implement thread-safe spi
This commit is contained in:
parent
50b060ab32
commit
d4dd33d2df
@ -13,20 +13,20 @@
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// limitations under the License.
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#include "esp32-hal-spi.h"
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#include "esp32-hal.h"
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#include "freertos/FreeRTOS.h"
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#include "freertos/task.h"
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#include "freertos/semphr.h"
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#include "rom/ets_sys.h"
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#include "esp_attr.h"
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#include "esp_intr.h"
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#include "rom/gpio.h"
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#include "soc/spi_reg.h"
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#include "soc/spi_struct.h"
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#include "soc/io_mux_reg.h"
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#include "soc/gpio_sig_map.h"
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#include "soc/dport_reg.h"
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#define SPI_REG_BASE(p) ((p==0)?DR_REG_SPI0_BASE:((p==1)?DR_REG_SPI1_BASE:((p==2)?DR_REG_SPI2_BASE:((p==3)?DR_REG_SPI3_BASE:0))))
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#define SPI_DEV(i) ((spi_dev_t *)(SPI_REG_BASE(i)))
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#define SPI_CLK_IDX(p) ((p==0)?SPICLK_OUT_IDX:((p==1)?SPICLK_OUT_IDX:((p==2)?HSPICLK_OUT_IDX:((p==3)?VSPICLK_OUT_MUX_IDX:0))))
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#define SPI_MISO_IDX(p) ((p==0)?SPIQ_OUT_IDX:((p==1)?SPIQ_OUT_IDX:((p==2)?HSPIQ_OUT_IDX:((p==3)?VSPIQ_OUT_IDX:0))))
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#define SPI_MOSI_IDX(p) ((p==0)?SPID_IN_IDX:((p==1)?SPID_IN_IDX:((p==2)?HSPID_IN_IDX:((p==3)?VSPID_IN_IDX:0))))
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@ -39,6 +39,22 @@
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#define SPI_INUM(u) (2)
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#define SPI_INTR_SOURCE(u) ((u==0)?ETS_SPI0_INTR_SOURCE:((u==1)?ETS_SPI1_INTR_SOURCE:((u==2)?ETS_SPI2_INTR_SOURCE:((p==3)?ETS_SPI3_INTR_SOURCE:0))))
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struct spi_struct_t {
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spi_dev_t * dev;
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xSemaphoreHandle lock;
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uint8_t num;
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};
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#define SPI_MUTEX_LOCK() do {} while (xSemaphoreTake(spi->lock, portMAX_DELAY) != pdPASS)
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#define SPI_MUTEX_UNLOCK() xSemaphoreGive(spi->lock)
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static spi_t _spi_bus_array[4] = {
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{(volatile spi_dev_t *)(DR_REG_SPI0_BASE), NULL, 0},
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{(volatile spi_dev_t *)(DR_REG_SPI1_BASE), NULL, 1},
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{(volatile spi_dev_t *)(DR_REG_SPI2_BASE), NULL, 2},
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{(volatile spi_dev_t *)(DR_REG_SPI3_BASE), NULL, 3}
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};
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void spiAttachSCK(spi_t * spi, int8_t sck)
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{
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if(!spi) {
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@ -53,8 +69,10 @@ void spiAttachSCK(spi_t * spi, int8_t sck)
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sck = 6;
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}
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}
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SPI_MUTEX_LOCK();
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pinMode(sck, OUTPUT);
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pinMatrixOutAttach(sck, SPI_CLK_IDX(spi->num), false, false);
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SPI_MUTEX_UNLOCK();
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}
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void spiAttachMISO(spi_t * spi, int8_t miso)
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@ -71,8 +89,10 @@ void spiAttachMISO(spi_t * spi, int8_t miso)
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miso = 7;
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}
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}
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SPI_MUTEX_LOCK();
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pinMode(miso, INPUT);
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pinMatrixInAttach(miso, SPI_MISO_IDX(spi->num), false);
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SPI_MUTEX_UNLOCK();
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}
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void spiAttachMOSI(spi_t * spi, int8_t mosi)
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@ -89,8 +109,10 @@ void spiAttachMOSI(spi_t * spi, int8_t mosi)
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mosi = 8;
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}
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}
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SPI_MUTEX_LOCK();
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pinMode(mosi, OUTPUT);
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pinMatrixOutAttach(mosi, SPI_MOSI_IDX(spi->num), false, false);
