mirror of
https://github.com/DarkFlippers/unleashed-firmware.git
synced 2024-12-20 20:01:54 +03:00
311 lines
9.9 KiB
C
311 lines
9.9 KiB
C
#include "../signal_gen_app_i.h"
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#include <furi_hal.h>
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#include <gui/elements.h>
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#include <signal_generator_icons.h>
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typedef enum {
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LineIndexChannel,
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LineIndexFrequency,
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LineIndexDuty,
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LineIndexTotalCount
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} LineIndex;
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static const char* const pwm_ch_names[] = {"2(A7)", "4(A4)"};
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struct SignalGenPwm {
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View* view;
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SignalGenPwmViewCallback callback;
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void* context;
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};
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typedef struct {
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LineIndex line_sel;
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bool edit_mode;
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uint8_t edit_digit;
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uint8_t channel_id;
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uint32_t freq;
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uint8_t duty;
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} SignalGenPwmViewModel;
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#define ITEM_H 64 / 3
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#define ITEM_W 128
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#define VALUE_X 100
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#define VALUE_W 45
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#define FREQ_VALUE_X 62
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#define FREQ_MAX 1000000UL
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#define FREQ_DIGITS_NB 7
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static void pwm_set_config(SignalGenPwm* pwm) {
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FuriHalPwmOutputId channel;
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uint32_t freq;
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uint8_t duty;
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with_view_model(
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pwm->view,
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SignalGenPwmViewModel * model,
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{
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channel = model->channel_id;
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freq = model->freq;
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duty = model->duty;
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},
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false);
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furi_assert(pwm->callback);
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pwm->callback(channel, freq, duty, pwm->context);
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}
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static void pwm_channel_change(SignalGenPwmViewModel* model, InputEvent* event) {
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if(event->key == InputKeyLeft) {
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if(model->channel_id > 0) {
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model->channel_id--;
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}
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} else if(event->key == InputKeyRight) {
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if(model->channel_id < (COUNT_OF(pwm_ch_names) - 1)) {
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model->channel_id++;
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}
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}
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}
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static void pwm_duty_change(SignalGenPwmViewModel* model, InputEvent* event) {
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if(event->key == InputKeyLeft) {
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if(model->duty > 0) {
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model->duty--;
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}
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} else if(event->key == InputKeyRight) {
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if(model->duty < 100) {
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model->duty++;
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}
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}
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}
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static bool pwm_freq_edit(SignalGenPwmViewModel* model, InputEvent* event) {
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bool consumed = false;
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if((event->type == InputTypeShort) || (event->type == InputTypeRepeat)) {
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if(event->key == InputKeyRight) {
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if(model->edit_digit > 0) {
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model->edit_digit--;
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}
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consumed = true;
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} else if(event->key == InputKeyLeft) {
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if(model->edit_digit < (FREQ_DIGITS_NB - 1)) {
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model->edit_digit++;
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}
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consumed = true;
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} else if(event->key == InputKeyUp) {
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uint32_t step = 1;
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for(uint8_t i = 0; i < model->edit_digit; i++) {
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step *= 10;
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}
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if((model->freq + step) < FREQ_MAX) {
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model->freq += step;
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} else {
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model->freq = FREQ_MAX;
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}
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consumed = true;
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} else if(event->key == InputKeyDown) {
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uint32_t step = 1;
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for(uint8_t i = 0; i < model->edit_digit; i++) {
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step *= 10;
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}
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if(model->freq > (step + 1)) {
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model->freq -= step;
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} else {
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model->freq = 1;
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}
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consumed = true;
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}
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}
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return consumed;
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}
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static void signal_gen_pwm_draw_callback(Canvas* canvas, void* _model) {
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SignalGenPwmViewModel* model = _model;
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char* line_label = NULL;
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char val_text[16];
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for(size_t line = 0; line < LineIndexTotalCount; line++) {
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if(line == LineIndexChannel) {
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line_label = "GPIO Pin";
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} else if(line == LineIndexFrequency) {
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line_label = "Frequency";
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} else if(line == LineIndexDuty) { //-V547
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line_label = "Pulse width";
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}
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canvas_set_color(canvas, ColorBlack);
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if(line == model->line_sel) {
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elements_slightly_rounded_box(canvas, 0, ITEM_H * line + 1, ITEM_W, ITEM_H - 1);
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canvas_set_color(canvas, ColorWhite);
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}
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uint8_t text_y = ITEM_H * line + ITEM_H / 2 + 2;
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canvas_draw_str_aligned(canvas, 6, text_y, AlignLeft, AlignCenter, line_label);
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if(line == LineIndexChannel) {
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snprintf(val_text, sizeof(val_text), "%s", pwm_ch_names[model->channel_id]);
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canvas_draw_str_aligned(canvas, VALUE_X, text_y, AlignCenter, AlignCenter, val_text);
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if(model->channel_id != 0) {
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canvas_draw_str_aligned(
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canvas, VALUE_X - VALUE_W / 2, text_y, AlignCenter, AlignCenter, "<");
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}
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if(model->channel_id != (COUNT_OF(pwm_ch_names) - 1)) {
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canvas_draw_str_aligned(
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canvas, VALUE_X + VALUE_W / 2, text_y, AlignCenter, AlignCenter, ">");
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}
