[FL-2274] Inventing streams and moving FFF to them (#981)
* Streams: string stream * String stream: updated insert/delete api * Streams: generic stream interface and string stream implementation * Streams: helpers for insert and delete_and_insert * FFF: now compatible with streams * MinUnit: introduced tests with arguments * FFF: stream access violation * Streams: copy data between streams * Streams: file stream * FFF: documentation * FFStream: documentation * FFF: alloc as file * MinUnit: support for nested tests * Streams: changed delete_and_insert, now it returns success flag. Added ability dump stream inner parameters and data to cout. * FFF: simplified file open function * Streams: unit tests * FFF: tests * Streams: declare cache_size constant as define, to allow variable modified arrays * FFF: lib moved to a separate folder * iButton: new FFF * RFID: new FFF * Animations: new FFF * IR: new FFF * NFC: new FFF * Flipper file format: delete lib * U2F: new FFF * Subghz: new FFF and streams * Streams: read line * Streams: split * FuriCore: implement memset with extra asserts * FuriCore: implement extra heap asserts without inventing memset * Scene manager: protected access to the scene id stack with a size check * NFC worker: dirty fix for issue where hal_nfc was busy on app start * Furi: update allocator to erase memory on allocation. Replace furi_alloc with malloc. * FuriCore: cleanup memmgr code. * Furi HAL: furi_hal_init is split into critical and non-critical parts. The critical part is currently clock and console. * Memmgr: added ability to track allocations and deallocations through console. * FFStream: some speedup * Streams, FF: minor fixes * Tests: restore * File stream: a slightly more thread-safe version of file_stream_delete_and_insert Co-authored-by: Aleksandr Kutuzov <alleteam@gmail.com>
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@@ -588,13 +588,13 @@ void furi_hal_irda_async_tx_start(uint32_t freq, float duty_cycle) {
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furi_assert(irda_tim_tx.buffer[1].polarity == NULL);
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size_t alloc_size_data = IRDA_TIM_TX_DMA_BUFFER_SIZE * sizeof(uint16_t);
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irda_tim_tx.buffer[0].data = furi_alloc(alloc_size_data);
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irda_tim_tx.buffer[1].data = furi_alloc(alloc_size_data);
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irda_tim_tx.buffer[0].data = malloc(alloc_size_data);
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irda_tim_tx.buffer[1].data = malloc(alloc_size_data);
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size_t alloc_size_polarity =
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(IRDA_TIM_TX_DMA_BUFFER_SIZE + IRDA_POLARITY_SHIFT) * sizeof(uint8_t);
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irda_tim_tx.buffer[0].polarity = furi_alloc(alloc_size_polarity);
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irda_tim_tx.buffer[1].polarity = furi_alloc(alloc_size_polarity);
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irda_tim_tx.buffer[0].polarity = malloc(alloc_size_polarity);
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irda_tim_tx.buffer[1].polarity = malloc(alloc_size_polarity);
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irda_tim_tx.stop_semaphore = osSemaphoreNew(1, 0, NULL);
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irda_tim_tx.cycle_duration = 1000000.0 / freq;
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