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12 Commits
| Author | SHA1 | Date | |
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5b062a222c | ||
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664ee56dc5 | ||
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388b2c2de0 | ||
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ce4a3d9950 | ||
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ac9f57600d | ||
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3fe2fc9b56 | ||
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4cd4b168b4 | ||
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f07479419c | ||
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54b51269ab | ||
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d72ab25d46 | ||
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af755380b7 | ||
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04db724295 |
@@ -19,10 +19,27 @@ void I2SAudioSpeaker::setup() {
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ESP_LOGCONFIG(TAG, "Setting up I2S Audio Speaker...");
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this->buffer_queue_ = xQueueCreate(BUFFER_COUNT, sizeof(DataEvent));
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if (this->buffer_queue_ == nullptr) {
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ESP_LOGE(TAG, "Failed to create buffer queue");
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this->mark_failed();
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return;
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}
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this->event_queue_ = xQueueCreate(BUFFER_COUNT, sizeof(TaskEvent));
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if (this->event_queue_ == nullptr) {
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ESP_LOGE(TAG, "Failed to create event queue");
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this->mark_failed();
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return;
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}
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}
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void I2SAudioSpeaker::start() { this->state_ = speaker::STATE_STARTING; }
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void I2SAudioSpeaker::start() {
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if (this->is_failed()) {
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ESP_LOGE(TAG, "Cannot start audio, speaker failed to setup");
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return;
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}
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this->state_ = speaker::STATE_STARTING;
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}
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void I2SAudioSpeaker::start_() {
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if (!this->parent_->try_lock()) {
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return; // Waiting for another i2s component to return lock
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@@ -141,6 +158,8 @@ void I2SAudioSpeaker::player_task(void *params) {
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}
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void I2SAudioSpeaker::stop() {
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if (this->is_failed())
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return;
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if (this->state_ == speaker::STATE_STOPPED)
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return;
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if (this->state_ == speaker::STATE_STARTING) {
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@@ -200,6 +219,10 @@ void I2SAudioSpeaker::loop() {
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}
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size_t I2SAudioSpeaker::play(const uint8_t *data, size_t length) {
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if (this->is_failed()) {
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ESP_LOGE(TAG, "Cannot play audio, speaker failed to setup");
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return 0;
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}
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if (this->state_ != speaker::STATE_RUNNING && this->state_ != speaker::STATE_STARTING) {
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this->start();
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}
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@@ -109,6 +109,7 @@ void ImprovSerialComponent::write_data_(std::vector<uint8_t> &data) {
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#if defined(USE_ESP32_VARIANT_ESP32C3) || defined(USE_ESP32_VARIANT_ESP32C6) || defined(USE_ESP32_VARIANT_ESP32S3)
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case logger::UART_SELECTION_USB_SERIAL_JTAG:
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usb_serial_jtag_write_bytes((char *) data.data(), data.size(), 20 / portTICK_PERIOD_MS);
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usb_serial_jtag_ll_txfifo_flush(); // fixes for issue in IDF 4.4.7
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break;
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#endif // USE_ESP32_VARIANT_ESP32C3 || USE_ESP32_VARIANT_ESP32S3
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default:
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@@ -17,6 +17,7 @@
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#if defined(USE_ESP32_VARIANT_ESP32C3) || defined(USE_ESP32_VARIANT_ESP32C6) || defined(USE_ESP32_VARIANT_ESP32S3) || \
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defined(USE_ESP32_VARIANT_ESP32H2)
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#include <driver/usb_serial_jtag.h>
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#include <hal/usb_serial_jtag_ll.h>
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#endif
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#if defined(USE_ESP32_VARIANT_ESP32S2) || defined(USE_ESP32_VARIANT_ESP32S3)
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#include <esp_private/usb_console.h>
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@@ -17,7 +17,7 @@ static const char *const TAG = "voice_assistant";
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static const size_t SAMPLE_RATE_HZ = 16000;
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static const size_t INPUT_BUFFER_SIZE = 32 * SAMPLE_RATE_HZ / 1000; // 32ms * 16kHz / 1000ms
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static const size_t BUFFER_SIZE = 1024 * SAMPLE_RATE_HZ / 1000;
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static const size_t BUFFER_SIZE = 512 * SAMPLE_RATE_HZ / 1000;
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static const size_t SEND_BUFFER_SIZE = INPUT_BUFFER_SIZE * sizeof(int16_t);
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static const size_t RECEIVE_SIZE = 1024;
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static const size_t SPEAKER_BUFFER_SIZE = 16 * RECEIVE_SIZE;
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@@ -71,6 +71,12 @@ void VoiceAssistant::setup() {
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ESP_LOGCONFIG(TAG, "Setting up Voice Assistant...");
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global_voice_assistant = this;
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}
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bool VoiceAssistant::allocate_buffers_() {
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if (this->send_buffer_ != nullptr) {
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return true; // Already allocated
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}
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#ifdef USE_SPEAKER
