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https://github.com/DarkFlippers/unleashed-firmware
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[FL-2866, FL-2865] SubGhz: add frequency analyzer history (#1810)
* SubGhz: frequency analyzer history * SubGhz: add vibro * SubGhz: turn on the display when receiving a signal * SubGhz: add signal reception indicator * SubGhz: fix indicator * SubGhz: fix FA history Co-authored-by: あく <alleteam@gmail.com>
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061f53cd3c
commit
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4 changed files with 85 additions and 11 deletions
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@ -71,6 +71,8 @@ static int32_t subghz_frequency_analyzer_worker_thread(void* context) {
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.frequency_coarse = 0, .rssi_coarse = 0, .frequency_fine = 0, .rssi_fine = 0};
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.frequency_coarse = 0, .rssi_coarse = 0, .frequency_fine = 0, .rssi_fine = 0};
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float rssi = 0;
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float rssi = 0;
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uint32_t frequency = 0;
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uint32_t frequency = 0;
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float rssi_temp = 0;
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uint32_t frequency_temp = 0;
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CC1101Status status;
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CC1101Status status;
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//Start CC1101
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//Start CC1101
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@ -194,6 +196,9 @@ static int32_t subghz_frequency_analyzer_worker_thread(void* context) {
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TAG, "=:%u:%f", frequency_rssi.frequency_fine, (double)frequency_rssi.rssi_fine);
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TAG, "=:%u:%f", frequency_rssi.frequency_fine, (double)frequency_rssi.rssi_fine);
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instance->sample_hold_counter = 20;
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instance->sample_hold_counter = 20;
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rssi_temp = frequency_rssi.rssi_fine;
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frequency_temp = frequency_rssi.frequency_fine;
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if(instance->filVal) {
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if(instance->filVal) {
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frequency_rssi.frequency_fine =
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frequency_rssi.frequency_fine =
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subghz_frequency_analyzer_worker_expRunningAverageAdaptive(
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subghz_frequency_analyzer_worker_expRunningAverageAdaptive(
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@ -202,7 +207,10 @@ static int32_t subghz_frequency_analyzer_worker_thread(void* context) {
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// Deliver callback
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// Deliver callback
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if(instance->pair_callback) {
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if(instance->pair_callback) {
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instance->pair_callback(
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instance->pair_callback(
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instance->context, frequency_rssi.frequency_fine, frequency_rssi.rssi_fine);
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instance->context,
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frequency_rssi.frequency_fine,
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frequency_rssi.rssi_fine,
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true);
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}
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}
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} else if( // Deliver results coarse
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} else if( // Deliver results coarse
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(frequency_rssi.rssi_coarse > SUBGHZ_FREQUENCY_ANALYZER_THRESHOLD) &&
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(frequency_rssi.rssi_coarse > SUBGHZ_FREQUENCY_ANALYZER_THRESHOLD) &&
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@ -214,6 +222,8 @@ static int32_t subghz_frequency_analyzer_worker_thread(void* context) {
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(double)frequency_rssi.rssi_coarse);
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(double)frequency_rssi.rssi_coarse);
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instance->sample_hold_counter = 20;
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instance->sample_hold_counter = 20;
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rssi_temp = frequency_rssi.rssi_coarse;
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frequency_temp = frequency_rssi.frequency_coarse;
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if(instance->filVal) {
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if(instance->filVal) {
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frequency_rssi.frequency_coarse =
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frequency_rssi.frequency_coarse =
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subghz_frequency_analyzer_worker_expRunningAverageAdaptive(
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subghz_frequency_analyzer_worker_expRunningAverageAdaptive(
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@ -224,14 +234,22 @@ static int32_t subghz_frequency_analyzer_worker_thread(void* context) {
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instance->pair_callback(
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instance->pair_callback(
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instance->context,
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instance->context,
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frequency_rssi.frequency_coarse,
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frequency_rssi.frequency_coarse,
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frequency_rssi.rssi_coarse);
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frequency_rssi.rssi_coarse,
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true);
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}
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}
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} else {
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} else {
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if(instance->sample_hold_counter > 0) {
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if(instance->sample_hold_counter > 0) {
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instance->sample_hold_counter--;
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instance->sample_hold_counter--;
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if(instance->sample_hold_counter == 18) {
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if(instance->pair_callback) {
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instance->pair_callback(
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instance->context, frequency_temp, rssi_temp, false);
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}
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}
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} else {
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} else {
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instance->filVal = 0;
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instance->filVal = 0;
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if(instance->pair_callback) instance->pair_callback(instance->context, 0, 0);
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if(instance->pair_callback)
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instance->pair_callback(instance->context, 0, 0, false);
