2019-11-17 16:39:38 -08:00
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/*----------------------------------------------------------------------------*/
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/* Copyright (c) 2019 FIRST. All Rights Reserved. */
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/* Open Source Software - may be modified and shared by FRC teams. The code */
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/* must be accompanied by the FIRST BSD license file in the root directory of */
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/* the project. */
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/*----------------------------------------------------------------------------*/
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#include "hal/AddressableLED.h"
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#include <cstring>
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2019-12-14 21:15:32 -08:00
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#include <FRC_FPGA_ChipObject/fpgainterfacecapi/NiFpga_HMB.h>
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2019-11-17 16:39:38 -08:00
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#include "ConstantsInternal.h"
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#include "DigitalInternal.h"
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2019-11-18 15:25:04 -08:00
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#include "HALInitializer.h"
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2019-11-17 16:39:38 -08:00
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#include "PortsInternal.h"
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#include "hal/ChipObject.h"
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#include "hal/handles/HandlesInternal.h"
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#include "hal/handles/LimitedHandleResource.h"
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using namespace hal;
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namespace {
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struct AddressableLED {
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std::unique_ptr<tLED> led;
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void* ledBuffer;
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size_t ledBufferSize;
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int32_t stringLength = 1;
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};
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} // namespace
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static LimitedHandleResource<
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HAL_AddressableLEDHandle, AddressableLED, kNumAddressableLEDs,
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HAL_HandleEnum::AddressableLED>* addressableLEDHandles;
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namespace hal {
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namespace init {
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void InitializeAddressableLED() {
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static LimitedHandleResource<HAL_AddressableLEDHandle, AddressableLED,
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kNumAddressableLEDs,
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HAL_HandleEnum::AddressableLED>
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alH;
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addressableLEDHandles = &alH;
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}
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} // namespace init
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} // namespace hal
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extern "C" {
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HAL_AddressableLEDHandle HAL_InitializeAddressableLED(
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HAL_DigitalHandle outputPort, int32_t* status) {
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hal::init::CheckInit();
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2019-11-17 16:39:38 -08:00
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auto digitalPort =
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hal::digitalChannelHandles->Get(outputPort, hal::HAL_HandleEnum::PWM);
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if (!digitalPort) {
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2019-11-18 15:25:04 -08:00
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// If DIO was passed, channel error, else generic error
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if (getHandleType(outputPort) == hal::HAL_HandleEnum::DIO) {
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*status = HAL_LED_CHANNEL_ERROR;
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} else {
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*status = HAL_HANDLE_ERROR;
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}
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return HAL_kInvalidHandle;
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}
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if (digitalPort->channel >= kNumPWMHeaders) {
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*status = HAL_LED_CHANNEL_ERROR;
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return HAL_kInvalidHandle;
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}
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auto handle = addressableLEDHandles->Allocate();
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if (handle == HAL_kInvalidHandle) {
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*status = NO_AVAILABLE_RESOURCES;
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return HAL_kInvalidHandle;
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}
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auto led = addressableLEDHandles->Get(handle);
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if (!led) {
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*status = HAL_HANDLE_ERROR;
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return HAL_kInvalidHandle;
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}
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led->led.reset(tLED::create(status));
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if (*status != 0) {
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addressableLEDHandles->Free(handle);
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return HAL_kInvalidHandle;
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}
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led->led->writeOutputSelect(digitalPort->channel, status);
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if (*status != 0) {
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addressableLEDHandles->Free(handle);
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return HAL_kInvalidHandle;
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}
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led->ledBuffer = nullptr;
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led->ledBufferSize = 0;
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uint32_t session = led->led->getSystemInterface()->getHandle();
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2019-12-14 21:15:32 -08:00
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*status = NiFpga_OpenHostMemoryBuffer(session, "HMB_0_LED", &led->ledBuffer,
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&led->ledBufferSize);
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if (*status != 0) {
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addressableLEDHandles->Free(handle);
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return HAL_kInvalidHandle;
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}
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return handle;
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}
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void HAL_FreeAddressableLED(HAL_AddressableLEDHandle handle) {
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addressableLEDHandles->Free(handle);
