amdgpu_device.c 74 KB

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  1. /*
  2. * Copyright 2008 Advanced Micro Devices, Inc.
  3. * Copyright 2008 Red Hat Inc.
  4. * Copyright 2009 Jerome Glisse.
  5. *
  6. * Permission is hereby granted, free of charge, to any person obtaining a
  7. * copy of this software and associated documentation files (the "Software"),
  8. * to deal in the Software without restriction, including without limitation
  9. * the rights to use, copy, modify, merge, publish, distribute, sublicense,
  10. * and/or sell copies of the Software, and to permit persons to whom the
  11. * Software is furnished to do so, subject to the following conditions:
  12. *
  13. * The above copyright notice and this permission notice shall be included in
  14. * all copies or substantial portions of the Software.
  15. *
  16. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  17. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  18. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
  19. * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
  20. * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
  21. * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
  22. * OTHER DEALINGS IN THE SOFTWARE.
  23. *
  24. * Authors: Dave Airlie
  25. * Alex Deucher
  26. * Jerome Glisse
  27. */
  28. #include <linux/kthread.h>
  29. #include <linux/console.h>
  30. #include <linux/slab.h>
  31. #include <linux/debugfs.h>
  32. #include <drm/drmP.h>
  33. #include <drm/drm_crtc_helper.h>
  34. #include <drm/amdgpu_drm.h>
  35. #include <linux/vgaarb.h>
  36. #include <linux/vga_switcheroo.h>
  37. #include <linux/efi.h>
  38. #include "amdgpu.h"
  39. #include "amdgpu_trace.h"
  40. #include "amdgpu_i2c.h"
  41. #include "atom.h"
  42. #include "amdgpu_atombios.h"
  43. #include "amd_pcie.h"
  44. #ifdef CONFIG_DRM_AMDGPU_SI
  45. #include "si.h"
  46. #endif
  47. #ifdef CONFIG_DRM_AMDGPU_CIK
  48. #include "cik.h"
  49. #endif
  50. #include "vi.h"
  51. #include "bif/bif_4_1_d.h"
  52. #include <linux/pci.h>
  53. #include <linux/firmware.h>
  54. static int amdgpu_debugfs_regs_init(struct amdgpu_device *adev);
  55. static void amdgpu_debugfs_regs_cleanup(struct amdgpu_device *adev);
  56. static const char *amdgpu_asic_name[] = {
  57. "TAHITI",
  58. "PITCAIRN",
  59. "VERDE",
  60. "OLAND",
  61. "HAINAN",
  62. "BONAIRE",
  63. "KAVERI",
  64. "KABINI",
  65. "HAWAII",
  66. "MULLINS",
  67. "TOPAZ",
  68. "TONGA",
  69. "FIJI",
  70. "CARRIZO",
  71. "STONEY",
  72. "POLARIS10",
  73. "POLARIS11",
  74. "LAST",
  75. };
  76. bool amdgpu_device_is_px(struct drm_device *dev)
  77. {
  78. struct amdgpu_device *adev = dev->dev_private;
  79. if (adev->flags & AMD_IS_PX)
  80. return true;
  81. return false;
  82. }
  83. /*
  84. * MMIO register access helper functions.
