nrf: Clean up source by removing tabs, trailing spaces, non-ASCII chars.
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5635b96461
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@ -256,15 +256,15 @@ static const uint16_t render_timings[] =
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// The scale is (approximately) exponential,
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// each step is approx x1.9 greater than the previous.
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{ 0, // Bright, Ticks Duration, Relative power
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2, // 1, 2, 32µs, inf
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2, // 2, 4, 64µs, 200%
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4, // 3, 8, 128µs, 200%
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7, // 4, 15, 240µs, 187%
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13, // 5, 28, 448µs, 187%
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25, // 6, 53, 848µs, 189%
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49, // 7, 102, 1632µs, 192%
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97, // 8, 199, 3184µs, 195%
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// Always on 9, 375, 6000µs, 188%
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2, // 1, 2, 32us, inf
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2, // 2, 4, 64us, 200%
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4, // 3, 8, 128us, 200%
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7, // 4, 15, 240us, 187%
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13, // 5, 28, 448us, 187%
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25, // 6, 53, 848us, 189%
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49, // 7, 102, 1632us, 192%
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97, // 8, 199, 3184us, 195%
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// Always on 9, 375, 6000us, 188%
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};
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#define DISPLAY_TICKER_SLOT 1
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@ -281,7 +281,7 @@ static int32_t callback(void) {
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return -1;
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}
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display->previous_brightness = brightness;
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// Return interval (in 16µs ticks) until next callback
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// Return interval (in 16us ticks) until next callback
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return render_timings[brightness];
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}
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@ -962,7 +962,7 @@ const mp_obj_type_t microbit_facade_iterator_type = {
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};
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mp_obj_t microbit_facade_iterator(mp_obj_t iterable_in, mp_obj_iter_buf_t *iter_buf) {
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(void)iter_buf;
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(void)iter_buf;
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facade_iterator_t *result = m_new_obj(facade_iterator_t);
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string_image_facade_t *iterable = (string_image_facade_t *)iterable_in;
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result->base.type = µbit_facade_iterator_type;
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@ -418,7 +418,7 @@ bool ble_drv_advertise_data(ubluepy_advertise_data_t * p_adv_params) {
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p_adv_params->p_device_name,
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p_adv_params->device_name_len) != 0) {
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nlr_raise(mp_obj_new_exception_msg_varg(&mp_type_OSError,
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"Can not apply device name in the stack."));
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"Can not apply device name in the stack."));
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}
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BLE_DRIVER_LOG("Device name applied\n");
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@ -190,7 +190,7 @@ void ble_uart_init0(void) {
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ble_uart_char_tx.service_handle = ble_uart_service.handle;
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bool retval = ble_drv_characteristic_add(&ble_uart_char_tx);
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if (retval) {
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ble_uart_char_tx.p_service = &ble_uart_service;
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ble_uart_char_tx.p_service = &ble_uart_service;
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}
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mp_obj_list_append(ble_uart_service.char_list, MP_OBJ_FROM_PTR(&ble_uart_char_tx));
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@ -198,7 +198,7 @@ void ble_uart_init0(void) {
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ble_uart_char_rx.service_handle = ble_uart_service.handle;
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retval = ble_drv_characteristic_add(&ble_uart_char_rx);
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if (retval) {
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ble_uart_char_rx.p_service = &ble_uart_service;
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ble_uart_char_rx.p_service = &ble_uart_service;
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}
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mp_obj_list_append(ble_uart_service.char_list, MP_OBJ_FROM_PTR(&ble_uart_char_rx));
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@ -35,7 +35,7 @@
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#define __MICROPY_INCLUDED_LIB_TICKER_H__
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/*************************************
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* 62.5kHz (16µs cycle time) ticker.
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* 62.5kHz (16us cycle time) ticker.
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************************************/
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#include "nrf.h"
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@ -28,6 +28,6 @@
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#include "lib/oofatfs/ff.h"
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DWORD get_fattime(void) {
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// TODO: Implement this function. For now, fake it.
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// TODO: Implement this function. For now, fake it.