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SPI_MUTEX_UNLOCK();
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}
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void spiDetachSCK(spi_t * spi, int8_t sck)
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@ -107,8 +129,10 @@ void spiDetachSCK(spi_t * spi, int8_t sck)
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sck = 6;
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}
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}
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SPI_MUTEX_LOCK();
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pinMatrixOutDetach(sck, false, false);
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pinMode(sck, INPUT);
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SPI_MUTEX_UNLOCK();
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}
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void spiDetachMISO(spi_t * spi, int8_t miso)
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@ -125,8 +149,10 @@ void spiDetachMISO(spi_t * spi, int8_t miso)
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miso = 7;
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}
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}
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SPI_MUTEX_LOCK();
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pinMatrixInDetach(SPI_MISO_IDX(spi->num), false, false);
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pinMode(miso, INPUT);
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SPI_MUTEX_UNLOCK();
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}
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void spiDetachMOSI(spi_t * spi, int8_t mosi)
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@ -143,8 +169,10 @@ void spiDetachMOSI(spi_t * spi, int8_t mosi)
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mosi = 8;
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}
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}
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SPI_MUTEX_LOCK();
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pinMatrixOutDetach(mosi, false, false);
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pinMode(mosi, INPUT);
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SPI_MUTEX_UNLOCK();
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}
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void spiAttachSS(spi_t * spi, uint8_t cs_num, int8_t ss)
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@ -165,9 +193,11 @@ void spiAttachSS(spi_t * spi, uint8_t cs_num, int8_t ss)
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ss = 11;
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}
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}
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SPI_MUTEX_LOCK();
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pinMode(ss, OUTPUT);
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pinMatrixOutAttach(ss, SPI_SS_IDX(spi->num, cs_num), false, false);
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spiEnableSSPins(spi, (1 << cs_num));
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SPI_MUTEX_UNLOCK();
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}
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void spiDetachSS(spi_t * spi, int8_t ss)
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@ -184,8 +214,10 @@ void spiDetachSS(spi_t * spi, int8_t ss)
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ss = 11;
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}
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}
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SPI_MUTEX_LOCK();
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pinMatrixOutDetach(ss, false, false);
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pinMode(ss, INPUT);
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SPI_MUTEX_UNLOCK();
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}
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void spiEnableSSPins(spi_t * spi, uint8_t cs_mask)
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@ -193,7 +225,9 @@ void spiEnableSSPins(spi_t * spi, uint8_t cs_mask)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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spi->dev->pin.val &= ~(cs_mask & SPI_CS_MASK_ALL);
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SPI_MUTEX_UNLOCK();
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}
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void spiDisableSSPins(spi_t * spi, uint8_t cs_mask)
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@ -201,7 +235,9 @@ void spiDisableSSPins(spi_t * spi, uint8_t cs_mask)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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spi->dev->pin.val |= (cs_mask & SPI_CS_MASK_ALL);
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SPI_MUTEX_UNLOCK();
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}
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void spiSSEnable(spi_t * spi)
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@ -209,8 +245,10 @@ void spiSSEnable(spi_t * spi)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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spi->dev->user.cs_setup = 1;
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spi->dev->user.cs_hold = 1;
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SPI_MUTEX_UNLOCK();
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}
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void spiSSDisable(spi_t * spi)
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@ -218,8 +256,10 @@ void spiSSDisable(spi_t * spi)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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spi->dev->user.cs_setup = 0;
