mirror of
https://github.com/drasko/open-ameba.git
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update
This commit is contained in:
parent
929dc6d329
commit
0557a41f1a
13 changed files with 99 additions and 69 deletions
4
Makefile
4
Makefile
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@ -50,4 +50,6 @@ readfullflash:
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.PHONY: prerequirement
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prerequirement:
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# @$(file >DEPENDENCY_LIST.txt,$(DEPENDENCY_LIST))
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TARGETTYPE := APP
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TARGETNAME := build\obj\build.axf
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@ -79,12 +79,12 @@ typedef struct
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#define CoreDebug_DEMCR_TRCENA_Msk (1UL << CoreDebug_DEMCR_TRCENA_Pos) /*!< CoreDebug DEMCR: TRCENA Mask */
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#endif
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void wait(float s) {
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void wait(float s) { // До 1073741 секунд? 298 часов
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// wait_us((int)(s * 1000000.0f));
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vTaskDelay((int)(s * 1000.0f));
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}
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void wait_ms(int ms) {
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void wait_ms(int ms) { // До 1073741 секунд? 298 часов
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if(ms > 0) vTaskDelay(ms);
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// wait_us(ms * 1000);
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}
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@ -21,6 +21,7 @@
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#include "spi_api.h"
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#include "dma_api.h"
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#include "flash_api.h"
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#include "flash_eep.h"
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#include "gpio_ex_api.h"
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#include "gpio_irq_ex_api.h"
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#include "i2c_ex_api.h"
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@ -7,8 +7,7 @@
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* possession or use of this module requires written permission of RealTek.
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*******************************************************************************
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*/
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#ifndef MBED_EXT_FLASH_API_EXT_H
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#ifndef MBED_EXT_FLASH_API_EXT_H
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#define MBED_EXT_FLASH_API_EXT_H
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#include "device.h"
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@ -22,8 +21,7 @@ typedef struct flash_s flash_t;
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/**
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* global data structure
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*/
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//extern flash_t flash;
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extern flash_t flashobj;
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extern flash_t flashobj;
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extern bool fspic_isinit;
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enum {
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@ -47,10 +45,11 @@ int flash_burst_write (flash_t * obj, uint32_t address, uint32_t Length, uint8
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int flash_burst_read (flash_t * obj, uint32_t address, uint32_t Length, uint8_t * data);
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int flash_set_extend_addr (flash_t * obj, uint32_t data);
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int flash_get_extend_addr (flash_t * obj);
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unsigned int flash_get_size (flash_t *obj);
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int flash_otp_read (flash_t *obj, uint32_t address, uint32_t Length, uint8_t * data);
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#ifdef __cplusplus
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}
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#endif
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#endif
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@ -8,9 +8,14 @@
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#ifndef __FLASH_EEP_H_
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#define __FLASH_EEP_H_
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include <basic_types.h>
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#include <FreeRTOS.h>
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#include <queue.h>
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//-----------------------------------------------------------------------------
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#ifndef FLASH_SECTOR_SIZE
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#define FLASH_SECTOR_SIZE 4096
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@ -19,7 +24,7 @@
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#define FLASH_CHIP_SIZE (FLASH_SECTORS * FLASH_SECTOR_SIZE)
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#define FMEMORY_SCFG_BANK_SIZE FLASH_SECTOR_SIZE // размер сектора, 4096 bytes
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#define FMEMORY_SCFG_BANKS 2 // кол-во секторов для работы 2...
