalogo HF: `tests/test_hf_line_check.py` `test_rule_catalog_hf_ids`. DDR/CPU/FPGA: §1.4 (stesso `check_memory_fpga_classes` in `run_pcb_checks`).
### 2.6 Potenza / via / termico sul board — `pcb_power_thermal.py`
#### `PE-PWR-001` (PCB) — `check_pcb_power_traces`
Larghezza **traccia** × spessore rame vs I_load/Imax/I_abs. IPC-2221 solo con thickness **e** ΔT da Tjmax. Iout_max non è carico. Niente 500 mA USB.
Skip se: manca I datasheet (**skip vero**, non INFO INSUFFICIENT — 2.61.1).
- Test: `tests/test_pcb_review.py``test_power_trace_ipc2221_errors_when_load_exceeds_ampacity`, `test_power_trace_uses_parsed_width_and_thickness`, `test_power_trace_skips_without_i_load`, `test_power_trace_skips_iout_max_as_load`, `test_power_trace_uses_imax_when_i_load_absent`, `test_power_trace_uses_i_abs_when_i_load_absent`; `tests/test_interface_class_check.py` `test_usbc_vbus_does_not_invent_usb_500ma`.
#### `PE-VIA-001` — `check_pcb_via_current`
Se I c’è e sul net **zero via**: INFO conteggio. Se le via ci sono: silenzio — **nessuna tabella ampacity**. Via ≠ traccia.
Skip se: manca I.
- Test: `tests/test_pcb_software_bugs.py` `test_via_current_skips_without_i_load`.
#### `PE-VIA-002` (2.62.1)
I + conteggio/drill FACT. Tabella IPC via **non** applicata.
Skip se: manca I.
- Test: `tests/test_pcb_phase_b.py` `test_via_current_skips_without_i_does_not_invent_ipc`.
#### `PE-THM-001` — `check_pcb_thermal_copper`
P = I_load × drop; courtyard senza pour/via.
Skip se: P sconosciuta.
- Test: `tests/test_pcb_review.py` `test_thermal_copper_warns_without_pour_or_vias`.
#### `PE-THM-002` — `check_pcb_junction_temp`
Tj = Ta + P·θJA solo con P, θJA, area rame, conteggio via. Non è FEM.
Skip/INSUFFICIENT se manca un fattore.
- Test: `tests/test_pcb_plan_closeout.py``test_tj_when_theta_copper_vias_exist`, `test_tj_insufficient_without_theta`.
#### `PE-KEL-001`
Pin Kelvin/sense sullo stesso net di carico. Ignora CRS/IN±.
- Test: `tests/test_pcb_review.py` `test_kelvin_sense_pin_on_shared_net`; `tests/test_pcb_software_bugs.py` `test_kelvin_ignores_crs_and_in_plus`.
#### `PE-STCH-001`
Segnale sopra pour GND senza via GND nel bbox. Skip GPIO minuscoli.
- Test: `tests/test_pcb_review.py``test_gnd_stitch_skips_tiny_gpio`, `test_gnd_stitch_info_when_signal_has_pour_but_no_via`.
### 2.7 Derating / gerarchia / timing / PI
#### `PE-DRT-001` / `PE-DRT-002` / `PE-DRT-003` — `pcb_checks.check_pcb_derating` + `derating.py`
Vop vs Vrated: ERROR / MARGIN / PASS INFO. Niente % dielettrico inventato. Skip se manca Vop o Vr.
- Test: `tests/test_fase_b_checks.py` `test_derating_pass_margin_risk`; `tests/test_derating.py` (7, C_eff stima — non è un PE-* a parte).
#### `PE-HIER-001` — `hierarchy.py`
Pin IC senza net nominato.
- Test: `tests/test_fase_b_checks.py` `test_hierarchy_component_pin_net_block`.
#### `PE-TIM-001` / `PE-TIM-002` — `timing_check.py`
001 RC reset vs t_reset; 002 strap vs Vih/Vil.
Skip senza R/C e t_reset o Vih/Vil.
- Test: `tests/test_fase_b_checks.py``test_timing_skips_without_numbers`, `test_timing_reset_rc_vs_t_reset`. **`PE-TIM-002` non ha un test che fa scattare il finding** (solo skip condiviso).
#### `PE-PI-001` / `PE-PI-002` — `pi_check.py`
001 cap locale sul rail IC; 002 locale vs bulk se i valori C esistono. Distanza mm solo da `layout_rules` (altrimenti è PE-PLC-001). Skip net NC.
- Test: `tests/test_fase_b_checks.py``test_pi_missing_local_is_risk_not_error`, `test_pi_any_cap_on_slash_prefixed_rail_suppresses_missing_local`, `test_pi_bulk_only_does_not_claim_no_local`; `tests/test_pcb_software_bugs.py` `test_emi_and_pi_skip_unconnected_nets`. **`PE-PI-002` non ha un assert dedicato sul `rule_id`.**
### 2.8 ESD / return / EMI / SPOF
#### `PE-ESD-001` — `esd_return_check.check_esd`
Net J* ∩ IC senza parte ESD: REVIEW, non ERROR. Niente GPIO/NC/rail spam.
- Test: `tests/test_fase_b_checks.py``test_esd_without_part_is_review_not_error`, `test_esd_skips_gpio_nc_unconnected_and_onboard_power`, `test_esd_one_finding_per_connector_ic_path`, `test_esd_skips_when_protection_part_on_net`.
#### `PE-ESD-002` (2.62.1) — `check_esd_distance`
Distanza **pad** TVSconnettore (via ≠ pad). INFO se no mm.
- Test: `tests/test_pcb_phase_b.py` `test_esd_distance_uses_pads_not_vias`.
#### `PE-RET-001` — `check_return_path`
Net HS sopra pour GND senza via GND nel bbox: REVIEW.
- Test: `tests/test_fase_b_checks.py` `test_return_path_hs_is_review`.
#### `PE-EMI-001` — `emi_check.py`
Solo se `layout_rules` cita choke/ferrite/shield. Non IEC 61000. Skip NC.
- Test: `tests/test_pcb_plan_closeout.py` `test_emi_only_with_datasheet_fact`; `tests/test_pcb_software_bugs.py` `test_emi_and_pi_skip_unconnected_nets`.
#### `PE-SPOF-001` — `spof_check.py`
Un regolatore o XTAL condiviso: REVIEW, mai ERROR.
- Test: `tests/test_pcb_plan_closeout.py` `test_spof_review_single_ldo`.
### 2.9 BOM ↔ PCB ↔ datasheet — `bom_pcb_check.py`
Skip se manca un lato (BOM, footprint, o numero datasheet).
#### `PE-BOM-010` famiglia package
VQFN/WQFN/HVQFN = QFN. LQFP ≠ QFN.
- Test: `tests/pcb/test_pcb_plan_closeout.py` `test_package_family_mismatch_is_pe_bom_010`; `tests/pcb/test_bom_011_named_join.py` `test_qfn_vs_vqfn_same_24_qfn_land_not_bom_010`.
#### `PE-BOM-011` pintable vs pad, join per nome
Join datasheet pintable × `.kicad_mod` lib × pad embedded. Non `pin_count` scalare. A5/B5 USB-C sono pin, non EP. EP/SH/mount classificati; via ≠ pad. Senza pintable: skip.
- Test: `tests/pcb/test_bom_011_named_join.py`; `tests/pcb/test_pcb_plan_closeout.py` `test_package_family_mismatch_is_pe_bom_010`; `tests/pcb/test_pcb_software_bugs.py` `test_ep_split_pads_not_bom_011`; `tests/pcb/test_pcb_via_not_pad.py`.
#### `PE-BOM-012` Vop vs rating/abs-max legato al **pin**
- Test: `tests/test_pcb_plan_closeout.py` `test_abs_max_voltage_and_temp_and_current`; `tests/test_pcb_software_bugs.py` `test_vddcr_absmax_does_not_bind_3v3_io`.
#### `PE-BOM-013` Top vs abs-max T
- Test: `tests/test_pcb_plan_closeout.py` `test_abs_max_voltage_and_temp_and_current`.
#### `PE-BOM-014` I_load vs rating
Skip se manca I.
- Test: `tests/test_pcb_plan_closeout.py``test_abs_max_voltage_and_temp_and_current`, `test_inductor_current_rating`.
### 2.10 Resto Fase B (2.62.1)
#### `PE-STK-001` — `stackup_check.py`
Spessore rame board vs stackup fab sourced. Mai 1 oz default.
Skip se: niente stackup layout o niente FACT fab.
- Test: `tests/test_pcb_phase_b.py``test_stackup_skips_without_fab_spec`, `test_stackup_vs_fab_spec_is_review_not_invented_oz`.
#### `PE-ANT-001` / `PE-ANT-002` — `antenna_layout_check.py`
Keepout zona e matching L/C sul feed. Solo se antenna/net RF sul grafo. Niente 50 Ω inventati.
Skip se: antenna assente; matching manca e non c’è FACT (002 non emette).
- Test: `tests/test_pcb_phase_b.py``test_antenna_skips_when_absent`, `test_antenna_keepout_and_match_are_facts`.
#### `PE-PDN-001` — `pdn_check.py`
Z(f) solo con FACT in frequenza. Z0 SI **non** è PDN.
- Test: `tests/test_pcb_phase_b.py` `test_pdn_skips_without_zf`.
Silenzio Fase B se assente: `tests/test_pcb_phase_b.py` `test_run_pcb_checks_phase_b_absent_is_silent`. Catalogo: `test_phase_b_rule_catalog`.
### 2.11 Review AI PCB
Modulo: `pcb_review.py` + `services/pcb_validation.py`. Stesso oggetto finding. Spiega FACT deterministici; **non** rilegge il PDF; non inventa interfacce / PoE / SuperSpeed / mm / Z / I.
Skip se: niente JSON libreria per lIC.
- Test: `tests/test_pcb_review.py``test_pcb_ai_finding_gets_action`, `test_parse_review_action_field_without_recommendation`, `test_layout_context_includes_via_counts`, `test_layout_context_includes_domain_and_group`, `test_pcb_ai_skips_without_library_extraction`, `test_library_constraints_fill_from_storage`, `test_inventory_lists_net_length_and_pair`; `tests/test_finding_engine.py` `test_pcb_review_ai_finding_action_without_recommendation`; `tests/test_pcb_software_bugs.py` `test_thinking_reasoning_content_echo_still_present`.
### 2.12 Tab antenna RF (non in `run_pcb_checks`)
Moduli: `antenna_rf.py`, `antenna_geometry.py`. Topologia matching + ricetta routing. No EM/VSWR/CPWG. Distinto da `PE-ANT-001/002`.
- Test: `tests/test_antenna_rf.py``test_verify_finds_matching_path_to_ant_footprint`, `test_verify_missing_matching_is_warning`, `test_design_recipe_needs_marker_without_ant`, `test_design_recipe_ready_with_ant_and_stackup`, `test_geometry_templates_produce_export`, `test_geometry_overflow_tiny_zone`, `test_design_recipe_meander_template`.
Placement/auto-place **non** è esame PCB: `tests/test_placement_pack.py`, `tests/test_placement_pipeline.py` (fuori da questo albero di analisi).
---
## Motore finding (condiviso)
`finding_engine.py`: FACT / REQUIREMENT / INFERENCE; ERROR solo RULE+MANDATORY; `decisions.json` non ri-naga.
- Test: `tests/test_finding_engine.py` (11); `tests/test_finding_schema.py` (7); `tests/test_fase_b_checks.py` `test_sort_findings_error_then_class`; `tests/test_review_workflow.py` (10 — stati finding UI, non check PE). CAD bridge: `tests/test_cad_bridge.py` (5).
---
## Test che esistono ma non sono analisi
`tests/` ha **114 file / ~730 test**. Oltre ai nodi sopra restano overlay nativi, upload, auth, billing seam, UI rewrite. Non sono check PE-*.
**Upload / ingest cartella** (non analisi): `tests/test_periscope_frontend_upload_rewrite.py` `test_upload_zone_is_src`; `tests/test_kicad_project.py` (picker cartella, `.history`, Safari stem); `tests/test_netlist_bundle.py` (zip, zip-slip); `tests/test_kicad_pcb.py` `test_upload_pcb_sets_has_pcb`, `test_upload_sch_as_pcb_is_rejected`; `tests/test_purple_parts_resolver.py` (upload BOM/LCSC); `tests/test_reopen_replace.py` `test_reopen_then_replace_bom_and_netlist`.
**Auth**: i test auth esistono (`tests/test_local_auth.py`, `tests/test_periscope_auth_rewrite.py`, `tests/test_pinscope_compat.py`, più overlay che tengono il contratto login). Non si descrivono segreti, JWT, password, o flussi di autenticazione.
Altri non-analisi: rewrite frontend/Docker (`test_periscope_*_rewrite.py`, `test_periscope_leftover_package_requirements.py`, `test_periscope_boot_without_dependency_product.py`); delete progetto; cost estimator; event bridge; job runner; `test_deepseek_only.py` (routing modello, non finding).
---
## Conteggio nodi
| Gruppo | Nodi |
| --- | --- |
| Check solo schema (27 PE-* + LED senza ID) | 28 |
| USB-C / ETH / PoE (schema e PCB) | 13 |
| `PE-PWR-001` (due source: schema e PCB) | 1 |
| DDR / CPU / FPGA / PD (grafo, invocati da `run_pcb_checks`) | 11 |
| Check solo PCB (layout, SI/HF, potenza, Fase B, …) | 47 |
| Processo: 3 skill + DigiKey + value + IC AI + PCB AI + tab RF | 8 |
| **Totale nodi analisi** | **108** |
Check PE-* in codice: **99** (tutti elencati). Più LED senza `rule_id`. `PE-LAY-004`, `PE-PLC-005`, `PE-TH-002` sono in codice; `PE-LAY-004` / `PE-PLC-005` non sono in `_seed()` di `finding_engine.py`.
Buchi di test noti (il check c’è, il fire test no): `PE-TIM-002`, `PE-PI-002` (nessun assert `rule_id`), `PE-PLC-002` (solo geometria `_in_poly`), `PE-SI-004` / `PE-SI-005` / `PE-SI-006` / `PE-SI-008` (gate SI, niente caso dedicato).
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# Conformità coding — Periscope intero
Percorso locale: `/Users/michelebigi/Development/periscope/docs/conformita-coding.md`.
Costituzione: `docs/development/CODING_CONSTITUTION.md` (*code that fits in your head*). **Per sezione**, non per funzione: conforme sì / no e perché. Taglio 2.62.1 + questa macro-fase (libreria come porta, test riorganizzati, AF+AI extra). Auth/JWT/users: **non toccati**; la sezione esiste e viene giudicata, non modificata.
Giudizio: **conforme** = un ingegnere legge la sezione senza ricostruire un sistema nascosto. **Non conforme** = troppe responsabilità, stato implicito, eccezioni ingoiate, o semantica a rischio. Un file lungo può essere conforme se il flusso è ovvio; uno corto no se fa tre mestieri.
Zero eccezioni al principio. Le sezioni “non conformi” restano debito: non si “passa” la costituzione dichiarandole OK.
---
## 1. Albero nativo / dependency
**Non conforme.** `periscope/src` (nativo) e `periscope/dependency` (PinScope ereditato) si fondono con `sys.path` + `pkgutil.extend_path`. Chi vince dipende dallordine di insert (`backend/__init__.py` vs `tests/conftest.py`). Due `projects.py`, due `pipeline.py`, due `extraction.py`. Per capire un import serve la mappa dei shadow, non il modulo. È un adattatore temporaneo con path di rimozione (Fase C) ma **oggi** non sta in testa.
## 2. Glue di root (Docker, compose, `backend/__init__.py`, script)
**Conforme a metà.** `backend/__init__.py` è corto e dice il mestiere. `scripts/update-periscope.sh` è una procedura esplicita (`/root/periscope`, niente `data/`). `docker-compose.yml` è piccolo. Il debito è il merge dei due tree a boot, non gli script.
## 3. Motore finding (`periscopex/finding_engine.py`, schema)
**Conforme.** Un oggetto finding, FACT / REQUIREMENT / INFERENCE, clamp verso il basso, `INSUFFICIENT`. Flusso visibile. Test stretti su tipo, codice, severity. ~450 righe: lungo ma un mestiere.
## 4. Modello semantico (`models.py`)
**Conforme.** Pad, via, track, zone, pin, net sono tipi distinti. Pydantic, niente god-class UI. ~534 righe di dati, non di orchestrazione.
## 5. Parser schematico (PADS, EDIF, KiCad sch)
**Conforme a metà.** Funzioni pure, fixture `simple_project`. `parsers_kicad.py` (~760) e `parsers_edif.py` (~465) sono grandi; il mestiere resta “testo → grafo”. Non classificano via PCB come pad (coperto da test rewrite). Debito: taglia dei file, non la semantica.
## 6. Parser PCB KiCad (`parsers_kicad_pcb.py`)
**Conforme.** Via ≠ pad è esplicito e testato. Un input `.kicad_pcb``LayoutGraph`. Non è DRC. ~446 righe.
## 7. Grafo (`graph.py`, `netlist_bundle.py`)
**Conforme.** Costruzione da BOM+netlist, helper di attraversamento. Ferrite Z è un innesto a parte (`ferrite_z.py`), non un if U1.
## 8. Check deterministici PCB (`pcb_checks.py` + moduli `PE-*`)
**Conforme nel disegno, non nel dispatcher.** Ogni modulo (`si_check`, `hf_line_check`, `stackup_check`, …) ha un mestiere e skip senza evidenza. `run_pcb_checks` è un elenco esplicito — si legge. **Non conforme:** `except Exception: log + skip` per ogni check (fallimento strumento vs finding vs dati, collassati). `pcb_power_thermal.py` (~748) e `si_check.py` (~862) e `interface_class_check.py` (~831) sono al limite: ancora un dominio, ma non “piccoli moduli”.
AF Board+AI (`af_ai_hf.py`) è **additivo**: `pcb_pipeline` chiama `append_investigated` dopo `run_pcb_checks`. Non entra nella lista 2.62.1. Non è DRC.
Non è DRC (clearance/track_width/annular restano KiCad). FEM assente: **conforme al vincolo**.
## 9. Check schematico (derating, LED, crystal, mux, rail, …)
**Conforme.** Un file ≈ un check, grafo in → finding out, niente mm inventati. Alcuni file >400 righe (`passive_rail_check`, `filter_check`) ma il flusso è lo stesso.
## 10. Review AI (validate, pcb_review, review_tools)
**Non conforme come sezione unica.** Lautorità deterministica è nei check; lLLM spiega — questo è il disegno giusto (costituzione §8). In pratica `review_tools.py` (~940) e `validation.py` (dependency + native) sono loop di tool + state. `pcb_review.py` (~327) è il prompt + vicinato: quello sta in testa. Il loop live dipende ancora da pezzi ereditati. AF+AI (ipotesi HF → indagine deterministica) è un modulo extra, non sostituisce `run_pcb_checks`.
## 11. Estrazione datasheet (skills, `datasheet_extract.py`, `extraction.py`)
**Non conforme.** `datasheet_extract.py` ~1322 righe e `extraction.py` ereditato ~1298: prompt, tool, coerce, taxonomy, auto-resolve nello stesso file. Il mestiere “PDF → JSON libreria” è uno, limplementazione no. Native vs inherited duplicato finché il pipeline non switcha. **Conforme nel ruolo:** LLM estrae, non è il verificatore.
## 12. Libreria componenti (store + porta HTTP/UI)
**Prima: non conforme come porta.** Catalogo e `library_has_*` vivevano in `services/projects.py` (CRUD progetti + libreria). La pagina `/library` era sola lettura e lempty state mandava a “crea un progetto e lancia la review”. Admin `/admin/components` mescola libreria e users.
**Dopo 2.63.1: conforme come porta.** `POST /api/library/datasheets` registra una scheda (inbox IC o modello passivo/discreto) senza esame. Pintable vuota non va in `library/extracted/` (`library_gate`). PUT promuove inbox → extracted. `projects.py` re-export resta debito. `list_library_catalog` logga e salta JSON rotti.
## 13. Pipeline orchestrazione (`pipeline.py`, `pcb_pipeline.py`, job)
**Non conforme.** `pipeline.py` ~1522 righe: stage, storage, LLM, copy-in-library, graph. `pcb_pipeline.py` è più lineare (ensure_graph → parse → checks → **af_ai additivo** → AI → report) e si segue. Job/SSE sono un secondo asse di stato. Flusso reale: sì, ma non locale. `run_pcb_checks` 2.62.1 non è stato svuotato.
## 14. Storage (`storage.py`, GCS)
**Conforme.** Backend con chiavi stringa, locale vs GCS. Prefissi `users/…/projects/` e `library/` visibili.
## 15. HTTP — progetti, pipeline, report, impedance
**Non conforme per `routers/projects.py` (~1004)** e `pipeline.py` router (~783): troppi mestieri (CRUD, upload KiCad, DigiKey, LCSC). Report e impedance sono sezioni più piccole. La nuova `routers/library.py` è la porta libreria (un mestiere).
## 16. Auth / JWT / users
**Non toccata in questa macro-fase (vincolo).** La sezione **non è conforme** alla costituzione (Clerk + JWT locale + `admin.py` users nello stesso router, middleware che decide tre modi). Non si “sistema” qui. Non si aggiunge auth alla libreria.
## 17. Frontend — shell e pagina libreria
**Conforme a metà.** Overlay `src` su `dependency` (materialize) è un secondo albero da tenere in testa. Pagine progetto/report/dashboard sono lunghe ma a mestiere. `/library` era browse-only; ora è porta (import + modifica scheda) con form/editor spezzati. `admin/page.tsx` ~1780: **non conforme** (libreria + users + usage). Non toccato (users).
## 18. Frontend `api.ts` / types
**Non conforme.** `api.ts` nativo ~1179 righe, client unico per tutto. Types allineati ai modelli: sì. Un file non sta in testa. Nuove funzioni libreria restano lì per non inventare un secondo client.
## 19. Skills e taxonomy
**Conforme.** `skills/*/SKILL.md` + `validate.py` in-process; taxonomy JSON per tipo. `repo_paths` al posto di `Path(__file__)` magici (test rewrite). Non si chiama `upload_skills.py`.
## 20. Vendor ImpedenceFinder
**Conforme come confine, non come licenza.** Core Z0 chiuso, non FEM, non secondo set di formule (test). LICENSE UNKNOWN resta debito legale, non di forma del codice.
## 21. Test
**Prima: non conforme come mappa.** Un flat `tests/test_*.py` mescolava datasheet, libreria, schema, PCB, rewrite, auth. Copertura vera, ordine mentale no.
**Dopo: conforme come mappa, copertura tenuta.**
| Cartella | Mestiere |
| --- | --- |
| `tests/datasheet/` | preliminare PDF / pin / abs-max / I / Z / ferrite / DigiKey |
| `tests/library/` | porta libreria (anche senza esame) |
| `tests/schematic/` | net, BOM, review IC, check su grafo |
| `tests/pcb/` | `run_pcb_checks`, geometria, SI/HF già in 2.62.1 |
| `tests/impedancefinder/` | vendor Z0 (stesso nome package del vendor — non va sotto `pcb/`) |
| `tests/af_ai/` | extra: ipotesi HF → indagine deterministica (non DRC, no Z inventata) |
| `tests/` root | identity/rewrite/auth/job — non analisi |
`conftest.py` e `paths.py` restano in root. Test stretti (codice finding, via≠pad) restano la regola; i rewrite “il file sta in src” sono deboli ma sono recinti di albero, non di fisica.
## 22. Costituzioni Cursor (`.cursor/rules`, questo doc)
**Conforme.** Un master Markdown, `.mdc` operativi, niente Rust speculativo. Questo file è il giudizio, non una seconda costituzione.
## 23. Git / deploy
**Conforme al testo, fragile in pratica.** Commit+push a fine fase; deploy a fine macro-fase; no force. Il worktree locale era un pointer a `~/Development/pinscope` sparito: history recuperata da `github` `cursor/pcb-hf-analisi-675d` @ `20733f0` (2.62.1). Non si tocca `~/Development/pinscope` per edit di prodotto.
---
## Sintesi
| Sezione | Conforme |
| --- | --- |
| Finding engine + modelli + parser PCB | sì |
| Check PE-* come moduli | sì (dispatcher fail-soft no) |
| Skills/taxonomy/storage/Z0 vendor | sì |
| Dual tree src/dependency | no |
| Pipeline + extract ~1.3k + projects router | no |
| Auth/admin users | no (non toccare) |
| Libreria come porta | sì dopo questa fase (re-export debito) |
| Test a cartelle di mestiere | sì dopo questa fase |
Priorità debito (non questa fase): spezzare `pipeline.py` / `datasheet_extract.py`; togliere lo shadow dependency quando un modulo nativo è provato; non ingoiare Exception nei check PCB (distinguere tool failure).
**Niente Rust in questa macro-fase** — vedi `docs/rust-criteri.md`. FEM fuori. DRC = KiCad.
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# Libreria componenti — porta prodotto
La libreria **non** vive dentro lesame. È una porta a sé: pagina `/library` + API `/api/library`. Lanalisi *usa* la libreria; non è lunico modo per riempirla.
## Flusso
```text
PDF + MPN + kind (ic | passive_part | simple)
POST /api/library/datasheets
blob MD5 + ref MPN
scheda componente
IC → library/inbox/{mpn}.json (niente pintable inventata)
passive_part → library/passives/{mpn}.json
simple → library/models/{mpn}.json
```
Nessun progetto, nessun `MODE=run` / `MODE=pcb`. Stesso store `library/datasheets/{blobs,refs}`.
`library/extracted/` si scrive **solo** con pintable valida (`library_gate`: ≥2 pin, almeno un nome). PUT `/api/library/components/ic/{mpn}` promuove inbox → extracted.
Pintable IC: `library_gate` rifiuta pintable vuota o senza nomi (niente stub in libreria condivisa).
## Cosa non è
- Non è admin/Clerk/JWT (non si tocca auth).
- Non è DRC, non è FEM.
- Non inventa pin dal PDF. LLLM prelim resta un mestiere a parte; la scheda c’è comunque.
- Non sostituisce `library_has_*` usati dalla pipeline (`library_has_extraction` resta falso finché non c’è pintable).
## Test
`tests/library/` — catalogo, alias MPN, import PDF senza progetto (scheda IC in inbox, passivo in passives), GET/PUT scheda, promozione pintable, rifiuto PDF non valido / kind ignoto.
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# Piano di implementazione: analisi AF della traccia (v1)
DRC = KiCad. Periscope = analisi. **Stesura ora = Python.** Niente rustup, Auth/JWT, OpenEMS, FEM 3D, field solver 2.5D. Pad ≠ via ≠ track ≠ zone. Non si inventano Z, I, mm, εr, tr, f.
Michele 2026-09-22: piano ok con correzioni sotto. SI/HF 2.62 e `PE-AF-001` restano **additivi**. ImpedenceFinder vendored (`vendor/impedancefinder`) non si riscrive.
Repo: `~/Development/periscope`. Copia di questo file anche in `docs/piano-af-analisi.md`.
---
## Paletti obbligatori (Michele)
1. **Z target solo da datasheet** (`z0_ohm` / `zdiff_ohm` / finestra `z_min``z_max` in `layout_rules`). Manca → **skip del confronto Z**, finding visibile INSUFFICIENT, **niente 50/90 Ω**.
2. **Coppia differenziale: i due membri insieme** (Zdiff, accoppiamento intra-coppia, lunghezze/skew). Mai una traccia sola se esiste il partner `_P/_N` o `+/-` sulla board.
3. **Simulazione numerica sì, OpenEMS no.** Niente FEM 3D né solver di campo 2.5D della spec. Metodo contenuto: sezioni da ImpedenceFinder Z0(x) → RLGC lossless per sezione → cascade ABCD → S11/S21 **solo se** Z_ref (= target datasheet) è FACT.
4. **C++ vs Rust:** valutati in §15. Implementazione v1 in Python. Niente rustup.
5. **Skip AF non silenziosi.** In report: *«Pista ad alta frequenza non controllata per mancanza di …»* (tr, f, εr, stackup, Z target datasheet, span via). Finding **INSUFFICIENT / REVIEW**. Non INFO con Z/I inventati. **Se il trigger è falso** (calcolato con FACT e `l` sotto soglia) → **niente finding** AF su quella net/coppia.
---
## 1. Perimetro vs spec
La spec (`specifica-af.md`) descrive Gerber/ODB++, field solver 2.5D, S/TDR completi. Periscope esamina `.kicad_pcb` + grafo + libreria.
| Spec | v1 Periscope |
| :--- | :--- |
| Parser Gerber/ODB++ | No. KiCad `LayoutGraph`. |
| Trigger λ/10 e tr/(6 tpd) | Sì, FACT only. |
| Gomiti, taper, 3W, piano 3H | Sì, solo net/coppie **triggerate**. Non DRC. |
| Via stub / L_via | Sì se drill + **span layer** + h. Altrimenti PE-AF-002 span via. |
| Field solver 2.5D / OpenEMS | **Fuori.** |
| RLGC + S-param | Cascade sezioni lossless + Z0 ImpedenceFinder. S11/S21 se Z_ref datasheet. |
| TDR IFFT | Fuori. Profilo Z0(x) non si chiama TDR. |
| Wheeler allegato B | Non usato. Hammerstad/Cohn del vendor. |
`run_pcb_checks` (SI/HF) **invariato**.
---
## 2. Trigger
Candidati: net con rame **traccia**, non power/GND, non `skip_si_net` (I2C/GPIO/EN/CC/strap), non XTAL. Coppia = ununità: `l = max(l_p, l_n)`; se un membro è candidato, lo è la coppia.
Costanti: c = 2.99792458×10⁸ m/s. `tpd = √εr_eff / c`. `λ = c / (f √εr_eff)`.
- λ/10 se `f` FACT oppure `f = 0.35/tr` con `tr` FACT, e εr_eff da stackup+geometria (ImpedenceFinder).
- Rise time: `l ≥ tr / (6 tpd)` con `tr` FACT (non la forma tr·vp/2).
**Trigger vero** → analisi discontinuità / Z / cascade / via.
**Trigger falso** (entrambe le soglie calcolate e `l` sotto) → silenzio AF.
**Trigger non calcolabile** su un candidato (manca tr **e** f, o manca stackup/εr) → **PE-AF-002 visibile**, testo italiano con la lista di ciò che manca. Non è “trigger falso”.
---
## 3. Skip visibili (non silenziosi)
| Manca | Testo (es.) | Quando |
| :--- | :--- | :--- |
| stackup / εr | mancanza di stackup, εr | candidato, trigger non valutabile |
| tr, f | mancanza di tr, f | candidato, serve almeno uno |
| Z target datasheet | mancanza di Z target datasheet | trigger **vero**, niente confronto ±10% e niente S |
| span via | mancanza di span via | trigger vero **e** c’è un via sulla net/coppia senza layers |
Niente ohm, niente ampere, niente 1 ns USB. Status WARNING, class REVIEW, `evidence_status=INSUFFICIENT` (il clamp del motore finding non deve promuovere RULE/ERROR).
`PE-AF-001` (AI Z0 senza stackup) resta; è già INSUFFICIENT visibile.
---
## 4. Coppia differenziale
Partner: ImpedenceFinder + `partner_net`. Un finding per coppia, non due cloni. Zdiff da `diff_microstrip_z0` / `diff_stripline_z0`. Intra-coppia: lunghezze, non regola 3W (il mate non è aggressore). 3W solo vs **altre** net.
---
## 5. Simulazione numerica (non OpenEMS)
Per net/coppia triggerata con campioni Z0:
1. Sezioni di lunghezza campionata, Z0 ImpedenceFinder (flag `plane_broken` esclusi dal voto ohm).
2. Lossless: `L' = Z0 · tpd`, `C' = tpd / Z0` per metro.
3. ABCD di cascata; S11/S21 rispetto a **Z_ref = target datasheet**.
4. Confronto ΔZ0 ±10% vs stessa finestra datasheet. Duplicato `PE-SI-002`: non secondo FAIL.
Senza Z_ref: PE-AF-002, cascade non pubblica S.
---
## 6. Dati
- Stackup KiCad già parsato (`epsilon_r`, thickness; mai 1 oz default).
- `LayoutVia.layers` da `(layers "F.Cu" "B.Cu")`. Size anulare ≠ drill ≠ track.
- `tr`/`f` da `layout_rules` del driver sulla net (`rise_time`, `tr_ns`, `f_hz`, …) e `net_class` espanso come SI.
---
## 7. Finding PE-*
| ID | Ruolo |
| :--- | :--- |
| PE-AF-001 | AI Z0 senza evidenza (esistente) |
| PE-AF-002 | Skip visibile “non controllata per mancanza di …” |
| PE-AF-020 | Gomito ~90° |
| PE-AF-021 | Gradino W / taper |
| PE-AF-030 | `plane_broken` |
| PE-AF-031 | Return 3H |
| PE-AF-032 | `plane_split_nearby` |
| PE-AF-040 | 3W vs aggressore (non il mate) |
| PE-AF-050 | Z0/Zdiff vs finestra datasheet + cascade in `calculation` |
| PE-AF-051 | CPWG/unknown: no ohm |
| PE-AF-060 | L_via se drill+h+span |
| PE-AF-061 | Via stub vs λ/20 |
---
## 8. Moduli e pipeline
`af_trigger.py`, `af_rlgc.py`, `af_trace_check.py`. Dopo `run_pcb_checks`, prima `af_ai`. Non dentro la lista 2.62. Stage SSE `af_trace`.
---
## 9. Test HubAudio
Path opzionale `~/Development/HubAudio/.../HubAudio.kicad_pcb`. USB senza tr FACT → PE-AF-002 (tr/f), zero 90 Ω. GPIO → niente AF. Trigger sintetico corto con tr FACT → zero finding. Lunga + target datasheet → PE-AF-050. Coppia: un finding, non D+ solo. SI stub `PE-SI-007` resta.
---
## 10. Fasi v1 (questa implementazione)
Parser via layers; trigger; skip visibili; coppia; Z/cascade se target; gomiti/width; 3W; via se span; pipeline; changelog; pytest.
---
## 11. Fuori scope
OpenEMS, FEM, 2.5D, TDR IFFT, NEXT/FEXT in volt, 5W default, auto-miter sul PCB, Gerber/ODB++, Auth/JWT, rustup.
---
## 15. C++ vs Rust (valutazione; stesura Python)
Criteri (come `docs/rust-criteri.md`): geometria pad≠via≠track≠zone al confine; memoria/ownership su HubAudio; hot path profilato; determinismo; FFI grosso (struct in → struct out).
| Criterio | AF v1 (trigger + Shapely + cascade) | C++ | Rust |
| :--- | :--- | :--- | :--- |
| Geometria | Tipi già distinti in Python; Shapely nel vendor. Un port deve **non** fondere via/pad. | Possibile (CGAL/Clipper), confine pericoloso se si “semplifica” AABB. | Stesso rischio; ownership aiuta i buffer, non la semantica PCB. |
| Memoria | HubAudio è un `.kicad_pcb` grande; il costo oggi è parse + zone Shapely, non la cascade (O(sezioni)). Nessuna misura che Python non basti. | Arena/SoA utili dopo profilo. | Stesso, dopo misura. |
| Hot path | Non profilato. Candidati *futuri* restano parser PCB e point-in-poly, non PE-AF isolato. | Solo se il profilo lo dice. | Idem. |
| Determinismo | Cascade ABCD e Z0 chiusi sono deterministici. | ok | ok (niente HashMap nel testo finding). |
| FFI grosso | Un rewrite ora = due runtime + duplicare LayoutGraph. **Complicherebbe** (Michele). | pybind/nanobind, grosso se si passa tutta la board. | PyO3, stesso costo. ImpedenceFinder resterebbe Python/Shapely. |
**Decisione:** v1 Python. Nessun pezzo scelto per C++ o Rust. Michele può volere Rust un giorno; sequenza obbligatoria resta: Python corretto → misura HubAudio → profilo → scelta esplicita. ImpedenceFinder non si riscrive “per Rust”. OpenEMS non è candidato a nessun linguaggio in Periscope.
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# Criteri Rust — Periscope
Percorso locale: `/Users/michelebigi/Development/periscope/docs/rust-criteri.md`.
Costituzione: Python è il default. Rust **non** è un default. Questo documento dice *quando* un pezzo può entrare in Rust. Non sceglie ancora un pezzo. **Niente `rustup`, crate, né FFI finché una riga sotto non è scelta *e* misurata.**
FEM / OpenEMS / field solver: fuori dal prodotto. Non sono candidati Rust.
DRC: KiCad. Non è un candidato Rust in Periscope.
## Non solo velocità
Un bottleneck di CPU non basta. Un pezzo va in Rust solo se **tutti** i punti seguenti sono veri.
1. **Correttezza geometrica** — pad ≠ via ≠ traccia ≠ zona deve sopravvivere al confine. Se Rust collassa oggetti per “è più facile in un AABB”, il pezzo è rifiutato anche se è più veloce.
2. **Memoria / ownership** — pressione reale (PCB grandi, segmenti, zone) o lifetime che Python non può possedere senza copie cieche. Non “magari un giorno”.
3. **Parser o hot path** — il costo sta in un ciclo stretto (parse `.kicad_pcb`, walk segmenti, predicate geometriche) dopo profiling. Non nellorchestrazione, non nellI/O HTTP, non nellLLM.
4. **Determinismo** — stessa input + config → stesso modello e stessi numeri. Niente hash random, niente ordine di hash map visibile nei finding, niente dipendenza dallLLM.
5. **Confine Python grosso** — una chiamata: struct in → struct out. Vietato un round-trip per pad, per via, per “is_point_in_poly” dal loop Python.
Se manca anche uno solo di questi, il pezzo resta in Python.
## Sequenza obbligatoria (costituzione §§3336)
```text
implementazione corretta in Python
misura (wall + allocazioni, board reale: HubAudio / Emmaforo)
profiling (il hot path ha un nome di funzione)
scelta esplicita del pezzo in questo file
Rust con confine grosso
benchmark sulla stessa board
accetta / rifiuta sui numeri e sulla semantica (via resta via)
```
Finché la riga “Pezzo scelto” sotto è vuota: **nessun rustup**.
## Cosa non va in Rust
| Area | Perché |
| --- | --- |
| Pipeline, job, SSE, FastAPI | orchestrazione |
| Estrazione datasheet, skills, LLM | I/O + modello |
| Review AI, normalize, dedup | non deterministico in autorità |
| Project CRUD, storage, report JSON | I/O |
| Frontend | altro runtime |
| Auth / JWT / users | fuori perimetro; non toccare |
| FEM, OpenEMS, ampacity IPC via, DRC | non è Periscope |
| ImpedenceFinder venduto | già un core chiuso; non riscrivere “per Rust” |
| Un check `PE-*` isolato | il check è regola + evidenza; il costo è il parser/geometria a monte |
## Candidati *solo dopo misura* (nessuno scelto)
Questi sono i posti dove un profilo *potrebbe* mostrare un hot path. Non sono un piano di porting.
- Parser `.kicad_pcb` (`parsers_kicad_pcb.py`) se il wall su HubAudio è il parse, non i check.
- Predicate geometriche usate da stub / zone / courtyard (track graph, point-in-poly) se il walk segmenti domina.
- Walk grafo net→pin su BOM grandi, se misurato.
Non candidati: `run_pcb_checks` come god-object Rust; “tutto il core”; Z inventata più veloce.
## Pezzo scelto
Nessuno.
Nessuna misura registrata in questo file. Quindi: niente toolchain Rust in questa macro-fase.
## Come registrare una scelta (futuro)
Quando una misura esiste, aggiungere qui:
```text
Pezzo: <modulo / funzione>
Board: <HubAudio / Emmaforo / …>
Python wall: <s> alloc: <MB>
Hot path: <nome>
Ipotesi Rust: correttezza geometrica | memoria | parser | determinismo | confine
Benchmark dopo: <s> e test via≠pad ancora verdi
Decisione: accetta | rifiuta
```
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# Changelog
What's new in Pinscope.