  85. */
  86. uint32_t amdgpu_mm_rreg(struct amdgpu_device *adev, uint32_t reg,
  87. bool always_indirect)
  88. {
  89. uint32_t ret;
  90. if ((reg * 4) < adev->rmmio_size && !always_indirect)
  91. ret = readl(((void __iomem *)adev->rmmio) + (reg * 4));
  92. else {
  93. unsigned long flags;
  94. spin_lock_irqsave(&adev->mmio_idx_lock, flags);
  95. writel((reg * 4), ((void __iomem *)adev->rmmio) + (mmMM_INDEX * 4));
  96. ret = readl(((void __iomem *)adev->rmmio) + (mmMM_DATA * 4));
  97. spin_unlock_irqrestore(&adev->mmio_idx_lock, flags);
  98. }
  99. trace_amdgpu_mm_rreg(adev->pdev->device, reg, ret);
  100. return ret;
  101. }
  102. void amdgpu_mm_wreg(struct amdgpu_device *adev, uint32_t reg, uint32_t v,
  103. bool always_indirect)
  104. {
  105. trace_amdgpu_mm_wreg(adev->pdev->device, reg, v);
  106. if ((reg * 4) < adev->rmmio_size && !always_indirect)
  107. writel(v, ((void __iomem *)adev->rmmio) + (reg * 4));
  108. else {
  109. unsigned long flags;
  110. spin_lock_irqsave(&adev->mmio_idx_lock, flags);
  111. writel((reg * 4), ((void __iomem *)adev->rmmio) + (mmMM_INDEX * 4));
  112. writel(v, ((void __iomem *)adev->rmmio) + (mmMM_DATA * 4));
  113. spin_unlock_irqrestore(&adev->mmio_idx_lock, flags);
  114. }
  115. }
  116. u32 amdgpu_io_rreg(struct amdgpu_device *adev, u32 reg)
  117. {
  118. if ((reg * 4) < adev->rio_mem_size)
  119. return ioread32(adev->rio_mem + (reg * 4));
  120. else {
  121. iowrite32((reg * 4), adev->rio_mem + (mmMM_INDEX * 4));
  122. return ioread32(adev->rio_mem + (mmMM_DATA * 4));
  123. }
  124. }
  125. void amdgpu_io_wreg(struct amdgpu_device *adev, u32 reg, u32 v)
  126. {
  127. if ((reg * 4) < adev->rio_mem_size)
  128. iowrite32(v, adev->rio_mem + (reg * 4));
  129. else {
  130. iowrite32((reg * 4), adev->rio_mem + (mmMM_INDEX * 4));
  131. iowrite32(v, adev->rio_mem + (mmMM_DATA * 4));
  132. }
  133. }
  134. /**
  135. * amdgpu_mm_rdoorbell - read a doorbell dword
  136. *
  137. * @adev: amdgpu_device pointer
  138. * @index: doorbell index
  139. *
  140. * Returns the value in the doorbell aperture at the
  141. * requested doorbell index (CIK).
  142. */
  143. u32 amdgpu_mm_rdoorbell(struct amdgpu_device *adev, u32 index)
  144. {
  145. if (index < adev->doorbell.num_doorbells) {
  146. return readl(adev->doorbell.ptr + index);
  147. } else {
  148. DRM_ERROR("reading beyond doorbell aperture: 0x%08x!\n", index);
  149. return 0;
  150. }
  151. }
  152. /**
  153. * amdgpu_mm_wdoorbell - write a doorbell dword
  154. *
  155. * @adev: amdgpu_device pointer
  156. * @index: doorbell index
  157. * @v: value to write
  158. *
  159. * Writes @v to the doorbell aperture at the
  160. * requested doorbell index (CIK).
  161. */
  162. void amdgpu_mm_wdoorbell(struct amdgpu_device *adev, u32 index, u32 v)
  163. {
  164. if (index < adev->doorbell.num_doorbells) {
  165. writel(v, adev->doorbell.ptr + index);
  166. } else {
  167. DRM_ERROR("writing beyond doorbell aperture: 0x%08x!\n", index);
  168. }
  169. }
  170. /**
  171. * amdgpu_invalid_rreg - dummy reg read function
  172. *
  173. * @adev: amdgpu device pointer
  174. * @reg: offset of register
  175. *
  176. * Dummy register read function. Used for register blocks
  177. * that certain asics don't have (all asics).
  178. * Returns the value in the register.
  179. */
  180. static uint32_t amdgpu_invalid_rreg(struct amdgpu_device *adev, uint32_t reg)
  181. {
  182. DRM_ERROR("Invalid callback to read register 0x%04X\n", reg);
  183. BUG();
  184. return 0;
  185. }
  186. /**
  187. * amdgpu_invalid_wreg - dummy reg write function
  188. *
  189. * @adev: amdgpu device pointer
  190. * @reg: offset of register
  191. * @v: value to write to the register
  192. *
  193. * Dummy register read function. Used for register blocks
  194. * that certain asics don't have (all asics).
  195. */
  196. static void amdgpu_invalid_wreg(struct amdgpu_device *adev, uint32_t reg, uint32_t v)
  197. {
  198. DRM_ERROR("Invalid callback to write register 0x%04X with 0x%08X\n",
  199. reg, v);
  200. BUG();
  201. }
  202. /**
  203. * amdgpu_block_invalid_rreg - dummy reg read function
  204. *
  205. * @adev: amdgpu device pointer
  206. * @block: offset of instance
  207. * @reg: offset of register
  208. *
  209. * Dummy register read function. Used for register blocks
  210. * that certain asics don't have (all asics).
