flipperzero-firmware/applications/subghz/views/subghz_save_raw.c
Skorpionm 9d952ed855
[FL-1913, FL-1963] SubGhz: save raw signal, add came atomo decoder (#783)
* File_Worker: getting the name of a new file with an index
* SubGhz: add decoder RAW protocol
* SubGhz: add view Save RAW
* SubGhz: refactoring subghz custom event
* SubGhz: fix syntax
* SubGhz: fix error build
* SubGhz: test build
* SubGhz: refactoring subghz, add rename, delete, start and emulate RAW signal
* SubGhz: fix triangle glitch in save raw view
* SubGhz: fix receiver config scene
* SubGhz: fix transfer after returning from save scene
* Canvas: add font rotation
* SubGhz: raw protocol encoder
* SubGhz: fix error completion of transfer raw encoder
* SubGhz: increased the speed of reading RAW data from a flash drive, displaying the name of the saved file in the Save RAW scene
* Canvas: fix font rotation
* SubGhz: fix navigation save RAW  scene
* SubGhz: add decode came atomo
* Git: renormalize
* Cleanup sources and enums
* Gui: add font direction to canvas reset, canvas init sequence cleanup.
* SubGhz: reorder menu.
* Gui: correct canvas_set_font_direction signature

Co-authored-by: Aleksandr Kutuzov <alleteam@gmail.com>
2021-10-25 17:37:14 +03:00

313 lines
10 KiB
C

#include "subghz_save_raw.h"
#include "../subghz_i.h"
#include <math.h>
#include <furi.h>
#include <furi-hal.h>
#include <input/input.h>
#include <gui/elements.h>
#include <lib/subghz/protocols/subghz_protocol_princeton.h>
#include <assets_icons.h>
#define SUBGHZ_SAVE_RAW_RSSI_HISTORY_SIZE 100
typedef enum {
SubghzSaveRAWStatusStart,
SubghzSaveRAWStatusIDLE,
SubghzSaveRAWStatusREC,
SubghzSaveRAWStatusShowName,
} SubghzSaveRAWStatus;
struct SubghzSaveRAW {
View* view;
osTimerId timer;
SubghzSaveRAWCallback callback;
void* context;
};
typedef struct {
string_t frequency_str;
string_t preset_str;
string_t sample_write;
string_t file_name;
uint8_t* rssi_history;
bool rssi_history_end;
uint8_t ind_write;
SubghzSaveRAWStatus satus;
} SubghzSaveRAWModel;
void subghz_save_raw_set_callback(
SubghzSaveRAW* subghz_save_raw,
SubghzSaveRAWCallback callback,
void* context) {
furi_assert(subghz_save_raw);
furi_assert(callback);
subghz_save_raw->callback = callback;
subghz_save_raw->context = context;
}
void subghz_save_raw_add_data_statusbar(
SubghzSaveRAW* instance,
const char* frequency_str,
const char* preset_str) {
furi_assert(instance);
with_view_model(
instance->view, (SubghzSaveRAWModel * model) {
string_set(model->frequency_str, frequency_str);
string_set(model->preset_str, preset_str);
return true;
});
}
void subghz_save_raw_set_file_name(SubghzSaveRAW* instance, const char* file_name) {
furi_assert(instance);
with_view_model(
instance->view, (SubghzSaveRAWModel * model) {
string_set(model->file_name, file_name);
return true;
});
}
static void subghz_save_raw_timer_callback(void* context) {
furi_assert(context);
SubghzSaveRAW* instance = context;
with_view_model(
instance->view, (SubghzSaveRAWModel * model) {
model->satus = SubghzSaveRAWStatusIDLE;
return true;
});
}
void subghz_save_raw_add_data_rssi(SubghzSaveRAW* instance, float rssi) {
furi_assert(instance);
uint8_t u_rssi = 0;
if(rssi < -90) {
u_rssi = 0;
} else {
u_rssi = (uint8_t)((rssi + 90) / 2.7);
}
//if(u_rssi > 34) u_rssi = 34;
with_view_model(
