2020-12-26 14:12:05 -08:00
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// Copyright (c) FIRST and other WPILib contributors.
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// Open Source Software; you can modify and/or share it under the terms of
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// the WPILib BSD license file in the root directory of this project.
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2019-11-14 22:52:34 -08:00
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#include "hal/DMA.h"
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extern "C" {
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2020-12-28 12:58:06 -08:00
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HAL_DMAHandle HAL_InitializeDMA(int32_t* status) {
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return HAL_kInvalidHandle;
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}
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2019-11-14 22:52:34 -08:00
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void HAL_FreeDMA(HAL_DMAHandle handle) {}
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void HAL_SetDMAPause(HAL_DMAHandle handle, HAL_Bool pause, int32_t* status) {}
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2021-06-14 19:56:42 -07:00
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void HAL_SetDMATimedTrigger(HAL_DMAHandle handle, double periodSeconds,
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int32_t* status) {}
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void HAL_SetDMATimedTriggerCycles(HAL_DMAHandle handle, uint32_t cycles,
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int32_t* status) {}
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2019-11-14 22:52:34 -08:00
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void HAL_AddDMAEncoder(HAL_DMAHandle handle, HAL_EncoderHandle encoderHandle,
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int32_t* status) {}
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void HAL_AddDMAEncoderPeriod(HAL_DMAHandle handle,
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HAL_EncoderHandle encoderHandle, int32_t* status) {
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}
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void HAL_AddDMACounter(HAL_DMAHandle handle, HAL_CounterHandle counterHandle,
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int32_t* status) {}
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void HAL_AddDMACounterPeriod(HAL_DMAHandle handle,
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HAL_CounterHandle counterHandle, int32_t* status) {
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}
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void HAL_AddDMADigitalSource(HAL_DMAHandle handle,
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HAL_Handle digitalSourceHandle, int32_t* status) {}
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void HAL_AddDMAAnalogInput(HAL_DMAHandle handle,
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HAL_AnalogInputHandle aInHandle, int32_t* status) {}
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void HAL_AddDMAAveragedAnalogInput(HAL_DMAHandle handle,
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HAL_AnalogInputHandle aInHandle,
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int32_t* status) {}
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void HAL_AddDMAAnalogAccumulator(HAL_DMAHandle handle,
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HAL_AnalogInputHandle aInHandle,
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int32_t* status) {}
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void HAL_AddDMADutyCycle(HAL_DMAHandle handle,
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HAL_DutyCycleHandle dutyCycleHandle, int32_t* status) {
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}
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2021-06-14 19:56:42 -07:00
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int32_t HAL_SetDMAExternalTrigger(HAL_DMAHandle handle,
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HAL_Handle digitalSourceHandle,
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HAL_AnalogTriggerType analogTriggerType,
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HAL_Bool rising, HAL_Bool falling,
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int32_t* status) {
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return 0;
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}
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void HAL_ClearDMASensors(HAL_DMAHandle handle, int32_t* status) {}
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void HAL_ClearDMAExternalTriggers(HAL_DMAHandle handle, int32_t* status) {}
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2019-11-14 22:52:34 -08:00
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void HAL_StartDMA(HAL_DMAHandle handle, int32_t queueDepth, int32_t* status) {}
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void HAL_StopDMA(HAL_DMAHandle handle, int32_t* status) {}
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2020-12-28 12:58:06 -08:00
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void* HAL_GetDMADirectPointer(HAL_DMAHandle handle) {
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return nullptr;
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}
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enum HAL_DMAReadStatus HAL_ReadDMADirect(void* dmaPointer,
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HAL_DMASample* dmaSample,
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double timeoutSeconds,
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int32_t* remainingOut,
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int32_t* status) {
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return HAL_DMA_ERROR;
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}
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enum HAL_DMAReadStatus HAL_ReadDMA(HAL_DMAHandle handle,
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HAL_DMASample* dmaSample,
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double timeoutSeconds, int32_t* remainingOut,
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int32_t* status) {
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return HAL_DMA_ERROR;
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}
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// Sampling Code
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uint64_t HAL_GetDMASampleTime(const HAL_DMASample* dmaSample, int32_t* status) {
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return 0;
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}
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int32_t HAL_GetDMASampleEncoderRaw(const HAL_DMASample* dmaSample,
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HAL_EncoderHandle encoderHandle,
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int32_t* status) {
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return 0;
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}
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int32_t HAL_GetDMASampleCounter(const HAL_DMASample* dmaSample,
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HAL_CounterHandle counterHandle,
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int32_t* status) {
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return 0;
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}
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int32_t HAL_GetDMASampleEncoderPeriodRaw(const HAL_DMASample* dmaSample,
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HAL_EncoderHandle encoderHandle,
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int32_t* status) {
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return 0;
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}
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int32_t HAL_GetDMASampleCounterPeriod(const HAL_DMASample* dmaSample,
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HAL_CounterHandle counterHandle,
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int32_t* status) {
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return 0;
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}
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HAL_Bool HAL_GetDMASampleDigitalSource(const HAL_DMASample* dmaSample,
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HAL_Handle dSourceHandle,
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int32_t* status) {
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return 0;
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}
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int32_t HAL_GetDMASampleAnalogInputRaw(const HAL_DMASample* dmaSample,
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HAL_AnalogInputHandle aInHandle,
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int32_t* status) {
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return 0;
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}
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int32_t HAL_GetDMASampleAveragedAnalogInputRaw(const HAL_DMASample* dmaSample,
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HAL_AnalogInputHandle aInHandle,
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int32_t* status) {
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return 0;
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}
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void HAL_GetDMASampleAnalogAccumulator(const HAL_DMASample* dmaSample,
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HAL_AnalogInputHandle aInHandle,
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int64_t* count, int64_t* value,
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int32_t* status) {}
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int32_t HAL_GetDMASampleDutyCycleOutputRaw(const HAL_DMASample* dmaSample,
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HAL_DutyCycleHandle dutyCycleHandle,
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int32_t* status) {
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return 0;
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}
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} // extern "C"
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