/u-boot-2014.07/board/evb64260/zuma_pbb_mbox.c

https://gitlab.com/pine64-android/brandy · C · 208 lines · 147 code · 52 blank · 9 comment · 22 complexity · e0a4bd0f8969589fad9756d10f4ef681 MD5 · raw file

  1. #include <common.h>
  2. #include <galileo/pci.h>
  3. #include <net.h>
  4. #include <pci.h>
  5. #include "zuma_pbb.h"
  6. #include "zuma_pbb_mbox.h"
  7. struct _zuma_mbox_dev zuma_mbox_dev;
  8. static int zuma_mbox_write(struct _zuma_mbox_dev *dev, unsigned int data)
  9. {
  10. unsigned int status, count = 0, i;
  11. status = (volatile int) le32_to_cpu(dev->sip->mbox_status);
  12. while ((status & OUT_PENDING) && count < 1000) {
  13. count++;
  14. for (i = 0; i < 1000; i++)
  15. ;
  16. status = (volatile int) le32_to_cpu(dev->sip->mbox_status);
  17. }
  18. if (count < 1000) {
  19. /* if SET it means msg pending */
  20. /* printf("mbox real write %08x\n",data); */
  21. dev->sip->mbox_out = cpu_to_le32(data);
  22. return 4;
  23. }
  24. printf("mbox tx timeout\n");
  25. return 0;
  26. }
  27. static int zuma_mbox_read(struct _zuma_mbox_dev *dev, unsigned int *data)
  28. {
  29. unsigned int status, count = 0, i;
  30. status = (volatile int) le32_to_cpu(dev->sip->mbox_status);
  31. while (!(status & IN_VALID) && count < 1000) {
  32. count++;
  33. for (i = 0; i < 1000; i++)
  34. ;
  35. status = (volatile int) le32_to_cpu(dev->sip->mbox_status);
  36. }
  37. if (count < 1000) {
  38. /* if SET it means msg pending */
  39. *data = le32_to_cpu(dev->sip->mbox_in);
  40. /*printf("mbox real read %08x\n", *data); */
  41. return 4;
  42. }
  43. printf("mbox rx timeout\n");
  44. return 0;
  45. }
  46. static int zuma_mbox_do_one_mailbox(unsigned int out, unsigned int *in)
  47. {
  48. int ret;
  49. ret = zuma_mbox_write(&zuma_mbox_dev, out);
  50. /*printf("write 0x%08x (%d bytes)\n", out, ret); */
  51. if (ret != 4)
  52. return -1;
  53. ret = zuma_mbox_read(&zuma_mbox_dev, in);
  54. /*printf("read 0x%08x (%d bytes)\n", *in, ret); */
  55. if (ret != 4)
  56. return -1;
  57. return 0;
  58. }
  59. #define RET_IF_FAILED(x) if ((x) == -1) return -1
  60. static int zuma_mbox_do_all_mailbox(void)
  61. {
  62. unsigned int data_in;
  63. unsigned short sdata_in;
  64. RET_IF_FAILED(zuma_mbox_do_one_mailbox(ZUMA_MBOXMSG_START, &data_in));
  65. RET_IF_FAILED(zuma_mbox_do_one_mailbox(ZUMA_MBOXMSG_MACL, &data_in));
  66. memcpy(zuma_acc_mac + 2, &data_in, 4);
  67. RET_IF_FAILED(zuma_mbox_do_one_mailbox(ZUMA_MBOXMSG_MACH, &data_in));
  68. sdata_in = data_in & 0xffff;
  69. memcpy(zuma_acc_mac, &sdata_in, 2);
  70. RET_IF_FAILED(zuma_mbox_do_one_mailbox(ZUMA_MBOXMSG_IP, &data_in));
  71. zuma_ip = data_in;
  72. RET_IF_FAILED(zuma_mbox_do_one_mailbox(ZUMA_MBOXMSG_SLOT, &data_in));
  73. zuma_slot_bac = data_in >> 3;
  74. RET_IF_FAILED(zuma_mbox_do_one_mailbox(ZUMA_MBOXMSG_BAUD, &data_in));
