intel_bios.c 12 KB

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  1. /*
  2. * Copyright © 2006 Intel Corporation
  3. *
  4. * Permission is hereby granted, free of charge, to any person obtaining a
  5. * copy of this software and associated documentation files (the "Software"),
  6. * to deal in the Software without restriction, including without limitation
  7. * the rights to use, copy, modify, merge, publish, distribute, sublicense,
  8. * and/or sell copies of the Software, and to permit persons to whom the
  9. * Software is furnished to do so, subject to the following conditions:
  10. *
  11. * The above copyright notice and this permission notice (including the next
  12. * paragraph) shall be included in all copies or substantial portions of the
  13. * Software.
  14. *
  15. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  16. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  17. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
  18. * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  19. * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
  20. * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
  21. * SOFTWARE.
  22. *
  23. * Authors:
  24. * Eric Anholt <eric@anholt.net>
  25. *
  26. */
  27. #include "drmP.h"
  28. #include "drm.h"
  29. #include "i915_drm.h"
  30. #include "i915_drv.h"
  31. #include "intel_bios.h"
  32. #define SLAVE_ADDR1 0x70
  33. #define SLAVE_ADDR2 0x72
  34. static void *
  35. find_section(struct bdb_header *bdb, int section_id)
  36. {
  37. u8 *base = (u8 *)bdb;
  38. int index = 0;
  39. u16 total, current_size;
  40. u8 current_id;
  41. /* skip to first section */
  42. index += bdb->header_size;
  43. total = bdb->bdb_size;
  44. /* walk the sections looking for section_id */
  45. while (index < total) {
  46. current_id = *(base + index);
  47. index++;
  48. current_size = *((u16 *)(base + index));
  49. index += 2;
  50. if (current_id == section_id)
  51. return base + index;
  52. index += current_size;
  53. }
  54. return NULL;
  55. }
  56. static u16
  57. get_blocksize(void *p)
  58. {
  59. u16 *block_ptr, block_size;
  60. block_ptr = (u16 *)((char *)p - 2);
  61. block_size = *block_ptr;
  62. return block_size;
  63. }
  64. static void
  65. fill_detail_timing_data(struct drm_display_mode *panel_fixed_mode,
  66. struct lvds_dvo_timing *dvo_timing)
  67. {
  68. panel_fixed_mode->hdisplay = (dvo_timing->hactive_hi << 8) |
  69. dvo_timing->hactive_lo;
  70. panel_fixed_mode->hsync_start = panel_fixed_mode->hdisplay +
  71. ((dvo_timing->hsync_off_hi << 8) | dvo_timing->hsync_off_lo);
  72. panel_fixed_mode->hsync_end = panel_fixed_mode->hsync_start +
  73. dvo_timing->hsync_pulse_width;
  74. panel_fixed_mode->htotal = panel_fixed_mode->hdisplay +
  75. ((dvo_timing->hblank_hi << 8) | dvo_timing->hblank_lo);
  76. panel_fixed_mode->vdisplay = (dvo_timing->vactive_hi << 8) |
  77. dvo_timing->vactive_lo;
  78. panel_fixed_mode->vsync_start = panel_fixed_mode->vdisplay +
  79. dvo_timing->vsync_off;
  80. panel_fixed_mode->vsync_end = panel_fixed_mode->vsync_start +
  81. dvo_timing->vsync_pulse_width;
  82. panel_fixed_mode->vtotal = panel_fixed_mode->vdisplay +
  83. ((dvo_timing->vblank_hi << 8) | dvo_timing->vblank_lo);
  84. panel_fixed_mode->clock = dvo_timing->clock * 10;
  85. panel_fixed_mode->type = DRM_MODE_TYPE_PREFERRED;
  86. /* Some VBTs have bogus h/vtotal values */
  87. if (panel_fixed_mode->hsync_end > panel_fixed_mode->htotal)