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if (this->speaker_ != nullptr) {
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@@ -78,8 +84,7 @@ void VoiceAssistant::setup() {
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this->speaker_buffer_ = speaker_allocator.allocate(SPEAKER_BUFFER_SIZE);
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if (this->speaker_buffer_ == nullptr) {
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ESP_LOGW(TAG, "Could not allocate speaker buffer");
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this->mark_failed();
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return;
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return false;
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}
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}
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#endif
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@@ -88,8 +93,7 @@ void VoiceAssistant::setup() {
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this->input_buffer_ = allocator.allocate(INPUT_BUFFER_SIZE);
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if (this->input_buffer_ == nullptr) {
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ESP_LOGW(TAG, "Could not allocate input buffer");
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this->mark_failed();
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return;
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return false;
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}
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#ifdef USE_ESP_ADF
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@@ -99,17 +103,71 @@ void VoiceAssistant::setup() {
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this->ring_buffer_ = RingBuffer::create(BUFFER_SIZE * sizeof(int16_t));
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if (this->ring_buffer_ == nullptr) {
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ESP_LOGW(TAG, "Could not allocate ring buffer");
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this->mark_failed();
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return;
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return false;
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}
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ExternalRAMAllocator<uint8_t> send_allocator(ExternalRAMAllocator<uint8_t>::ALLOW_FAILURE);
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this->send_buffer_ = send_allocator.allocate(SEND_BUFFER_SIZE);
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if (send_buffer_ == nullptr) {
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ESP_LOGW(TAG, "Could not allocate send buffer");
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this->mark_failed();
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return;
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return false;
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}
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return true;
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}
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void VoiceAssistant::clear_buffers_() {
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if (this->send_buffer_ != nullptr) {
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memset(this->send_buffer_, 0, SEND_BUFFER_SIZE);
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}
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if (this->input_buffer_ != nullptr) {
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memset(this->input_buffer_, 0, INPUT_BUFFER_SIZE * sizeof(int16_t));
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}
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if (this->ring_buffer_ != nullptr) {
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this->ring_buffer_->reset();
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}
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#ifdef USE_SPEAKER
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if (this->speaker_buffer_ != nullptr) {
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memset(this->speaker_buffer_, 0, SPEAKER_BUFFER_SIZE);
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this->speaker_buffer_size_ = 0;
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this->speaker_buffer_index_ = 0;
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this->speaker_bytes_received_ = 0;
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}
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#endif
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}
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void VoiceAssistant::deallocate_buffers_() {
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ExternalRAMAllocator<uint8_t> send_deallocator(ExternalRAMAllocator<uint8_t>::ALLOW_FAILURE);
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send_deallocator.deallocate(this->send_buffer_, SEND_BUFFER_SIZE);
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this->send_buffer_ = nullptr;
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if (this->ring_buffer_ != nullptr) {
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this->ring_buffer_.reset();
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this->ring_buffer_ = nullptr;
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}
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#ifdef USE_ESP_ADF
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if (this->vad_instance_ != nullptr) {
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vad_destroy(this->vad_instance_);
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this->vad_instance_ = nullptr;
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}
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#endif
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ExternalRAMAllocator<int16_t> input_deallocator(ExternalRAMAllocator<int16_t>::ALLOW_FAILURE);
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input_deallocator.deallocate(this->input_buffer_, INPUT_BUFFER_SIZE);
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this->input_buffer_ = nullptr;
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#ifdef USE_SPEAKER
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if (this->speaker_buffer_ != nullptr) {
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ExternalRAMAllocator<uint8_t> speaker_deallocator(ExternalRAMAllocator<uint8_t>::ALLOW_FAILURE);
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speaker_deallocator.deallocate(this->speaker_buffer_, SPEAKER_BUFFER_SIZE);
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this->speaker_buffer_ = nullptr;
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}
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#endif
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}
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int VoiceAssistant::read_microphone_() {
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@@ -138,14 +196,13 @@ void VoiceAssistant::loop() {
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}
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this->continuous_ = false;
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this->signal_stop_();
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this->clear_buffers_();
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return;
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}
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switch (this->state_) {
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case State::IDLE: {
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if (this->continuous_ && this->desired_state_ == State::IDLE) {
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this->idle_trigger_->trigger();
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this->ring_buffer_->reset();