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#define FMEMORY_SCFG_BASE_ADDR (FLASH_CHIP_SIZE - (FMEMORY_SCFG_BANKS*FMEMORY_SCFG_BANK_SIZE))
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#define FMEMORY_SCFG_BASE_ADDR (FLASH_CHIP_SIZE - (FMEMORY_SCFG_BANKS*FMEMORY_SCFG_BANK_SIZE)) // = 0xFE000
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//-----------------------------------------------------------------------------
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#define FLASH_EEP_ATTR
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//-----------------------------------------------------------------------------
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@ -32,11 +37,16 @@ enum eFMEMORY_ERRORS {
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};
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//-----------------------------------------------------------------------------
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// extern QueueHandle_t flash_mutex;
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sint16 flash_read_cfg(void *ptr, uint16 id, uint16 maxsize) FLASH_EEP_ATTR; // возврат: размер объекта последнего сохранения, -1 - не найден, -2 - error
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bool flash_write_cfg(void *ptr, uint16 id, uint16 size) FLASH_EEP_ATTR;
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signed short flash_read_cfg(void *ptr, unsigned short id, unsigned short maxsize) FLASH_EEP_ATTR; // возврат: размер объекта последнего сохранения, -1 - не найден, -2 - error
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bool flash_write_cfg(void *ptr, unsigned short id, unsigned short size) FLASH_EEP_ATTR;
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//-----------------------------------------------------------------------------
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#ifndef USE_FLASH_EEP
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#define USE_FLASH_EEP 1
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#endif
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#ifdef __cplusplus
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}
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#endif
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#endif /* __FLASH_EEP_H_ */
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@ -13,8 +13,8 @@
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef MBED_WATCHDOG_API_H
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#define MBED_WATCHDOG_API_H
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#ifndef MBED_SYS_API_H
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#define MBED_SYS_API_H
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#include "device.h"
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@ -49,4 +49,4 @@ void sys_reset(void);
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}
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#endif
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#endif
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#endif // MBED_SYS_API_H
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@ -235,10 +235,7 @@ inline int i2c_stop(i2c_t *obj) {
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return 0;
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}
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extern u32
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HalDelayUs(
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IN u32 us
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);
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// extern u32 HalDelayUs(IN u32 us);
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int i2c_read(i2c_t *obj, int address, char *data, int length, int stop) {
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@ -23,41 +23,41 @@ static const PinMap PinMap_UART_TX[] = {
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{PC_3, RTL_PIN_PERI(UART0, 0, S0), RTL_PIN_FUNC(UART0, S0)},
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{PE_0, RTL_PIN_PERI(UART0, 0, S1), RTL_PIN_FUNC(UART0, S1)},
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{PA_7, RTL_PIN_PERI(UART0, 0, S2), RTL_PIN_FUNC(UART0, S2)}, // None RTL8710AF
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{PD_3, RTL_PIN_PERI(UART1, 1, S0), RTL_PIN_FUNC(UART1, S0)}, // None RTL8710AF
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{PD_3, RTL_PIN_PERI(UART1, 1, S0), RTL_PIN_FUNC(UART1, S0)}, // None RTL8710AF, RTL8711AM
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{PE_4, RTL_PIN_PERI(UART1, 1, S1), RTL_PIN_FUNC(UART1, S1)},
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{PB_5, RTL_PIN_PERI(UART1, 1, S2), RTL_PIN_FUNC(UART1, S2)}, // None RTL8710AF
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{PA_4, RTL_PIN_PERI(UART2, 2, S0), RTL_PIN_FUNC(UART2, S0)},
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{PC_9, RTL_PIN_PERI(UART2, 2, S1), RTL_PIN_FUNC(UART2, S1)}, // None RTL8710AF
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{PD_7, RTL_PIN_PERI(UART2, 2, S2), RTL_PIN_FUNC(UART2, S2)}, // None RTL8710AF
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{PB_5, RTL_PIN_PERI(UART1, 1, S2), RTL_PIN_FUNC(UART1, S2)}, // None RTL8710AF, RTL8711AM
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{PA_4, RTL_PIN_PERI(UART2, 2, S0), RTL_PIN_FUNC(UART2, S0)}, // None RTL8711AM
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{PC_9, RTL_PIN_PERI(UART2, 2, S1), RTL_PIN_FUNC(UART2, S1)}, // None RTL8710AF, RTL8711AM
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{PD_7, RTL_PIN_PERI(UART2, 2, S2), RTL_PIN_FUNC(UART2, S2)}, // None RTL8710AF, RTL8711AM
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{NC, NC, 0}
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};
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static const PinMap PinMap_UART_RX[] = {
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{PC_0, RTL_PIN_PERI(UART0, 0, S0), RTL_PIN_FUNC(UART0, S0)},
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{PE_3, RTL_PIN_PERI(UART0, 0, S1), RTL_PIN_FUNC(UART0, S1)},
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{PA_6, RTL_PIN_PERI(UART0, 0, S2), RTL_PIN_FUNC(UART0, S2)}, // None RTL8710AF
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{PD_0, RTL_PIN_PERI(UART1, 1, S0), RTL_PIN_FUNC(UART1, S0)}, // None RTL8710AF
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{PE_7, RTL_PIN_PERI(UART1, 1, S1), RTL_PIN_FUNC(UART1, S1)}, // None RTL8710AF
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{PB_4, RTL_PIN_PERI(UART1, 1, S2), RTL_PIN_FUNC(UART1, S2)}, // None RTL8710AF
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{PA_0, RTL_PIN_PERI(UART2, 2, S0), RTL_PIN_FUNC(UART2, S0)},
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{PC_6, RTL_PIN_PERI(UART2, 2, S1), RTL_PIN_FUNC(UART2, S1)}, // None RTL8710AF
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{PD_4, RTL_PIN_PERI(UART2, 2, S2), RTL_PIN_FUNC(UART2, S2)}, // None RTL8710AF
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{PC_0, RTL_PIN_PERI(UART0, 0, S0), RTL_PIN_FUNC(UART0, S0)}, // No Interrupt Source?