  88. panel_fixed_mode->htotal = panel_fixed_mode->hsync_end + 1;
  89. if (panel_fixed_mode->vsync_end > panel_fixed_mode->vtotal)
  90. panel_fixed_mode->vtotal = panel_fixed_mode->vsync_end + 1;
  91. drm_mode_set_name(panel_fixed_mode);
  92. }
  93. /* Try to find integrated panel data */
  94. static void
  95. parse_lfp_panel_data(struct drm_i915_private *dev_priv,
  96. struct bdb_header *bdb)
  97. {
  98. struct bdb_lvds_options *lvds_options;
  99. struct bdb_lvds_lfp_data *lvds_lfp_data;
  100. struct bdb_lvds_lfp_data_ptrs *lvds_lfp_data_ptrs;
  101. struct bdb_lvds_lfp_data_entry *entry;
  102. struct lvds_dvo_timing *dvo_timing;
  103. struct drm_display_mode *panel_fixed_mode;
  104. int lfp_data_size, dvo_timing_offset;
  105. /* Defaults if we can't find VBT info */
  106. dev_priv->lvds_dither = 0;
  107. dev_priv->lvds_vbt = 0;
  108. lvds_options = find_section(bdb, BDB_LVDS_OPTIONS);
  109. if (!lvds_options)
  110. return;
  111. dev_priv->lvds_dither = lvds_options->pixel_dither;
  112. if (lvds_options->panel_type == 0xff)
  113. return;
  114. lvds_lfp_data = find_section(bdb, BDB_LVDS_LFP_DATA);
  115. if (!lvds_lfp_data)
  116. return;
  117. lvds_lfp_data_ptrs = find_section(bdb, BDB_LVDS_LFP_DATA_PTRS);
  118. if (!lvds_lfp_data_ptrs)
  119. return;
  120. dev_priv->lvds_vbt = 1;
  121. lfp_data_size = lvds_lfp_data_ptrs->ptr[1].dvo_timing_offset -
  122. lvds_lfp_data_ptrs->ptr[0].dvo_timing_offset;
  123. entry = (struct bdb_lvds_lfp_data_entry *)
  124. ((uint8_t *)lvds_lfp_data->data + (lfp_data_size *
  125. lvds_options->panel_type));
  126. dvo_timing_offset = lvds_lfp_data_ptrs->ptr[0].dvo_timing_offset -
  127. lvds_lfp_data_ptrs->ptr[0].fp_timing_offset;
  128. /*
  129. * the size of fp_timing varies on the different platform.
  130. * So calculate the DVO timing relative offset in LVDS data
  131. * entry to get the DVO timing entry
  132. */
  133. dvo_timing = (struct lvds_dvo_timing *)
  134. ((unsigned char *)entry + dvo_timing_offset);
  135. panel_fixed_mode = kzalloc(sizeof(*panel_fixed_mode), GFP_KERNEL);
  136. fill_detail_timing_data(panel_fixed_mode, dvo_timing);
  137. dev_priv->lfp_lvds_vbt_mode = panel_fixed_mode;
  138. DRM_DEBUG("Found panel mode in BIOS VBT tables:\n");
  139. drm_mode_debug_printmodeline(panel_fixed_mode);
  140. return;
  141. }
  142. /* Try to find sdvo panel data */
  143. static void
  144. parse_sdvo_panel_data(struct drm_i915_private *dev_priv,
  145. struct bdb_header *bdb)
  146. {
  147. struct bdb_sdvo_lvds_options *sdvo_lvds_options;
  148. struct lvds_dvo_timing *dvo_timing;
  149. struct drm_display_mode *panel_fixed_mode;
  150. dev_priv->sdvo_lvds_vbt_mode = NULL;
  151. sdvo_lvds_options = find_section(bdb, BDB_SDVO_LVDS_OPTIONS);
  152. if (!sdvo_lvds_options)
  153. return;
  154. dvo_timing = find_section(bdb, BDB_SDVO_PANEL_DTDS);
  155. if (!dvo_timing)
  156. return;
  157. panel_fixed_mode = kzalloc(sizeof(*panel_fixed_mode), GFP_KERNEL);
  158. if (!panel_fixed_mode)
  159. return;
  160. fill_detail_timing_data(panel_fixed_mode,
  161. dvo_timing + sdvo_lvds_options->panel_type);
  162. dev_priv->sdvo_lvds_vbt_mode = panel_fixed_mode;
  163. return;
  164. }
  165. static void
  166. parse_general_features(struct drm_i915_private *dev_priv,
  167. struct bdb_header *bdb)
  168. {
  169. struct bdb_general_features *general;
  170. /* Set sensible defaults in case we can't find the general block */
  171. dev_priv->int_tv_support = 1;
  172. dev_priv->int_crt_support = 1;