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#ifdef USE_ESP_ADF
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if (this->use_wake_word_) {
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this->set_state_(State::START_MICROPHONE, State::WAIT_FOR_VAD);
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@@ -161,8 +218,15 @@ void VoiceAssistant::loop() {
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}
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case State::START_MICROPHONE: {
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ESP_LOGD(TAG, "Starting Microphone");
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memset(this->send_buffer_, 0, SEND_BUFFER_SIZE);
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memset(this->input_buffer_, 0, INPUT_BUFFER_SIZE * sizeof(int16_t));
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if (!this->allocate_buffers_()) {
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this->status_set_error("Failed to allocate buffers");
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return;
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}
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if (this->status_has_error()) {
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this->status_clear_error();
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}
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this->clear_buffers_();
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this->mic_->start();
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this->high_freq_.start();
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this->set_state_(State::STARTING_MICROPHONE);
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@@ -343,10 +407,9 @@ void VoiceAssistant::loop() {
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this->speaker_->stop();
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this->cancel_timeout("speaker-timeout");
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this->cancel_timeout("playing");
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this->speaker_buffer_size_ = 0;
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this->speaker_buffer_index_ = 0;
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this->speaker_bytes_received_ = 0;
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memset(this->speaker_buffer_, 0, SPEAKER_BUFFER_SIZE);
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this->clear_buffers_();
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this->wait_for_stream_end_ = false;
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this->stream_ended_ = false;
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@@ -507,7 +570,6 @@ void VoiceAssistant::request_start(bool continuous, bool silence_detection) {
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if (this->state_ == State::IDLE) {
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this->continuous_ = continuous;
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this->silence_detection_ = silence_detection;
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this->ring_buffer_->reset();
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#ifdef USE_ESP_ADF
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if (this->use_wake_word_) {
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this->set_state_(State::START_MICROPHONE, State::WAIT_FOR_VAD);
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@@ -151,6 +151,10 @@ class VoiceAssistant : public Component {
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void set_wake_word(const std::string &wake_word) { this->wake_word_ = wake_word; }
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protected:
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bool allocate_buffers_();
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void clear_buffers_();
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void deallocate_buffers_();
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int read_microphone_();
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void set_state_(State state);
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void set_state_(State state, State desired_state);
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@@ -37,4 +37,4 @@ async def to_code(config):
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cg.add_library("FS", None)
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cg.add_library("Update", None)
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# https://github.com/esphome/ESPAsyncWebServer/blob/master/library.json
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cg.add_library("esphome/ESPAsyncWebServer-esphome", "3.2.0")
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cg.add_library("esphome/ESPAsyncWebServer-esphome", "3.2.2")
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@@ -1,6 +1,6 @@
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"""Constants used by esphome."""
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__version__ = "2024.5.2"
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__version__ = "2024.5.5"
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ALLOWED_NAME_CHARS = "abcdefghijklmnopqrstuvwxyz0123456789-_"
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VALID_SUBSTITUTIONS_CHARACTERS = (
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@@ -433,6 +433,10 @@ int8_t step_to_accuracy_decimals(float step) {
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return str.length() - dot_pos - 1;
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}
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static const std::string BASE64_CHARS = "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
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"abcdefghijklmnopqrstuvwxyz"
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"0123456789+/";
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static inline bool is_base64(char c) { return (isalnum(c) || (c == '+') || (c == '/')); }
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std::string base64_encode(const std::vector<uint8_t> &buf) { return base64_encode(buf.data(), buf.size()); }
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@@ -435,10 +435,6 @@ std::string value_accuracy_to_string(float value, int8_t accuracy_decimals);
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/// Derive accuracy in decimals from an increment step.
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int8_t step_to_accuracy_decimals(float step);
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static const std::string BASE64_CHARS = "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
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"abcdefghijklmnopqrstuvwxyz"
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"0123456789+/";
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std::string base64_encode(const uint8_t *buf, size_t buf_len);
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std::string base64_encode(const std::vector<uint8_t> &buf);
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@@ -58,7 +58,7 @@ lib_deps =
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SPI ; spi (Arduino built-in)
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Wire ; i2c (Arduino built-int)
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heman/AsyncMqttClient-esphome@1.0.0 ; mqtt
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esphome/ESPAsyncWebServer-esphome@3.2.0 ; web_server_base
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esphome/ESPAsyncWebServer-esphome@3.2.2 ; web_server_base
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fastled/FastLED@3.3.2 ; fastled_base
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mikalhart/TinyGPSPlus@1.0.2 ; gps
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freekode/TM1651@1.0.1 ; tm1651
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