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spi->dev->user.cs_hold = 0;
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SPI_MUTEX_UNLOCK();
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}
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void spiSSSet(spi_t * spi)
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@ -227,7 +267,9 @@ void spiSSSet(spi_t * spi)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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spi->dev->pin.cs_keep_active = 1;
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SPI_MUTEX_UNLOCK();
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}
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void spiSSClear(spi_t * spi)
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@ -235,7 +277,9 @@ void spiSSClear(spi_t * spi)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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spi->dev->pin.cs_keep_active = 0;
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SPI_MUTEX_UNLOCK();
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}
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uint32_t spiGetClockDiv(spi_t * spi)
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@ -243,7 +287,9 @@ uint32_t spiGetClockDiv(spi_t * spi)
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if(!spi) {
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return 0;
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}
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SPI_MUTEX_LOCK();
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return spi->dev->clock.val;
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SPI_MUTEX_UNLOCK();
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}
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void spiSetClockDiv(spi_t * spi, uint32_t clockDiv)
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@ -251,7 +297,9 @@ void spiSetClockDiv(spi_t * spi, uint32_t clockDiv)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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spi->dev->clock.val = clockDiv;
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SPI_MUTEX_UNLOCK();
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}
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uint8_t spiGetDataMode(spi_t * spi)
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@ -278,6 +326,7 @@ void spiSetDataMode(spi_t * spi, uint8_t dataMode)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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switch (dataMode) {
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case SPI_MODE1:
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spi->dev->pin.ck_idle_edge = 0;
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@ -297,6 +346,7 @@ void spiSetDataMode(spi_t * spi, uint8_t dataMode)
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spi->dev->user.ck_out_edge = 0;
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break;
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}
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SPI_MUTEX_UNLOCK();
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}
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uint8_t spiGetBitOrder(spi_t * spi)
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@ -312,6 +362,7 @@ void spiSetBitOrder(spi_t * spi, uint8_t bitOrder)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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if (SPI_MSBFIRST == bitOrder) {
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spi->dev->ctrl.wr_bit_order = 0;
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spi->dev->ctrl.rd_bit_order = 0;
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@ -319,6 +370,7 @@ void spiSetBitOrder(spi_t * spi, uint8_t bitOrder)
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spi->dev->ctrl.wr_bit_order = 1;
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spi->dev->ctrl.rd_bit_order = 1;
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}
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SPI_MUTEX_UNLOCK();
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}
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void spiStopBus(spi_t * spi)
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@ -326,6 +378,7 @@ void spiStopBus(spi_t * spi)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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spi->dev->slave.trans_done = 0;
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spi->dev->slave.slave_mode = 0;
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spi->dev->pin.val = 0;
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@ -335,18 +388,23 @@ void spiStopBus(spi_t * spi)
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spi->dev->ctrl1.val = 0;
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spi->dev->ctrl2.val = 0;
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spi->dev->clock.val = 0;
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SPI_MUTEX_UNLOCK();
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}
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spi_t * spiStartBus(uint8_t spi_num, uint32_t clockDiv, uint8_t dataMode, uint8_t bitOrder)
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{
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spi_t* spi = (spi_t*) malloc(sizeof(spi_t));
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if(spi == 0) {
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if(spi_num > 3){
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return NULL;
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}
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spi->num = spi_num;
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spi->dev = (spi_dev_t *)SPI_DEV(spi_num);
