Files
FPGA-Neural/hardware/v2/rtl/result_buffer.v
micheleandClaude Sonnet 5 5f0d7f101c feat(v2): M3 activation/weight/result buffers, real BRAM mapping
Implements M3: three parametric dual-port buffers for the §12
data-plane (Input/Weight/Result), reusing the proven BRAM-inference
idiom from the frozen hardware/v1/rtl/act_buffer.v (synchronous write,
synchronous REGISTERED read, no reset on the read register -- keeps
Yosys off the LUT-RAM path).

Verified with Verilator: 10/10 tests pass (write-then-read
correctness, extreme INT8 round-tripping, weight_buffer's full 64-bit
tile width round-tripping, undisturbed re-reads).

Real synthesis at two depths per module (6 configs total): 0 CHECK
problems, every configuration correctly infers DP16KD (never
LUT-RAM). Non-obvious real finding: weight_buffer's BRAM cost is
driven by its P_IN*DATA_WIDTH tile width, not its DEPTH -- an 8x depth
reduction (512->64) left DP16KD usage unchanged at 2, while
activation_buffer/result_buffer (byte-wide) scale as naively expected
(2->1). All default-depth configs PASS at 80MHz with large margin
(287-367 MHz) via real nextpnr-ecp5 place&route.

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_013xXuuRUWZScuo1DeYJxs3v
2026-09-05 14:19:11 +02:00

48 lines
1.6 KiB
Verilog

`timescale 1ns/1ps
// ================================================================
// FPGA-Neural V2 -- Result Buffer (M3, docs/v2-description.md §14)
//
// Holds the "Result Buffer" of the §12 data-plane diagram: one INT8
// slot per node id, written by a Neural Processor's result_data (at
// its result_node_id address) once its job's tile_last has drained
// through the pipeline (M1), and read by whichever consumer needs it
// next -- a downstream layer's Weight/Activation Buffer producer, the
// Dependency Manager (M6, dependency resolution), or the host
// (READ_RAM-equivalent path, M4/M8).
//
// Same BRAM-inference idiom as activation_buffer.v (dual-port, Port A
// sync write, Port B sync REGISTERED read, no reset on the read
// register). DEPTH is fully parametric. Deliberately NOT tracking
// "has this id been written yet" here -- that bookkeeping belongs to
// the Dependency Manager (M6), not this buffer.
// ================================================================
module result_buffer #(
parameter DEPTH = 4096,
parameter DATA_WIDTH = 8,
localparam ADDR_WIDTH = $clog2(DEPTH)
)(
input wire clk,
input wire wr_en,
input wire [ADDR_WIDTH-1:0] wr_addr,
input wire signed [DATA_WIDTH-1:0] wr_data,
input wire [ADDR_WIDTH-1:0] rd_addr,
output reg signed [DATA_WIDTH-1:0] rd_data
);
reg signed [DATA_WIDTH-1:0] mem [0:DEPTH-1];
always @(posedge clk) begin
if (wr_en)
mem[wr_addr] <= wr_data;
end
always @(posedge clk) begin
rd_data <= mem[rd_addr];
end
endmodule