  211. * Returns the value in the register.
  212. */
  213. static uint32_t amdgpu_block_invalid_rreg(struct amdgpu_device *adev,
  214. uint32_t block, uint32_t reg)
  215. {
  216. DRM_ERROR("Invalid callback to read register 0x%04X in block 0x%04X\n",
  217. reg, block);
  218. BUG();
  219. return 0;
  220. }
  221. /**
  222. * amdgpu_block_invalid_wreg - dummy reg write function
  223. *
  224. * @adev: amdgpu device pointer
  225. * @block: offset of instance
  226. * @reg: offset of register
  227. * @v: value to write to the register
  228. *
  229. * Dummy register read function. Used for register blocks
  230. * that certain asics don't have (all asics).
  231. */
  232. static void amdgpu_block_invalid_wreg(struct amdgpu_device *adev,
  233. uint32_t block,
  234. uint32_t reg, uint32_t v)
  235. {
  236. DRM_ERROR("Invalid block callback to write register 0x%04X in block 0x%04X with 0x%08X\n",
  237. reg, block, v);
  238. BUG();
  239. }
  240. static int amdgpu_vram_scratch_init(struct amdgpu_device *adev)
  241. {
  242. int r;
  243. if (adev->vram_scratch.robj == NULL) {
  244. r = amdgpu_bo_create(adev, AMDGPU_GPU_PAGE_SIZE,
  245. PAGE_SIZE, true, AMDGPU_GEM_DOMAIN_VRAM,
  246. AMDGPU_GEM_CREATE_CPU_ACCESS_REQUIRED,
  247. NULL, NULL, &adev->vram_scratch.robj);
  248. if (r) {
  249. return r;
  250. }
  251. }
  252. r = amdgpu_bo_reserve(adev->vram_scratch.robj, false);
  253. if (unlikely(r != 0))
  254. return r;
  255. r = amdgpu_bo_pin(adev->vram_scratch.robj,
  256. AMDGPU_GEM_DOMAIN_VRAM, &adev->vram_scratch.gpu_addr);
  257. if (r) {
  258. amdgpu_bo_unreserve(adev->vram_scratch.robj);
  259. return r;
  260. }
  261. r = amdgpu_bo_kmap(adev->vram_scratch.robj,
  262. (void **)&adev->vram_scratch.ptr);
  263. if (r)
  264. amdgpu_bo_unpin(adev->vram_scratch.robj);
  265. amdgpu_bo_unreserve(adev->vram_scratch.robj);
  266. return r;
  267. }
  268. static void amdgpu_vram_scratch_fini(struct amdgpu_device *adev)
  269. {
  270. int r;
  271. if (adev->vram_scratch.robj == NULL) {
  272. return;
  273. }
  274. r = amdgpu_bo_reserve(adev->vram_scratch.robj, false);
  275. if (likely(r == 0)) {
  276. amdgpu_bo_kunmap(adev->vram_scratch.robj);
  277. amdgpu_bo_unpin(adev->vram_scratch.robj);
  278. amdgpu_bo_unreserve(adev->vram_scratch.robj);
  279. }
  280. amdgpu_bo_unref(&adev->vram_scratch.robj);
  281. }
  282. /**
  283. * amdgpu_program_register_sequence - program an array of registers.
  284. *
  285. * @adev: amdgpu_device pointer
  286. * @registers: pointer to the register array
  287. * @array_size: size of the register array
  288. *
  289. * Programs an array or registers with and and or masks.
  290. * This is a helper for setting golden registers.
  291. */
  292. void amdgpu_program_register_sequence(struct amdgpu_device *adev,
  293. const u32 *registers,
  294. const u32 array_size)
  295. {
  296. u32 tmp, reg, and_mask, or_mask;
  297. int i;
  298. if (array_size % 3)
  299. return;
  300. for (i = 0; i < array_size; i +=3) {
  301. reg = registers[i + 0];
  302. and_mask = registers[i + 1];
  303. or_mask = registers[i + 2];
  304. if (and_mask == 0xffffffff) {
  305. tmp = or_mask;
  306. } else {
  307. tmp = RREG32(reg);
  308. tmp &= ~and_mask;
  309. tmp |= or_mask;
  310. }
  311. WREG32(reg, tmp);
  312. }
  313. }
  314. void amdgpu_pci_config_reset(struct amdgpu_device *adev)
  315. {
  316. pci_write_config_dword(adev->pdev, 0x7c, AMDGPU_ASIC_RESET_DATA);
  317. }
  318. /*
  319. * GPU doorbell aperture helpers function.