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spi_t * spi = &_spi_bus_array[spi_num];
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if(spi->lock == NULL){
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spi->lock = xSemaphoreCreateMutex();
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if(spi->lock == NULL) {
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return NULL;
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}
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}
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if(spi_num == HSPI) {
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SET_PERI_REG_MASK(DPORT_PERIP_CLK_EN_REG, DPORT_SPI_CLK_EN_1);
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@ -364,6 +422,7 @@ spi_t * spiStartBus(uint8_t spi_num, uint32_t clockDiv, uint8_t dataMode, uint8_
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spiSetBitOrder(spi, bitOrder);
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spiSetClockDiv(spi, clockDiv);
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SPI_MUTEX_LOCK();
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spi->dev->user.usr_mosi = 1;
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spi->dev->user.usr_miso = 1;
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spi->dev->user.doutdin = 1;
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@ -372,6 +431,7 @@ spi_t * spiStartBus(uint8_t spi_num, uint32_t clockDiv, uint8_t dataMode, uint8_
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for(i=0; i<16; i++) {
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spi->dev->data_buf[i] = 0x00000000;
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}
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SPI_MUTEX_UNLOCK();
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return spi;
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}
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@ -393,6 +453,7 @@ void spiWrite(spi_t * spi, uint32_t *data, uint8_t len)
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if(len > 16) {
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len = 16;
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}
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SPI_MUTEX_LOCK();
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while(spi->dev->cmd.usr);
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spi->dev->mosi_dlen.usr_mosi_dbitlen = (len * 32) - 1;
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spi->dev->miso_dlen.usr_miso_dbitlen = (len * 32) - 1;
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@ -400,6 +461,7 @@ void spiWrite(spi_t * spi, uint32_t *data, uint8_t len)
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spi->dev->data_buf[i] = data[i];
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}
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spi->dev->cmd.usr = 1;
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SPI_MUTEX_UNLOCK();
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}
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void spiRead(spi_t * spi, uint32_t *data, uint8_t len)
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@ -411,10 +473,12 @@ void spiRead(spi_t * spi, uint32_t *data, uint8_t len)
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if(len > 16) {
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len = 16;
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}
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SPI_MUTEX_LOCK();
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while(spi->dev->cmd.usr);
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for(i=0; i<len; i++) {
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data[i] = spi->dev->data_buf[i];
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}
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SPI_MUTEX_UNLOCK();
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}
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void spiWriteByte(spi_t * spi, uint8_t data)
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@ -422,11 +486,13 @@ void spiWriteByte(spi_t * spi, uint8_t data)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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while(spi->dev->cmd.usr);
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spi->dev->mosi_dlen.usr_mosi_dbitlen = 7;
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spi->dev->miso_dlen.usr_miso_dbitlen = 7;
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spi->dev->data_buf[0] = data;
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spi->dev->cmd.usr = 1;
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SPI_MUTEX_UNLOCK();
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}
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uint8_t spiReadByte(spi_t * spi)
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@ -434,8 +500,12 @@ uint8_t spiReadByte(spi_t * spi)
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if(!spi) {
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return 0;
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}
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uint8_t data;
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SPI_MUTEX_LOCK();
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while(spi->dev->cmd.usr);
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return spi->dev->data_buf[0] & 0xFF;
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data = spi->dev->data_buf[0] & 0xFF;
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SPI_MUTEX_UNLOCK();
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return data;
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}
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uint32_t __spiTranslate16(uint16_t data, bool msb)
