scsi_accel_greenpak.cpp 17 KB

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  1. #include "scsi_accel_greenpak.h"
  2. #include "BlueSCSI_platform.h"
  3. #include <BlueSCSI_log.h>
  4. #include <assert.h>
  5. #ifndef GREENPAK_PLD_IO1
  6. void scsi_accel_greenpak_send(const uint32_t *buf, uint32_t num_words, volatile int *resetFlag)
  7. {
  8. assert(false);
  9. }
  10. void scsi_accel_greenpak_recv(uint32_t *buf, uint32_t num_words, volatile int *resetFlag)
  11. {
  12. assert(false);
  13. }
  14. #else
  15. /*********************************************************/
  16. /* Optimized writes to SCSI bus in GREENPAK_PIO mode */
  17. /*********************************************************/
  18. extern const uint32_t g_scsi_out_byte_to_bop_pld1hi[256];
  19. extern const uint32_t g_scsi_out_byte_to_bop_pld1lo[256];
  20. // Optimized ASM blocks for the SCSI communication subroutine
  21. // Take 8 bits from d and format them for writing
  22. // d is name of data operand, b is bit offset, x is unique label
  23. #define ASM_LOAD_DATA_PLD1HI(d, b, x) \
  24. " load_data1_" x "_%=: \n" \
  25. " ubfx %[tmp1], %[" d "], #" b ", #8 \n" \
  26. " ldr %[tmp1], [%[byte_lookup_pld1hi], %[tmp1], lsl #2] \n"
  27. #define ASM_LOAD_DATA_PLD1LO(d, b, x) \
  28. " load_data1_" x "_%=: \n" \
  29. " ubfx %[tmp1], %[" d "], #" b ", #8 \n" \
  30. " ldr %[tmp1], [%[byte_lookup_pld1lo], %[tmp1], lsl #2] \n"
  31. // Write data to SCSI port
  32. #define ASM_SEND_DATA(x) \
  33. " send_data" x "_%=: \n" \
  34. " str %[tmp1], [%[out_port_bop]] \n"
  35. // Wait for ACK to be low or REQ to be high.
  36. // The external logic will set REQ low when PLD_IO1 is toggled and
  37. // back high as soon as ACK goes low. New data can be written to
  38. // GPIO as soon as ACK goes low. If an interrupt happens in the
  39. // middle, we may miss the ACK pulse and should check REQ.
  40. #define ASM_WAIT_DONE(x) \
  41. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  42. " cbz %[tmp2], wait_done_" x "_%= \n" \
  43. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  44. " cbz %[tmp2], wait_done_" x "_%= \n" \
  45. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  46. " cbz %[tmp2], wait_done_" x "_%= \n" \
  47. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  48. " cbz %[tmp2], wait_done_" x "_%= \n" \
  49. " wait_req_inactive_" x "_%=: \n" \
  50. " ldr %[tmp2], [%[req_pin_bb]] \n" \
  51. " cbnz %[tmp2], wait_done_" x "_%= \n" \
  52. " ldr %[tmp2], [%[reset_flag]] \n" \
  53. " cbnz %[tmp2], wait_done_" x "_%= \n" \
  54. " b.n wait_req_inactive_" x "_%= \n" \
  55. " wait_done_" x "_%=: \n"
  56. // Send bytes to SCSI bus using the asynchronous handshake mechanism
  57. // Takes 4 bytes at a time for sending from buf.
