sfud_flash_def.h 11 KB

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  1. /*****************************************************************************
  2. * Copyright (c) 2019, Nations Technologies Inc.
  3. *
  4. * All rights reserved.
  5. * ****************************************************************************
  6. *
  7. * Redistribution and use in source and binary forms, with or without
  8. * modification, are permitted provided that the following conditions are met:
  9. *
  10. * - Redistributions of source code must retain the above copyright notice,
  11. * this list of conditions and the disclaimer below.
  12. *
  13. * Nations' name may not be used to endorse or promote products derived from
  14. * this software without specific prior written permission.
  15. *
  16. * DISCLAIMER: THIS SOFTWARE IS PROVIDED BY NATIONS "AS IS" AND ANY EXPRESS OR
  17. * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
  18. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT ARE
  19. * DISCLAIMED. IN NO EVENT SHALL NATIONS BE LIABLE FOR ANY DIRECT, INDIRECT,
  20. * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
  21. * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA,
  22. * OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
  23. * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
  24. * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,
  25. * EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  26. * ****************************************************************************/
  27. /**
  28. * @file sfud_flash_def.h
  29. * @author Nations
  30. * @version v1.0.0
  31. *
  32. * @copyright Copyright (c) 2019, Nations Technologies Inc. All rights reserved.
  33. */
  34. #ifndef _SFUD_FLASH_DEF_H_
  35. #define _SFUD_FLASH_DEF_H_
  36. #include <stdint.h>
  37. #include <sfud_cfg.h>
  38. #ifdef __cplusplus
  39. extern "C" {
  40. #endif
  41. /**
  42. * flash program(write) data mode
  43. */
  44. enum sfud_write_mode {
  45. SFUD_WM_PAGE_256B = 1 << 0, /**< write 1 to 256 bytes per page */
  46. SFUD_WM_BYTE = 1 << 1, /**< byte write */
  47. SFUD_WM_AAI = 1 << 2, /**< auto address increment */
  48. SFUD_WM_DUAL_BUFFER = 1 << 3, /**< dual-buffer write, like AT45DB series */
  49. };
  50. /* manufacturer information */
  51. typedef struct {
  52. char *name;
  53. uint8_t id;
  54. } sfud_mf;
  55. /* flash chip information */
  56. typedef struct {
  57. char *name; /**< flash chip name */
  58. uint8_t mf_id; /**< manufacturer ID */
  59. uint8_t type_id; /**< memory type ID */
  60. uint8_t capacity_id; /**< capacity ID */
  61. uint32_t capacity; /**< flash capacity (bytes) */
  62. uint16_t write_mode; /**< write mode @see sfud_write_mode */
  63. uint32_t erase_gran; /**< erase granularity (bytes) */
  64. uint8_t erase_gran_cmd; /**< erase granularity size block command */
  65. } sfud_flash_chip;
  66. #ifdef SFUD_USING_QSPI
  67. /* QSPI flash chip's extended information compared with SPI flash */
  68. typedef struct {
  69. uint8_t mf_id; /**< manufacturer ID */
  70. uint8_t type_id; /**< memory type ID */
  71. uint8_t capacity_id; /**< capacity ID */
  72. uint8_t read_mode; /**< supported read mode on this qspi flash chip */
  73. } sfud_qspi_flash_ext_info;
  74. #endif
  75. /* SFUD support manufacturer JEDEC ID */
  76. #define SFUD_MF_ID_CYPRESS 0x01
  77. #define SFUD_MF_ID_FUJITSU 0x04
  78. #define SFUD_MF_ID_EON 0x1C
  79. #define SFUD_MF_ID_ATMEL 0x1F
  80. #define SFUD_MF_ID_MICRON 0x20
  81. #define SFUD_MF_ID_AMIC 0x37
  82. #define SFUD_MF_ID_SANYO 0x62
  83. #define SFUD_MF_ID_INTEL 0x89
  84. #define SFUD_MF_ID_ESMT 0x8C
