sbus.c 6.9 KB

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  1. /* sbus.c: SBus support routines.
  2. *
  3. * Copyright (C) 1995, 2006 David S. Miller (davem@davemloft.net)
  4. */
  5. #include <linux/kernel.h>
  6. #include <linux/slab.h>
  7. #include <linux/init.h>
  8. #include <linux/device.h>
  9. #include <asm/system.h>
  10. #include <asm/sbus.h>
  11. #include <asm/dma.h>
  12. #include <asm/oplib.h>
  13. #include <asm/prom.h>
  14. #include <asm/of_device.h>
  15. #include <asm/bpp.h>
  16. #include <asm/irq.h>
  17. static ssize_t
  18. show_sbusobppath_attr(struct device * dev, struct device_attribute * attr, char * buf)
  19. {
  20. struct sbus_dev *sbus;
  21. sbus = to_sbus_device(dev);
  22. return snprintf (buf, PAGE_SIZE, "%s\n", sbus->ofdev.node->full_name);
  23. }
  24. static DEVICE_ATTR(obppath, S_IRUSR | S_IRGRP | S_IROTH, show_sbusobppath_attr, NULL);
  25. struct sbus_bus *sbus_root;
  26. static void __init fill_sbus_device(struct device_node *dp, struct sbus_dev *sdev)
  27. {
  28. unsigned long base;
  29. const void *pval;
  30. int len, err;
  31. sdev->prom_node = dp->node;
  32. strcpy(sdev->prom_name, dp->name);
  33. pval = of_get_property(dp, "reg", &len);
  34. sdev->num_registers = 0;
  35. if (pval) {
  36. memcpy(sdev->reg_addrs, pval, len);
  37. sdev->num_registers =
  38. len / sizeof(struct linux_prom_registers);
  39. base = (unsigned long) sdev->reg_addrs[0].phys_addr;
  40. /* Compute the slot number. */
  41. if (base >= SUN_SBUS_BVADDR && sparc_cpu_model == sun4m)
  42. sdev->slot = sbus_dev_slot(base);
  43. else
  44. sdev->slot = sdev->reg_addrs[0].which_io;
  45. }
  46. pval = of_get_property(dp, "ranges", &len);
  47. sdev->num_device_ranges = 0;
  48. if (pval) {
  49. memcpy(sdev->device_ranges, pval, len);
  50. sdev->num_device_ranges =
  51. len / sizeof(struct linux_prom_ranges);
  52. }
  53. sbus_fill_device_irq(sdev);
  54. sdev->ofdev.node = dp;
  55. if (sdev->parent)
  56. sdev->ofdev.dev.parent = &sdev->parent->ofdev.dev;
  57. else
  58. sdev->ofdev.dev.parent = &sdev->bus->ofdev.dev;
  59. sdev->ofdev.dev.bus = &sbus_bus_type;
  60. sprintf(sdev->ofdev.dev.bus_id, "sbus[%08x]", dp->node);
  61. if (of_device_register(&sdev->ofdev) != 0)
  62. printk(KERN_DEBUG "sbus: device registration error for %s!\n",
  63. dp->path_component_name);
  64. /* WE HAVE BEEN INVADED BY ALIENS! */
  65. err = sysfs_create_file(&sdev->ofdev.dev.kobj, &dev_attr_obppath.attr);
  66. }
  67. static void __init sbus_bus_ranges_init(struct device_node *dp, struct sbus_bus *sbus)
  68. {
  69. const void *pval;
  70. int len;
  71. pval = of_get_property(dp, "ranges", &len);
  72. sbus->num_sbus_ranges = 0;
  73. if (pval) {
  74. memcpy(sbus->sbus_ranges, pval, len);
  75. sbus->num_sbus_ranges =
  76. len / sizeof(struct linux_prom_ranges);
  77. sbus_arch_bus_ranges_init(dp->parent, sbus);
  78. }
  79. }
  80. static void __init __apply_ranges_to_regs(struct linux_prom_ranges *ranges,
  81. int num_ranges,
  82. struct linux_prom_registers *regs,
  83. int num_regs)
  84. {
  85. if (num_ranges) {
  86. int regnum;
  87. for (regnum = 0; regnum < num_regs; regnum++) {
  88. int rngnum;
  89. for (rngnum = 0; rngnum < num_ranges; rngnum++) {
  90. if (regs[regnum].which_io == ranges[rngnum].ot_child_space)
  91. break;
  92. }
  93. if (rngnum == num_ranges) {
  94. /* We used to flag this as an error. Actually
  95. * some devices do not report the regs as we expect.
