ZuluSCSI_platform.cpp 25 KB

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  1. #include "ZuluSCSI_platform.h"
  2. #include "ZuluSCSI_log.h"
  3. #include "ZuluSCSI_config.h"
  4. #include <SdFat.h>
  5. #include <scsi.h>
  6. #include <assert.h>
  7. #include <hardware/gpio.h>
  8. #include <hardware/uart.h>
  9. #include <hardware/spi.h>
  10. #include <hardware/structs/xip_ctrl.h>
  11. #include <platform/mbed_error.h>
  12. #include <multicore.h>
  13. extern "C" {
  14. // As of 2022-09-13, the platformio RP2040 core is missing cplusplus guard on flash.h
  15. // For that reason this has to be inside the extern "C" here.
  16. #include <hardware/flash.h>
  17. #include "rp2040_flash_do_cmd.h"
  18. const char *g_platform_name = PLATFORM_NAME;
  19. static bool g_scsi_initiator = false;
  20. static uint32_t g_flash_chip_size = 0;
  21. static bool g_uart_initialized = false;
  22. void mbed_error_hook(const mbed_error_ctx * error_context);
  23. /***************/
  24. /* GPIO init */
  25. /***************/
  26. // Helper function to configure whole GPIO in one line
  27. static void gpio_conf(uint gpio, enum gpio_function fn, bool pullup, bool pulldown, bool output, bool initial_state, bool fast_slew)
  28. {
  29. gpio_put(gpio, initial_state);
  30. gpio_set_dir(gpio, output);
  31. gpio_set_pulls(gpio, pullup, pulldown);
  32. gpio_set_function(gpio, fn);
  33. if (fast_slew)
  34. {
  35. padsbank0_hw->io[gpio] |= PADS_BANK0_GPIO0_SLEWFAST_BITS;
  36. }
  37. }
  38. void platform_init()
  39. {
  40. // Make sure second core is stopped
  41. multicore_reset_core1();
  42. /* First configure the pins that affect external buffer directions.
  43. * RP2040 defaults to pulldowns, while these pins have external pull-ups.
  44. */
  45. // pin function pup pdown out state fast
  46. gpio_conf(SCSI_DATA_DIR, GPIO_FUNC_SIO, false,false, true, false, true);
  47. gpio_conf(SCSI_OUT_BSY, GPIO_FUNC_SIO, false,false, true, true, false);
  48. gpio_conf(SCSI_OUT_SEL, GPIO_FUNC_SIO, false,false, true, true, false);
  49. gpio_conf(SCSI_IN_ACK, GPIO_FUNC_SIO, false, false, false, false, false);
  50. gpio_conf(SCSI_IN_ATN, GPIO_FUNC_SIO, false, false, false, false, false);
  51. delay(10); // 10 ms delay to let pull-ups do their work
  52. /* Initialize logging to SWO pin (UART0) */
  53. gpio_conf(SWO_PIN, GPIO_FUNC_UART,false,false, true, false, true);
  54. uart_init(uart0, 1000000);
  55. g_uart_initialized = true;
  56. mbed_set_error_hook(mbed_error_hook);
  57. logmsg("Platform: ", g_platform_name);
  58. logmsg("FW Version: ", g_log_firmwareversion);
  59. g_log_debug = false;
  60. logmsg ("SCSI termination is handled by a hardware jumper");
  61. // Get flash chip size
  62. uint8_t cmd_read_jedec_id[4] = {0x9f, 0, 0, 0};
  63. uint8_t response_jedec[4] = {0};
  64. flash_do_cmd(cmd_read_jedec_id, response_jedec, 4);
  65. g_flash_chip_size = (1 << response_jedec[3]);
  66. logmsg("Flash chip size: ", (int)(g_flash_chip_size / 1024), " kB");
  67. // SD card pins
  68. // Card is used in SDIO mode for main program, and in SPI mode for crash handler & bootloader.
  69. // pin function pup pdown out state fast
  70. gpio_conf(SD_SPI_SCK, GPIO_FUNC_SPI, true, false, true, true, true);
  71. gpio_conf(SD_SPI_MOSI, GPIO_FUNC_SPI, true, false, true, true, true);
  72. gpio_conf(SD_SPI_MISO, GPIO_FUNC_SPI, true, false, false, true, true);
  73. gpio_conf(SD_SPI_CS, GPIO_FUNC_SIO, true, false, true, true, true);
  74. gpio_conf(SDIO_D1, GPIO_FUNC_SIO, true, false, false, true, true);
  75. gpio_conf(SDIO_D2, GPIO_FUNC_SIO, true, false, false, true, true);
  76. // LED pin
  77. gpio_conf(LED_PIN, GPIO_FUNC_SIO, false,false, true, false, false);
  78. }
  79. // late_init() only runs in main application, SCSI not needed in bootloader
  80. void platform_late_init()
  81. {
  82. g_scsi_initiator = false;
  83. logmsg("SCSI target/disk mode, acting as a SCSI disk");
  84. /* Initialize SCSI pins to required modes.