  85. #define SFUD_MF_ID_FUDAN 0xA1
  86. #define SFUD_MF_ID_HYUNDAI 0xAD
  87. #define SFUD_MF_ID_SST 0xBF
  88. #define SFUD_MF_ID_MICRONIX 0xC2
  89. #define SFUD_MF_ID_GIGADEVICE 0xC8
  90. #define SFUD_MF_ID_ISSI 0xD5
  91. #define SFUD_MF_ID_WINBOND 0xEF
  92. /* SFUD supported manufacturer information table */
  93. #define SFUD_MF_TABLE \
  94. { \
  95. {"Cypress", SFUD_MF_ID_CYPRESS}, \
  96. {"Fujitsu", SFUD_MF_ID_FUJITSU}, \
  97. {"EON", SFUD_MF_ID_EON}, \
  98. {"Atmel", SFUD_MF_ID_ATMEL}, \
  99. {"Micron", SFUD_MF_ID_MICRON}, \
  100. {"AMIC", SFUD_MF_ID_AMIC}, \
  101. {"Sanyo", SFUD_MF_ID_SANYO}, \
  102. {"Intel", SFUD_MF_ID_INTEL}, \
  103. {"ESMT", SFUD_MF_ID_ESMT}, \
  104. {"Fudan", SFUD_MF_ID_FUDAN}, \
  105. {"Hyundai", SFUD_MF_ID_HYUNDAI}, \
  106. {"SST", SFUD_MF_ID_SST}, \
  107. {"GigaDevice", SFUD_MF_ID_GIGADEVICE}, \
  108. {"ISSI", SFUD_MF_ID_ISSI}, \
  109. {"Winbond", SFUD_MF_ID_WINBOND}, \
  110. {"Micronix", SFUD_MF_ID_MICRONIX}, \
  111. }
  112. #ifdef SFUD_USING_FLASH_INFO_TABLE
  113. /* SFUD supported flash chip information table. If the flash not support JEDEC JESD216 standard,
  114. * then the SFUD will find the flash chip information by this table. You can add other flash to here then
  115. * notice me for update it. The configuration information name and index reference the sfud_flash_chip structure.
  116. * | name | mf_id | type_id | capacity_id | capacity | write_mode | erase_gran | erase_gran_cmd |
  117. */
  118. #define SFUD_FLASH_CHIP_TABLE \
  119. { \
  120. {"AT45DB161E", SFUD_MF_ID_ATMEL, 0x26, 0x00, 2L*1024L*1024L, SFUD_WM_BYTE|SFUD_WM_DUAL_BUFFER, 512, 0x81}, \
  121. {"W25Q40BV", SFUD_MF_ID_WINBOND, 0x40, 0x13, 512L*1024L, SFUD_WM_PAGE_256B, 4096, 0x20}, \
  122. {"W25Q16BV", SFUD_MF_ID_WINBOND, 0x40, 0x15, 2L*1024L*1024L, SFUD_WM_PAGE_256B, 4096, 0x20}, \
  123. {"W25Q64DW", SFUD_MF_ID_WINBOND, 0x60, 0x17, 8L*1024L*1024L, SFUD_WM_PAGE_256B, 4096, 0x20}, \
  124. {"W25Q128BV", SFUD_MF_ID_WINBOND, 0x40, 0x18, 16L*1024L*1024L, SFUD_WM_PAGE_256B, 4096, 0x20}, \
  125. {"W25Q256FV", SFUD_MF_ID_WINBOND, 0x40, 0x19, 32L*1024L*1024L, SFUD_WM_PAGE_256B, 4096, 0x20}, \
  126. {"SST25VF016B", SFUD_MF_ID_SST, 0x25, 0x41, 2L*1024L*1024L, SFUD_WM_BYTE|SFUD_WM_AAI, 4096, 0x20}, \
  127. {"M25P32", SFUD_MF_ID_MICRON, 0x20, 0x16, 4L*1024L*1024L, SFUD_WM_PAGE_256B, 64L*1024L, 0xD8}, \
  128. {"M25P80", SFUD_MF_ID_MICRON, 0x20, 0x14, 1L*1024L*1024L, SFUD_WM_PAGE_256B, 64L*1024L, 0xD8}, \
  129. {"M25P40", SFUD_MF_ID_MICRON, 0x20, 0x13, 512L*1024L, SFUD_WM_PAGE_256B, 64L*1024L, 0xD8}, \
  130. {"EN25Q32B", SFUD_MF_ID_EON, 0x30, 0x16, 4L*1024L*1024L, SFUD_WM_PAGE_256B, 4096, 0x20}, \
  131. {"GD25Q64B", SFUD_MF_ID_GIGADEVICE, 0x40, 0x17, 8L*1024L*1024L, SFUD_WM_PAGE_256B, 4096, 0x20}, \
  132. {"GD25Q16B", SFUD_MF_ID_GIGADEVICE, 0x40, 0x15, 2L*1024L*1024L, SFUD_WM_PAGE_256B, 4096, 0x20}, \
  133. {"S25FL216K", SFUD_MF_ID_CYPRESS, 0x40, 0x15, 2L*1024L*1024L, SFUD_WM_PAGE_256B, 4096, 0x20}, \
  134. {"S25FL032P", SFUD_MF_ID_CYPRESS, 0x02, 0x15, 4L*1024L*1024L, SFUD_WM_PAGE_256B, 4096, 0x20}, \
  135. {"A25L080", SFUD_MF_ID_AMIC, 0x30, 0x14, 1L*1024L*1024L, SFUD_WM_PAGE_256B, 4096, 0x20}, \
  136. {"F25L004", SFUD_MF_ID_ESMT, 0x20, 0x13, 512L*1024L, SFUD_WM_BYTE|SFUD_WM_AAI, 4096, 0x20}, \
  137. {"PCT25VF016B", SFUD_MF_ID_SST, 0x25, 0x41, 2L*1024L*1024L, SFUD_WM_BYTE|SFUD_WM_AAI, 4096, 0x20}, \
  138. }
  139. #endif /* SFUD_USING_FLASH_INFO_TABLE */
  140. #ifdef SFUD_USING_QSPI
  141. /* This table saves flash read-fast instructions in QSPI mode,
  142. * SFUD can use this table to select the most appropriate read instruction for flash.