  58. void scsi_accel_greenpak_send(const uint32_t *buf, uint32_t num_words, volatile int *resetFlag)
  59. {
  60. volatile uint32_t *out_port_bop = (volatile uint32_t*)&GPIO_BOP(SCSI_OUT_PORT);
  61. uint32_t ack_pin_bb = PERIPH_BB_BASE + (((uint32_t)&GPIO_ISTAT(SCSI_ACK_PORT)) - APB1_BUS_BASE) * 32 + SCSI_IN_ACK_IDX * 4;
  62. uint32_t req_pin_bb = PERIPH_BB_BASE + (((uint32_t)&GPIO_ISTAT(SCSI_OUT_PORT)) - APB1_BUS_BASE) * 32 + SCSI_OUT_REQ_IDX * 4;
  63. register uint32_t tmp1 = 0;
  64. register uint32_t tmp2 = 0;
  65. register uint32_t data = 0;
  66. // Set REQ pin as input and PLD_IO2 high to enable logic
  67. GPIO_BC(SCSI_OUT_PORT) = GREENPAK_PLD_IO1;
  68. gpio_init(SCSI_OUT_PORT, GPIO_MODE_IPU, 0, SCSI_OUT_REQ);
  69. GPIO_BOP(SCSI_OUT_PORT) = GREENPAK_PLD_IO2;
  70. asm volatile (
  71. " ldr %[data], [%[buf]], #4 \n" \
  72. ASM_LOAD_DATA_PLD1HI("data", "0", "first")
  73. "inner_loop_%=: \n" \
  74. ASM_SEND_DATA("0")
  75. ASM_LOAD_DATA_PLD1LO("data", "8", "8")
  76. ASM_WAIT_DONE("0")
  77. ASM_SEND_DATA("8")
  78. ASM_LOAD_DATA_PLD1HI("data", "16", "16")
  79. ASM_WAIT_DONE("8")
  80. ASM_SEND_DATA("16")
  81. ASM_LOAD_DATA_PLD1LO("data", "24", "24")
  82. ASM_WAIT_DONE("16")
  83. ASM_SEND_DATA("24")
  84. " ldr %[data], [%[buf]], #4 \n" \
  85. ASM_LOAD_DATA_PLD1HI("data", "0", "0")
  86. ASM_WAIT_DONE("24")
  87. " subs %[num_words], %[num_words], #1 \n" \
  88. " bne inner_loop_%= \n"
  89. : /* Output */ [tmp1] "+l" (tmp1), [tmp2] "+l" (tmp2), [data] "+r" (data),
  90. [buf] "+r" (buf), [num_words] "+r" (num_words)
  91. : /* Input */ [ack_pin_bb] "r" (ack_pin_bb),
  92. [req_pin_bb] "r" (req_pin_bb),
  93. [out_port_bop] "r"(out_port_bop),
  94. [byte_lookup_pld1hi] "r" (g_scsi_out_byte_to_bop_pld1hi),
  95. [byte_lookup_pld1lo] "r" (g_scsi_out_byte_to_bop_pld1lo),
  96. [reset_flag] "r" (resetFlag)
  97. : /* Clobber */ );
  98. SCSI_RELEASE_DATA_REQ();
  99. // Disable external logic and set REQ pin as output
  100. GPIO_BC(SCSI_OUT_PORT) = GREENPAK_PLD_IO2;
  101. gpio_init(SCSI_OUT_PORT, GPIO_MODE_OUT_PP, GPIO_OSPEED_50MHZ, SCSI_OUT_REQ);
  102. }
  103. /**********************************************/
  104. /* Mapping from data bytes to GPIO BOP values */
  105. /**********************************************/
  106. #define PARITY(n) ((1 ^ (n) ^ ((n)>>1) ^ ((n)>>2) ^ ((n)>>3) ^ ((n)>>4) ^ ((n)>>5) ^ ((n)>>6) ^ ((n)>>7)) & 1)
  107. #define X(n) (\
  108. ((n & 0x01) ? (SCSI_OUT_DB0 << 16) : SCSI_OUT_DB0) | \
  109. ((n & 0x02) ? (SCSI_OUT_DB1 << 16) : SCSI_OUT_DB1) | \
  110. ((n & 0x04) ? (SCSI_OUT_DB2 << 16) : SCSI_OUT_DB2) | \
  111. ((n & 0x08) ? (SCSI_OUT_DB3 << 16) : SCSI_OUT_DB3) | \
  112. ((n & 0x10) ? (SCSI_OUT_DB4 << 16) : SCSI_OUT_DB4) | \
  113. ((n & 0x20) ? (SCSI_OUT_DB5 << 16) : SCSI_OUT_DB5) | \
  114. ((n & 0x40) ? (SCSI_OUT_DB6 << 16) : SCSI_OUT_DB6) | \
  115. ((n & 0x80) ? (SCSI_OUT_DB7 << 16) : SCSI_OUT_DB7) | \
  116. (PARITY(n) ? (SCSI_OUT_DBP << 16) : SCSI_OUT_DBP) | \
  117. (GREENPAK_PLD_IO1) \
  118. )
  119. const uint32_t g_scsi_out_byte_to_bop_pld1hi[256] =
  120. {
  121. 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),