  85. * SCSI pins should be inactive / input at this point.
  86. */
  87. // SCSI data bus direction is switched by DATA_DIR signal.
  88. // Pullups make sure that no glitches occur when switching direction.
  89. // pin function pup pdown out state fast
  90. gpio_conf(SCSI_IO_DB0, GPIO_FUNC_SIO, true, false, false, true, true);
  91. gpio_conf(SCSI_IO_DB1, GPIO_FUNC_SIO, true, false, false, true, true);
  92. gpio_conf(SCSI_IO_DB2, GPIO_FUNC_SIO, true, false, false, true, true);
  93. gpio_conf(SCSI_IO_DB3, GPIO_FUNC_SIO, true, false, false, true, true);
  94. gpio_conf(SCSI_IO_DB4, GPIO_FUNC_SIO, true, false, false, true, true);
  95. gpio_conf(SCSI_IO_DB5, GPIO_FUNC_SIO, true, false, false, true, true);
  96. gpio_conf(SCSI_IO_DB6, GPIO_FUNC_SIO, true, false, false, true, true);
  97. gpio_conf(SCSI_IO_DB7, GPIO_FUNC_SIO, true, false, false, true, true);
  98. gpio_conf(SCSI_IO_DBP, GPIO_FUNC_SIO, true, false, false, true, true);
  99. // Act as SCSI device / target
  100. // SCSI control outputs
  101. // pin function pup pdown out state fast
  102. gpio_conf(SCSI_OUT_IO, GPIO_FUNC_SIO, false,false, true, true, true);
  103. gpio_conf(SCSI_OUT_MSG, GPIO_FUNC_SIO, false,false, true, true, true);
  104. // REQ pin is switched between PIO and SIO, pull-up makes sure no glitches
  105. gpio_conf(SCSI_OUT_REQ, GPIO_FUNC_SIO, true ,false, true, true, true);
  106. // Shared pins are changed to input / output depending on communication phase
  107. gpio_conf(SCSI_IN_SEL, GPIO_FUNC_SIO, true, false, false, true, true);
  108. if (SCSI_OUT_CD != SCSI_IN_SEL)
  109. {
  110. gpio_conf(SCSI_OUT_CD, GPIO_FUNC_SIO, false,false, true, true, true);
  111. }
  112. gpio_conf(SCSI_IN_BSY, GPIO_FUNC_SIO, true, false, false, true, true);
  113. if (SCSI_OUT_MSG != SCSI_IN_BSY)
  114. {
  115. gpio_conf(SCSI_OUT_MSG, GPIO_FUNC_SIO, false,false, true, true, true);
  116. }
  117. // SCSI control inputs
  118. // pin function pup pdown out state fast
  119. gpio_conf(SCSI_IN_ACK, GPIO_FUNC_SIO, false, false, false, true, false);
  120. gpio_conf(SCSI_IN_ATN, GPIO_FUNC_SIO, false, false, false, true, false);
  121. gpio_conf(SCSI_IN_RST, GPIO_FUNC_SIO, true, false, false, true, false);
  122. }
  123. bool platform_is_initiator_mode_enabled()
  124. {
  125. return g_scsi_initiator;
  126. }
  127. void platform_disable_led(void)
  128. {
  129. // pin function pup pdown out state fast
  130. gpio_conf(LED_PIN, GPIO_FUNC_SIO, false,false, false, false, false);
  131. logmsg("Disabling status LED");
  132. }
  133. /*****************************************/
  134. /* Crash handlers */
  135. /*****************************************/
  136. extern SdFs SD;
  137. extern uint32_t __StackTop;
  138. void platform_emergency_log_save()
  139. {
  140. platform_set_sd_callback(NULL, NULL);
  141. SD.begin(SD_CONFIG_CRASH);
  142. FsFile crashfile = SD.open(CRASHFILE, O_WRONLY | O_CREAT | O_TRUNC);
  143. if (!crashfile.isOpen())
  144. {
  145. // Try to reinitialize
  146. int max_retry = 10;
  147. while (max_retry-- > 0 && !SD.begin(SD_CONFIG_CRASH));
  148. crashfile = SD.open(CRASHFILE, O_WRONLY | O_CREAT | O_TRUNC);
  149. }
  150. uint32_t startpos = 0;
  151. crashfile.write(log_get_buffer(&startpos));
  152. crashfile.write(log_get_buffer(&startpos));
  153. crashfile.flush();
  154. crashfile.close();
