mirror of
https://github.com/DarkFlippers/unleashed-firmware
synced 2024-11-26 06:20:21 +00:00
942bbfaefe
* add input debounce code from old fw * exampl of input api * change input API to get/release * revert input API to read * pointer instead of instance * add input API description * add display API * rewrite display names * migrate to valuemanager * add LED API * add closing brakets * add sound api * fix led api * basic api * rename API pages * change pubsub implementation * move FURI AC -> flapp, add valuemutex example, add valuemanager implementation * pubsub usage example * user led example * update example * simplify input * add composed display * add SPI/GPIO and CC1101 bus * change cc1101 api * spi api and devices * spi api and devices * move SPI to page, add GPIO * not block pin open * backlight API and more * add minunit tests * fix logging * ignore unexisting time service on embedded targets * fix warning, issue with printf * Deprecate furi_open and furi_close (#167) Rename existing furi_open and furi_close to deprecated version * add exitcode * migrate to printf * indicate test by leds * add testing description * rename furi.h * wip basic api * add valuemutex, pubsub, split files * add value expanders * value mutex realization and tests * valuemutex test added to makefile * do not build unimplemented files * fix build furmware target f2 * redesigned minunit tests to allow testing in separate files * test file for valuemutex minunit testing * minunit partial test valuemutex * local cmsis_os2 mutex bindings * implement furi open/create, tests * migrate concurrent_access to ValueMutex * add spi header * Lib: add mlib submodule. Co-authored-by: rusdacent <rusdacentx0x08@gmail.com> Co-authored-by: DrZlo13 <who.just.the.doctor@gmail.com>
191 lines
No EOL
4.8 KiB
C
191 lines
No EOL
4.8 KiB
C
#include "flipper.h"
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// TODO: this file contains printf, that not implemented on uC target
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#ifdef FURI_DEBUG
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#include <stdio.h>
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#endif
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#include <string.h>
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#define DEFAULT_STACK_SIZE 2048 // Stack size in bytes
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#define MAX_TASK_COUNT 8
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#define INVALID_TASK_ID UINT16_MAX
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static StaticTask_t task_info_buffer[MAX_TASK_COUNT];
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static StackType_t stack_buffer[MAX_TASK_COUNT][DEFAULT_STACK_SIZE / 4];
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static FuriApp task_buffer[MAX_TASK_COUNT];
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static size_t current_buffer_idx = 0;
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uint16_t furiac_get_task_id_by_name(const char* app_name) {
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for(size_t i = 0; i < MAX_TASK_RECORDS; i++) {
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if(strcmp(task_buffer[i].name, app_name) == 0) return i;
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}
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return INVALID_TASK_ID;
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}
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void furiac_wait_libs(const FlipperAppLibrary* libs) {
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for(uint8_t i = 0; i < libs->count; i++) {
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uint16_t app_id = furiac_get_task_id_by_name(libs->name[i]);
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if(app_id == INVALID_TASK_ID) {
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#ifdef FURI_DEBUG
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printf("[FURIAC] Invalid library name %s\n", lib_name);
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#endif
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} else {
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while(!task_buffer[app_id].ready) {
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#ifdef FURI_DEBUG
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printf("[FURIAC] waiting for library \"%s\"\n", lib_name);
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#endif
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osDelay(50);
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}
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}
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}
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}
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// find task pointer by handle
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FuriApp* find_task(TaskHandle_t handler) {
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FuriApp* res = NULL;
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for(size_t i = 0; i < MAX_TASK_COUNT; i++) {
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if(task_equal(task_buffer[i].handler, handler)) {
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res = &task_buffer[i];
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}
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}
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return res;
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}
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FuriApp* furiac_start(FlipperApplication app, const char* name, void* param) {
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#ifdef FURI_DEBUG
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printf("[FURIAC] start %s\n", name);
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#endif
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// TODO check first free item (.handler == NULL) and use it
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if(current_buffer_idx >= MAX_TASK_COUNT) {
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// max task count exceed
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#ifdef FURI_DEBUG
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printf("[FURIAC] max task count exceed\n");
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#endif
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return NULL;
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}
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// application ready
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task_buffer[current_buffer_idx].ready = false;
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// create task on static stack memory
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task_buffer[current_buffer_idx].handler = xTaskCreateStatic(
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(TaskFunction_t)app,
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(const char* const)name,
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DEFAULT_STACK_SIZE / 4, // freertos specify stack size in words
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(void* const)param,
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tskIDLE_PRIORITY + 3, // normal priority
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stack_buffer[current_buffer_idx],
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&task_info_buffer[current_buffer_idx]);
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// save task
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task_buffer[current_buffer_idx].application = app;
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task_buffer[current_buffer_idx].prev_name = NULL;
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task_buffer[current_buffer_idx].prev = NULL;
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task_buffer[current_buffer_idx].records_count = 0;
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task_buffer[current_buffer_idx].name = name;
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current_buffer_idx++;
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return &task_buffer[current_buffer_idx - 1];
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}
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bool furiac_kill(FuriApp* app) {
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#ifdef FURI_DEBUG
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printf("[FURIAC] kill %s\n", app->name);
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#endif
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// check handler
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if(app == NULL || app->handler == NULL) return false;
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// kill task
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vTaskDelete(app->handler);
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// cleanup its registry
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// TODO realy free memory
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app->handler = NULL;
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return true;
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}
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void furiac_exit(void* param) {
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// get current task handler
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FuriApp* current_task = find_task(xTaskGetCurrentTaskHandle());
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// run prev
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if(current_task != NULL) {
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#ifdef FURI_DEBUG
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printf("[FURIAC] exit %s\n", current_task->name);
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#endif
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if(current_task->prev != NULL) {
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furiac_start(current_task->prev, current_task->prev_name, param);
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} else {
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#ifdef FURI_DEBUG
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printf("[FURIAC] no prev\n");
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#endif
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}
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// cleanup registry
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// TODO realy free memory
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current_task->handler = NULL;
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}
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// kill itself
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vTaskDelete(NULL);
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}
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void furiac_switch(FlipperApplication app, char* name, void* param) {
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// get current task handler
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FuriApp* current_task = find_task(xTaskGetCurrentTaskHandle());
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if(current_task == NULL) {
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#ifdef FURI_DEBUG
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printf("[FURIAC] no current task found\n");
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#endif
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}
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#ifdef FURI_DEBUG
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printf("[FURIAC] switch %s to %s\n", current_task->name, name);
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#endif
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// run next
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FuriApp* next = furiac_start(app, name, param);
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if(next != NULL) {
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// save current application pointer as prev
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next->prev = current_task->application;
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next->prev_name = current_task->name;
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// kill itself
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vTaskDelete(NULL);
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}
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}
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// set task to ready state
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void furiac_ready() {
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/*
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TODO:
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Currently i think that better way is to use application name
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and restrict applications to "one task per application"
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*/
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FuriApp* app = find_task(xTaskGetCurrentTaskHandle());
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if(app == NULL) {
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#ifdef FURI_DEBUG
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printf("[FURIAC] cannot find task to set ready state\n");
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#endif
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} else {
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#ifdef FURI_DEBUG
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printf("[FURIAC] task is ready\n");
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#endif
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app->ready = true;
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}
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} |