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@ -480,11 +550,13 @@ void spiWriteWord(spi_t * spi, uint16_t data)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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while(spi->dev->cmd.usr);
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spi->dev->mosi_dlen.usr_mosi_dbitlen = 15;
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spi->dev->miso_dlen.usr_miso_dbitlen = 15;
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spi->dev->data_buf[0] = __spiTranslate16(data, !spi->dev->ctrl.wr_bit_order);
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spi->dev->cmd.usr = 1;
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SPI_MUTEX_UNLOCK();
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}
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uint16_t spiReadWord(spi_t * spi)
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@ -492,8 +564,12 @@ uint16_t spiReadWord(spi_t * spi)
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if(!spi) {
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return 0;
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}
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uint16_t data;
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SPI_MUTEX_LOCK();
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while(spi->dev->cmd.usr);
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return __spiTranslate16(spi->dev->data_buf[0] & 0xFFFF, !spi->dev->ctrl.rd_bit_order);
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data = __spiTranslate16(spi->dev->data_buf[0] & 0xFFFF, !spi->dev->ctrl.rd_bit_order);
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SPI_MUTEX_UNLOCK();
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return data;
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}
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void spiWriteLong(spi_t * spi, uint32_t data)
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@ -501,11 +577,13 @@ void spiWriteLong(spi_t * spi, uint32_t data)
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if(!spi) {
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return;
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}
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SPI_MUTEX_LOCK();
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while(spi->dev->cmd.usr);
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spi->dev->mosi_dlen.usr_mosi_dbitlen = 31;
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spi->dev->miso_dlen.usr_miso_dbitlen = 31;
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spi->dev->data_buf[0] = __spiTranslate32(data, !spi->dev->ctrl.wr_bit_order);
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spi->dev->cmd.usr = 1;
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SPI_MUTEX_UNLOCK();
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}
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uint32_t spiReadLong(spi_t * spi)
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@ -513,8 +591,12 @@ uint32_t spiReadLong(spi_t * spi)
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if(!spi) {
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return 0;
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}
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uint32_t data;
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SPI_MUTEX_LOCK();
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while(spi->dev->cmd.usr);
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return __spiTranslate32(spi->dev->data_buf[0], !spi->dev->ctrl.rd_bit_order);
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data = __spiTranslate32(spi->dev->data_buf[0], !spi->dev->ctrl.rd_bit_order);
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SPI_MUTEX_UNLOCK();
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return data;
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}
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void spiTransferBits(spi_t * spi, uint32_t data, uint32_t * out, uint8_t bits)
|
||||
@ -529,6 +611,7 @@ void spiTransferBits(spi_t * spi, uint32_t data, uint32_t * out, uint8_t bits)
|
||||
uint32_t bytes = (bits + 7) / 8;//64 max
|
||||
uint32_t mask = (((uint64_t)1 << bits) - 1) & 0xFFFFFFFF;
|
||||
|
||||
SPI_MUTEX_LOCK();
|
||||
while(spi->dev->cmd.usr);
|
||||
spi->dev->mosi_dlen.usr_mosi_dbitlen = (bits - 1);
|
||||
spi->dev->miso_dlen.usr_miso_dbitlen = (bits - 1);
|
||||
@ -555,6 +638,7 @@ void spiTransferBits(spi_t * spi, uint32_t data, uint32_t * out, uint8_t bits)
|
||||
*out = __spiTranslate32(spi->dev->data_buf[0] & mask, !spi->dev->ctrl.wr_bit_order);
|
||||
}
|
||||
}
|
||||
SPI_MUTEX_UNLOCK();
|
||||
}
|
||||
|
||||
void __spiTransferBytes(spi_t * spi, uint8_t * data, uint8_t * out, uint32_t bytes)
|
||||
@ -605,6 +689,7 @@ void spiTransferBytes(spi_t * spi, uint8_t * data, uint8_t * out, uint32_t size)
|
||||
if(!spi) {
|
||||
return;
|
||||
}
|
||||
SPI_MUTEX_LOCK();
|
||||
while(size) {
|
||||
if(size > 64) {
|
||||
__spiTransferBytes(spi, data, out, 64);
|
||||
@ -620,6 +705,7 @@ void spiTransferBytes(spi_t * spi, uint8_t * data, uint8_t * out, uint32_t size)
|
||||
size = 0;
|
||||
}
|
||||
}
|
||||
SPI_MUTEX_UNLOCK();
|
||||
}
|
||||
|
||||
|
||||
|
@ -19,8 +19,8 @@
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
#include "esp32-hal.h"
|
||||
#include "soc/spi_struct.h"
|
||||
#include <stdint.h>
|
||||
#include <stdbool.h>
|
||||
|
||||
#define SPI_HAS_TRANSACTION
|
||||
|
||||
@ -51,10 +51,8 @@ extern "C" {
|
||||
#define SPI_LSBFIRST 0
|
||||
#define SPI_MSBFIRST 1
|
||||
|
||||
typedef struct {
|
||||
spi_dev_t * dev;
|
||||
uint8_t num;
|
||||
} spi_t;
|
||||
struct spi_struct_t;
|
||||
typedef struct spi_struct_t spi_t;
|
||||
|
||||
spi_t * spiStartBus(uint8_t spi_num, uint32_t freq, uint8_t dataMode, uint8_t bitOrder);
|
||||
void spiStopBus(spi_t * spi);
|
||||
|
Loading…
Reference in New Issue
Block a user