ZuluSCSI_platform.h 5.5 KB

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  1. // Platform-specific definitions for ZuluSCSI RP2040 hardware.
  2. #pragma once
  3. #include <stdint.h>
  4. #include <Arduino.h>
  5. #include "ZuluSCSI_platform_gpio.h"
  6. #include "scsiHostPhy.h"
  7. #ifdef __cplusplus
  8. extern "C" {
  9. #endif
  10. /* These are used in debug output and default SCSI strings */
  11. extern const char *g_azplatform_name;
  12. #define PLATFORM_NAME "ZuluSCSI RP2040"
  13. #define PLATFORM_REVISION "2.0"
  14. #define PLATFORM_MAX_SCSI_SPEED S2S_CFG_SPEED_SYNC_10
  15. #define PLATFORM_OPTIMAL_MIN_SD_WRITE_SIZE 4096
  16. #define PLATFORM_OPTIMAL_MAX_SD_WRITE_SIZE 32768
  17. #define PLATFORM_OPTIMAL_LAST_SD_WRITE_SIZE 8192
  18. #define SD_USE_SDIO 1
  19. #define PLATFORM_HAS_INITIATOR_MODE 1
  20. // NOTE: The driver supports synchronous speeds higher than 10MB/s, but this
  21. // has not been tested due to lack of fast enough SCSI adapter.
  22. // #define PLATFORM_MAX_SCSI_SPEED S2S_CFG_SPEED_TURBO
  23. // Debug logging function, can be used to print to e.g. serial port.
  24. // May get called from interrupt handlers.
  25. void azplatform_log(const char *s);
  26. void azplatform_emergency_log_save();
  27. // Timing and delay functions.
  28. // Arduino platform already provides these
  29. unsigned long millis(void);
  30. void delay(unsigned long ms);
  31. // Short delays, can be called from interrupt mode
  32. static inline void delay_ns(unsigned long ns)
  33. {
  34. delayMicroseconds((ns + 999) / 1000);
  35. }
  36. // Approximate fast delay
  37. static inline void delay_100ns()
  38. {
  39. asm volatile ("nop \n nop \n nop \n nop \n nop \n nop \n nop \n nop \n nop \n nop \n nop");
  40. }
  41. // Initialize SD card and GPIO configuration
  42. void azplatform_init();
  43. // Initialization for main application, not used for bootloader
  44. void azplatform_late_init();
  45. // Query whether initiator mode is enabled on targets with PLATFORM_HAS_INITIATOR_MODE
  46. bool azplatform_is_initiator_mode_enabled();
  47. // Setup soft watchdog if supported
  48. void azplatform_reset_watchdog();
  49. // Set callback that will be called during data transfer to/from SD card.
  50. // This can be used to implement simultaneous transfer to SCSI bus.
  51. typedef void (*sd_callback_t)(uint32_t bytes_complete);
  52. void azplatform_set_sd_callback(sd_callback_t func, const uint8_t *buffer);
  53. // Reprogram firmware in main program area.
  54. #ifndef RP2040_DISABLE_BOOTLOADER
  55. #define AZPLATFORM_BOOTLOADER_SIZE (128 * 1024)
  56. #define AZPLATFORM_FLASH_TOTAL_SIZE (1024 * 1024)
  57. #define AZPLATFORM_FLASH_PAGE_SIZE 4096
  58. bool azplatform_rewrite_flash_page(uint32_t offset, uint8_t buffer[AZPLATFORM_FLASH_PAGE_SIZE]);
  59. void azplatform_boot_to_main_firmware();
  60. #endif
  61. // ROM drive in the unused external flash area
  62. #ifndef RP2040_DISABLE_ROMDRIVE
  63. #define PLATFORM_HAS_ROM_DRIVE 1
  64. // Check maximum available space for ROM drive in bytes
  65. uint32_t azplatform_get_romdrive_maxsize();
  66. // Read ROM drive area
  67. bool azplatform_read_romdrive(uint8_t *dest, uint32_t start, uint32_t count);
  68. // Reprogram ROM drive area
  69. #define AZPLATFORM_ROMDRIVE_PAGE_SIZE 4096
  70. bool azplatform_write_romdrive(const uint8_t *data, uint32_t start, uint32_t count);
  71. #endif
  72. // Below are GPIO access definitions that are used from scsiPhy.cpp.