  155. }
  156. void mbed_error_hook(const mbed_error_ctx * error_context)
  157. {
  158. logmsg("--------------");
  159. logmsg("CRASH!");
  160. logmsg("Platform: ", g_platform_name);
  161. logmsg("FW Version: ", g_log_firmwareversion);
  162. logmsg("error_status: ", (uint32_t)error_context->error_status);
  163. logmsg("error_address: ", error_context->error_address);
  164. logmsg("error_value: ", error_context->error_value);
  165. uint32_t *p = (uint32_t*)((uint32_t)error_context->thread_current_sp & ~3);
  166. for (int i = 0; i < 8; i++)
  167. {
  168. if (p == &__StackTop) break; // End of stack
  169. log("STACK ", (uint32_t)p, ": ", p[0], " ", p[1], " ", p[2], " ", p[3]);
  170. p += 4;
  171. }
  172. platform_emergency_log_save();
  173. while (1)
  174. {
  175. // Flash the crash address on the LED
  176. // Short pulse means 0, long pulse means 1
  177. int base_delay = 1000;
  178. for (int i = 31; i >= 0; i--)
  179. {
  180. LED_OFF();
  181. for (int j = 0; j < base_delay; j++) delay_ns(100000);
  182. int delay = (error_context->error_address & (1 << i)) ? (3 * base_delay) : base_delay;
  183. LED_ON();
  184. for (int j = 0; j < delay; j++) delay_ns(100000);
  185. LED_OFF();
  186. }
  187. for (int j = 0; j < base_delay * 10; j++) delay_ns(100000);
  188. }
  189. }
  190. /*****************************************/
  191. /* Debug logging and watchdog */
  192. /*****************************************/
  193. // This function is called for every log message.
  194. voidplatform_log(const char *s)
  195. {
  196. if (g_uart_initialized)
  197. {
  198. uart_puts(uart0, s);
  199. }
  200. }
  201. static int g_watchdog_timeout;
  202. static bool g_watchdog_initialized;
  203. static void watchdog_callback(unsigned alarm_num)
  204. {
  205. g_watchdog_timeout -= 1000;
  206. if (g_watchdog_timeout <= WATCHDOG_CRASH_TIMEOUT - WATCHDOG_BUS_RESET_TIMEOUT)
  207. {
  208. if (!scsiDev.resetFlag)
  209. {
  210. log("--------------");
  211. log("WATCHDOG TIMEOUT, attempting bus reset");
  212. log("GPIO states: out ", sio_hw->gpio_out, " oe ", sio_hw->gpio_oe, " in ", sio_hw->gpio_in);
  213. uint32_t *p = (uint32_t*)__get_PSP();
  214. for (int i = 0; i < 8; i++)
  215. {
  216. if (p == &__StackTop) break; // End of stack
  217. log("STACK ", (uint32_t)p, ": ", p[0], " ", p[1], " ", p[2], " ", p[3]);
  218. p += 4;
  219. }
  220. scsiDev.resetFlag = 1;
  221. }
  222. if (g_watchdog_timeout <= 0)
  223. {
  224. log("--------------");
  225. log("WATCHDOG TIMEOUT!");
  226. log("Platform: ", g_platform_name);
  227. log("FW Version: ", g_log_firmwareversion);
  228. log("GPIO states: out ", sio_hw->gpio_out, " oe ", sio_hw->gpio_oe, " in ", sio_hw->gpio_in);
  229. uint32_t *p = (uint32_t*)__get_PSP();
  230. for (int i = 0; i < 8; i++)
  231. {
  232. if (p == &__StackTop) break; // End of stack
  233. log("STACK ", (uint32_t)p, ": ", p[0], " ", p[1], " ", p[2], " ", p[3]);
  234. p += 4;
  235. }
  236. platform_emergency_log_save();
  237. platform_boot_to_main_firmware();
  238. }
  239. }
  240. hardware_alarm_set_target(3, delayed_by_ms(get_absolute_time(), 1000));
  241. }
  242. // This function can be used to periodically reset watchdog timer for crash handling.
  243. // It can also be left empty if the platform does not use a watchdog timer.
