mirror of
https://github.com/DarkFlippers/unleashed-firmware.git
synced 2024-12-21 20:31:32 +03:00
917410a0a8
* fbt: reworking targets & assets handling WIP * fbt: dist fixes * fbt: moved SD card resources to owning apps * unit_tests: moved resources to app folder * github: updated unit_tests paths * github: packaging fixes * unit_tests: fixes * fbt: assets: internal cleanup * fbt: reworked assets handling * github: unit_tests: reintroducing fixes * minor cleanup * fbt: naming changes to reflect private nature of scons tools * fbt: resources: fixed dist archive paths * docs: updated paths * docs: updated more paths * docs: included "resources" parameter in app manifest docs; updated assets readme * updated gitignore for assets * github: updated action versions * unit_tests: restored timeout; scripts: assets: logging changes * gh: don't upload desktop animations for unit test run Co-authored-by: あく <alleteam@gmail.com>
464 lines
15 KiB
C
464 lines
15 KiB
C
#include "furi_hal_nfc_i.h"
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#include "furi_hal_nfc_tech_i.h"
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#include <digital_signal/presets/nfc/iso15693_signal.h>
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#include <signal_reader/parsers/iso15693/iso15693_parser.h>
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#include <furi_hal_resources.h>
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#define FURI_HAL_NFC_ISO15693_MAX_FRAME_SIZE (1024U)
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#define FURI_HAL_NFC_ISO15693_POLLER_MAX_BUFFER_SIZE (64)
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#define FURI_HAL_NFC_ISO15693_RESP_SOF_SIZE (5)
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#define FURI_HAL_NFC_ISO15693_RESP_EOF_SIZE (5)
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#define FURI_HAL_NFC_ISO15693_RESP_SOF_MASK (0x1FU)
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#define FURI_HAL_NFC_ISO15693_RESP_SOF_PATTERN (0x17U)
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#define FURI_HAL_NFC_ISO15693_RESP_EOF_PATTERN (0x1DU)
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#define FURI_HAL_NFC_ISO15693_RESP_PATTERN_MASK (0x03U)
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#define FURI_HAL_NFC_ISO15693_RESP_PATTERN_0 (0x01U)
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#define FURI_HAL_NFC_ISO15693_RESP_PATTERN_1 (0x02U)
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// Derived experimentally
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#define FURI_HAL_NFC_ISO15693_POLLER_FWT_COMP_FC (-1300)
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#define FURI_HAL_NFC_ISO15693_LISTENER_FDT_COMP_FC (2850)
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#define BITS_IN_BYTE (8U)
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#define TAG "FuriHalIso15693"
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typedef struct {
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Iso15693Signal* signal;
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Iso15693Parser* parser;
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} FuriHalNfcIso15693Listener;
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typedef struct {
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// 4 bits per data bit on transmit
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uint8_t fifo_buf[FURI_HAL_NFC_ISO15693_POLLER_MAX_BUFFER_SIZE * 4];
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size_t fifo_buf_bits;
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uint8_t frame_buf[FURI_HAL_NFC_ISO15693_POLLER_MAX_BUFFER_SIZE * 2];
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size_t frame_buf_bits;
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} FuriHalNfcIso15693Poller;
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static FuriHalNfcIso15693Listener* furi_hal_nfc_iso15693_listener = NULL;
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static FuriHalNfcIso15693Poller* furi_hal_nfc_iso15693_poller = NULL;
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static FuriHalNfcIso15693Listener* furi_hal_nfc_iso15693_listener_alloc() {
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FuriHalNfcIso15693Listener* instance = malloc(sizeof(FuriHalNfcIso15693Listener));
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instance->signal = iso15693_signal_alloc(&gpio_spi_r_mosi);
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instance->parser =
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iso15693_parser_alloc(&gpio_nfc_irq_rfid_pull, FURI_HAL_NFC_ISO15693_MAX_FRAME_SIZE);
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return instance;
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}
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static void furi_hal_nfc_iso15693_listener_free(FuriHalNfcIso15693Listener* instance) {
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furi_assert(instance);
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iso15693_signal_free(instance->signal);
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iso15693_parser_free(instance->parser);
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free(instance);
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}
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static FuriHalNfcIso15693Poller* furi_hal_nfc_iso15693_poller_alloc() {
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FuriHalNfcIso15693Poller* instance = malloc(sizeof(FuriHalNfcIso15693Poller));
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return instance;
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}
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static void furi_hal_nfc_iso15693_poller_free(FuriHalNfcIso15693Poller* instance) {
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furi_assert(instance);
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free(instance);
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}
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static FuriHalNfcError furi_hal_nfc_iso15693_common_init(FuriHalSpiBusHandle* handle) {
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// Common NFC-V settings, 26.48 kbps