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}
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}
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}
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}
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}
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}
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@ -5,8 +5,11 @@
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typedef struct SubGhzFrequencyAnalyzerWorker SubGhzFrequencyAnalyzerWorker;
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typedef struct SubGhzFrequencyAnalyzerWorker SubGhzFrequencyAnalyzerWorker;
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typedef void (
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typedef void (*SubGhzFrequencyAnalyzerWorkerPairCallback)(
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*SubGhzFrequencyAnalyzerWorkerPairCallback)(void* context, uint32_t frequency, float rssi);
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void* context,
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uint32_t frequency,
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float rssi,
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bool signal);
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typedef struct {
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typedef struct {
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uint32_t frequency_coarse;
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uint32_t frequency_coarse;
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@ -21,6 +21,8 @@ bool subghz_scene_frequency_analyzer_on_event(void* context, SceneManagerEvent e
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if(event.type == SceneManagerEventTypeCustom) {
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if(event.type == SceneManagerEventTypeCustom) {
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if(event.event == SubGhzCustomEventSceneAnalyzerLock) {
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if(event.event == SubGhzCustomEventSceneAnalyzerLock) {
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notification_message(subghz->notifications, &sequence_set_green_255);
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notification_message(subghz->notifications, &sequence_set_green_255);
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notification_message(subghz->notifications, &sequence_single_vibro);
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notification_message(subghz->notifications, &sequence_display_backlight_on);
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return true;
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return true;
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} else if(event.event == SubGhzCustomEventSceneAnalyzerUnlock) {
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} else if(event.event == SubGhzCustomEventSceneAnalyzerUnlock) {
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notification_message(subghz->notifications, &sequence_reset_rgb);
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notification_message(subghz->notifications, &sequence_reset_rgb);
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@ -25,6 +25,8 @@ struct SubGhzFrequencyAnalyzer {
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typedef struct {
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typedef struct {
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uint32_t frequency;
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uint32_t frequency;
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float rssi;
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float rssi;
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uint32_t history_frequency[3];
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bool signal;
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} SubGhzFrequencyAnalyzerModel;
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} SubGhzFrequencyAnalyzerModel;
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void subghz_frequency_analyzer_set_callback(
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void subghz_frequency_analyzer_set_callback(
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@ -38,8 +40,8 @@ void subghz_frequency_analyzer_set_callback(
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}
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}
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void subghz_frequency_analyzer_draw_rssi(Canvas* canvas, float rssi) {
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void subghz_frequency_analyzer_draw_rssi(Canvas* canvas, float rssi) {
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uint8_t x = 48;
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uint8_t x = 20;
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uint8_t y = 56;
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uint8_t y = 64;
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uint8_t column_number = 0;
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uint8_t column_number = 0;
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if(rssi) {
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if(rssi) {
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rssi = (rssi + 90) / 3;
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rssi = (rssi + 90) / 3;
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@ -53,6 +55,31 @@ void subghz_frequency_analyzer_draw_rssi(Canvas* canvas, float rssi) {
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}
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}
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}
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}
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static void subghz_frequency_analyzer_history_frequency_draw(
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Canvas* canvas,
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SubGhzFrequencyAnalyzerModel* model) {
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char buffer[64];
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uint8_t x = 66;
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uint8_t y = 43;
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canvas_set_font(canvas, FontKeyboard);
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for(uint8_t i = 0; i < 3; i++) {
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if(model->history_frequency[i]) {
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snprintf(
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buffer,
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sizeof(buffer),
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"%03ld.%03ld",
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model->history_frequency[i] / 1000000 % 1000,
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model->history_frequency[i] / 1000 % 1000);
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canvas_draw_str(canvas, x, y + i * 10, buffer);
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} else {
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canvas_draw_str(canvas, x, y + i * 10, "---.---");
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}
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canvas_draw_str(canvas, x + 44, y + i * 10, "MHz");
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}
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canvas_set_font(canvas, FontSecondary);
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}
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void subghz_frequency_analyzer_draw(Canvas* canvas, SubGhzFrequencyAnalyzerModel* model) {
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void subghz_frequency_analyzer_draw(Canvas* canvas, SubGhzFrequencyAnalyzerModel* model) {
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char buffer[64];
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char buffer[64];
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@ -60,9 +87,11 @@ void subghz_frequency_analyzer_draw(Canvas* canvas, SubGhzFrequencyAnalyzerModel
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canvas_set_font(canvas, FontSecondary);