## 2.6.0 — 2026-07-12 — Export Report to Excel
Download a project's findings as an Excel spreadsheet straight from the report — one click, ready to share, filter, or archive outside Pinscope.
- [New] "Export Excel" button on the validation report. Every finding becomes a spreadsheet row — designator, part number, ID, severity, title, description, recommendation, and its datasheet source (page included) — sorted most-severe first.
## 2.5.1 — 2026-07-04 — More Thorough Reviews
Schematic review now works through every functional area of a component before finishing, so a part with several independent issues has all of them surfaced in one pass instead of just the first.
- [Improved] For each IC, the review covers power and decoupling, every signal interface, absolute-maximum ratings, and reset/boot/configuration and unused pins before reporting — catching multiple issues on the same component that could previously be missed.
## 2.5.0 — 2026-07-02 — Light Mode
Pinscope now has a light theme. Toggle between light and dark with the sun/moon button — in the sidebar next to your account menu, or in the header on the website.
- [New] Theme toggle. Switch between light and dark mode anywhere in the app; your choice is remembered on this device. Everything defaults to dark, exactly as before, until you flip it.
- [Improved] Every status color — error, warning, and pass badges, finding cards, the progress view, billing — is tuned for both themes, so reports stay legible either way.
- [Improved] The sign-in page and account menu now follow the app theme instead of always rendering light.
## 2.4.0 — 2026-07-01 — Automatic Pin & LED Current Checks
Two datasheet-grounded checks now run on every project, independent of the schematic review — catching a swapped-peripheral pin or an over-driven LED — plus a clear list of any components that had no datasheet to review against.
- [New] Pin-function feasibility check. Pinscope now flags when a net assigns an IC pin a peripheral function its silicon can't route — for example a `UART5_TX` net on a pin whose alternate-function table only offers `UART5_RX`. It's reported as an error straight from the datasheet's pin table and names the likely swap (TX↔RX, SDA↔SCL). It deliberately does not judge signal *direction* across an interface — a direct UART crosses TX↔RX while a transceiver runs straight through — so it only fires on physically impossible pin assignments, never on wiring style.
- [New] LED forward-current check. For each LED, Pinscope computes the forward current from the supply rail, the series resistor, and the LED's rated forward voltage, and flags any channel whose current exceeds the LED's rated maximum. Each color of an RGB LED is checked separately, and a leg with no current-limiting resistor at all is called out as a caution.
- [New] "Not reviewed" list on the report. Components with no datasheet on file — for instance a do-not-populate footprint that isn't in the BOM — are now called out explicitly, so a mis-wired pin on an unreviewed part shows up as a known gap instead of being silently absent.
- [New] Findings from these automatic checks carry an "Automated check" badge, so they're easy to tell apart from datasheet-review findings.
## 2.3.3 — 2026-06-08 — Faster Reviews
Multi-chip designs now review several times faster — Pinscope works through ICs in parallel instead of one at a time.
- [Improved] Datasheet extraction and schematic review now process multiple ICs at once, so reports on multi-IC projects come back substantially faster. The findings are unchanged — only the wait is shorter.
## 2.3.2 — 2026-05-26 — Smarter RF Topology Review
Schematic review now reasons about *what each external part is for* before flagging it — catching valid bias, coupling, and matching circuits that previously looked like errors.
- [Improved] The reviewer states the role of every external part on an IC pin (choke, blocking cap, divider, decoupling, matching) before judging the connection. Common RF topologies like bias-T (DC injected onto a coax through a choke, with the chip protected by an internal DC block and a downstream load doing the actual draw) are no longer flagged as errors against the chip.
- [Improved] Stricter absolute-maximum-rating checks: the cited limit must come from the same pin under stress (a Vdd abs-max no longer counts against an RF or signal pin), and the inequality must be a strict exceed — equal-to-abs-max is at most a Warning.
- [Improved] Single-concern deep dives are capped at two follow-up queries; concerns that can't be resolved in that budget are reported as Warnings with the unresolved question stated, so one suspect finding can't starve the rest of the IC review.
- [Improved] Inferred rail voltages from the power-tree pass are no longer treated as ground truth by the schematic reviewer. Voltages set by net name (`+5V`, `+3V3`) or by user power-source hints are trusted as before; voltages the power-tree LLM guessed for an adjustable regulator output or propagated through inference are kept on the power-tree view for reference but excluded from review reasoning, so a single misread rail can't anchor a false-positive Error.
- [Improved] After each IC's review, a second pass normalizes findings against a fixed Error/Warning/Info rubric and merges any two findings that share a single root cause (e.g. "series resistor drops VIN" and "VOUT setpoint exceeds available VIN" are one defect, not two). Cuts run-to-run severity drift and avoids inflating the error count when one defect can be described from multiple angles.
## 2.3.1 — 2026-05-25 — EDIF Netlist Support
EDIF 2.0.0 netlists upload alongside PADS-PCB, with a sub-design picker for files that contain more than one design. Schematic review is also more cautious about polarity / direction-control findings.
- [New] Upload EDIF 2.0.0 (`.edn`) netlists directly. Format is auto-detected from the file contents — no need to convert to PADS-PCB first. Verified against Siemens xDX Designer exports.
- [New] When an EDIF file contains multiple sub-designs, project setup shows a picker so you can choose which one to review. The picker auto-confirms when there's a single clean match against your BOM and only asks when it's ambiguous; unselected sub-designs are filtered out of the design graph.
- [Improved] Stronger verification of differential and polarity pin assignments (USB D+/D, TX/RX, IN+/IN, anode/cathode) directly against the datasheet.
- [Improved] Improved support for bidirectional buffers and level translators (74xx245 and friends) — direction-control truth tables are factored into bus-contention analysis.
- [Improved] Findings that share a single root cause on the same chip are grouped into one combined finding.
## 2.3.0 — 2026-05-24 — LCSC Part Number Support
JLCPCB-style BOMs with LCSC part numbers (e.g. `C12044`) now work out of the box — Pinscope auto-detects the column, resolves each id to the real manufacturer part number, and shows you what it resolved to before the pipeline runs.
- [New] LCSC part numbers in the manufacturer part number column are auto-detected at BOM upload and converted to real MPNs. Works with JLCPCB / EasyEDA exports without any column renaming.
- [New] Project setup now shows the LCSC → MPN mapping on each IC row in the datasheet step (e.g. `C12044 → TP4057-42-SOT26-R`), so you can see what each LCSC id became before the pipeline starts.
- [New] Passive specs (value, voltage, tolerance, dielectric, package) are resolved from the LCSC catalog during project setup, with per-row progress and status — you see what's resolved before spending credits on the full pipeline.
- [Improved] Datasheet auto-fetch hit rate is dramatically higher on LCSC BOMs, because DigiKey now sees real MPNs instead of `C…` ids.
## 2.2.1 — 2026-05-22 — Easier Netlist Uploads & Xpedition Support
Tabbed file upload guide with per-tool instructions, Xpedition coverage, and direct `.net` / `.txt` uploads.
- [New] Documentation for exporting a PADS-PCB netlist from Siemens Xpedition Designer / DxDesigner (VX.2.x, including VX.2.14).
- [Improved] File upload guide reorganized into tabs — KiCad, Altium, OrCAD/Allegro, Xpedition, EasyEDA, and Eagle each get their own panel.
- [Improved] Netlist uploads now accept `.asc`, `.net`, `.NET`, and `.txt` directly — no more renaming required before upload.
- [Improved] File guide now calls out the difference between the PADS-PCB schematic netlist Pinscope needs and the `!PADS-POWERPCB` PCB-layout dump that some EDA tools also save as `.asc`.
## 2.2.0 — 2026-05-20 — Cross-chip Datasheet Review
The reviewer now reads neighbor-chip datasheets to verify cross-chip constraints, with fewer false errors when a spec can't be confirmed.
- [Improved] Schematic review now cross-references connected chips: when an issue depends on a neighbor's spec (5V tolerance, absolute-max, drive strength), the reviewer pulls the relevant pages from that chip's datasheet before flagging it.
- [Improved] Fewer false errors on cross-chip findings: if a counterpart spec can't be confirmed from the datasheet, the issue is reported as a Warning with the unverified assumption stated — instead of being overstated as an Error.
- [Fixed] Some review findings could occasionally fail to appear in the report.
## 2.1.0 — 2026-05-19 — Datasheet Reference Highlighting
Datasheet citations now highlight the exact supporting sentence on the PDF page, with more reliable page numbers on large datasheets.
- [Improved] Datasheet references now highlight the exact supporting sentence on the PDF page, not just the page number.
- [Fixed] Datasheet citations landing on the wrong page for large (multi-hundred-page) datasheets.
- [Fixed] Reviewed findings losing their checked state on page refresh.
## 2.0.1 — 2026-05-01 — Flagging & Onboarding
One-click flags on finding cards, an onboarding survey for new users, and small UI polish.
- [New] Report findings with one click via the flag button on any finding card.
- [New] Onboarding survey for new users to help us improve the product.
- [Improved] Comment input box now fills available width.
## 2.0.0 — 2026-04-29 — Public Changelog
- [New] Initial public changelog.
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# Pinscope Privacy Policy
**Last updated: April 5, 2026**
This Privacy Policy explains how Faradworks, Inc. ("Faradworks," "we," "us," and "our") collects, uses, and discloses information in connection with the Pinscope website (pinscope.ai), platform, and related services (the "Service").
This Privacy Policy is intended for free users and self-serve paid users. Enterprise customers typically use the Service under a separate agreement and (if applicable) a data processing agreement ("DPA"), which may include additional privacy and security terms.
## 1. Key definitions
**"Customer Content"** means any files, data, text, images, netlists, schematics, datasheets, design files, chat inputs, or other materials uploaded or submitted by you.
**"Outputs"** means analyses, checks, summaries, recommendations, or responses generated by the Service based on Customer Content.
**"Derived Data"** means technical artifacts generated solely to operate the Service, such as parsed text, indexes, embeddings, summaries, or extracted metadata.
**"Content"** refers collectively to Customer Content, Outputs, and Derived Data.
**"Personal Data"** (or "personal information") means information that identifies, relates to, describes, is reasonably capable of being associated with, or could reasonably be linked, directly or indirectly, with an individual, as defined under applicable law.
## 2. Roles: controller vs. processor (business customers)
Faradworks is the controller for Personal Data associated with operating the Service for users and prospective customers (for example account data, billing metadata, and website analytics).
If you upload Personal Data within Customer Content on behalf of a business, you may be the controller of that Personal Data and Faradworks may process it as a service provider/processor. Where required, we will make a DPA available upon request.
## 3. Information we collect
We collect only the information reasonably necessary to operate the Service.
### 3.1 Account information
- Name, email address, and organization (optional)
- Authentication identifiers (for example password hashes, session tokens, and account IDs)
- Subscription and plan metadata
### 3.2 Billing information
- Payments are processed by Stripe, a PCI-compliant third-party processor.
- Faradworks receives billing status and subscription metadata (for example plan name, renewal date, and payment status).
- We do not store payment card details.
### 3.3 Customer Content
- Engineering files (for example netlists, schematics, datasheets, and images)
- Chat inputs and related context
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### 3.4 Usage and operational data
Usage and performance telemetry (for example request timestamps, feature usage, response times, error rates, and billing/usage measurements). This data is generally operational in nature and is designed not to include the substance of your Customer Content, except as described in Section 6.3 (Support diagnostics).
### 3.5 Cookies and analytics preferences
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### 3.6 Contact and enterprise inquiry data
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- Interest signals (for example request for a demo, free review evaluation, or higher-limit self-serve access)
- Inquiry notes and follow-up communications related to your request
## 4. How we use information
We use Personal Data and Content to:
- Provide, operate, and maintain the Service
- Perform AI-assisted engineering analysis
- Enforce usage limits and prevent abuse
- Diagnose errors and improve reliability
- Respond to support requests
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- Send service-related communications, including onboarding, feedback requests, product updates, and security notices
- Review and respond to contact or enterprise inquiries, including demo requests and plan-fit conversations
- Comply with legal obligations and enforce our Terms
## 5. AI model training and service improvement
### 5.1 No training on Customer Content for foundation models
Faradworks treats all Customer Content as confidential and does not use it to train, fine-tune, or improve any general-purpose or foundation AI models. Your content remains isolated to your account and is not shared across customers or included in public datasets.
### 5.2 Aggregated and de-identified service improvement
To improve and operate the Service, we rely primarily on aggregated or otherwise de-identified usage metrics (for example error rates and feature usage) that are not reasonably capable of being traced back to you.
## 6. How we share information
We do not sell Personal Data.
We may disclose information in the following circumstances:
### 6.1 Subprocessors and service providers
We use subprocessors and service providers to host and operate the Service (for example hosting, storage, authentication, billing, observability, and database providers). We may share Personal Data and Content with these providers only as necessary to provide the Service.
### 6.2 AI model providers
To generate Outputs, relevant portions of Customer Content are transmitted to AI model providers acting as subprocessors. Providers may include services such as OpenAI, Anthropic, Google, or similar AI platforms.
These providers process Content to generate responses. Their data handling, retention, and caching practices are governed by their respective terms and our configuration.
### 6.3 Support and troubleshooting diagnostics
When needed for reliability, security, abuse prevention, or support troubleshooting, we may process account-linked technical diagnostics (for example request IDs, timestamps, stack traces, provider error payloads, and limited excerpts of inputs or outputs associated with a failing request).
If you submit a support request, submit an Issue Report, or otherwise ask us to investigate an issue with the Service, we may access and review the Customer Content, Outputs, and related Derived Data reasonably necessary to investigate, reproduce, resolve, remediate, and prevent recurrence of that issue. This may include the affected project, review results, uploaded files or excerpts, citations, configuration context, and associated diagnostics.
If, through the applicable in-product support or feedback flow, you explicitly opt in to broader improvement use, we may also use the submitted materials and the reasonably necessary related project/review context to evaluate, test, debug, monitor, support, secure, operate, develop, and improve the Service and related features, systems, and workflows, including for the benefit of other users. This may include quality evaluation, failure analysis, prompt and retrieval improvements, ranking or classification improvements, validation logic, reliability engineering, abuse prevention, and other product-quality, safety, and operational improvements.
We limit this access and use to authorized personnel and permitted service-related purposes. We do not use this content to train, fine-tune, or improve any general-purpose or foundation AI model unless you separately and expressly opt in to that use.
Outside of those circumstances, we do not access or review the substance of your Customer Content except: (a) at your request, (b) to investigate security issues or incidents, (c) if legally compelled, or (d) with your explicit consent.
### 6.4 Legal and safety
We may disclose information to comply with applicable law, lawful requests, and legal process; to protect the rights, property, and safety of Faradworks, our users, and others; and to enforce our agreements and policies.
### 6.5 Business transfers
If Faradworks is involved in a merger, acquisition, financing, reorganization, bankruptcy, or sale of assets, information may be transferred as part of that transaction, subject to standard confidentiality protections.
## 7. Cookies and analytics controls
You can control analytics cookies through the in-product or site controls (where available) and through your browser settings. If you deny analytics cookies, we will not run optional analytics tracking, but essential cookies may still be required for core functionality and security.
## 8. Data retention and deletion
### 8.1 User-controlled deletion
You may delete uploaded files, chats, and review history from within the Service (where available) and you may request closure of your account.
### 8.2 Retention periods
**Active accounts.** We retain Customer Content and Outputs for as long as your account remains active, unless you delete them earlier.
**Account closure.** When you close your account (or we close it at your request), we will delete Customer Content and Outputs associated with your account within 30 days, except where retention is required by law or for legitimate business purposes described below.
**Backups.** Residual metadata or encrypted backups may persist for a limited period (generally up to 90 days) for security, integrity, and disaster-recovery purposes.
**Operational artifacts.** We may retain limited technical artifacts (for example hashed identifiers, aggregated statistics, and anonymized error metadata) for security, abuse prevention, system integrity, and service improvement. These artifacts are not intended to and are not reasonably capable of reconstructing your original designs.
**Support and improvement records.** If you submit a support request or an Issue Report, we may retain the support record, related investigation notes, and the limited associated project/review context needed to document, resolve, and prevent recurrence of the issue. If you explicitly opt in to broader improvement use, we may also retain the submitted materials and related analyses for the service-improvement purposes described in this Policy, subject to the same confidentiality and deletion framework described in this Policy.
**Billing and accounting.** We retain billing records and aggregated usage statistics as required by law and for legitimate business purposes (for example taxes, accounting, and audit).
## 9. Security
We use commercially reasonable administrative, technical, and organizational safeguards designed to protect information, including encryption in transit (TLS) and at rest, per-user access isolation, secure credential management, and monitoring. No system is perfectly secure.
## 10. International data transfers
By default, the Service is hosted in the United States. If you access the Service from outside the United States, information may be transferred to, stored in, and processed in the United States and other countries where we or our subprocessors operate. Where required, we will use appropriate safeguards for international transfers (for example contractual protections in a DPA).
## 11. Your rights and choices
### 11.1 GDPR/UK GDPR
Depending on your jurisdiction, you may have rights to access, correct, delete, restrict, object to processing, and port your Personal Data. You may also have the right to withdraw consent where processing is based on consent.
### 11.2 California (CCPA/CPRA)
If you are a California resident, you may have rights to know, access, delete, correct, and opt out of the "sale" or "sharing" of Personal Data, and to limit the use of "sensitive personal information," as those terms are defined under California law. Faradworks does not sell Personal Data. We do not share Personal Data for cross-context behavioral advertising.
### 11.3 How to exercise rights
Privacy requests (data access, deletion, correction): dev@faradworks.com
For faster handling, use subject line: "Privacy Request (Access/Deletion/Correction)".
We will respond to verified privacy requests within applicable legal timelines (typically within 30 days for GDPR requests).
## 12. Children
The Service is not directed to children, and we do not knowingly collect Personal Data from children under 13 (or under the age threshold applicable in your jurisdiction).
## 13. Changes to this Privacy Policy
We may update this Privacy Policy from time to time. If we make material changes, we will provide reasonable notice by email or by posting a notice on the Service before the changes take effect. The updated policy will be effective as of the "Last updated" date unless otherwise stated.
## 14. Contact
Questions about this Privacy Policy: [dev@faradworks.com](mailto:dev@faradworks.com)
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# Pinscope Terms of Service
**Last updated: April 5, 2026**
These Terms of Service ("Terms") govern access to and use of the Pinscope platform (pinscope.ai) and related services (the "Service"). These Terms apply to free users and self-serve paid users. If you have a separate written agreement signed by Faradworks, Inc. (for example, an enterprise agreement), that agreement governs your use of the Service to the extent it conflicts with these Terms.
These Terms incorporate Faradworks' [Privacy Policy](/privacy) and any policies referenced in the Service.
By creating an account, clicking to accept these Terms (for example, by clicking an "I agree" button in our signup flow), or otherwise accessing or using the Service, you agree to be bound by these Terms. If you do not agree, do not use the Service.
## 1. Definitions
**"Customer Content"** means any files, data, text, images, netlists, schematics, datasheets, design files, chat inputs, or other materials uploaded or submitted by you.
**"Outputs"** means analyses, checks, summaries, recommendations, or responses generated by the Service based on Customer Content.
**"Derived Data"** means technical artifacts generated solely to operate the Service, such as parsed text, indexes, embeddings, summaries, or extracted metadata.
**"Service"** means the Pinscope platform (pinscope.ai), including all features, APIs, and related services.
**"Content"** refers collectively to Customer Content, Outputs, and Derived Data.
**"Faradworks," "we," and "us"** means Faradworks, Inc., a Delaware corporation.
## 2. Acceptance; eligibility; authority; electronic communications
### 2.1 Authority.
If you use the Service on behalf of a company or other entity, you represent and warrant that you have authority to bind that entity. In that case, "you" and "your" refer to that entity.
### 2.2 Eligibility.
You must be at least 18 years old (or the age of legal majority where you live) to use the Service.
### 2.3 Electronic delivery and notices.
You consent to receive communications from Faradworks electronically (for example, by email and in-product notices). You agree that all agreements, notices, disclosures, and other communications we provide electronically satisfy any legal requirement that such communications be in writing.
## 3. Service description; informational use; no professional advice
### 3.1 Informational service.
The Service analyzes user-submitted electrical design files and datasheets using automated systems, including machine learning models, to generate informational Outputs. Outputs are provided on an "AS IS" and "AS AVAILABLE" basis.
### 3.2 No professional engineering advice.
The Service does not provide professional engineering, safety, regulatory, certification, legal, or compliance advice. You are solely responsible for independently reviewing and validating any Outputs before use in real-world designs, fabrication, procurement, manufacturing, or deployment. Outputs may be incomplete, inaccurate, or unsuitable for your specific application.
### 3.3 AI limitations.
You acknowledge that AI-generated Outputs are probabilistic and may be inaccurate, incomplete, or misleading; that Output quality depends on input quality; and that models and Outputs may change over time.
## 4. Accounts; security; administrators
### 4.1 Account security.
You are responsible for maintaining the confidentiality of your credentials and for all activity occurring under your account. You must promptly notify Faradworks if you suspect unauthorized access.
### 4.2 Administrators and workspace users.
If your account supports multiple users, administrators may be able to manage users, permissions, billing, and settings within your workspace. You are responsible for actions taken by anyone you allow to access the Service through your account.
### 4.3 Responsibility for systems and backups.
You are responsible for your own systems, networks, and devices used to access the Service, and for maintaining appropriate backups of your Customer Content.
## 5. Ownership; licenses; feedback
### 5.1 Your ownership.
You retain all right, title, and interest in and to your Customer Content.
### 5.2 Outputs.
To the extent permitted by law, you own the Outputs generated from your Customer Content. Ownership of Outputs does not confer ownership of the Service, software, models, or analytical methods used to generate them.
### 5.3 Faradworks ownership.
Faradworks retains all right, title, and interest in and to the Service (including its software, models, workflows, analytical methods, user interfaces, and underlying infrastructure), including all improvements and derivatives.
### 5.4 License to operate the Service.
You grant Faradworks a limited, non-exclusive, worldwide, royalty-free license to host, store, process, transmit, reproduce (as necessary for processing), and otherwise use your Customer Content and Derived Data solely to provide, maintain, secure, and support the Service. Any broader use of Customer Content, Outputs, support requests, Issue Reports, or related project/review context for service-improvement purposes is permitted only to the extent expressly described in these Terms, the Privacy Policy, and any opt-in choices you make in the Service.
### 5.5 No model training on Customer Content.
Faradworks will not use Customer Content to train, fine-tune, or improve any general-purpose or foundation AI model, and will not permit third parties to do so, unless you separately and explicitly agree to that use.
### 5.6 Support reports and optional improvement consent.
By default, Faradworks will not use Customer Content, Outputs, support requests, Issue Reports, or related project/review context to improve the Service beyond investigating, resolving, and preventing recurrence of the specific incident for which such materials were submitted.
If you explicitly opt in through the applicable in-product support or feedback flow, you grant Faradworks a limited, revocable, non-exclusive, worldwide, royalty-free license to access, review, retain, and use the submitted materials and the reasonably necessary related Customer Content, Outputs, Derived Data, and project/review context to evaluate, test, debug, monitor, support, secure, operate, develop, and improve the Service and related features, systems, and workflows. This may include quality evaluation, failure analysis, prompt and retrieval improvements, ranking or classification improvements, validation logic, reliability engineering, abuse prevention, and other product-quality, safety, and operational improvements for the benefit of current and future users.
This consent does not authorize Faradworks or any third party to train, fine-tune, or improve any general-purpose or foundation AI model unless you separately and expressly agree to that use.
You may withdraw this optional improvement consent at any time through the Service settings or by contacting Faradworks. Withdrawal will apply prospectively and will not require Faradworks to unwind or delete improvements, evaluations, or analyses already created or completed before withdrawal, subject to the Privacy Policy's retention and deletion terms.
### 5.7 Feedback.
If you provide suggestions or feedback, you grant Faradworks a perpetual, irrevocable, worldwide, royalty-free license to use and incorporate it without restriction or obligation.
## 6. Customer responsibilities; prohibited data; export and restricted data
### 6.1 Rights in content you upload.
You represent and warrant that you have all rights necessary to upload and use Customer Content with the Service and to grant the rights in these Terms.
### 6.2 Prohibited Data.
Unless Faradworks expressly agrees in writing, you will not submit or upload any of the following ("Prohibited Data"): (a) patient, medical, or other protected health information regulated by HIPAA or similar laws; (b) payment card data subject to PCI DSS; (c) bank account numbers, passwords, or authentication secrets intended to access financial accounts; (d) social security numbers, driver's license numbers, or other unique government ID numbers; (e) "special categories" of personal data under the GDPR (or similar sensitive personal data classifications); or (f) any other similarly sensitive personal information that would impose heightened legal or regulatory obligations on Faradworks.
### 6.3 GDPR / DPA.
If you are subject to GDPR/UK GDPR and need a data processing agreement ("DPA"), contact us at [dev@faradworks.com](mailto:dev@faradworks.com). If we provide a DPA for your use case, you must execute it before submitting personal data governed by GDPR/UK GDPR as Customer Content. If a DPA applies, it will govern the parties' rights and obligations with respect to such personal data and will control in the event of conflict with these Terms.
### 6.4 Export-controlled and restricted technical data.
You are responsible for compliance with all applicable export control laws and regulations, including U.S. EAR and ITAR. You agree not to upload export-controlled technical data, classified information, or government-restricted information without proper authorization. By default, the Service is hosted in the United States. By using the Service, you acknowledge that Content may be processed and stored in the U.S. or other regions where we or our subprocessors operate.
## 7. Acceptable use; restrictions
You agree not to:
- (a) upload content you do not have rights to use;
- (b) upload malware, malicious code, or content intended to disrupt or compromise the Service;
- (c) circumvent usage limits or security controls;
- (d) interfere with service integrity or access others' data;
- (e) systematically extract, scrape, benchmark, or reverse engineer the Service, Outputs, or underlying models for the purpose of building a competing product;
- (f) resell, rent, or redistribute the Service without Faradworks' written consent; or
- (g) use the Service for illegal purposes or in violation of applicable laws.
Faradworks may suspend or terminate access for violations of this section.
## 8. High-risk applications
The Service is not designed or intended for use in life-critical or safety-critical systems where failure could result in death, bodily injury, or significant property or environmental damage, including medical devices, automotive safety systems, aerospace systems, nuclear facilities, or weapons systems.
If you choose to use the Service in connection with such applications, you do so at your own risk. You are solely responsible for independently validating all Outputs and for ensuring that any resulting designs, products, or systems meet all applicable safety, regulatory, and certification requirements.
## 9. Free trials; beta features; no reliance
### 9.1 Free and trial access.
Faradworks may offer free plans, free trials, promotional credits, or other no-fee access ("Free Access"). Faradworks may modify, suspend, or end Free Access at any time.
### 9.2 Beta features.
Faradworks may make available features labeled alpha, beta, preview, or similar ("Beta Features"). Beta Features are experimental and may be changed or discontinued at any time.
### 9.3 No SLA; no reliance.
Free Access and Beta Features are provided "AS IS" and "AS AVAILABLE," without any service level commitment and without any obligation to provide support. You should not rely on Free Access or Beta Features for production use.
## 10. Third-party providers; subprocessors; third-party services
### 10.1 Subprocessors.
The Service relies on third-party providers (including AI model providers, hosting, storage, authentication, billing, and observability providers) to help deliver functionality. Faradworks' data handling practices are described in the Privacy Policy.
### 10.2 Third-party services/links.
The Service may integrate with or link to third-party services. Faradworks is not responsible for third-party services, and your use of them is governed by the third party's terms and policies.
## 11. Usage limits; billing; usage allocations; taxes; refunds
### 11.1 Usage limits.
Plans may include limits on reviews, tokens, files, API spend, usage allocations, or other usage metrics. Faradworks may throttle, restrict, or suspend usage to enforce limits or protect system stability.
### 11.2 Prepaid service credits.
Certain Services, plans, or features may allow or require you to prepay for future eligible Pinscope review services for professional, business, or organizational use by purchasing prepaid service credits ("Usage Credits"). Usage Credits represent a prepaid, limited, revocable, non-transferable license to access eligible Pinscope review services up to the applicable credited amount and may be used only for eligible Pinscope review charges as described in the Service. Faradworks may also, in its sole discretion, provide free or promotional credits ("Promotional Credits"), which may be subject to additional restrictions or expiration dates stated when issued.
### 11.3 Credit characteristics and workspace scope.
Credits may be used only for eligible Pinscope review charges and may not be used for any other product or service unless Faradworks expressly states otherwise in the Service. Credits are not legal tender, are not currency, are not redeemable for cash, are not refundable except as required by law or expressly stated by Faradworks, do not constitute or confer any personal property right, and do not constitute a bank account, deposit account, stored-value account, digital wallet, payment instrument, or other monetary account. Credits are an internal service accounting mechanism that measures the amount of eligible Pinscope review services you have prepaid and are licensed to use. Any credit balance or similar amount displayed in the Service reflects only our record of remaining prepaid eligibility for future eligible review charges and does not represent money held on your behalf. Credits are non-transferable, may not be sold, assigned, gifted, or sublicensed, and may be used only by the workspace or account to which they are issued. If credits are issued to an organization or workspace, they belong to that workspace and may be consumed by authorized users acting within that workspace.
### 11.4 Credit purchases and application to charges.
Your order for Usage Credits constitutes an offer to purchase those Usage Credits. Faradworks may accept or reject any purchase request in its discretion. Credits are issued when Faradworks confirms the purchase or otherwise makes the credits available in your account or workspace. Credits are applied to eligible Pinscope review charges in the manner described in the Service. Faradworks may reserve, deduct, reverse, release, or adjust credits to reflect quoted charges, completed usage, failed runs, duplicate requests, fraud checks, refunds, chargebacks, or billing corrections. Credit pricing, minimum purchase amounts, maximum purchase amounts, and applicable taxes will be shown in the Service or at checkout. Fees are exclusive of taxes unless stated otherwise.
### 11.5 Credit expiration, forfeiture, and promotional credits.
Unless otherwise stated in the Service or required by law, purchased Usage Credits expire 12 months after the date they are issued to your account or workspace. Expiration does not restart because credits are partially used, because you change plans, or because your workspace or account settings change, unless Faradworks expressly states otherwise. Promotional Credits expire on the date stated when they are issued, or if no date is stated, 12 months after issuance unless required otherwise by law. Credits may be forfeited if the applicable account or workspace is closed, terminated, or suspended, subject to applicable law. Faradworks may also withhold, void, or reverse credits associated with chargebacks, payment reversals, fraud, abuse, or violations of these Terms.
### 11.6 Per-review usage impact.
Paid plans may include monthly usage limits, included usage budgets, or similar usage allocations. These allocations reset each billing period unless otherwise stated. Each review has a usage impact based on scope, selected model, and your applicable plan or pricing structure. Before you run a review, Faradworks will show the usage impact of that review, which may be displayed as a dollar amount, credit amount, percentage of plan limit, or similar usage metric. That usage impact may change over time, including for the same or a similar review configuration, and prepaid credits do not lock in a future review price unless Faradworks expressly states otherwise in the Service. Unless Faradworks expressly states otherwise, the applicable review charge is the quoted amount or usage impact shown in the Service at the time you submit or start the review, and any quote may expire or require refresh before use.
### 11.7 Plan changes.
If you change plans mid-cycle, Faradworks may apply prorated or other adjustments to your available usage limits, credits, budget, or similar usage allocation for that active billing period.
### 11.8 Auto-renewal; cancellation.
Paid subscriptions renew automatically unless canceled. You may cancel at any time through your account settings. Cancellation stops future renewals; it does not retroactively refund fees already paid except where required by law.
### 11.9 Grandfathered plans.
Grandfathered plans may remain available only while the subscription stays active and in good standing. If a grandfathered plan is canceled, lapses, or is changed, reactivation may require enrolling in a then-current plan. Faradworks may retire grandfathered plans with reasonable notice where permitted by law.
### 11.10 Taxes.
Fees are exclusive of taxes unless stated otherwise. You are responsible for applicable taxes, except taxes based on Faradworks' net income.
### 11.11 Refunds and billing corrections.
You may request a refund for completely unused Usage Credits within 24 hours after purchase by contacting [dev@faradworks.com](mailto:dev@faradworks.com). If no refund request is received within 24 hours after purchase, unused Usage Credits become non-refundable except where required by law. Once any portion of purchased Usage Credits has been used, that purchase becomes non-refundable except where required by law or expressly authorized by Faradworks. Otherwise, refunds are provided at Faradworks' discretion or as required by law. Faradworks may correct pricing errors, mistaken issuances, duplicate grants, or accounting mistakes, including by adjusting, removing, or restoring credits where appropriate.
## 12. Confidentiality; security; support access
### 12.1 Confidential Customer Content.
Faradworks treats Customer Content as confidential and does not disclose it to third parties except as necessary to provide the Service (including to subprocessors), as required by law, or with your consent, as further described in the Privacy Policy.
### 12.2 Security.
Faradworks uses commercially reasonable administrative, technical, and organizational safeguards designed to protect Content. However, no system is perfectly secure and Faradworks does not guarantee that unauthorized access, hacking, data loss, or other security incidents will never occur.
### 12.3 Security incident communications.
Where required by applicable law, Faradworks will provide notice of a confirmed unauthorized access to personal data under our control.
### 12.4 Your responsibility for sensitive material.
You are responsible for evaluating whether the Service meets your confidentiality requirements before uploading sensitive or proprietary designs.
### 12.5 Support troubleshooting access.
If you submit a support request or an Issue Report, Faradworks may access account-linked diagnostic records and the Customer Content, Outputs, and related project/review context reasonably necessary to investigate, reproduce, resolve, remediate, and prevent recurrence of the reported issue. This may include the affected project, review results, uploaded files or excerpts, citations, and associated diagnostics.
If you explicitly opt in through the applicable support or feedback flow, Faradworks may also use those submitted materials and related context for the broader service-improvement purposes described in Section 5.6. Faradworks will limit such access and use to authorized personnel and to the permitted purposes described in these Terms and the Privacy Policy.
## 13. Suspension; termination; effect of termination
### 13.1 Suspension/termination by Faradworks.
Faradworks may suspend or terminate access for: (a) violations of these Terms; (b) excessive, abusive, or fraudulent usage; (c) non-payment; (d) legal, regulatory, or infrastructure constraints; or (e) security, abuse-prevention, or risk-management reasons.
### 13.2 Termination by you.
You may stop using the Service at any time and may request account closure.
### 13.3 Effect.
Upon termination, your right to access the Service ends immediately. Faradworks will delete your Content in accordance with the Privacy Policy's data retention and deletion terms, subject to legal retention requirements and limited residual technical artifacts described in the Privacy Policy.
### 13.4 Survival.
Sections that by their nature should survive will survive termination, including ownership, confidentiality, disclaimers, limitation of liability, indemnification, disputes, and general terms.
## 14. DISCLAIMERS
TO THE MAXIMUM EXTENT PERMITTED BY LAW, THE SERVICE AND OUTPUTS ARE PROVIDED "AS IS" AND "AS AVAILABLE," WITHOUT WARRANTIES OF ANY KIND, WHETHER EXPRESS, IMPLIED, STATUTORY, OR OTHERWISE, INCLUDING IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, NON-INFRINGEMENT, ACCURACY, AND QUIET ENJOYMENT.
FARADWORKS DOES NOT WARRANT THAT THE SERVICE WILL BE UNINTERRUPTED, ERROR-FREE, SECURE, OR FREE OF HARMFUL COMPONENTS, OR THAT OUTPUTS WILL MEET YOUR REQUIREMENTS OR BE CORRECT FOR ANY PARTICULAR USE.
## 15. LIMITATION OF LIABILITY
### 15.1 EXCLUSION OF CERTAIN DAMAGES.
TO THE FULLEST EXTENT PERMITTED BY LAW, IN NO EVENT WILL FARADWORKS (OR ITS AFFILIATES, OFFICERS, DIRECTORS, EMPLOYEES, CONTRACTORS, AGENTS, LICENSORS, SUPPLIERS, OR SUBPROCESSORS) BE LIABLE FOR ANY INDIRECT, INCIDENTAL, SPECIAL, CONSEQUENTIAL, EXEMPLARY, OR PUNITIVE DAMAGES, OR FOR ANY LOSS OF PROFITS, REVENUE, BUSINESS OPPORTUNITIES, GOODWILL, OR DATA, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
### 15.2 SPECIFIC EXCLUSIONS.
TO THE FULLEST EXTENT PERMITTED BY LAW, FARADWORKS IS NOT LIABLE FOR: (a) ERROR OR INTERRUPTION OF USE; (b) LOSS, INACCURACY, CORRUPTION, OR UNAUTHORIZED DISCLOSURE OF DATA OR CONTENT; (c) COST OF PROCUREMENT OF SUBSTITUTE GOODS, SERVICES, OR TECHNOLOGY; (d) HARDWARE FAILURES, DESIGN DEFECTS, MANUFACTURING ISSUES, OR SAFETY INCIDENTS RELATED TO DESIGNS REVIEWED USING THE SERVICE; OR (e) ANY MATTER BEYOND FARADWORKS' REASONABLE CONTROL (INCLUDING THIRD-PARTY PROVIDER FAILURES).
### 15.3 AGGREGATE CAP.
TO THE FULLEST EXTENT PERMITTED BY LAW, FARADWORKS' TOTAL AGGREGATE AND CUMULATIVE LIABILITY FOR ALL CLAIMS ARISING OUT OF OR RELATING TO THESE TERMS OR THE SERVICE, UNDER ANY THEORY OF LIABILITY (CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY, STATUTE, OR OTHERWISE), WILL NOT EXCEED THE FEES PAID BY YOU TO FARADWORKS FOR THE SERVICE IN THE TWELVE (12) MONTHS PRECEDING THE FIRST EVENT GIVING RISE TO THE CLAIM. IF YOU HAVE NOT PAID ANY FEES TO FARADWORKS IN THAT PERIOD (FOR EXAMPLE, DURING FREE ACCESS OR A FREE TRIAL), FARADWORKS' TOTAL LIABILITY WILL NOT EXCEED ONE HUNDRED U.S. DOLLARS (US$100).
### 15.4 BASIS OF THE BARGAIN; FAILURE OF ESSENTIAL PURPOSE.
YOU ACKNOWLEDGE THAT THE FEES (IF ANY) REFLECT THE ALLOCATION OF RISK AND THAT FARADWORKS WOULD NOT PROVIDE THE SERVICE WITHOUT THESE LIMITATIONS. THE LIMITATIONS IN THIS SECTION APPLY EVEN IF ANY LIMITED REMEDY FAILS OF ITS ESSENTIAL PURPOSE.
### 15.5 LIMITATIONS REQUIRED BY LAW.
NOTHING IN THESE TERMS LIMITS OR EXCLUDES LIABILITY TO THE EXTENT SUCH LIMITATION OR EXCLUSION IS PROHIBITED BY APPLICABLE LAW.
## 16. Indemnification
### 16.1 Your indemnity.
You agree to indemnify, defend, and hold harmless Faradworks and its affiliates, officers, directors, employees, contractors, and agents from and against any claims, damages, losses, liabilities, and expenses (including reasonable attorneys' fees) arising out of or relating to: (a) your use of the Service or Outputs; (b) your Customer Content; (c) your violation of these Terms; (d) your violation of any third-party rights (including IP rights); or (e) designs, products, or systems you create using or informed by Outputs.
### 16.2 Indemnification procedure.
Your obligations under this Section 16 are conditioned on Faradworks: (a) providing you prompt notice of the claim (provided that failure to provide prompt notice will relieve you only to the extent materially prejudiced); (b) providing reasonable assistance at your expense; and (c) allowing you sole control of the defense and settlement of the claim, except that you may not settle any claim in a manner that admits fault by Faradworks or imposes obligations on Faradworks without Faradworks' prior written consent. Faradworks may participate in the defense with counsel of its choosing at its own expense.