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// 1st stage zero = 12 kHz, 3rd stage zero = 80 kHz, low-pass = 600 kHz
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st25r3916_write_reg(
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handle,
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ST25R3916_REG_RX_CONF1,
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ST25R3916_REG_RX_CONF1_z12k | ST25R3916_REG_RX_CONF1_h80 |
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ST25R3916_REG_RX_CONF1_lp_600khz);
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// Enable AGC
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// AGC Ratio 6
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// AGC algorithm with RESET (recommended for ISO15693)
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// AGC operation during complete receive period
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// Squelch automatic activation on TX end
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st25r3916_write_reg(
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handle,
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ST25R3916_REG_RX_CONF2,
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ST25R3916_REG_RX_CONF2_agc6_3 | ST25R3916_REG_RX_CONF2_agc_m |
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ST25R3916_REG_RX_CONF2_agc_en | ST25R3916_REG_RX_CONF2_sqm_dyn);
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// HF operation, full gain on AM and PM channels
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st25r3916_write_reg(handle, ST25R3916_REG_RX_CONF3, 0x00);
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// No gain reduction on AM and PM channels
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st25r3916_write_reg(handle, ST25R3916_REG_RX_CONF4, 0x00);
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// Collision detection level 53%
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// AM & PM summation before digitizing on
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st25r3916_write_reg(
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handle,
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ST25R3916_REG_CORR_CONF1,
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ST25R3916_REG_CORR_CONF1_corr_s0 | ST25R3916_REG_CORR_CONF1_corr_s1 |
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ST25R3916_REG_CORR_CONF1_corr_s4);
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// 424 kHz subcarrier stream mode on
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st25r3916_write_reg(handle, ST25R3916_REG_CORR_CONF2, ST25R3916_REG_CORR_CONF2_corr_s8);
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return FuriHalNfcErrorNone;
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}
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static FuriHalNfcError furi_hal_nfc_iso15693_poller_init(FuriHalSpiBusHandle* handle) {
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furi_assert(furi_hal_nfc_iso15693_poller == NULL);
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furi_hal_nfc_iso15693_poller = furi_hal_nfc_iso15693_poller_alloc();
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// Enable Subcarrier Stream mode, OOK modulation
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st25r3916_change_reg_bits(
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handle,
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ST25R3916_REG_MODE,
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ST25R3916_REG_MODE_om_mask | ST25R3916_REG_MODE_tr_am,
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ST25R3916_REG_MODE_om_subcarrier_stream | ST25R3916_REG_MODE_tr_am_ook);
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// Subcarrier 424 kHz mode
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// 8 sub-carrier pulses in report period
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st25r3916_write_reg(
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handle,
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ST25R3916_REG_STREAM_MODE,
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ST25R3916_REG_STREAM_MODE_scf_sc424 | ST25R3916_REG_STREAM_MODE_stx_106 |
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ST25R3916_REG_STREAM_MODE_scp_8pulses);
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// Use regulator AM, resistive AM disabled
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st25r3916_clear_reg_bits(
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handle,
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ST25R3916_REG_AUX_MOD,
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ST25R3916_REG_AUX_MOD_dis_reg_am | ST25R3916_REG_AUX_MOD_res_am);
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return furi_hal_nfc_iso15693_common_init(handle);
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}
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static FuriHalNfcError furi_hal_nfc_iso15693_poller_deinit(FuriHalSpiBusHandle* handle) {
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UNUSED(handle);
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furi_assert(furi_hal_nfc_iso15693_poller);
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furi_hal_nfc_iso15693_poller_free(furi_hal_nfc_iso15693_poller);
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furi_hal_nfc_iso15693_poller = NULL;
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return FuriHalNfcErrorNone;
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}
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static void iso15693_3_poller_encode_frame(
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const uint8_t* tx_data,
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size_t tx_bits,
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uint8_t* frame_buf,
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size_t frame_buf_size,
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size_t* frame_buf_bits) {
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static const uint8_t bit_patterns_1_out_of_4[] = {0x02, 0x08, 0x20, 0x80};
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size_t frame_buf_size_calc = (tx_bits / 2) + 2;
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furi_assert(frame_buf_size >= frame_buf_size_calc);