  173. general = find_section(bdb, BDB_GENERAL_FEATURES);
  174. if (general) {
  175. dev_priv->int_tv_support = general->int_tv_support;
  176. dev_priv->int_crt_support = general->int_crt_support;
  177. dev_priv->lvds_use_ssc = general->enable_ssc;
  178. if (dev_priv->lvds_use_ssc) {
  179. if (IS_I85X(dev_priv->dev))
  180. dev_priv->lvds_ssc_freq =
  181. general->ssc_freq ? 66 : 48;
  182. else
  183. dev_priv->lvds_ssc_freq =
  184. general->ssc_freq ? 100 : 96;
  185. }
  186. }
  187. }
  188. static void
  189. parse_general_definitions(struct drm_i915_private *dev_priv,
  190. struct bdb_header *bdb)
  191. {
  192. struct bdb_general_definitions *general;
  193. const int crt_bus_map_table[] = {
  194. GPIOB,
  195. GPIOA,
  196. GPIOC,
  197. GPIOD,
  198. GPIOE,
  199. GPIOF,
  200. };
  201. /* Set sensible defaults in case we can't find the general block
  202. or it is the wrong chipset */
  203. dev_priv->crt_ddc_bus = -1;
  204. general = find_section(bdb, BDB_GENERAL_DEFINITIONS);
  205. if (general) {
  206. u16 block_size = get_blocksize(general);
  207. if (block_size >= sizeof(*general)) {
  208. int bus_pin = general->crt_ddc_gmbus_pin;
  209. DRM_DEBUG("crt_ddc_bus_pin: %d\n", bus_pin);
  210. if ((bus_pin >= 1) && (bus_pin <= 6)) {
  211. dev_priv->crt_ddc_bus =
  212. crt_bus_map_table[bus_pin-1];
  213. }
  214. } else {
  215. DRM_DEBUG("BDB_GD too small (%d). Invalid.\n",
  216. block_size);
  217. }
  218. }
  219. }
  220. static void
  221. parse_sdvo_device_mapping(struct drm_i915_private *dev_priv,
  222. struct bdb_header *bdb)
  223. {
  224. struct sdvo_device_mapping *p_mapping;
  225. struct bdb_general_definitions *p_defs;
  226. struct child_device_config *p_child;
  227. int i, child_device_num, count;
  228. u16 block_size;
  229. p_defs = find_section(bdb, BDB_GENERAL_DEFINITIONS);
  230. if (!p_defs) {
  231. DRM_DEBUG("No general definition block is found\n");
  232. return;
  233. }
  234. /* judge whether the size of child device meets the requirements.
  235. * If the child device size obtained from general definition block
  236. * is different with sizeof(struct child_device_config), skip the
  237. * parsing of sdvo device info
  238. */
  239. if (p_defs->child_dev_size != sizeof(*p_child)) {
  240. /* different child dev size . Ignore it */
  241. DRM_DEBUG("different child size is found. Invalid.\n");
  242. return;
  243. }
  244. /* get the block size of general definitions */
  245. block_size = get_blocksize(p_defs);
  246. /* get the number of child device */
  247. child_device_num = (block_size - sizeof(*p_defs)) /
  248. sizeof(*p_child);
  249. count = 0;
  250. for (i = 0; i < child_device_num; i++) {
  251. p_child = &(p_defs->devices[i]);
  252. if (!p_child->device_type) {
  253. /* skip the device block if device type is invalid */
  254. continue;
  255. }
  256. if (p_child->slave_addr != SLAVE_ADDR1 &&
  257. p_child->slave_addr != SLAVE_ADDR2) {
  258. /*
  259. * If the slave address is neither 0x70 nor 0x72,
  260. * it is not a SDVO device. Skip it.
  261. */
  262. continue;
  263. }
  264. if (p_child->dvo_port != DEVICE_PORT_DVOB &&
  265. p_child->dvo_port != DEVICE_PORT_DVOC) {
  266. /* skip the incorrect SDVO port */
  267. DRM_DEBUG("Incorrect SDVO port. Skip it \n");
  268. continue;
  269. }
  270. DRM_DEBUG("the SDVO device with slave addr %2x is found on "
  271. "%s port\n",
  272. p_child->slave_addr,
  273. (p_child->dvo_port == DEVICE_PORT_DVOB) ?