instance->view, (SubghzSaveRAWModel * model) {
model->rssi_history[model->ind_write++] = u_rssi;
if(model->ind_write > SUBGHZ_SAVE_RAW_RSSI_HISTORY_SIZE) {
model->rssi_history_end = true;
model->ind_write = 0;
}
return true;
});
}
void subghz_save_raw_update_sample_write(SubghzSaveRAW* instance, size_t sample) {
furi_assert(instance);
with_view_model(
instance->view, (SubghzSaveRAWModel * model) {
string_printf(model->sample_write, "%d spl.", sample);
return false;
});
}
void subghz_save_raw_draw_rssi(Canvas* canvas, SubghzSaveRAWModel* model) {
int ind = 0;
int base = 0;
if(model->rssi_history_end == false) {
for(int i = model->ind_write; i >= 0; i--) {
canvas_draw_line(canvas, i, 47, i, 47 - model->rssi_history[i]);
}
if(model->ind_write > 3) {
canvas_draw_line(canvas, model->ind_write, 47, model->ind_write, 13);
canvas_draw_line(canvas, model->ind_write - 2, 12, model->ind_write + 2, 12);
canvas_draw_line(canvas, model->ind_write - 1, 13, model->ind_write + 1, 13);
}
} else {
base = SUBGHZ_SAVE_RAW_RSSI_HISTORY_SIZE - model->ind_write;
for(int i = SUBGHZ_SAVE_RAW_RSSI_HISTORY_SIZE; i >= 0; i--) {
ind = i - base;
if(ind < 0) ind += SUBGHZ_SAVE_RAW_RSSI_HISTORY_SIZE;
canvas_draw_line(canvas, i, 47, i, 47 - model->rssi_history[ind]);
}
canvas_draw_line(
canvas, SUBGHZ_SAVE_RAW_RSSI_HISTORY_SIZE, 47, SUBGHZ_SAVE_RAW_RSSI_HISTORY_SIZE, 13);
canvas_draw_line(
canvas,
SUBGHZ_SAVE_RAW_RSSI_HISTORY_SIZE - 2,
12,
SUBGHZ_SAVE_RAW_RSSI_HISTORY_SIZE + 2,
12);
canvas_draw_line(
canvas,
SUBGHZ_SAVE_RAW_RSSI_HISTORY_SIZE - 1,
13,
SUBGHZ_SAVE_RAW_RSSI_HISTORY_SIZE + 1,
13);
}
}
void subghz_save_raw_draw(Canvas* canvas, SubghzSaveRAWModel* model) {
canvas_set_color(canvas, ColorBlack);
canvas_set_font(canvas, FontSecondary);
if(model->satus != SubghzSaveRAWStatusShowName) {
canvas_draw_str(canvas, 5, 8, string_get_cstr(model->frequency_str));
canvas_draw_str(canvas, 40, 8, string_get_cstr(model->preset_str));
canvas_draw_str_aligned(
canvas, 126, 0, AlignRight, AlignTop, string_get_cstr(model->sample_write));
} else {
canvas_draw_str_aligned(
canvas, 61, 1, AlignRight, AlignTop, string_get_cstr(model->file_name));
canvas_draw_str(canvas, 65, 8, "Saved!");
}
canvas_draw_line(canvas, 0, 14, 115, 14);
subghz_save_raw_draw_rssi(canvas, model);
canvas_draw_line(canvas, 0, 48, 115, 48);
canvas_draw_line(canvas, 115, 14, 115, 48);
if(model->satus == SubghzSaveRAWStatusIDLE) {
elements_button_left(canvas, "Config");
elements_button_center(canvas, "REC");
elements_button_right(canvas, "More");
} else if(model->satus == SubghzSaveRAWStatusStart) {
elements_button_left(canvas, "Config");
elements_button_center(canvas, "REC");
} else {
elements_button_center(canvas, "Stop");
}
canvas_set_font_direction(canvas, 3);
canvas_draw_str(canvas, 126, 40, "RSSI");
canvas_set_font_direction(canvas, 0);
}
bool subghz_save_raw_input(InputEvent* event, void* context) {
furi_assert(context);
SubghzSaveRAW* instance = context;
if(event->key == InputKeyBack && event->type == InputTypeShort) {
instance->callback(SubghzCustomEventViewSaveRAWBack, instance->context);
} else if(event->key == InputKeyLeft && event->type == InputTypeShort) {
with_view_model(
instance->view, (SubghzSaveRAWModel * model) {
if(model->satus == SubghzSaveRAWStatusIDLE ||
model->satus == SubghzSaveRAWStatusStart) {
