flipperzero-firmware/applications/subghz/scenes/subghz_scene_receiver_config.c
tonyfreeman 69f54973cc
Nfc: fix incorrect type castings. Global: fix printf usage, types casting, overall cleanup. Drivers: incorrect array index in cc1101 driver. (#713)
* fix 'function cannot return qualified void/bool type'
* Fix variable 'consumed' is used uninitialized
* Fix format string is not a string literal (potentially insecure)
* Fix conflicting types for 'menu_item_get_type'
* Fix implicit conversion from enumeration type 'NfcDeviceType' to different enumeration type 'rfalNfcDevType'
* Fix hal_gpio_init incorrect arguments order
* Fix nfc->dev.dev_name condition will always evaluate to 'true'
* Fix explicitly assigning value of variable to itself
* Fix furi_hal_bt_wait_startup counter overflow
* Fix implicit conversion from 'StorageStatus' to 'SDError'
* Remove #include <sys/param.h>
* Add FIXME
* Fix syntax
* Fixup for 'furi_hal_bt_wait_startup counter overflow'
* nfc: fix different nfc device types
* Drivers: fix incorrect offset in cc1101_read_fifo
* Remove obsolete comment

Co-authored-by: Tony Freeman <tonyfreeman@users.noreply.github.com>
Co-authored-by: gornekich <n.gorbadey@gmail.com>
Co-authored-by: あく <alleteam@gmail.com>
2021-09-21 12:34:16 +03:00

157 lines
5.3 KiB
C

#include "../subghz_i.h"
#define PRESET_COUNT 3
const char* const preset_text[PRESET_COUNT] = {
"AM270",
"AM650",
"FM",
};
const uint32_t preset_value[PRESET_COUNT] = {
FuriHalSubGhzPresetOok270Async, /** OOK, bandwidth 270kHz, asynchronous */
FuriHalSubGhzPresetOok650Async, /** OOK, bandwidth 650kHz, asynchronous */
FuriHalSubGhzPreset2FSKAsync, /** FM, asynchronous */
};
#define HOPPING_COUNT 2
const char* const hopping_text[HOPPING_COUNT] = {
"OFF",
"ON",
};
const uint32_t hopping_value[HOPPING_COUNT] = {
SubGhzHopperStateOFF,
SubGhzHopperStateRunnig,
};
uint8_t subghz_scene_receiver_config_uint32_value_index(
const uint32_t value,
const uint32_t values[],
uint8_t values_count) {
int64_t last_value = INT64_MIN;
uint8_t index = 0;
for(uint8_t i = 0; i < values_count; i++) {
if((value >= last_value) && (value <= values[i])) {
index = i;
break;
}
last_value = values[i];
}
return index;
}
uint8_t subghz_scene_receiver_config_hopper_value_index(
const uint32_t value,
const uint32_t values[],
uint8_t values_count,
void* context) {
furi_assert(context);
SubGhz* subghz = context;
if(value == values[0]) {
return 0;
} else {
variable_item_set_current_value_text(
(VariableItem*)scene_manager_get_scene_state(
subghz->scene_manager, SubGhzSceneReceiverConfig),
" -----");
return 1;
}
}
static void subghz_scene_receiver_config_set_frequency(VariableItem* item) {
SubGhz* subghz = variable_item_get_context(item);
uint8_t index = variable_item_get_current_value_index(item);
if(subghz->txrx->hopper_state == SubGhzHopperStateOFF) {
variable_item_set_current_value_text(item, subghz_frequencies_text[index]);
subghz->txrx->frequency = subghz_frequencies[index];
}
}
static void subghz_scene_receiver_config_set_preset(VariableItem* item) {
SubGhz* subghz = variable_item_get_context(item);
uint8_t index = variable_item_get_current_value_index(item);
variable_item_set_current_value_text(item, preset_text[index]);
subghz->txrx->preset = preset_value[index];
}
static void subghz_scene_receiver_config_set_hopping_runing(VariableItem* item) {
SubGhz* subghz = variable_item_get_context(item);
uint8_t index = variable_item_get_current_value_index(item);
variable_item_set_current_value_text(item, hopping_text[index]);
if(hopping_value[index] == SubGhzHopperStateOFF) {
variable_item_set_current_value_text(
(VariableItem*)scene_manager_get_scene_state(
subghz->scene_manager, SubGhzSceneReceiverConfig),
subghz_frequencies_text[subghz_frequencies_433_92]);
subghz->txrx->frequency = subghz_frequencies[subghz_frequencies_433_92];
} else {
variable_item_set_current_value_text(
(VariableItem*)scene_manager_get_scene_state(
subghz->scene_manager, SubGhzSceneReceiverConfig),
" -----");
}
subghz->txrx->hopper_state = hopping_value[index];
}
void subghz_scene_receiver_config_callback(SubghzReceverEvent event, void* context) {
furi_assert(context);
SubGhz* subghz = context;
view_dispatcher_send_custom_event(subghz->view_dispatcher, event);
}
void subghz_scene_receiver_config_on_enter(void* context) {
SubGhz* subghz = context;
VariableItem* item;
uint8_t value_index;
item = variable_item_list_add(
subghz->variable_item_list,
"Frequency:",
subghz_frequencies_count,
subghz_scene_receiver_config_set_frequency,
subghz);
value_index = subghz_scene_receiver_config_uint32_value_index(
subghz->txrx->frequency, subghz_frequencies, subghz_frequencies_count);
scene_manager_set_scene_state(
subghz->scene_manager, SubGhzSceneReceiverConfig, (uint32_t)item);
variable_item_set_current_value_index(item, value_index);
variable_item_set_current_value_text(item, subghz_frequencies_text[value_index]);
item = variable_item_list_add(
subghz->variable_item_list,
"Hopping:",
HOPPING_COUNT,
subghz_scene_receiver_config_set_hopping_runing,
subghz);
value_index = subghz_scene_receiver_config_hopper_value_index(
subghz->txrx->hopper_state, hopping_value, HOPPING_COUNT, subghz);
variable_item_set_current_value_index(item, value_index);
variable_item_set_current_value_text(item, hopping_text[value_index]);
item = variable_item_list_add(
subghz->variable_item_list,
"Modulation:",
PRESET_COUNT,
subghz_scene_receiver_config_set_preset,
subghz);
value_index = subghz_scene_receiver_config_uint32_value_index(
subghz->txrx->preset, preset_value, PRESET_COUNT);
variable_item_set_current_value_index(item, value_index);
variable_item_set_current_value_text(item, preset_text[value_index]);
view_dispatcher_switch_to_view(subghz->view_dispatcher, SubGhzViewVariableItemList);
}
bool subghz_scene_receiver_config_on_event(void* context, SceneManagerEvent event) {
//SubGhz* subghz = context;
return false;
}
void subghz_scene_receiver_config_on_exit(void* context) {
SubGhz* subghz = context;
variable_item_list_clean(subghz->variable_item_list);
}