mirror of
https://github.com/Next-Flip/Momentum-Firmware.git
synced 2026-05-20 04:54:45 -07:00
timing optimizations for DigitalSequence
This commit is contained in:
@@ -87,6 +87,25 @@ void digital_signal_add(DigitalSignal* signal, uint32_t ticks) {
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signal->edge_timings[signal->edge_cnt++] = ticks;
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signal->edge_timings[signal->edge_cnt++] = ticks;
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}
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}
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void digital_signal_add_pulse(DigitalSignal* signal, uint32_t ticks, bool level) {
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furi_assert(signal);
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furi_assert(signal->edge_cnt < signal->edges_max_cnt);
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/* virgin signal? add it as the only level */
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if(signal->edge_cnt == 0) {
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signal->start_level = level;
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signal->edge_timings[signal->edge_cnt++] = ticks;
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} else {
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bool end_level = signal->start_level ^ !(signal->edge_cnt % 2);
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if(level != end_level) {
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signal->edge_timings[signal->edge_cnt++] = ticks;
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} else {
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signal->edge_timings[signal->edge_cnt - 1] += ticks;
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}
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}
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}
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uint32_t digital_signal_get_edge(DigitalSignal* signal, uint32_t edge_num) {
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uint32_t digital_signal_get_edge(DigitalSignal* signal, uint32_t edge_num) {
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furi_assert(signal);
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furi_assert(signal);
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furi_assert(edge_num < signal->edge_cnt);
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furi_assert(edge_num < signal->edge_cnt);
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@@ -126,19 +145,19 @@ void digital_signal_prepare(DigitalSignal* signal) {
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}
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}
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void digital_signal_stop_dma() {
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static void digital_signal_stop_dma() {
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LL_DMA_DisableChannel(DMA1, LL_DMA_CHANNEL_1);
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LL_DMA_DisableChannel(DMA1, LL_DMA_CHANNEL_1);
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LL_DMA_DisableChannel(DMA1, LL_DMA_CHANNEL_2);
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LL_DMA_DisableChannel(DMA1, LL_DMA_CHANNEL_2);
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LL_DMA_ClearFlag_TC1(DMA1);
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LL_DMA_ClearFlag_TC1(DMA1);
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LL_DMA_ClearFlag_TC2(DMA1);
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LL_DMA_ClearFlag_TC2(DMA1);
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}
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}
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void digital_signal_stop_timer() {
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static void digital_signal_stop_timer() {
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LL_TIM_DisableCounter(TIM2);
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LL_TIM_DisableCounter(TIM2);
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LL_TIM_SetCounter(TIM2, 0);
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LL_TIM_SetCounter(TIM2, 0);
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}
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}
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bool digital_signal_setup_dma(DigitalSignal* signal) {
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static bool digital_signal_setup_dma(DigitalSignal* signal) {
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furi_assert(signal);
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furi_assert(signal);
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if(!signal->reload_reg_entries) {
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if(!signal->reload_reg_entries) {
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@@ -186,28 +205,7 @@ bool digital_signal_setup_dma(DigitalSignal* signal) {
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return true;
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return true;
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}
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}
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static void digital_signal_setup_timer() {
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bool digital_signal_update_dma(DigitalSignal* signal) {
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furi_assert(signal);
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if(!signal->reload_reg_entries) {
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return false;
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}
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digital_signal_stop_dma();
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LL_DMA_SetMemoryAddress(DMA1, LL_DMA_CHANNEL_1, (uint32_t)signal->gpio_buff);
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LL_DMA_SetMemoryAddress(DMA1, LL_DMA_CHANNEL_2, (uint32_t)signal->reload_reg_buff);
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LL_DMA_SetDataLength(DMA1, LL_DMA_CHANNEL_1, 2);
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LL_DMA_SetDataLength(DMA1, LL_DMA_CHANNEL_2, signal->reload_reg_entries);
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LL_DMA_EnableChannel(DMA1, LL_DMA_CHANNEL_1);
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LL_DMA_EnableChannel(DMA1, LL_DMA_CHANNEL_2);
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return true;
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}
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void digital_signal_setup_timer() {
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digital_signal_stop_timer();
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digital_signal_stop_timer();
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@@ -220,7 +218,7 @@ void digital_signal_setup_timer() {
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LL_TIM_EnableDMAReq_UPDATE(TIM2);
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LL_TIM_EnableDMAReq_UPDATE(TIM2);
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}
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}
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void digital_signal_start_timer() {
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static void digital_signal_start_timer() {
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LL_TIM_GenerateEvent_UPDATE(TIM2);
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LL_TIM_GenerateEvent_UPDATE(TIM2);
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LL_TIM_EnableCounter(TIM2);
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LL_TIM_EnableCounter(TIM2);
