add edu-riscv64 lora example and fix name problem
This commit is contained in:
@@ -32,16 +32,16 @@ CONFIG_BSP_USING_UART_HS=y
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#
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# General Purpose UARTs
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#
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CONFIG_BSP_USING_UART1=y
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CONFIG_BSP_UART1_TXD_PIN=20
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CONFIG_BSP_UART1_RXD_PIN=21
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CONFIG_BSP_USING_UART2=y
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CONFIG_BSP_UART2_TXD_PIN=28
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CONFIG_BSP_UART2_RXD_PIN=27
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CONFIG_BSP_USING_UART3=y
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CONFIG_BSP_UART3_TXD_PIN=22
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CONFIG_BSP_UART3_RXD_PIN=23
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CONFIG___STACKSIZE__=4096
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# CONFIG_BSP_USING_UART1=y
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# CONFIG_BSP_UART1_TXD_PIN=20
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# CONFIG_BSP_UART1_RXD_PIN=21
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# CONFIG_BSP_USING_UART2=y
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# CONFIG_BSP_UART2_TXD_PIN=28
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# CONFIG_BSP_UART2_RXD_PIN=27
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# CONFIG_BSP_USING_UART3=y
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# CONFIG_BSP_UART3_TXD_PIN=22
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# CONFIG_BSP_UART3_RXD_PIN=23
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# CONFIG___STACKSIZE__=4096
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#
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# Hardware feature
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@@ -184,6 +184,12 @@ struct InitSequenceDesc _board_init[] =
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#ifdef BSP_USING_I2C
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{ "hw_i2c", HwI2cInit },
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#endif
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#ifdef BSP_USING_RTC
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{ "hw_uart", HwRTC },
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#endif
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#ifdef BSP_USING_UART
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{ "hw_uart", HwUartInit },
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#endif
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#ifdef BSP_USING_SPI
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{ "hw_spi", HwSpiInit },
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#endif
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@@ -78,7 +78,6 @@ enum HS_GPIO_CONFIG
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#define BSP_CH438_INT_PIN 35
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#endif
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#define BSP_USING_SOFT_SPI
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#ifdef BSP_USING_SOFT_SPI
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#define FPIOA_SOFT_SPI_SCK 26
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#define FPIOA_SOFT_SPI_MIOS 25
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@@ -90,10 +89,20 @@ enum HS_GPIO_CONFIG
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#define BSP_SOFT_SPI_MSOI_PIN 27
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#define BSP_SOFT_SPI_NCS_PIN 28
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#endif
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#ifdef BSP_USING_LED
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#define BSP_LED_PIN 29
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#endif
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#ifdef BSP_USING_KEY
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#define BSP_KEY_PIN 31
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#endif
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#ifdef BSP_USING_LORA
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#define BSP_E220_M0_PIN 32
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#define BSP_E220_M1_PIN 33
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#endif
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extern int IoConfigInit(void);
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#endif
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+92
-89
@@ -12,22 +12,20 @@
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#include <dev_spi.h>
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#include <bus_spi.h>
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static x_err_t softSPIinit(struct SpiDriver *spi_drv, struct BusConfigureInfo *cfg)
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{
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NULL_PARAM_CHECK(spi_drv );
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NULL_PARAM_CHECK(cfg );
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NULL_PARAM_CHECK(spi_drv);
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NULL_PARAM_CHECK(cfg);
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//mode CPOL = 0 CPHA = 0
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gpiohs_set_drive_mode(SOFT_SPI_CS0_PIN,GPIO_DM_OUTPUT);
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gpiohs_set_pin(SOFT_SPI_CS0_PIN, GPIO_PV_HIGH);//set the cs gpio high
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// mode CPOL = 0 CPHA = 0
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gpiohs_set_drive_mode(SOFT_SPI_CS0_PIN, GPIO_DM_OUTPUT);
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gpiohs_set_pin(SOFT_SPI_CS0_PIN, GPIO_PV_HIGH); // set the cs gpio high
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gpiohs_set_drive_mode(SOFT_SPI_SCK, GPIO_DM_OUTPUT);
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gpiohs_set_drive_mode(SOFT_SPI_MOSI, GPIO_DM_OUTPUT);
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gpiohs_set_drive_mode(SOFT_SPI_MISO, GPIO_DM_INPUT);
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gpiohs_set_pin(SOFT_SPI_SCK,GPIO_PV_LOW);
