2022-10-28 18:46:40 +03:00
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#include "i2csniffer.h"
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void clear_sniffer_buffers(i2cSniffer* i2c_sniffer) {
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furi_assert(i2c_sniffer);
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for(uint8_t i = 0; i < MAX_RECORDS; i++) {
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for(uint8_t j = 0; j < MAX_MESSAGE_SIZE; j++) {
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i2c_sniffer->frames[i].ack[j] = false;
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i2c_sniffer->frames[i].data[j] = 0;
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}
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i2c_sniffer->frames[i].bit_index = 0;
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i2c_sniffer->frames[i].data_index = 0;
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}
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i2c_sniffer->frame_index = 0;
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i2c_sniffer->state = I2C_BUS_FREE;
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i2c_sniffer->first = true;
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}
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void start_interrupts(i2cSniffer* i2c_sniffer) {
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furi_assert(i2c_sniffer);
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furi_hal_gpio_init(pinSCL, GpioModeInterruptRise, GpioPullNo, GpioSpeedHigh);
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furi_hal_gpio_add_int_callback(pinSCL, SCLcallback, i2c_sniffer);
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// Add Rise and Fall Interrupt on SDA pin
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furi_hal_gpio_init(pinSDA, GpioModeInterruptRiseFall, GpioPullNo, GpioSpeedHigh);
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furi_hal_gpio_add_int_callback(pinSDA, SDAcallback, i2c_sniffer);
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}
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void stop_interrupts() {
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furi_hal_gpio_remove_int_callback(pinSCL);
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furi_hal_gpio_remove_int_callback(pinSDA);
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// Reset GPIO pins to default state
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furi_hal_gpio_init(pinSCL, GpioModeAnalog, GpioPullNo, GpioSpeedLow);
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furi_hal_gpio_init(pinSDA, GpioModeAnalog, GpioPullNo, GpioSpeedLow);
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}
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// Called on Fallin/Rising SDA
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// Used to monitor i2c bus state
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void SDAcallback(void* _i2c_sniffer) {
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i2cSniffer* i2c_sniffer = _i2c_sniffer;
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// SCL is low maybe cclock strecching
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if(furi_hal_gpio_read(pinSCL) == false) {
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return;
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}
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// Check for stop condition: SDA rising while SCL is High
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if(i2c_sniffer->state == I2C_BUS_STARTED) {
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if(furi_hal_gpio_read(pinSDA) == true) {
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i2c_sniffer->state = I2C_BUS_FREE;
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}
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}
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// Check for start condition: SDA falling while SCL is high
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else if(furi_hal_gpio_read(pinSDA) == false) {
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i2c_sniffer->state = I2C_BUS_STARTED;
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if(i2c_sniffer->first) {
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i2c_sniffer->first = false;
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return;
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}
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i2c_sniffer->frame_index++;
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if(i2c_sniffer->frame_index >= MAX_RECORDS) {
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clear_sniffer_buffers(i2c_sniffer);
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}
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}
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return;
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}
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// Called on Rising SCL
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// Used to read bus datas
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void SCLcallback(void* _i2c_sniffer) {
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i2cSniffer* i2c_sniffer = _i2c_sniffer;
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if(i2c_sniffer->state == I2C_BUS_FREE) {
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return;
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}
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uint8_t frame = i2c_sniffer->frame_index;
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uint8_t bit = i2c_sniffer->frames[frame].bit_index;
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uint8_t data_idx = i2c_sniffer->frames[frame].data_index;
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if(bit < 8) {
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i2c_sniffer->frames[frame].data[data_idx] <<= 1;
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i2c_sniffer->frames[frame].data[data_idx] |= (int)furi_hal_gpio_read(pinSDA);
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i2c_sniffer->frames[frame].bit_index++;
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} else {
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i2c_sniffer->frames[frame].ack[data_idx] = !furi_hal_gpio_read(pinSDA);
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i2c_sniffer->frames[frame].data_index++;
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i2c_sniffer->frames[frame].bit_index = 0;
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}
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}
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i2cSniffer* i2c_sniffer_alloc() {
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i2cSniffer* i2c_sniffer = malloc(sizeof(i2cSniffer));
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i2c_sniffer->started = false;
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2022-11-17 22:30:25 +03:00
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i2c_sniffer->row_index = 0;
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i2c_sniffer->menu_index = 0;
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2022-10-28 18:46:40 +03:00
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clear_sniffer_buffers(i2c_sniffer);
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return i2c_sniffer;
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}
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void i2c_sniffer_free(i2cSniffer* i2c_sniffer) {
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furi_assert(i2c_sniffer);
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if(i2c_sniffer->started) {
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stop_interrupts();
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}
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free(i2c_sniffer);
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}
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