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}
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}
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@@ -254,16 +252,34 @@ void digital_signal_send(DigitalSignal* signal, const GpioPin* gpio) {
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}
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}
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DigitalSequence* digital_sequence_alloc(uint32_t size) {
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DigitalSequence* sequence = malloc(sizeof(DigitalSequence));
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sequence->signals_size = 32;
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void digital_sequence_alloc_signals(DigitalSequence* sequence, uint32_t size) {
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sequence->signals_size = size;
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sequence->signals = malloc(sequence->signals_size * sizeof(DigitalSignal*));
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sequence->signals = malloc(sequence->signals_size * sizeof(DigitalSignal*));
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sequence->signals_prolonged = malloc(sequence->signals_size * sizeof(bool));
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}
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void digital_sequence_alloc_sequence(DigitalSequence* sequence, uint32_t size) {
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sequence->sequence_used = 0;
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sequence->sequence_used = 0;
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sequence->sequence_size = size;
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sequence->sequence_size = size;
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sequence->sequence = malloc(sequence->sequence_size);
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sequence->sequence = malloc(sequence->sequence_size);
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}
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DigitalSequence* digital_sequence_alloc(uint32_t size, const GpioPin* gpio) {
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DigitalSequence* sequence = malloc(sizeof(DigitalSequence));
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//gpio = &gpio_ext_pb2;
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//furi_hal_gpio_init(&gpio_ext_pb2, GpioModeOutputPushPull, GpioPullNo, GpioSpeedVeryHigh);
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//furi_hal_gpio_init(&gpio_ext_pc3, GpioModeOutputPushPull, GpioPullNo, GpioSpeedVeryHigh);
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//furi_hal_gpio_write(&gpio_ext_pb2, false);
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//furi_hal_gpio_write(&gpio_ext_pc3, false);
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sequence->gpio = gpio;
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digital_sequence_alloc_signals(sequence, 32);
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digital_sequence_alloc_sequence(sequence, size);
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return sequence;
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return sequence;
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}
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}
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@@ -282,6 +298,10 @@ void digital_sequence_set_signal(DigitalSequence* sequence, uint8_t signal_index
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furi_assert(signal_index < sequence->signals_size);
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furi_assert(signal_index < sequence->signals_size);
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sequence->signals[signal_index] = signal;
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sequence->signals[signal_index] = signal;
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signal->gpio = sequence->gpio;
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signal->reload_reg_remainder = 0;
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digital_signal_prepare(signal);
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}
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}
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void digital_sequence_add(DigitalSequence* sequence, uint8_t signal_index) {
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void digital_sequence_add(DigitalSequence* sequence, uint8_t signal_index) {
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@@ -296,12 +316,63 @@ void digital_sequence_add(DigitalSequence* sequence, uint8_t signal_index) {
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sequence->sequence[sequence->sequence_used++] = signal_index;
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sequence->sequence[sequence->sequence_used++] = signal_index;
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}
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}
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bool digital_sequence_send_signal(DigitalSignal* signal) {
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void digital_signal_update_dma(DigitalSignal* signal) {
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volatile uint32_t dma1_data[] = {
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/* R6 */ (uint32_t)&(DMA1_Channel1->CCR),
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/* R7 */ DMA1_Channel1->CCR & ~DMA_CCR_EN,
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/* R8 */ 2,
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/* R9 */ (uint32_t)&(signal->gpio->port->BSRR),
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/* R10 */ (uint32_t)signal->gpio_buff,
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/* R11 */ DMA1_Channel1->CCR | DMA_CCR_EN };
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volatile uint32_t dma2_data[] = {
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/* R0 */ (uint32_t)&(DMA1_Channel2->CCR),
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/* R1 */ DMA1_Channel2->CCR & ~DMA_CCR_EN,
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/* R2 */ (uint32_t)signal->reload_reg_entries,
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/* R3 */ (uint32_t)&(TIM2->ARR),
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/* R4 */ (uint32_t)signal->reload_reg_buff,
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/* R5 */ DMA1_Channel2->CCR | DMA_CCR_EN };
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/* hurry when setting up next transfer */
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asm volatile("\t"
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"MOV r6, %[data1]\n\t"
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"MOV r7, %[data2]\n\t"
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"PUSH {r0-r12}\n\t"
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"LDM r7, {r0-r5}\n\t"
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"LDM r6, {r6-r11}\n\t"
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"loop:\n\t"
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"LDR r12, [r0, #4]\n\t"
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"CMP r12, #0\n\t"
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"BNE loop\n\t"
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"STM r6, {r7-r10}\n\t" /* disable channel and set up new parameters */
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"STR r11, [r6, #0]\n\t" /* enable channel again */
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"STM r0, {r1-r4}\n\t" /* disable channel and set up new parameters */
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"STR r5, [r0, #0]\n\t" /* enable channel again */