  96. * For example, see SUNW,pln device. In that case
  97. * the reg property is in a format internal to that
  98. * node, ie. it is not in the SBUS register space
  99. * per se. -DaveM
  100. */
  101. return;
  102. }
  103. regs[regnum].which_io = ranges[rngnum].ot_parent_space;
  104. regs[regnum].phys_addr -= ranges[rngnum].ot_child_base;
  105. regs[regnum].phys_addr += ranges[rngnum].ot_parent_base;
  106. }
  107. }
  108. }
  109. static void __init __fixup_regs_sdev(struct sbus_dev *sdev)
  110. {
  111. if (sdev->num_registers != 0) {
  112. struct sbus_dev *parent = sdev->parent;
  113. int i;
  114. while (parent != NULL) {
  115. __apply_ranges_to_regs(parent->device_ranges,
  116. parent->num_device_ranges,
  117. sdev->reg_addrs,
  118. sdev->num_registers);
  119. parent = parent->parent;
  120. }
  121. __apply_ranges_to_regs(sdev->bus->sbus_ranges,
  122. sdev->bus->num_sbus_ranges,
  123. sdev->reg_addrs,
  124. sdev->num_registers);
  125. for (i = 0; i < sdev->num_registers; i++) {
  126. struct resource *res = &sdev->resource[i];
  127. res->start = sdev->reg_addrs[i].phys_addr;
  128. res->end = (res->start +
  129. (unsigned long)sdev->reg_addrs[i].reg_size - 1UL);
  130. res->flags = IORESOURCE_IO |
  131. (sdev->reg_addrs[i].which_io & 0xff);
  132. }
  133. }
  134. }
  135. static void __init sbus_fixup_all_regs(struct sbus_dev *first_sdev)
  136. {
  137. struct sbus_dev *sdev;
  138. for (sdev = first_sdev; sdev; sdev = sdev->next) {
  139. if (sdev->child)
  140. sbus_fixup_all_regs(sdev->child);
  141. __fixup_regs_sdev(sdev);
  142. }
  143. }
  144. /* We preserve the "probe order" of these bus and device lists to give
  145. * the same ordering as the old code.
  146. */
  147. static void __init sbus_insert(struct sbus_bus *sbus, struct sbus_bus **root)
  148. {
  149. while (*root)
  150. root = &(*root)->next;
  151. *root = sbus;
  152. sbus->next = NULL;
  153. }
  154. static void __init sdev_insert(struct sbus_dev *sdev, struct sbus_dev **root)
  155. {
  156. while (*root)
  157. root = &(*root)->next;
  158. *root = sdev;
  159. sdev->next = NULL;
  160. }
  161. static void __init walk_children(struct device_node *dp, struct sbus_dev *parent, struct sbus_bus *sbus)
  162. {
  163. dp = dp->child;
  164. while (dp) {
  165. struct sbus_dev *sdev;
  166. sdev = kzalloc(sizeof(struct sbus_dev), GFP_ATOMIC);
  167. if (sdev) {
  168. sdev_insert(sdev, &parent->child);
  169. sdev->bus = sbus;
  170. sdev->parent = parent;
  171. fill_sbus_device(dp, sdev);
  172. walk_children(dp, sdev, sbus);
  173. }
  174. dp = dp->sibling;
  175. }
  176. }
  177. static void __init build_one_sbus(struct device_node *dp, int num_sbus)
  178. {
  179. struct sbus_bus *sbus;
  180. unsigned int sbus_clock;
  181. struct device_node *dev_dp;
  182. sbus = kzalloc(sizeof(struct sbus_bus), GFP_ATOMIC);
  183. if (!sbus)
  184. return;
  185. sbus_insert(sbus, &sbus_root);
  186. sbus->prom_node = dp->node;
  187. sbus_setup_iommu(sbus, dp);
  188. printk("sbus%d: ", num_sbus);
  189. sbus_clock = of_getintprop_default(dp, "clock-frequency",
  190. (25*1000*1000));
  191. sbus->clock_freq = sbus_clock;
  192. printk("Clock %d.%d MHz\n", (int) ((sbus_clock/1000)/1000),
  193. (int) (((sbus_clock/1000)%1000 != 0) ?
  194. (((sbus_clock/1000)%1000) + 1000) : 0));
  195. strcpy(sbus->prom_name, dp->name);
  196. sbus_setup_arch_props(sbus, dp);
  197. sbus_bus_ranges_init(dp, sbus);
  198. sbus->ofdev.node = dp;
  199. sbus->ofdev.dev.parent = NULL;
  200. sbus->ofdev.dev.bus = &sbus_bus_type;
  201. sprintf(sbus->ofdev.dev.bus_id, "sbus%d", num_sbus);
  202. if (of_device_register(&sbus->ofdev) != 0)
  203. printk(KERN_DEBUG "sbus: device registration error for %s!\n",
  204. sbus->ofdev.dev.bus_id);
  205. dev_dp = dp->child;
  206. while (dev_dp) {
  207. struct sbus_dev *sdev;
  208. sdev = kzalloc(sizeof(struct sbus_dev), GFP_ATOMIC);
  209. if (sdev) {
  210. sdev_insert(sdev, &sbus->devices);
  211. sdev->bus = sbus;
  212. sdev->parent = NULL;
  213. fill_sbus_device(dev_dp, sdev);
  214. walk_children(dev_dp, sdev, sbus);
  215. }
  216. dev_dp = dev_dp->sibling;
  217. }
  218. sbus_fixup_all_regs(sbus->devices);
  219. dvma_init(sbus);
  220. }
  221. static int __init sbus_init(void)
  222. {
  223. struct device_node *dp;
  224. const char *sbus_name = "sbus";
  225. int num_sbus = 0;
  226. if (sbus_arch_preinit())
  227. return 0;
  228. if (sparc_cpu_model == sun4d)
  229. sbus_name = "sbi";
  230. for_each_node_by_name(dp, sbus_name) {
  231. build_one_sbus(dp, num_sbus);
  232. num_sbus++;
  233. }
  234. sbus_arch_postinit();
  235. return 0;
  236. }
  237. subsys_initcall(sbus_init);