  122. 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),
  123. 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),
  124. 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),
  125. 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),
  126. 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),
  127. 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),
  128. 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),
  129. 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),
  130. 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),
  131. 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),
  132. 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),
  133. 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),
  134. 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),
  135. 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),
  136. 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)
  137. };
  138. #undef X
  139. #define X(n) (\
  140. ((n & 0x01) ? (SCSI_OUT_DB0 << 16) : SCSI_OUT_DB0) | \
  141. ((n & 0x02) ? (SCSI_OUT_DB1 << 16) : SCSI_OUT_DB1) | \
  142. ((n & 0x04) ? (SCSI_OUT_DB2 << 16) : SCSI_OUT_DB2) | \
  143. ((n & 0x08) ? (SCSI_OUT_DB3 << 16) : SCSI_OUT_DB3) | \
  144. ((n & 0x10) ? (SCSI_OUT_DB4 << 16) : SCSI_OUT_DB4) | \
  145. ((n & 0x20) ? (SCSI_OUT_DB5 << 16) : SCSI_OUT_DB5) | \
  146. ((n & 0x40) ? (SCSI_OUT_DB6 << 16) : SCSI_OUT_DB6) | \
  147. ((n & 0x80) ? (SCSI_OUT_DB7 << 16) : SCSI_OUT_DB7) | \
  148. (PARITY(n) ? (SCSI_OUT_DBP << 16) : SCSI_OUT_DBP) | \
  149. (GREENPAK_PLD_IO1 << 16) \
  150. )
  151. const uint32_t g_scsi_out_byte_to_bop_pld1lo[256] =
  152. {
  153. 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),
  154. 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),
  155. 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),
  156. 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),
  157. 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),
  158. 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),
  159. 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),
  160. 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),
  161. 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),
  162. 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),
  163. 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),
  164. 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),
  165. 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),
  166. 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),
  167. 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),
  168. 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)
  169. };
  170. #undef X
  171. /*********************************************************/
  172. /* Optimized reads from SCSI bus in GREENPAK_PIO mode */
  173. /*********************************************************/
  174. // Wait for ACK to go high and back low.
  175. // This indicates that there is a byte ready to be read
  176. // If interrupt occurs in middle, we may miss ACK going high.
  177. // In that case, verify that REQ is already low.