  320. */
  321. /**
  322. * amdgpu_doorbell_init - Init doorbell driver information.
  323. *
  324. * @adev: amdgpu_device pointer
  325. *
  326. * Init doorbell driver information (CIK)
  327. * Returns 0 on success, error on failure.
  328. */
  329. static int amdgpu_doorbell_init(struct amdgpu_device *adev)
  330. {
  331. /* doorbell bar mapping */
  332. adev->doorbell.base = pci_resource_start(adev->pdev, 2);
  333. adev->doorbell.size = pci_resource_len(adev->pdev, 2);
  334. adev->doorbell.num_doorbells = min_t(u32, adev->doorbell.size / sizeof(u32),
  335. AMDGPU_DOORBELL_MAX_ASSIGNMENT+1);
  336. if (adev->doorbell.num_doorbells == 0)
  337. return -EINVAL;
  338. adev->doorbell.ptr = ioremap(adev->doorbell.base, adev->doorbell.num_doorbells * sizeof(u32));
  339. if (adev->doorbell.ptr == NULL) {
  340. return -ENOMEM;
  341. }
  342. DRM_INFO("doorbell mmio base: 0x%08X\n", (uint32_t)adev->doorbell.base);
  343. DRM_INFO("doorbell mmio size: %u\n", (unsigned)adev->doorbell.size);
  344. return 0;
  345. }
  346. /**
  347. * amdgpu_doorbell_fini - Tear down doorbell driver information.
  348. *
  349. * @adev: amdgpu_device pointer
  350. *
  351. * Tear down doorbell driver information (CIK)
  352. */
  353. static void amdgpu_doorbell_fini(struct amdgpu_device *adev)
  354. {
  355. iounmap(adev->doorbell.ptr);
  356. adev->doorbell.ptr = NULL;
  357. }
  358. /**
  359. * amdgpu_doorbell_get_kfd_info - Report doorbell configuration required to
  360. * setup amdkfd
  361. *
  362. * @adev: amdgpu_device pointer
  363. * @aperture_base: output returning doorbell aperture base physical address
  364. * @aperture_size: output returning doorbell aperture size in bytes
  365. * @start_offset: output returning # of doorbell bytes reserved for amdgpu.
  366. *
  367. * amdgpu and amdkfd share the doorbell aperture. amdgpu sets it up,
  368. * takes doorbells required for its own rings and reports the setup to amdkfd.
  369. * amdgpu reserved doorbells are at the start of the doorbell aperture.
  370. */
  371. void amdgpu_doorbell_get_kfd_info(struct amdgpu_device *adev,
  372. phys_addr_t *aperture_base,
  373. size_t *aperture_size,
  374. size_t *start_offset)
  375. {
  376. /*
  377. * The first num_doorbells are used by amdgpu.
  378. * amdkfd takes whatever's left in the aperture.
  379. */
  380. if (adev->doorbell.size > adev->doorbell.num_doorbells * sizeof(u32)) {
  381. *aperture_base = adev->doorbell.base;
  382. *aperture_size = adev->doorbell.size;
  383. *start_offset = adev->doorbell.num_doorbells * sizeof(u32);
  384. } else {
  385. *aperture_base = 0;
  386. *aperture_size = 0;
  387. *start_offset = 0;
  388. }
  389. }
  390. /*
  391. * amdgpu_wb_*()
  392. * Writeback is the the method by which the the GPU updates special pages
  393. * in memory with the status of certain GPU events (fences, ring pointers,
  394. * etc.).
  395. */
  396. /**
  397. * amdgpu_wb_fini - Disable Writeback and free memory
  398. *
  399. * @adev: amdgpu_device pointer
  400. *
  401. * Disables Writeback and frees the Writeback memory (all asics).
  402. * Used at driver shutdown.