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// Add SOF 1 out of 4
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frame_buf[0] = 0x21;
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size_t byte_pos = 1;
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for(size_t i = 0; i < tx_bits / BITS_IN_BYTE; ++i) {
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for(size_t j = 0; j < BITS_IN_BYTE; j += (BITS_IN_BYTE) / 4) {
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const uint8_t bit_pair = (tx_data[i] >> j) & 0x03;
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frame_buf[byte_pos++] = bit_patterns_1_out_of_4[bit_pair];
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}
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}
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// Add EOF
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frame_buf[byte_pos++] = 0x04;
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*frame_buf_bits = byte_pos * BITS_IN_BYTE;
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}
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static FuriHalNfcError iso15693_3_poller_decode_frame(
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const uint8_t* buf,
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size_t buf_bits,
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uint8_t* buf_decoded,
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size_t buf_decoded_size,
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size_t* buf_decoded_bits) {
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FuriHalNfcError ret = FuriHalNfcErrorDataFormat;
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size_t bit_pos = 0;
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memset(buf_decoded, 0, buf_decoded_size);
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do {
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if(buf_bits == 0) break;
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// Check SOF
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if((buf[0] & FURI_HAL_NFC_ISO15693_RESP_SOF_MASK) !=
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FURI_HAL_NFC_ISO15693_RESP_SOF_PATTERN)
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break;
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if(buf_bits == BITS_IN_BYTE) {
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ret = FuriHalNfcErrorIncompleteFrame;
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break;
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}
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// 2 response bits = 1 data bit
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for(uint32_t i = FURI_HAL_NFC_ISO15693_RESP_SOF_SIZE;
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i < buf_bits - FURI_HAL_NFC_ISO15693_RESP_SOF_SIZE;
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i += BITS_IN_BYTE / 4) {
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const size_t byte_index = i / BITS_IN_BYTE;
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const size_t bit_offset = i % BITS_IN_BYTE;
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const uint8_t resp_byte = (buf[byte_index] >> bit_offset) |
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(buf[byte_index + 1] << (BITS_IN_BYTE - bit_offset));
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// Check EOF
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if(resp_byte == FURI_HAL_NFC_ISO15693_RESP_EOF_PATTERN) {
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ret = FuriHalNfcErrorNone;
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break;
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}
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const uint8_t bit_pattern = resp_byte & FURI_HAL_NFC_ISO15693_RESP_PATTERN_MASK;
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if(bit_pattern == FURI_HAL_NFC_ISO15693_RESP_PATTERN_0) {
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bit_pos++;
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} else if(bit_pattern == FURI_HAL_NFC_ISO15693_RESP_PATTERN_1) {
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buf_decoded[bit_pos / BITS_IN_BYTE] |= 1 << (bit_pos % BITS_IN_BYTE);
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bit_pos++;
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} else {
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break;
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}
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if(bit_pos / BITS_IN_BYTE > buf_decoded_size) {
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break;
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}
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}
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} while(false);
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if(ret == FuriHalNfcErrorNone) {
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*buf_decoded_bits = bit_pos;
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}
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return ret;
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}
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static FuriHalNfcError furi_hal_nfc_iso15693_poller_tx(
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FuriHalSpiBusHandle* handle,
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const uint8_t* tx_data,
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size_t tx_bits) {
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FuriHalNfcIso15693Poller* instance = furi_hal_nfc_iso15693_poller;
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iso15693_3_poller_encode_frame(
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tx_data,
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tx_bits,
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instance->frame_buf,
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sizeof(instance->frame_buf),
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&instance->frame_buf_bits);
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return furi_hal_nfc_poller_tx_common(handle, instance->frame_buf, instance->frame_buf_bits);
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}