## 17. Force majeure
Faradworks will not be liable for any delay or failure to perform due to events beyond its reasonable control, including acts of God, natural disasters, war, terrorism, riots, labor disputes, pandemics, public utility failures, internet or cloud provider failures, or governmental actions ("Force Majeure Events"). A Force Majeure Event does not excuse your payment obligations for fees accrued prior to the Force Majeure Event.
## 18. Disputes; governing law; venue; time limit to bring claims
### 18.1 Informal resolution.
Before filing a claim (other than for injunctive relief), you agree to first contact Faradworks at [dev@faradworks.com](mailto:dev@faradworks.com) with a brief description of the dispute and your contact information. The parties will attempt in good faith to resolve the dispute for at least 30 days.
### 18.2 Governing law.
These Terms are governed by the laws of the State of California, without regard to conflict of law principles.
### 18.3 Venue.
Any disputes arising out of or relating to these Terms or the Service must be brought in the state or federal courts located in California, and each party consents to personal jurisdiction and venue there.
### 18.4 Injunctive relief.
Nothing in these Terms prevents either party from seeking injunctive or other equitable relief to protect its intellectual property or confidential information.
### 18.5 Time limit to bring claims.
To the fullest extent permitted by law, any claim arising out of or relating to these Terms or the Service must be filed within one (1) year after the cause of action accrues; otherwise, it is permanently barred.
## 19. Changes to Terms
We may update these Terms from time to time. If we make material changes, we will provide reasonable notice by email or by posting a notice on the Service before the changes take effect. The updated Terms will be effective as of the "Last updated" date unless otherwise stated. Your continued use of the Service after the effective date, including accepting the updated Terms through the Service, constitutes acceptance of the updated Terms. If you do not agree to the changes, you must stop using the Service and close your account.
## 20. General terms
### 20.1 Entire agreement; order of precedence.
These Terms (including the [Privacy Policy](/privacy) and any policies referenced in the Service) are the entire agreement between you and Faradworks regarding the Service and supersede prior or contemporaneous agreements or understandings. If you have a separate written agreement signed by Faradworks that expressly governs the Service, that agreement will control to the extent of conflict.
### 20.2 Severability.
If any provision of these Terms is held invalid or unenforceable, the remaining provisions will remain in full force and effect.
### 20.3 Waiver.
Failure to enforce any provision is not a waiver of future enforcement.
### 20.4 Assignment.
You may not assign these Terms without Faradworks' prior written consent. Faradworks may assign these Terms in connection with a merger, acquisition, corporate reorganization, or sale of all or substantially all of its assets, or otherwise upon notice.
### 20.5 No third-party beneficiaries.
Except for Faradworks' affiliates, licensors, suppliers, and subprocessors as intended third-party beneficiaries of Sections 14 (Disclaimers) and 15 (Limitation of Liability), there are no third-party beneficiaries to these Terms.
### 20.6 Independent contractors.
The parties are independent contractors. Nothing in these Terms creates any agency, partnership, joint venture, or employment relationship.
### 20.7 Headings.
Headings are for convenience only and do not affect interpretation.
## 21. Contact
Faradworks, Inc.
Questions about these Terms or the Privacy Policy: [dev@faradworks.com](mailto:dev@faradworks.com)
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@@ -1,39 +0,0 @@
FROM node:20-alpine AS builder
WORKDIR /app
ARG NEXT_PUBLIC_API_URL
ENV NEXT_PUBLIC_API_URL=$NEXT_PUBLIC_API_URL
COPY package*.json ./
RUN npm ci
COPY . .
ENV NEXT_TELEMETRY_DISABLED=1
RUN echo "BUILD API URL=$NEXT_PUBLIC_API_URL"
RUN npm run build
FROM node:20-alpine
WORKDIR /app
ARG NEXT_PUBLIC_API_URL
ENV NEXT_PUBLIC_API_URL=$NEXT_PUBLIC_API_URL
ENV NODE_ENV=production
ENV NEXT_TELEMETRY_DISABLED=1
COPY --from=builder /app/package*.json ./
RUN npm ci --omit=dev
COPY --from=builder /app/.next ./.next
COPY --from=builder /app/public ./public
COPY --from=builder /app/src ./src
COPY --from=builder /app/package.json ./package.json
COPY --from=builder /app/next.config.ts ./next.config.ts
EXPOSE 3000
CMD ["npm","run","start"]
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@@ -1,12 +0,0 @@
"use client";
// Open-core seam: the cloud/gateway build replaces this file with the Clerk
// user button and live credit balance. The open-source build has neither.
export function SidebarCredits() {
return null;
}
export function SidebarUserButton() {
return null;
}
@@ -1,80 +0,0 @@
"use client";
import { useCallback, useState } from "react";
import { Upload, FileCheck } from "lucide-react";
import { cn } from "@/lib/utils";
interface FileUploadZoneProps {
label: string;
accept: string;
multiple?: boolean;
files: File[];
onFilesChange: (files: File[]) => void;
preloaded?: string[];
}
export function FileUploadZone({
label,
accept,
multiple = false,
files,
onFilesChange,
preloaded,
}: FileUploadZoneProps) {
const [dragOver, setDragOver] = useState(false);
const handleDrop = useCallback(
(e: React.DragEvent) => {
e.preventDefault();
setDragOver(false);
const dropped = Array.from(e.dataTransfer.files);
onFilesChange(multiple ? [...files, ...dropped] : dropped.slice(0, 1));
},
[files, multiple, onFilesChange]
);
const handleChange = useCallback(
(e: React.ChangeEvent<HTMLInputElement>) => {
const selected = Array.from(e.target.files ?? []);
onFilesChange(multiple ? [...files, ...selected] : selected.slice(0, 1));
},
[files, multiple, onFilesChange]
);
const hasFiles = files.length > 0 || (preloaded && preloaded.length > 0);
return (
<label
className={cn(
"flex flex-col items-center justify-center gap-2 rounded-lg border-2 border-dashed p-6 cursor-pointer transition-colors",
dragOver ? "border-blue-500 bg-blue-500/5" : "border-border hover:border-foreground/20",
hasFiles && "border-emerald-500/40 bg-emerald-500/5"
)}
onDragOver={(e) => { e.preventDefault(); setDragOver(true); }}
onDragLeave={() => setDragOver(false)}
onDrop={handleDrop}
>
{hasFiles ? (
<FileCheck className="h-6 w-6 text-emerald-600 dark:text-emerald-400" />
) : (
<Upload className="h-6 w-6 text-muted-foreground" />
)}
<span className="text-sm font-medium">{label}</span>
{preloaded && preloaded.length > 0 && (
<div className="text-xs text-muted-foreground">
{preloaded.map((f) => (
<span key={f} className="font-mono block">{f}</span>
))}
</div>
)}
{files.length > 0 && (
<div className="text-xs text-muted-foreground">
{files.map((f) => (
<span key={f.name} className="font-mono block">{f.name}</span>
))}
</div>
)}
<input type="file" accept={accept} multiple={multiple} className="hidden" onChange={handleChange} />
</label>
);
}
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@@ -1,42 +0,0 @@
"use client";
/**
* Open-core seam: the cloud/gateway build replaces this file with wrappers
* around Clerk's hooks. The open-source build always runs as the local
* user, mirroring the backend: user_id "local", admin access granted
* (backend is_admin() returns True when auth is disabled).
*/
export interface AppUser {
id: string;
name: string | null;
email: string | null;
isAdmin: boolean;
}
export interface OptionalAuth {
isSignedIn: boolean;
getToken: () => Promise<string | null>;
}
export interface OptionalUser {
user: AppUser | null;
isLoaded: boolean;
}
const LOCAL_USER: AppUser = {
id: "local",
name: "Local User",
email: null,
isAdmin: true,
};
const LOCAL_AUTH: OptionalAuth = { isSignedIn: true, getToken: async () => null };
const LOCAL_USER_RESULT: OptionalUser = { user: LOCAL_USER, isLoaded: true };
export function useOptionalAuth(): OptionalAuth {
return LOCAL_AUTH;
}
export function useOptionalUser(): OptionalUser {
return LOCAL_USER_RESULT;
}
-25
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@@ -1,25 +0,0 @@
"use client";
import { useState, useEffect } from "react";
import type { ValidationReport, DesignGraph } from "@/lib/types";
import { fetchReport, fetchGraph } from "@/lib/api";
export function useReport(projectId: string) {
const [report, setReport] = useState<ValidationReport | null>(null);
const [graph, setGraph] = useState<DesignGraph | null>(null);
const [loading, setLoading] = useState(true);
const [error, setError] = useState<string | null>(null);
useEffect(() => {
setLoading(true);
Promise.all([fetchReport(projectId), fetchGraph(projectId)])
.then(([r, g]) => {
setReport(r);
setGraph(g);
})
.catch((e) => setError(e.message))
.finally(() => setLoading(false));
}, [projectId]);
return { report, graph, loading, error };
}
-13
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@@ -1,13 +0,0 @@
/**
* Open-core auth switch.
*
* When NEXT_PUBLIC_CLERK_PUBLISHABLE_KEY is unset the app runs in local/OSS
* mode: no ClerkProvider, pass-through middleware, a stubbed signed-in
* "local" user (matching the backend's LOCAL_DEV_USER), and all credits /
* billing UI hidden. Pairs with BILLING_ENABLED=false on the backend —
* mixed modes (key set but billing off, or the inverse) are unsupported.
*
* NEXT_PUBLIC_* vars are inlined at build time, so this is a build-time
* constant — changing it requires a rebuild / dev-server restart.
*/
export const authEnabled = Boolean(process.env.NEXT_PUBLIC_CLERK_PUBLISHABLE_KEY);
+14
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@@ -0,0 +1,14 @@
# Periscope tree layout
Physical split under the git root. AGPL `LICENSE` stays at the repository root.
| Tree | Path | Role |
| --- | --- | --- |
| Product | `periscope/src/` | Finding engine, PCB/placement, protocol catalog + certifiers, DeepSeek pipelines, local auth, Next.js UI, KiCad plugin, deploy Dockerfiles |
| Overlays | `periscope/dependency/` | Shared AGPL packages (graph/parsers, extraction pipeline, UI primitives, skills, taxonomy, `simple_project`) merged at build/runtime |
| Third party | `vendor/impedancefinder/` | ImpedenceFinder (license UNKNOWN) |
| Glue | `backend/__init__.py` | Merges the two `backend` packages for local imports |
**Do not empty-delete `periscope/dependency/`.** Native modules land in `periscope/src/` over time; overlays stay until each piece has a product replacement.
Docker overlays `dependency` then `src` into `/app`. Local frontend materialization: `./scripts/materialize-frontend.sh` (see root `README.md`).
+149
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@@ -0,0 +1,149 @@
# Periscope — Agentic Schematic Validation
Periscope validates hardware schematics against component datasheets. It extracts constraints from PDFs, parses netlists and BOMs into a queryable graph, and runs an agentic validation loop to flag design violations.
> **Open-core note.** This is the open-source core. A small set of files are
> "gateway-owned seams" — pass-through stubs here (`frontend/src/proxy.ts`,
> `use-optional-auth.ts`, `clerk-theme-provider.tsx`,
> `components/billing/*`, `sidebar-auth.tsx`, `pricing-section.tsx`,
> `analytics/*`, `lib/csp-hosts.ts`) that the hosted-cloud repo replaces
> with auth/billing implementations. Keep their export signatures stable,
> and never import auth/billing SDKs anywhere else in the frontend. On the
> backend, everything reaches billing only through
> `backend/services/billing_hook.py:get_billing()` (a no-op here).
## System Overview
Three layers:
| Layer | Location | Purpose |
|-------|----------|---------|
| **Core library** | `backend/periscopex/` | Models, parsers, graph builder, agentic validator, passive resolver, taxonomy, BOM summary, derating |
| **Backend** | `backend/` | FastAPI app — async pipeline orchestration, SSE progress, project/file storage |
| **Frontend** | `frontend/` | Next.js 16 app — project dashboard, pipeline progress, report viewer, derating, admin dashboard |
Plus `skills/` — extraction prompts (pintable, patterns, specs) inlined locally for DeepSeek. Do not upload to Anthropic Console.
The pipeline stages: Parse BOM → Extract IC Pintables → Extract Simple Components → Extract Passives → DigiKey Auto-Resolve + Value Fallback → Build Graph → Direct Datasheet Review. Pipeline runs can be cancelled mid-execution via `POST /api/pipeline/{id}/cancel`.
## Example Project
`simple_project/` is the reference design for development and testing:
- **MCU**: TI MSPM0G3507SPTR (U3) — 48-pin LQFP
- **USB-UART Bridge**: CH340E (U2)
- **LDO Regulator**: SPX3819M5-L-3-3 (U1) — 5V to 3.3V
- **ESD Protection**: USBLC6-2SC6 (D1)
- **Crystal**: 8 MHz (X1) with 18pF load caps (C9, C10)
Files: `.asc` (PADS-PCB netlist; `.edn` EDIF 2.0.0 also accepted), `.csv`/`.xlsx` (BOM), `design_graph.json` (committed reference fixture used by tests).
## Architecture Principles
- **Modular extractors** — Domain-specific extraction per component type, unified constraint schema
- **Netlist as graph** — Queryable bipartite graph (components + nets) with traversal helpers
- **LLM API for PDF extraction** — Forced tool calls for structured output (pintable, passive patterns, specs). Default provider is DeepSeek.
- **Prompt caching** — Anthropic stamps `cache_control`; Gemini uses CachedContent; DeepSeek uses automatic prefix cache (cache-hit tokens in usage).
- **Local extraction skills** — `skills/*/SKILL.md` is inlined and `validate.py` runs in-process. Never call `scripts/upload_skills.py` (Anthropic Console).
- **Direct datasheet review** — The model reads the IC datasheet plus circuit neighborhood, compares to the reference application circuit, and flags issues via graph query tools (`find_connected_components`, `get_net_for_pin`, `get_pintable`). DeepSeek converts PDFs to text (and page images on the vision model).
- **Datasheet page trimming** — Large PDFs are keyword-trimmed to relevant pages before sending to Claude, reducing token cost (`pypdf`)
- **DigiKey fallback (exact MPN only)** — When pattern-based and direct extraction fail, DigiKey API fetches product parameters for auto-resolve. DigiKey matches only on exact MPN; fuzzy hits are rejected to avoid polluting the shared library with wrong-dielectric / wrong-voltage parts.
- **Value-string fallback** — When DigiKey misses an R/C/L/FB passive, a value-string resolver maps the BOM `Value` string to typed passive specs. Value-derived specs are persisted per-project only — never to the shared library.
- **Per-IC review error isolation** — Direct datasheet review runs each IC independently; one malformed payload or bad response cannot kill the whole run. Failed ICs surface as skipped components with the error.
- **Cross-IC excerpt budget (per-neighbor)** — To verify an interface finding the reviewer can pull a *connected* IC's datasheet pages (`get_datasheet_excerpt`). The budget is a global per-review page ceiling **plus a per-neighbor sub-budget**, so verifying one interface is never starved by pages already spent on other neighbors.
- **Finding normalization is downgrade-only** — A post-review per-IC normalize pass (`services/normalize_findings.py`) drops self-cancelling findings, merges same-root-cause findings, and re-grades severity — but only ever *downward*. A deterministic clamp caps each finding at the reviewer's calibrated severity (and any `Unverified:` finding at WARNING, preserving the prefix).
- **Cross-IC finding dedup** — After all per-IC reviews complete, a single pass (`services/dedupe_findings.py`) collapses one physical interface defect reported from both endpoints into a single finding. Gated by `cross_ic_dedup_enabled`; fail-soft.
- **Capacitor voltage derating** — Deterministic derating table computed from graph (ceramic/tantalum/electrolytic percentages, pass/fail per capacitor)
- **Deterministic checks over heuristics** — Exact checks where possible
- **Zero coupling between layers** — Backend calls periscopex functions with paths; frontend talks to backend via REST + SSE
- **Library deduplication** — Shared library (`library/extracted/`, `library/patterns/`, `library/models/`, `library/passives/`, `library/datasheets/`) caches extractions across projects
- **Content-addressed datasheets** — `library/datasheets/blobs/{md5}.pdf` stores unique PDFs once; `library/datasheets/refs/{safe_mpn}.json` maps MPNs to blobs (dedupe + multi-MPN sharing)
- **Taxonomy-driven extraction** — Living component taxonomy (`taxonomy/`) with per-subtype classification and specs schemas
- **Per-stage model config** — Each pipeline stage can use a different Claude model (e.g., Sonnet for review, Haiku for auto-resolve)
- **API call logging** — Every Claude API call is logged with token counts, cost, and timing per pipeline run
- **Report versioning** — Each project run is stamped with the current app version on the first `/start` transition (`ProjectMeta.periscope_version`). The version comes from `frontend/content/changelog.md`'s latest `##` heading — single source of truth — read at backend startup via `backend/_version.py`.
## Datasheet Extraction
Extracted data lives in `library/extracted/` (shared) or per-project under the storage backend. One JSON per MPN, schema in `backend/periscopex/models.py`.
Per-MPN IC extraction captures:
1. **Pintable** — Pin number + name (required), description + alt functions (optional)
2. **Package info** — Base family, package, pin count, description
3. **Component subtype** — Dotted taxonomy path (e.g., `ic.mcu`, `ic.power.ldo`)
For discrete/simple components:
4. **Specs** — Component specs (value, tolerance, package, voltage rating, etc.); parameters are filtered against taxonomy specs schemas
Extraction inlines **local skills** (`skills/*/SKILL.md` + `validate.py`) against DeepSeek. Do not use Anthropic Console Skills.
## Claude Console Skills
```
skills/
├── extract-pintable/ # Pin table + package info + taxonomy
│ ├── SKILL.md # System prompt (YAML frontmatter + markdown)
│ ├── schema.json # Tool output schema
│ └── validate.py # Validation script
├── extract-pattern/ # Passive MPN pattern
└── extract-specs/ # Component specs (discrete, connectors, crystals, etc.)
```
## Taxonomy
Living component taxonomy in `taxonomy/` — one JSON file per top-level type (ic, passive, connector, crystal, discrete, fuse, switch, test_point, transformer). Each subtype entry includes `description` and `example_mpn`.
Key taxonomy features:
- **Ref prefix mapping** — `U→ic`, `R/C/L→passive`, `D/Q→discrete`, `X→crystal`, etc.
- **Dotted subtype paths** — e.g., `ic.mcu`, `passive.capacitor.ceramic`, `ic.protection.esd`
- **Dynamic growth** — `add_subtype()` adds new entries; concurrent-safe JSON writes
- **Specs schema auto-generation** — Type-level and subtype-level parameter specs schemas are auto-generated via Claude when a taxonomy entry has none; extraction discards parameters not in the schema (`extra_specs` field)
## Scripts
- `scripts/upload_skills.py` — leftover Claude Console uploader. **Do not run.** Skills are local + DeepSeek only.
- `scripts/migrate_datasheets_to_library.py` — One-time migration: copy per-project datasheets to `library/datasheets/` (dry-run by default, `--apply` to execute)
- `scripts/migrate_datasheets_to_blobs.py` — Migrate named-PDF datasheets into the content-addressed blobs/refs layout (dry-run by default, `--apply` to execute)
- `scripts/dedup_library_datasheets.py` — Remove redundant per-MPN datasheet PDFs when a passive pattern already has a `datasheet_key` (dry-run by default, `--apply` to execute)
- `scripts/gc_orphan_blobs.py` — Garbage-collect `library/datasheets/blobs/*.pdf` not referenced by any ref file
- `scripts/clear_rules_from_extractions.py` — Strip deprecated `rules`/`absolute_maximum_ratings` from existing library extractions
## Tech Stack
- **Core**: Python 3.12+, Pydantic 2.x, OpenAI SDK (DeepSeek), Anthropic SDK (optional), google-genai (optional), openpyxl, pypdf, PyMuPDF
- **Backend**: FastAPI, uvicorn, sse-starlette, pydantic-settings
- **Frontend**: Next.js 16 (App Router, Turbopack), React 19, Tailwind CSS v4, shadcn/ui (Base UI), react-pdf
- **AI**: DeepSeek Chat Completions (OpenAI-compatible) with forced tool calls for extraction and agentic review. Do not route stages to Anthropic.
- **Model**: `deepseek-flash` for extraction, review, auto-resolve, and normalize (per-stage overrides via `.env`)
- **Skills**: Local SKILL.md + validate.py on DeepSeek
- **External APIs**: DigiKey API v4 (OAuth2) — optional datasheet auto-fetch and parameter-based auto-resolve (`DIGIKEY_CLIENT_ID`, `DIGIKEY_CLIENT_SECRET`)
## Extracted Model Versioning
All `ComponentConstraints` extracted JSON files carry a `model_version` semver field:
- **Initial value** — set from `default_model_version` in `backend/skills_manifest.json` (starts at `1.0.0`)
- **Minor bump** — increment `default_model_version` in `skills_manifest.json` when extraction prompts change (do **not** run `upload_skills.py`).
**Rule**: When committing changes under `skills/`, bump `default_model_version` locally. Never call Anthropic.
## Development Guidelines
- Write tests against `simple_project/` — it's the ground truth
- Netlist parser and BOM parser are pure functions with no side effects
- All data structures use Pydantic models in `backend/periscopex/models.py`
- Frontend types in `frontend/src/lib/types.ts` must stay in sync with `backend/periscopex/models.py`
- Extraction prompts live in `skills/` (SKILL.md + schema.json + validate.py) and run locally against DeepSeek
- **Never swallow exceptions silently** — prefer logging or re-raising over bare `except: continue`. Silent failures hide real bugs.
## Running
```bash
# Backend (copy backend/.env.example to .env at repo root first)
python3 -m uvicorn backend.main:app --reload # localhost:8000
# Frontend
cd frontend && npm run dev # localhost:3000
```
Local mode needs no cloud services and no auth — projects are stored in `data/` and you are `user_id="local"` with admin access.
+88
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@@ -0,0 +1,88 @@
# Periscope Backend — Environment Variables
# Copy to backend/.env and fill in values. Only DEEPSEEK_API_KEY is required.
# -- AI (DeepSeek, default) --------------------------------------------------
# Key from https://platform.deepseek.com/
DEEPSEEK_API_KEY=sk-...
DEEPSEEK_BASE_URL=https://api.deepseek.com
DEEPSEEK_MODEL=deepseek-flash
DEEPSEEK_VISION_MODEL=deepseek-flash
# enabled (default) | disabled — thinking mode on DeepSeek V4
DEEPSEEK_THINKING=enabled
# Official values: low | high | max
DEEPSEEK_REASONING_EFFORT=high
# PDF ingest (DeepSeek cannot take native PDFs)
# DEEPSEEK_PDF_MAX_CHARS=500000
# DEEPSEEK_PDF_IMAGE_PAGES=32
# Per-stage DeepSeek model overrides (leave empty to use the defaults below)
# V4.1 Flash is natively multimodal — extraction and review share deepseek-flash.
# MODEL_PINTABLE_DEEPSEEK=deepseek-flash
# MODEL_PATTERN_DEEPSEEK=deepseek-flash
# MODEL_SPECS_DEEPSEEK=deepseek-flash
# MODEL_VALIDATION_DEEPSEEK=deepseek-flash
# MODEL_AUTO_RESOLVE_DEEPSEEK=deepseek-flash
# MODEL_NORMALIZE_DEEPSEEK=deepseek-flash
# -- AI provider routing -----------------------------------------------------
# Default provider for every stage; per-stage env vars override.
# Valid values: deepseek | gemini (anthropic is ignored and coerced to deepseek)
PROVIDER_DEFAULT=deepseek
# PROVIDER_VALIDATION=deepseek
# PROVIDER_AUTO_RESOLVE=deepseek
# Anthropic is not used. Do not set ANTHROPIC_API_KEY.
# -- Gemini (optional) -------------------------------------------------------
# GEMINI_API_KEY=
# GEMINI_MODEL=gemini-3-flash-preview
# MODEL_VALIDATION_GEMINI=
# -- Per-stage fallback ------------------------------------------------------
# If set, the stage retries once. Anthropic is ignored (DeepSeek only).
# FALLBACK_PROVIDER_VALIDATION=deepseek
# FALLBACK_MODEL_VALIDATION=deepseek-flash
# -- Storage -----------------------------------------------------------------
# Set GCS_BUCKET to store projects/library in Google Cloud Storage.
# Leave empty for local mode (uses the data/ directory).
GCS_BUCKET=
# -- CORS --------------------------------------------------------------------
# Frontend URL(s), JSON list
CORS_ORIGINS=["http://localhost:3000","http://127.0.0.1:3000","http://localhost:18742","http://127.0.0.1:18742"]
# -- Auth (self-host) --------------------------------------------------------
# Set AUTH_JWT_SECRET to enable Periscope email/password accounts and
# multi-user project collaborators (invite by email). Clerk keys, if set,
# take priority over local auth.
# AUTH_JWT_SECRET=change-me-to-a-long-random-string
# Comma-separated emails that are admin on register (first user is always admin)
# AUTH_ADMIN_EMAILS=you@example.com
# -- Clerk (optional cloud auth) ---------------------------------------------
# CLERK_SECRET_KEY=
# CLERK_PUBLISHABLE_KEY=
# CLERK_JWKS_URL=
# Optional catalog datasheet source and parameter-based passive auto-resolve.
# Order: BOM URL → LCSC → manufacturer PDF URLs → Mouser → DigiKey.
# DIGIKEY_CLIENT_ID=
# DIGIKEY_CLIENT_SECRET=
# DIGIKEY_ENVIRONMENT=production
# DIGIKEY_LOCALE_SITE=US
# DIGIKEY_LOCALE_LANGUAGE=en
# DIGIKEY_LOCALE_CURRENCY=USD
# -- Mouser (optional) -------------------------------------------------------
# Search API key from mouser.com/api-hub. Same family/packing match as DigiKey.
# MOUSER_API_KEY=
# -- Email notifications (optional) ------------------------------------------
# Gmail API via domain-wide delegation. Leave EMAIL_SENDER empty to disable.
# Service account credentials come from GOOGLE_APPLICATION_CREDENTIALS.
EMAIL_SENDER=
EMAIL_FRONTEND_URL=
# Fixed admin email for pipeline-started notifications (leave empty to disable)
EMAIL_ADMIN_NOTIFY=
# Recipient for /api/contact form submissions (leave empty to disable)
CONTACT_RECIPIENT=
@@ -1,6 +1,6 @@
# Pinscope Backend
# Periscope Backend
FastAPI application providing async pipeline orchestration, project storage, and SSE progress streaming. Wraps the `pinscopex/` core library — calls existing functions with local paths, adds no domain logic of its own.
FastAPI application providing async pipeline orchestration, project storage, and SSE progress streaming. Wraps the `periscopex/` core library — calls existing functions with local paths, adds no domain logic of its own.
## Running
@@ -9,7 +9,7 @@ FastAPI application providing async pipeline orchestration, project storage, and
python3 -m uvicorn backend.main:app --reload # localhost:8000
```
Config reads from `.env` at project root (see `config.py`). Key settings: `ANTHROPIC_API_KEY`, `ANTHROPIC_MODEL` (default `claude-sonnet-4-6`), per-stage model overrides (`model_pintable`, `model_pattern`, `model_specs`, `model_validation`, `model_auto_resolve`), `CORS_ORIGINS`, `DIGIKEY_CLIENT_ID`, `DIGIKEY_CLIENT_SECRET`, `DIGIKEY_ENVIRONMENT`.
Config reads from `backend/.env` (see `config.py`). Key settings: `DEEPSEEK_API_KEY`, `DEEPSEEK_MODEL`, per-stage DeepSeek overrides (`model_pintable_deepseek`, `model_validation_deepseek`, …), `PROVIDER_DEFAULT` (default `deepseek`), optional `ANTHROPIC_API_KEY` / `GEMINI_API_KEY`, `CORS_ORIGINS`, DigiKey keys.
For local mode, leave `GCS_BUCKET` empty — uses `LocalStorageBackend` (`data/` directory) and no auth (user_id defaults to `"local"`, admin access granted).
@@ -22,7 +22,7 @@ backend/
├── _version.py # Reads app version from frontend/content/changelog.md (single source of truth)
├── Dockerfile # Python 3.12-slim, copies taxonomy/ + changelog.md for runtime
├── skills_manifest.json # Claude Console Skill IDs (extract-pintable, extract-pattern, extract-specs)
├── pinscopex/ # Core library (models, parsers, graph, validator, taxonomy, derating)
├── periscopex/ # Core library (models, parsers, graph, validator, taxonomy, derating)
│ ├── utils.py # Shared utilities: safe_mpn(), natural_sort_key()
│ └── resolve_passives.py # Passive MPN pattern matching + value decoders (R/C/L)
├── middleware/
@@ -63,7 +63,7 @@ All file I/O goes through `StorageBackend` (protocol in `services/storage.py`):
Storage keys follow GCS-style paths: `users/{user_id}/projects/{id}/uploads/bom.csv`
The `pinscopex/` core library is **unaware of storage** — it operates on local paths. During pipeline execution, `PipelineWorkspace` downloads files to a temp dir, runs `pinscopex/` functions locally, then uploads results back.
The `periscopex/` core library is **unaware of storage** — it operates on local paths. During pipeline execution, `PipelineWorkspace` downloads files to a temp dir, runs `periscopex/` functions locally, then uploads results back.
## Project Storage
@@ -108,7 +108,7 @@ The pipeline runs async via `asyncio.create_task()`. Progress emitted as SSE eve
3. **Extract Passives** — Pattern-based extraction per MPN group, then a specs fallback per MPN.
3.5. **DigiKey Auto-Resolve (exact MPN)** — Fallback for unresolved passives; parameters mapped to taxonomy specs via Haiku. Requires exact MPN match so the shared `library/passives/` stays clean.
3.6. **Value Fallback (R/C/L/FB only)** — When DigiKey misses, parse the BOM `Value` string via Haiku into typed passive specs. Per-project only; never written to the shared library.
4. **Build Graph** — Call `pinscopex.graph.build_graph()` with local temp paths
4. **Build Graph** — Call `periscopex.graph.build_graph()` with local temp paths
5. **BOM Summary** — Collate components from design graph (no AI)
6. **Derating Table** — Capacitor voltage derating computation (no AI)
7. **Direct Datasheet Review** — Per-IC (isolated): Claude reads the datasheet PDF + circuit neighborhood from the graph, compares to reference application circuit, and submits findings via graph query tools. ICs are reviewed **concurrently**, up to `IC_CONCURRENCY` in flight at once.
@@ -118,7 +118,7 @@ The pipeline runs async via `asyncio.create_task()`. Progress emitted as SSE eve
## Key Patterns
- **StorageBackend protocol** — all file I/O is abstracted; swap local/GCS via `GCS_BUCKET` env var
- **PipelineWorkspace** — downloads to temp dir, runs pinscopex locally, uploads results
- **PipelineWorkspace** — downloads to temp dir, runs periscopex locally, uploads results
- **BillingHook seam (open-core)** — core code reaches billing exclusively through `services/billing_hook.py:get_billing()`. In this repo that's `NullBilling`: every pipeline runs free and no billing routes are mounted. Never import billing modules directly from core code — go through the hook.
- **Auth middleware** — JWT verification via a JWKS endpoint; disabled when `CLERK_JWKS_URL` is empty (local mode: `user_id="local"`, `is_admin()` returns True)
- **AsyncAnthropic** for all Claude API calls — extraction and validation
@@ -131,10 +131,10 @@ The pipeline runs async via `asyncio.create_task()`. Progress emitted as SSE eve
- **Taxonomy specs schemas** — auto-generated via Claude per type/subtype; extraction discards parameters not in schema (`extra_specs`)
- **Shared router deps**`routers/deps.py` centralizes `get_storage()`, `get_user_id()`, `resolve_or_404()` across all routers
- **DigiKey OAuth2** — Token caching in `services/digikey.py`; `_find_product` requires exact MPN (no silent first-match fallback)
- **Version stamping**`backend/_version.py` reads the latest `##` heading from `frontend/content/changelog.md` and exports `PINSCOPE_VERSION`; stamped onto `ProjectMeta.pinscope_version` at `/start`
- **Version stamping**`backend/_version.py` reads the latest `##` heading from `frontend/content/changelog.md` and exports `PERISCOPE_VERSION`; stamped onto `ProjectMeta.periscope_version` at `/start`
- **Datasheet page trimming**`_select_pages()` in `extraction.py` keyword-trims large PDFs to reduce token costs
- **Content-addressed datasheets**`datasheet_store.py` writes PDFs to `library/datasheets/blobs/{md5}.pdf` and maps MPNs via refs
- **Passive value decoders**`pinscopex/resolve_passives.py` decodes EIA-198, R-notation, letter-decimal, EIA3/EIA4 for R/C/L values
- **Passive value decoders**`periscopex/resolve_passives.py` decodes EIA-198, R-notation, letter-decimal, EIA3/EIA4 for R/C/L values
- **Collaborator access**`resolve_or_404()` grants access to both owner and collaborators
- **Per-IC review isolation** — In `services/validation.py`, each IC review is wrapped so a single bad payload is captured as a skipped component rather than aborting the run
@@ -144,5 +144,5 @@ The pipeline runs async via `asyncio.create_task()`. Progress emitted as SSE eve
- Keep all storage operations in `services/projects.py` (uses `StorageBackend`)
- Routers are thin — validate input, call service, return response
- Thread `user_id` from `request.state` through to all service calls
- Don't import from `backend/` in `pinscopex/` — dependency flows one way
- Don't import from `backend/` in `periscopex/` — dependency flows one way
- CORS is configured for `localhost:3000` by default; override with `CORS_ORIGINS` env var
+14
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@@ -0,0 +1,14 @@
"""PinScope-inherited backend package (in-tree dependency)."""
from pkgutil import extend_path
__path__ = list(extend_path(__path__, __name__))
_src, _other, _dep = [], [], []
for _p in __path__:
_n = str(_p).replace("\\", "/")
if "/periscope/src/" in _n:
_src.append(_p)
elif "/periscope/dependency/" in _n:
_dep.append(_p)
else:
_other.append(_p)
__path__[:] = _src + _other + _dep
@@ -7,6 +7,11 @@ from pathlib import Path
from pydantic import Field
from pydantic_settings import BaseSettings
from backend.repo_paths import data_dir as _data_dir
from backend.repo_paths import env_file as _env_file
from backend.repo_paths import skills_dir as _skills_dir
from backend.repo_paths import taxonomy_dir as _taxonomy_dir
# Resolve paths relative to the project root (one level up from backend/)
_BACKEND_DIR = Path(__file__).resolve().parent
_PROJECT_ROOT = _BACKEND_DIR.parent
@@ -19,7 +24,32 @@ _SKILLS_MANIFEST: dict = (
class Settings(BaseSettings):
# Anthropic
# DeepSeek (default provider — OpenAI-compatible Chat Completions)
deepseek_api_key: str = ""
deepseek_base_url: str = "https://api.deepseek.com"
deepseek_model: str = "deepseek-flash"
deepseek_vision_model: str = "deepseek-flash"
# "enabled" (default) or "disabled". DeepSeek V4 thinks by default;
# disable to cut cost on simple mapping calls.
deepseek_thinking: str = "enabled"
# Official values: low | high | max. Review sessions with
# max_tokens >= 16000 still bump to "high" in the provider.
deepseek_reasoning_effort: str = "high"
# PDF ingest: DeepSeek does not accept native PDFs. Text is always
# extracted; page images are attached only when the stage model is a
# vision model (see model_*_deepseek defaults below).
deepseek_pdf_max_chars: int = 500_000
deepseek_pdf_image_pages: int = 32
# Per-stage DeepSeek model overrides (fall back to deepseek_model)
model_pintable_deepseek: str = "deepseek-flash"
model_pattern_deepseek: str = "deepseek-flash"
model_specs_deepseek: str = "deepseek-flash"
model_validation_deepseek: str = "deepseek-flash"
model_auto_resolve_deepseek: str = "deepseek-flash"
model_normalize_deepseek: str = "deepseek-flash"
# Anthropic (optional fallback)
anthropic_api_key: str = ""
anthropic_model: str = "claude-sonnet-4-6"
@@ -44,9 +74,8 @@ class Settings(BaseSettings):
model_normalize_gemini: str = ""
# Provider routing — provider_default is the global default; per-stage
# overrides win when non-empty. Set provider_validation=gemini to route
# the validation stage to Gemini while leaving extraction on Anthropic.
provider_default: str = "anthropic"
# overrides win when non-empty. Valid values: deepseek | anthropic | gemini.
provider_default: str = "deepseek"
provider_pintable: str = ""
provider_pattern: str = ""
provider_specs: str = ""
@@ -55,10 +84,10 @@ class Settings(BaseSettings):
provider_normalize: str = ""
# Per-stage fallback provider/model — used if the primary stage call
# raises (e.g. Gemini 503 UNAVAILABLE). Leave empty to disable fallback
# raises (e.g. DeepSeek 503). Leave empty to disable fallback
# for that stage. If fallback_provider_<stage> is set but
# fallback_model_<stage> is empty, the fallback uses that provider's
# default model (anthropic_model or gemini_model).
# default model (deepseek_model, anthropic_model, or gemini_model).
fallback_provider_pintable: str = ""
fallback_provider_pattern: str = ""
fallback_provider_specs: str = ""
@@ -87,18 +116,26 @@ class Settings(BaseSettings):
# single finding. Runs once after all per-IC reviews complete.
cross_ic_dedup_enabled: bool = True
# Paths (relative to project root, used by LocalStorageBackend)
data_dir: Path = _PROJECT_ROOT / "data"
taxonomy_dir: Path = _PROJECT_ROOT / "taxonomy"
# Paths (git split: data at repo root; taxonomy/skills under periscope/dependency)
data_dir: Path = _data_dir()
taxonomy_dir: Path = _taxonomy_dir()
skills_dir: Path = _skills_dir()
# GCS (if set, use GCSStorageBackend; otherwise LocalStorageBackend)
gcs_bucket: str = ""
# Clerk authentication
# Clerk authentication (cloud). When set, takes priority over local auth.
clerk_secret_key: str = ""
clerk_publishable_key: str = ""
clerk_jwks_url: str = ""
# Local Periscope auth (self-host). Set AUTH_JWT_SECRET to enable email/password
# accounts and multi-user project collaborators without Clerk.
auth_jwt_secret: str = ""
# Comma-separated emails that become admin on register (in addition to the
# first account, which is always admin).
auth_admin_emails: str = ""
# DigiKey API (optional — enables auto-fetch datasheets)
digikey_client_id: str = ""
digikey_client_secret: str = ""
@@ -107,6 +144,9 @@ class Settings(BaseSettings):
digikey_locale_language: str = "en"
digikey_locale_currency: str = "USD"
# Mouser Search API (optional — fourth datasheet source)
mouser_api_key: str = ""
# Purple Parts API (optional — converts LCSC codes to MPNs before DigiKey)
purple_parts_url: str = ""
purple_parts_api_key: str = ""
@@ -139,10 +179,15 @@ class Settings(BaseSettings):
survey_sheet_id: str = ""
# CORS
cors_origins: list[str] = ["http://localhost:3000"]
cors_origins: list[str] = [
"http://localhost:3000",
"http://127.0.0.1:3000",
"http://localhost:18742",
"http://127.0.0.1:18742",
]
# Cloud Run Job worker (pipeline runner)
pipeline_worker_job_name: str = "pinscopex-pipeline-worker"
pipeline_worker_job_name: str = "periscopex-pipeline-worker"
pipeline_worker_region: str = "us-central1"
pipeline_worker_project: str = "" # GCP project id; defaults to GOOGLE_CLOUD_PROJECT or metadata
pipeline_worker_timeout_seconds: int = 3600
@@ -153,7 +198,7 @@ class Settings(BaseSettings):
pipeline_sweeper_stale_seconds: int = 60
model_config = {
"env_file": str(_BACKEND_DIR / ".env"),
"env_file": str(_env_file()),
"env_file_encoding": "utf-8",
"extra": "ignore",
}
@@ -166,6 +211,10 @@ class Settings(BaseSettings):
def use_digikey(self) -> bool:
return bool(self.digikey_client_id and self.digikey_client_secret)
@property
def use_mouser(self) -> bool:
return bool(self.mouser_api_key)
@property
def use_purple_parts(self) -> bool:
return bool(self.purple_parts_url and self.purple_parts_api_key)
@@ -175,28 +224,48 @@ class Settings(BaseSettings):
return bool(self.gcs_bucket)
@property
def use_auth(self) -> bool:
def use_clerk(self) -> bool:
return bool(self.clerk_secret_key and self.clerk_jwks_url)
@property
def use_local_auth(self) -> bool:
"""Self-host email/password auth when JWT secret is set and Clerk is not."""
return bool(self.auth_jwt_secret) and not self.use_clerk
@property
def use_auth(self) -> bool:
return self.use_clerk or self.use_local_auth
@property
def use_email(self) -> bool:
return bool(self.email_sender and self.email_frontend_url)
def provider_for_stage(self, stage: str) -> str:
"""Return the LLM provider name for a pipeline stage."""