  73. // Write a single SCSI pin.
  74. // Example use: SCSI_OUT(ATN, 1) sets SCSI_ATN to low (active) state.
  75. #define SCSI_OUT(pin, state) \
  76. *(state ? &sio_hw->gpio_clr : &sio_hw->gpio_set) = 1 << (SCSI_OUT_ ## pin)
  77. // Read a single SCSI pin.
  78. // Example use: SCSI_IN(ATN), returns 1 for active low state.
  79. #define SCSI_IN(pin) \
  80. ((sio_hw->gpio_in & (1 << (SCSI_IN_ ## pin))) ? 0 : 1)
  81. // Set pin directions for initiator vs. target mode
  82. #define SCSI_ENABLE_INITIATOR() \
  83. (sio_hw->gpio_oe_set = (1 << SCSI_OUT_ACK) | \
  84. (1 << SCSI_OUT_ATN)), \
  85. (sio_hw->gpio_oe_clr = (1 << SCSI_IN_IO) | \
  86. (1 << SCSI_IN_CD) | \
  87. (1 << SCSI_IN_MSG) | \
  88. (1 << SCSI_IN_REQ))
  89. // Enable driving of shared control pins
  90. #define SCSI_ENABLE_CONTROL_OUT() \
  91. (sio_hw->gpio_oe_set = (1 << SCSI_OUT_CD) | \
  92. (1 << SCSI_OUT_MSG))
  93. // Set SCSI data bus to output
  94. #define SCSI_ENABLE_DATA_OUT() \
  95. (sio_hw->gpio_clr = (1 << SCSI_DATA_DIR), \
  96. sio_hw->gpio_oe_set = SCSI_IO_DATA_MASK)
  97. // Write SCSI data bus, also sets REQ to inactive.
  98. extern const uint32_t g_scsi_parity_lookup[256];
  99. #define SCSI_OUT_DATA(data) \
  100. gpio_put_masked(SCSI_IO_DATA_MASK | (1 << SCSI_OUT_REQ), \
  101. g_scsi_parity_lookup[(uint8_t)(data)] | (1 << SCSI_OUT_REQ)), \
  102. SCSI_ENABLE_DATA_OUT()
  103. // Release SCSI data bus and REQ signal
  104. #define SCSI_RELEASE_DATA_REQ() \
  105. (sio_hw->gpio_oe_clr = SCSI_IO_DATA_MASK, \
  106. sio_hw->gpio_set = (1 << SCSI_DATA_DIR) | (1 << SCSI_OUT_REQ))
  107. // Release all SCSI outputs
  108. #define SCSI_RELEASE_OUTPUTS() \
  109. SCSI_RELEASE_DATA_REQ(), \
  110. sio_hw->gpio_oe_clr = (1 << SCSI_OUT_CD) | \
  111. (1 << SCSI_OUT_MSG), \
  112. sio_hw->gpio_set = (1 << SCSI_OUT_IO) | \
  113. (1 << SCSI_OUT_CD) | \
  114. (1 << SCSI_OUT_MSG) | \
  115. (1 << SCSI_OUT_RST) | \
  116. (1 << SCSI_OUT_BSY) | \
  117. (1 << SCSI_OUT_REQ) | \
  118. (1 << SCSI_OUT_SEL)
  119. // Read SCSI data bus
  120. #define SCSI_IN_DATA() \
  121. (~sio_hw->gpio_in & SCSI_IO_DATA_MASK) >> SCSI_IO_SHIFT
  122. #ifdef __cplusplus
  123. }
  124. // SD card driver for SdFat
  125. #ifdef SD_USE_SDIO
  126. class SdioConfig;
  127. extern SdioConfig g_sd_sdio_config;
  128. #define SD_CONFIG g_sd_sdio_config
  129. #define SD_CONFIG_CRASH g_sd_sdio_config
  130. #else
  131. class SdSpiConfig;
  132. extern SdSpiConfig g_sd_spi_config;
  133. #define SD_CONFIG g_sd_spi_config
  134. #define SD_CONFIG_CRASH g_sd_spi_config
  135. #endif
  136. #endif