  244. void platform_reset_watchdog()
  245. {
  246. g_watchdog_timeout = WATCHDOG_CRASH_TIMEOUT;
  247. if (!g_watchdog_initialized)
  248. {
  249. hardware_alarm_claim(3);
  250. hardware_alarm_set_callback(3, &watchdog_callback);
  251. hardware_alarm_set_target(3, delayed_by_ms(get_absolute_time(), 1000));
  252. g_watchdog_initialized = true;
  253. }
  254. }
  255. /*****************************************/
  256. /* Flash reprogramming from bootloader */
  257. /*****************************************/
  258. #ifdef PLATFORM_BOOTLOADER_SIZE
  259. extern uint32_t __real_vectors_start;
  260. extern uint32_t __StackTop;
  261. static volatile void *g_bootloader_exit_req;
  262. bool platform_rewrite_flash_page(uint32_t offset, uint8_t buffer[PLATFORM_FLASH_PAGE_SIZE])
  263. {
  264. if (offset == PLATFORM_BOOTLOADER_SIZE)
  265. {
  266. if (buffer[3] != 0x20 || buffer[7] != 0x10)
  267. {
  268. log("Invalid firmware file, starts with: ", bytearray(buffer, 16));
  269. return false;
  270. }
  271. }
  272. dbgmsg("Writing flash at offset ", offset, " data ", bytearray(buffer, 4));
  273. assert(offset % PLATFORM_FLASH_PAGE_SIZE == 0);
  274. assert(offset >= PLATFORM_BOOTLOADER_SIZE);
  275. // Avoid any mbed timer interrupts triggering during the flashing.
  276. __disable_irq();
  277. // For some reason any code executed after flashing crashes
  278. // unless we disable the XIP cache.
  279. // Not sure why this happens, as flash_range_program() is flushing
  280. // the cache correctly.
  281. // The cache is now enabled from bootloader start until it starts
  282. // flashing, and again after reset to main firmware.
  283. xip_ctrl_hw->ctrl = 0;
  284. flash_range_erase(offset, PLATFORM_FLASH_PAGE_SIZE);
  285. flash_range_program(offset, buffer, PLATFORM_FLASH_PAGE_SIZE);
  286. uint32_t *buf32 = (uint32_t*)buffer;
  287. uint32_t num_words = PLATFORM_FLASH_PAGE_SIZE / 4;
  288. for (int i = 0; i < num_words; i++)
  289. {
  290. uint32_t expected = buf32[i];
  291. uint32_t actual = *(volatile uint32_t*)(XIP_NOCACHE_BASE + offset + i * 4);
  292. if (actual != expected)
  293. {
  294. log("Flash verify failed at offset ", offset + i * 4, " got ", actual, " expected ", expected);
  295. return false;
  296. }
  297. }
  298. __enable_irq();
  299. return true;
  300. }
  301. void platform_boot_to_main_firmware()
  302. {
  303. // To ensure that the system state is reset properly, we perform
  304. // a SYSRESETREQ and jump straight from the reset vector to main application.
  305. g_bootloader_exit_req = &g_bootloader_exit_req;
  306. SCB->AIRCR = 0x05FA0004;
  307. while(1);
  308. }
  309. void btldr_reset_handler()
  310. {
  311. uint32_t* application_base = &__real_vectors_start;
  312. if (g_bootloader_exit_req == &g_bootloader_exit_req)
  313. {
  314. // Boot to main application
  315. application_base = (uint32_t*)(XIP_BASE + PLATFORM_BOOTLOADER_SIZE);
  316. }
  317. SCB->VTOR = (uint32_t)application_base;
  318. __asm__(
  319. "msr msp, %0\n\t"
  320. "bx %1" : : "r" (application_base[0]),
  321. "r" (application_base[1]) : "memory");
  322. }
  323. // Replace the reset handler when building the bootloader
  324. // The rp2040_btldr.ld places real vector table at an offset.
  325. __attribute__((section(".btldr_vectors")))
  326. const void * btldr_vectors[2] = {&__StackTop, (void*)&btldr_reset_handler};
  327. #endif
  328. /************************************/
  329. /* ROM drive in extra flash space */
  330. /************************************/
  331. #ifdef PLATFORM_HAS_ROM_DRIVE
  332. // Reserve up to 352 kB for firmware.