  403. */
  404. static void amdgpu_wb_fini(struct amdgpu_device *adev)
  405. {
  406. if (adev->wb.wb_obj) {
  407. if (!amdgpu_bo_reserve(adev->wb.wb_obj, false)) {
  408. amdgpu_bo_kunmap(adev->wb.wb_obj);
  409. amdgpu_bo_unpin(adev->wb.wb_obj);
  410. amdgpu_bo_unreserve(adev->wb.wb_obj);
  411. }
  412. amdgpu_bo_unref(&adev->wb.wb_obj);
  413. adev->wb.wb = NULL;
  414. adev->wb.wb_obj = NULL;
  415. }
  416. }
  417. /**
  418. * amdgpu_wb_init- Init Writeback driver info and allocate memory
  419. *
  420. * @adev: amdgpu_device pointer
  421. *
  422. * Disables Writeback and frees the Writeback memory (all asics).
  423. * Used at driver startup.
  424. * Returns 0 on success or an -error on failure.
  425. */
  426. static int amdgpu_wb_init(struct amdgpu_device *adev)
  427. {
  428. int r;
  429. if (adev->wb.wb_obj == NULL) {
  430. r = amdgpu_bo_create(adev, AMDGPU_MAX_WB * 4, PAGE_SIZE, true,
  431. AMDGPU_GEM_DOMAIN_GTT, 0, NULL, NULL,
  432. &adev->wb.wb_obj);
  433. if (r) {
  434. dev_warn(adev->dev, "(%d) create WB bo failed\n", r);
  435. return r;
  436. }
  437. r = amdgpu_bo_reserve(adev->wb.wb_obj, false);
  438. if (unlikely(r != 0)) {
  439. amdgpu_wb_fini(adev);
  440. return r;
  441. }
  442. r = amdgpu_bo_pin(adev->wb.wb_obj, AMDGPU_GEM_DOMAIN_GTT,
  443. &adev->wb.gpu_addr);
  444. if (r) {
  445. amdgpu_bo_unreserve(adev->wb.wb_obj);
  446. dev_warn(adev->dev, "(%d) pin WB bo failed\n", r);
  447. amdgpu_wb_fini(adev);
  448. return r;
  449. }
  450. r = amdgpu_bo_kmap(adev->wb.wb_obj, (void **)&adev->wb.wb);
  451. amdgpu_bo_unreserve(adev->wb.wb_obj);
  452. if (r) {
  453. dev_warn(adev->dev, "(%d) map WB bo failed\n", r);
  454. amdgpu_wb_fini(adev);
  455. return r;
  456. }
  457. adev->wb.num_wb = AMDGPU_MAX_WB;
  458. memset(&adev->wb.used, 0, sizeof(adev->wb.used));
  459. /* clear wb memory */
  460. memset((char *)adev->wb.wb, 0, AMDGPU_GPU_PAGE_SIZE);
  461. }
  462. return 0;
  463. }
  464. /**
  465. * amdgpu_wb_get - Allocate a wb entry
  466. *
  467. * @adev: amdgpu_device pointer
  468. * @wb: wb index
  469. *
  470. * Allocate a wb slot for use by the driver (all asics).
  471. * Returns 0 on success or -EINVAL on failure.
  472. */
  473. int amdgpu_wb_get(struct amdgpu_device *adev, u32 *wb)
  474. {
  475. unsigned long offset = find_first_zero_bit(adev->wb.used, adev->wb.num_wb);
  476. if (offset < adev->wb.num_wb) {
  477. __set_bit(offset, adev->wb.used);
  478. *wb = offset;
  479. return 0;
  480. } else {
  481. return -EINVAL;
  482. }
  483. }
  484. /**
  485. * amdgpu_wb_free - Free a wb entry
  486. *
  487. * @adev: amdgpu_device pointer
  488. * @wb: wb index
  489. *
  490. * Free a wb slot allocated for use by the driver (all asics)
  491. */
  492. void amdgpu_wb_free(struct amdgpu_device *adev, u32 wb)
  493. {
  494. if (wb < adev->wb.num_wb)
  495. __clear_bit(wb, adev->wb.used);
  496. }
  497. /**
  498. * amdgpu_vram_location - try to find VRAM location
  499. * @adev: amdgpu device structure holding all necessary informations
  500. * @mc: memory controller structure holding memory informations
  501. * @base: base address at which to put VRAM
  502. *
  503. * Function will place try to place VRAM at base address provided
  504. * as parameter (which is so far either PCI aperture address or
  505. * for IGP TOM base address).
  506. *
  507. * If there is not enough space to fit the unvisible VRAM in the 32bits
  508. * address space then we limit the VRAM size to the aperture.
  509. *
  510. * Note: We don't explicitly enforce VRAM start to be aligned on VRAM size,
  511. * this shouldn't be a problem as we are using the PCI aperture as a reference.
