writeCommand() always prepends a fixed ARG1=0x00 byte before the payload; tuneFm()/tuneDab() built their argument arrays starting at what the author believed was ARG1, so every byte landed one slot right of its real AN649 position and an extra unused byte was appended. The chip never received the requested frequency. This is the root cause of the months-long total RF blackout (RSQ frozen at all-zero on every frequency/ANTCAP value) previously attributed to a QFN exposed-pad hardware defect — that hypothesis is now overturned, confirmed live: RSSI/SNR now read real, frequency-dependent values with zero STC timeouts after the fix. Also make BT1035 boot failure non-fatal in HardwareBootstrap::boot() so a companion-chip fault no longer halts the whole device (Si4684 tuning, web UI, Wi-Fi already isolate BT1035 readiness via CompanionChipStatus). Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_0178rASQ6ZETPMUamvpoR2KR
179 lines
5.4 KiB
C++
179 lines
5.4 KiB
C++
/**
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* @file hardware_bootstrap.cpp
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* @brief HardwareBootstrap implementation.
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*
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* DigiRadio firmware — https://github.com/manvalan/DigiRadio
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*
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* Copyright 2026 Michele Bigi
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* SPDX-License-Identifier: Apache-2.0
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*
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* @author Michele Bigi
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* @date 2026-07-06
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*/
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#include "hardware_bootstrap.hpp"
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#include "adau1701/Adau1701Driver.hpp"
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#include "adau1701/Adau1701Dsp.hpp"
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#include "adau1701/EmbeddedDspProgramSource.hpp"
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#include "adau1701/FallbackDspProgramSource.hpp"
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#include "adau1701/FlashDspProgramSource.hpp"
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#include "audio/AudioService.hpp"
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#include "board_pins.hpp"
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#include "bt1035/Bt1035Driver.hpp"
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#include "core/DeviceIdentity.hpp"
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#include "driver/i2c_master.h"
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#include "eeprom24aa/Eeprom24aa.hpp"
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#include "secure_store/NvsAudioProfileStore.hpp"
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#include "si4684/Si4684Band.hpp"
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#include "si4684/Si4684Driver.hpp"
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#include "si4684/Si4684EmbeddedImages.hpp"
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#include "si4684/Si4684Tuner.hpp"
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#include "driver/spi_master.h"
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#include "esp_log.h"
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namespace hardware {
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namespace {
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constexpr char kTag[] = "hw_boot";
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si4684::Si4684EmbeddedImages gImages;
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si4684::Si4684Driver gSi4684(
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si4684::Si4684Pins{
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.spiHost = SPI2_HOST,
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.csGpio = board::pins::Si4684Cs,
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.misoGpio = board::pins::Si4684Miso,
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.mosiGpio = board::pins::Si4684Mosi,
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.sclkGpio = board::pins::Si4684Sclk,
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.rstbGpio = board::pins::Si4684Rstb,
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.intbGpio = board::pins::Si4684Intb,
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},
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gImages.romPatch(),
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gImages.dabFirmware(),
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gImages.fmFirmware());
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si4684::Si4684Tuner gSi4684Tuner(gSi4684);
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adau1701::EmbeddedDspProgramSource gEmbeddedDspProgram;
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adau1701::FlashDspProgramSource gFlashDspProgram;
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adau1701::FallbackDspProgramSource gDspProgramSource(
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gFlashDspProgram, gEmbeddedDspProgram);
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adau1701::Adau1701Driver gAdau1701(
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adau1701::Adau1701Pins{
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.i2cSda = board::pins::Adau1701Sda,
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.i2cScl = board::pins::Adau1701Scl,
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.resetGpio = board::pins::Adau1701Reset,
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.i2cAddr7 = board::pins::Adau1701Addr,
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},
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gDspProgramSource);
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adau1701::Adau1701Dsp gAdau1701Dsp(gAdau1701);
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secure_store::NvsAudioProfileStore gAudioStore;
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audio::AudioService gAudioService(gAdau1701Dsp, &gAudioStore);
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bt1035::Bt1035Driver gBt1035(
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bt1035::Bt1035Pins{
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.uartTx = board::pins::Bt1035UartTx,
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.uartRx = board::pins::Bt1035UartRx,
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.resetGpio = board::pins::Bt1035Reset,
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.sysCtlGpio = board::pins::Bt1035SysCtl,
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});