  333. #define ROMDRIVE_OFFSET (352 * 1024)
  334. uint32_t platform_get_romdrive_maxsize()
  335. {
  336. if (g_flash_chip_size >= ROMDRIVE_OFFSET)
  337. {
  338. return g_flash_chip_size - ROMDRIVE_OFFSET;
  339. }
  340. else
  341. {
  342. // Failed to read flash chip size, default to 2 MB
  343. return 2048 * 1024 - ROMDRIVE_OFFSET;
  344. }
  345. }
  346. bool platform_read_romdrive(uint8_t *dest, uint32_t start, uint32_t count)
  347. {
  348. xip_ctrl_hw->stream_ctr = 0;
  349. while (!(xip_ctrl_hw->stat & XIP_STAT_FIFO_EMPTY))
  350. {
  351. (void) xip_ctrl_hw->stream_fifo;
  352. }
  353. xip_ctrl_hw->stream_addr = start + ROMDRIVE_OFFSET;
  354. xip_ctrl_hw->stream_ctr = count / 4;
  355. // Transfer happens in multiples of 4 bytes
  356. assert(start < platform_get_romdrive_maxsize());
  357. assert((count & 3) == 0);
  358. assert((((uint32_t)dest) & 3) == 0);
  359. uint32_t *dest32 = (uint32_t*)dest;
  360. uint32_t words_remain = count / 4;
  361. while (words_remain > 0)
  362. {
  363. if (!(xip_ctrl_hw->stat & XIP_STAT_FIFO_EMPTY))
  364. {
  365. *dest32++ = xip_ctrl_hw->stream_fifo;
  366. words_remain--;
  367. }
  368. }
  369. return true;
  370. }
  371. bool platform_write_romdrive(const uint8_t *data, uint32_t start, uint32_t count)
  372. {
  373. assert(start < platform_get_romdrive_maxsize());
  374. assert((count % PLATFORM_ROMDRIVE_PAGE_SIZE) == 0);
  375. __disable_irq();
  376. flash_range_erase(start + ROMDRIVE_OFFSET, count);
  377. flash_range_program(start + ROMDRIVE_OFFSET, data, count);
  378. __enable_irq();
  379. return true;
  380. }
  381. #endif
  382. /**********************************************/
  383. /* Mapping from data bytes to GPIO BOP values */
  384. /**********************************************/
  385. /* A lookup table is the fastest way to calculate parity and convert the IO pin mapping for data bus.
  386. * For RP2040 we expect that the bits are consecutive and in order.
  387. * The PIO-based parity scheme also requires that the lookup table is aligned to 512-byte increment.
  388. * The parity table is placed into SRAM4 area to reduce bus contention.
  389. */
  390. #define PARITY(n) ((1 ^ (n) ^ ((n)>>1) ^ ((n)>>2) ^ ((n)>>3) ^ ((n)>>4) ^ ((n)>>5) ^ ((n)>>6) ^ ((n)>>7)) & 1)
  391. #define X(n) (\
  392. ((n & 0x01) ? 0 : (1 << SCSI_IO_DB0)) | \
  393. ((n & 0x02) ? 0 : (1 << SCSI_IO_DB1)) | \
  394. ((n & 0x04) ? 0 : (1 << SCSI_IO_DB2)) | \
  395. ((n & 0x08) ? 0 : (1 << SCSI_IO_DB3)) | \
  396. ((n & 0x10) ? 0 : (1 << SCSI_IO_DB4)) | \
  397. ((n & 0x20) ? 0 : (1 << SCSI_IO_DB5)) | \
  398. ((n & 0x40) ? 0 : (1 << SCSI_IO_DB6)) | \
  399. ((n & 0x80) ? 0 : (1 << SCSI_IO_DB7)) | \
  400. (PARITY(n) ? 0 : (1 << SCSI_IO_DBP)) \
  401. )