"""Return the LLM provider name for a pipeline stage.
Anthropic is never used: any ``PROVIDER_*=anthropic`` override is
coerced to DeepSeek.
"""
override = getattr(self, f"provider_{stage}", "")
return override or self.provider_default
name = override or self.provider_default
if name == "anthropic":
return "deepseek"
return name
def model_for_stage(self, stage: str) -> str:
"""Return the model for a pipeline stage, provider-aware.
For Anthropic: falls back to model_<stage>, then anthropic_model.
For DeepSeek: falls back to model_<stage>_deepseek, then deepseek_model.
For Gemini: falls back to model_<stage>_gemini, then gemini_model.
For Anthropic: falls back to model_<stage>, then anthropic_model.
"""
provider = self.provider_for_stage(stage)
if provider == "gemini":
override = getattr(self, f"model_{stage}_gemini", "")
return override or self.gemini_model
if provider == "deepseek":
override = getattr(self, f"model_{stage}_deepseek", "")
return override or self.deepseek_model
override = getattr(self, f"model_{stage}", "")
return override or self.anthropic_model
@@ -206,13 +275,45 @@ class Settings(BaseSettings):
when the primary provider raises.
"""
fb_provider = getattr(self, f"fallback_provider_{stage}", "")
if not fb_provider:
if not fb_provider or fb_provider == "anthropic":
return None
fb_model = getattr(self, f"fallback_model_{stage}", "")
if not fb_model:
fb_model = self.gemini_model if fb_provider == "gemini" else self.anthropic_model
if fb_provider == "gemini":
fb_model = self.gemini_model
elif fb_provider == "deepseek":
fb_model = self.deepseek_model
else:
fb_model = self.anthropic_model
return (fb_provider, fb_model)
def default_model_for_provider(self, provider: str) -> str:
if provider == "gemini":
return self.gemini_model
if provider == "deepseek":
return self.deepseek_model
return self.anthropic_model
def has_llm_credentials(self) -> bool:
"""True if the configured default provider has an API key."""
name = self.provider_default
if name == "anthropic":
name = "deepseek"
if name == "deepseek":
return bool(self.deepseek_api_key)
if name == "gemini":
return bool(self.gemini_api_key)
return bool(self.deepseek_api_key)
def get_skill_or_none(self, name: str) -> tuple[str | None, str | None]:
"""Return (skill_id, version) or (None, None) if the Anthropic
Console skill is not in the manifest. DeepSeek/Gemini extraction
inlines SKILL.md locally and does not need a skill_id."""
entry = _SKILLS_MANIFEST.get(name)
if not entry:
return None, None
return entry.get("skill_id"), entry.get("latest_version")
def get_default_model_version(self) -> str:
"""Return the default model_version for new extractions from skills_manifest.json."""
return _SKILLS_MANIFEST.get("default_model_version", "1.0.0")
@@ -1,4 +1,4 @@
"""PinscopeX backend — FastAPI application."""
"""PeriscopeX backend — FastAPI application."""
import logging
import os
@@ -10,7 +10,7 @@ from fastapi.responses import JSONResponse
from starlette.middleware.base import BaseHTTPMiddleware
from backend.config import settings
from backend.routers import admin, contact, feedback, pipeline, projects, reports, survey
from backend.routers import admin, auth, contact, feedback, impedance, pipeline, projects, reports, survey
from backend.services.projects import ProjectNotFound
from backend.services.storage import LocalStorageBackend
@@ -35,14 +35,18 @@ async def lifespan(app: FastAPI):
env = os.getenv("ENVIRONMENT", "").lower()
if env == "production" and not settings.use_auth:
raise RuntimeError(
"CLERK_JWKS_URL and CLERK_SECRET_KEY must be set in production. "
"Authentication cannot be disabled in production."
"Production requires authentication: set AUTH_JWT_SECRET "
"(local Periscope accounts) or CLERK_JWKS_URL + CLERK_SECRET_KEY."
)
if not settings.use_auth:
logger.warning(
"Authentication is DISABLED — all users have full access. "
"This is only safe for local development."
)
elif settings.use_local_auth:
logger.info("Local Periscope authentication enabled (AUTH_JWT_SECRET)")
elif settings.use_clerk:
logger.info("Clerk authentication enabled")
if not settings.billing_enabled:
logger.warning(
"Billing is DISABLED — pipelines run free and the billing/credits "
@@ -55,9 +59,14 @@ async def lifespan(app: FastAPI):
if isinstance(app.state.storage, LocalStorageBackend):
base = settings.data_dir
(base / "users").mkdir(parents=True, exist_ok=True)
(base / "auth" / "users").mkdir(parents=True, exist_ok=True)
(base / "auth" / "by_email").mkdir(parents=True, exist_ok=True)
(base / "library" / "extracted").mkdir(parents=True, exist_ok=True)
(base / "library" / "patterns").mkdir(parents=True, exist_ok=True)
(base / "library" / "models").mkdir(parents=True, exist_ok=True)
(base / "library" / "passives").mkdir(parents=True, exist_ok=True)
(base / "library" / "datasheets" / "refs").mkdir(parents=True, exist_ok=True)
(base / "library" / "datasheets" / "blobs").mkdir(parents=True, exist_ok=True)
yield
# Pipelines run in a separate Cloud Run Job worker (or local
# subprocess in dev), so the API process has nothing to clean up
@@ -81,31 +90,37 @@ class SecurityHeadersMiddleware(BaseHTTPMiddleware):
class AuthMiddleware(BaseHTTPMiddleware):
"""Extract user_id from Clerk JWT or default to local dev user."""
"""Extract user_id from JWT (Clerk or local) or default to local dev user."""
async def dispatch(self, request: Request, call_next):
# Let CORS preflight through — browsers send OPTIONS without credentials
if request.method == "OPTIONS":
return await call_next(request)
# Public endpoints that don't require authentication
if request.url.path == "/api/contact":
if request.url.path in {
"/api/contact",
"/api/auth/mode",
"/api/auth/register",
"/api/auth/login",
}:
request.state.user_id = LOCAL_DEV_USER
return await call_next(request)
if settings.use_auth:
from backend.middleware.auth import verify_clerk_token
from backend.middleware.auth import verify_request_user
user_id = await verify_clerk_token(request)
user_id = await verify_request_user(request)
if user_id is None:
is_production = os.getenv("ENVIRONMENT", "").lower() == "production"
if is_production:
# Local auth (and production) require a valid token for API routes.
if is_production or settings.use_local_auth:
from fastapi.responses import JSONResponse
return JSONResponse(
status_code=401,
content={"detail": "Authentication required"},
)
# Non-production: fall back to local dev user so Clerk config
# doesn't block local development when no token is present.
# Non-production Clerk: fall back so missing token doesn't block
# local development when Clerk is configured but unused.
user_id = LOCAL_DEV_USER
request.state.user_id = user_id
else:
@@ -115,7 +130,7 @@ class AuthMiddleware(BaseHTTPMiddleware):
app = FastAPI(
title="PinscopeX",
title="PeriscopeX",
description="Agentic schematic validation API",
lifespan=lifespan,
)
@@ -131,7 +146,7 @@ app.add_middleware(
allow_credentials=True,
allow_methods=["GET", "POST", "PUT", "DELETE", "OPTIONS"],
allow_headers=["content-type", "authorization"],
expose_headers=["X-Datasheet-Url"],
expose_headers=["X-Datasheet-Url", "X-Datasheet-Source"],
)
@app.exception_handler(ProjectNotFound)
@@ -144,7 +159,9 @@ async def _project_not_found_handler(request: Request, exc: ProjectNotFound):
app.include_router(projects.router, prefix="/api")
app.include_router(pipeline.router, prefix="/api")
app.include_router(reports.router, prefix="/api")
app.include_router(impedance.router, prefix="/api")
app.include_router(admin.router, prefix="/api")
app.include_router(auth.router, prefix="/api")
if settings.billing_enabled:
# Import guarded too: with billing disabled the core never loads the
# billing/credits routers (or, transitively, the Stripe SDK).
@@ -0,0 +1,115 @@
"""JWT verification for FastAPI (Clerk JWKS or local Periscope HS256)."""
from __future__ import annotations
from typing import Any
import jwt
from fastapi import Request
from backend.config import settings
# JWKS cache
_jwks_client: jwt.PyJWKClient | None = None
_SKIP_PATHS = {
"/docs",
"/openapi.json",
"/redoc",
"/health",
"/api/billing/webhook",
"/api/auth/mode",
"/api/auth/register",
"/api/auth/login",
"/api/contact",
}
def _get_jwks_client() -> jwt.PyJWKClient:
global _jwks_client
if _jwks_client is None:
jwks_url = settings.clerk_jwks_url
if not jwks_url:
raise RuntimeError(
"CLERK_JWKS_URL must be set for Clerk authentication. "
"Find it in your Clerk dashboard under API Keys."
)
_jwks_client = jwt.PyJWKClient(jwks_url, cache_keys=True)
return _jwks_client
def _bearer_or_query_token(request: Request) -> str | None:
auth_header = request.headers.get("authorization", "")
if auth_header.startswith("Bearer "):
return auth_header[7:]
# EventSource/SSE can't send headers
return request.query_params.get("token")
async def verify_clerk_token(request: Request) -> str | None:
"""Verify Clerk JWT and return user_id, or None if invalid."""
if request.url.path in _SKIP_PATHS:
return "anonymous"
token = _bearer_or_query_token(request)
if not token:
return None
try:
client = _get_jwks_client()
signing_key = client.get_signing_key_from_jwt(token)
payload: dict[str, Any] = jwt.decode(
token,
signing_key.key,
algorithms=["RS256"],
options={
"verify_exp": True,
"verify_aud": False,
"verify_iss": True,
},
issuer=(
settings.clerk_jwks_url.replace("/.well-known/jwks.json", "")
if settings.clerk_jwks_url
else None
),
leeway=10,
)
user_id = payload.get("sub")
if not user_id:
return None
return user_id
except jwt.ExpiredSignatureError:
return None
except jwt.InvalidTokenError:
return None
except Exception:
return None
async def verify_local_token(request: Request) -> str | None:
"""Verify Periscope local JWT and return user_id, or None if invalid."""
if request.url.path in _SKIP_PATHS:
return "anonymous"
token = _bearer_or_query_token(request)
if not token:
return None
from backend.services.local_jwt import decode_token
payload = decode_token(token)
if not payload:
return None
user_id = payload.get("sub")
return str(user_id) if user_id else None
async def verify_request_user(request: Request) -> str | None:
"""Dispatch to Clerk or local JWT verification."""
if settings.use_clerk:
return await verify_clerk_token(request)
if settings.use_local_auth:
return await verify_local_token(request)
return None
@@ -0,0 +1,13 @@
from pkgutil import extend_path
__path__ = list(extend_path(__path__, __name__))
_src, _other, _dep = [], [], []
for _p in __path__:
_n = str(_p).replace("\\", "/")
if "/periscope/src/" in _n:
_src.append(_p)
elif "/periscope/dependency/" in _n:
_dep.append(_p)
else:
_other.append(_p)
__path__[:] = _src + _other + _dep
@@ -2,8 +2,8 @@
from __future__ import annotations
from backend.pinscopex.models import ComponentType, DesignGraph
from backend.pinscopex.utils import natural_sort_key
from backend.periscopex.models import ComponentType, DesignGraph
from backend.periscopex.utils import natural_sort_key
def build_bom_summary(
@@ -45,7 +45,7 @@ def build_bom_summary(
# Drop None values and internal numeric fields
raw = {
k: v for k, v in raw.items()
if v is not None and k not in ("value_ohms", "value_farads", "value_henries")
if v is not None and k not in ("value_ohms", "value_farads", "value_henries", "impedance_ohm")
}
specs_dict = raw if raw else None
@@ -4,12 +4,63 @@ from __future__ import annotations
import re
from backend.pinscopex.models import ComponentType, DesignGraph, NetType
from backend.pinscopex.utils import natural_sort_key
from backend.periscopex.models import ComponentType, DesignGraph, NetType
from backend.periscopex.resolve_passives import _format_value
from backend.periscopex.utils import natural_sort_key
# Dielectric strings that indicate ceramic capacitors
_CERAMIC_DIELECTRICS = {"X7R", "X5R", "C0G", "NP0", "Y5V", "X7S", "X6S", "X8R", "C0G (NP0)"}
# Remaining C/C0 vs V/Vrated. Empirical stima, not a vendor lot curve.
_BIAS_CURVES: dict[str, list[tuple[float, float]]] = {
"c0g": [(0.0, 1.0), (1.2, 1.0)],
"x7r": [(0.0, 1.0), (0.25, 0.90), (0.50, 0.70), (0.75, 0.45), (1.0, 0.30), (1.2, 0.22)],
"x5r": [(0.0, 1.0), (0.25, 0.82), (0.50, 0.55), (0.75, 0.32), (1.0, 0.18), (1.2, 0.12)],
"y5v": [(0.0, 1.0), (0.25, 0.50), (0.50, 0.20), (0.80, 0.12), (1.0, 0.10)],
}
def _lerp(curve: list[tuple[float, float]], x: float) -> float:
if x <= curve[0][0]:
return curve[0][1]
for (x0, y0), (x1, y1) in zip(curve, curve[1:]):
if x <= x1:
if x1 == x0:
return y1
t = (x - x0) / (x1 - x0)
return y0 + t * (y1 - y0)
return curve[-1][1]
def _bias_family(dielectric: str | None) -> str | None:
if not dielectric:
return None
u = dielectric.upper()
if "C0G" in u or "NP0" in u or "NPO" in u:
return "c0g"
if "Y5V" in u:
return "y5v"
if "X5R" in u or "X6S" in u:
return "x5r"
if "X7R" in u or "X7S" in u or "X8R" in u:
return "x7r"
return None
def dc_bias_remaining(
dielectric: str | None,
v_op: float | None,
rated_v: float | None,
) -> float | None:
"""Fraction of nominal C remaining under DC bias, or None if not modelled.
Labelled a *stima*: class-2 MLCC curves vary by lot, thickness and vendor.
"""
family = _bias_family(dielectric)
if family is None or v_op is None or rated_v is None or rated_v <= 0:
return None
return _lerp(_BIAS_CURVES[family], max(0.0, v_op) / rated_v)
def _parse_voltage_rating(s: str | None) -> float | None:
"""Extract numeric voltage from a rating string like '16V', '25V', '2.5V'."""
@@ -44,6 +95,18 @@ def _dielectric_category(component_subtype: str | None, dielectric: str | None)
return "ceramic"
def _stress(op: float | None, rated: float | None) -> str:
"""PASS / MARGIN / RISK from Vop vs Vrated. No invented dielectric %."""
if op is None or rated is None or rated <= 0:
return "UNKNOWN"
ratio = op / rated
if ratio > 1.0:
return "RISK"
if ratio > 0.8:
return "MARGIN"
return "PASS"
def build_derating_table(graph: DesignGraph) -> list[dict]:
"""Build a capacitor voltage derating table from the design graph.
@@ -64,10 +127,12 @@ def build_derating_table(graph: DesignGraph) -> list[dict]:
rated_v: float | None = None
value_fmt: str | None = None
dielectric: str | None = None
c_nom: float | None = None
if comp.specs and hasattr(comp.specs, "voltage_rating_v"):
rated_v = _parse_voltage_rating(comp.specs.voltage_rating_v)
value_fmt = getattr(comp.specs, "value_formatted", None)
dielectric = getattr(comp.specs, "dielectric", None)
c_nom = getattr(comp.specs, "value_farads", None)
# Operating voltage: max non-zero voltage among connected nets
op_voltage: float | None = None
@@ -107,6 +172,10 @@ def build_derating_table(graph: DesignGraph) -> list[dict]:
net_minus = by_v[0][0]
net_plus = by_v[-1][0]
factor = dc_bias_remaining(dielectric, op_voltage, rated_v)
c_eff = (c_nom * factor) if (c_nom is not None and factor is not None) else None
c_eff_fmt = _format_value(c_eff, "F") if c_eff is not None else None
rows.append({
"designator": comp.reference,
"mpn": comp.mpn,
@@ -117,6 +186,13 @@ def build_derating_table(graph: DesignGraph) -> list[dict]:
"net_plus": net_plus,
"net_minus": net_minus,
"dielectric_category": _dielectric_category(comp.component_subtype, dielectric),
"dielectric": dielectric,
"c_nominal_f": c_nom,
"dc_bias_factor": factor,
"c_eff_f": c_eff,
"c_eff_formatted": c_eff_fmt,
"dc_bias_model": "stima" if factor is not None else None,
"stress": _stress(op_voltage, rated_v),
})
rows.sort(key=lambda r: natural_sort_key(r["designator"]))
@@ -6,8 +6,9 @@ import json
import re
from pathlib import Path
from backend.pinscopex.utils import safe_mpn
from backend.pinscopex.models import (
from backend.periscopex.utils import safe_mpn
from backend.periscopex.models import (
CadIndexEntry,
Component,
ComponentConstraints,
ComponentModel,
@@ -22,8 +23,8 @@ from backend.pinscopex.models import (
# Datasheets are loaded here for pin-name enrichment during graph build,
# but NOT embedded into the graph. The validator loads them separately.
from backend.pinscopex.parsers import parse_bom, parse_netlist_any
from backend.pinscopex.resolve_passives import SkippedItem, resolve_bom, resolved_to_specs
from backend.periscopex.parsers import parse_bom, parse_netlist_any
from backend.periscopex.resolve_passives import SkippedItem, resolve_bom, resolved_to_specs
# ---------------------------------------------------------------------------
# Component type classification
@@ -31,8 +32,10 @@ from backend.pinscopex.resolve_passives import SkippedItem, resolve_bom, resolve
_PREFIX_TYPE: dict[str, ComponentType] = {
"R": ComponentType.RESISTOR,
"RN": ComponentType.RESISTOR,
"C": ComponentType.CAPACITOR,
"L": ComponentType.INDUCTOR,
"FB": ComponentType.INDUCTOR,
"U": ComponentType.IC,
"IC": ComponentType.IC,
"J": ComponentType.CONNECTOR,
@@ -154,6 +157,11 @@ def _infer_net_properties(name: str) -> tuple[NetType, float | None]:
voltage = _parse_rail_voltage(name)
return NetType.POWER, voltage
# KiCad-style rails: 3V3_DIGITAL, 1V8_SI4684, 5V_USB (not I2C1-SCL-3V3).
if re.match(r"^\d+V\d*", upper):
voltage = _parse_rail_voltage(name)
return NetType.POWER, voltage
# Everything else is a signal
return NetType.SIGNAL, None
@@ -246,6 +254,7 @@ def build_graph(
mpn_col: str = "Manufacturer Part Number",
skipped: list[SkippedItem] | None = None,
include_subdesigns: set[str] | None = None,
pcb_path: str | Path | None = None,
) -> DesignGraph:
"""Build a DesignGraph deterministically from project files.
@@ -256,17 +265,63 @@ def build_graph(
4. Resolve passive specs from patterns + cached component models
5. Assemble components with classified type, linked constraints, and specs
6. Assemble nets with inferred type/voltage and enriched pin names
When ``pcb_path`` points at a ``.kicad_pcb``, pad nets from the board replace
schematic-derived connectivity (KiCad board nets are authoritative).
"""
# Parse BOM first so we can feed known refs into the netlist parser —
# PADS-PCB netlists allow multi-word designators (e.g. "CV GND"), which
# only tokenise correctly with the BOM's ref list as a lookup. EDIF
# netlists ignore known_refs (designators are unambiguous tokens).
bom = parse_bom(bom_path, reference_col=reference_col, mpn_col=mpn_col)
parts, raw_nets, _ = parse_netlist_any(
bom_fields = {}
for ref, entry in bom.items():
row = {"mpn": entry.get("mpn"), "value": entry.get("value", "")}
if "dnp" in entry:
row["dnp"] = entry.get("dnp")
if entry.get("variant") is not None:
row["variant"] = entry.get("variant")
bom_fields[ref] = row
schematic_fields: dict[str, dict] = {}
parts, raw_nets, fmt = parse_netlist_any(
netlist_path,
known_refs=set(bom.keys()),
include_subdesigns=include_subdesigns,
)
if pcb_path is not None:
pcb = Path(pcb_path)
if pcb.is_file():
from backend.periscopex.parsers_kicad_pcb import nets_from_pcb, parse_kicad_pcb
layout = parse_kicad_pcb(pcb)
pcb_nets = nets_from_pcb(layout)
if pcb_nets:
raw_nets = pcb_nets
for ref, fp in layout.footprints.items():
parts.setdefault(ref, fp.footprint or "")
if fmt.startswith("kicad"):
from backend.periscopex.parsers_kicad import kicad_part_fields
for ref, extra in kicad_part_fields(netlist_path).items():
schematic_fields[ref] = {
"mpn": extra.get("mpn"),
"value": extra.get("value", ""),
"cad_uuid": extra.get("cad_uuid") or "",
"cad_sheet": extra.get("cad_sheet") or "",
}
entry = bom.setdefault(
ref,
{"value": "", "footprint": "", "mpn": None, "lcsc": None, "datasheet_url": None},
)
if extra.get("mpn") and (
not entry.get("mpn") or entry.get("mpn") == entry.get("value")
):
entry["mpn"] = extra["mpn"]
if extra.get("lcsc") and not entry.get("lcsc"):
entry["lcsc"] = extra["lcsc"]
if extra.get("value") and not entry.get("value"):
entry["value"] = extra["value"]
if extra.get("footprint") and not entry.get("footprint"):
entry["footprint"] = extra["footprint"]
datasheets = _load_datasheets(datasheets_dir)
# --- Resolve passive specs ------------------------------------------------
@@ -301,7 +356,9 @@ def build_graph(
for ref, footprint in parts.items():
bom_entry = bom.get(ref, {})
value = bom_entry.get("value", "")
mpn = bom_entry.get("mpn")
mpn = bom_entry.get("mpn") or None
if not mpn and _classify_component(ref, footprint) == ComponentType.IC:
mpn = (value or "").strip() or None
components[ref] = Component(
reference=ref,
@@ -371,4 +428,17 @@ def build_graph(
pins=pin_connections,
)
return DesignGraph(components=components, nets=nets)
cad_index: dict[str, CadIndexEntry] = {}
for ref, extra in schematic_fields.items():
uuid = extra.get("cad_uuid") or ""
sheet = extra.get("cad_sheet") or ""
if uuid or sheet:
cad_index[ref] = CadIndexEntry(uuid=uuid, sheet=sheet)
return DesignGraph(
components=components,
nets=nets,
bom_fields=bom_fields,
schematic_fields=schematic_fields,
cad_index=cad_index,
)
@@ -17,8 +17,8 @@ from __future__ import annotations
import re
from backend.pinscopex.models import ComponentType, DesignGraph, Finding, NetType
from backend.pinscopex.resolve_passives import _parse_spice_value
from backend.periscopex.models import ComponentType, DesignGraph, Finding, NetType
from backend.periscopex.resolve_passives import _parse_spice_value
_COLOR_TOKENS = {
"R": "red", "RED": "red",
@@ -1,11 +1,11 @@
"""Pydantic models for PinscopeX: datasheet constraints and design graph."""
"""Pydantic models for PeriscopeX: datasheet constraints and design graph."""
from __future__ import annotations
from enum import Enum
from typing import Annotated, Any, Literal
from pydantic import BaseModel, Discriminator, Field, Tag, field_validator
from pydantic import BaseModel, Discriminator, Field, Tag, field_validator, model_validator
class Pin(BaseModel):
@@ -40,10 +40,17 @@ def _check_subtype(v: object) -> str | None:
"""Shared pre-validator for component_subtype fields."""
if v is None or v == "":
return None
from backend.pinscopex.taxonomy import validate_subtype
from backend.periscopex.taxonomy import validate_subtype
return validate_subtype(str(v))
class InternalFeatures(BaseModel):
"""Block-diagram extras: ESD clamps, on-die pull-ups, analog switches."""
esd_clamp_pins: list[str] = []
pullup_pins: list[str] = []
analog_switch: list[str] = []
class ComponentConstraints(BaseModel):
mpn: str
model_version: str = "1.0.0" # semver; bumped on prune (patch) or skill update (minor)
@@ -52,6 +59,8 @@ class ComponentConstraints(BaseModel):
pintable: list[Pin]
absolute_maximum_ratings: list[AbsMaxRating]
rules: list[Rule]
internal_features: InternalFeatures | None = None
layout_rules: list[dict] = []
_validate_subtype = field_validator("component_subtype", mode="before")(
staticmethod(_check_subtype)
@@ -131,20 +140,31 @@ class CapacitorSpecs(BaseModel):
class InductorSpecs(BaseModel):
"""Standardised inductor parameters. Value always in henries."""
"""Standardised inductor / ferrite-bead parameters."""
specs_type: Literal["inductor"] = "inductor"
component_subtype: str | None = None # e.g. "passive.inductor" or "passive.ferrite_bead"
value_henries: float
value_henries: float | None = None
value_formatted: str
tolerance: str | None = None # "±5%" or "±0.1uH"
package: str | None = None
current_rating_a: str | None = None
dcr_ohms: float | None = None
impedance_ohm: float | None = None # ferrite beads: Z at test frequency
_validate_subtype = field_validator("component_subtype", mode="before")(
staticmethod(_check_subtype)
)
@model_validator(mode="after")
def _require_primary_value(self) -> InductorSpecs:
if self.component_subtype == "passive.ferrite_bead":
from backend.periscopex.ferrite_z import recover_bead_specs
return recover_bead_specs(self)
if self.value_henries is None:
raise ValueError("inductor requires value_henries")
return self
class SimpleComponentSpecs(BaseModel):
"""Specs for discrete/simple components. Schema defined in taxonomy JSON."""
@@ -223,6 +243,12 @@ class Component(BaseModel):
)
class CadIndexEntry(BaseModel):
"""KiCad symbol identity for plugin pan-and-zoom."""
uuid: str = ""
sheet: str = ""
class DesignGraph(BaseModel):
"""
Bipartite design graph: Components <-> Nets.
@@ -233,6 +259,10 @@ class DesignGraph(BaseModel):
"""
components: dict[str, Component] = {}
nets: dict[str, Net] = {}
# KiCad property table vs uploaded BOM (empty on PADS/EDIF).
bom_fields: dict[str, dict] = {}
schematic_fields: dict[str, dict] = {}
cad_index: dict[str, CadIndexEntry] = {}
# -- Traversal helpers --------------------------------------------------
@@ -271,7 +301,8 @@ class DesignGraph(BaseModel):
"""Capacitor refs connected to a net (useful for decoupling checks)."""
return [
r for r in self.components_on_net(net_name)
if self.components[r].component_type == ComponentType.CAPACITOR
if (c := self.components.get(r)) is not None
and c.component_type == ComponentType.CAPACITOR
]
def components_by_subtype(self, prefix: str) -> list[str]:
@@ -318,7 +349,26 @@ class Finding(BaseModel):
status: Literal["ERROR", "WARNING", "INFO"]
recommendation: str = ""
reference: str = ""
source: str | None = None # None/"review" = LLM datasheet review; "pin_mux_check"/"led_current_check" = deterministic
source: str | None = None # None/"review" = LLM; "pin_mux_check"/"led_current_check"/"supply_decoupling_check"/… = deterministic
net: str | None = None # net name for CAD telemetry / SI filters
pins: list[str] = [] # e.g. ["U3.54"] for pan-and-zoom
rule_id: str | None = None # deterministic id, e.g. PE-MUX-001
cad_sheet: str | None = None # schematic sheet filename for plugin sync
cad_uuid: str | None = None # KiCad symbol/pin uuid
variant: str | None = None # DNP / ECO / assembly variant
# Finding engine (docs/motore-finding.md) — optional for legacy JSON.
facts: str = ""
requirement: str = ""
inference: str = ""
provenance: Literal["MANDATORY", "RECOMMENDED", "TYPICAL", "EXAMPLE"] | None = None
finding_class: Literal["RULE", "RISK", "REVIEW", "INFO"] | None = None
confidence: float | None = None
evidence_status: Literal["SUFFICIENT", "INSUFFICIENT"] | None = None
calculation: str = ""
assumptions: list[str] = []
action: str = ""
decision_id: str | None = None
suppressed: bool = False
class ValidationReport(BaseModel):
@@ -330,6 +380,7 @@ class ValidationReport(BaseModel):
coverage: dict[str, list[str]] = {} # designator -> areas checked and found OK
review_errors: dict[str, str] = {} # designator -> error message for ICs whose review raised
not_reviewed: list[dict] = [] # [{"designator","reason"}] — ICs skipped (e.g. no datasheet PDF)
protocol_certification: dict[str, Any] | None = None
class FindingComment(BaseModel):
@@ -409,3 +460,68 @@ class ResolvedPassive(BaseModel):
power_rating: str | None = None
dielectric: str | None = None
raw_fields: dict[str, str] = {}
class LayoutPad(BaseModel):
number: str
x: float
y: float
net: str = ""
pinfunction: str = ""
class LayoutFootprint(BaseModel):
reference: str
footprint: str = ""
x: float
y: float
layer: str = ""
pads: list[LayoutPad] = []
courtyard: list[tuple[float, float]] = []
class LayoutSegment(BaseModel):
start: tuple[float, float]
end: tuple[float, float]
width: float = 0.0
layer: str = ""
net: str = ""
class LayoutVia(BaseModel):
x: float
y: float
net: str = ""
drill: float | None = None
layers: tuple[str, ...] = ()
class LayoutDielectric(BaseModel):
name: str
er: float
height_mm: float
class LayoutStackup(BaseModel):
copper_layers: list[str]
dielectrics: list[LayoutDielectric]
copper_thickness_mm: float | None = None
class LayoutZone(BaseModel):
net: str
layer: str
outlines: list[list[tuple[float, float]]] = []
keepout: bool = False
name: str = ""
class LayoutGraph(BaseModel):
"""Parsed `.kicad_pcb` geometry. Optional; schema validation does not require it."""
nets: dict[str, int] = {}
footprints: dict[str, LayoutFootprint] = {}
segments: list[LayoutSegment] = []
vias: list[LayoutVia] = []
stackup: LayoutStackup | None = None
zones: list[LayoutZone] = []
@@ -3,10 +3,11 @@
from __future__ import annotations
import csv
import re
from pathlib import Path
from typing import Literal
NetlistFormat = Literal["pads", "edif"]
NetlistFormat = Literal["pads", "edif", "kicad_xml", "kicad_sexp", "kicad_sch"]
def parse_netlist(
@@ -157,25 +158,26 @@ def _parse_pin_tokens(
def detect_netlist_format(content: bytes | str) -> NetlistFormat:
"""Sniff the first chunk of a netlist to decide whether it's PADS or EDIF.
"""Sniff the first chunk of a netlist to decide the format.
EDIF s-expressions start with ``(edif `` (with possible leading whitespace
or BOM); PADS-PCB ASCII files start with ``*PADS-PCB*``. The "pads" branch
is the default when no clear marker is found preserves the old behavior
where the parser raises a friendly error on unrecognised input.
EDIF starts with ``(edif``; KiCad XML with ``<export`` / ``<?xml``;
KiCad s-expr netlist with ``(export``; schematic with ``(kicad_sch``.
PADS-PCB ASCII (``*PADS-PCB*``) is the default when no marker is found.
"""
if isinstance(content, bytes):
try:
text = content[:1024].decode("utf-8", errors="replace")
except Exception:
text = ""
text = content[:2048].decode("utf-8", errors="replace")
else:
text = content[:1024]
head = text.lstrip("").lstrip()
# Case-insensitive match — EDIF spec allows different capitalisations
# (KiCad emits lowercase; xDX Designer emits lowercase too).
if head[:5].lower() == "(edif":
text = content[:2048]
head = text.lstrip("\ufeff").lstrip()
low = head[:40].lower()
if low.startswith("(edif"):
return "edif"
if low.startswith("(kicad_sch"):
return "kicad_sch"
if low.startswith("(export"):
return "kicad_sexp"
if low.startswith("<?xml") or low.startswith("<export"):
return "kicad_xml"
return "pads"
@@ -195,11 +197,14 @@ def parse_netlist_any(
their nets land in the output (PADS netlists have no sub-design concept).
"""
p = Path(path)
sample = p.read_bytes()[:1024]
sample = p.read_bytes()[:2048]
fmt = detect_netlist_format(sample)
if fmt == "edif":
from backend.pinscopex.parsers_edif import parse_edif_netlist
from backend.periscopex.parsers_edif import parse_edif_netlist
parts, nets = parse_edif_netlist(p, include_subdesigns=include_subdesigns)
elif fmt.startswith("kicad"):
from backend.periscopex.parsers_kicad import parse_kicad
parts, nets, _ = parse_kicad(p)
else:
parts, nets = parse_netlist(p, known_refs=known_refs)
return parts, nets, fmt
@@ -210,7 +215,10 @@ def validate_netlist(parts: dict, nets: dict) -> list[str]:
errors: list[str] = []
if not parts:
errors.append("No components found — is this a PADS-PCB (.asc) or EDIF (.edn) netlist?")
errors.append(
"No components found — is this a PADS-PCB (.asc), EDIF (.edn), "
"or KiCad netlist / .kicad_sch?"
)
return errors # further checks are meaningless without parts
if not nets:
@@ -259,22 +267,47 @@ def parse_bom(
result: dict[str, dict] = {}
text = Path(path).read_text()
reader = csv.DictReader(text.splitlines())
colnames = {n.lower() for n in (reader.fieldnames or []) if n}
has_dnp_col = bool(colnames & {"dnp", "dni", "fitted", "populate"})
has_variant_col = bool(colnames & {"variant"})
for row in reader:
refs_raw = row.get(reference_col, "")
value = row.get("Value", "") or row.get("Comment", "")
footprint = row.get("Footprint", "")
mpn = row.get(mpn_col, "") or None
mpn = (row.get(mpn_col, "") or "").strip() or None
lcsc = row.get("LCSC", "") or None
datasheet_url = (row.get("Datasheet", "") or "").strip() or None
# Expand grouped references: "C1,C2,C5" -> ["C1", "C2", "C5"]
for ref in (r.strip() for r in refs_raw.split(",")):
if ref:
result[ref] = {
"value": value,
"footprint": footprint,
"mpn": mpn,
"lcsc": lcsc,
}
refs = [r.strip() for r in refs_raw.split(",") if r.strip()]
# KiCad exports often leave Manufacturer Part Number empty and put
# the orderable code in Value (or PNM). Without this, U* never
# enter ic_mpns and review reports "no datasheet PDF".
if not mpn:
mpn = (row.get("PNM", "") or "").strip() or None
if not mpn and any(re.match(r"^U\d", r, re.I) for r in refs):
mpn = (value or "").strip() or None
dnp_raw = (row.get("DNP") or row.get("DNI") or "").strip().lower()
fitted_raw = (row.get("Fitted") or row.get("Populate") or "").strip().lower()
variant = (row.get("Variant") or row.get("variant") or "").strip() or None
is_dnp = dnp_raw in {"1", "y", "yes", "true", "dnp", "dni", "x"}
if not is_dnp and fitted_raw in {"0", "n", "no", "false"}:
is_dnp = True
for ref in refs:
entry = {
"value": value,
"footprint": footprint,
"mpn": mpn,
"lcsc": lcsc,
"datasheet_url": datasheet_url,
}
if has_dnp_col:
entry["dnp"] = is_dnp
if has_variant_col:
entry["variant"] = variant
result[ref] = entry
return result
@@ -16,19 +16,19 @@ perspective is ambiguous).
from __future__ import annotations
from backend.pinscopex.models import (
from backend.periscopex.models import (
ComponentConstraints,
ComponentType,
DesignGraph,
Finding,
)
from backend.pinscopex.pin_function_tokens import (
from backend.periscopex.pin_function_tokens import (
complement,
normalize_functions,
parse_net_token,
signals_for_peripheral,
)
from backend.pinscopex.validate import _match_constraints
from backend.periscopex.validate import _match_constraints
def check_pin_mux_feasibility(
@@ -169,4 +169,7 @@ def _feasibility_finding(
),
recommendation=rec,
reference=f"{mpn or ref} alternate-function table",
net=net_name,
pins=[f"{ref}.{pin_num}"],
rule_id="PE-MUX-001",
)
@@ -8,7 +8,7 @@ import re
from collections import defaultdict
from pathlib import Path
from backend.pinscopex.models import (
from backend.periscopex.models import (
CapacitorSpecs,
ComponentSpecs,
ComponentType,
@@ -19,7 +19,7 @@ from backend.pinscopex.models import (
SimpleComponentSpecs,
ValueDecoder,
)
from backend.pinscopex.parsers import parse_bom
from backend.periscopex.parsers import parse_bom
# ---------------------------------------------------------------------------
@@ -304,7 +304,34 @@ def simple_to_typed_passive_specs(simple: SimpleComponentSpecs) -> ComponentSpec
dielectric=dielectric,
)
if subtype.startswith("passive.inductor") or subtype == "passive.ferrite_bead":
if subtype == "passive.ferrite_bead":
raw = vals.get("impedance_ohm") or vals.get("value_ohms")
impedance_ohm = None
if raw is not None:
impedance_ohm = _parse_spice_value(str(raw)) if isinstance(raw, str) else float(raw)
current_rating_a = str(vals.get("current_rating_a")) if vals.get("current_rating_a") else None
dcr_raw = vals.get("dcr_ohms")
dcr_ohms: float | None = None
if dcr_raw is not None:
dcr_ohms = _parse_spice_value(str(dcr_raw)) if isinstance(dcr_raw, str) else float(dcr_raw)
formatted = value_formatted
if not formatted and impedance_ohm is not None:
formatted = _format_value(impedance_ohm, "ohm")
spec = InductorSpecs(
component_subtype=subtype_for_specs,
value_henries=None,
value_formatted=formatted or "FB",
tolerance=tolerance,
package=package,
current_rating_a=current_rating_a,
dcr_ohms=dcr_ohms,
impedance_ohm=impedance_ohm,
)
from backend.periscopex.ferrite_z import recover_bead_specs
extra = " ".join(str(v) for v in vals.values() if v is not None)
return recover_bead_specs(spec, extra_text=extra)
if subtype.startswith("passive.inductor"):
raw = vals.get("value_henries")
if raw is None:
raise ValueError(f"Missing value_henries in auto-resolved inductor specs")
@@ -1,4 +1,4 @@
"""Shared utility functions for the pinscopex core library."""