  75. zuma_console_baud = data_in & 0xffff;
  76. zuma_debug_baud = data_in >> 16;
  77. RET_IF_FAILED(zuma_mbox_do_one_mailbox
  78. (ZUMA_MBOXMSG_ENG_PRV_MACL, &data_in));
  79. memcpy(zuma_prv_mac + 2, &data_in, 4);
  80. RET_IF_FAILED(zuma_mbox_do_one_mailbox
  81. (ZUMA_MBOXMSG_ENG_PRV_MACH, &data_in));
  82. sdata_in = data_in & 0xffff;
  83. memcpy(zuma_prv_mac, &sdata_in, 2);
  84. RET_IF_FAILED(zuma_mbox_do_one_mailbox(ZUMA_MBOXMSG_DONE, &data_in));
  85. return 0;
  86. }
  87. static void zuma_mbox_dump(void)
  88. {
  89. unsigned short s;
  90. unsigned int i;
  91. memcpy(&s, &zuma_acc_mac, sizeof(s));
  92. memcpy(&i, &zuma_acc_mac[2], sizeof(i));
  93. printf("ACC MAC=%04x%08x\n", s, i);
  94. memcpy(&s, &zuma_prv_mac, sizeof(s));
  95. memcpy(&s, &zuma_prv_mac[2], sizeof(i));
  96. printf("PRV MAC=%04x%08x\n", s, i);
  97. printf("slot:bac=%d:%d\n",
  98. (zuma_slot_bac >> 2) & 0xf,
  99. zuma_slot_bac & 0x3);
  100. printf("BAUD1=%d BAUD2=%d\n",
  101. zuma_console_baud,
  102. zuma_debug_baud);
  103. }
  104. static void zuma_mbox_setenv(void)
  105. {
  106. char *data, buf[32];
  107. unsigned char save = 0;
  108. data = getenv("baudrate");
  109. if (!data || (zuma_console_baud != simple_strtoul(data, NULL, 10))) {
  110. sprintf(buf, "%6d", zuma_console_baud);
  111. setenv("baudrate", buf);
  112. save = 1;
  113. printf("baudrate doesn't match from mbox\n");
  114. }
  115. ip_to_string(zuma_ip, buf);
  116. setenv("ipaddr", buf);
  117. sprintf(buf, "%02x:%02x:%02x:%02x:%02x:%02x",
  118. zuma_prv_mac[0],
  119. zuma_prv_mac[1],
  120. zuma_prv_mac[2],
  121. zuma_prv_mac[3], zuma_prv_mac[4], zuma_prv_mac[5]);
  122. setenv("ethaddr", buf);
  123. sprintf(buf, "%02x", zuma_slot_bac);
  124. setenv("bacslot", buf);
  125. if (save)
  126. saveenv();
  127. }
  128. /**
  129. * zuma_mbox_init:
  130. */
  131. int zuma_mbox_init(void)
  132. {
  133. unsigned int iobase;
  134. memset(&zuma_mbox_dev, 0, sizeof(struct _zuma_mbox_dev));
  135. zuma_mbox_dev.dev =
  136. pci_find_device(VENDOR_ID_ZUMA, DEVICE_ID_ZUMA_PBB, 0);
  137. if (zuma_mbox_dev.dev == -1) {
  138. printf("no zuma pbb\n");
  139. return -1;
  140. }
  141. pci_read_config_dword(zuma_mbox_dev.dev, PCI_BASE_ADDRESS_0, &iobase);
  142. iobase &= PCI_BASE_ADDRESS_MEM_MASK;
  143. zuma_mbox_dev.sip = (PBB_DMA_REG_MAP *) iobase;
  144. zuma_mbox_dev.sip->int_mask.word = 0;
  145. printf("pbb @ %p v%d.%d, timestamp %08x\n", zuma_mbox_dev.sip,
  146. zuma_mbox_dev.sip->version.pci_bits.rev_major,
  147. zuma_mbox_dev.sip->version.pci_bits.rev_minor,
  148. zuma_mbox_dev.sip->timestamp);
  149. if (zuma_mbox_do_all_mailbox() == -1) {
  150. printf("mailbox failed.. no ACC?\n");
  151. return -1;
  152. }
  153. zuma_mbox_dump();
  154. zuma_mbox_setenv();
  155. return 0;
  156. }