  402. const uint16_t g_scsi_parity_lookup[256] __attribute__((aligned(512), section(".scratch_x.parity"))) =
  403. {
  404. X(0x00), X(0x01), X(0x02), X(0x03), X(0x04), X(0x05), X(0x06), X(0x07), X(0x08), X(0x09), X(0x0a), X(0x0b), X(0x0c), X(0x0d), X(0x0e), X(0x0f),
  405. X(0x10), X(0x11), X(0x12), X(0x13), X(0x14), X(0x15), X(0x16), X(0x17), X(0x18), X(0x19), X(0x1a), X(0x1b), X(0x1c), X(0x1d), X(0x1e), X(0x1f),
  406. X(0x20), X(0x21), X(0x22), X(0x23), X(0x24), X(0x25), X(0x26), X(0x27), X(0x28), X(0x29), X(0x2a), X(0x2b), X(0x2c), X(0x2d), X(0x2e), X(0x2f),
  407. X(0x30), X(0x31), X(0x32), X(0x33), X(0x34), X(0x35), X(0x36), X(0x37), X(0x38), X(0x39), X(0x3a), X(0x3b), X(0x3c), X(0x3d), X(0x3e), X(0x3f),
  408. X(0x40), X(0x41), X(0x42), X(0x43), X(0x44), X(0x45), X(0x46), X(0x47), X(0x48), X(0x49), X(0x4a), X(0x4b), X(0x4c), X(0x4d), X(0x4e), X(0x4f),
  409. X(0x50), X(0x51), X(0x52), X(0x53), X(0x54), X(0x55), X(0x56), X(0x57), X(0x58), X(0x59), X(0x5a), X(0x5b), X(0x5c), X(0x5d), X(0x5e), X(0x5f),
  410. X(0x60), X(0x61), X(0x62), X(0x63), X(0x64), X(0x65), X(0x66), X(0x67), X(0x68), X(0x69), X(0x6a), X(0x6b), X(0x6c), X(0x6d), X(0x6e), X(0x6f),
  411. X(0x70), X(0x71), X(0x72), X(0x73), X(0x74), X(0x75), X(0x76), X(0x77), X(0x78), X(0x79), X(0x7a), X(0x7b), X(0x7c), X(0x7d), X(0x7e), X(0x7f),
  412. X(0x80), X(0x81), X(0x82), X(0x83), X(0x84), X(0x85), X(0x86), X(0x87), X(0x88), X(0x89), X(0x8a), X(0x8b), X(0x8c), X(0x8d), X(0x8e), X(0x8f),
  413. X(0x90), X(0x91), X(0x92), X(0x93), X(0x94), X(0x95), X(0x96), X(0x97), X(0x98), X(0x99), X(0x9a), X(0x9b), X(0x9c), X(0x9d), X(0x9e), X(0x9f),
  414. X(0xa0), X(0xa1), X(0xa2), X(0xa3), X(0xa4), X(0xa5), X(0xa6), X(0xa7), X(0xa8), X(0xa9), X(0xaa), X(0xab), X(0xac), X(0xad), X(0xae), X(0xaf),
  415. X(0xb0), X(0xb1), X(0xb2), X(0xb3), X(0xb4), X(0xb5), X(0xb6), X(0xb7), X(0xb8), X(0xb9), X(0xba), X(0xbb), X(0xbc), X(0xbd), X(0xbe), X(0xbf),
  416. X(0xc0), X(0xc1), X(0xc2), X(0xc3), X(0xc4), X(0xc5), X(0xc6), X(0xc7), X(0xc8), X(0xc9), X(0xca), X(0xcb), X(0xcc), X(0xcd), X(0xce), X(0xcf),
  417. X(0xd0), X(0xd1), X(0xd2), X(0xd3), X(0xd4), X(0xd5), X(0xd6), X(0xd7), X(0xd8), X(0xd9), X(0xda), X(0xdb), X(0xdc), X(0xdd), X(0xde), X(0xdf),
  418. X(0xe0), X(0xe1), X(0xe2), X(0xe3), X(0xe4), X(0xe5), X(0xe6), X(0xe7), X(0xe8), X(0xe9), X(0xea), X(0xeb), X(0xec), X(0xed), X(0xee), X(0xef),
  419. X(0xf0), X(0xf1), X(0xf2), X(0xf3), X(0xf4), X(0xf5), X(0xf6), X(0xf7), X(0xf8), X(0xf9), X(0xfa), X(0xfb), X(0xfc), X(0xfd), X(0xfe), X(0xff)
  420. };
  421. #undef X
  422. /* Similarly, another lookup table is used to verify parity of received data.
  423. * This table is indexed by the 8 data bits + 1 parity bit from SCSI bus (active low)
  424. * Each word contains the data byte (inverted to active-high) and a bit indicating whether parity is valid.