instance->callback(SubghzCustomEventViewSaveRAWConfig, instance->context);
}
return true;
});
} else if(event->key == InputKeyRight && event->type == InputTypeShort) {
with_view_model(
instance->view, (SubghzSaveRAWModel * model) {
if(model->satus == SubghzSaveRAWStatusIDLE) {
instance->callback(SubghzCustomEventViewSaveRAWMore, instance->context);
}
return true;
});
} else if(event->key == InputKeyOk && event->type == InputTypeShort) {
with_view_model(
instance->view, (SubghzSaveRAWModel * model) {
if(model->satus == SubghzSaveRAWStatusIDLE ||
model->satus == SubghzSaveRAWStatusStart) {
instance->callback(SubghzCustomEventViewSaveRAWREC, instance->context);
model->satus = SubghzSaveRAWStatusREC;
model->ind_write = 0;
model->rssi_history_end = false;
} else {
instance->callback(SubghzCustomEventViewSaveRAWIDLE, instance->context);
model->satus = SubghzSaveRAWStatusShowName;
osTimerStart(instance->timer, 1024);
}
return true;
});
}
if(event->key == InputKeyBack) {
return false;
}
return true;
}
void subghz_save_raw_enter(void* context) {
furi_assert(context);
SubghzSaveRAW* instance = context;
with_view_model(
instance->view, (SubghzSaveRAWModel * model) {
model->satus = SubghzSaveRAWStatusStart;
model->rssi_history = furi_alloc(SUBGHZ_SAVE_RAW_RSSI_HISTORY_SIZE * sizeof(uint8_t));
model->rssi_history_end = false;
model->ind_write = 0;
string_set(model->sample_write, "0 spl.");
return true;
});
}
void subghz_save_raw_exit(void* context) {
furi_assert(context);
SubghzSaveRAW* instance = context;
with_view_model(
instance->view, (SubghzSaveRAWModel * model) {
if(model->satus != SubghzSaveRAWStatusIDLE &&
model->satus != SubghzSaveRAWStatusStart) {
instance->callback(SubghzCustomEventViewSaveRAWIDLE, instance->context);
model->satus = SubghzSaveRAWStatusStart;
}
string_clean(model->frequency_str);
string_clean(model->preset_str);
string_clean(model->sample_write);
string_clean(model->file_name);
free(model->rssi_history);
return true;
});
}
SubghzSaveRAW* subghz_save_raw_alloc() {
SubghzSaveRAW* instance = furi_alloc(sizeof(SubghzSaveRAW));
// View allocation and configuration
instance->view = view_alloc();
view_allocate_model(instance->view, ViewModelTypeLocking, sizeof(SubghzSaveRAWModel));
view_set_context(instance->view, instance);
view_set_draw_callback(instance->view, (ViewDrawCallback)subghz_save_raw_draw);
view_set_input_callback(instance->view, subghz_save_raw_input);
view_set_enter_callback(instance->view, subghz_save_raw_enter);
view_set_exit_callback(instance->view, subghz_save_raw_exit);
instance->timer = osTimerNew(subghz_save_raw_timer_callback, osTimerOnce, instance, NULL);
with_view_model(
instance->view, (SubghzSaveRAWModel * model) {
string_init(model->frequency_str);
string_init(model->preset_str);
string_init(model->sample_write);
string_init(model->file_name);
return true;
});
return instance;
}
void subghz_save_raw_free(SubghzSaveRAW* instance) {
furi_assert(instance);
with_view_model(
instance->view, (SubghzSaveRAWModel * model) {
string_clear(model->frequency_str);
string_clear(model->preset_str);
string_clear(model->sample_write);
string_clear(model->file_name);
return true;
});
osTimerDelete(instance->timer);
view_free(instance->view);
free(instance);
}
View* subghz_save_raw_get_view(SubghzSaveRAW* instance) {
furi_assert(instance);
return instance->view;
}