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{PE_3, RTL_PIN_PERI(UART0, 0, S1), RTL_PIN_FUNC(UART0, S1)},
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{PA_6, RTL_PIN_PERI(UART0, 0, S2), RTL_PIN_FUNC(UART0, S2)}, // None RTL8710AF, // No Interrupt Source?
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{PD_0, RTL_PIN_PERI(UART1, 1, S0), RTL_PIN_FUNC(UART1, S0)}, // None RTL8710AF, RTL8711AM
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{PE_7, RTL_PIN_PERI(UART1, 1, S1), RTL_PIN_FUNC(UART1, S1)}, // None RTL8710AF, RTL8711AM
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{PB_4, RTL_PIN_PERI(UART1, 1, S2), RTL_PIN_FUNC(UART1, S2)}, // None RTL8710AF, RTL8711AM
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{PA_0, RTL_PIN_PERI(UART2, 2, S0), RTL_PIN_FUNC(UART2, S0)}, // None RTL8711AM
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{PC_6, RTL_PIN_PERI(UART2, 2, S1), RTL_PIN_FUNC(UART2, S1)}, // None RTL8710AF, RTL8711AM
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{PD_4, RTL_PIN_PERI(UART2, 2, S2), RTL_PIN_FUNC(UART2, S2)}, // None RTL8710AF, RTL8711AM
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{NC, NC, 0}
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};
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#define UART_NUM (2) //pvvx! RTL8710 !
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#define UART_NUM (3)
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#define SERIAL_TX_IRQ_EN 0x01
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#define SERIAL_RX_IRQ_EN 0x02
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#define SERIAL_TX_DMA_EN 0x01
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#define SERIAL_RX_DMA_EN 0x02
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static uint32_t serial_irq_ids[UART_NUM] = {0, 0}; // , 0
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static uint32_t serial_irq_ids[UART_NUM] = {0, 0, 0}; // , 0
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static uart_irq_handler irq_handler[UART_NUM];
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static uint32_t serial_irq_en[UART_NUM] = {0, 0}; // , 0
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static uint32_t serial_irq_en[UART_NUM] = {0, 0, 0}; // , 0
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#ifdef CONFIG_GDMA_EN
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static uint32_t serial_dma_en[UART_NUM] = {0, 0}; // , 0
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static uint32_t serial_dma_en[UART_NUM] = {0, 0, 0}; // , 0
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static HAL_GDMA_OP UartGdmaOp;
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#endif
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@ -42,6 +42,20 @@ void spdio_structinit(struct spdio_t *obj){
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obj->tx_done_cb = NULL;
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}
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///////// Add pvvx, no ...
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void HalSdioRegisterRxCallback(char (*rx_done_cb)(void *priv, void* pbuf, u8 *pdata, u16 size, u8 type), void *obj)
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{
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struct spdio_t * sp = (struct spdio_t *) obj;
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sp->rx_done_cb = rx_done_cb;
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}
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void HalSdioRegisterTxDoneCallback(char (*tx_done_cb)(void *priv, void* pbuf), void *obj)
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{
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struct spdio_t * sp = (struct spdio_t *) obj;
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sp->tx_done_cb = tx_done_cb;
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}
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///////
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void spdio_init(struct spdio_t *obj)
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{
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if(obj == NULL){
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}
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g_spdio_priv = obj;
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HalSdioInit();
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HalSdioRegisterTxCallback(spdio_rx_done_cb, (void *)obj); // ??????????
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HalSdioRegisterRxDoneCallback(spdio_tx_done_cb, (void *)obj); // ?????????
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HalSdioRegisterRxCallback(spdio_rx_done_cb, (void *)obj); // ??????????
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HalSdioRegisterTxDoneCallback(spdio_tx_done_cb, (void *)obj); // ?????????