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"POP {r0-r12}\n\t"
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: /* no outputs*/
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: /* inputs */
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[data1] "r" (dma1_data),
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[data2] "r" (dma2_data)
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: "r6", "r7" );
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LL_DMA_ClearFlag_TC1(DMA1);
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LL_DMA_ClearFlag_TC2(DMA1);
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}
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static bool digital_sequence_send_signal(DigitalSignal* signal) {
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furi_assert(signal);
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furi_assert(signal);
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/* the first iteration has to set up the whole machinery */
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/* the first iteration has to set up the whole machinery */
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if(!LL_DMA_IsEnabledChannel(DMA1, LL_DMA_CHANNEL_1)) {
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if(!LL_DMA_IsEnabledChannel(DMA1, LL_DMA_CHANNEL_1)) {
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if(!digital_signal_setup_dma(signal)) {
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if(!digital_signal_setup_dma(signal)) {
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FURI_LOG_D(TAG, "digital_sequence_send_signal: Signal has no entries, aborting");
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FURI_LOG_D(TAG, "digital_sequence_send_signal: Signal has no entries, aborting");
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return false;
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return false;
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@@ -309,15 +380,9 @@ bool digital_sequence_send_signal(DigitalSignal* signal) {
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digital_signal_setup_timer();
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digital_signal_setup_timer();
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digital_signal_start_timer();
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digital_signal_start_timer();
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} else {
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} else {
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/* transfer was already active, wait till DMA is done and the last timer ticks are running */
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while(!LL_DMA_IsActiveFlag_TC2(DMA1)) {
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}
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/* configure next polarities and timings */
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/* configure next polarities and timings */
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if(!digital_signal_update_dma(signal)) {
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digital_signal_update_dma(signal);
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FURI_LOG_D(TAG, "digital_sequence_send_signal: Signal has no entries, aborting");
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return false;
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}
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}
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}
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return true;
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return true;
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@@ -346,21 +411,20 @@ DigitalSignal* digital_sequence_bake(DigitalSequence* sequence) {
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return ret;
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return ret;
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}
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}
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bool digital_sequence_send(DigitalSequence* sequence, const GpioPin* gpio) {
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bool digital_sequence_send(DigitalSequence* sequence) {
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furi_assert(sequence);
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furi_assert(sequence);
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//gpio = &gpio_ext_pb2;
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furi_hal_gpio_init(sequence->gpio, GpioModeOutputPushPull, GpioPullNo, GpioSpeedVeryHigh);
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furi_hal_gpio_init(gpio, GpioModeOutputPushPull, GpioPullNo, GpioSpeedVeryHigh);
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if(sequence->bake) {
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if(sequence->bake) {
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DigitalSignal* sig = digital_sequence_bake(sequence);
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DigitalSignal* sig = digital_sequence_bake(sequence);
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digital_signal_send(sig, gpio);
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digital_signal_send(sig, sequence->gpio);
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digital_signal_free(sig);
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digital_signal_free(sig);
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return true;
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return true;
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}
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}
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uint32_t remainder = 0;
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int32_t remainder = 0;
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for(uint32_t pos = 0; pos < sequence->sequence_used; pos++) {
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for(uint32_t pos = 0; pos < sequence->sequence_used; pos++) {
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uint8_t signal_index = sequence->sequence[pos];
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uint8_t signal_index = sequence->sequence[pos];
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@@ -373,25 +437,52 @@ bool digital_sequence_send(DigitalSequence* sequence, const GpioPin* gpio) {
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return false;
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return false;
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}
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}
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/* take over previous remainder */
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/* when we are too late more than half a tick, make the first edge temporarily longer */
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sig->reload_reg_remainder = remainder;
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bool needs_prolongation = false;
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sig->gpio = gpio;
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digital_signal_prepare(sig);
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remainder = sig->reload_reg_remainder;
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if(!digital_sequence_send_signal(sig)) {
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if(remainder >= T_TIM_DIV2) {
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remainder -= T_TIM;
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needs_prolongation = true;
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}
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/* update the total remainder */