  512. * Otherwise this would be needed for rv280, all r3xx, and all r4xx, but
  513. * not IGP.
  514. *
  515. * Note: we use mc_vram_size as on some board we need to program the mc to
  516. * cover the whole aperture even if VRAM size is inferior to aperture size
  517. * Novell bug 204882 + along with lots of ubuntu ones
  518. *
  519. * Note: when limiting vram it's safe to overwritte real_vram_size because
  520. * we are not in case where real_vram_size is inferior to mc_vram_size (ie
  521. * note afected by bogus hw of Novell bug 204882 + along with lots of ubuntu
  522. * ones)
  523. *
  524. * Note: IGP TOM addr should be the same as the aperture addr, we don't
  525. * explicitly check for that thought.
  526. *
  527. * FIXME: when reducing VRAM size align new size on power of 2.
  528. */
  529. void amdgpu_vram_location(struct amdgpu_device *adev, struct amdgpu_mc *mc, u64 base)
  530. {
  531. uint64_t limit = (uint64_t)amdgpu_vram_limit << 20;
  532. mc->vram_start = base;
  533. if (mc->mc_vram_size > (adev->mc.mc_mask - base + 1)) {
  534. dev_warn(adev->dev, "limiting VRAM to PCI aperture size\n");
  535. mc->real_vram_size = mc->aper_size;
  536. mc->mc_vram_size = mc->aper_size;
  537. }
  538. mc->vram_end = mc->vram_start + mc->mc_vram_size - 1;
  539. if (limit && limit < mc->real_vram_size)
  540. mc->real_vram_size = limit;
  541. dev_info(adev->dev, "VRAM: %lluM 0x%016llX - 0x%016llX (%lluM used)\n",
  542. mc->mc_vram_size >> 20, mc->vram_start,
  543. mc->vram_end, mc->real_vram_size >> 20);
  544. }
  545. /**
  546. * amdgpu_gtt_location - try to find GTT location
  547. * @adev: amdgpu device structure holding all necessary informations
  548. * @mc: memory controller structure holding memory informations
  549. *
  550. * Function will place try to place GTT before or after VRAM.
  551. *
  552. * If GTT size is bigger than space left then we ajust GTT size.
  553. * Thus function will never fails.
  554. *
  555. * FIXME: when reducing GTT size align new size on power of 2.
  556. */
  557. void amdgpu_gtt_location(struct amdgpu_device *adev, struct amdgpu_mc *mc)
  558. {
  559. u64 size_af, size_bf;
  560. size_af = ((adev->mc.mc_mask - mc->vram_end) + mc->gtt_base_align) & ~mc->gtt_base_align;
  561. size_bf = mc->vram_start & ~mc->gtt_base_align;
  562. if (size_bf > size_af) {
  563. if (mc->gtt_size > size_bf) {
  564. dev_warn(adev->dev, "limiting GTT\n");
  565. mc->gtt_size = size_bf;
  566. }
  567. mc->gtt_start = (mc->vram_start & ~mc->gtt_base_align) - mc->gtt_size;
  568. } else {
  569. if (mc->gtt_size > size_af) {
  570. dev_warn(adev->dev, "limiting GTT\n");
  571. mc->gtt_size = size_af;
  572. }
  573. mc->gtt_start = (mc->vram_end + 1 + mc->gtt_base_align) & ~mc->gtt_base_align;
  574. }
  575. mc->gtt_end = mc->gtt_start + mc->gtt_size - 1;
  576. dev_info(adev->dev, "GTT: %lluM 0x%016llX - 0x%016llX\n",
  577. mc->gtt_size >> 20, mc->gtt_start, mc->gtt_end);
  578. }
  579. /*
  580. * GPU helpers function.
  581. */
  582. /**
  583. * amdgpu_card_posted - check if the hw has already been initialized
  584. *
  585. * @adev: amdgpu_device pointer
  586. *
  587. * Check if the asic has been initialized (all asics).
  588. * Used at driver startup.
  589. * Returns true if initialized or false if not.
