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@ -273,28 +273,27 @@ void VoiceAssistant::loop() {
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bool playing = false;
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#ifdef USE_SPEAKER
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if (this->speaker_ != nullptr) {
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ssize_t received_len = 0;
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if (this->speaker_buffer_index_ + RECEIVE_SIZE < SPEAKER_BUFFER_SIZE) {
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auto len = this->socket_->read(this->speaker_buffer_ + this->speaker_buffer_index_, RECEIVE_SIZE);
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if (len > 0) {
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this->speaker_buffer_index_ += len;
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this->speaker_buffer_size_ += len;
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received_len = this->socket_->read(this->speaker_buffer_ + this->speaker_buffer_index_, RECEIVE_SIZE);
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if (received_len > 0) {
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this->speaker_buffer_index_ += received_len;
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this->speaker_buffer_size_ += received_len;
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this->speaker_bytes_received_ += received_len;
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}
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} else {
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ESP_LOGW(TAG, "Receive buffer full");
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}
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if (this->speaker_buffer_size_ > 0) {
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size_t written = this->speaker_->play(this->speaker_buffer_, this->speaker_buffer_size_);
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if (written > 0) {
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memmove(this->speaker_buffer_, this->speaker_buffer_ + written, this->speaker_buffer_size_ - written);
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this->speaker_buffer_size_ -= written;
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this->speaker_buffer_index_ -= written;
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this->set_timeout("speaker-timeout", 2000, [this]() { this->speaker_->stop(); });
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} else {
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ESP_LOGW(TAG, "Speaker buffer full");
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}
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ESP_LOGD(TAG, "Receive buffer full");
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}
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// Build a small buffer of audio before sending to the speaker
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if (this->speaker_bytes_received_ > RECEIVE_SIZE * 4)
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this->write_speaker_();
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if (this->wait_for_stream_end_) {
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this->cancel_timeout("playing");
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if (this->stream_ended_ && received_len < 0) {
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ESP_LOGD(TAG, "End of audio stream received");
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this->cancel_timeout("speaker-timeout");
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this->set_state_(State::RESPONSE_FINISHED, State::RESPONSE_FINISHED);
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}
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break; // We dont want to timeout here as the STREAM_END event will take care of that.
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}
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playing = this->speaker_->is_running();
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@ -316,14 +315,26 @@ void VoiceAssistant::loop() {
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case State::RESPONSE_FINISHED: {
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#ifdef USE_SPEAKER
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if (this->speaker_ != nullptr) {
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if (this->speaker_buffer_size_ > 0) {
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this->write_speaker_();
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break;
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}
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if (this->speaker_->has_buffered_data() || this->speaker_->is_running()) {
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break;
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}
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ESP_LOGD(TAG, "Speaker has finished outputting all audio");
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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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}
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this->wait_for_stream_end_ = false;
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this->stream_ended_ = false;
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this->tts_stream_end_trigger_->trigger();
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}
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#endif
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this->set_state_(State::IDLE, State::IDLE);
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break;
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@ -333,6 +344,20 @@ void VoiceAssistant::loop() {
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}
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}
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void VoiceAssistant::write_speaker_() {
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if (this->speaker_buffer_size_ > 0) {
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size_t written = this->speaker_->play(this->speaker_buffer_, this->speaker_buffer_size_);
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if (written > 0) {
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memmove(this->speaker_buffer_, this->speaker_buffer_ + written, this->speaker_buffer_size_ - written);
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this->speaker_buffer_size_ -= written;
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this->speaker_buffer_index_ -= written;
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this->set_timeout("speaker-timeout", 5000, [this]() { this->speaker_->stop(); });
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} else {
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ESP_LOGD(TAG, "Speaker buffer full, trying again next loop");
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}
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}
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}
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void VoiceAssistant::client_subscription(api::APIConnection *client, bool subscribe) {
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if (!subscribe) {
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if (this->api_client_ == nullptr || client != this->api_client_) {
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@ -503,21 +528,20 @@ void VoiceAssistant::on_event(const api::VoiceAssistantEventResponse &msg) {
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switch (msg.event_type) {
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case api::enums::VOICE_ASSISTANT_RUN_START:
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ESP_LOGD(TAG, "Assist Pipeline running");
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this->start_trigger_->trigger();
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this->defer([this]() { this->start_trigger_->trigger(); });
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break;
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case api::enums::VOICE_ASSISTANT_WAKE_WORD_START:
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break;
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case api::enums::VOICE_ASSISTANT_WAKE_WORD_END: {
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ESP_LOGD(TAG, "Wake word detected");
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this->wake_word_detected_trigger_->trigger();
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this->defer([this]() { this->wake_word_detected_trigger_->trigger(); });
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break;
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}
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case api::enums::VOICE_ASSISTANT_STT_START:
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ESP_LOGD(TAG, "STT started");
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this->listening_trigger_->trigger();
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this->defer([this]() { this->listening_trigger_->trigger(); });
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break;
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case api::enums::VOICE_ASSISTANT_STT_END: {
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this->set_state_(State::STOP_MICROPHONE, State::AWAITING_RESPONSE);
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std::string text;
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for (auto arg : msg.data) {
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if (arg.name == "text") {
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@ -529,12 +553,12 @@ void VoiceAssistant::on_event(const api::VoiceAssistantEventResponse &msg) {
