2013-10-28 09:49:39 +00:00
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#include "hal.h"
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#include "flash_memory.h"
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static const unsigned short _SERIAL_FLASH_CMD_RDID = 0x9F; // 25P80
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static const unsigned short _SERIAL_FLASH_CMD_READ = 0x03;
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static const unsigned short _SERIAL_FLASH_CMD_WRITE = 0x02;
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static const unsigned short _SERIAL_FLASH_CMD_WREN = 0x06;
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static const unsigned short _SERIAL_FLASH_CMD_RDSR = 0x05;
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static const unsigned short _SERIAL_FLASH_CMD_ERASE = 0xC7; // 25P80
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static const unsigned short _SERIAL_FLASH_CMD_EWSR = 0x06; // 25P80
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static const unsigned short _SERIAL_FLASH_CMD_WRSR = 0x01;
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static const unsigned short _SERIAL_FLASH_CMD_SER = 0xD8; //25P80
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static const SPIConfig flash_spicfg = {
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2013-12-21 03:21:59 +00:00
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0,
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2013-10-28 09:49:39 +00:00
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GPIOD,
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GPIOD_FLASH_CS,
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0
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};
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bool flash_is_write_busy(void) {
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static uint8_t is_write_busy_cmd[1];
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is_write_busy_cmd[0] = _SERIAL_FLASH_CMD_RDSR;
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uint8_t result[1];
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spiAcquireBus(&SPID3);
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spiStart(&SPID3, &flash_spicfg);
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spiSelect(&SPID3);
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spiSend(&SPID3, sizeof(is_write_busy_cmd), is_write_busy_cmd);
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spiReceive(&SPID3, sizeof(result), result);
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spiUnselect(&SPID3);
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spiReleaseBus(&SPID3);
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return result[0]&0x01;
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}
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void flash_write_enable(void) {
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spiAcquireBus(&SPID3);
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spiStart(&SPID3, &flash_spicfg);
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spiSelect(&SPID3);
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spiSend(&SPID3, 1, &_SERIAL_FLASH_CMD_WREN);
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spiUnselect(&SPID3);
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spiReleaseBus(&SPID3);
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}
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void flash_sector_erase(uint32_t sector) {
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flash_write_enable();
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static uint8_t sector_erase_cmd[4];
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sector_erase_cmd[0] = _SERIAL_FLASH_CMD_SER;
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sector_erase_cmd[1] = (sector >> 16) & 0xFF;
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sector_erase_cmd[2] = (sector >> 8) & 0xFF;
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sector_erase_cmd[3] = sector & 0xFF;
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spiAcquireBus(&SPID3);
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spiStart(&SPID3, &flash_spicfg);
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spiSelect(&SPID3);
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spiSend(&SPID3, sizeof(sector_erase_cmd), sector_erase_cmd);
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spiUnselect(&SPID3);
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spiReleaseBus(&SPID3);
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/* wait for complete */
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while(flash_is_write_busy());
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}
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void flash_read(uint32_t address, size_t bytes, uint8_t *out) {
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static uint8_t sector_read_cmd[4];
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sector_read_cmd[0] = _SERIAL_FLASH_CMD_READ;
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sector_read_cmd[1] = (address >> 16) & 0xFF;
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sector_read_cmd[2] = (address >> 8) & 0xFF;
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sector_read_cmd[3] = address & 0xFF;
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spiAcquireBus(&SPID3);
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spiStart(&SPID3, &flash_spicfg);
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spiSelect(&SPID3);
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spiSend(&SPID3, sizeof(sector_read_cmd), sector_read_cmd);
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spiReceive(&SPID3, bytes, out);
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spiUnselect(&SPID3);
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spiReleaseBus(&SPID3);
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}
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2013-10-28 15:12:42 +00:00
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void flash_write(uint32_t address, size_t bytes, const uint8_t *data) {
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2013-10-28 09:49:39 +00:00
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static uint8_t flash_write_cmd[4];
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flash_write_enable();
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flash_write_cmd[0] = _SERIAL_FLASH_CMD_WRITE;
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flash_write_cmd[1] = (address >> 16) & 0xFF;
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flash_write_cmd[2] = (address >> 8) & 0xFF;
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flash_write_cmd[3] = address & 0xFF;
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spiAcquireBus(&SPID3);
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spiStart(&SPID3, &flash_spicfg);
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spiSelect(&SPID3);
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spiSend(&SPID3, sizeof(flash_write_cmd), flash_write_cmd);
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spiSend(&SPID3, bytes, data);
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spiUnselect(&SPID3);
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spiReleaseBus(&SPID3);
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/* wait for complete */
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while(flash_is_write_busy());
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}
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bool flash_tp_calibrated(void) {
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uint8_t out[1];
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flash_read(0x0F0000, 1, out);
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return (out[0] == 0x01);
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}
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void flash_tp_calibration_save(uint16_t instance, const uint8_t *calbuf, size_t sz) {
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2013-10-28 15:12:42 +00:00
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if (instance) return;
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2013-10-28 09:49:39 +00:00
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flash_sector_erase(0x0F0000);
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uint8_t calibrated = 0x01;
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flash_write(0x0F0000, 1, &calibrated);
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flash_write(0x0F0001, sz, calbuf);
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}
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const char *flash_tp_calibration_load(uint16_t instance) {
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2013-10-28 15:12:42 +00:00
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static uint8_t foo[24];
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if (instance) return 0;
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if (!flash_tp_calibrated()) return 0;
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2013-10-28 09:49:39 +00:00
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flash_read(0x0F0001, 24, foo);
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2013-10-28 15:12:42 +00:00
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return (char *)foo;
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}
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