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core::DeviceIdentity gDeviceIdentity = core::DeviceIdentity::unknown();
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bool gReady = false;
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} // namespace
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std::expected<void, HardwareBootError> HardwareBootstrap::boot()
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{
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if (gReady) {
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return {};
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}
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if (auto tunerResult = gSi4684.boot(si4684::Si4684Band::Dab); !tunerResult) {
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ESP_LOGE(kTag, "Si4684 boot failed: error %d", static_cast<int>(tunerResult.error()));
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return std::unexpected(HardwareBootError::Si4684BootFailed);
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}
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if (!gAdau1701.isBooted()) {
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auto dspResult = gAdau1701.boot();
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if (!dspResult) {
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ESP_LOGE(kTag, "ADAU1701 boot failed");
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return std::unexpected(HardwareBootError::Adau1701BootFailed);
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}
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}
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auto* busHandle =
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static_cast<i2c_master_bus_handle_t>(gAdau1701.i2cBusHandle());
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eeprom24aa::Eeprom24aa eeprom(busHandle,
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static_cast<std::uint8_t>(
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board::pins::Eeprom24aaAddr));
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if (auto identity = eeprom.readDeviceIdentity(); identity) {
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gDeviceIdentity = std::move(*identity);
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ESP_LOGI(kTag, "unit serial %.*s",
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static_cast<int>(gDeviceIdentity.serialNumber().size()),
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gDeviceIdentity.serialNumber().data());
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} else {
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gDeviceIdentity = core::DeviceIdentity::unknown();
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ESP_LOGW(kTag, "EUI-48 read failed — using fallback identity");
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}
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if (auto audioResult = gAudioService.loadAndApply(); !audioResult) {
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ESP_LOGW(kTag, "ADAU1701 profile apply failed");
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}
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if (auto radioMix = gAudioService.applyRadioFirstMix(false); !radioMix) {
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ESP_LOGW(kTag, "ADAU1701 radio-first mix failed");
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} else {
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ESP_LOGI(kTag, "ADAU1701 Si4684 input routed (radio-first mix)");
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}
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if (auto btResult = gBt1035.boot(); !btResult) {
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ESP_LOGE(kTag, "BT1035 boot failed — continuing without Bluetooth");
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} else {
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if (auto nameResult =
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gBt1035.setDeviceName(gDeviceIdentity.bluetoothName());
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!nameResult) {
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ESP_LOGW(kTag, "BT1035 device name set failed");
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}
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if (auto reconnectResult = gBt1035.setAutoReconnect(3U);
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!reconnectResult) {
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ESP_LOGW(kTag, "BT1035 auto-reconnect set failed");
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}
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}
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gReady = true;
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ESP_LOGI(kTag, "companion chips ready");
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return {};
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}
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si4684::Si4684Tuner& HardwareBootstrap::si4684Tuner()
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{
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return gSi4684Tuner;
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}
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audio::AudioService& HardwareBootstrap::audioService()
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{
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return gAudioService;
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}
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core::CompanionChipStatus HardwareBootstrap::companionChipStatus() noexcept
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{
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return core::CompanionChipStatus{
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.si4684Ready = gSi4684.isBooted(),
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.adau1701Ready = gAdau1701.isBooted(),
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.bt1035Ready = gBt1035.isBooted(),
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};
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}
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bt1035::Bt1035Driver& HardwareBootstrap::bt1035Driver()
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{
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return gBt1035;
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}
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const core::DeviceIdentity& HardwareBootstrap::deviceIdentity() noexcept
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{
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return gDeviceIdentity;
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}
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} // namespace hardware
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