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KPrintf("%s init done\n",SOFT_SPI_BUS_NAME);
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gpiohs_set_pin(SOFT_SPI_SCK, GPIO_PV_LOW);
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KPrintf("%s init done\n", SOFT_SPI_BUS_NAME);
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return EOK;
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}
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@@ -43,118 +41,118 @@ static uint32 softSpiDrvConfigure(void *drv, struct BusConfigureInfo *configure_
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switch (configure_info->configure_cmd)
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{
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case OPE_INT:
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softSPIinit(spi_drv,configure_info);
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softSPIinit(spi_drv, configure_info);
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break;
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case OPE_CFG:
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break;
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break;
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default:
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break;
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}
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return ret;
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return ret;
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}
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static void soft_spi_writebyte(struct SpiHardwareDevice *spi_dev, uint8_t data)
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{
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int8_t i = 0;
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uint8_t temp = 0;
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for(i=0; i<8; i++)
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for (i = 0; i < 8; i++)
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{
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temp = ((data&0x80)==0x80)? 1:0;
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data = data<<1;
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gpiohs_set_pin(SOFT_SPI_SCK,GPIO_PV_LOW);
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usleep(SOFT_SPI_CLK_DELAY);
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if(0 == temp )
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temp = ((data & 0x80) == 0x80) ? 1 : 0;
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data = data << 1;
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gpiohs_set_pin(SOFT_SPI_SCK, GPIO_PV_LOW);
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usleep(SOFT_SPI_CLK_DELAY);
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if (0 == temp)
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{
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gpiohs_set_pin(SOFT_SPI_MOSI,GPIO_PV_LOW);
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gpiohs_set_pin(SOFT_SPI_MOSI, GPIO_PV_LOW);
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}
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else
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{
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gpiohs_set_pin(SOFT_SPI_MOSI,GPIO_PV_HIGH);
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gpiohs_set_pin(SOFT_SPI_MOSI, GPIO_PV_HIGH);
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}
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gpiohs_set_pin(SOFT_SPI_SCK,GPIO_PV_HIGH);
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usleep(SOFT_SPI_CLK_DELAY);
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gpiohs_set_pin(SOFT_SPI_SCK, GPIO_PV_HIGH);
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usleep(SOFT_SPI_CLK_DELAY);
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}
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gpiohs_set_pin(SOFT_SPI_SCK,GPIO_PV_LOW);
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gpiohs_set_pin(SOFT_SPI_SCK, GPIO_PV_LOW);
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}
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/* 读一个字节 */
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static uint8_t soft_spi_readbyte(struct SpiHardwareDevice *spi_dev)
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{
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uint8_t i = 0;
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uint8_t read_data = 0xFF;
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for(i=0; i<8; i++)
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{
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for (i = 0; i < 8; i++)
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{
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read_data = read_data << 1;
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gpiohs_set_pin(SOFT_SPI_SCK,GPIO_PV_LOW);
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gpiohs_set_pin(SOFT_SPI_SCK, GPIO_PV_LOW);
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usleep(SOFT_SPI_CLK_DELAY);
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gpiohs_set_pin(SOFT_SPI_SCK,GPIO_PV_HIGH);
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gpiohs_set_pin(SOFT_SPI_SCK, GPIO_PV_HIGH);
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usleep(SOFT_SPI_CLK_DELAY);
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if(1==gpiohs_get_pin(SOFT_SPI_MISO))
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if (1 == gpiohs_get_pin(SOFT_SPI_MISO))
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{
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read_data = read_data | 0x01;
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}
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read_data = read_data | 0x01;
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}
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}
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return read_data;
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}
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/* 读写一个字节 */
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//this funcition is unverify until now!
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// this funcition is unverify until now!
