/* * This is driver implementation for the RTL837x flash controller * This code is in the Public Domain */ #include #include "rtl837x_common.h" #include "rtl837x_sfr.h" __xdata uint8_t dio_enabled; __xdata struct flash_region_t flash_region; // For the flash commands, see e.g. Windbond W25Q32JV datasheet #define CMD_WRITE_STATUS 0x01 #define CMD_PAGE_PROGRAM 0x02 // Don't use command `READ 0x03`, because on many device this command can't run at maximum SPI-clock speed. // Use `Fast READ 0x0b` instead! //#define CMD_READ 0x03 #define CMD_WRITE_ENABLE 0x06 #define CMD_FREAD 0x0b #define CMD_SECTOR_ERASE 0x20 #define CMD_READ_SECURITY_REGS 0x48 #define CMD_READ_UNIQUE_ID 0x4b #define CMD_READ_JEDEC_ID 0x9f #define CMD_FREAD_DIO 0xbb /* * Configure Memory Managed IO */ void flash_configure_mmio(void) { // Set configuration for MMIO access by controller if (dio_enabled) { SFR_FLASH_MODEB = 0x18; SFR_FLASH_CMD_R = CMD_FREAD_DIO; // By default we read with Dual speed SFR_FLASH_DUMMYCYCLES = 4; return; } SFR_FLASH_MODEB = 0x0; SFR_FLASH_CMD_R = CMD_FREAD; // Default is Single IO SFR_FLASH_DUMMYCYCLES = 8; } /* * Initializes the flash controller for programmed control * The configuration options are not really understood, the SPI speed * seems to be directly linked to the CPU frequency * This configures fast single IO at 20.8 MHz when the CPU clock is at 20.8MHz * and 62.5MHz when the CPU clock is configured at 125MHz */ void flash_init(uint8_t enable_dio) { if (enable_dio) { SFR_FLASH_CONFIG = 9; // There may be a chip-select in here SFR_FLASH_CONF_RCMD = CMD_FREAD_DIO; SFR_FLASH_CONF_DIV = 4; } else { // Configure fast read via divider = 8 and read-cmd being CMD_FREAD (for mmio) SFR_FLASH_CONFIG = 9; SFR_FLASH_CONF_RCMD = CMD_FREAD; SFR_FLASH_CONF_DIV = 8; } // Test Controller Busy while(SFR_FLASH_EXEC_BUSY); // Write 0 to status register SFR_FLASH_DUMMYCYCLES = 8; SFR_FLASH_MODEB = 0; SFR_FLASH_TCONF = 0x19; SFR_FLASH_CMD = CMD_WRITE_STATUS; SFR_FLASH_DATA0 = 0; SFR_FLASH_EXEC_GO = 1; while(SFR_FLASH_EXEC_BUSY); dio_enabled = enable_dio; flash_configure_mmio(); } uint8_t flash_read_status(void) { // Test Controller Busy (we might call this directly after executing a command) while(SFR_FLASH_EXEC_BUSY); // setup status read command SFR_FLASH_TCONF = 0x11; SFR_FLASH_CMD_R = 5; // execute and wait for controller done SFR_FLASH_EXEC_GO = 1; while(SFR_FLASH_EXEC_BUSY); return SFR_FLASH_DATA0; } void flash_read_uid(void) { while (flash_read_status() & 0x1); // Set slow read mode for UID SFR_FLASH_MODEB = 0x0; SFR_FLASH_CMD_R = CMD_READ_UNIQUE_ID; SFR_FLASH_DUMMYCYCLES = 8; // Transfer 4 bytes (command + 3 dummy bytes) SFR_FLASH_TCONF = 4; SFR_FLASH_ADDR16 = 0; SFR_FLASH_ADDR8 = 0; SFR_FLASH_ADDR0 = 0; SFR_FLASH_EXEC_GO = 1; while(SFR_FLASH_EXEC_BUSY); print_byte(SFR_FLASH_DATA0); print_byte(SFR_FLASH_DATA8); print_byte(SFR_FLASH_DATA16); print_byte(SFR_FLASH_DATA24); SFR_FLASH_EXEC_GO = 1; SFR_FLASH_DUMMYCYCLES = 24; while(SFR_FLASH_EXEC_BUSY); print_byte(SFR_FLASH_DATA0); print_byte(SFR_FLASH_DATA8); print_byte(SFR_FLASH_DATA16); print_byte(SFR_FLASH_DATA24); flash_configure_mmio(); } void flash_read_jedecid(void) { while (flash_read_status() & 0x1); // Set read mode for JEDEC ID SFR_FLASH_MODEB = 0x0; SFR_FLASH_CMD_R = CMD_READ_JEDEC_ID; SFR_FLASH_DUMMYCYCLES = 0; // Transfer 3 bytes back SFR_FLASH_TCONF = 0x13; SFR_FLASH_EXEC_GO = 1; while(SFR_FLASH_EXEC_BUSY); print_byte(SFR_FLASH_DATA0); print_byte(SFR_FLASH_DATA8); print_byte(SFR_FLASH_DATA16); print_byte(SFR_FLASH_DATA24); // Reset slow read mode SFR_FLASH_MODEB = 0x0; SFR_FLASH_CMD_R = CMD_FREAD; SFR_FLASH_DUMMYCYCLES = 8; flash_configure_mmio(); } void flash_write_enable(void) { short status; // Wait until busy bit clear do { status = flash_read_status(); } while (status & 0x1); SFR_FLASH_TCONF = 0x18; SFR_FLASH_CMD = CMD_WRITE_ENABLE; /* The following makes sure that the PAGE_PROGRAM command, * where the data to be written follows the command word directly * works properly */ SFR_FLASH_DUMMYCYCLES = 0; SFR_FLASH_MODEB = 0; SFR_FLASH_EXEC_GO = 1; // Wait for write status enabled do { status = flash_read_status(); } while (!