  425. */
  426. #define X(n) (\
  427. ((n & 0xFF) ^ 0xFF) | \
  428. (((PARITY(n & 0xFF) ^ (n >> 8)) & 1) << 8) \
  429. )
  430. const uint16_t g_scsi_parity_check_lookup[512] __attribute__((aligned(1024), section(".scratch_x.parity"))) =
  431. {
  432. X(0x000), X(0x001), X(0x002), X(0x003), X(0x004), X(0x005), X(0x006), X(0x007), X(0x008), X(0x009), X(0x00a), X(0x00b), X(0x00c), X(0x00d), X(0x00e), X(0x00f),
  433. X(0x010), X(0x011), X(0x012), X(0x013), X(0x014), X(0x015), X(0x016), X(0x017), X(0x018), X(0x019), X(0x01a), X(0x01b), X(0x01c), X(0x01d), X(0x01e), X(0x01f),
  434. X(0x020), X(0x021), X(0x022), X(0x023), X(0x024), X(0x025), X(0x026), X(0x027), X(0x028), X(0x029), X(0x02a), X(0x02b), X(0x02c), X(0x02d), X(0x02e), X(0x02f),
  435. X(0x030), X(0x031), X(0x032), X(0x033), X(0x034), X(0x035), X(0x036), X(0x037), X(0x038), X(0x039), X(0x03a), X(0x03b), X(0x03c), X(0x03d), X(0x03e), X(0x03f),
  436. X(0x040), X(0x041), X(0x042), X(0x043), X(0x044), X(0x045), X(0x046), X(0x047), X(0x048), X(0x049), X(0x04a), X(0x04b), X(0x04c), X(0x04d), X(0x04e), X(0x04f),
  437. X(0x050), X(0x051), X(0x052), X(0x053), X(0x054), X(0x055), X(0x056), X(0x057), X(0x058), X(0x059), X(0x05a), X(0x05b), X(0x05c), X(0x05d), X(0x05e), X(0x05f),
  438. X(0x060), X(0x061), X(0x062), X(0x063), X(0x064), X(0x065), X(0x066), X(0x067), X(0x068), X(0x069), X(0x06a), X(0x06b), X(0x06c), X(0x06d), X(0x06e), X(0x06f),
  439. X(0x070), X(0x071), X(0x072), X(0x073), X(0x074), X(0x075), X(0x076), X(0x077), X(0x078), X(0x079), X(0x07a), X(0x07b), X(0x07c), X(0x07d), X(0x07e), X(0x07f),
  440. X(0x080), X(0x081), X(0x082), X(0x083), X(0x084), X(0x085), X(0x086), X(0x087), X(0x088), X(0x089), X(0x08a), X(0x08b), X(0x08c), X(0x08d), X(0x08e), X(0x08f),
  441. X(0x090), X(0x091), X(0x092), X(0x093), X(0x094), X(0x095), X(0x096), X(0x097), X(0x098), X(0x099), X(0x09a), X(0x09b), X(0x09c), X(0x09d), X(0x09e), X(0x09f),
  442. X(0x0a0), X(0x0a1), X(0x0a2), X(0x0a3), X(0x0a4), X(0x0a5), X(0x0a6), X(0x0a7), X(0x0a8), X(0x0a9), X(0x0aa), X(0x0ab), X(0x0ac), X(0x0ad), X(0x0ae), X(0x0af),
  443. X(0x0b0), X(0x0b1), X(0x0b2), X(0x0b3), X(0x0b4), X(0x0b5), X(0x0b6), X(0x0b7), X(0x0b8), X(0x0b9), X(0x0ba), X(0x0bb), X(0x0bc), X(0x0bd), X(0x0be), X(0x0bf),
  444. X(0x0c0), X(0x0c1), X(0x0c2), X(0x0c3), X(0x0c4), X(0x0c5), X(0x0c6), X(0x0c7), X(0x0c8), X(0x0c9), X(0x0ca), X(0x0cb), X(0x0cc), X(0x0cd), X(0x0ce), X(0x0cf),
  445. X(0x0d0), X(0x0d1), X(0x0d2), X(0x0d3), X(0x0d4), X(0x0d5), X(0x0d6), X(0x0d7), X(0x0d8), X(0x0d9), X(0x0da), X(0x0db), X(0x0dc), X(0x0dd), X(0x0de), X(0x0df),
  446. X(0x0e0), X(0x0e1), X(0x0e2), X(0x0e3), X(0x0e4), X(0x0e5), X(0x0e6), X(0x0e7), X(0x0e8), X(0x0e9), X(0x0ea), X(0x0eb), X(0x0ec), X(0x0ed), X(0x0ee), X(0x0ef),
  447. X(0x0f0), X(0x0f1), X(0x0f2), X(0x0f3), X(0x0f4), X(0x0f5), X(0x0f6), X(0x0f7), X(0x0f8), X(0x0f9), X(0x0fa), X(0x0fb), X(0x0fc), X(0x0fd), X(0x0fe), X(0x0ff),
  448. X(0x100), X(0x101), X(0x102), X(0x103), X(0x104), X(0x105), X(0x106), X(0x107), X(0x108), X(0x109), X(0x10a), X(0x10b), X(0x10c), X(0x10d), X(0x10e), X(0x10f),
  449. X(0x110), X(0x111), X(0x112), X(0x113), X(0x114), X(0x115), X(0x116), X(0x117), X(0x118), X(0x119), X(0x11a), X(0x11b), X(0x11c), X(0x11d), X(0x11e), X(0x11f),