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static uint8_t soft_spi_readwritebyte(struct SpiHardwareDevice *spi_dev, uint8_t data)
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{
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uint8_t i = 0;
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uint8_t temp = 0;
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uint8_t read_data = 0xFF;
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for(i=0;i<8;i++)
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for (i = 0; i < 8; i++)
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{
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temp = ((data&0x80)==0x80)? 1:0;
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data = data<<1;
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read_data = read_data<<1;
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if(temp == 0)
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temp = ((data & 0x80) == 0x80) ? 1 : 0;
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data = data << 1;
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read_data = read_data << 1;
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if (temp == 0)
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{
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gpiohs_set_pin(SOFT_SPI_MOSI,GPIO_PV_LOW);
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gpiohs_set_pin(SOFT_SPI_MOSI, GPIO_PV_LOW);
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}
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else
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{
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gpiohs_set_pin(SOFT_SPI_MOSI,GPIO_PV_HIGH);
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gpiohs_set_pin(SOFT_SPI_MOSI, GPIO_PV_HIGH);
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}
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usleep(SOFT_SPI_CLK_DELAY);
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gpiohs_set_pin(SOFT_SPI_SCK,GPIO_PV_HIGH);
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gpiohs_set_pin(SOFT_SPI_SCK, GPIO_PV_HIGH);
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usleep(SOFT_SPI_CLK_DELAY);
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if(gpiohs_get_pin(SOFT_SPI_MISO)==1)
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if (gpiohs_get_pin(SOFT_SPI_MISO) == 1)
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{
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read_data = read_data + 1;
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}
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read_data = read_data + 1;
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}
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return read_data;
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}
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return read_data;
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}
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static uint32 softSpiWriteData(struct SpiHardwareDevice *spi_dev, struct SpiDataStandard *spi_datacfg)
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{
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SpiDeviceParam *dev_param = (SpiDeviceParam *)(spi_dev->haldev.private_data);
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SpiDeviceParam *dev_param = (SpiDeviceParam *)(spi_dev->haldev.private_data);
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uint8 cs_gpio_pin = dev_param->spi_slave_param->spi_cs_gpio_pin;
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const uint8_t *data_buff = spi_datacfg->tx_buff;
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int data_length = spi_datacfg->length;
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if(NONE == spi_datacfg->tx_buff){
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int data_length = spi_datacfg->length;
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if (NONE == spi_datacfg->tx_buff)
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{
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data_length = 0;
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}
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if (spi_datacfg->spi_chip_select) {
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gpiohs_set_pin(cs_gpio_pin, GPIO_PV_LOW);
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}
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for(size_t i=0;i<data_length;i++){
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soft_spi_writebyte(spi_dev,data_buff[i] );
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}
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if (spi_datacfg->spi_cs_release) {
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if (spi_datacfg->spi_chip_select)
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{
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gpiohs_set_pin(cs_gpio_pin, GPIO_PV_LOW);
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}
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for (size_t i = 0; i < data_length; i++)
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{
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soft_spi_writebyte(spi_dev, data_buff[i]);
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}
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if (spi_datacfg->spi_cs_release)
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{
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gpiohs_set_pin(cs_gpio_pin, GPIO_PV_HIGH);
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}
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spi_datacfg = spi_datacfg->next;
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@@ -164,40 +162,41 @@ static uint32 softSpiWriteData(struct SpiHardwareDevice *spi_dev, struct SpiData
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static uint32 softSpiReadData(struct SpiHardwareDevice *spi_dev, struct SpiDataStandard *spi_datacfg)
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{
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SpiDeviceParam *dev_param = (SpiDeviceParam *)(spi_dev->haldev.private_data);
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SpiDeviceParam *dev_param = (SpiDeviceParam *)(spi_dev->haldev.private_data);
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uint8 cs_gpio_pin = dev_param->spi_slave_param->spi_cs_gpio_pin;
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uint8_t *recv_buff = spi_datacfg->rx_buff;
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int recv_length = spi_datacfg->length;
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if(NONE == spi_datacfg->rx_buff){
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if (NONE == spi_datacfg->rx_buff)
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{
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recv_length = 0;
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}
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}
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if (spi_datacfg->spi_chip_select) {
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if (spi_datacfg->spi_chip_select)
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{
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gpiohs_set_pin(cs_gpio_pin, GPIO_PV_LOW);
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}
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}
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for(size_t i=0;i<recv_length;i++){
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for (size_t i = 0; i < recv_length; i++)