"""Shared utility functions for the periscopex core library."""
from __future__ import annotations
@@ -20,7 +20,8 @@ from dotenv import load_dotenv
load_dotenv()
from backend.pinscopex.models import (
from backend.periscopex.finding_engine import complete_findings
from backend.periscopex.models import (
ComponentConstraints,
ComponentType,
DesignGraph,
@@ -28,8 +29,9 @@ from backend.pinscopex.models import (
NetType,
ValidationReport,
)
from backend.pinscopex.pin_function_tokens import parse_net_token
from backend.pinscopex.validation_tools import (
from backend.periscopex.pin_function_tokens import parse_net_token
from backend.periscopex.quote_verify import verify_finding_citations
from backend.periscopex.validation_tools import (
ALL_TOOLS,
SUBMIT_REVIEW_SCHEMA,
ConstraintsMap,
@@ -54,13 +56,21 @@ how it's wired in the actual circuit.
Treat this IC as a COVERAGE CHECKLIST, not a single investigation. Before \
hunting for problems, enumerate every focus area this IC has derive them \
from its pins, nets, neighbors, and subtype. A typical checklist:
- Power & decoupling on each supply pin.
- Power & decoupling on each supply pin recommended Cin/Cout values, \
ESR, and placement notes, not just "a cap is present".
- Each signal interface to each connected component voltage \
compatibility, direction, and correct cross-connection (e.g. TXRX).
- Absolute-maximum ratings on each pin vs. the actual rail driving it.
- Absolute-maximum ratings on each pin vs. the actual rail driving it. \
Use the extracted abs-max table in the component context when present; \
confirm against the datasheet page if a number is missing or ambiguous.
- Recommended operating conditions and electrical characteristics \
(VIH/VIL, VOL/VOH, input leakage, drive strength) where they change \
whether the interface actually works.
- Reset / enable / boot / mode-strap / configuration pins.
- Clock or crystal circuit, if present.
- Required external components named by the datasheet.
- Clock or crystal circuit, if present load capacitors and the \
datasheet's recommended values.
- Required external components named by the datasheet (bootstrap, \
compensation, feedback divider, sense resistor).
- Unused / no-connect pins.
Then work the areas one at a time. For EACH area, don't just confirm a \
@@ -127,8 +137,12 @@ INFO (worth noting but unlikely to cause problems).
- **source_quote**: The exact verbatim sentence or clause from the datasheet \
that states the requirement. Copy it precisely, character-for-character (a \
short span, ~200 chars max) so it can be located and highlighted in the PDF. \
Omit this field when the requirement is shown only in a figure or a \
rasterized table with no selectable text do not paraphrase or invent a quote.
ERROR and WARNING findings **must** include this field. Periscope checks the \
quote against the extracted text of the cited page (±1); invented or \
paraphrased quotes are demoted to Unverified WARNING. Omit the field only \
when the requirement is shown solely in a figure or a rasterized table with \
no selectable text then status is WARNING at most and `why` must start \
with `Unverified:`.
- **source_designator**: Leave unset when `source_page`/`source_quote` come \
from THIS component's datasheet (the default). Set it to a connected \
component's designator (e.g. `U3`) only when the page/quote come from that \
@@ -136,6 +150,12 @@ neighbor's datasheet that you fetched via `get_datasheet_excerpt` — this \
links the page number to the right datasheet.
- **recommendation**: What to change (for ERROR/WARNING only).
This is a **design review**, not a design rule. Put observations in \
`finding` (FACT), datasheet text in `why` (REQUIREMENT), and judgment \
only there do not invent millimetres, IEC numbers, or typical values. \
Recommended datasheet notes are never ERROR. If evidence is missing, say \
so (Unverified) instead of guessing.
### Calibration
ERROR only for clear violations: required pin floating, voltage exceeding \
absolute max, required external component completely missing, wrong \
@@ -231,10 +251,10 @@ whose purpose you have not identified.
### Budget per concern: cap ONE concern, not the whole review
A single concern (one potential finding under investigation) gets at \
most two follow-up tool calls beyond what was already in your initial \
most three follow-up tool calls beyond what was already in your initial \
context. If the concern is not resolved within that budget, submit it \
as WARNING with `why` starting `Unverified: <what you could not \
establish in two queries>` and move on to the next area. This per-concern \
establish in three queries>` and move on to the next area. This per-concern \
cap exists so one concern cannot swallow the whole review NOT so you \
finish early. Your total budget across all concerns is generous: spend it \
on breadth. The failure mode to avoid is leaving focus areas of this IC \
@@ -346,6 +366,27 @@ alternate-function list shown for peripheral-named-net pins is taken \
verbatim from the datasheet pin table and is reliable even when the short \
`(NAME)` label is not prefer it when judging what a pin can be muxed to.
### ESD / TVS arrays — do not invent the diode topology
An IO pin whose neighbor is GND (or whose pin name is IO/I/O) does NOT \
mean a single steering diode from IO to GND that conducts at ~0.7 V. \
Many 2-channel ESD arrays (audio, RS-232, RS-485) are *bidirectional \
back-to-back* with a signed working voltage (Vrwm, often ±12 V or \
±13 V). In that topology a 1 Vrms AC-coupled audio swing is inside the \
standoff range and is not clipped.
Before claiming clipping, forward conduction, or "unidirectional clamp":
1. Quote the datasheet topology (block diagram or "bidirectional" / \
"unidirectional" / "back-to-back" wording) in `source_quote`.
2. Quote Vrwm (or equivalent working-voltage row) with sign. Use that \
number as the standoff, not a generic silicon Vf.
3. If the block diagram or electrical table is unreadable, status is \
WARNING at most and `why` must start with `Unverified:` never ERROR \
from "typical for this part" or from pin names alone.
A replacement recommendation must name a part whose topology matches \
the signal (do not suggest a unidirectional array for a bipolar \
AC-coupled audio net).
### Direction-control and transceiver function tables
Bidirectional transceivers, level shifters, mux/demux, bus switches, and \
analog switches (74xx245, 74xx125, 74xx157, TS3A-family, etc.) often \
@@ -414,7 +455,7 @@ context if needed.
# Maximum turns for the review agentic loop
_MAX_REVIEW_TURNS = 10
_MAX_REVIEW_TURNS = 16
# ---------------------------------------------------------------------------
@@ -449,6 +490,18 @@ def build_component_context(
if constraints and constraints.package_info:
pi = constraints.package_info
lines.append(f"Package: {pi.package}, {pi.pin_count} pins")
if constraints and constraints.absolute_maximum_ratings:
lines.append("Extracted ratings (abs-max, plus Vrwm/polarity for ESD):")
for r in constraints.absolute_maximum_ratings:
bits = []
if r.min is not None:
bits.append(f"min {r.min:g}")
if r.max is not None:
bits.append(f"max {r.max:g}")
span = " ".join(bits) if bits else "?"
lines.append(
f" {r.parameter}: {span} {r.unit} (datasheet p.{r.source_page})"
)
lines.append("")
# Build pin list — prefer extracted pintable order, fall back to netlist.
@@ -765,7 +818,13 @@ def review_component(
# Check for submit_review
for block in response.content:
if block.type == "tool_use" and block.name == "submit_review":
return _parse_review(block.input, ic_ref, mpn)
result = _parse_review(block.input, ic_ref, mpn)
verify_finding_citations(
result.findings,
default_pdf=Path(pdf_path),
default_mpn=mpn,
)
return result
# Process graph tool calls
tool_results = []
@@ -854,17 +913,37 @@ def _parse_review(
else:
src_designator = None
src_mpn = mpn
status = item["status"]
why = str(item.get("why") or "")
quote = str(item.get("source_quote") or "").strip()
# ERROR/WARNING with no verbatim quote: demote before PDF check.
if status in ("ERROR", "WARNING") and not quote:
if status == "ERROR":
status = "WARNING"
if not why.startswith("Unverified:"):
why = (
"Unverified: no verbatim datasheet quote. " + why
).strip()
rec = str(item.get("recommendation") or item.get("action") or "").strip()
act = str(item.get("action") or rec).strip()
findings.append(Finding(
designator=ic_ref,
mpn=mpn,
source_designator=src_designator,
finding=item["finding"],
why=item.get("why", ""),
status=item["status"],
facts=str(item.get("finding") or ""),
requirement=why,
inference=str(item.get("inference") or ""),
why=why,
status=status,
source_page=page,
source_quote=item.get("source_quote", ""),
recommendation=item.get("recommendation", ""),
recommendation=rec,
action=act,
reference=f"{src_mpn} datasheet p.{page if page is not None else '?'}",
source="review",
finding_class="REVIEW",
evidence_status="SUFFICIENT" if quote else "INSUFFICIENT",
))
except (KeyError, TypeError, ValueError) as exc:
print(f"Skipping malformed finding for {ic_ref}: {exc}", file=sys.stderr)
@@ -874,11 +953,12 @@ def _parse_review(
def assign_finding_ids(findings: list[Finding]) -> None:
"""Assign finding_id: {designator}-{001}, {002}, ..."""
"""Assign finding_id: {designator}-{001}, {002}, ... then run the finding engine."""
counter: Counter[str] = Counter()
for f in findings:
counter[f.designator] += 1
f.finding_id = f"{f.designator}-{counter[f.designator]:03d}"
complete_findings(findings)
# ---------------------------------------------------------------------------
@@ -933,7 +1013,7 @@ def validate_design(
model: str = "claude-sonnet-4-6",
) -> ValidationReport:
"""Load graph, review every IC against its datasheet, write report."""
from backend.pinscopex.utils import safe_mpn
from backend.periscopex.utils import safe_mpn
raw = json.loads(Path(graph_path).read_text())
graph = DesignGraph.model_validate(raw)
@@ -13,11 +13,11 @@ from dataclasses import dataclass, field
from pathlib import Path
from typing import Any
from backend.pinscopex.models import (
from backend.periscopex.models import (
ComponentConstraints,
DesignGraph,
)
from backend.pinscopex.utils import safe_mpn
from backend.periscopex.utils import safe_mpn
log = logging.getLogger(__name__)
@@ -256,6 +256,104 @@ def get_net_for_pin(
return f"Pin {pin}{pin_name} on {designator} -> {net_name} [{net.net_type.value}{voltage_str}]"
def shortest_path(
graph: DesignGraph,
constraints_map: ConstraintsMap,
designator_a: str,
pin_a: str,
designator_b: str,
pin_b: str,
*,
max_hops: int = 12,
) -> str:
"""BFS through the bipartite graph from A.pin to B.pin.
Hops alternate componentnetcomponent. Returns the hop list or a
clear miss message. Caps depth so the reviewer cannot explode memory
on dense power nets.
"""
a = graph.components.get(designator_a)
b = graph.components.get(designator_b)
if not a:
return f"Component '{designator_a}' not found."
if not b:
return f"Component '{designator_b}' not found."
net_a = a.pins.get(str(pin_a))
net_b = b.pins.get(str(pin_b))
if not net_a:
return f"Pin {pin_a} on {designator_a} is not connected in the netlist."
if not net_b:
return f"Pin {pin_b} on {designator_b} is not connected in the netlist."
if designator_a == designator_b and str(pin_a) == str(pin_b):
return f"Same endpoint: {designator_a}.{pin_a} on {net_a}."
if net_a == net_b:
return (
f"Direct (same net): {designator_a}.{pin_a} —[{net_a}]— "
f"{designator_b}.{pin_b}"
)
# BFS on component nodes; edges are nets shared between components.
from collections import deque
start = designator_a
goal = designator_b
queue: deque[str] = deque([start])
# prev[ref] = (previous_ref, via_net)
prev: dict[str, tuple[str, str] | None] = {start: None}
hops = 0
found = False
while queue and hops < max_hops:
hops += 1
for _ in range(len(queue)):
cur = queue.popleft()
for net_name, others in graph.neighbors(cur).items():
for other in others:
if other in prev:
continue
prev[other] = (cur, net_name)
if other == goal:
found = True
queue.clear()
break
queue.append(other)
if found:
break
if found:
break
if not found or goal not in prev:
return (
f"No path within {max_hops} hops from "
f"{designator_a}.{pin_a} ({net_a}) to "
f"{designator_b}.{pin_b} ({net_b})."
)
# Reconstruct component chain, then decorate endpoints with pins.
chain_refs: list[str] = []
via_nets: list[str] = []
node = goal
while node != start:
chain_refs.append(node)
parent, via = prev[node] # type: ignore[misc]
via_nets.append(via)
node = parent
chain_refs.append(start)
chain_refs.reverse()
via_nets.reverse()
parts: list[str] = [f"{designator_a}.{pin_a}"]
for i, via in enumerate(via_nets):
nxt = chain_refs[i + 1]
if nxt == designator_b:
parts.append(f"—[{via}]— {designator_b}.{pin_b}")
else:
parts.append(f"—[{via}]— {nxt}")
return f"Path ({len(via_nets)} hop(s)): " + " ".join(parts)
def get_pintable(
graph: DesignGraph,
constraints_map: ConstraintsMap,
@@ -317,18 +415,24 @@ def _resolve_neighbor_pdf(
Mirrors validation._find_pdf's local-then-library lookup so neighbor
datasheets follow the same resolution rules as the IC under review.
"""
safe = safe_mpn(mpn)
local = state.pdf_dir / f"{safe}.pdf"
if local.is_file():
from backend.services.datasheet_finder import find_local_pdf
local = find_local_pdf(state.pdf_dir, mpn)
if local is not None and local.is_file():
wanted = state.pdf_dir / f"{safe_mpn(mpn)}.pdf"
if local.resolve() != wanted.resolve() and not wanted.is_file():
wanted.write_bytes(local.read_bytes())
return wanted
return local
if state.storage is not None:
try:
from backend.services import projects as proj_svc
lib_key = proj_svc.library_has_datasheet(state.storage, mpn)
if lib_key:
state.storage.download_to_local(lib_key, local)
if local.is_file():
return local
wanted = state.pdf_dir / f"{safe_mpn(mpn)}.pdf"
state.storage.download_to_local(lib_key, wanted)
if wanted.is_file():
return wanted
except Exception:
log.exception("excerpt: library lookup failed for %s", mpn)
return None
@@ -405,7 +509,7 @@ def get_datasheet_excerpt(
return ("get_datasheet_excerpt called without per-review state — "
"this is a bug, no excerpt returned.", None)
# Lazy import to avoid backend↔pinscopex circular dependency at module load.
# Lazy import to avoid backend↔periscopex circular dependency at module load.
from backend.services.llm import PdfBlock
designator = (designator or "").strip()
@@ -584,6 +688,38 @@ GET_NET_FOR_PIN_SCHEMA = {
},
}
SHORTEST_PATH_SCHEMA = {
"name": "shortest_path",
"description": (
"Find the shortest hop path through the netlist between two pins "
"(component.pin → nets → components). Use to verify whether two "
"pins share a rail path, or how a signal reaches another IC, "
"instead of guessing from neighborhood context."
),
"input_schema": {
"type": "object",
"properties": {
"designator_a": {
"type": "string",
"description": "Start component reference, e.g. 'U1'",
},
"pin_a": {
"type": "string",
"description": "Start pin number, e.g. '12'",
},
"designator_b": {
"type": "string",
"description": "End component reference, e.g. 'U3'",
},
"pin_b": {
"type": "string",
"description": "End pin number, e.g. '5'",
},
},
"required": ["designator_a", "pin_a", "designator_b", "pin_b"],
},
}
GET_PINTABLE_SCHEMA = {
"name": "get_pintable",
"description": (
@@ -639,11 +775,10 @@ SUBMIT_REVIEW_SCHEMA = {
"source_quote": {
"type": "string",
"description": (
"The exact verbatim text from the datasheet that "
"states this requirement — copy it "
"character-for-character (max ~200 chars). Omit "
"if the evidence is only in a figure or a "
"rasterized table with no selectable text."
"Required for ERROR and WARNING. Exact verbatim "
"datasheet text (max ~200 chars). Periscope "
"checks it against the PDF page. Omit only if "
"the evidence is a figure/scan with no text."
),
},
"source_designator": {
@@ -662,7 +797,17 @@ SUBMIT_REVIEW_SCHEMA = {
},
"recommendation": {
"type": "string",
"description": "What to change to fix the issue. Only for ERROR/WARNING.",
"description": (
"What to change on the board or schematic. "
"Required for every finding, including INFO."
),
},
"action": {
"type": "string",
"description": (
"Same as recommendation if you prefer that name. "
"Required for every finding when recommendation is empty."
),
},
},
"required": ["finding", "why", "status", "source_page"],
@@ -722,6 +867,7 @@ GET_DATASHEET_EXCERPT_SCHEMA = {
GRAPH_TOOLS = [
FIND_CONNECTED_COMPONENTS_SCHEMA,
GET_NET_FOR_PIN_SCHEMA,
SHORTEST_PATH_SCHEMA,
GET_PINTABLE_SCHEMA,
GET_DATASHEET_EXCERPT_SCHEMA,
]
@@ -765,6 +911,17 @@ def execute_tool(
),
None,
)
if tool_name == "shortest_path":
return (
shortest_path(
graph, constraints_map,
tool_input["designator_a"],
tool_input["pin_a"],
tool_input["designator_b"],
tool_input["pin_b"],
),
None,
)
if tool_name == "get_pintable":
return (
get_pintable(
@@ -81,11 +81,13 @@ async def _run() -> None:
# are visible to any API instance tailing the event log.
pipeline_svc.set_broker(event_bridge.GCSEventBroker(storage, user_id))
# Fresh runs wipe the prior event log so the SSE consumer doesn't
# mix old events into the new run. Resume keeps the prior log so
# users see the full history.
if not resume:
pipeline_svc.broker.clear_history(project_id)
# Always wipe the prior event log. Reprocess uses resume=True, and
# the old log still contains ``pipeline_complete``; the SSE tail
# would stop there and the UI would show a finished run with no live
# log while the worker is still reviewing. Pause-resume also hits a
# terminal ``pipeline_paused``. A fresh seq from 0 is the only safe
# option — completed_review_refs still skip paid ICs.
pipeline_svc.broker.clear_history(project_id)
if mode == "run":
await pipeline_svc.run_pipeline(
@@ -99,8 +101,16 @@ async def _run() -> None:
await pipeline_svc.run_regen_pipeline(
storage, user_id, project_id, stages,
)
elif mode == "placement":
from backend.services import placement_pipeline as placement_svc
await placement_svc.run_placement_pipeline(storage, user_id, project_id)
elif mode == "pcb":
from backend.services import pcb_pipeline as pcb_svc
await pcb_svc.run_pcb_pipeline(storage, user_id, project_id)
else:
raise SystemExit(f"unknown MODE={mode!r}; expected 'run' or 'regen'")
raise SystemExit(
f"unknown MODE={mode!r}; expected 'run', 'regen', 'placement', or 'pcb'"
)
def main() -> None:
@@ -1,5 +1,6 @@
fastapi>=0.115
uvicorn[standard]
openai>=1.60
anthropic>=0.83
google-genai>=1.59
pydantic[email]>=2.0
@@ -12,6 +13,10 @@ google-cloud-storage>=2.14
google-cloud-run>=0.10
google-api-python-client>=2.100
pypdf>=4.0
pymupdf>=1.24
PyJWT[crypto]>=2.8
cryptography>=42.0
packaging>=23.0
httpx>=0.27
packaging>=24.0
shapely>=2.0
PyYAML>=6.0
@@ -0,0 +1,3 @@
from pkgutil import extend_path
__path__ = extend_path(__path__, __name__)
@@ -15,7 +15,7 @@ from fastapi.responses import JSONResponse
from pydantic import BaseModel
from backend.config import settings
from backend.pinscopex.utils import safe_mpn
from backend.periscopex.utils import safe_mpn
from backend.routers.deps import get_storage
from backend.services import admin_settings as settings_svc
from backend.services.billing_hook import get_billing
@@ -41,6 +41,14 @@ async def is_admin(request: Request) -> bool:
request.state._is_admin = True
return True
if settings.use_local_auth:
from backend.services import local_users
user = local_users.get_user(user_id)
result = bool(user and user.is_admin)
request.state._is_admin = result
return result
# Fetch user from Clerk Backend API and check public_metadata.role
try:
async with httpx.AsyncClient() as client:
@@ -77,86 +85,13 @@ async def list_components(request: Request):
"""List all extracted IC components and passive patterns in the library."""
await _require_admin(request)
storage = get_storage(request)
# IC extractions (deduplicate by MPN)
ic_keys = [
k for k in storage.list_prefix("library/extracted/")
if k.endswith(".json")
]
ics = []
seen_ic_mpns: set[str] = set()
for key in ic_keys:
try:
data = storage.read_json(key)
mpn = data.get("mpn") or key.rsplit("/", 1)[-1].replace(".json", "")
if mpn in seen_ic_mpns:
continue
seen_ic_mpns.add(mpn)
ics.append({
"mpn": mpn,
"type": "ic",
"subtype": data.get("component_subtype", ""),
"pin_count": len(data.get("pintable", [])),
"has_ratings": bool(data.get("absolute_maximum_ratings")),
})
except Exception:
continue
# Passive patterns
pattern_keys = [
k for k in storage.list_prefix("library/patterns/")
if k.endswith(".json")
]
passives = []
seen_passive_names: set[str] = set()
for key in pattern_keys:
try:
data = storage.read_json(key)
name = data.get("name") or key.rsplit("/", 1)[-1].replace(".json", "")
if name in seen_passive_names:
continue
seen_passive_names.add(name)
passives.append({
"mpn": name,
"type": "passive",
"subtype": data.get("component_type", ""),
"description": data.get("description", ""),
"regex": data.get("regex", ""),
})
except Exception:
continue
# Simple component models (library/models/) + passive models (library/passives/)
model_keys = [
k for k in storage.list_prefix("library/models/")
if k.endswith(".json")
]
passive_model_keys = [
k for k in storage.list_prefix("library/passives/")
if k.endswith(".json")
]
simple_models = []
seen_model_mpns: set[str] = set()
for key in model_keys + passive_model_keys:
try:
data = storage.read_json(key)
mpn = data.get("mpn", "")
if mpn in seen_model_mpns:
continue
seen_model_mpns.add(mpn)
specs = data.get("specs", {})
simple_models.append({
"mpn": mpn,
"type": "simple",
"specs_type": specs.get("specs_type", ""),
"subtype": specs.get("component_subtype", ""),
"param_count": len(specs.get("values", {})),
})
except Exception:
continue
catalog = proj_svc.list_library_catalog(storage)
return JSONResponse(
content={"ics": ics, "passives": passives, "simple": simple_models},
content={
"ics": catalog["ics"],
"passives": catalog["passives"],
"simple": catalog["simple"],
},
headers={"Cache-Control": "no-store"},
)
@@ -562,13 +497,23 @@ async def list_running_pipelines(request: Request):
if meta.status not in (proj_svc.STATUS_QUEUED, proj_svc.STATUS_RUNNING):
continue
# Sweeper: if the execution is in a terminal Cloud Run state,
# the worker is already gone. Flip status → error so the UI
# stops lying. Skip the sweep when execution_name is missing
# (worker may still be enqueueing).
# Sweeper: if the execution is in a terminal Cloud Run / local
# state, the worker is already gone. Flip status → error so the
# UI stops lying. Also heal projects whose event log already
# ends with pipeline_complete (finished, meta never flipped).
healed = proj_svc.heal_if_pipeline_finished(storage, uid, meta.id)
if healed is not None:
continue
exec_state = "unknown"
if meta.execution_name:
exec_state = job_runner.get_execution_state(meta.execution_name)
elif not job_runner.use_cloud_run_jobs():
# Local zombie: no execution_name but a dead pid file, or
# no live proc — treat as failed after the stale window.
exec_state = job_runner.get_execution_state(
f"local/projects/{meta.id}"
)
if exec_state in ("succeeded", "failed", "cancelled"):
# Allow a short grace period so we don't race the worker
# writing its own terminal status. updated may be stale
@@ -41,10 +41,10 @@ class ContactResponse(BaseModel):
def _build_contact_message(data: ContactRequest) -> MIMEMultipart:
"""Build the contact form email."""
msg = MIMEMultipart("alternative")
msg["From"] = f"Pinscope <{settings.email_sender}>"
msg["From"] = f"Periscope <{settings.email_sender}>"
msg["To"] = settings.contact_recipient
msg["Reply-To"] = data.email
msg["Subject"] = f"[Pinscope Contact] {data.subject or 'New message'} from {data.name}"
msg["Subject"] = f"[Periscope Contact] {data.subject or 'New message'} from {data.name}"
# Plain text
lines = [
@@ -55,7 +55,7 @@ def _build_contact_message(data: ContactRequest) -> MIMEMultipart:
lines.append(f"Company: {data.company}")
if data.subject:
lines.append(f"Subject: {data.subject}")
lines += ["", data.message, "", "— Sent from the Pinscope contact form"]
lines += ["", data.message, "", "— Sent from the Periscope contact form"]
msg.attach(MIMEText("\n".join(lines), "plain"))
# HTML
@@ -94,7 +94,7 @@ def _build_contact_message(data: ContactRequest) -> MIMEMultipart:
{rows}
</table>
<div style="margin-top: 16px; padding: 16px; background: #f9fafb; border-radius: 8px; font-size: 14px; line-height: 1.6; white-space: pre-wrap;">{message}</div>
<p style="margin-top: 24px; font-size: 12px; color: #888;">Sent from the Pinscope contact form</p>
<p style="margin-top: 24px; font-size: 12px; color: #888;">Sent from the Periscope contact form</p>
</div>"""
msg.attach(MIMEText(html_body, "html"))
@@ -0,0 +1,977 @@
"""Pipeline start, SSE events, and status endpoints.
Pipelines run in a Cloud Run Job worker (or, in local dev, a child
subprocess). The API only enqueues, transitions status with
``if-generation-match`` for idempotency, and tails the GCS-backed event
log for SSE.
"""
from __future__ import annotations
import asyncio
import json
import logging
from fastapi import APIRouter, HTTPException, Request
from sse_starlette.sse import EventSourceResponse
from pydantic import BaseModel
from typing import Literal
from backend.routers.deps import get_storage, resolve_or_404
from backend.services import event_bridge, job_runner
from backend.services import projects as proj_svc
logger = logging.getLogger(__name__)
VALID_REGEN_STAGES = {"derating"}
_REPROCESS_OK_FROM = frozenset({
proj_svc.STATUS_COMPLETE,
proj_svc.STATUS_ERROR,
proj_svc.STATUS_CANCELLED,
})
class RegenRequest(BaseModel):
stages: list[str]
class ReprocessRequest(BaseModel):
"""``failed`` retries skipped/errored reviews and ICs whose circuit
neighborhood changed; ``all`` re-reviews every IC."""
mode: Literal["failed", "all"] = "failed"
router = APIRouter(tags=["pipeline"])
# Statuses from which a fresh ``/start`` is allowed to transition into queued.
_START_OK_FROM = frozenset({
proj_svc.STATUS_DRAFT,
proj_svc.STATUS_COMPLETE,
proj_svc.STATUS_ERROR,
proj_svc.STATUS_CANCELLED,
})
def _project_active(meta: proj_svc.ProjectMeta) -> bool:
"""A project is "active" if a worker is or could be running for it.
Used as the running-guard. We trust the meta status as the primary
signal, and only fall back to the Cloud Run execution state when the
status is one we expect a worker to be touching. This deliberately
does NOT call get_execution_state on every request — it's an admin
API call. The stale-running sweeper is responsible for clearing
zombie ``running`` projects.
"""
return meta.status in (proj_svc.STATUS_QUEUED, proj_svc.STATUS_RUNNING)
@router.post("/pipeline/{project_id}/start", status_code=202)
async def start(project_id: str, request: Request):
from backend.routers.deps import get_user_id
from backend.services.billing_hook import get_billing
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not meta.has_bom or not meta.has_netlist:
raise HTTPException(400, "Upload BOM and netlist before starting pipeline")
# Ensure the caller has at least their trial credits allocated. The
# pipeline itself enforces pause-on-empty — this just makes sure a
# brand-new user isn't blocked before their grant is issued.
get_billing().ensure_trial_grant(storage, get_user_id(request))
# Idempotent enqueue: only one ``draft|complete|error|cancelled`` ->
# ``queued`` transition can win. Concurrent /start clicks => 409.
from backend._version import PERISCOPE_VERSION
try:
proj_svc.transition_status(
storage, owner_user_id, project_id,
from_status=_START_OK_FROM,
to_status=proj_svc.STATUS_QUEUED,
cancel_requested=False,
execution_name=None,
periscope_version=PERISCOPE_VERSION,
)
except proj_svc.StatusConflict:
raise HTTPException(409, "Pipeline already running or queued")
try:
execution_name = job_runner.enqueue_pipeline(
project_id, owner_user_id, resume=False, free=False,
)
except Exception:
logger.exception("enqueue_pipeline failed for %s", project_id)
# Roll the meta back so the user can retry.
proj_svc.update_project(
storage, owner_user_id, project_id,
status=proj_svc.STATUS_ERROR,
pipeline_state={"error": "Failed to enqueue worker"},
)
raise HTTPException(503, "Failed to enqueue pipeline worker; please retry")
proj_svc.update_project(
storage, owner_user_id, project_id, execution_name=execution_name,
)
return {"status": "started", "project_id": project_id}
@router.post("/pipeline/{project_id}/cancel")
async def cancel(project_id: str, request: Request):
"""Soft-cancel: set ``cancel_requested`` so the worker exits cleanly.
The worker re-reads this flag inside ``_charge_for_logs`` after every
Claude API call (throttled). Cancellation latency is bounded by the
in-flight call's duration, typ 160s.
"""
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not _project_active(meta):
raise HTTPException(409, f"Pipeline is not running (status={meta.status})")
proj_svc.request_cancel(storage, owner_user_id, project_id)
return {"status": "cancel_requested", "project_id": project_id}
@router.post("/pipeline/{project_id}/estimate")
async def estimate(project_id: str, request: Request):
"""Pre-flight cost estimate — read-only, no side effects."""
from backend.services.cost_estimator import estimate_pipeline_cost
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not meta.has_bom:
raise HTTPException(400, "Upload a BOM before requesting an estimate")
try:
est = estimate_pipeline_cost(storage, owner_user_id, project_id)
except FileNotFoundError as exc:
raise HTTPException(400, str(exc)) from exc
return est.model_dump()
@router.post("/pipeline/{project_id}/resume", status_code=202)
async def resume(project_id: str, request: Request):
"""Resume a pipeline that was paused for insufficient credits."""
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if meta.status != proj_svc.STATUS_PAUSED:
raise HTTPException(
400,
f"Project is not paused (status={meta.status}); nothing to resume.",
)
if not meta.has_bom or not meta.has_netlist:
raise HTTPException(400, "Project is missing BOM or netlist")
try:
proj_svc.transition_status(
storage, owner_user_id, project_id,
from_status=proj_svc.STATUS_PAUSED,
to_status=proj_svc.STATUS_QUEUED,
cancel_requested=False,
)
except proj_svc.StatusConflict:
raise HTTPException(409, "Project state changed; refresh and retry")
try:
execution_name = job_runner.enqueue_pipeline(
project_id, owner_user_id, resume=True, free=False,
)
except Exception:
logger.exception("enqueue_pipeline (resume) failed for %s", project_id)
proj_svc.update_project(
storage, owner_user_id, project_id,
status=proj_svc.STATUS_ERROR,
pipeline_state={"error": "Failed to enqueue worker"},
)
raise HTTPException(503, "Failed to enqueue pipeline worker; please retry")
proj_svc.update_project(
storage, owner_user_id, project_id, execution_name=execution_name,
)
return {"status": "resumed", "project_id": project_id}
@router.post("/pipeline/{project_id}/reprocess", status_code=202)
async def reprocess(project_id: str, request: Request, req: ReprocessRequest | None = None):
"""Re-run a finished project without the create wizard.
Keeps BOM, netlist, datasheets, and library extractions. ``failed``
(default) skips ICs that already produced a review; ``all`` re-reviews
every IC.
"""
from backend._version import PERISCOPE_VERSION
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not meta.has_bom or not meta.has_netlist:
raise HTTPException(400, "Upload BOM and netlist before reprocessing")
if _project_active(meta):
await _interrupt_active_pipeline(storage, owner_user_id, project_id)
meta = proj_svc.get_project(storage, owner_user_id, project_id) or meta
if meta.status == proj_svc.STATUS_PAUSED:
allowed = _REPROCESS_OK_FROM | {proj_svc.STATUS_PAUSED}
else:
allowed = _REPROCESS_OK_FROM
if meta.status not in allowed and not _project_active(meta):
raise HTTPException(
409,
f"Cannot reprocess from status={meta.status}.",
)
body = req or ReprocessRequest()
retry_failed = body.mode == "failed"
keep_refs = (
proj_svc.completed_review_refs_for_retry(storage, owner_user_id, project_id)
if retry_failed else []
)
try:
proj_svc.transition_status(
storage, owner_user_id, project_id,
from_status=allowed | {
proj_svc.STATUS_QUEUED, proj_svc.STATUS_RUNNING,
},
to_status=proj_svc.STATUS_QUEUED,
cancel_requested=False,
execution_name=None,
pipeline_state=None,
pause_checkpoint=None,
pause_reason=None,
completed_review_refs=keep_refs,
periscope_version=PERISCOPE_VERSION,
)
except proj_svc.StatusConflict:
raise HTTPException(409, "Pipeline already running or queued")
try:
execution_name = job_runner.enqueue_pipeline(
project_id, owner_user_id, resume=retry_failed, free=False,
)
except Exception:
logger.exception("enqueue_pipeline (reprocess) failed for %s", project_id)
proj_svc.update_project(
storage, owner_user_id, project_id,
status=proj_svc.STATUS_ERROR,
pipeline_state={"error": "Failed to enqueue worker"},
)
raise HTTPException(503, "Failed to enqueue pipeline worker; please retry")
proj_svc.update_project(
storage, owner_user_id, project_id, execution_name=execution_name,
)
return {
"status": "reprocess_started",
"project_id": project_id,
"mode": body.mode,
"resume": retry_failed,
"kept_review_refs": keep_refs,
}
@router.post("/pipeline/{project_id}/restart", status_code=202)
async def restart(project_id: str, request: Request):
"""Admin-only: wipe per-project extractions and run the pipeline free."""
from backend.routers.admin import _require_admin
await _require_admin(request)
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not meta.has_bom or not meta.has_netlist:
raise HTTPException(400, "Upload BOM and netlist before starting pipeline")
# If something is currently running/queued, request cancel and wait
# briefly for the worker to honour it (or exit on its own). Hard-kill
# the execution as a last resort.
if _project_active(meta):
proj_svc.request_cancel(storage, owner_user_id, project_id)
await _await_terminal(storage, owner_user_id, project_id, timeout_s=10.0)
# If still active, hard-kill via Cloud Run cancel.
meta = proj_svc.get_project(storage, owner_user_id, project_id) or meta
if _project_active(meta) and meta.execution_name:
job_runner.cancel_execution(meta.execution_name)
await _await_terminal(storage, owner_user_id, project_id, timeout_s=5.0)
proj_svc.clear_project_extractions(storage, owner_user_id, project_id)
# After clear_project_extractions the project is left in whatever
# status it was; the transition below enforces queued.
try:
proj_svc.transition_status(
storage, owner_user_id, project_id,
from_status=_START_OK_FROM | {proj_svc.STATUS_PAUSED},
to_status=proj_svc.STATUS_QUEUED,
cancel_requested=False,
execution_name=None,
)
except proj_svc.StatusConflict:
raise HTTPException(409, "Pipeline is busy; cancel first then retry")
try:
execution_name = job_runner.enqueue_pipeline(
project_id, owner_user_id, resume=False, free=True,
)
except Exception:
logger.exception("enqueue_pipeline (restart) failed for %s", project_id)
proj_svc.update_project(
storage, owner_user_id, project_id,
status=proj_svc.STATUS_ERROR,
pipeline_state={"error": "Failed to enqueue worker"},
)
raise HTTPException(503, "Failed to enqueue pipeline worker; please retry")
proj_svc.update_project(
storage, owner_user_id, project_id, execution_name=execution_name,
)
return {"status": "restarted", "project_id": project_id}
@router.post("/pipeline/{project_id}/regen", status_code=202)
async def regen(project_id: str, req: RegenRequest, request: Request):
"""Rebuild graph and regenerate only the requested stages."""
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not meta.has_bom or not meta.has_netlist:
raise HTTPException(400, "Upload BOM and netlist before running regen")
invalid = set(req.stages) - VALID_REGEN_STAGES
if invalid:
raise HTTPException(400, f"Invalid regen stages: {sorted(invalid)}. Valid: {sorted(VALID_REGEN_STAGES)}")
if not req.stages:
raise HTTPException(400, "At least one stage is required")
if _project_active(meta):
proj_svc.request_cancel(storage, owner_user_id, project_id)
await _await_terminal(storage, owner_user_id, project_id, timeout_s=10.0)
meta = proj_svc.get_project(storage, owner_user_id, project_id) or meta
if _project_active(meta) and meta.execution_name:
job_runner.cancel_execution(meta.execution_name)
await _await_terminal(storage, owner_user_id, project_id, timeout_s=5.0)
try:
proj_svc.transition_status(
storage, owner_user_id, project_id,
from_status=_START_OK_FROM | {proj_svc.STATUS_PAUSED},
to_status=proj_svc.STATUS_QUEUED,
cancel_requested=False,
execution_name=None,
)
except proj_svc.StatusConflict:
raise HTTPException(409, "Pipeline is busy; cancel first then retry")
try:
execution_name = job_runner.enqueue_pipeline_regen(
project_id, owner_user_id, stages=req.stages,
)
except Exception:
logger.exception("enqueue_pipeline_regen failed for %s", project_id)
proj_svc.update_project(
storage, owner_user_id, project_id,
status=proj_svc.STATUS_ERROR,
pipeline_state={"error": "Failed to enqueue worker"},
)
raise HTTPException(503, "Failed to enqueue pipeline worker; please retry")
proj_svc.update_project(
storage, owner_user_id, project_id, execution_name=execution_name,
)
return {"status": "regen_started", "project_id": project_id, "stages": req.stages}
# ---------------------------------------------------------------------------
# SSE events
# ---------------------------------------------------------------------------
_EXEC_TERMINAL = frozenset({"succeeded", "failed", "cancelled"})
_ANALYSIS_SSE_TERMINAL = frozenset({
"pipeline_complete",
"pipeline_error",
"pipeline_cancelled",
"pipeline_paused",
})
@router.get("/pipeline/{project_id}/events")
async def events(project_id: str, request: Request):
"""SSE stream of pipeline progress events.
Tails the GCS-backed event log written by the worker. Stops on
analysis terminal events, but also has two hard-crash escape
hatches: the project's status reaching a terminal value *after*
having been active, and the Cloud Run execution reaching a
terminal state. Either of those triggers a synthetic
``pipeline_error`` so the SSE doesn't hang forever when the worker
dies without writing its terminal event.