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remainder += sig->reload_reg_remainder;
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/* do we need to update the prolongation? */
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if(needs_prolongation != sequence->signals_prolonged[signal_index]) {
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if(needs_prolongation) {
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sig->edge_timings[0]++;
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} else {
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sig->edge_timings[0]--;
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}
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sequence->signals_prolonged[signal_index] = needs_prolongation;
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}
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bool success = digital_sequence_send_signal(sig);
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if(!success) {
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digital_signal_stop_timer();
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digital_signal_stop_timer();
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digital_signal_stop_dma();
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digital_signal_stop_dma();
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return false;
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return false;
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}
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}
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}
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}
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while(!LL_DMA_IsActiveFlag_TC2(DMA1)) {
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while(LL_DMA_GetDataLength(DMA1, LL_DMA_CHANNEL_2)) {
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}
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}
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digital_signal_stop_timer();
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digital_signal_stop_timer();
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digital_signal_stop_dma();
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digital_signal_stop_dma();
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/* undo previously prolonged edges */
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for(uint32_t pos = 0; pos < sequence->signals_size; pos++) {
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DigitalSignal *sig = sequence->signals[pos];
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if(sig && sequence->signals_prolonged[pos]) {
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sig->edge_timings[0]--;
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sequence->signals_prolonged[pos] = false;
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}
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}
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return true;
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return true;
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}
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}
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@@ -35,13 +35,16 @@ typedef struct {
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uint32_t sequence_used;
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uint32_t sequence_used;
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uint32_t sequence_size;
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uint32_t sequence_size;
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DigitalSignal** signals;
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DigitalSignal** signals;
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bool* signals_prolonged;
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uint8_t* sequence;
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uint8_t* sequence;
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const GpioPin* gpio;
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} DigitalSequence;
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} DigitalSequence;
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DigitalSignal* digital_signal_alloc(uint32_t max_edges_cnt);
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DigitalSignal* digital_signal_alloc(uint32_t max_edges_cnt);
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void digital_signal_free(DigitalSignal* signal);
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void digital_signal_free(DigitalSignal* signal);
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void digital_signal_add(DigitalSignal* signal, uint32_t ticks);
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void digital_signal_add(DigitalSignal* signal, uint32_t ticks);
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void digital_signal_add_pulse(DigitalSignal* signal, uint32_t ticks, bool level);
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bool digital_signal_append(DigitalSignal* signal_a, DigitalSignal* signal_b);
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bool digital_signal_append(DigitalSignal* signal_a, DigitalSignal* signal_b);
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void digital_signal_prepare(DigitalSignal* signal);
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void digital_signal_prepare(DigitalSignal* signal);
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bool digital_signal_get_start_level(DigitalSignal* signal);
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bool digital_signal_get_start_level(DigitalSignal* signal);
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@@ -50,12 +53,11 @@ uint32_t digital_signal_get_edge(DigitalSignal* signal, uint32_t edge_num);
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void digital_signal_send(DigitalSignal* signal, const GpioPin* gpio);
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void digital_signal_send(DigitalSignal* signal, const GpioPin* gpio);
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DigitalSequence* digital_sequence_alloc(uint32_t size);
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DigitalSequence* digital_sequence_alloc(uint32_t size, const GpioPin* gpio);
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void digital_sequence_free(DigitalSequence* sequence);
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void digital_sequence_free(DigitalSequence* sequence);
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void digital_sequence_set_signal(DigitalSequence* sequence, uint8_t signal_index, DigitalSignal* signal);
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void digital_sequence_set_signal(DigitalSequence* sequence, uint8_t signal_index, DigitalSignal* signal);
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void digital_sequence_add(DigitalSequence* sequence, uint8_t signal_index);
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void digital_sequence_add(DigitalSequence* sequence, uint8_t signal_index);
|
||||||
bool digital_sequence_send_signal(DigitalSignal* signal);
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bool digital_sequence_send(DigitalSequence* sequence);
|
||||||
bool digital_sequence_send(DigitalSequence* sequence, const GpioPin* gpio);
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|
||||||
void digital_sequence_clear(DigitalSequence* sequence);
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void digital_sequence_clear(DigitalSequence* sequence);
|
||||||
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|
||||||
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|
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|
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Reference in New Issue
Block a user