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return ((2016 - 1980) << 25) | ((12) << 21) | ((4) << 16) | ((00) << 11) | ((18) << 5) | (23 / 2);
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}
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@ -185,8 +185,8 @@ pin_init0();
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mp_obj_list_append(mp_sys_path, MP_OBJ_NEW_QSTR(MP_QSTR__slash_sd));
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mp_obj_list_append(mp_sys_path, MP_OBJ_NEW_QSTR(MP_QSTR__slash_sd_slash_lib));
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// use SD card as current directory
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f_chdrive("/sd");
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// use SD card as current directory
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f_chdrive("/sd");
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}
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no_mem_for_sd:;
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}
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@ -293,18 +293,17 @@ MP_DEFINE_CONST_FUN_OBJ_KW(mp_builtin_open_obj, 1, mp_builtin_open);
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void HardFault_Handler(void)
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{
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#if defined(NRF52_SERIES)
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static volatile uint32_t reg;
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static volatile uint32_t reg2;
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static volatile uint32_t bfar;
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reg = SCB->HFSR;
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reg2 = SCB->CFSR;
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bfar = SCB->BFAR;
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for (int i = 0; i < 0; i++)
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{
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(void)reg;
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(void)reg2;
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(void)bfar;
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}
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static volatile uint32_t reg;
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static volatile uint32_t reg2;
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static volatile uint32_t bfar;
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reg = SCB->HFSR;
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reg2 = SCB->CFSR;
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bfar = SCB->BFAR;
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for (int i = 0; i < 0; i++) {
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(void)reg;
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(void)reg2;
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(void)bfar;
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}
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#endif
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}
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@ -127,12 +127,12 @@ const pin_obj_t *pin_find(mp_obj_t user_obj) {
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const pin_obj_t *pin_obj;
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// If pin is SMALL_INT
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if (mp_obj_is_small_int(user_obj)) {
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uint8_t value = MP_OBJ_SMALL_INT_VALUE(user_obj);
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uint8_t value = MP_OBJ_SMALL_INT_VALUE(user_obj);
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for (uint8_t i = 0; i < machine_pin_num_of_pins; i++) {
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if (machine_pin_obj[i].pin == value) {
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return &machine_pin_obj[i];
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}
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}
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}
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}
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}
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// If a pin was provided, then use it
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@ -365,7 +365,7 @@ STATIC mp_obj_t pin_obj_init_helper(const pin_obj_t *self, mp_uint_t n_args, con
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// Connect input or not
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nrf_gpio_pin_input_t input = (mode == NRF_GPIO_PIN_DIR_INPUT) ? NRF_GPIO_PIN_INPUT_CONNECT
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: NRF_GPIO_PIN_INPUT_DISCONNECT;
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: NRF_GPIO_PIN_INPUT_DISCONNECT;
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if (mode == NRF_GPIO_PIN_DIR_OUTPUT || mode == NRF_GPIO_PIN_DIR_INPUT) {
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nrf_gpio_cfg(self->pin,
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@ -496,7 +496,7 @@ STATIC void pin_common_irq_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t
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}
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STATIC mp_obj_t pin_irq(size_t n_args, const mp_obj_t *pos_args, mp_map_t *kw_args) {
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enum {ARG_handler, ARG_trigger, ARG_wake};
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enum {ARG_handler, ARG_trigger, ARG_wake};
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static const mp_arg_t allowed_args[] = {
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{ MP_QSTR_handler, MP_ARG_OBJ | MP_ARG_REQUIRED, {.u_obj = mp_const_none} },
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{ MP_QSTR_trigger, MP_ARG_INT, {.u_int = NRF_GPIOTE_POLARITY_LOTOHI | NRF_GPIOTE_POLARITY_HITOLO} },
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@ -154,9 +154,9 @@ STATIC int spi_find(mp_obj_t id) {
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void spi_transfer(const machine_hard_spi_obj_t * self, size_t len, const void * src, void * dest) {
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nrfx_spi_xfer_desc_t xfer_desc = {
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.p_tx_buffer = src,