"""
owner_user_id, meta = await resolve_or_404(request, project_id)
storage = get_storage(request)
async def event_generator():
execution_name = meta.execution_name
crash_detected: dict[str, str | None] = {"reason": None}
# Only treat a terminal status as a crash if we observed the
# project as queued/running first — otherwise a finished project
# reconnecting to /events would immediately synthesize an error
# (or race with a historical pipeline_complete replay).
active_state = {
"saw": meta.status in (
proj_svc.STATUS_QUEUED, proj_svc.STATUS_RUNNING,
),
}
async def watch_status() -> None:
poll_interval = 2.0
while True:
await asyncio.sleep(poll_interval)
try:
cur = proj_svc.get_project(storage, owner_user_id, project_id)
except Exception:
continue
if cur is None:
continue
if cur.status in (proj_svc.STATUS_QUEUED, proj_svc.STATUS_RUNNING):
active_state["saw"] = True
elif active_state["saw"] and cur.status in proj_svc.TERMINAL_STATUSES:
crash_detected["reason"] = (
f"project status={cur.status} (terminal)"
)
return
# Cloud Run hard-crash detection
if execution_name and (
active_state["saw"]
or cur.status in (proj_svc.STATUS_QUEUED, proj_svc.STATUS_RUNNING)
):
try:
state = job_runner.get_execution_state(execution_name)
except Exception:
state = "unknown"
if state in _EXEC_TERMINAL:
crash_detected["reason"] = (
f"execution state={state}"
)
return
watcher = asyncio.create_task(watch_status())
try:
async for msg in event_bridge.tail_events(
storage, owner_user_id, project_id,
terminal_events=_ANALYSIS_SSE_TERMINAL,
):
if crash_detected["reason"] is not None:
break
ev = msg["event"]
# Skip placement events in the shared log.
if ev.startswith("placement_") or ev.startswith("pcb_"):
continue
yield {
"event": ev,
"data": json.dumps(msg.get("data", {})),
}
if ev in _ANALYSIS_SSE_TERMINAL:
return
# tail_events exited without a terminal event — escape hatch
if crash_detected["reason"] is not None:
# Re-read the current meta so the synthetic event has
# the most up-to-date error information.
cur = proj_svc.get_project(storage, owner_user_id, project_id)
err = (
(cur.pipeline_state or {}).get("error")
if cur and cur.pipeline_state
else crash_detected["reason"]
)
yield {
"event": "pipeline_error",
"data": json.dumps({
"error": err or "worker terminated without writing a terminal event",
"synthetic": True,
}),
}
finally:
watcher.cancel()
try:
await watcher
except (asyncio.CancelledError, Exception):
pass
return EventSourceResponse(
event_generator(),
ping=15,
headers={
"Cache-Control": "no-cache, no-transform",
"X-Accel-Buffering": "no",
"Connection": "keep-alive",
},
)
@router.get("/pipeline/{project_id}/status")
async def status(project_id: str, request: Request):
"""Polling fallback — returns current project state.
Also heals zombie ``running``/``queued`` projects whose event log
already ends with ``pipeline_complete`` (worker died after finishing).
"""
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
healed = proj_svc.heal_if_pipeline_finished(storage, owner_user_id, project_id)
if healed is not None:
meta = healed
return {
"status": meta.status,
"summary": meta.summary,
"pipeline_state": meta.pipeline_state,
"running": meta.status in (proj_svc.STATUS_RUNNING, proj_svc.STATUS_QUEUED),
"placement_status": meta.placement_status,
"placement_state": meta.placement_state,
"placement_running": (meta.placement_status or "draft") in ("queued", "running"),
"pcb_status": meta.pcb_status,
"pcb_state": meta.pcb_state,
"pcb_running": (meta.pcb_status or "draft") in ("queued", "running"),
"healed": healed is not None,
}
# ---------------------------------------------------------------------------
# Placement pipeline (parallel — topology only, no LLM / no credits)
# ---------------------------------------------------------------------------
_PLACEMENT_START_OK = frozenset({"draft", "complete", "error", "cancelled"})
_PLACEMENT_SSE_TERMINAL = frozenset({
"placement_complete",
"placement_error",
"placement_cancelled",
})
@router.post("/pipeline/{project_id}/placement/start", status_code=202)
async def start_placement(project_id: str, request: Request):
"""Enqueue the Placement topology pipeline (free, no analysis status change)."""
from backend.services.placement_pipeline import analysis_busy, placement_busy
from backend.services.pcb_pipeline import pcb_busy
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not meta.has_bom or not meta.has_netlist:
raise HTTPException(400, "Upload BOM and netlist before starting placement")
if analysis_busy(meta):
raise HTTPException(409, "Analysis pipeline is running; wait or cancel it first")
if placement_busy(meta):
raise HTTPException(409, "Placement pipeline already running or queued")
if pcb_busy(meta):
raise HTTPException(409, "PCB review is running; wait or cancel it first")
if (meta.placement_status or "draft") not in _PLACEMENT_START_OK:
raise HTTPException(
409,
f"Cannot start placement from placement_status={meta.placement_status}",
)
proj_svc.update_project(
storage, owner_user_id, project_id,
placement_status="queued",
placement_cancel_requested=False,
placement_state=None,
placement_execution_name=None,
)
# Clear before enqueue so the placement SSE client never stops on a
# leftover analysis ``pipeline_complete`` in the shared event log.
try:
event_bridge.GCSEventBroker(storage, owner_user_id).clear_history(project_id)
except Exception:
logger.exception("failed to clear events before placement start for %s", project_id)
try:
execution_name = job_runner.enqueue_placement_pipeline(
project_id, owner_user_id,
)
except Exception:
logger.exception("enqueue_placement_pipeline failed for %s", project_id)
proj_svc.update_project(
storage, owner_user_id, project_id,
placement_status="error",
placement_state={"error": "Failed to enqueue placement worker"},
)
raise HTTPException(503, "Failed to enqueue placement worker; please retry")
proj_svc.update_project(
storage, owner_user_id, project_id,
placement_execution_name=execution_name,
)
return {"status": "started", "project_id": project_id}
@router.post("/pipeline/{project_id}/placement/cancel")
async def cancel_placement(project_id: str, request: Request):
"""Soft-cancel the Placement pipeline via ``placement_cancel_requested``."""
from backend.services.placement_pipeline import placement_busy
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not placement_busy(meta):
raise HTTPException(
409,
f"Placement is not running (placement_status={meta.placement_status})",
)
proj_svc.update_project(
storage, owner_user_id, project_id,
placement_cancel_requested=True,
)
return {"status": "cancel_requested", "project_id": project_id}
@router.get("/pipeline/{project_id}/placement/plan")
async def get_placement_plan(project_id: str, request: Request):
"""Return ``placement_plan.json`` (F1 topology — no coordinates)."""
storage = get_storage(request)
owner_user_id, _ = await resolve_or_404(request, project_id)
key = f"{proj_svc.project_prefix(owner_user_id, project_id)}/placement_plan.json"
if not storage.exists(key):
# Fallback for plans written only as functional_groups during analysis.
key = f"{proj_svc.project_prefix(owner_user_id, project_id)}/functional_groups.json"
if not storage.exists(key):
raise HTTPException(404, "Placement plan not found — run placement first")
return storage.read_json(key)
@router.get("/pipeline/{project_id}/placement/pack")
async def get_placement_pack(project_id: str, request: Request):
"""Return ``placement_pack.json`` (F2 — skipped without PCB + numeric rules)."""
storage = get_storage(request)
owner_user_id, _ = await resolve_or_404(request, project_id)
key = f"{proj_svc.project_prefix(owner_user_id, project_id)}/placement_pack.json"
if not storage.exists(key):
raise HTTPException(404, "Placement pack not found — run placement first")
return storage.read_json(key)
@router.get("/pipeline/{project_id}/placement/events")
async def placement_events(project_id: str, request: Request):
"""SSE stream for Placement pipeline progress (watches placement_* only)."""
owner_user_id, meta = await resolve_or_404(request, project_id)
storage = get_storage(request)
async def event_generator():
execution_name = meta.placement_execution_name
crash_detected: dict[str, str | None] = {"reason": None}
async def watch_status() -> None:
poll_interval = 2.0
saw_active = (meta.placement_status or "draft") in ("queued", "running")
while True:
await asyncio.sleep(poll_interval)
try:
cur = proj_svc.get_project(storage, owner_user_id, project_id)
except Exception:
continue
if cur is None:
continue
pst = cur.placement_status or "draft"
if pst in ("queued", "running"):
saw_active = True
elif saw_active and pst in ("complete", "error", "cancelled"):
# Worker wrote terminal status; if SSE missed the event,
# surface a synthetic terminal after a short grace.
crash_detected["reason"] = f"placement_status={pst} (terminal)"
return
if execution_name:
try:
state = job_runner.get_execution_state(execution_name)
except Exception:
state = "unknown"
if state in _EXEC_TERMINAL and (
saw_active or pst in ("queued", "running")
):
crash_detected["reason"] = f"execution state={state}"
return
watcher = asyncio.create_task(watch_status())
try:
async for msg in event_bridge.tail_events(
storage, owner_user_id, project_id,
terminal_events=_PLACEMENT_SSE_TERMINAL,
):
if crash_detected["reason"] is not None:
break
ev = msg["event"]
# Skip leftover analysis events if the log was not cleared yet.
if not (
ev.startswith("placement_")
or ev == "heartbeat"
) or ev.startswith("pcb_"):
continue
yield {
"event": ev,
"data": json.dumps(msg.get("data", {})),
}
if ev in _PLACEMENT_SSE_TERMINAL:
return
if crash_detected["reason"] is not None:
cur = proj_svc.get_project(storage, owner_user_id, project_id)
err = None
if cur and cur.placement_state:
err = cur.placement_state.get("error")
yield {
"event": "placement_error",
"data": json.dumps({
"error": err or crash_detected["reason"]
or "placement worker terminated without a terminal event",
"synthetic": True,
}),
}
finally:
watcher.cancel()
try:
await watcher
except (asyncio.CancelledError, Exception):
pass
return EventSourceResponse(
event_generator(),
ping=15,
headers={
"Cache-Control": "no-cache, no-transform",
"X-Accel-Buffering": "no",
"Connection": "keep-alive",
},
)
# ---------------------------------------------------------------------------
# PCB review pipeline (parallel — exam, not auto-place)
# ---------------------------------------------------------------------------
_PCB_START_OK = frozenset({"draft", "complete", "error", "cancelled"})
_PCB_SSE_TERMINAL = frozenset({
"pcb_complete",
"pcb_error",
"pcb_cancelled",
})
@router.post("/pipeline/{project_id}/pcb/start", status_code=202)
async def start_pcb(project_id: str, request: Request):
from backend.services.pcb_pipeline import analysis_busy, pcb_busy, placement_busy
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not meta.has_pcb:
raise HTTPException(400, "Upload a .kicad_pcb before starting PCB review")
if not meta.has_bom or not meta.has_netlist:
raise HTTPException(400, "Upload BOM and netlist before starting PCB review")
if analysis_busy(meta):
raise HTTPException(409, "Analysis pipeline is running; wait or cancel it first")
if placement_busy(meta):
raise HTTPException(409, "Placement pipeline is running; wait or cancel it first")
if pcb_busy(meta):
raise HTTPException(409, "PCB review already running or queued")
if (meta.pcb_status or "draft") not in _PCB_START_OK:
raise HTTPException(
409,
f"Cannot start PCB review from pcb_status={meta.pcb_status}",
)
proj_svc.update_project(
storage, owner_user_id, project_id,
pcb_status="queued",
pcb_cancel_requested=False,
pcb_state=None,
pcb_execution_name=None,
)
try:
event_bridge.GCSEventBroker(storage, owner_user_id).clear_history(project_id)
except Exception:
logger.exception("failed to clear events before PCB start for %s", project_id)
try:
execution_name = job_runner.enqueue_pcb_pipeline(
project_id, owner_user_id,
)
except Exception:
logger.exception("enqueue_pcb_pipeline failed for %s", project_id)
proj_svc.update_project(
storage, owner_user_id, project_id,
pcb_status="error",
pcb_state={"error": "Failed to enqueue PCB worker"},
)
raise HTTPException(503, "Failed to enqueue PCB worker; please retry")
proj_svc.update_project(
storage, owner_user_id, project_id,
pcb_execution_name=execution_name,
)
return {"status": "started", "project_id": project_id}
@router.post("/pipeline/{project_id}/pcb/cancel")
async def cancel_pcb(project_id: str, request: Request):
from backend.services.pcb_pipeline import pcb_busy
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
if not pcb_busy(meta):
raise HTTPException(
409,
f"PCB review is not running (pcb_status={meta.pcb_status})",
)
proj_svc.update_project(
storage, owner_user_id, project_id,
pcb_cancel_requested=True,
)
return {"status": "cancel_requested", "project_id": project_id}
@router.get("/pipeline/{project_id}/pcb/inventory")
async def get_pcb_inventory(project_id: str, request: Request):
storage = get_storage(request)
owner_user_id, _ = await resolve_or_404(request, project_id)
key = f"{proj_svc.project_prefix(owner_user_id, project_id)}/pcb_inventory.json"
if not storage.exists(key):
raise HTTPException(404, "PCB inventory not found — run PCB review first")
return storage.read_json(key)
@router.get("/pipeline/{project_id}/pcb/events")
async def pcb_events(project_id: str, request: Request):
owner_user_id, meta = await resolve_or_404(request, project_id)
storage = get_storage(request)
async def event_generator():
execution_name = meta.pcb_execution_name
crash_detected: dict[str, str | None] = {"reason": None}
async def watch_status() -> None:
poll_interval = 2.0
saw_active = (meta.pcb_status or "draft") in ("queued", "running")
while True:
await asyncio.sleep(poll_interval)
try:
cur = proj_svc.get_project(storage, owner_user_id, project_id)
except Exception:
continue
if cur is None:
continue
pst = cur.pcb_status or "draft"
if pst in ("queued", "running"):
saw_active = True
elif saw_active and pst in ("complete", "error", "cancelled"):
crash_detected["reason"] = f"pcb_status={pst} (terminal)"
return
if execution_name:
try:
state = job_runner.get_execution_state(execution_name)
except Exception:
state = "unknown"
if state in _EXEC_TERMINAL and (
saw_active or pst in ("queued", "running")
):
crash_detected["reason"] = f"execution state={state}"
return
watcher = asyncio.create_task(watch_status())
try:
async for msg in event_bridge.tail_events(
storage, owner_user_id, project_id,
terminal_events=_PCB_SSE_TERMINAL,
):
if crash_detected["reason"] is not None:
break
ev = msg["event"]
if not (ev.startswith("pcb_") or ev == "heartbeat"):
continue
yield {
"event": ev,
"data": json.dumps(msg.get("data", {})),
}
if ev in _PCB_SSE_TERMINAL:
return
if crash_detected["reason"] is not None:
cur = proj_svc.get_project(storage, owner_user_id, project_id)
from backend.services.pcb_pipeline import pcb_sse_terminal_from_status
ev, payload = pcb_sse_terminal_from_status(
cur.pcb_status if cur else None,
cur.pcb_state if cur else None,
crash_detected["reason"],
)
yield {
"event": ev,
"data": json.dumps(payload),
}
finally:
watcher.cancel()
try:
await watcher
except (asyncio.CancelledError, Exception):
pass
return EventSourceResponse(
event_generator(),
ping=15,
headers={
"Cache-Control": "no-cache, no-transform",
"X-Accel-Buffering": "no",
"Connection": "keep-alive",
},
)
# ---------------------------------------------------------------------------
# Helpers
# ---------------------------------------------------------------------------
async def _interrupt_active_pipeline(
storage, user_id: str, project_id: str,
) -> None:
"""Cancel a queued/running worker so a new run can be enqueued.
If the worker is already dead (docker rebuild, OOM) the status can
stay ``running``; force it to cancelled after a short wait.
"""
proj_svc.request_cancel(storage, user_id, project_id)
await _await_terminal(storage, user_id, project_id, timeout_s=10.0)
meta = proj_svc.get_project(storage, user_id, project_id)
if meta is None:
return
if _project_active(meta) and meta.execution_name:
job_runner.cancel_execution(meta.execution_name)
await _await_terminal(storage, user_id, project_id, timeout_s=5.0)
meta = proj_svc.get_project(storage, user_id, project_id) or meta
if _project_active(meta):
try:
proj_svc.transition_status(
storage, user_id, project_id,
from_status={proj_svc.STATUS_RUNNING, proj_svc.STATUS_QUEUED},
to_status=proj_svc.STATUS_CANCELLED,
pipeline_state={"error": "Superseded by reprocess"},
cancel_requested=False,
)
except proj_svc.StatusConflict:
pass
async def _await_terminal(
storage, user_id: str, project_id: str, *, timeout_s: float,
) -> None:
"""Poll project status until it reaches a terminal state or the timeout
elapses. Used by /restart and /regen between cancel and re-enqueue.
"""
poll = 0.5
elapsed = 0.0
while elapsed < timeout_s:
try:
meta = proj_svc.get_project(storage, user_id, project_id)
except Exception:
meta = None
if meta is None:
return
if meta.status in proj_svc.TERMINAL_STATUSES:
return
await asyncio.sleep(poll)
elapsed += poll
@@ -1,20 +1,49 @@
"""Project CRUD and file upload endpoints."""
import json
from pathlib import Path
import httpx
from fastapi import APIRouter, HTTPException, Request, UploadFile
from fastapi import APIRouter, File, Form, HTTPException, Request, UploadFile
from fastapi.responses import JSONResponse, Response
from pydantic import BaseModel
MAX_UPLOAD_BYTES = 30 * 1024 * 1024 # 30 MB
from backend.config import settings
from backend.pinscopex.utils import safe_mpn
from backend.periscopex.utils import safe_mpn
from backend.routers.deps import get_storage, get_user_id, resolve_or_404
from backend.services import projects as proj_svc
router = APIRouter(tags=["projects"])
def _bom_file_to_csv_bytes(path: Path) -> bytes | None:
"""Normalize a BOM found inside a KiCad zip/folder to CSV bytes."""
suffix = path.suffix.lower()
raw = path.read_bytes()
if suffix == ".csv":
return raw
if suffix == ".xlsx":
try:
import csv as csv_mod
import io
import openpyxl
wb = openpyxl.load_workbook(io.BytesIO(raw), read_only=True, data_only=True)
ws = wb.active
out = io.StringIO()
writer = csv_mod.writer(out)
for row in ws.iter_rows(values_only=True):
writer.writerow([("" if c is None else str(c)) for c in row])
wb.close()
return out.getvalue().encode("utf-8")
except Exception:
return None
return None
# --- Library check ---
@@ -34,7 +63,7 @@ async def check_library(req: LibraryCheckRequest, request: Request):
passive_resolved: list[str] = []
if req.passive_mpns:
from backend.pinscopex.resolve_passives import resolve_mpn
from backend.periscopex.resolve_passives import resolve_mpn
passive_resolved = [
mpn for mpn in req.passive_mpns
@@ -59,6 +88,31 @@ async def check_library(req: LibraryCheckRequest, request: Request):
}
@router.get("/library")
async def get_library(request: Request):
"""List chips, passives, discrete specs, and datasheets in the shared library."""
storage = get_storage(request)
return JSONResponse(
content=proj_svc.list_library_catalog(storage),
headers={"Cache-Control": "no-store"},
)
@router.get("/library/datasheet/{mpn:path}")
async def get_library_datasheet(mpn: str, request: Request):
"""Stream a datasheet PDF from the shared library."""
storage = get_storage(request)
key = proj_svc.library_has_datasheet(storage, mpn)
if not key:
raise HTTPException(404, f"Datasheet not in library: {mpn}")
data = storage.read_bytes(key)
return Response(
content=data,
media_type="application/pdf",
headers={"Content-Disposition": f'inline; filename="{mpn}.pdf"'},
)
class CreateProjectRequest(BaseModel):
name: str
@@ -86,7 +140,17 @@ async def list_projects(request: Request):
@router.get("/projects/{project_id}")
async def get_project(project_id: str, request: Request):
_, meta = await resolve_or_404(request, project_id)
storage = get_storage(request)
owner_user_id, meta = await resolve_or_404(request, project_id)
healed = proj_svc.heal_if_pipeline_finished(storage, owner_user_id, project_id)
if healed is not None:
meta = healed
healed_pl = proj_svc.heal_if_placement_stuck(storage, owner_user_id, project_id)
if healed_pl is not None:
meta = healed_pl
healed_pcb = proj_svc.heal_if_pcb_stuck(storage, owner_user_id, project_id)
if healed_pcb is not None:
meta = healed_pcb
return meta.model_dump()
@@ -195,7 +259,7 @@ async def get_netlist_subdesigns(project_id: str, request: Request):
``selected`` list (None = "include everything") so the wizard can render
the picker pre-populated.
"""
from backend.pinscopex.parsers_edif import list_edif_subdesigns
from backend.periscopex.parsers_edif import list_edif_subdesigns
import tempfile, os
storage = get_storage(request)
@@ -299,7 +363,7 @@ async def upload_bom(
import os
import tempfile
from backend.pinscopex.parsers import parse_bom
from backend.periscopex.parsers import parse_bom
try:
tmp = tempfile.NamedTemporaryFile(delete=False, suffix=".csv")
@@ -359,7 +423,7 @@ async def upload_bom(
# simple → datasheet upload). Mirrors the bucket logic in
# services/pipeline.py:_stage_bom_parse so the field is correct after
# either path runs.
from backend.pinscopex.taxonomy import SIMPLE_TYPES, type_for_ref
from backend.periscopex.taxonomy import SIMPLE_TYPES, type_for_ref
ic_mpns: list[str] = []
passive_mpns: list[str] = []
@@ -437,48 +501,99 @@ async def upload_bom(
@router.post("/projects/{project_id}/upload/netlist")
async def upload_netlist(project_id: str, file: UploadFile, request: Request):
async def upload_netlist(
project_id: str,
request: Request,
file: UploadFile | None = File(default=None),
files: list[UploadFile] | None = File(default=None),
paths: str | None = Form(default=None),
):
storage = get_storage(request)
result = proj_svc.resolve_project_access(storage, get_user_id(request), project_id)
if not result:
raise HTTPException(404, "Project not found")
user_id = result[0] # owner_user_id for storage paths
data = await file.read()
if len(data) > MAX_UPLOAD_BYTES:
raise HTTPException(413, f"File too large (max {MAX_UPLOAD_BYTES // 1024 // 1024} MB)")
# Auto-detect PADS vs EDIF from the file's first bytes — users don't pick
# a format, the wizard accepts either.
from backend.pinscopex.parsers import (
detect_netlist_format, parse_netlist_any, validate_netlist,
)
from backend.pinscopex.parsers_edif import list_edif_subdesigns
import tempfile, os
from backend.periscopex.netlist_bundle import materialize_netlist_upload
from backend.periscopex.parsers import parse_netlist_any, validate_netlist
from backend.periscopex.parsers_edif import list_edif_subdesigns
import tempfile
blobs: list[tuple[str, bytes]] = []
seen: set[tuple[str, int]] = set()
uploads = list(files or []) if files else ([file] if file is not None else [])
rels: list[str] | None = None
if paths:
try:
parsed_paths = json.loads(paths)
except json.JSONDecodeError:
parsed_paths = None
if isinstance(parsed_paths, list) and all(isinstance(x, str) for x in parsed_paths):
rels = parsed_paths
for i, uf in enumerate(uploads):
data = await uf.read()
if len(data) > MAX_UPLOAD_BYTES:
raise HTTPException(
413,
f"File too large (max {MAX_UPLOAD_BYTES // 1024 // 1024} MB)",
)
name = (
rels[i]
if rels is not None and i < len(rels)
else (uf.filename or "netlist")
)
mark = (name, len(data))
if mark in seen:
continue
seen.add(mark)
blobs.append((name, data))
if not blobs:
raise HTTPException(400, "No netlist file uploaded")
fmt = detect_netlist_format(data)
suffix = ".edn" if fmt == "edif" else ".asc"
sub_designs: list[dict] = []
bom_saved = False
pcb_saved = False
sheets = 1
try:
tmp = tempfile.NamedTemporaryFile(delete=False, suffix=suffix)
tmp.write(data)
tmp.close()
parts, nets, _ = parse_netlist_any(tmp.name)
# For EDIF, also surface the sub-design layout so the wizard can
# decide whether to prompt the user. Cheap second parse — same file.
if fmt == "edif":
sub_designs = list_edif_subdesigns(tmp.name)
os.unlink(tmp.name)
with tempfile.TemporaryDirectory() as tmp:
parsed = materialize_netlist_upload(blobs, Path(tmp) / "work")
parts, nets, fmt = parse_netlist_any(parsed.root)
if fmt == "edif":
sub_designs = list_edif_subdesigns(parsed.root)
issues = validate_netlist(parts, nets)
if issues:
raise ValueError("; ".join(issues))
root_bytes = parsed.root.read_bytes()
key = proj_svc.save_netlist(storage, user_id, project_id, root_bytes, fmt=fmt)
if fmt == "kicad_sch":
proj_svc.save_companion_sheets(
storage, user_id, project_id, parsed.root, parsed.extra_sch,
)
sheets = 1 + len(parsed.extra_sch)
else:
proj_svc.clear_companion_sheets(storage, user_id, project_id)
if parsed.pcb is not None:
proj_svc.save_pcb(storage, user_id, project_id, parsed.pcb.read_bytes())
pcb_saved = True
if parsed.bom is not None:
bom_bytes = _bom_file_to_csv_bytes(parsed.bom)
if bom_bytes:
proj_svc.save_bom(storage, user_id, project_id, bom_bytes)
proj_svc.update_project(
storage, user_id, project_id,
bom_columns={
"reference": "Reference",
"mpn": "Manufacturer Part Number",
},
)
bom_saved = True
except HTTPException:
raise
except Exception as e:
raise HTTPException(400, f"Invalid netlist: {e}")
issues = validate_netlist(parts, nets)
if issues:
raise HTTPException(400, f"Netlist failed sanity check: {'; '.join(issues)}")
key = proj_svc.save_netlist(storage, user_id, project_id, data, fmt=fmt)
# EDIF: emit a designator→pins preview matching the PADS browser-side
# shape, so the wizard's power-sources step can render its dropdowns
# without re-parsing the (s-expression-heavy) file in the browser.
raise HTTPException(400, f"Netlist failed sanity check: {e}") from e
designator_pins: list[dict] = []
if fmt == "edif":
if fmt != "pads":
designator_pins = _build_designator_pins(parts, nets)
return {
"path": key,
@@ -487,6 +602,40 @@ async def upload_netlist(project_id: str, file: UploadFile, request: Request):
"format": fmt,
"sub_designs": sub_designs,
"designator_pins": designator_pins,
"pcb_saved": pcb_saved,
"bom_saved": bom_saved,
"sheets": sheets,
}
@router.post("/projects/{project_id}/upload/pcb")
async def upload_pcb(project_id: str, file: UploadFile, request: Request):
storage = get_storage(request)
result = proj_svc.resolve_project_access(storage, get_user_id(request), project_id)
if not result:
raise HTTPException(404, "Project not found")
user_id = result[0]
data = await file.read()
if len(data) > MAX_UPLOAD_BYTES:
raise HTTPException(413, f"File too large (max {MAX_UPLOAD_BYTES // 1024 // 1024} MB)")
import tempfile, os
from backend.periscopex.parsers_kicad_pcb import parse_kicad_pcb
tmp = tempfile.NamedTemporaryFile(delete=False, suffix=".kicad_pcb")
try:
tmp.write(data)
tmp.close()
layout = parse_kicad_pcb(tmp.name)
except Exception as e:
raise HTTPException(400, f"Invalid KiCad PCB: {e}")
finally:
os.unlink(tmp.name)
key = proj_svc.save_pcb(storage, user_id, project_id, data)
return {
"path": key,
"footprints": len(layout.footprints),
"nets": len(layout.nets),
"segments": len(layout.segments),
}
@@ -501,7 +650,7 @@ def _build_designator_pins(
(natural sort on refs and on pin numbers) so the wizard's dropdowns
look identical regardless of netlist format.
"""
from backend.pinscopex.utils import natural_sort_key
from backend.periscopex.utils import natural_sort_key
by_ref: dict[str, dict[str, str]] = {ref: {} for ref in parts}
for net_name, pins in nets.items():
@@ -577,27 +726,17 @@ async def list_collaborators(project_id: str, request: Request):
all_user_ids = [owner_user_id] + [c for c in meta.collaborators if c != owner_user_id]
collaborators = []
if settings.use_auth:
async with httpx.AsyncClient() as client:
for uid in all_user_ids:
entry: dict = {"user_id": uid, "name": None, "email": None, "image_url": None,
"role": "owner" if uid == owner_user_id else "collaborator"}
try:
resp = await client.get(
f"https://api.clerk.com/v1/users/{uid}",
headers={"Authorization": f"Bearer {settings.clerk_secret_key}"},
)
if resp.status_code == 200:
clerk = resp.json()
first = clerk.get("first_name") or ""
last = clerk.get("last_name") or ""
entry["name"] = f"{first} {last}".strip() or None
emails = clerk.get("email_addresses", [])
if emails:
entry["email"] = emails[0].get("email_address")
entry["image_url"] = clerk.get("image_url")
except Exception:
pass
collaborators.append(entry)
from backend.services.user_directory import get_user_profile
for uid in all_user_ids:
profile = await get_user_profile(uid)
collaborators.append({
"user_id": uid,
"name": profile.get("name"),
"email": profile.get("email"),
"image_url": profile.get("image_url"),
"role": "owner" if uid == owner_user_id else "collaborator",
})
else:
# Local dev — just return user_ids without enrichment
collaborators = [
@@ -623,22 +762,9 @@ async def add_collaborator(project_id: str, req: AddCollaboratorRequest, request
if not settings.use_auth:
raise HTTPException(400, "Collaboration requires authentication to be enabled")
# Look up user by email via Clerk Backend API
async with httpx.AsyncClient() as client:
resp = await client.get(
"https://api.clerk.com/v1/users",
params={"email_address": [req.email]},
headers={"Authorization": f"Bearer {settings.clerk_secret_key}"},
)
if resp.status_code != 200:
raise HTTPException(502, "Failed to look up user")
from backend.services.user_directory import find_user_id_by_email, get_user_profile
users = resp.json()
if not users:
raise HTTPException(404, "No user found with that email")
clerk_user = users[0]
collab_user_id = clerk_user.get("id")
collab_user_id = await find_user_id_by_email(req.email)
if not collab_user_id:
raise HTTPException(404, "No user found with that email")
@@ -652,15 +778,12 @@ async def add_collaborator(project_id: str, req: AddCollaboratorRequest, request
proj_svc.add_collaborator(storage, user_id, project_id, collab_user_id)
# Return the collaborator info
first = clerk_user.get("first_name") or ""
last = clerk_user.get("last_name") or ""
emails = clerk_user.get("email_addresses", [])
profile = await get_user_profile(collab_user_id)
return {
"user_id": collab_user_id,
"name": f"{first} {last}".strip() or None,
"email": emails[0].get("email_address") if emails else None,
"image_url": clerk_user.get("image_url"),
"name": profile.get("name"),
"email": profile.get("email"),
"image_url": profile.get("image_url"),
}
@@ -722,31 +845,41 @@ async def make_collaborator_owner(
return {"ok": True, "owner_user_id": collaborator_user_id}
# --- DigiKey auto-fetch ---
# --- Datasheet auto-fetch ---
@router.get("/digikey/datasheet")
async def fetch_digikey_datasheet(mpn: str, request: Request):
"""Fetch a datasheet PDF from DigiKey for the given MPN.
@router.get("/datasheets/fetch")
async def fetch_auto_datasheet(mpn: str, request: Request, lcsc: str | None = None):
"""Fetch a datasheet PDF for the given MPN.
Returns the PDF bytes on success, or a JSON error on failure.
Tries LCSC (no API key), manufacturer PDF URLs, optional Mouser, then DigiKey
if configured. ``/api/digikey/datasheet`` is kept as an alias.
"""
from backend.services.digikey import fetch_datasheet
from backend.services.datasheet_finder import find_datasheet
result = await fetch_datasheet(mpn)
result = await find_datasheet(mpn, lcsc_id=lcsc)
if not result.ok:
# 404, not 502: "DigiKey has no exact match" / "the manufacturer CDN
# blocked the download" is an expected per-MPN miss the wizard handles
# (it shows a "fetch failed — upload manually" row), not a broken
# gateway. 502 made a board full of exotic parts read as a server
# meltdown in the browser console.
return JSONResponse(
status_code=404,
content={"detail": result.error or "Failed to fetch datasheet", "url": result.url},
content={
"detail": result.error or "Failed to fetch datasheet",
"url": result.url,
"urls": result.suggested_urls or ([result.url] if result.url else []),
"source": result.source,
},
)
headers = {"Content-Disposition": f'attachment; filename="{mpn}.pdf"'}
if result.url:
headers["X-Datasheet-Url"] = result.url
if result.source:
headers["X-Datasheet-Source"] = result.source
try:
proj_svc.remember_datasheet(
get_storage(request), mpn, result.pdf_bytes, extra_mpns=result.alias_mpns,
)
except Exception:
pass
return Response(content=result.pdf_bytes, media_type="application/pdf", headers=headers)
@@ -773,12 +906,10 @@ async def auto_resolve(req: AutoResolveRequest, request: Request):
import asyncio
from backend.services.digikey import fetch_params
from backend.services.extraction import auto_resolve_specs
from backend.services.datasheet_extract import CatalogResolveMiss, auto_resolve_specs
if not settings.use_digikey:
raise HTTPException(400, "DigiKey API not configured")
if not settings.anthropic_api_key:
raise HTTPException(400, "Anthropic API key not configured")
storage = get_storage(request)
sem = asyncio.Semaphore(10)
@@ -805,14 +936,18 @@ async def auto_resolve(req: AutoResolveRequest, request: Request):
if not result.ok or not result.params:
return {"mpn": item.mpn, "status": "failed", "error": result.error or "No parameters"}
# Map params to taxonomy via Haiku
model = await auto_resolve_specs(
mpn=item.mpn,
digikey_params=result.params.parameters,
digikey_category=result.params.category,
digikey_description=result.params.description,
component_type=item.component_type,
)
# Map params: catalog parse first, LLM only if needed.
try:
model = await auto_resolve_specs(
mpn=item.mpn,
digikey_params=result.params.parameters,
digikey_category=result.params.category,
digikey_description=result.params.description,
component_type=item.component_type,
use_llm=settings.has_llm_credentials(),
)
except CatalogResolveMiss as e:
return {"mpn": item.mpn, "status": "failed", "error": str(e)}
# Save to library
storage.write_json(lib_key, model.model_dump())
@@ -861,7 +996,7 @@ async def lcsc_resolve_passive(
from backend.services.api_logs import ApiLogger
from backend.services.billing_hook import InsufficientCredits, get_billing
from backend.services.extraction import auto_resolve_specs
from backend.services.datasheet_extract import auto_resolve_specs
storage = get_storage(request)
result = proj_svc.resolve_project_access(storage, get_user_id(request), project_id)
@@ -928,8 +1063,26 @@ async def lcsc_resolve_passive(
"cannot auto-resolve",
)
from backend.services.passive_from_distributor import specs_from_lcsc_payload
catalog_model = specs_from_lcsc_payload(mpn, payload)
if catalog_model is not None:
storage.write_json(project_model_key, catalog_model.model_dump())
proj_svc.save_to_library(
storage, project_model_key, "passives", f"{safe}.json",
)
return {
"mpn": mpn,
"safe_mpn": safe,
"model": catalog_model.model_dump(),
"cached": False,
"lcsc_id": req.lcsc_id,
}
# Catalog miss (ferrite, odd text): LLM path, charged if the logger has tokens.
# Download taxonomy to a temp dir so auto_resolve_specs can read/write it.
# Mirrors the PipelineWorkspace pattern: pinscopex operates on local paths.
# Mirrors the PipelineWorkspace pattern: periscopex operates on local paths.
api_logger = ApiLogger()
with tempfile.TemporaryDirectory() as tmpdir:
tax_dir = Path(tmpdir) / "taxonomy"
@@ -3,19 +3,36 @@
from __future__ import annotations
import json
import logging
import re
import uuid
from datetime import datetime, timezone
from fastapi import APIRouter, HTTPException, Request
from fastapi.responses import JSONResponse
from fastapi.responses import JSONResponse, Response
from pydantic import BaseModel
from backend.pinscopex.utils import safe_mpn
from backend.periscopex.finding_engine import (
apply_decisions,
complete_findings,
decision_from_review,
sort_findings,
upsert_decision,
)
from backend.periscopex.models import Finding
from backend.periscopex.review_workflow import (
ReviewError,
apply_review_state,
build_eco,
eco_csv,
sign_report,
)
from backend.periscopex.utils import safe_mpn
from backend.routers.deps import get_storage, get_user_id, resolve_or_404
from backend.services import projects as proj_svc
router = APIRouter(tags=["reports"])
log = logging.getLogger(__name__)
# Allow alphanumeric, dash, underscore, dot, colon, forward-slash, plus, hash, space
_SAFE_MPN = re.compile(r"^[A-Za-z0-9][A-Za-z0-9_\-\.:/ +#,()]*$")
@@ -32,9 +49,44 @@ async def get_report(project_id: str, request: Request):
storage = get_storage(request)
owner_user_id, _ = await resolve_or_404(request, project_id)
prefix = proj_svc.project_prefix(owner_user_id, project_id)
key = f"{prefix}/report.json"
if not storage.exists(key):
schema_key = f"{prefix}/report.json"
pcb_key = f"{prefix}/pcb_report.json"
schema = storage.read_json(schema_key) if storage.exists(schema_key) else None
pcb = storage.read_json(pcb_key) if storage.exists(pcb_key) else None
from backend.periscopex.pcb_checks import merge_schema_pcb_reports
merged = merge_schema_pcb_reports(schema, pcb)
if merged is None:
raise HTTPException(404, "Report not found — run the pipeline first")
findings = _findings_from_report(merged)
try:
complete_findings(findings)
except Exception:
log.exception("complete_findings failed while serving report %s", project_id)
sort_findings(findings)
dec_key = f"{prefix}/decisions.json"
if storage.exists(dec_key):
try:
apply_decisions(findings, storage.read_json(dec_key) or [])
except Exception:
pass
merged["findings"] = [json.loads(f.model_dump_json()) for f in findings]
summary = {"ERROR": 0, "WARNING": 0, "INFO": 0, "total": len(findings)}
for f in findings:
if f.status in summary:
summary[f.status] += 1
merged["summary"] = summary
return JSONResponse(merged)
@router.get("/report/{project_id}/cad-bridge")
async def get_cad_bridge(project_id: str, request: Request):
storage = get_storage(request)
owner_user_id, _ = await resolve_or_404(request, project_id)
prefix = proj_svc.project_prefix(owner_user_id, project_id)
key = f"{prefix}/periscope-findings.json"
if not storage.exists(key):
raise HTTPException(404, "CAD bridge not found — run the pipeline first")
return JSONResponse(storage.read_json(key))
@@ -89,8 +141,113 @@ async def delete_comment(project_id: str, comment_id: str, request: Request):
comment_list.pop(i)
if not comment_list:
del comments[finding_id]
storage.write_json(key, report_data)
return JSONResponse({"ok": True})
storage.write_json(key, report_data)
return JSONResponse({"ok": True})
class ReviewBody(BaseModel):
state: str
reason: str = ""
user_name: str = ""
def _load_report(storage, owner_user_id: str, project_id: str) -> tuple[str, dict]:
prefix = proj_svc.project_prefix(owner_user_id, project_id)
key = f"{prefix}/report.json"
if not storage.exists(key):
raise HTTPException(404, "Report not found")
return key, storage.read_json(key)
def _findings_from_report(report_data: dict) -> list[Finding]:
out: list[Finding] = []
for raw in report_data.get("findings") or []:
try:
out.append(Finding.model_validate(raw))
except Exception:
log.warning("Skipping malformed finding in report", exc_info=True)
return out
@router.put("/report/{project_id}/findings/{finding_id}/review")
async def put_finding_review(project_id: str, finding_id: str, body: ReviewBody, request: Request):
storage = get_storage(request)
owner_user_id, _ = await resolve_or_404(request, project_id)
user_id = get_user_id(request)
key, report_data = _load_report(storage, owner_user_id, project_id)
prefix = proj_svc.project_prefix(owner_user_id, project_id)
findings = _findings_from_report(report_data)
ids = {f.finding_id for f in findings if f.finding_id}
if finding_id not in ids:
pcb_key = f"{prefix}/pcb_report.json"
if storage.exists(pcb_key):
pcb_data = storage.read_json(pcb_key)
pcb_findings = _findings_from_report(pcb_data)
if finding_id in {f.finding_id for f in pcb_findings if f.finding_id}:
key, report_data, findings = pcb_key, pcb_data, pcb_findings
ids = {f.finding_id for f in findings if f.finding_id}
if finding_id not in ids:
raise HTTPException(404, "Finding not found")
try:
states = apply_review_state(
report_data.get("review_states") or {},
finding_id,
state=body.state,
reason=body.reason,
user_id=user_id,
user_name=body.user_name,
)
except ReviewError as exc:
raise HTTPException(400, str(exc)) from exc
report_data["review_states"] = states
storage.write_json(key, report_data)
if body.state in {"wontfix", "false_positive"}:
found = next(
(f for f in _findings_from_report(report_data) if f.finding_id == finding_id),
None,
)
if found is not None:
dec = decision_from_review(
found, state=body.state, reason=body.reason, user_id=user_id,
)
if dec is not None:
prefix = proj_svc.project_prefix(owner_user_id, project_id)
dkey = f"{prefix}/decisions.json"
existing = storage.read_json(dkey) if storage.exists(dkey) else []
if not isinstance(existing, list):
existing = []
storage.write_json(dkey, upsert_decision(existing, dec))
return JSONResponse(states.get(finding_id) or {"state": "open", "reason": ""})
@router.get("/report/{project_id}/eco.json")
async def get_eco_json(project_id: str, request: Request):
storage = get_storage(request)
owner_user_id, _ = await resolve_or_404(request, project_id)
_, report_data = _load_report(storage, owner_user_id, project_id)
items = build_eco(_findings_from_report(report_data), report_data.get("review_states") or {})
return JSONResponse({"items": items})
@router.get("/report/{project_id}/eco.csv")
async def get_eco_csv(project_id: str, request: Request):
storage = get_storage(request)
owner_user_id, _ = await resolve_or_404(request, project_id)
_, report_data = _load_report(storage, owner_user_id, project_id)
items = build_eco(_findings_from_report(report_data), report_data.get("review_states") or {})
return Response(eco_csv(items), media_type="text/csv")
@router.post("/report/{project_id}/sign")
async def post_sign_report(project_id: str, request: Request):
storage = get_storage(request)
owner_user_id, _ = await resolve_or_404(request, project_id)
user_id = get_user_id(request)
key, report_data = _load_report(storage, owner_user_id, project_id)
release = sign_report(report_data, user_id=user_id)
report_data["release"] = release
storage.write_json(key, report_data)
return JSONResponse(release)
raise HTTPException(404, "Comment not found")
@@ -138,6 +295,19 @@ async def get_project_logs(project_id: str, request: Request):
return JSONResponse([])
text = storage.read_text(key)
entries = [json.loads(line) for line in text.strip().split("\n") if line.strip()]
from backend.services.llm.pricing import cost_for_entry
for entry in entries:
if any(
entry.get(k)
for k in (
"input_tokens",
"output_tokens",
"cache_read_input_tokens",
"cache_creation_input_tokens",
)
):
entry["cost_usd"] = round(cost_for_entry(entry), 6)
return JSONResponse(entries)
@@ -0,0 +1,3 @@
from pkgutil import extend_path
__path__ = extend_path(__path__, __name__)
@@ -22,7 +22,7 @@ class ApiLogEntry(BaseModel):
stage: str # pintable | rules | pattern | validation | ...
identifier: str # MPN or component designator
model: str
provider: str = "anthropic" # anthropic | gemini
provider: str = "deepseek" # deepseek | anthropic | gemini
input_tokens: int
output_tokens: int
cache_creation_input_tokens: int = 0
@@ -42,7 +42,7 @@ class ApiLogEntry(BaseModel):
@dataclass
class CallMeta:
"""Metadata returned alongside every Claude API call result."""