  178. #define ASM_WAIT_ACK(x) \
  179. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  180. " cbnz %[tmp2], ack_is_high_" x "_%= \n" \
  181. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  182. " cbnz %[tmp2], ack_is_high_" x "_%= \n" \
  183. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  184. " cbnz %[tmp2], ack_is_high_" x "_%= \n" \
  185. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  186. " cbnz %[tmp2], ack_is_high_" x "_%= \n" \
  187. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  188. " cbnz %[tmp2], ack_is_high_" x "_%= \n" \
  189. " wait_req_low_" x "_%=: \n" \
  190. " cpsid i \n" \
  191. " ldr %[tmp2], [%[req_pin_bb]] \n" \
  192. " cbz %[tmp2], ack_is_high_" x "_%= \n" \
  193. " ldr %[tmp2], [%[reset_flag]] \n" \
  194. " cbnz %[tmp2], ack_is_high_" x "_%= \n" \
  195. " cpsie i \n" \
  196. " b.n wait_req_low_" x "_%= \n" \
  197. " ack_is_high_" x "_%=: \n" \
  198. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  199. " cbz %[tmp2], ack_is_low_" x "_%= \n" \
  200. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  201. " cbz %[tmp2], ack_is_low_" x "_%= \n" \
  202. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  203. " cbz %[tmp2], ack_is_low_" x "_%= \n" \
  204. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  205. " cbz %[tmp2], ack_is_low_" x "_%= \n" \
  206. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  207. " cbz %[tmp2], ack_is_low_" x "_%= \n" \
  208. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  209. " cbz %[tmp2], ack_is_low_" x "_%= \n" \
  210. " wait_ack_low_" x "_%=: \n" \
  211. " cpsid i \n" \
  212. " ldr %[tmp2], [%[ack_pin_bb]] \n" \
  213. " cbz %[tmp2], ack_is_low_" x "_%= \n" \
  214. " ldr %[tmp2], [%[reset_flag]] \n" \
  215. " cbnz %[tmp2], ack_is_low_" x "_%= \n" \
  216. " cpsie i \n" \
  217. " b.n wait_ack_low_" x "_%= \n" \
  218. " ack_is_low_" x "_%=: \n"
  219. // Prepare for reception of data by loading the next PLD_IO1 value
  220. // and disabling interrupts.
  221. #define ASM_PREP_RECV(l) \
  222. " mov %[tmp1], %[" l "] \n" \
  223. " cpsid i \n"
  224. // Read GPIO bus, take the data byte and toggle PLD_IO1.
  225. // Note that the PLD_IO1 write is done first to reduce latency, but
  226. // the istat value that is read by next instruction is still the old
  227. // one due to IO port delays. Interrupts must be disabled for this
  228. // sequence to work correctly.
  229. //
  230. // d is the name of register where data is to be stored
  231. // b is the bit offset to store the byte at
  232. // x is unique label
  233. #define ASM_RECV_DATA(d, b, x) \
  234. " read_data_" x "_%=: \n" \
  235. " str %[tmp1], [%[out_port_bop]] \n" \
  236. " ldr %[tmp1], [%[in_port_istat]] \n" \
  237. " ubfx %[tmp1], %[tmp1], %[data_in_shift], #8 \n" \
  238. " bfi %[" d "], %[tmp1], #" b ", #8 \n" \
  239. " cpsie i \n"
  240. // Read bytes from SCSI bus using asynchronous handshake mechanism
  241. // Takes 4 bytes at a time.
  242. void scsi_accel_greenpak_recv(uint32_t *buf, uint32_t num_words, volatile int *resetFlag)
  243. {
  244. volatile uint32_t *out_port_bop = (volatile uint32_t*)&GPIO_BOP(SCSI_OUT_PORT);
  245. volatile uint32_t *in_port_istat = (volatile uint32_t*)&GPIO_ISTAT(SCSI_IN_PORT);
  246. uint32_t ack_pin_bb = PERIPH_BB_BASE + (((uint32_t)&GPIO_ISTAT(SCSI_ACK_PORT)) - APB1_BUS_BASE) * 32 + SCSI_IN_ACK_IDX * 4;
  247. uint32_t req_pin_bb = PERIPH_BB_BASE + (((uint32_t)&GPIO_ISTAT(SCSI_OUT_PORT)) - APB1_BUS_BASE) * 32 + SCSI_OUT_REQ_IDX * 4;
  248. register uint32_t tmp1 = 0;
  249. register uint32_t tmp2 = 0;
  250. register uint32_t data = 0;
  251. // Last word requires special handling so that hardware doesn't issue new REQ pulse.