  143. * | mf_id | type_id | capacity_id | qspi_read_mode |
  144. */
  145. #define SFUD_FLASH_EXT_INFO_TABLE \
  146. { \
  147. /* W25Q40BV */ \
  148. {SFUD_MF_ID_WINBOND, 0x40, 0x13, NORMAL_SPI_READ|DUAL_OUTPUT}, \
  149. /* W25Q80JV */ \
  150. {SFUD_MF_ID_WINBOND, 0x40, 0x14, NORMAL_SPI_READ|DUAL_OUTPUT}, \
  151. /* W25Q16BV */ \
  152. {SFUD_MF_ID_WINBOND, 0x40, 0x15, NORMAL_SPI_READ|DUAL_OUTPUT}, \
  153. /* W25Q32BV */ \
  154. {SFUD_MF_ID_WINBOND, 0x40, 0x16, NORMAL_SPI_READ|DUAL_OUTPUT}, \
  155. /* W25Q64JV */ \
  156. {SFUD_MF_ID_WINBOND, 0x40, 0x17, NORMAL_SPI_READ|DUAL_OUTPUT|DUAL_IO|QUAD_OUTPUT|QUAD_IO}, \
  157. /* W25Q128JV */ \
  158. {SFUD_MF_ID_WINBOND, 0x40, 0x18, NORMAL_SPI_READ|DUAL_OUTPUT|DUAL_IO|QUAD_OUTPUT|QUAD_IO}, \
  159. /* W25Q256FV */ \
  160. {SFUD_MF_ID_WINBOND, 0x40, 0x19, NORMAL_SPI_READ|DUAL_OUTPUT|DUAL_IO|QUAD_OUTPUT|QUAD_IO}, \
  161. /* EN25Q32B */ \
  162. {SFUD_MF_ID_EON, 0x30, 0x16, NORMAL_SPI_READ|DUAL_OUTPUT|QUAD_IO}, \
  163. /* S25FL216K */ \
  164. {SFUD_MF_ID_CYPRESS, 0x40, 0x15, NORMAL_SPI_READ|DUAL_OUTPUT}, \
  165. /* A25L080 */ \
  166. {SFUD_MF_ID_AMIC, 0x30, 0x14, NORMAL_SPI_READ|DUAL_OUTPUT|DUAL_IO}, \
  167. /* A25LQ64 */ \
  168. {SFUD_MF_ID_AMIC, 0x40, 0x17, NORMAL_SPI_READ|DUAL_OUTPUT|DUAL_IO|QUAD_IO}, \
  169. /* MX25L3206E and KH25L3206E */ \
  170. {SFUD_MF_ID_MICRONIX, 0x20, 0x16, NORMAL_SPI_READ|DUAL_OUTPUT}, \
  171. /* GD25Q64B */ \
  172. {SFUD_MF_ID_GIGADEVICE, 0x40, 0x17, NORMAL_SPI_READ|DUAL_OUTPUT}, \
  173. }
  174. #endif /* SFUD_USING_QSPI */
  175. #ifdef __cplusplus
  176. }
  177. #endif
  178. #endif /* _SFUD_FLASH_DEF_H_ */