"""Metadata returned alongside every LLM API call result."""
input_tokens: int
output_tokens: int
cache_creation_input_tokens: int
@@ -104,3 +104,27 @@ class ApiLogger:
key = f"{project_prefix(user_id, project_id)}/api_logs.jsonl"
storage.write_text(key, text)
def cache_stats_by_stage(entries: list[dict]) -> dict[str, dict]:
"""Roll up prompt-cache hit rate per pipeline stage.
Returns ``{stage: {calls, input_tokens, cache_read_tokens, hit_ratio}}``.
``hit_ratio`` is cache_read / input when input > 0, else 0.
"""
out: dict[str, dict] = {}
for e in entries:
stage = str(e.get("stage") or "unknown")
bucket = out.setdefault(
stage,
{"calls": 0, "input_tokens": 0, "cache_read_tokens": 0, "hit_ratio": 0.0},
)
bucket["calls"] += 1
bucket["input_tokens"] += int(e.get("input_tokens") or 0)
bucket["cache_read_tokens"] += int(e.get("cache_read_input_tokens") or 0)
for bucket in out.values():
inp = bucket["input_tokens"]
bucket["hit_ratio"] = (
round(bucket["cache_read_tokens"] / inp, 4) if inp else 0.0
)
return out
@@ -27,10 +27,10 @@ from typing import Any, Literal
from pydantic import BaseModel
from backend.config import settings
from backend.pinscopex.parsers import parse_bom
from backend.pinscopex.resolve_passives import resolve_mpn
from backend.pinscopex.taxonomy import SIMPLE_TYPES, type_for_ref
from backend.pinscopex.utils import safe_mpn
from backend.periscopex.parsers import parse_bom
from backend.periscopex.resolve_passives import resolve_mpn
from backend.periscopex.taxonomy import SIMPLE_TYPES, type_for_ref
from backend.periscopex.utils import safe_mpn
from backend.services import projects as proj_svc
from backend.services.billing_hook import get_billing
from backend.services.llm.pricing import CACHE_RATES, PRICING
@@ -125,9 +125,9 @@ def estimate_stage_cost_usd(stage: str) -> float:
settings_stage = str(base["settings_stage"])
provider = settings.provider_for_stage(settings_stage)
model = settings.model_for_stage(settings_stage)
table = PRICING.get(provider) or PRICING["anthropic"]
table = PRICING.get(provider) or PRICING["deepseek"]
rates = table.get(model, table["default"])
cache = CACHE_RATES.get(provider, CACHE_RATES["anthropic"])
cache = CACHE_RATES.get(provider, CACHE_RATES["deepseek"])
return (
int(base["input"]) * rates["input"]
+ int(base["output"]) * rates["output"]
@@ -16,11 +16,12 @@ from __future__ import annotations
import hashlib
from pathlib import Path
from backend.pinscopex.utils import safe_mpn
from backend.periscopex.utils import safe_mpn
from backend.services.storage import StorageBackend
BLOB_PREFIX = "library/datasheets/blobs/"
REF_PREFIX = "library/datasheets/refs/"
ALIAS_KEY = "library/datasheets/aliases.json"
# ---------------------------------------------------------------------------
@@ -73,7 +74,7 @@ def store_datasheet(
bk = blob_key(md5)
if not storage.exists(bk):
storage.upload_from_local(local_path, bk)
storage.write_json(ref_key(mpn), {"hash": md5, "blob_key": bk})
storage.write_json(ref_key(mpn), {"hash": md5, "blob_key": bk, "mpn": mpn})
return bk
@@ -81,28 +82,96 @@ def store_datasheet_bytes(
storage: StorageBackend,
data: bytes,
mpn: str,
extra_mpns: list[str] | None = None,
) -> str:
"""Same as :func:`store_datasheet` but from in-memory bytes."""
"""Same as :func:`store_datasheet` but from in-memory bytes.
``extra_mpns`` are additional catalog/orderable codes that should point
at the same blob (family MPN vs ``-N16R16V``).
"""
md5 = compute_md5_from_bytes(data)
bk = blob_key(md5)
if not storage.exists(bk):
storage.write_bytes(bk, data)
storage.write_json(ref_key(mpn), {"hash": md5, "blob_key": bk})
names = [mpn, *(extra_mpns or [])]
seen: set[str] = set()
for name in names:
name = (name or "").strip()
if not name:
continue
key = name.upper()
if key in seen:
continue
seen.add(key)
storage.write_json(ref_key(name), {"hash": md5, "blob_key": bk, "mpn": name})
_record_aliases(storage, mpn, extra_mpns or [])
return bk
def _record_aliases(storage: StorageBackend, mpn: str, extra_mpns: list[str]) -> None:
from backend.services.datasheet_finder import _alnum, _MIN_FAMILY_LEN
names = [mpn, *extra_mpns]
compact = {n: _alnum(n) for n in names if n and n.strip()}
if len(set(compact.values())) < 2 and not extra_mpns:
return
table: dict[str, str] = {}
if storage.exists(ALIAS_KEY):
raw = storage.read_json(ALIAS_KEY)
table = dict(raw.get("aliases") or {})
canonical = extra_mpns[0].strip() if extra_mpns else mpn
for name, key in compact.items():
if len(key) >= _MIN_FAMILY_LEN:
table[key] = canonical
storage.write_json(ALIAS_KEY, {"aliases": table})
def resolve_datasheet(storage: StorageBackend, mpn: str) -> str | None:
"""Look up the blob key for an MPN via its ref file.
Returns the blob key if the ref exists *and* the blob exists, else None.
Tries spelling variants, then the shared alias table (family MPN
orderable code stored in the library).
"""
rk = ref_key(mpn)
if not storage.exists(rk):
from backend.services.datasheet_finder import (
_MIN_FAMILY_LEN,
_alnum,
mpn_query_variants,
)
def _from_ref(name: str) -> str | None:
rk = ref_key(name)
if not storage.exists(rk):
return None
ref = storage.read_json(rk)
bk = ref.get("blob_key")
if bk and storage.exists(bk):
return bk
return None
ref = storage.read_json(rk)
bk = ref.get("blob_key")
if bk and storage.exists(bk):
return bk
for name in mpn_query_variants(mpn) or [mpn]:
hit = _from_ref(name)
if hit:
return hit
if not storage.exists(ALIAS_KEY):
return None
table = (storage.read_json(ALIAS_KEY) or {}).get("aliases") or {}
want = _alnum(mpn)
if not want:
return None
target = table.get(want)
if target:
hit = _from_ref(target)
if hit:
return hit
if len(want) >= _MIN_FAMILY_LEN:
for key, target in table.items():
if key.startswith(want) or (
want.startswith(key) and len(key) >= _MIN_FAMILY_LEN
):
hit = _from_ref(target)
if hit:
return hit
return None
@@ -25,7 +25,7 @@ import time
from datetime import datetime, timezone
from typing import Awaitable, Callable
from backend.pinscopex.models import Finding
from backend.periscopex.models import Finding
from backend.services.api_logs import ApiLogger
from backend.services.llm import Message, TextBlock
from backend.services.llm.factory import call_with_fallback
@@ -247,23 +247,16 @@ def _build_deduped(
new_why = "Unverified: " + new_why
try:
result.append(Finding(
finding_id=canon.finding_id,
designator=canon.designator,
mpn=canon.mpn,
aspect=canon.aspect,
finding=str(group.get("finding") or canon.finding),
why=new_why,
source_page=group.get("source_page", canon.source_page),
source_quote=canon.source_quote,
source_designator=canon.source_designator,
status=final_status,
recommendation=str(
result.append(canon.model_copy(update={
"finding": str(group.get("finding") or canon.finding),
"why": new_why,
"source_page": group.get("source_page", canon.source_page),
"status": final_status,
"recommendation": str(
group.get("recommendation") or canon.recommendation
),
reference=str(group.get("reference") or canon.reference),
source=canon.source,
))
"reference": str(group.get("reference") or canon.reference),
}))
except Exception:
log.exception("dedupe: failed to build merged Finding")
return None
@@ -12,6 +12,12 @@ from dataclasses import dataclass, field
import httpx
from backend.config import settings
from backend.services.datasheet_finder import (
_alnum,
mpn_catalog_match,
mpn_matches,
mpn_query_variants,
)
logger = logging.getLogger(__name__)
@@ -103,31 +109,58 @@ async def _keyword_search(mpn: str) -> list[dict]:
def _find_product(mpn: str, products: list[dict]) -> dict | None:
"""Find the product whose MPN exactly matches ``mpn`` (case/space-insensitive).
"""Pick a DigiKey product for ``mpn``.
Returns None when no result has a matching MPN. We intentionally do NOT
fall back to ``products[0]`` keyword-search hits without an MPN match
are usually for a different part, and silently returning them has
polluted the library with wrong specs for non-MPN tokens like ``10uF``.
Prefers punctuation-insensitive equality, then packing suffixes, then a
longer orderable code that starts with the BOM MPN. Does not fall back
to ``products[0]``. Tries BOM spelling variants (underscore, reel, extra
description after an em dash).
"""
if not products:
return None
mpn_upper = mpn.upper().replace(" ", "")
for product in products:
if _get_mpn(product).upper().replace(" ", "") == mpn_upper:
return product
for query in mpn_query_variants(mpn):
hit = _find_product_one(query, products)
if hit:
return hit
return None
async def _search_mpn(mpn: str) -> str | None:
"""Search DigiKey for an MPN and return the primary datasheet URL, or None."""
products = await _keyword_search(mpn)
product = _find_product(mpn, products)
if not product:
return None
url = _get_ds_url(product)
return url or None
def _find_product_one(mpn: str, products: list[dict]) -> dict | None:
exact = None
loose = None
family = None
want = _alnum(mpn)
for product in products:
cand = _get_mpn(product)
if not cand:
continue
got = _alnum(cand)
if got == want:
exact = product
break
if loose is None and mpn_matches(mpn, cand):
loose = product
elif family is None and mpn_catalog_match(mpn, cand):
family = product
return exact or loose or family
async def _search_mpn(mpn: str) -> tuple[str | None, str | None]:
"""Search DigiKey; return (datasheet_url, catalog_mpn)."""
tried: set[str] = set()
for keyword in mpn_query_variants(mpn):
key = keyword.upper()
if key in tried:
continue
tried.add(key)
products = await _keyword_search(keyword)
product = _find_product(mpn, products)
if not product:
continue
url = _get_ds_url(product)
if url:
return url, _get_mpn(product) or None
return None, None
# ---------------------------------------------------------------------------
@@ -172,11 +205,13 @@ class DatasheetFetchResult:
pdf_bytes: bytes | None = None,
error: str | None = None,
url: str | None = None,
catalog_mpn: str | None = None,
):
self.mpn = mpn
self.pdf_bytes = pdf_bytes
self.error = error
self.url = url # DigiKey datasheet URL (present even when PDF download fails)
self.url = url
self.catalog_mpn = catalog_mpn
@property
def ok(self) -> bool:
@@ -195,7 +230,7 @@ async def fetch_datasheet(mpn: str) -> DatasheetFetchResult:
return DatasheetFetchResult(mpn, error="DigiKey API not configured")
try:
url = await _search_mpn(mpn)
url, catalog_mpn = await _search_mpn(mpn)
except httpx.HTTPStatusError as e:
logger.warning("DigiKey search failed for %s: %s", mpn, e)
return DatasheetFetchResult(mpn, error=f"DigiKey search failed ({e.response.status_code})")
@@ -211,20 +246,27 @@ async def fetch_datasheet(mpn: str) -> DatasheetFetchResult:
pdf_bytes = await _download_pdf(url)
except httpx.HTTPStatusError as e:
logger.warning("Datasheet download blocked for %s (%s): %s", mpn, url, e)
return DatasheetFetchResult(mpn, error=f"Download blocked ({e.response.status_code})", url=url)
return DatasheetFetchResult(
mpn, error=f"Download blocked ({e.response.status_code})", url=url,
catalog_mpn=catalog_mpn,
)
except ValueError as e:
logger.warning("Invalid PDF for %s (%s): %s", mpn, url, e)
return DatasheetFetchResult(mpn, error=str(e), url=url)
return DatasheetFetchResult(mpn, error=str(e), url=url, catalog_mpn=catalog_mpn)
except httpx.TimeoutException:
logger.warning("Datasheet download timed out for %s (%s)", mpn, url)
return DatasheetFetchResult(mpn, error="Download timed out", url=url)
return DatasheetFetchResult(mpn, error="Download timed out", url=url, catalog_mpn=catalog_mpn)
except Exception as e:
msg = str(e) or type(e).__name__
logger.warning("Datasheet download failed for %s (%s): %s", mpn, url, msg)
return DatasheetFetchResult(mpn, error=f"Download failed: {msg}", url=url)
return DatasheetFetchResult(
mpn, error=f"Download failed: {msg}", url=url, catalog_mpn=catalog_mpn,
)
logger.info("Fetched datasheet for %s (%d KB)", mpn, len(pdf_bytes) // 1024)
return DatasheetFetchResult(mpn, pdf_bytes=pdf_bytes, url=url)
return DatasheetFetchResult(
mpn, pdf_bytes=pdf_bytes, url=url, catalog_mpn=catalog_mpn,
)
# ---------------------------------------------------------------------------
@@ -300,7 +342,16 @@ async def fetch_params(mpn: str) -> ParamsFetchResult:
return ParamsFetchResult(mpn, error="DigiKey API not configured")
try:
products = await _keyword_search(mpn)
products: list[dict] = []
tried: set[str] = set()
for keyword in mpn_query_variants(mpn):
key = keyword.upper()
if key in tried:
continue
tried.add(key)
products = await _keyword_search(keyword)
if _find_product(mpn, products):
break
except httpx.HTTPStatusError as e:
logger.warning("DigiKey search failed for %s: %s", mpn, e)
return ParamsFetchResult(mpn, error=f"DigiKey search failed ({e.response.status_code})")
@@ -174,7 +174,7 @@ def _render_report_email(
<table width="100%" cellpadding="0" cellspacing="0" border="0">
<tr>
<td style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 20px; font-weight: 700; color: #ffffff; letter-spacing: -0.025em;">
Pinscope
Periscope
</td>
<td align="right" style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 12px; color: #9ca3af; text-transform: uppercase; letter-spacing: 0.05em;">
Report Ready
@@ -247,7 +247,7 @@ def _render_report_email(
<tr><td style="background-color: #f9fafb; padding: 20px 32px; border-top: 1px solid #e5e7eb;">
<table width="100%" cellpadding="0" cellspacing="0" border="0">
<tr><td style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 12px; color: #9ca3af;">
Pinscope &middot; Agentic schematic validation
Periscope &middot; Agentic schematic validation
</td></tr>
</table>
</td></tr>
@@ -292,7 +292,7 @@ def _render_pipeline_started_email(
<table width="100%" cellpadding="0" cellspacing="0" border="0">
<tr>
<td style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 20px; font-weight: 700; color: #ffffff; letter-spacing: -0.025em;">
Pinscope
Periscope
</td>
<td align="right" style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 12px; color: #9ca3af; text-transform: uppercase; letter-spacing: 0.05em;">
Pipeline Started
@@ -398,7 +398,7 @@ def _render_pipeline_started_email(
<tr><td style="background-color: #f9fafb; padding: 20px 32px; border-top: 1px solid #e5e7eb;">
<table width="100%" cellpadding="0" cellspacing="0" border="0">
<tr><td style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 12px; color: #9ca3af;">
Pinscope &middot; Agentic schematic validation
Periscope &middot; Agentic schematic validation
</td></tr>
</table>
</td></tr>
@@ -448,7 +448,7 @@ def _build_report_message(
) -> MIMEMultipart:
"""Build the report-ready email message."""
msg = MIMEMultipart("alternative")
msg["From"] = f"Pinscope <{settings.email_sender}>"
msg["From"] = f"Periscope <{settings.email_sender}>"
msg["To"] = to_email
msg["Subject"] = f"Report ready: {project_name}"
@@ -460,7 +460,7 @@ def _build_report_message(
infos = summary.get("INFO", 0)
text_body = (
f"Hi {recipient_name},\n\n"
f"Your Pinscope validation report for \"{project_name}\" is ready.\n\n"
f"Your Periscope validation report for \"{project_name}\" is ready.\n\n"
f"Summary: {total} findings — {errors} errors, {warnings} warnings, {infos} info\n\n"
f"View the report: {report_url}\n"
)
@@ -485,7 +485,7 @@ def _build_paused_message(
credits_needed_low: float,
) -> MIMEMultipart:
msg = MIMEMultipart("alternative")
msg["From"] = f"Pinscope <{settings.email_sender}>"
msg["From"] = f"Periscope <{settings.email_sender}>"
msg["To"] = to_email
msg["Subject"] = f"Paused: {project_name} is waiting for credits"
@@ -495,7 +495,7 @@ def _build_paused_message(
text_body = (
f"Hi {recipient_name},\n\n"
f"Your Pinscope run for \"{project_name}\" paused because you're low on credits.\n\n"
f"Your Periscope run for \"{project_name}\" paused because you're low on credits.\n\n"
f"{last_line}\n{stage_line}\n\n"
f"Current balance: {balance:.2f} credits\n"
f"Credits needed to finish (est): {credits_needed_low:.2f}+\n\n"
@@ -510,13 +510,13 @@ def _build_topup_failed_message(
amount_usd: float, reason: str,
) -> MIMEMultipart:
msg = MIMEMultipart("alternative")
msg["From"] = f"Pinscope <{settings.email_sender}>"
msg["From"] = f"Periscope <{settings.email_sender}>"
msg["To"] = to_email
msg["Subject"] = "Pinscope: auto top-up failed"
msg["Subject"] = "Periscope: auto top-up failed"
manage_url = f"{settings.email_frontend_url}/credits"
text_body = (
f"Hi {recipient_name},\n\n"
f"We tried to auto top-up your Pinscope balance with "
f"We tried to auto top-up your Periscope balance with "
f"${amount_usd:.2f} but the charge failed.\n\n"
f"Reason: {reason}\n\n"
f"Auto top-up has been disabled until you update your payment method. "
@@ -549,13 +549,13 @@ def _build_low_balance_message(
to_email: str, recipient_name: str, balance: float, threshold: float,
) -> MIMEMultipart:
msg = MIMEMultipart("alternative")
msg["From"] = f"Pinscope <{settings.email_sender}>"
msg["From"] = f"Periscope <{settings.email_sender}>"
msg["To"] = to_email
msg["Subject"] = "Pinscope: low credit balance"
msg["Subject"] = "Periscope: low credit balance"
credits_url = f"{settings.email_frontend_url}/credits"
text_body = (
f"Hi {recipient_name},\n\n"
f"Your Pinscope credit balance has dropped to "
f"Your Periscope credit balance has dropped to "
f"{balance:.2f} credits (below your threshold of {threshold:.2f}).\n\n"
f"Top up here so your pipelines don't pause mid-run: {credits_url}\n"
)
@@ -691,10 +691,10 @@ async def send_test_email(to_email: str) -> dict:
result["step"] = "send"
msg = MIMEMultipart("alternative")
msg["From"] = f"Pinscope <{settings.email_sender}>"
msg["From"] = f"Periscope <{settings.email_sender}>"
msg["To"] = to_email
msg["Subject"] = "Pinscope email test"
msg.attach(MIMEText(f"Test email from Pinscope. Sender: {settings.email_sender}. Creds: {cred_type}", "plain"))
msg["Subject"] = "Periscope email test"
msg.attach(MIMEText(f"Test email from Periscope. Sender: {settings.email_sender}. Creds: {cred_type}", "plain"))
import asyncio as _asyncio
raw = base64.urlsafe_b64encode(msg.as_bytes()).decode("ascii")
@@ -741,7 +741,7 @@ async def send_pipeline_started_email(
# Build message
msg = MIMEMultipart("alternative")
msg["From"] = f"Pinscope <{settings.email_sender}>"
msg["From"] = f"Periscope <{settings.email_sender}>"
msg["To"] = to_email
msg["Subject"] = f"Pipeline started: {project_name} ({num_components} components)"
@@ -866,7 +866,7 @@ def _render_feedback_email(
<table width="100%" cellpadding="0" cellspacing="0" border="0">
<tr>
<td style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 20px; font-weight: 700; color: #ffffff; letter-spacing: -0.025em;">
Pinscope
Periscope
</td>
<td align="right" style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 12px; color: #9ca3af; text-transform: uppercase; letter-spacing: 0.05em;">
Feedback Received
@@ -953,7 +953,7 @@ def _render_feedback_email(
<tr><td style="background-color: #f9fafb; padding: 20px 32px; border-top: 1px solid #e5e7eb;">
<table width="100%" cellpadding="0" cellspacing="0" border="0">
<tr><td style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 12px; color: #9ca3af;">
Pinscope &middot; Agentic schematic validation
Periscope &middot; Agentic schematic validation
</td></tr>
</table>
</td></tr>
@@ -1006,7 +1006,7 @@ async def send_feedback_received_email(
to_email = settings.email_admin_notify
subject_ctx = project_name or "general"
msg = MIMEMultipart("alternative")
msg["From"] = f"Pinscope <{settings.email_sender}>"
msg["From"] = f"Periscope <{settings.email_sender}>"
msg["To"] = to_email
msg["Subject"] = f"Feedback ({type_label}): {subject_ctx}"
@@ -1095,7 +1095,7 @@ def _render_feedback_reply_email(
<table width="100%" cellpadding="0" cellspacing="0" border="0">
<tr>
<td style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 20px; font-weight: 700; color: #ffffff; letter-spacing: -0.025em;">
Pinscope
Periscope
</td>
<td align="right" style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 12px; color: #9ca3af; text-transform: uppercase; letter-spacing: 0.05em;">
New Reply
@@ -1113,7 +1113,7 @@ def _render_feedback_reply_email(
Hi {_esc(recipient_first_name)},
</td></tr>
<tr><td style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 15px; color: #374151; padding-bottom: 18px;">
The Pinscope team just replied to your feedback.
The Periscope team just replied to your feedback.
</td></tr>
{context_line}
@@ -1124,7 +1124,7 @@ def _render_feedback_reply_email(
<tr><td style="padding: 18px 22px;">
<table width="100%" cellpadding="0" cellspacing="0" border="0">
<tr><td style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 11px; font-weight: 600; color: #047857; text-transform: uppercase; letter-spacing: 0.05em; padding-bottom: 10px;">
Pinscope team
Periscope team
</td></tr>
<tr><td style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 15px; color: #064e3b; line-height: 1.55; white-space: pre-wrap;">
{_esc(reply_text)}
@@ -1155,12 +1155,12 @@ def _render_feedback_reply_email(
<!--[if mso]>
<v:roundrect xmlns:v="urn:schemas-microsoft-com:vml" href="{feedback_url}" style="height:48px;v-text-anchor:middle;width:240px;" arcsize="14%" fillcolor="#3b82f6" stroke="f">
<w:anchorlock/>
<center style="color:#ffffff;font-family:sans-serif;font-size:15px;font-weight:bold;">View in Pinscope &rarr;</center>
<center style="color:#ffffff;font-family:sans-serif;font-size:15px;font-weight:bold;">View in Periscope &rarr;</center>
</v:roundrect>
<![endif]-->
<!--[if !mso]><!-->
<a href="{feedback_url}" target="_blank" style="display: inline-block; background-color: #3b82f6; color: #ffffff; font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 15px; font-weight: 600; text-decoration: none; padding: 12px 32px; border-radius: 8px; letter-spacing: -0.01em;">
View in Pinscope &rarr;
View in Periscope &rarr;
</a>
<!--<![endif]-->
</td></tr>
@@ -1170,7 +1170,7 @@ def _render_feedback_reply_email(
Thank you so much for taking the time to share your feedback we truly value it.
</td></tr>
<tr><td style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 15px; color: #374151; padding-top: 6px;">
The Pinscope team
The Periscope team
</td></tr>
</table>
@@ -1180,7 +1180,7 @@ def _render_feedback_reply_email(
<tr><td style="background-color: #f9fafb; padding: 20px 32px; border-top: 1px solid #e5e7eb;">
<table width="100%" cellpadding="0" cellspacing="0" border="0">
<tr><td style="font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif; font-size: 12px; color: #9ca3af;">
Pinscope &middot; Agentic schematic validation
Periscope &middot; Agentic schematic validation
</td></tr>
</table>
</td></tr>
@@ -1203,7 +1203,7 @@ async def send_feedback_reply_email(
finding_designator: str | None = None,
finding_mpn: str | None = None,
) -> None:
"""Notify the original submitter that the Pinscope team replied. Fire-and-forget."""
"""Notify the original submitter that the Periscope team replied. Fire-and-forget."""
if not settings.use_email:
return
@@ -1229,15 +1229,15 @@ async def send_feedback_reply_email(
first_name = full_name.split()[0] if full_name else "there"
msg = MIMEMultipart("alternative")
msg["From"] = f"Pinscope <{settings.email_sender}>"
msg["From"] = f"Periscope <{settings.email_sender}>"
msg["To"] = to_email
msg["Subject"] = "The Pinscope team replied to your feedback"
msg["Subject"] = "The Periscope team replied to your feedback"
# Plain text fallback
text_lines = [
f"Hi {first_name},",
"",
"The Pinscope team just replied to your feedback.",
"The Periscope team just replied to your feedback.",
"",
"— Reply —",
reply_text,
@@ -1245,10 +1245,10 @@ async def send_feedback_reply_email(
"— Your original message —",
original_message,
"",
f"View in Pinscope: {settings.email_frontend_url}/feedback",
f"View in Periscope: {settings.email_frontend_url}/feedback",
"",
"Thank you so much for taking the time to share your feedback — we truly value it.",
"— The Pinscope team",
"— The Periscope team",
]
msg.attach(MIMEText("\n".join(text_lines), "plain"))
@@ -46,6 +46,12 @@ TERMINAL_EVENTS = frozenset({
"pipeline_error",
"pipeline_cancelled",
"pipeline_paused",
"placement_complete",
"placement_error",
"placement_cancelled",
"pcb_complete",
"pcb_error",
"pcb_cancelled",
})
@@ -131,19 +137,19 @@ async def tail_events(
*,
poll_interval: float = 0.5,
heartbeat_interval: float = 15.0,
terminal_events: frozenset[str] | None = None,
) -> AsyncIterator[dict]:
"""Yield events from the GCS-backed event log in order.
Stops yielding after a terminal event (``pipeline_complete``,
``pipeline_error``, ``pipeline_cancelled``). Emits a
``{"event": "heartbeat", "data": {}}`` synthetic event roughly every
``heartbeat_interval`` seconds when no real events arrive, matching
the behaviour of the in-memory broker's SSE loop.
Stops yielding after a terminal event (default ``TERMINAL_EVENTS``).
Emits a ``{"event": "heartbeat", "data": {}}`` synthetic event roughly
every ``heartbeat_interval`` seconds when no real events arrive.
The caller is expected to handle disconnects/cancellations and
secondary terminal-detection (``meta.status``, Cloud Run execution
state) on top of this iterator.
"""
stop_on = terminal_events if terminal_events is not None else TERMINAL_EVENTS
prefix = _events_prefix(user_id, project_id)
last_seen_key: str | None = None
last_emit_ts = 0.0
@@ -166,7 +172,7 @@ async def tail_events(
emitted_any = True
last_seen_key = key
last_emit_ts = asyncio.get_event_loop().time()
if msg.get("event") in TERMINAL_EVENTS:
if msg.get("event") in stop_on:
return
now = asyncio.get_event_loop().time()
@@ -1,4 +1,7 @@
"""Async datasheet extraction using Claude API.
"""Inherited PinScope datasheet extraction (fallback, not the live pipeline).
Live path since 2.40.0: ``backend.services.datasheet_extract``. This file
stays in periscope/dependency/ do not empty-delete it.
Ports the extraction steps from run_pipeline.py to async:
- extract_pintable: Pin table + package info + taxonomy assignment
@@ -15,8 +18,8 @@ import tempfile
import time
from pathlib import Path
from backend.pinscopex.utils import safe_mpn
from backend.pinscopex.models import (
from backend.periscopex.utils import safe_mpn
from backend.periscopex.models import (
CapacitorSpecs,
ComponentConstraints,
ComponentModel,
@@ -25,7 +28,7 @@ from backend.pinscopex.models import (
NetType,
SimpleComponentSpecs,
)
from backend.pinscopex.taxonomy import (
from backend.periscopex.taxonomy import (
TAXONOMY_DIR,
add_subtype,
format_for_prompt,
@@ -55,7 +58,7 @@ from backend.services.llm import (
PINTABLE_TOOL = {
"name": "save_pintable",
"description": "Save the extracted pin table, package info, and component subtype.",
"description": "Save the extracted pin table, package info, absolute-maximum ratings, and component subtype.",
"input_schema": {
"type": "object",
"properties": {
@@ -94,6 +97,105 @@ PINTABLE_TOOL = {
"required": ["number", "name"],
},
},
"absolute_maximum_ratings": {
"type": "array",
"description": (
"Rows from the Absolute Maximum Ratings table: supplies, "
"pin voltages, current, temperature. For ESD/TVS ICs also "
"include Electrical Characteristics Vrwm (signed min/max) "
"and a polarity/topology row (bidirectional vs "
"unidirectional / back-to-back). Skip IEC/HBM kV rows. "
"Empty array if the table is unreadable."
),
"items": {
"type": "object",
"properties": {
"parameter": {
"type": "string",
"description": "As printed, e.g. 'VCC', 'VIN', 'Storage temperature'",
},
"min": {"type": ["number", "null"]},
"max": {"type": ["number", "null"]},
"unit": {"type": "string", "description": "V, mA, °C, …"},
"source_page": {
"type": "integer",
"description": "1-based datasheet page of this row",
},
},
"required": ["parameter", "unit", "source_page"],
},
},
"internal_features": {
"type": "object",
"description": "Optional block-diagram extras. Omit or empty if not shown.",
"properties": {
"esd_clamp_pins": {"type": "array", "items": {"type": "string"}},
"pullup_pins": {"type": "array", "items": {"type": "string"}},
"analog_switch": {"type": "array", "items": {"type": "string"}},
},
},
"layout_rules": {
"type": "array",
"description": (
"PCB layout constraints from typical-application / PCB layout pages. "
"kind: decoupling_proximity | thermal_via | keepout | length_match | "
"impedance | max_length | spacing | ref_plane | si_via | layer | "
"series_resistor | return_path | si | emi | common_mode | shield. "
"Fields: pin, cap_value_hint, max_distance_mm (ONLY if the PDF states a "
"number — never invent 3 mm/JEDEC), same_layer (bool), min_via_count, "
"max_via_count, z0_ohm, zdiff_ohm, tolerance_pct, z_min_ohm, z_max_ohm, "
"topology, min_spacing_mm, value_ohms, ref_plane, parameter, "
"net_class (required for SI kinds: usb2 | usb3 | eth_mdi | rgmii | "
"sgmii | ddr3 | hdmi | pcie | lvds — never map EN/CHIP_PU RC onto "
"USB), note, source_page. Empty array if the PDF has no layout guidance."
),
"items": {
"type": "object",
"properties": {
"kind": {
"type": "string",
"enum": [
"decoupling_proximity",
"thermal_via",
"keepout",
"length_match",
"impedance",
"max_length",
"spacing",
"ref_plane",
"si_via",
"layer",
"series_resistor",
"return_path",
"si",
"emi",
"common_mode",
"shield",
],
},
"pin": {"type": ["string", "null"]},
"cap_value_hint": {"type": ["string", "null"]},
"max_distance_mm": {"type": ["number", "null"]},
"same_layer": {"type": ["boolean", "null"]},
"min_via_count": {"type": ["integer", "null"]},
"max_via_count": {"type": ["integer", "null"]},
"net_class": {"type": ["string", "null"]},
"note": {"type": ["string", "null"]},
"source_page": {"type": ["integer", "null"]},
"z0_ohm": {"type": ["number", "null"]},
"zdiff_ohm": {"type": ["number", "null"]},
"tolerance_pct": {"type": ["number", "null"]},
"z_min_ohm": {"type": ["number", "null"]},
"z_max_ohm": {"type": ["number", "null"]},
"topology": {"type": ["string", "null"]},
"min_spacing_mm": {"type": ["number", "null"]},
"value_ohms": {"type": ["number", "null"]},
"ref_plane": {"type": ["string", "null"]},
"parameter": {"type": ["string", "null"]},
},
"required": ["kind"],
},
},
},
"required": ["component_subtype", "component_subtype_description", "package_info", "pintable"],
},
@@ -208,14 +310,22 @@ SPECS_TOOL = {
# ---------------------------------------------------------------------------
_MAX_PDF_PAGES = 90
_MAX_PDF_PAGES = 120
log = logging.getLogger(__name__)
# Keywords used to find relevant pages for each extraction stage.
# Include PCB / typical-application pages so layout_rules can be extracted
# when large datasheets are trimmed to ≤_MAX_PDF_PAGES.
_PINTABLE_KEYWORDS = re.compile(
r"pin\s*(out|diagram|configuration|description|assignment|function|name|table|map)"
r"|ball\s*map|package\s*(pin|drawing|outline)|signal\s+description",
r"|ball\s*map|package\s*(pin|drawing|outline)|signal\s+description"
r"|absolute\s+maximum|recommended\s+operating|electrical\s+characteristics"
r"|ordering\s+information|device\s+information"
r"|pcb\s+layout|layout\s+(guideline|recommendation|consideration|hint)"
r"|typical\s+application|application\s+(circuit|schematic|information|note)"
r"|reference\s+design|decoupling|bypass\s+capacitor|thermal\s+via"
r"|land\s+pattern|keep[\s\-]?out|place\s+(close|near|within)",
re.IGNORECASE,
)
@@ -280,6 +390,63 @@ def _to_tool(d: dict) -> ToolSchema:
)
def _coerce_abs_max(raw: object) -> list[dict]:
"""Keep well-formed abs-max rows; drop garbage rather than failing extraction."""
if not isinstance(raw, list):
return []
out: list[dict] = []
for row in raw:
if not isinstance(row, dict):
continue
parameter = str(row.get("parameter") or "").strip()
unit = str(row.get("unit") or "").strip()
page = row.get("source_page")
if not parameter or not unit:
continue
try:
source_page = int(page)
except (TypeError, ValueError):
continue
if source_page < 1:
continue
def _num(v: object) -> float | None:
if v is None or v == "":
return None
try:
return float(v)
except (TypeError, ValueError):
return None
out.append({
"parameter": parameter,
"min": _num(row.get("min")),
"max": _num(row.get("max")),
"unit": unit,
"source_page": source_page,
})
return out
def _coerce_layout_rules(raw: object) -> list[dict]:
from backend.periscopex.layout_rules import validate_layout_rules
rows, _errors = validate_layout_rules(raw if isinstance(raw, list) else [])
return rows
def _coerce_internal_features(raw: object):
from backend.periscopex.models import InternalFeatures
if not isinstance(raw, dict):
return None
try:
feat = InternalFeatures.model_validate(raw)
except Exception:
return None
if not feat.esd_clamp_pins and not feat.pullup_pins and not feat.analog_switch:
return None
return feat
_GENERATE_SPECS_TOOL = {
"name": "save_specs_schema",
"description": "Save the standardized parameter schema for a component type.",
@@ -479,7 +646,7 @@ async def extract_pintable(
taxonomy = format_for_prompt("ic", tax_dir)
trimmed = _select_pages(pdf_path, _PINTABLE_KEYWORDS)
skill_id, version = settings.get_skill("extract-pintable")
skill_id, version = settings.get_skill_or_none("extract-pintable")
system = (
f"DYNAMIC CONTEXT FOR THIS EXTRACTION:\n"
f"MPN: {mpn}\n\n"
@@ -493,7 +660,12 @@ async def extract_pintable(
skill_name="extract-pintable",
model=model,
system=system,
user_text=f"Extract pin table and package info for MPN: {mpn}",
user_text=(
f"Extract pin table, package info, absolute maximum ratings, "
f"and layout_rules (scan PCB layout / typical application / "
f"thermal pages; max_distance_mm only if the PDF states mm) "
f"for MPN: {mpn}"
),
pdf_path=trimmed,
output_tool=_to_tool(PINTABLE_TOOL),
)
@@ -548,8 +720,12 @@ async def extract_pintable(
component_subtype=subtype,
package_info=result["package_info"],
pintable=result["pintable"],
absolute_maximum_ratings=[],
absolute_maximum_ratings=_coerce_abs_max(
result.get("absolute_maximum_ratings") or [],
),
rules=[],
internal_features=_coerce_internal_features(result.get("internal_features")),
layout_rules=_coerce_layout_rules(result.get("layout_rules")),
)
output_dir.mkdir(parents=True, exist_ok=True)
@@ -576,7 +752,7 @@ async def extract_pattern(
tax_dir = taxonomy_dir or settings.taxonomy_dir
taxonomy = format_for_prompt("passive", tax_dir)
skill_id, version = settings.get_skill("extract-pattern")
skill_id, version = settings.get_skill_or_none("extract-pattern")
system = (
f"DYNAMIC CONTEXT FOR THIS EXTRACTION:\n\n"
f"EXISTING PASSIVE TAXONOMY SUBTYPES:\n{taxonomy}\n\n"
@@ -665,7 +841,7 @@ async def extract_specs(
subtypes_text = format_for_prompt(component_type, tax_dir)
specs_text = format_specs_for_prompt(component_type, tax_dir)
skill_id, version = settings.get_skill("extract-specs")
skill_id, version = settings.get_skill_or_none("extract-specs")
system = (
f"DYNAMIC CONTEXT FOR THIS EXTRACTION:\n"
f"MPN: {mpn}\n"
@@ -798,6 +974,10 @@ Call save_resolved_specs with the mapped values.\
"""
class CatalogResolveMiss(RuntimeError):
"""Distributor params did not parse and ``use_llm`` was false."""
async def auto_resolve_specs(
mpn: str,
digikey_params: list[dict[str, str]],
@@ -806,13 +986,35 @@ async def auto_resolve_specs(
component_type: str,
taxonomy_dir: Path | None = None,
api_logger: ApiLogger | None = None,
*,
use_llm: bool = True,
) -> ComponentModel:
"""Map DigiKey product parameters to taxonomy specs using a lightweight model.