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canvas_set_font(canvas, FontSecondary);
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canvas_draw_str(canvas, 20, 8, "Frequency Analyzer");
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canvas_draw_str(canvas, 20, 8, "Frequency Analyzer");
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canvas_draw_str(canvas, 28, 60, "RSSI");
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canvas_draw_str(canvas, 0, 64, "RSSI");
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subghz_frequency_analyzer_draw_rssi(canvas, model->rssi);
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subghz_frequency_analyzer_draw_rssi(canvas, model->rssi);
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subghz_frequency_analyzer_history_frequency_draw(canvas, model);
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//Frequency
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//Frequency
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canvas_set_font(canvas, FontBigNumbers);
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canvas_set_font(canvas, FontBigNumbers);
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snprintf(
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snprintf(
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@ -71,8 +100,14 @@ void subghz_frequency_analyzer_draw(Canvas* canvas, SubGhzFrequencyAnalyzerModel
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"%03ld.%03ld",
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"%03ld.%03ld",
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model->frequency / 1000000 % 1000,
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model->frequency / 1000000 % 1000,
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model->frequency / 1000 % 1000);
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model->frequency / 1000 % 1000);
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canvas_draw_str(canvas, 8, 35, buffer);
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if(model->signal) {
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canvas_draw_icon(canvas, 96, 24, &I_MHz_25x11);
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canvas_draw_box(canvas, 4, 12, 121, 22);
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canvas_set_color(canvas, ColorWhite);
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} else {
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}
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canvas_draw_str(canvas, 8, 30, buffer);
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canvas_draw_icon(canvas, 96, 19, &I_MHz_25x11);
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}
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}
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bool subghz_frequency_analyzer_input(InputEvent* event, void* context) {
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bool subghz_frequency_analyzer_input(InputEvent* event, void* context) {
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@ -85,12 +120,24 @@ bool subghz_frequency_analyzer_input(InputEvent* event, void* context) {
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return true;
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return true;
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}
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}
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void subghz_frequency_analyzer_pair_callback(void* context, uint32_t frequency, float rssi) {
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void subghz_frequency_analyzer_pair_callback(
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void* context,
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uint32_t frequency,
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float rssi,
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bool signal) {
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SubGhzFrequencyAnalyzer* instance = context;
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SubGhzFrequencyAnalyzer* instance = context;
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if((rssi == 0.f) && (instance->locked)) {
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if((rssi == 0.f) && (instance->locked)) {
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if(instance->callback) {
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if(instance->callback) {
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instance->callback(SubGhzCustomEventSceneAnalyzerUnlock, instance->context);
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instance->callback(SubGhzCustomEventSceneAnalyzerUnlock, instance->context);
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}
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}
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//update history
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with_view_model(
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instance->view, (SubGhzFrequencyAnalyzerModel * model) {
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model->history_frequency[2] = model->history_frequency[1];
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model->history_frequency[1] = model->history_frequency[0];
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model->history_frequency[0] = model->frequency;
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return false;
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});
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} else if((rssi != 0.f) && (!instance->locked)) {
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} else if((rssi != 0.f) && (!instance->locked)) {
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if(instance->callback) {
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if(instance->callback) {
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instance->callback(SubGhzCustomEventSceneAnalyzerLock, instance->context);
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instance->callback(SubGhzCustomEventSceneAnalyzerLock, instance->context);
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@ -102,6 +149,7 @@ void subghz_frequency_analyzer_pair_callback(void* context, uint32_t frequency,
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instance->view, (SubGhzFrequencyAnalyzerModel * model) {
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instance->view, (SubGhzFrequencyAnalyzerModel * model) {
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model->rssi = rssi;
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model->rssi = rssi;
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model->frequency = frequency;
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model->frequency = frequency;
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model->signal = 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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}
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}
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@ -124,6 +172,9 @@ void subghz_frequency_analyzer_enter(void* context) {
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instance->view, (SubGhzFrequencyAnalyzerModel * model) {
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instance->view, (SubGhzFrequencyAnalyzerModel * model) {
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model->rssi = 0;
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model->rssi = 0;
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model->frequency = 0;
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model->frequency = 0;
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model->history_frequency[2] = 0;
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model->history_frequency[1] = 0;
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model->history_frequency[0] = 0;
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return true;
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return true;
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});
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});
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}
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}
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