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return;
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}
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ESP_LOGD(TAG, "Speech recognised as: \"%s\"", text.c_str());
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this->stt_end_trigger_->trigger(text);
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this->defer([this, text]() { this->stt_end_trigger_->trigger(text); });
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break;
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}
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case api::enums::VOICE_ASSISTANT_INTENT_START:
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ESP_LOGD(TAG, "Intent started");
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this->intent_start_trigger_->trigger();
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this->defer([this]() { this->intent_start_trigger_->trigger(); });
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break;
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case api::enums::VOICE_ASSISTANT_INTENT_END: {
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for (auto arg : msg.data) {
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@ -542,7 +566,7 @@ void VoiceAssistant::on_event(const api::VoiceAssistantEventResponse &msg) {
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this->conversation_id_ = std::move(arg.value);
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}
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}
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this->intent_end_trigger_->trigger();
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this->defer([this]() { this->intent_end_trigger_->trigger(); });
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break;
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}
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case api::enums::VOICE_ASSISTANT_TTS_START: {
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@ -557,10 +581,12 @@ void VoiceAssistant::on_event(const api::VoiceAssistantEventResponse &msg) {
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return;
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}
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ESP_LOGD(TAG, "Response: \"%s\"", text.c_str());
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this->defer([this, text]() {
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this->tts_start_trigger_->trigger(text);
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#ifdef USE_SPEAKER
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this->speaker_->start();
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#endif
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});
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break;
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}
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case api::enums::VOICE_ASSISTANT_TTS_END: {
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@ -575,14 +601,16 @@ void VoiceAssistant::on_event(const api::VoiceAssistantEventResponse &msg) {
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return;
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}
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ESP_LOGD(TAG, "Response URL: \"%s\"", url.c_str());
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this->defer([this, url]() {
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#ifdef USE_MEDIA_PLAYER
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if (this->media_player_ != nullptr) {
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this->media_player_->make_call().set_media_url(url).perform();
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}
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#endif
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this->tts_end_trigger_->trigger(url);
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});
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State new_state = this->local_output_ ? State::STREAMING_RESPONSE : State::IDLE;
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this->set_state_(new_state, new_state);
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this->tts_end_trigger_->trigger(url);
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break;
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}
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case api::enums::VOICE_ASSISTANT_RUN_END: {
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@ -599,7 +627,7 @@ void VoiceAssistant::on_event(const api::VoiceAssistantEventResponse &msg) {
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this->set_state_(State::IDLE, State::IDLE);
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}
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}
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this->end_trigger_->trigger();
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this->defer([this]() { this->end_trigger_->trigger(); });
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break;
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}
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case api::enums::VOICE_ASSISTANT_ERROR: {
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@ -617,8 +645,10 @@ void VoiceAssistant::on_event(const api::VoiceAssistantEventResponse &msg) {
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return;
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} else if (code == "wake-provider-missing" || code == "wake-engine-missing") {
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// Wake word is not set up or not ready on Home Assistant so stop and do not retry until user starts again.
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this->defer([this, code, message]() {
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this->request_stop();
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this->error_trigger_->trigger(code, message);
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});
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return;
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}
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ESP_LOGE(TAG, "Error: %s - %s", code.c_str(), message.c_str());
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@ -626,32 +656,32 @@ void VoiceAssistant::on_event(const api::VoiceAssistantEventResponse &msg) {
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this->signal_stop_();
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this->set_state_(State::STOP_MICROPHONE, State::IDLE);
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}
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this->error_trigger_->trigger(code, message);
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this->defer([this, code, message]() { this->error_trigger_->trigger(code, message); });
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break;
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}
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case api::enums::VOICE_ASSISTANT_TTS_STREAM_START: {
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#ifdef USE_SPEAKER
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this->wait_for_stream_end_ = true;
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ESP_LOGD(TAG, "TTS stream start");
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this->tts_stream_start_trigger_->trigger();
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this->defer([this] { this->tts_stream_start_trigger_->trigger(); });
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#endif
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break;
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}
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case api::enums::VOICE_ASSISTANT_TTS_STREAM_END: {
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this->set_state_(State::RESPONSE_FINISHED, State::IDLE);
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#ifdef USE_SPEAKER
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this->stream_ended_ = true;
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ESP_LOGD(TAG, "TTS stream end");
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this->tts_stream_end_trigger_->trigger();
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#endif
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break;
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}
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case api::enums::VOICE_ASSISTANT_STT_VAD_START:
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ESP_LOGD(TAG, "Starting STT by VAD");
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this->stt_vad_start_trigger_->trigger();
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this->defer([this]() { this->stt_vad_start_trigger_->trigger(); });
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break;
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case api::enums::VOICE_ASSISTANT_STT_VAD_END:
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ESP_LOGD(TAG, "STT by VAD end");
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this->stt_vad_end_trigger_->trigger();
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this->set_state_(State::STOP_MICROPHONE, State::AWAITING_RESPONSE);
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this->defer([this]() { this->stt_vad_end_trigger_->trigger(); });
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break;
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default:
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ESP_LOGD(TAG, "Unhandled event type: %d", msg.event_type);
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