"""Map DigiKey/LCSC product parameters to taxonomy specs.
Returns a ComponentModel ready to persist. Raises on failure.
Passives with a parseable value skip the model. ``use_llm=False`` returns
only that catalog parse or raises :class:`CatalogResolveMiss`.
"""
tax_dir = taxonomy_dir or settings.taxonomy_dir
from backend.services.passive_from_distributor import specs_from_distributor
if component_type == "passive":
direct = specs_from_distributor(
mpn=mpn,
params=digikey_params,
category=digikey_category,
description=digikey_description,
)
if direct is not None:
import logging as _logging
_logging.getLogger(__name__).info(
"Auto-resolved %s from distributor params (no LLM)", mpn,
)
return direct
if not use_llm:
raise CatalogResolveMiss(f"No catalog specs for {mpn}")
# Auto-generate type-level specs if none exist
if not has_specs(component_type, tax_dir):
try:
@@ -916,7 +1118,7 @@ async def auto_resolve_specs(
# Convert passive SimpleComponentSpecs to typed models
if component_type == "passive":
from backend.pinscopex.resolve_passives import simple_to_typed_passive_specs
from backend.periscopex.resolve_passives import simple_to_typed_passive_specs
typed = simple_to_typed_passive_specs(specs)
return ComponentModel(mpn=mpn, specs=typed)
@@ -931,7 +1133,7 @@ _PASSIVE_PREFIX_HINT: dict[str, str] = {
"C": "capacitor — populate value_farads",
"R": "resistor — populate value_ohms",
"L": "inductor — populate value_henries",
"FB": "ferrite bead — populate value_ohms (impedance)",
"FB": "ferrite bead — populate impedance_ohm (Z at test frequency, not henries)",
}
_VALUE_RESOLVE_SYSTEM = """\
@@ -952,8 +1154,9 @@ CRITICAL RULES:
dielectric, package, or power rating. Never invent these.
- Populate EXACTLY TWO fields: ``value_formatted`` (a normalized human-readable
string) and the matching primary numeric field
(``value_farads`` / ``value_ohms`` / ``value_henries``). Leave every other
parameter out (do not include a null entry omit the key entirely).
(``value_farads`` / ``value_ohms`` / ``value_henries`` / ``impedance_ohm``
for ferrite beads). Leave every other parameter out (do not include a null
entry omit the key entirely). Never invent henries for a ferrite bead.
- Express numeric values with SPICE multiplier prefixes and units
(u=1e-6, n=1e-9, p=1e-12, k=1e3, M=1e6). Examples: ``10uF``, ``4.7kohm``, ``100nH``.
- Pick the GENERIC parent subtype e.g. ``passive.capacitor``, ``passive.resistor``,
@@ -987,6 +1190,20 @@ async def resolve_from_value(
"""
tax_dir = taxonomy_dir or settings.taxonomy_dir
from backend.services.passive_from_value import (
is_placeholder_value,
specs_from_bom_value,
)
parsed = specs_from_bom_value(mpn, value, ref_prefix)
if parsed is not None:
logging.getLogger(__name__).info(
"Resolved from value %s=%r without LLM", mpn, value,
)
return parsed
if is_placeholder_value(value):
raise ValueError(f"Placeholder BOM value {value!r} for {mpn}")
if not has_specs(component_type, tax_dir):
try:
await _generate_type_specs(component_type, tax_dir, api_logger=api_logger)
@@ -1073,7 +1290,7 @@ async def resolve_from_value(
)
if component_type == "passive":
from backend.pinscopex.resolve_passives import simple_to_typed_passive_specs
from backend.periscopex.resolve_passives import simple_to_typed_passive_specs
typed = simple_to_typed_passive_specs(specs)
return ComponentModel(mpn=mpn, specs=typed)
@@ -16,6 +16,7 @@ import os
import subprocess
import sys
import threading
from pathlib import Path
from typing import Literal
from backend.config import settings
@@ -57,8 +58,11 @@ def _spawn_local_subprocess(
free: bool,
mode: str = "run",
regen_stages: list[str] | None = None,
proc_key: str | None = None,
execution_name: str | None = None,
) -> str:
name = _local_execution_name(project_id)
key = proc_key or project_id
name = execution_name or _local_execution_name(project_id)
env = os.environ.copy()
env["PROJECT_ID"] = project_id
env["USER_ID"] = user_id
@@ -71,36 +75,70 @@ def _spawn_local_subprocess(
proc = subprocess.Popen(
[sys.executable, "-m", "backend.pipeline_worker"],
env=env,
# Inherit stdout/stderr so logs appear in the dev terminal
stdin=subprocess.DEVNULL,
)
_write_pid(key, proc.pid)
with _local_procs_lock:
# Reap any old proc for the same project before tracking the new one.
prior = _local_procs.pop(project_id, None)
# Reap any old proc for the same key before tracking the new one.
prior = _local_procs.pop(key, None)
if prior is not None:
try:
prior.terminate()
except Exception:
pass
_local_procs[project_id] = proc
logger.info("dev: spawned worker subprocess pid=%s for %s", proc.pid, project_id)
_local_procs[key] = proc
logger.info(
"dev: spawned worker subprocess pid=%s for %s mode=%s",
proc.pid, project_id, mode,
)
return name
def _pid_path(project_id: str) -> Path:
return settings.data_dir / "workers" / f"{project_id}.pid"
def _write_pid(project_id: str, pid: int) -> None:
path = _pid_path(project_id)
path.parent.mkdir(parents=True, exist_ok=True)
path.write_text(str(pid))
def _pid_alive(project_id: str) -> bool | None:
"""True/False if a pid file exists; None if there is no file."""
path = _pid_path(project_id)
if not path.is_file():
return None
try:
pid = int(path.read_text().strip())
except ValueError:
return False
try:
os.kill(pid, 0)
except OSError:
return False
return True
def _local_state(project_id: str) -> ExecutionState:
with _local_procs_lock:
proc = _local_procs.get(project_id)
if proc is None:
return "unknown"
rc = proc.poll()
if rc is None:
if proc is not None:
rc = proc.poll()
if rc is None:
return "running"
if rc == 0:
return "succeeded"
if rc < 0:
# Negative return = terminated by signal
return "cancelled"
return "failed"
alive = _pid_alive(project_id)
if alive is True:
return "running"
if rc == 0:
return "succeeded"
if rc < 0:
# Negative return = terminated by signal
return "cancelled"
return "failed"
if alive is False:
return "failed"
return "unknown"
def _local_cancel(project_id: str) -> None:
@@ -309,6 +347,12 @@ def get_execution_state(execution_name: str | None) -> ExecutionState:
if execution_name.startswith("local/projects/"):
project_id = execution_name.split("/", 2)[-1]
return _local_state(project_id)
if execution_name.startswith("local/placement/"):
project_id = execution_name.split("/", 2)[-1]
return _local_state(f"placement:{project_id}")
if execution_name.startswith("local/pcb/"):
project_id = execution_name.split("/", 2)[-1]
return _local_state(f"pcb:{project_id}")
return _cloud_run_state(execution_name)
@@ -324,4 +368,38 @@ def cancel_execution(execution_name: str | None) -> None:
project_id = execution_name.split("/", 2)[-1]
_local_cancel(project_id)
return
if execution_name.startswith("local/placement/"):
project_id = execution_name.split("/", 2)[-1]
_local_cancel(f"placement:{project_id}")
return
if execution_name.startswith("local/pcb/"):
project_id = execution_name.split("/", 2)[-1]
_local_cancel(f"pcb:{project_id}")
return
_cloud_run_cancel(execution_name)
def enqueue_placement_pipeline(project_id: str, user_id: str) -> str:
"""Dispatch the parallel Placement pipeline (topology plan, no LLM)."""
if use_cloud_run_jobs():
return _enqueue_cloud_run_job(
project_id, user_id, resume=False, free=True, mode="placement",
)
return _spawn_local_subprocess(
project_id, user_id, resume=False, free=True, mode="placement",
proc_key=f"placement:{project_id}",
execution_name=f"local/placement/{project_id}",
)
def enqueue_pcb_pipeline(project_id: str, user_id: str) -> str:
"""Dispatch the parallel PCB review pipeline (deterministic + AI exam)."""
if use_cloud_run_jobs():
return _enqueue_cloud_run_job(
project_id, user_id, resume=False, free=False, mode="pcb",
)
return _spawn_local_subprocess(
project_id, user_id, resume=False, free=False, mode="pcb",
proc_key=f"pcb:{project_id}",
execution_name=f"local/pcb/{project_id}",
)
@@ -1,10 +1,13 @@
"""Provider-agnostic LLM client layer.
All Claude API calls in the backend route through this package via the
``LLMProvider`` interface. The default provider is Anthropic; per-stage
All model calls in the backend route through this package via the
``LLMProvider`` interface. The default provider is DeepSeek; per-stage
overrides via ``Settings.provider_*`` env vars route specific stages to
other providers (currently Anthropic + Gemini).
Anthropic or Gemini if those keys are configured.
"""
from pkgutil import extend_path
__path__ = extend_path(__path__, __name__)
from backend.services.llm.factory import call_with_fallback, get_provider
from backend.services.llm.types import (
@@ -269,7 +269,22 @@ class AnthropicProvider(LLMProvider):
runs ``validate.py`` server-side via code_execution, and voluntarily
calls ``output_tool`` once it has well-formed data.
"""
try:\n skill_id, version = settings.get_skill(skill_name)\n except Exception:\n skill_id, version = None, None
try:
skill_id, version = settings.get_skill(skill_name)
except Exception:
skill_id, version = None, None
if not skill_id:
from backend.services.llm.local_skill import run_skill_locally
return await run_skill_locally(
self,
skill_name=skill_name,
model=model,
system=system,
user_text=user_text,
pdf_path=pdf_path,
output_tool=output_tool,
)
# Build initial user content
user_content: list[dict] = []
@@ -92,9 +92,7 @@ class LLMProvider(Protocol):
) -> tuple[dict, "Completion"]:
"""Execute a managed Skill and return (forced-tool input, Completion).
Anthropic uses Console Skills (skill_id + container + code_execution
beta). Gemini raises ``NotImplementedError`` there is no
Gemini-managed-Skill equivalent today; if you want a Gemini path for
skill-style extraction, inline the SKILL.md content as ``system`` and
run validation locally."""
DeepSeek and Gemini inline ``skills/<name>/SKILL.md`` and run
``validate.py`` locally. Anthropic uses Console Skills when a
skill_id is configured, otherwise the same local path."""
...
@@ -15,13 +15,18 @@ log = logging.getLogger(__name__)
T = TypeVar("T")
@lru_cache(maxsize=4)
@lru_cache(maxsize=8)
def get_provider_by_name(name: str) -> LLMProvider:
"""Return a singleton provider instance for ``name`` ("anthropic" |
"gemini"). Used by :func:`get_provider` and :func:`call_with_fallback`."""
"""Return a singleton provider instance for ``name`` ("deepseek" |
"anthropic" | "gemini"). Used by :func:`get_provider` and
:func:`call_with_fallback`."""
if name == "deepseek":
from backend.services.llm.deepseek_provider import DeepSeekProvider
return DeepSeekProvider()
if name == "anthropic":
from backend.services.llm.anthropic_provider import AnthropicProvider
return AnthropicProvider()
log.warning("Anthropic is disabled — using DeepSeek instead")
from backend.services.llm.deepseek_provider import DeepSeekProvider
return DeepSeekProvider()
if name == "gemini":
from backend.services.llm.gemini_provider import GeminiProvider
return GeminiProvider()
@@ -371,9 +371,13 @@ class GeminiProvider(LLMProvider):
pdf_path: str | None,
output_tool: ToolSchema,
) -> tuple[dict, Completion]:
raise NotImplementedError(
f"GeminiProvider.run_skill() not implemented (skill={skill_name!r}). "
f"Anthropic Console Skills have no Gemini equivalent. To migrate "
f"this skill to Gemini, inline its SKILL.md as the system prompt "
f"and run validate.py locally."
from backend.services.llm.local_skill import run_skill_locally
return await run_skill_locally(
self,
skill_name=skill_name,
model=model,
system=system,
user_text=user_text,
pdf_path=pdf_path,
output_tool=output_tool,
)
@@ -8,10 +8,26 @@ from __future__ import annotations
# Per-million-token USD rates. Source-of-truth links:
# DeepSeek: https://api-docs.deepseek.com/quick_start/pricing
# Anthropic: https://docs.anthropic.com/en/docs/about-claude/pricing
# Google: https://ai.google.dev/pricing
# Last updated: 2026-07-01
# Last updated: 2026-09-10
#
# DeepSeek: peak weekday rates (conservative). Off-peak is 50% of these.
# Cache-hit input is billed via CACHE_RATES["deepseek"]["read"] as a
# multiplier on the miss input rate (0.006 / 0.30 = 0.02).
_DEEPSEEK_FLASH = {"input": 0.30, "output": 1.20}
_DEEPSEEK_PRO = {"input": 1.32, "output": 3.96}
PRICING: dict[str, dict[str, dict[str, float]]] = {
"deepseek": {
"deepseek-flash": _DEEPSEEK_FLASH,
"deepseek-v4-flash": _DEEPSEEK_FLASH,
"deepseek-v4-flash-vision-exp": _DEEPSEEK_FLASH,
# Billed at Pro until 2026-09-14 04:00 UTC, then routed to Flash.
"deepseek-v4-pro": _DEEPSEEK_PRO,
"default": _DEEPSEEK_FLASH,
},
"anthropic": {
"claude-opus-4-6": {"input": 5.00, "output": 25.00},
"claude-opus-4-5": {"input": 5.00, "output": 25.00},
@@ -54,6 +70,7 @@ PRICING: dict[str, dict[str, dict[str, float]]] = {
# normal input pass)
# read: cost when a cached prefix is *reused* (much cheaper)
CACHE_RATES: dict[str, dict[str, float]] = {
"deepseek": {"create": 1.00, "read": 0.02},
"anthropic": {"create": 1.25, "read": 0.10},
"gemini": {"create": 1.00, "read": 0.25},
}
@@ -62,10 +79,10 @@ CACHE_RATES: dict[str, dict[str, float]] = {
def cost_for_entry(entry: dict) -> float:
"""USD cost for an api_logs entry. Reads ``provider`` (default
``anthropic`` for legacy entries) and ``model`` to pick rates."""
provider = entry.get("provider") or "anthropic"
table = PRICING.get(provider) or PRICING["anthropic"]
provider = entry.get("provider") or "deepseek"
table = PRICING.get(provider) or PRICING["deepseek"]
rates = table.get(entry.get("model", ""), table["default"])
cache_rates = CACHE_RATES.get(provider, CACHE_RATES["anthropic"])
cache_rates = CACHE_RATES.get(provider, CACHE_RATES["deepseek"])
input_rate = rates["input"]
output_rate = rates["output"]
return (
@@ -26,12 +26,17 @@ class TextBlock:
# this turn is fed back into the conversation, or the next call 400s.
# Anthropic: always None.
thought_signature: bytes | None = None
# DeepSeek thinking-mode: assistant ``reasoning_content`` that must be
# replayed on the next turn or the API returns 400.
reasoning_content: str | None = None
@dataclass
class PdfBlock:
"""Inline PDF document. Provider encodes as base64 (Anthropic) or
inline_data (Gemini) and applies caching policy if cacheable=True."""
"""Inline PDF document. Anthropic encodes as base64, Gemini as
inline_data. DeepSeek does not accept PDFs natively the provider
converts the file to extracted text (and page images on a vision
model) before sending."""
path: Path
cacheable: bool = False
@@ -45,6 +50,7 @@ class ToolCall:
# Same purpose as TextBlock.thought_signature — Gemini 3 attaches one
# to every function_call part when thinking is on. Round-trip required.
thought_signature: bytes | None = None
reasoning_content: str | None = None
@dataclass
@@ -23,7 +23,7 @@ from datetime import datetime, timezone
from typing import Awaitable, Callable
from backend.config import settings
from backend.pinscopex.models import Finding
from backend.periscopex.models import Finding
from backend.services.api_logs import ApiLogger
from backend.services.llm import Message, TextBlock
from backend.services.llm.factory import call_with_fallback
@@ -394,20 +394,15 @@ def _build_normalized(
new_why = "Unverified: " + new_why
try:
result.append(Finding(
finding_id=canon.finding_id,
designator=canon.designator,
mpn=canon.mpn,
aspect=canon.aspect,
finding=str(entry.get("finding") or canon.finding),
why=new_why,
source_page=entry.get("source_page", canon.source_page),
source_quote=str(entry.get("source_quote") or canon.source_quote),
source_designator=canon.source_designator,
status=final_status,
recommendation=str(entry.get("recommendation") or canon.recommendation),
reference=str(entry.get("reference") or canon.reference),
))
result.append(canon.model_copy(update={
"finding": str(entry.get("finding") or canon.finding),
"why": new_why,
"source_page": entry.get("source_page", canon.source_page),
"source_quote": str(entry.get("source_quote") or canon.source_quote),
"status": final_status,
"recommendation": str(entry.get("recommendation") or canon.recommendation),
"reference": str(entry.get("reference") or canon.reference),
}))
except Exception:
log.exception("normalize: failed to build merged Finding")
return None
File diff suppressed because it is too large Load Diff
@@ -5,11 +5,13 @@ Each project lives at users/{user_id}/projects/{id}/ with:
uploads/bom.csv uploaded BOM
uploads/netlist.asc uploaded netlist
uploads/datasheets/*.pdf uploaded datasheets
uploads/pcb.kicad_pcb optional KiCad board (layout checks)
extracted/ IC extraction output
patterns/ passive patterns
models/ cached component specs
design_graph.json graph output
report.json validation report
periscope-findings.json KiCad cad-bridge (plugin pan-and-zoom)
Library (global, shared across users):
library/extracted/{mpn}.json
@@ -21,13 +23,17 @@ Library (global, shared across users):
from __future__ import annotations
import logging
import uuid
from datetime import datetime, timezone
from pathlib import Path
from typing import Any
from pydantic import BaseModel
log = logging.getLogger(__name__)
from backend.pinscopex.utils import safe_mpn
from pydantic import AliasChoices, BaseModel, Field
from backend.periscopex.utils import safe_mpn
from backend.services.storage import StaleGeneration, StorageBackend
@@ -79,6 +85,7 @@ class ProjectMeta(BaseModel):
updated: str = ""
has_bom: bool = False
has_netlist: bool = False
has_pcb: bool = False
# "pads" | "edif" | None — None for legacy projects (pre-EDIF-support).
# Legacy reads fall back to looking for netlist.asc on disk.
netlist_format: str | None = None
@@ -113,9 +120,13 @@ class ProjectMeta(BaseModel):
pause_reason: str | None = None
completed_review_refs: list[str] = [] # IC refs already reviewed (persists across pauses)
# Pinscope app version that generated the project's report.
# Periscope app version that generated the project's report.
# Stamped on the first /start transition and preserved thereafter.
pinscope_version: str | None = None
# Dual-read pinscope_version (PinScope fence); serialization uses periscope_version.
periscope_version: str | None = Field(
default=None,
validation_alias=AliasChoices("periscope_version", "pinscope_version"),
)
# Worker bookkeeping (set by the API on enqueue, read by /events SSE
# and by the stale-running sweeper).
@@ -125,6 +136,50 @@ class ProjectMeta(BaseModel):
# gate (inside _charge_for_logs) and exits cleanly.
cancel_requested: bool = False
# Placement pipeline (parallel to analysis — does not overwrite status).
# draft | queued | running | complete | error | cancelled
placement_status: str = "draft"
placement_state: dict[str, Any] | None = None
placement_execution_name: str | None = None
placement_cancel_requested: bool = False
# PCB review pipeline (parallel exam — does not overwrite analysis status).
pcb_status: str = "draft"
pcb_state: dict[str, Any] | None = None
pcb_execution_name: str | None = None
pcb_cancel_requested: bool = False
def completed_review_refs_for_retry(
storage: StorageBackend, user_id: str, project_id: str,
) -> list[str]:
"""ICs that already finished review and should be skipped on reprocess.
Drops refs that failed (skipped_components / report.review_errors) so
those ICs are tried again.
"""
meta = get_project(storage, user_id, project_id)
if not meta:
return []
failed: set[str] = set()
for item in meta.skipped_components or []:
stage = (item.get("stage") or "")
ident = (item.get("identifier") or "").strip()
if ident and stage in ("validation", "review"):
failed.add(ident)
report_key = f"{_project_prefix(user_id, project_id)}/report.json"
if storage.exists(report_key):
try:
report = storage.read_json(report_key)
except Exception:
report = {}
for ref in (report.get("review_errors") or {}):
if ref:
failed.add(str(ref))
from backend.periscopex.utils import natural_sort_key
kept = [r for r in (meta.completed_review_refs or []) if r and r not in failed]
return sorted(kept, key=natural_sort_key)
def _project_prefix(user_id: str, project_id: str) -> str:
return f"users/{user_id}/projects/{project_id}"
@@ -146,10 +201,24 @@ def _read_meta_with_generation(
return ProjectMeta.model_validate(data), gen
def _write_meta(storage: StorageBackend, meta: ProjectMeta) -> None:
def _write_meta(
storage: StorageBackend,
meta: ProjectMeta,
*,
owner_user_id: str | None = None,
) -> None:
"""Persist meta under ``users/{owner}/projects/{id}/``.
``meta.user_id`` can lag the storage prefix (local-auth accounts that
still have ``user_id: "local"`` in JSON while files live under
``users/usr_/``). Writes must follow the prefix used to *read* the
project, not the stale field otherwise ``update_project(pcb_status=)``
lands in a different tree and the PCB worker still sees ``draft``.
"""
uid = owner_user_id or meta.user_id
meta.updated = datetime.now(timezone.utc).isoformat()
storage.write_json(
_meta_key(meta.user_id, meta.id),
_meta_key(uid, meta.id),
meta.model_dump(),
)
@@ -236,6 +305,208 @@ def mark_stale_running(
return None
def heal_if_pipeline_finished(
storage: StorageBackend, user_id: str, project_id: str,
) -> ProjectMeta | None:
"""Unstick analysis ``queued``/``running`` when the worker is gone.
- Last event ``pipeline_complete`` ``complete``
- Dead worker + ``report.json`` ``complete``
- Dead worker otherwise ``error`` (so PCB/placement can start)
"""
meta = get_project(storage, user_id, project_id)
if meta is None or meta.status not in (STATUS_RUNNING, STATUS_QUEUED):
return None
prefix = _project_prefix(user_id, project_id)
events_prefix = f"{prefix}/events/"
last = None
try:
event_keys = sorted(
k for k in storage.list_prefix(events_prefix)
if k.endswith(".json") and "/events/" in k
)
if event_keys:
last = storage.read_json(event_keys[-1])
except Exception:
last = None
if (last or {}).get("event") == "pipeline_complete":
summary = (last.get("data") or {}).get("summary")
try:
return transition_status(
storage, user_id, project_id,
from_status={STATUS_RUNNING, STATUS_QUEUED},
to_status=STATUS_COMPLETE,
summary=summary if isinstance(summary, dict) else meta.summary,
cancel_requested=False,
pipeline_state=None,
)
except StatusConflict:
return None
from backend.services import job_runner
exec_name = meta.execution_name or f"local/projects/{project_id}"
try:
state = job_runner.get_execution_state(exec_name)
except Exception:
state = "unknown"
if state in ("pending", "running"):
return None
if storage.exists(f"{prefix}/report.json"):
try:
return transition_status(
storage, user_id, project_id,
from_status={STATUS_RUNNING, STATUS_QUEUED},
to_status=STATUS_COMPLETE,
cancel_requested=False,
pipeline_state=None,
)
except StatusConflict:
return None
return mark_stale_running(
storage, user_id, project_id,
f"Analysis worker terminated ({state})",
)
def heal_if_placement_stuck(
storage: StorageBackend, user_id: str, project_id: str,
) -> ProjectMeta | None:
"""Unstick placement_status queued/running when the worker is gone.
- Last event ``placement_complete`` ``complete``
- Dead worker + plan artifact present ``complete``
- Dead worker otherwise ``error``
"""
meta = get_project(storage, user_id, project_id)
if meta is None:
return None
pst = meta.placement_status or "draft"
if pst not in ("queued", "running"):
return None
prefix = _project_prefix(user_id, project_id)
events_prefix = f"{prefix}/events/"
last_event = None
try:
keys = sorted(
k for k in storage.list_prefix(events_prefix)
if k.endswith(".json") and "/events/" in k
)
if keys:
last_event = storage.read_json(keys[-1])
except Exception:
last_event = None
if (last_event or {}).get("event") == "placement_complete":
data = (last_event or {}).get("data") or {}
return update_project(
storage, user_id, project_id,
placement_status="complete",
placement_cancel_requested=False,
placement_state={
"domains": data.get("domains"),
"groups": data.get("groups"),
},
)
from backend.services import job_runner
exec_name = meta.placement_execution_name or f"local/placement/{project_id}"
try:
state = job_runner.get_execution_state(exec_name)
except Exception:
state = "unknown"
if state in ("pending", "running"):
return None
has_plan = (
storage.exists(f"{prefix}/placement_plan.json")
or storage.exists(f"{prefix}/functional_groups.json")
)
if has_plan:
return update_project(
storage, user_id, project_id,
placement_status="complete",
placement_cancel_requested=False,
placement_state=meta.placement_state,
)
return update_project(
storage, user_id, project_id,
placement_status="error",
placement_cancel_requested=False,
placement_state={"error": f"Placement worker terminated ({state})"},
)
def heal_if_pcb_stuck(
storage: StorageBackend, user_id: str, project_id: str,
) -> ProjectMeta | None:
"""Unstick pcb_status queued/running when the worker is gone."""
meta = get_project(storage, user_id, project_id)
if meta is None:
return None
pst = meta.pcb_status or "draft"
if pst not in ("queued", "running"):
return None
prefix = _project_prefix(user_id, project_id)
events_prefix = f"{prefix}/events/"
last_event = None
try:
keys = sorted(
k for k in storage.list_prefix(events_prefix)
if k.endswith(".json") and "/events/" in k
)
if keys:
last_event = storage.read_json(keys[-1])
except Exception:
last_event = None
if (last_event or {}).get("event") == "pcb_complete":
data = (last_event or {}).get("data") or {}
return update_project(
storage, user_id, project_id,
pcb_status="complete",
pcb_cancel_requested=False,
pcb_state={
"findings": data.get("findings"),
"domains": data.get("domains"),
"groups": data.get("groups"),
},
)
from backend.services import job_runner
exec_name = meta.pcb_execution_name or f"local/pcb/{project_id}"
try:
state = job_runner.get_execution_state(exec_name)
except Exception:
state = "unknown"
if state in ("pending", "running"):
return None
has_report = storage.exists(f"{prefix}/pcb_report.json")
if has_report:
return update_project(
storage, user_id, project_id,
pcb_status="complete",
pcb_cancel_requested=False,
pcb_state=meta.pcb_state,
)
return update_project(
storage, user_id, project_id,
pcb_status="error",
pcb_cancel_requested=False,
pcb_state={"error": f"PCB worker terminated ({state})"},
)
# --- CRUD ---
@@ -281,7 +552,7 @@ def update_project(
meta = _read_meta(storage, user_id, project_id)
for k, v in fields.items():
setattr(meta, k, v)
_write_meta(storage, meta)
_write_meta(storage, meta, owner_user_id=user_id)
return meta
@@ -323,6 +594,8 @@ def clear_project_extractions(
"bom_summary.json",
"derating.json",
"report.json",
"periscope-findings.json",
"review_fingerprints.json",
"api_logs.jsonl",
"graph_voltage_updates.json",
):
@@ -356,6 +629,8 @@ def reopen_project(
"bom_summary.json",
"derating.json",
"report.json",
"periscope-findings.json",
"review_fingerprints.json",
"api_logs.jsonl",
"graph_voltage_updates.json",
):
@@ -452,7 +727,7 @@ def add_collaborator(
meta = _read_meta(storage, owner_user_id, project_id)
if collaborator_user_id not in meta.collaborators:
meta.collaborators.append(collaborator_user_id)
_write_meta(storage, meta)
_write_meta(storage, meta, owner_user_id=owner_user_id)
# Write reverse reference for the collaborator
ref_key = _shared_ref_key(collaborator_user_id, project_id)
storage.write_json(ref_key, {"owner_user_id": owner_user_id})
@@ -465,7 +740,7 @@ def remove_collaborator(
"""Remove a collaborator from a project and delete the shared reference."""
meta = _read_meta(storage, owner_user_id, project_id)
meta.collaborators = [c for c in meta.collaborators if c != collaborator_user_id]
_write_meta(storage, meta)
_write_meta(storage, meta, owner_user_id=owner_user_id)
# Delete reverse reference
ref_key = _shared_ref_key(collaborator_user_id, project_id)
if storage.exists(ref_key):
@@ -577,7 +852,13 @@ def save_bom(
return key
_NETLIST_EXT = {"pads": "asc", "edif": "edn"}
_NETLIST_EXT = {
"pads": "asc",
"edif": "edn",
"kicad_xml": "xml",
"kicad_sexp": "kicad_net",
"kicad_sch": "kicad_sch",
}
def _netlist_key(user_id: str, project_id: str, fmt: str) -> str:
@@ -595,16 +876,17 @@ def save_netlist(
) -> str:
"""Persist the uploaded netlist with the extension matching ``fmt``.
Also clears any previously-saved netlist in the *other* format so we
never have stale ``.asc`` and ``.edn`` files side-by-side (e.g. user
re-uploads with a different format).
Also clears any previously-saved netlist in another format so we
never have stale files side-by-side (e.g. user re-uploads KiCad after PADS).
"""
key = _netlist_key(user_id, project_id, fmt)
storage.write_bytes(key, data)
other_fmt = "edif" if fmt == "pads" else "pads"
other_key = _netlist_key(user_id, project_id, other_fmt)
if storage.exists(other_key):
storage.delete_key(other_key)
for other in _NETLIST_EXT:
if other == fmt:
continue
other_key = _netlist_key(user_id, project_id, other)
if storage.exists(other_key):
storage.delete_key(other_key)
# Reset sub-design selection on every upload — the prior selection may
# reference IDs that no longer exist in the new file. Frontend resets
# the picker after upload too; this keeps backend in sync.
@@ -615,23 +897,73 @@ def save_netlist(
return key
def clear_companion_sheets(
storage: StorageBackend, user_id: str, project_id: str,
) -> None:
prefix = f"{_project_prefix(user_id, project_id)}/uploads/"
for key in storage.list_recursive(prefix):
rel = key[len(prefix):]
if rel.endswith(".kicad_sch") and rel != "netlist.kicad_sch":
storage.delete_key(key)
def save_companion_sheets(
storage: StorageBackend,
user_id: str,
project_id: str,
root: Path,
extras: list[Path],
) -> None:
"""Keep Sheetfile children next to ``uploads/netlist.kicad_sch``."""
clear_companion_sheets(storage, user_id, project_id)
parent = root.parent
prefix = f"{_project_prefix(user_id, project_id)}/uploads/"
for extra in extras:
rel = extra.relative_to(parent).as_posix()
if rel == "netlist.kicad_sch":
continue
storage.write_bytes(prefix + rel, extra.read_bytes())
def save_pcb(
storage: StorageBackend, user_id: str, project_id: str, data: bytes
) -> str:
key = f"{_project_prefix(user_id, project_id)}/uploads/pcb.kicad_pcb"
storage.write_bytes(key, data)
update_project(storage, user_id, project_id, has_pcb=True)
return key
def save_datasheet(
storage: StorageBackend, user_id: str, project_id: str, mpn: str, data: bytes
) -> str:
"""Save a datasheet PDF to the project uploads directory.
"""Save a datasheet PDF to the project and to the shared library.
Library writes happen during pattern extraction (one PDF per pattern series).
The project copy is what the pipeline reads for this run. The library
copy means a later project with the same MPN can skip the download.
"""
safe = safe_mpn(mpn)
key = f"{_project_prefix(user_id, project_id)}/uploads/datasheets/{safe}.pdf"
storage.write_bytes(key, data)
# Count datasheets
remember_datasheet(storage, mpn, data)
ds_prefix = f"{_project_prefix(user_id, project_id)}/uploads/datasheets/"
count = sum(1 for k in storage.list_prefix(ds_prefix) if k.endswith(".pdf"))
update_project(storage, user_id, project_id, datasheet_count=count)
return key
def remember_datasheet(
storage: StorageBackend, mpn: str, data: bytes, extra_mpns: list[str] | None = None,
) -> None:
"""Write a datasheet into the shared library without failing the caller."""
try:
from backend.services.datasheet_store import store_datasheet_bytes
store_datasheet_bytes(storage, data, mpn, extra_mpns=extra_mpns)
except Exception:
log.exception("Failed to store datasheet for %s in the shared library", mpn)
def get_bom_key(
storage: StorageBackend, user_id: str, project_id: str
) -> str | None:
@@ -643,7 +975,7 @@ def get_netlist_key(
storage: StorageBackend, user_id: str, project_id: str
) -> str | None:
"""Return the storage key of whichever netlist file exists (.asc or .edn)."""
for fmt in ("pads", "edif"):
for fmt in _NETLIST_EXT:
key = _netlist_key(user_id, project_id, fmt)
if storage.exists(key):
return key
@@ -714,7 +1046,7 @@ def library_has_datasheet(
return key
# 3. Pattern-based fallback for passives
if patterns:
from backend.pinscopex.resolve_passives import resolve_mpn
from backend.periscopex.resolve_passives import resolve_mpn
match = resolve_mpn(mpn, patterns)
if match is not None:
@@ -759,6 +1091,137 @@ def save_to_library(
return dst_key
def _specs_param_count(specs: dict) -> int:
if not isinstance(specs, dict):
return 0
values = specs.get("values")
if isinstance(values, dict):
return sum(1 for v in values.values() if v not in (None, "", []))
skip = {"specs_type", "component_subtype"}
return sum(
1 for k, v in specs.items()
if k not in skip and v not in (None, "", [])
)
def _catalog_model_row(data: dict, key: str, *, row_type: str) -> dict:
mpn = data.get("mpn", "") or key.rsplit("/", 1)[-1].replace(".json", "")
specs = data.get("specs", {}) or {}
return {
"mpn": mpn,
"type": row_type,
"specs_type": specs.get("specs_type", ""),
"subtype": specs.get("component_subtype", ""),
"param_count": _specs_param_count(specs),
}
def list_library_catalog(storage: StorageBackend) -> dict:
"""List ICs, passive patterns, discrete specs, and datasheet refs.
Used by the user-facing library page and the admin components panel.
"""
from backend.services.datasheet_store import REF_PREFIX, resolve_datasheet
ics: list[dict] = []
seen_ic_mpns: set[str] = set()
for key in storage.list_prefix("library/extracted/"):
if not key.endswith(".json"):
continue
try:
data = storage.read_json(key)
mpn = data.get("mpn") or key.rsplit("/", 1)[-1].replace(".json", "")
if mpn in seen_ic_mpns:
continue
seen_ic_mpns.add(mpn)
ics.append({
"mpn": mpn,
"type": "ic",
"subtype": data.get("component_subtype", ""),
"pin_count": len(data.get("pintable", [])),
"has_ratings": bool(data.get("absolute_maximum_ratings")),
"has_datasheet": bool(resolve_datasheet(storage, mpn)),
})
except Exception:
continue
passives: list[dict] = []
seen_passive_names: set[str] = set()
for key in storage.list_prefix("library/patterns/"):
if not key.endswith(".json"):
continue
try:
data = storage.read_json(key)
name = data.get("name") or key.rsplit("/", 1)[-1].replace(".json", "")
if name in seen_passive_names:
continue
seen_passive_names.add(name)
passives.append({
"mpn": name,
"type": "passive",
"subtype": data.get("component_type", ""),
"description": data.get("description", ""),
"regex": data.get("regex", ""),
})
except Exception:
continue
simple_models: list[dict] = []
passive_parts: list[dict] = []
seen_model_mpns: set[str] = set()
for prefix, row_type, dest in (
("library/passives/", "passive_part", passive_parts),
("library/models/", "simple", simple_models),
):
for key in storage.list_prefix(prefix):
if not key.endswith(".json"):
continue
try:
data = storage.read_json(key)
row = _catalog_model_row(data, key, row_type=row_type)
mpn = row["mpn"]
if mpn in seen_model_mpns:
continue
seen_model_mpns.add(mpn)
row["has_datasheet"] = bool(resolve_datasheet(storage, mpn))
dest.append(row)
except Exception:
continue
datasheets: list[dict] = []
seen_ds: set[str] = set()
for key in storage.list_prefix(REF_PREFIX):
if not key.endswith(".json"):
continue
try:
ref = storage.read_json(key)
mpn = ref.get("mpn") or key.rsplit("/", 1)[-1].replace(".json", "")
if mpn in seen_ds:
continue
seen_ds.add(mpn)
datasheets.append({
"mpn": mpn,
"hash": ref.get("hash"),
"has_extraction": mpn in seen_ic_mpns,
"has_model": mpn in seen_model_mpns,
})
except Exception:
continue
ics.sort(key=lambda r: r["mpn"].lower())
passives.sort(key=lambda r: r["mpn"].lower())
passive_parts.sort(key=lambda r: r["mpn"].lower())
simple_models.sort(key=lambda r: r["mpn"].lower())
datasheets.sort(key=lambda r: r["mpn"].lower())
return {
"ics": ics,
"passives": passives,
"passive_parts": passive_parts,
"simple": simple_models,
"datasheets": datasheets,
}
def list_library_patterns(storage: StorageBackend) -> list[str]:
"""List all pattern keys in the library."""
prefix = "library/patterns/"
@@ -768,11 +1231,11 @@ def list_library_patterns(storage: StorageBackend) -> list[str]:
def load_library_patterns(storage: StorageBackend):
"""Load and parse all passive patterns from the library.
For local backend, delegates to pinscopex. For GCS, downloads to temp first.
For local backend, delegates to periscopex. For GCS, downloads to temp first.
This function is only used by the library/check endpoint during pipeline
execution, patterns are loaded from the workspace temp directory.
"""
from backend.pinscopex.resolve_passives import load_patterns
from backend.periscopex.resolve_passives import load_patterns
from backend.services.storage import LocalStorageBackend

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