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}
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void HAL_SetAddressableLEDOutputPort(HAL_AddressableLEDHandle handle,
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HAL_DigitalHandle outputPort,
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int32_t* status) {
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auto digitalPort =
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hal::digitalChannelHandles->Get(outputPort, hal::HAL_HandleEnum::PWM);
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if (!digitalPort) {
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*status = HAL_HANDLE_ERROR;
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return;
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}
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auto led = addressableLEDHandles->Get(handle);
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if (!led) {
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*status = HAL_HANDLE_ERROR;
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return;
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}
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led->led->writeOutputSelect(digitalPort->channel, status);
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}
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void HAL_SetAddressableLEDLength(HAL_AddressableLEDHandle handle,
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int32_t length, int32_t* status) {
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auto led = addressableLEDHandles->Get(handle);
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if (!led) {
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*status = HAL_HANDLE_ERROR;
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return;
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}
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2019-11-17 15:05:56 -08:00
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if (length > HAL_kAddressableLEDMaxLength) {
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*status = PARAMETER_OUT_OF_RANGE;
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return;
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}
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led->led->strobeReset(status);
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while (led->led->readPixelWriteIndex(status) != 0) {
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}
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if (*status != 0) {
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return;
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}
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led->led->writeStringLength(length, status);
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led->stringLength = length;
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}
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static_assert(sizeof(HAL_AddressableLEDData) == sizeof(uint32_t),
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"LED Data must be 32 bit");
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void HAL_WriteAddressableLEDData(HAL_AddressableLEDHandle handle,
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const struct HAL_AddressableLEDData* data,
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int32_t length, int32_t* status) {
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auto led = addressableLEDHandles->Get(handle);
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if (!led) {
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*status = HAL_HANDLE_ERROR;
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return;
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}
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if (length > led->stringLength) {
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*status = PARAMETER_OUT_OF_RANGE;
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return;
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}
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std::memcpy(led->ledBuffer, data, length * sizeof(HAL_AddressableLEDData));
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asm("dmb");
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led->led->strobeLoad(status);
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}
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void HAL_SetAddressableLEDBitTiming(HAL_AddressableLEDHandle handle,
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int32_t lowTime0NanoSeconds,
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int32_t highTime0NanoSeconds,
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int32_t lowTime1NanoSeconds,
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int32_t highTime1NanoSeconds,
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int32_t* status) {
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auto led = addressableLEDHandles->Get(handle);
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if (!led) {
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*status = HAL_HANDLE_ERROR;
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return;
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}
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led->led->writeLowBitTickTiming(1, highTime0NanoSeconds / 25, status);
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led->led->writeLowBitTickTiming(0, lowTime0NanoSeconds / 25, status);
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led->led->writeHighBitTickTiming(1, highTime1NanoSeconds / 25, status);
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led->led->writeHighBitTickTiming(0, lowTime1NanoSeconds / 25, status);
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}
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void HAL_SetAddressableLEDSyncTime(HAL_AddressableLEDHandle handle,
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int32_t syncTimeMicroSeconds,
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int32_t* status) {
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auto led = addressableLEDHandles->Get(handle);
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if (!led) {
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*status = HAL_HANDLE_ERROR;
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return;
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}
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led->led->writeSyncTiming(syncTimeMicroSeconds, status);
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}
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void HAL_StartAddressableLEDOutput(HAL_AddressableLEDHandle handle,
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int32_t* status) {
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auto led = addressableLEDHandles->Get(handle);
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if (!led) {
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*status = HAL_HANDLE_ERROR;
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return;
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}
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led->led->strobeStart(status);
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}
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void HAL_StopAddressableLEDOutput(HAL_AddressableLEDHandle handle,
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int32_t* status) {
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auto led = addressableLEDHandles->Get(handle);
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if (!led) {
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*status = HAL_HANDLE_ERROR;
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return;
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}
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led->led->strobeAbort(status);
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}
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} // extern "C"
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