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} else if(line == LineIndexFrequency) {
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snprintf(val_text, sizeof(val_text), "%7lu Hz", model->freq);
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canvas_set_font(canvas, FontKeyboard);
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canvas_draw_str_aligned(
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canvas, FREQ_VALUE_X, text_y, AlignLeft, AlignCenter, val_text);
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canvas_set_font(canvas, FontSecondary);
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if(model->edit_mode) {
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uint8_t icon_x = (FREQ_VALUE_X) + (FREQ_DIGITS_NB - model->edit_digit - 1) * 6;
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canvas_draw_icon(canvas, icon_x, text_y - 9, &I_SmallArrowUp_3x5);
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canvas_draw_icon(canvas, icon_x, text_y + 5, &I_SmallArrowDown_3x5);
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}
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} else if(line == LineIndexDuty) { //-V547
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snprintf(val_text, sizeof(val_text), "%d%%", model->duty);
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canvas_draw_str_aligned(canvas, VALUE_X, text_y, AlignCenter, AlignCenter, val_text);
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if(model->duty != 0) {
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canvas_draw_str_aligned(
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canvas, VALUE_X - VALUE_W / 2, text_y, AlignCenter, AlignCenter, "<");
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}
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if(model->duty != 100) {
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canvas_draw_str_aligned(
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canvas, VALUE_X + VALUE_W / 2, text_y, AlignCenter, AlignCenter, ">");
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}
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}
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}
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}
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static bool signal_gen_pwm_input_callback(InputEvent* event, void* context) {
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furi_assert(context);
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SignalGenPwm* pwm = context;
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bool consumed = false;
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bool need_update = false;
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with_view_model(
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pwm->view,
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SignalGenPwmViewModel * model,
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{
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if(model->edit_mode == false) {
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if((event->type == InputTypeShort) || (event->type == InputTypeRepeat)) {
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if(event->key == InputKeyUp) {
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if(model->line_sel == 0) {
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model->line_sel = LineIndexTotalCount - 1;
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} else {
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model->line_sel =
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CLAMP(model->line_sel - 1, LineIndexTotalCount - 1, 0);
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}
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consumed = true;
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} else if(event->key == InputKeyDown) {
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if(model->line_sel == LineIndexTotalCount - 1) {
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model->line_sel = 0;
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} else {
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model->line_sel =
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CLAMP(model->line_sel + 1, LineIndexTotalCount - 1, 0);
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}
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consumed = true;
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} else if((event->key == InputKeyLeft) || (event->key == InputKeyRight)) {
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if(model->line_sel == LineIndexChannel) {
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pwm_channel_change(model, event);
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need_update = true;
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} else if(model->line_sel == LineIndexDuty) {
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pwm_duty_change(model, event);
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need_update = true;
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} else if(model->line_sel == LineIndexFrequency) {
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model->edit_mode = true;
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}
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consumed = true;
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} else if(event->key == InputKeyOk) {
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if(model->line_sel == LineIndexFrequency) {
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model->edit_mode = true;
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}
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consumed = true;
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}
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}
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} else {
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if((event->key == InputKeyOk) || (event->key == InputKeyBack)) {
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if(event->type == InputTypeShort) {
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model->edit_mode = false;
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consumed = true;
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}
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} else {
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if(model->line_sel == LineIndexFrequency) {
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consumed = pwm_freq_edit(model, event);
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need_update = consumed;
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}
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}
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}
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},
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true);
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if(need_update) {
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pwm_set_config(pwm);
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}
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return consumed;
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}
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SignalGenPwm* signal_gen_pwm_alloc() {
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SignalGenPwm* pwm = malloc(sizeof(SignalGenPwm));
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pwm->view = view_alloc();
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view_allocate_model(pwm->view, ViewModelTypeLocking, sizeof(SignalGenPwmViewModel));
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view_set_context(pwm->view, pwm);
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view_set_draw_callback(pwm->view, signal_gen_pwm_draw_callback);
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view_set_input_callback(pwm->view, signal_gen_pwm_input_callback);
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return pwm;
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}
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void signal_gen_pwm_free(SignalGenPwm* pwm) {
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furi_assert(pwm);
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view_free(pwm->view);
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free(pwm);
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}
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View* signal_gen_pwm_get_view(SignalGenPwm* pwm) {
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furi_assert(pwm);
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return pwm->view;
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}
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void signal_gen_pwm_set_callback(
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SignalGenPwm* pwm,
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SignalGenPwmViewCallback callback,
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void* context) {
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furi_assert(pwm);
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furi_assert(callback);
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with_view_model(
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pwm->view,
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SignalGenPwmViewModel * model,
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{
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UNUSED(model);
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pwm->callback = callback;
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pwm->context = context;
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},
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false);
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}
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void signal_gen_pwm_set_params(SignalGenPwm* pwm, uint8_t channel_id, uint32_t freq, uint8_t duty) {
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with_view_model(
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pwm->view,
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SignalGenPwmViewModel * model,
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{
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model->channel_id = channel_id;
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model->freq = freq;
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model->duty = duty;
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},
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true);
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furi_assert(pwm->callback);
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pwm->callback(channel_id, freq, duty, pwm->context);
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}
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