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static FuriHalNfcError furi_hal_nfc_iso15693_poller_rx(
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FuriHalSpiBusHandle* handle,
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uint8_t* rx_data,
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size_t rx_data_size,
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size_t* rx_bits) {
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FuriHalNfcError error = FuriHalNfcErrorNone;
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FuriHalNfcIso15693Poller* instance = furi_hal_nfc_iso15693_poller;
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do {
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error = furi_hal_nfc_common_fifo_rx(
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handle, instance->fifo_buf, sizeof(instance->fifo_buf), &instance->fifo_buf_bits);
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if(error != FuriHalNfcErrorNone) break;
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error = iso15693_3_poller_decode_frame(
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instance->fifo_buf,
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instance->fifo_buf_bits,
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instance->frame_buf,
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sizeof(instance->frame_buf),
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&instance->frame_buf_bits);
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if(error != FuriHalNfcErrorNone) break;
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if(rx_data_size < instance->frame_buf_bits / BITS_IN_BYTE) {
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error = FuriHalNfcErrorBufferOverflow;
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break;
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}
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memcpy(rx_data, instance->frame_buf, instance->frame_buf_bits / BITS_IN_BYTE);
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*rx_bits = instance->frame_buf_bits;
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} while(false);
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return error;
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}
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static void furi_hal_nfc_iso15693_listener_transparent_mode_enter(FuriHalSpiBusHandle* handle) {
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st25r3916_direct_cmd(handle, ST25R3916_CMD_TRANSPARENT_MODE);
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furi_hal_spi_bus_handle_deinit(handle);
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furi_hal_nfc_deinit_gpio_isr();
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}
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static void furi_hal_nfc_iso15693_listener_transparent_mode_exit(FuriHalSpiBusHandle* handle) {
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// Configure gpio back to SPI and exit transparent mode
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furi_hal_nfc_init_gpio_isr();
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furi_hal_spi_bus_handle_init(handle);
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st25r3916_direct_cmd(handle, ST25R3916_CMD_UNMASK_RECEIVE_DATA);
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}
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static FuriHalNfcError furi_hal_nfc_iso15693_listener_init(FuriHalSpiBusHandle* handle) {
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furi_assert(furi_hal_nfc_iso15693_listener == NULL);
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furi_hal_nfc_iso15693_listener = furi_hal_nfc_iso15693_listener_alloc();
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// Set default operation mode
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st25r3916_change_reg_bits(
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handle,
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ST25R3916_REG_MODE,
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ST25R3916_REG_MODE_om_mask | ST25R3916_REG_MODE_tr_am,
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ST25R3916_REG_MODE_om_targ_nfca | ST25R3916_REG_MODE_tr_am_ook);
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st25r3916_change_reg_bits(
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handle,
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ST25R3916_REG_OP_CONTROL,
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ST25R3916_REG_OP_CONTROL_rx_en,
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ST25R3916_REG_OP_CONTROL_rx_en);
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// Enable passive target mode
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st25r3916_change_reg_bits(
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handle, ST25R3916_REG_MODE, ST25R3916_REG_MODE_targ, ST25R3916_REG_MODE_targ_targ);
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FuriHalNfcError error = furi_hal_nfc_iso15693_common_init(handle);
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furi_hal_nfc_iso15693_listener_transparent_mode_enter(handle);
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return error;
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}
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static FuriHalNfcError furi_hal_nfc_iso15693_listener_deinit(FuriHalSpiBusHandle* handle) {
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furi_assert(furi_hal_nfc_iso15693_listener);
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furi_hal_nfc_iso15693_listener_transparent_mode_exit(handle);
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furi_hal_nfc_iso15693_listener_free(furi_hal_nfc_iso15693_listener);
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furi_hal_nfc_iso15693_listener = NULL;
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return FuriHalNfcErrorNone;
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}
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static FuriHalNfcError
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furi_hal_nfc_iso15693_listener_tx_transparent(const uint8_t* data, size_t data_size) {
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iso15693_signal_tx(
