/* * March 2017 Karl Palsson */ #include #include #include #include #include #include #include #include "trace.h" #include "hw.h" #define LED_DISCO_GREEN_PORT GPIOB #define LED_DISCO_GREEN_PIN GPIO8 struct hw_detail hw_details = { .periph = SPI2, .periph_rcc = RCC_SPI2, .periph_rst = RST_SPI2, .pins = GPIO13| GPIO14 | GPIO15, /* SPI pins for setting AF with */ .port = GPIOB, .port_rcc = RCC_GPIOB, .trigger_rcc = RCC_GPIOB, .trigger_port = GPIOB, .trigger_pin = GPIO9, }; /* provided in board files please*/ /** * Setup any gpios or anything hardware specific. * Should _only_ be things that can't be done in shared init() */ static void hw_init(void) { /* trigger pin gpio */ rcc_periph_clock_enable(hw_details.trigger_rcc); gpio_mode_setup(hw_details.trigger_port, GPIO_MODE_OUTPUT, GPIO_PUPD_NONE, hw_details.trigger_pin); /* spi control lines */ rcc_periph_clock_enable(hw_details.port_rcc); gpio_mode_setup(hw_details.port, GPIO_MODE_AF, GPIO_PUPD_NONE, hw_details.pins); gpio_set_output_options(hw_details.port, GPIO_OTYPE_PP, GPIO_OSPEED_10MHZ, hw_details.pins); gpio_set_af(hw_details.port, GPIO_AF5, hw_details.pins); } static void test_init(void) { /* Setup SPI parameters. */ rcc_periph_clock_enable(hw_details.periph_rcc); spi_init_master(hw_details.periph, SPI_CR1_BAUDRATE_FPCLK_DIV_16, SPI_CR1_CPOL_CLK_TO_0_WHEN_IDLE, SPI_CR1_CPHA_CLK_TRANSITION_1, SPI_CR1_DFF_8BIT, SPI_CR1_MSBFIRST); /* Ignore the stupid NSS pin. */ spi_enable_software_slave_management(hw_details.periph); //spi_enable_ss_output(MRF_SPI); spi_set_nss_high(hw_details.periph); /* Finally enable the SPI. */ spi_enable(hw_details.periph); } static void test_task(void) { static int i = 0; printf("Test iteration %d\n", i++); gpio_set(hw_details.trigger_port, hw_details.trigger_pin); spi_xfer(hw_details.periph, 0xaa); spi_xfer(hw_details.periph, 0x42); spi_xfer(hw_details.periph, 0x69); gpio_clear(hw_details.trigger_port, hw_details.trigger_pin); } static void setup(void) { printf("hi guys!\n"); hw_init(); test_init(); } int main(void) { const struct rcc_clock_scale myclock = { .pll_source = RCC_CFGR_PLLSRC_HSE_CLK, .pll_mul = RCC_CFGR_PLLMUL_MUL4, .pll_div = RCC_CFGR_PLLDIV_DIV2, .hpre = RCC_CFGR_HPRE_SYSCLK_NODIV, .ppre1 = RCC_CFGR_PPRE1_HCLK_NODIV, .ppre2 = RCC_CFGR_PPRE2_HCLK_NODIV, .voltage_scale = PWR_SCALE1, .flash_waitstates = 1, .ahb_frequency = 32e6, .apb1_frequency = 32e6, .apb2_frequency = 32e6, }; int i, j; rcc_clock_setup_pll(&myclock); /* green led for ticking */ rcc_periph_clock_enable(RCC_GPIOB); gpio_mode_setup(LED_DISCO_GREEN_PORT, GPIO_MODE_OUTPUT, GPIO_PUPD_NONE, LED_DISCO_GREEN_PIN); setup(); while (1) { test_task(); gpio_toggle(LED_DISCO_GREEN_PORT, LED_DISCO_GREEN_PIN); for (i = 0; i < 0x800000; i++) { /* Wait a bit. */ __asm__("NOP"); } } return 0; }