  450. X(0x120), X(0x121), X(0x122), X(0x123), X(0x124), X(0x125), X(0x126), X(0x127), X(0x128), X(0x129), X(0x12a), X(0x12b), X(0x12c), X(0x12d), X(0x12e), X(0x12f),
  451. X(0x130), X(0x131), X(0x132), X(0x133), X(0x134), X(0x135), X(0x136), X(0x137), X(0x138), X(0x139), X(0x13a), X(0x13b), X(0x13c), X(0x13d), X(0x13e), X(0x13f),
  452. X(0x140), X(0x141), X(0x142), X(0x143), X(0x144), X(0x145), X(0x146), X(0x147), X(0x148), X(0x149), X(0x14a), X(0x14b), X(0x14c), X(0x14d), X(0x14e), X(0x14f),
  453. X(0x150), X(0x151), X(0x152), X(0x153), X(0x154), X(0x155), X(0x156), X(0x157), X(0x158), X(0x159), X(0x15a), X(0x15b), X(0x15c), X(0x15d), X(0x15e), X(0x15f),
  454. X(0x160), X(0x161), X(0x162), X(0x163), X(0x164), X(0x165), X(0x166), X(0x167), X(0x168), X(0x169), X(0x16a), X(0x16b), X(0x16c), X(0x16d), X(0x16e), X(0x16f),
  455. X(0x170), X(0x171), X(0x172), X(0x173), X(0x174), X(0x175), X(0x176), X(0x177), X(0x178), X(0x179), X(0x17a), X(0x17b), X(0x17c), X(0x17d), X(0x17e), X(0x17f),
  456. X(0x180), X(0x181), X(0x182), X(0x183), X(0x184), X(0x185), X(0x186), X(0x187), X(0x188), X(0x189), X(0x18a), X(0x18b), X(0x18c), X(0x18d), X(0x18e), X(0x18f),
  457. X(0x190), X(0x191), X(0x192), X(0x193), X(0x194), X(0x195), X(0x196), X(0x197), X(0x198), X(0x199), X(0x19a), X(0x19b), X(0x19c), X(0x19d), X(0x19e), X(0x19f),
  458. X(0x1a0), X(0x1a1), X(0x1a2), X(0x1a3), X(0x1a4), X(0x1a5), X(0x1a6), X(0x1a7), X(0x1a8), X(0x1a9), X(0x1aa), X(0x1ab), X(0x1ac), X(0x1ad), X(0x1ae), X(0x1af),
  459. X(0x1b0), X(0x1b1), X(0x1b2), X(0x1b3), X(0x1b4), X(0x1b5), X(0x1b6), X(0x1b7), X(0x1b8), X(0x1b9), X(0x1ba), X(0x1bb), X(0x1bc), X(0x1bd), X(0x1be), X(0x1bf),
  460. X(0x1c0), X(0x1c1), X(0x1c2), X(0x1c3), X(0x1c4), X(0x1c5), X(0x1c6), X(0x1c7), X(0x1c8), X(0x1c9), X(0x1ca), X(0x1cb), X(0x1cc), X(0x1cd), X(0x1ce), X(0x1cf),
  461. X(0x1d0), X(0x1d1), X(0x1d2), X(0x1d3), X(0x1d4), X(0x1d5), X(0x1d6), X(0x1d7), X(0x1d8), X(0x1d9), X(0x1da), X(0x1db), X(0x1dc), X(0x1dd), X(0x1de), X(0x1df),
  462. X(0x1e0), X(0x1e1), X(0x1e2), X(0x1e3), X(0x1e4), X(0x1e5), X(0x1e6), X(0x1e7), X(0x1e8), X(0x1e9), X(0x1ea), X(0x1eb), X(0x1ec), X(0x1ed), X(0x1ee), X(0x1ef),
  463. X(0x1f0), X(0x1f1), X(0x1f2), X(0x1f3), X(0x1f4), X(0x1f5), X(0x1f6), X(0x1f7), X(0x1f8), X(0x1f9), X(0x1fa), X(0x1fb), X(0x1fc), X(0x1fd), X(0x1fe), X(0x1ff),
  464. };
  465. #undef X
  466. } /* extern "C" */
  467. /* Logging from mbed */
  468. static class LogTarget: public mbed::FileHandle {
  469. public:
  470. virtual ssize_t read(void *buffer, size_t size) { return 0; }
  471. virtual ssize_t write(const void *buffer, size_t size)
  472. {
  473. // A bit inefficient but mbed seems to write() one character
  474. // at a time anyways.
  475. for (int i = 0; i < size; i++)
  476. {
  477. char buf[2] = {((const char*)buffer)[i], 0};
  478. log_raw(buf);
  479. }
  480. return size;
  481. }
  482. virtual off_t seek(off_t offset, int whence = SEEK_SET) { return offset; }
  483. virtual int close() { return 0; }
  484. virtual off_t size() { return 0; }
  485. } g_LogTarget;
  486. mbed::FileHandle *mbed::mbed_override_console(int fd)
  487. {
  488. return &g_LogTarget;
  489. }