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.tx_length = len,
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.p_rx_buffer = dest,
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.rx_length = len
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.tx_length = len,
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.p_rx_buffer = dest,
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.rx_length = len
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};
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nrfx_spi_xfer(self->p_spi, &xfer_desc, 0);
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@ -340,7 +340,7 @@ STATIC void machine_hard_spi_init(mp_obj_t self_in, mp_arg_val_t *args) {
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// Active high
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if (args[ARG_INIT_polarity].u_int == 0) {
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if (args[ARG_INIT_phase].u_int == 0) {
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if (args[ARG_INIT_phase].u_int == 0) {
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// First clock edge
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self->p_config->mode = NRF_SPI_MODE_0;
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} else {
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@ -349,7 +349,7 @@ STATIC void machine_hard_spi_init(mp_obj_t self_in, mp_arg_val_t *args) {
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}
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// Active low
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} else {
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if (args[ARG_INIT_phase].u_int == 0) {
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if (args[ARG_INIT_phase].u_int == 0) {
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// First clock edge
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self->p_config->mode = NRF_SPI_MODE_2;
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} else {
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@ -72,7 +72,7 @@ uint32_t machine_rng_generate_random_word(void) {
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status = sd_rand_application_vector_get((uint8_t *)&retval, 4); // Extract 4 bytes
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} while (status != 0);
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return retval;
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return retval;
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}
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#endif
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@ -72,7 +72,7 @@ STATIC const mp_rom_map_elem_t ubluepy_delegate_locals_dict_table[] = {
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{ MP_ROM_QSTR(MP_QSTR_handleConnection), MP_ROM_PTR(&ubluepy_delegate_handle_conn_obj) },
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{ MP_ROM_QSTR(MP_QSTR_handleNotification), MP_ROM_PTR(&ubluepy_delegate_handle_notif_obj) },
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#if 0
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{ MP_ROM_QSTR(MP_QSTR_handleDiscovery), MP_ROM_PTR(&ubluepy_delegate_handle_disc_obj) },
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{ MP_ROM_QSTR(MP_QSTR_handleDiscovery), MP_ROM_PTR(&ubluepy_delegate_handle_disc_obj) },
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#endif
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};
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@ -481,7 +481,7 @@ STATIC const mp_rom_map_elem_t ubluepy_peripheral_locals_dict_table[] = {
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{ MP_ROM_QSTR(MP_QSTR_advertise), MP_ROM_PTR(&ubluepy_peripheral_advertise_obj) },
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#endif
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#if MICROPY_PY_UBLUEPY_OBSERVER
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// Nothing yet.
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// Nothing yet.
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#endif
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};
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@ -162,7 +162,7 @@ STATIC const mp_rom_map_elem_t ubluepy_service_locals_dict_table[] = {
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{ MP_ROM_QSTR(MP_QSTR_addCharacteristic), MP_ROM_PTR(&ubluepy_service_add_char_obj) },
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{ MP_ROM_QSTR(MP_QSTR_getCharacteristics), MP_ROM_PTR(&ubluepy_service_get_chars_obj) },
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#if 0
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// Properties
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// Properties
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{ MP_ROM_QSTR(MP_QSTR_peripheral), MP_ROM_PTR(&ubluepy_service_get_peripheral_obj) },
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#endif
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{ MP_ROM_QSTR(MP_QSTR_uuid), MP_ROM_PTR(&ubluepy_service_get_uuid_obj) },
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@ -42,7 +42,7 @@ typedef enum
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} HAL_StatusTypeDef;
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static inline uint32_t hal_tick_fake(void) {
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return 0;
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return 0;
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}
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#define mp_hal_ticks_ms hal_tick_fake // TODO: implement. Right now, return 0 always
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@ -53,9 +53,9 @@ enum {
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};
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#define PIN_DEFS_PORT_AF_UNION \
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NRF_UART_Type *UART;
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// NRF_SPI_Type *SPIM;
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// NRF_SPIS_Type *SPIS;
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NRF_UART_Type *UART;
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// NRF_SPI_Type *SPIM;
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// NRF_SPIS_Type *SPIS;
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typedef NRF_GPIO_Type pin_gpio_t;
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