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furi_hal_nfc_iso15693_listener->signal, Iso15693SignalDataRateHi, data, data_size);
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return FuriHalNfcErrorNone;
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}
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static void furi_hal_nfc_iso15693_parser_callback(Iso15693ParserEvent event, void* context) {
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furi_assert(context);
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if(event == Iso15693ParserEventDataReceived) {
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FuriThreadId thread_id = context;
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furi_thread_flags_set(thread_id, FuriHalNfcEventInternalTypeTransparentDataReceived);
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}
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}
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static FuriHalNfcEvent furi_hal_nfc_iso15693_wait_event(uint32_t timeout_ms) {
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FuriHalNfcEvent event = 0;
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FuriThreadId thread_id = furi_thread_get_current_id();
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iso15693_parser_start(
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furi_hal_nfc_iso15693_listener->parser, furi_hal_nfc_iso15693_parser_callback, thread_id);
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while(true) {
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uint32_t flag = furi_thread_flags_wait(
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FuriHalNfcEventInternalTypeAbort | FuriHalNfcEventInternalTypeTransparentDataReceived,
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FuriFlagWaitAny,
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timeout_ms);
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furi_thread_flags_clear(flag);
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if(flag & FuriHalNfcEventInternalTypeAbort) {
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event = FuriHalNfcEventAbortRequest;
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break;
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}
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if(flag & FuriHalNfcEventInternalTypeTransparentDataReceived) {
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if(iso15693_parser_run(furi_hal_nfc_iso15693_listener->parser)) {
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event = FuriHalNfcEventRxEnd;
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break;
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}
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}
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}
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iso15693_parser_stop(furi_hal_nfc_iso15693_listener->parser);
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return event;
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}
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static FuriHalNfcError furi_hal_nfc_iso15693_listener_tx(
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FuriHalSpiBusHandle* handle,
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const uint8_t* tx_data,
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size_t tx_bits) {
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UNUSED(handle);
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furi_assert(furi_hal_nfc_iso15693_listener);
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FuriHalNfcError error = FuriHalNfcErrorNone;
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error = furi_hal_nfc_iso15693_listener_tx_transparent(tx_data, tx_bits / BITS_IN_BYTE);
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return error;
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}
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FuriHalNfcError furi_hal_nfc_iso15693_listener_tx_sof() {
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iso15693_signal_tx_sof(furi_hal_nfc_iso15693_listener->signal, Iso15693SignalDataRateHi);
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return FuriHalNfcErrorNone;
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}
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static FuriHalNfcError furi_hal_nfc_iso15693_listener_rx(
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FuriHalSpiBusHandle* handle,
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uint8_t* rx_data,
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size_t rx_data_size,
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size_t* rx_bits) {
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furi_assert(furi_hal_nfc_iso15693_listener);
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UNUSED(handle);
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|
if(rx_data_size <
|
|
iso15693_parser_get_data_size_bytes(furi_hal_nfc_iso15693_listener->parser)) {
|
|
return FuriHalNfcErrorBufferOverflow;
|
|
}
|
|
|
|
iso15693_parser_get_data(
|
|
furi_hal_nfc_iso15693_listener->parser, rx_data, rx_data_size, rx_bits);
|
|
|
|
return FuriHalNfcErrorNone;
|
|
}
|
|
|
|
FuriHalNfcError furi_hal_nfc_iso15693_listener_sleep(FuriHalSpiBusHandle* handle) {
|
|
UNUSED(handle);
|
|
|
|
return FuriHalNfcErrorNone;
|
|
}
|
|
|
|
const FuriHalNfcTechBase furi_hal_nfc_iso15693 = {
|
|
.poller =
|
|
{
|
|
.compensation =
|
|
{
|
|
.fdt = FURI_HAL_NFC_POLLER_FDT_COMP_FC,
|
|
.fwt = FURI_HAL_NFC_ISO15693_POLLER_FWT_COMP_FC,
|
|
},
|
|
.init = furi_hal_nfc_iso15693_poller_init,
|
|
.deinit = furi_hal_nfc_iso15693_poller_deinit,
|
|
.wait_event = furi_hal_nfc_wait_event_common,
|
|
.tx = furi_hal_nfc_iso15693_poller_tx,
|
|
.rx = furi_hal_nfc_iso15693_poller_rx,
|
|
},
|
|
|
|
.listener =
|
|
{
|
|
.compensation =
|
|
{
|
|
.fdt = FURI_HAL_NFC_ISO15693_LISTENER_FDT_COMP_FC,
|
|
},
|
|
.init = furi_hal_nfc_iso15693_listener_init,
|
|
.deinit = furi_hal_nfc_iso15693_listener_deinit,
|
|
.wait_event = furi_hal_nfc_iso15693_wait_event,
|
|
.tx = furi_hal_nfc_iso15693_listener_tx,
|
|
.rx = furi_hal_nfc_iso15693_listener_rx,
|
|
.sleep = furi_hal_nfc_iso15693_listener_sleep,
|
|
.idle = furi_hal_nfc_iso15693_listener_sleep,
|
|
},
|
|
};
|