  274. "SDVOB" : "SDVOC");
  275. p_mapping = &(dev_priv->sdvo_mappings[p_child->dvo_port - 1]);
  276. if (!p_mapping->initialized) {
  277. p_mapping->dvo_port = p_child->dvo_port;
  278. p_mapping->slave_addr = p_child->slave_addr;
  279. p_mapping->dvo_wiring = p_child->dvo_wiring;
  280. p_mapping->initialized = 1;
  281. } else {
  282. DRM_DEBUG("Maybe one SDVO port is shared by "
  283. "two SDVO device.\n");
  284. }
  285. if (p_child->slave2_addr) {
  286. /* Maybe this is a SDVO device with multiple inputs */
  287. /* And the mapping info is not added */
  288. DRM_DEBUG("there exists the slave2_addr. Maybe this "
  289. "is a SDVO device with multiple inputs.\n");
  290. }
  291. count++;
  292. }
  293. if (!count) {
  294. /* No SDVO device info is found */
  295. DRM_DEBUG("No SDVO device info is found in VBT\n");
  296. }
  297. return;
  298. }
  299. static void
  300. parse_driver_features(struct drm_i915_private *dev_priv,
  301. struct bdb_header *bdb)
  302. {
  303. struct drm_device *dev = dev_priv->dev;
  304. struct bdb_driver_features *driver;
  305. /* set default for chips without eDP */
  306. if (!SUPPORTS_EDP(dev)) {
  307. dev_priv->edp_support = 0;
  308. return;
  309. }
  310. driver = find_section(bdb, BDB_DRIVER_FEATURES);
  311. if (!driver)
  312. return;
  313. if (driver->lvds_config == BDB_DRIVER_FEATURE_EDP)
  314. dev_priv->edp_support = 1;
  315. if (driver->dual_frequency)
  316. dev_priv->render_reclock_avail = true;
  317. }
  318. /**
  319. * intel_init_bios - initialize VBIOS settings & find VBT
  320. * @dev: DRM device
  321. *
  322. * Loads the Video BIOS and checks that the VBT exists. Sets scratch registers
  323. * to appropriate values.
  324. *
  325. * VBT existence is a sanity check that is relied on by other i830_bios.c code.
  326. * Note that it would be better to use a BIOS call to get the VBT, as BIOSes may
  327. * feed an updated VBT back through that, compared to what we'll fetch using
  328. * this method of groping around in the BIOS data.
  329. *
  330. * Returns 0 on success, nonzero on failure.
  331. */
  332. bool
  333. intel_init_bios(struct drm_device *dev)
  334. {
  335. struct drm_i915_private *dev_priv = dev->dev_private;
  336. struct pci_dev *pdev = dev->pdev;
  337. struct vbt_header *vbt = NULL;
  338. struct bdb_header *bdb;
  339. u8 __iomem *bios;
  340. size_t size;
  341. int i;
  342. bios = pci_map_rom(pdev, &size);
  343. if (!bios)
  344. return -1;
  345. /* Scour memory looking for the VBT signature */
  346. for (i = 0; i + 4 < size; i++) {
  347. if (!memcmp(bios + i, "$VBT", 4)) {
  348. vbt = (struct vbt_header *)(bios + i);
  349. break;
  350. }
  351. }
  352. if (!vbt) {
  353. DRM_ERROR("VBT signature missing\n");
  354. pci_unmap_rom(pdev, bios);
  355. return -1;
  356. }
  357. bdb = (struct bdb_header *)(bios + i + vbt->bdb_offset);
  358. /* Grab useful general definitions */
  359. parse_general_features(dev_priv, bdb);
  360. parse_general_definitions(dev_priv, bdb);
  361. parse_lfp_panel_data(dev_priv, bdb);
  362. parse_sdvo_panel_data(dev_priv, bdb);
  363. parse_sdvo_device_mapping(dev_priv, bdb);
  364. parse_driver_features(dev_priv, bdb);
  365. pci_unmap_rom(pdev, bios);
  366. return 0;
  367. }