  252. assert(num_words >= 2);
  253. num_words -= 1;
  254. // Set PLD_IO3 high to enable read from SCSI bus
  255. GPIO_BOP(SCSI_OUT_PORT) = GREENPAK_PLD_IO3;
  256. // Make sure that the previous access has fully completed.
  257. // E.g. Macintosh can hold ACK low for long time after last byte of block.
  258. while (SCSI_IN(ACK) && !*resetFlag);
  259. // Set REQ pin as input and PLD_IO2 high to enable logic
  260. GPIO_BC(SCSI_OUT_PORT) = GREENPAK_PLD_IO1;
  261. gpio_init(SCSI_OUT_PORT, GPIO_MODE_IPU, 0, SCSI_OUT_REQ);
  262. GPIO_BOP(SCSI_OUT_PORT) = GREENPAK_PLD_IO2;
  263. asm volatile (
  264. "inner_loop_%=: \n"
  265. ASM_PREP_RECV("pld1_hi")
  266. ASM_WAIT_ACK("0")
  267. ASM_RECV_DATA("data", "0", "0")
  268. ASM_PREP_RECV("pld1_lo")
  269. ASM_WAIT_ACK("8")
  270. ASM_RECV_DATA("data", "8", "8")
  271. ASM_PREP_RECV("pld1_hi")
  272. ASM_WAIT_ACK("16")
  273. ASM_RECV_DATA("data", "16", "16")
  274. ASM_PREP_RECV("pld1_lo")
  275. ASM_WAIT_ACK("24")
  276. ASM_RECV_DATA("data", "24", "24")
  277. " mvn %[data], %[data] \n"
  278. " str %[data], [%[buf]], #4 \n"
  279. " subs %[num_words], %[num_words], #1 \n"
  280. " bne inner_loop_%= \n"
  281. // Process last word separately to avoid issuing extra REQ pulse at end.
  282. "recv_last_word_%=: \n"
  283. ASM_PREP_RECV("pld1_hi")
  284. ASM_WAIT_ACK("0b")
  285. ASM_RECV_DATA("data", "0", "0b")
  286. ASM_PREP_RECV("pld1_lo")
  287. ASM_WAIT_ACK("8b")
  288. ASM_RECV_DATA("data", "8", "8b")
  289. ASM_PREP_RECV("pld1_hi")
  290. ASM_WAIT_ACK("16b")
  291. ASM_RECV_DATA("data", "16", "16b")
  292. ASM_PREP_RECV("pld1_hi")
  293. ASM_WAIT_ACK("24b")
  294. ASM_RECV_DATA("data", "24", "24b")
  295. " mvn %[data], %[data] \n"
  296. " str %[data], [%[buf]], #4 \n"
  297. : /* Output */ [tmp1] "+l" (tmp1), [tmp2] "+l" (tmp2), [data] "+r" (data),
  298. [buf] "+r" (buf), [num_words] "+r" (num_words)
  299. : /* Input */ [ack_pin_bb] "r" (ack_pin_bb),
  300. [req_pin_bb] "r" (req_pin_bb),
  301. [out_port_bop] "r"(out_port_bop),
  302. [in_port_istat] "r" (in_port_istat),
  303. [reset_flag] "r" (resetFlag),
  304. [data_in_shift] "I" (SCSI_IN_SHIFT),
  305. [pld1_lo] "I" (SCSI_OUT_PLD1 << 16),
  306. [pld1_hi] "I" (SCSI_OUT_PLD1)
  307. : /* Clobber */ );
  308. SCSI_RELEASE_DATA_REQ();
  309. // Disable external logic and set REQ pin as output
  310. GPIO_BC(SCSI_OUT_PORT) = GREENPAK_PLD_IO2;
  311. gpio_init(SCSI_OUT_PORT, GPIO_MODE_OUT_PP, GPIO_OSPEED_50MHZ, SCSI_OUT_REQ);
  312. GPIO_BC(SCSI_OUT_PORT) = GREENPAK_PLD_IO3;
  313. }
  314. #endif