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}
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void spdio_deinit(struct spdio_t *obj)
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@ -360,7 +360,7 @@ void spi_slave_select_bypin(spi_t *obj, PinName pinname)
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}
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}
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else
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DBG_SSI_ERR("Wrong Chip Seleect Pin.\n");
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DBG_SSI_ERR("Wrong Chip Select Pin.\n");
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}
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else{
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@ -39,10 +39,11 @@ extern VOID HalJtagPinOff(VOID);
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extern void HalInitLogUart(void);
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extern void HalDeinitLogUart(void);
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#if defined ( __ICCARM__ )
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#ifdef CONFIG_SDR_EN
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//#if defined ( __ICCARM__ )
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extern u8 IsSdrPowerOn();
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//#endif
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#endif
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/**
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* @brief Turn off the JTAG function
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*
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u8 sys_is_sdram_power_on(void)
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{
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u8 ison = 0;
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#ifdef CONFIG_SDR_EN
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// u8 ison = 0;
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#if defined ( __ICCARM__ )
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ison = IsSdrPowerOn();
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//#if defined ( __ICCARM__ )
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return IsSdrPowerOn();
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//#endif
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// return ison;
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#else
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return 0;
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#endif
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return ison;
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}
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void sys_sdram_off(void)
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{
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#if defined ( __ICCARM__ )
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if (sys_is_sdram_power_on()) {
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#ifdef CONFIG_SDR_EN
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//#if defined ( __ICCARM__ )
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if (IsSdrPowerOn()) {
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SdrPowerOff();
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}
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//#endif
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#endif
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}
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}
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@ -17,15 +17,15 @@
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#define APP_TIM_ID 6 // the G-Timer ID for Application
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static int us_ticker_inited = 0;
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static TIMER_ADAPTER TimerAdapter;
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static TIMER_ADAPTER Timer6Adapter;
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extern HAL_TIMER_OP HalTimerOp;
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/*
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VOID _us_ticker_irq_handler(IN VOID *Data)
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{
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us_ticker_irq_handler();
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}
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*/
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void us_ticker_init(void)
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{
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us_ticker_inited = 1;
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// Initial a G-Timer
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TimerAdapter.IrqDis = 1; // Disable Irq
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TimerAdapter.IrqHandle.IrqFun = (IRQ_FUN) _us_ticker_irq_handler;
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TimerAdapter.IrqHandle.IrqNum = TIMER2_7_IRQ;
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TimerAdapter.IrqHandle.Priority = 10;
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TimerAdapter.IrqHandle.Data = (u32)NULL;
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TimerAdapter.TimerId = APP_TIM_ID;
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TimerAdapter.TimerIrqPriority = 0;
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TimerAdapter.TimerLoadValueUs = 1;
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TimerAdapter.TimerMode = FREE_RUN_MODE; // Countdown Free Run
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Timer6Adapter.IrqDis = 1; // Disable Irq
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Timer6Adapter.IrqHandle.IrqFun = (IRQ_FUN) us_ticker_irq_handler;
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Timer6Adapter.IrqHandle.IrqNum = TIMER2_7_IRQ;
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Timer6Adapter.IrqHandle.Priority = 10;
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Timer6Adapter.IrqHandle.Data = (u32)NULL;
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Timer6Adapter.TimerId = APP_TIM_ID;
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Timer6Adapter.TimerIrqPriority = 0;
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Timer6Adapter.TimerLoadValueUs = 1;
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Timer6Adapter.TimerMode = FREE_RUN_MODE; // Countdown Free Run
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HalTimerOp.HalTimerInit((VOID*) &TimerAdapter);
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HalTimerOp.HalTimerInit((VOID*) &Timer6Adapter);
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DBG_TIMER_INFO("%s: Timer_Id=%d\n", __FUNCTION__, APP_TIM_ID);
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}
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@ -119,19 +119,19 @@ void us_ticker_set_interrupt(timestamp_t timestamp)
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time_def = TIMER_TICK_US; // at least 1 tick
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}
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TimerAdapter.IrqDis = 0; // Enable Irq
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TimerAdapter.TimerLoadValueUs = time_def;
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TimerAdapter.TimerMode = USER_DEFINED; // Countdown Free Run
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Timer6Adapter.IrqDis = 0; // Enable Irq
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Timer6Adapter.TimerLoadValueUs = time_def;
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Timer6Adapter.TimerMode = USER_DEFINED; // Countdown Free Run
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HalTimerOp.HalTimerInit((VOID*) &TimerAdapter);
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HalTimerOp.HalTimerInit((VOID*) &Timer6Adapter);
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}
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void us_ticker_disable_interrupt(void)
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{
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HalTimerOp.HalTimerDis((u32)TimerAdapter.TimerId);
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HalTimerOp.HalTimerDis((u32)Timer6Adapter.TimerId);
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}
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void us_ticker_clear_interrupt(void)
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{
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HalTimerOp.HalTimerIrqClear((u32)TimerAdapter.TimerId);
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HalTimerOp.HalTimerIrqClear((u32)Timer6Adapter.TimerId);
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}
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@ -15,8 +15,8 @@
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*******************************************************************************
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*/
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#include "wdt_api.h"
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#include "cmsis.h"
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#include "wdt_api.h"
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extern VOID WDGInitial(u32 Period);
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extern VOID WDGStart(VOID);
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