(status & 0x2)); } void flash_dump(uint8_t len) { short status; do { status = flash_read_status(); print_short(status); } while (status & 0x1); // Set fast read mode if (dio_enabled) { SFR_FLASH_MODEB = 0x18; SFR_FLASH_CMD_R = CMD_FREAD_DIO; SFR_FLASH_DUMMYCYCLES = 4; } else { SFR_FLASH_MODEB = 0x0; SFR_FLASH_CMD_R = CMD_FREAD; // Fast read SFR_FLASH_DUMMYCYCLES = 8; // Add 8 dummy clocks after read? } // Read 4 bytes SFR_FLASH_TCONF = 4; while (len) { SFR_FLASH_ADDR16 = flash_region.addr >> 16; SFR_FLASH_ADDR8 = flash_region.addr >> 8; SFR_FLASH_ADDR0 = flash_region.addr; flash_region.addr += 4; SFR_FLASH_EXEC_GO = 1; while(SFR_FLASH_EXEC_BUSY); print_short(SFR_FLASH_DATA0); if (len == 1) return; print_short(SFR_FLASH_DATA8); if (len == 2) return; print_short(SFR_FLASH_DATA16); if (len == 3) return; print_short(SFR_FLASH_DATA24); len -= 4; } } /* * Reads bulk data of length len from the flash memory starging at address src * and writes the data into a buffer pointed to by dst in XMEM */ void flash_read_bulk(__xdata uint8_t *dst) { short status; do { status = flash_read_status(); } while (status & 0x1); // Set fast read mode if (dio_enabled) { SFR_FLASH_MODEB = 0x18; SFR_FLASH_CMD_R = CMD_FREAD_DIO; SFR_FLASH_DUMMYCYCLES = 4; } else { SFR_FLASH_MODEB = 0x0; SFR_FLASH_CMD_R = CMD_FREAD; // Fast read SFR_FLASH_DUMMYCYCLES = 8; // Add 8 dummy clocks } // Read 4 bytes while (1) { SFR_FLASH_ADDR16 = flash_region.addr >> 16; SFR_FLASH_ADDR8 = flash_region.addr >> 8; SFR_FLASH_ADDR0 = flash_region.addr; flash_region.addr += 4; SFR_FLASH_TCONF = 4; SFR_FLASH_EXEC_GO = 1; while(SFR_FLASH_EXEC_BUSY); *dst++ = SFR_FLASH_DATA0; if (flash_region.len == 1) break; *dst++ = SFR_FLASH_DATA8; if (flash_region.len == 2) break; *dst++ = SFR_FLASH_DATA16; if (flash_region.len == 3) break; *dst++ = SFR_FLASH_DATA24; if (flash_region.len == 4) break; flash_region.len -= 4; } } void flash_read_security(void) { while (flash_read_status() & 0x1); // Set slow read mode SFR_FLASH_MODEB = 0x0; SFR_FLASH_CMD_R = CMD_READ_SECURITY_REGS; // read security register SFR_FLASH_DUMMYCYCLES = 8; // Add 8 dummy clocks as for fast read // Transfer 4 bytes (command + 3byte address) SFR_FLASH_TCONF = 4; do { SFR_FLASH_ADDR16 = flash_region.addr >> 16; SFR_FLASH_ADDR8 = flash_region.addr >> 8; SFR_FLASH_ADDR0 = flash_region.addr; flash_region.addr += 4; SFR_FLASH_EXEC_GO = 1; while(SFR_FLASH_EXEC_BUSY); print_byte(SFR_FLASH_DATA0); if (flash_region.len == 1) break; print_byte(SFR_FLASH_DATA8); if (flash_region.len == 2) break; print_byte(SFR_FLASH_DATA16); if (flash_region.len == 3) break; print_byte(SFR_FLASH_DATA24); flash_region.len -= 4; } while(flash_region.len); flash_configure_mmio(); } void flash_sector_erase(void) { flash_write_enable(); SFR_FLASH_TCONF = 8; SFR_FLASH_CMD = CMD_SECTOR_ERASE; SFR_FLASH_ADDR16 = flash_region.addr >> 16; SFR_FLASH_ADDR8 = flash_region.addr >> 8; SFR_FLASH_ADDR0 = flash_region.addr; SFR_FLASH_EXEC_GO = 1; while (flash_read_status() & 0x1); flash_configure_mmio(); } void flash_write_bytes(__xdata uint8_t *ptr) { // write_char('\n'); write_char('>'); print_long(flash_region.addr); write_char(':'); print_short(flash_region.len); write_char('-'); print_byte(*ptr); // write_char('\n'); while(1) { flash_write_enable(); SFR_FLASH_CMD = CMD_PAGE_PROGRAM; SFR_FLASH_TCONF = 0x40 | 8 | 4; // Bytes written is 4, 8 enables write, 0x40 is unknown // Last transfer? if (flash_region.len < 5) { SFR_FLASH_TCONF = 8 | flash_region.len; } SFR_FLASH_ADDR16 = flash_region.addr >> 16; SFR_FLASH_ADDR8 = flash_region.addr >> 8; SFR_FLASH_ADDR0 = flash_region.addr; SFR_FLASH_DATA0 = *ptr++; SFR_FLASH_DATA8 = *ptr++; SFR_FLASH_DATA16 = *ptr++; SFR_FLASH_DATA24 = *ptr++; // Execute transfer, we wait for completion at top of loop SFR_FLASH_EXEC_GO = 1; if (flash_region.len < 5) break; flash_region.len -= 4; flash_region.addr += 4; }; while (flash_read_status() & 0x1); flash_configure_mmio(); }