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{
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recv_buff[i] = soft_spi_readbyte(spi_dev);
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}
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if (spi_datacfg->spi_cs_release) {
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if (spi_datacfg->spi_cs_release)
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{
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gpiohs_set_pin(cs_gpio_pin, GPIO_PV_HIGH);
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}
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spi_datacfg = spi_datacfg->next;
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return spi_datacfg->length;
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return spi_datacfg->length;
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}
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const struct SpiDevDone soft_spi_dev_done={
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const struct SpiDevDone soft_spi_dev_done = {
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.dev_close = NONE,
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.dev_open = NONE,
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.dev_read = softSpiReadData,
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.dev_write = softSpiWriteData
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};
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.dev_read = softSpiReadData,
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.dev_write = softSpiWriteData};
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static int BoardSoftSpiBusInit(struct SpiBus *spi_bus, struct SpiDriver *spi_driver)
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{
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@@ -205,24 +204,27 @@ static int BoardSoftSpiBusInit(struct SpiBus *spi_bus, struct SpiDriver *spi_dri
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/*Init the spi bus */
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ret = SpiBusInit(spi_bus, SOFT_SPI_BUS_NAME);
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if (EOK != ret) {
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if (EOK != ret)
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{
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KPrintf("Board_Spi_init SpiBusInit error %d\n", ret);
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return ERROR;
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}
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/*Init the spi driver*/
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ret = SpiDriverInit(spi_driver, SOFT_SPI_DRV_NAME);
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if (EOK != ret) {
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if (EOK != ret)
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{
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KPrintf("Board_Spi_init SpiDriverInit error %d\n", ret);
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return ERROR;
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}
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/*Attach the spi driver to the spi bus*/
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ret = SpiDriverAttachToBus(SOFT_SPI_DRV_NAME, SOFT_SPI_BUS_NAME);
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if (EOK != ret) {
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if (EOK != ret)
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{
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KPrintf("Board_Spi_init SpiDriverAttachToBus error %d\n", ret);
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return ERROR;
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}
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}
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return ret;
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}
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@@ -247,21 +249,24 @@ static int BoardSoftSpiDevBend(void)
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spi_device0.spi_dev_done = &(soft_spi_dev_done);
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ret = SpiDeviceRegister(&spi_device0, (void *)(&spi_device0.spi_param), SOFT_SPI_DEVICE_NAME);
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if (EOK != ret) {
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if (EOK != ret)
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{
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KPrintf("Board_Spi_init SpiDeviceInit device %s error %d\n", SOFT_SPI_DEVICE_NAME, ret);
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return ERROR;
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}
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}
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ret = SpiDeviceAttachToBus(SOFT_SPI_DEVICE_NAME, SOFT_SPI_BUS_NAME);
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if (EOK != ret) {
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if (EOK != ret)
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{
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KPrintf("Board_Spi_init SpiDeviceAttachToBus device %s error %d\n", SOFT_SPI_DEVICE_NAME, ret);
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return ERROR;
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}
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return ret;
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return ret;
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}
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int HwSoftSPIInit(void){
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int HwSoftSPIInit(void)
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{
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x_err_t ret = EOK;
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static struct SpiBus spi_bus;
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@@ -270,23 +275,21 @@ int HwSoftSPIInit(void){
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static struct SpiDriver spi_driver;
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memset(&spi_driver, 0, sizeof(struct SpiDriver));
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spi_driver.configure = &(softSpiDrvConfigure);
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ret = BoardSoftSpiBusInit(&spi_bus, &spi_driver);
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if (EOK != ret) {
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if (EOK != ret)
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{
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KPrintf("Board_Spi_Init error ret %u\n", ret);
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return ERROR;
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}
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ret = BoardSoftSpiDevBend();
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if (EOK != ret) {
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if (EOK != ret)
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{
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KPrintf("Board_Spi_Init error ret %u\n", ret);
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return ERROR;
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}
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}
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return ret;
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}
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