  590. */
  591. bool amdgpu_card_posted(struct amdgpu_device *adev)
  592. {
  593. uint32_t reg;
  594. /* then check MEM_SIZE, in case the crtcs are off */
  595. reg = RREG32(mmCONFIG_MEMSIZE);
  596. if (reg)
  597. return true;
  598. return false;
  599. }
  600. static bool amdgpu_vpost_needed(struct amdgpu_device *adev)
  601. {
  602. if (amdgpu_sriov_vf(adev))
  603. return false;
  604. if (amdgpu_passthrough(adev)) {
  605. /* for FIJI: In whole GPU pass-through virtualization case
  606. * old smc fw won't clear some registers (e.g. MEM_SIZE, BIOS_SCRATCH)
  607. * so amdgpu_card_posted return false and driver will incorrectly skip vPost.
  608. * but if we force vPost do in pass-through case, the driver reload will hang.
  609. * whether doing vPost depends on amdgpu_card_posted if smc version is above
  610. * 00160e00 for FIJI.
  611. */
  612. if (adev->asic_type == CHIP_FIJI) {
  613. int err;
  614. uint32_t fw_ver;
  615. err = request_firmware(&adev->pm.fw, "amdgpu/fiji_smc.bin", adev->dev);
  616. /* force vPost if error occured */
  617. if (err)
  618. return true;
  619. fw_ver = *((uint32_t *)adev->pm.fw->data + 69);
  620. if (fw_ver >= 0x00160e00)
  621. return !amdgpu_card_posted(adev);
  622. }
  623. } else {
  624. /* in bare-metal case, amdgpu_card_posted return false
  625. * after system reboot/boot, and return true if driver
  626. * reloaded.
  627. * we shouldn't do vPost after driver reload otherwise GPU
  628. * could hang.
  629. */
  630. if (amdgpu_card_posted(adev))
  631. return false;
  632. }
  633. /* we assume vPost is neede for all other cases */
  634. return true;
  635. }
  636. /**
  637. * amdgpu_dummy_page_init - init dummy page used by the driver
  638. *
  639. * @adev: amdgpu_device pointer
  640. *
  641. * Allocate the dummy page used by the driver (all asics).
  642. * This dummy page is used by the driver as a filler for gart entries
  643. * when pages are taken out of the GART
  644. * Returns 0 on sucess, -ENOMEM on failure.
  645. */
  646. int amdgpu_dummy_page_init(struct amdgpu_device *adev)
  647. {
  648. if (adev->dummy_page.page)
  649. return 0;
  650. adev->dummy_page.page = alloc_page(GFP_DMA32 | GFP_KERNEL | __GFP_ZERO);
  651. if (adev->dummy_page.page == NULL)
  652. return -ENOMEM;
  653. adev->dummy_page.addr = pci_map_page(adev->pdev, adev->dummy_page.page,
  654. 0, PAGE_SIZE, PCI_DMA_BIDIRECTIONAL);
  655. if (pci_dma_mapping_error(adev->pdev, adev->dummy_page.addr)) {
  656. dev_err(&adev->pdev->dev, "Failed to DMA MAP the dummy page\n");
  657. __free_page(adev->dummy_page.page);
  658. adev->dummy_page.page = NULL;
  659. return -ENOMEM;
  660. }
  661. return 0;
  662. }
  663. /**
  664. * amdgpu_dummy_page_fini - free dummy page used by the driver
  665. *
  666. * @adev: amdgpu_device pointer
  667. *
  668. * Frees the dummy page used by the driver (all asics).
  669. */
  670. void amdgpu_dummy_page_fini(struct amdgpu_device *adev)
  671. {
  672. if (adev->dummy_page.page == NULL)
  673. return;
  674. pci_unmap_page(adev->pdev, adev->dummy_page.addr,
  675. PAGE_SIZE, PCI_DMA_BIDIRECTIONAL);
  676. __free_page(adev->dummy_page.page);
  677. adev->dummy_page.page = NULL;
  678. }
  679. /* ATOM accessor methods */
  680. /*
  681. * ATOM is an interpreted byte code stored in tables in the vbios. The
  682. * driver registers callbacks to access registers and the interpreter
  683. * in the driver parses the tables and executes then to program specific
  684. * actions (set display modes, asic init, etc.). See amdgpu_atombios.c,
  685. * atombios.h, and atom.c
  686. */
  687. /**
  688. * cail_pll_read - read PLL register
  689. *
  690. * @info: atom card_info pointer
  691. * @reg: PLL register offset
  692. *
  693. * Provides a PLL register accessor for the atom interpreter (r4xx+).
  694. * Returns the value of the PLL register.
  695. */
  696. static uint32_t cail_pll_read(struct card_info *info, uint32_t reg)
  697. {
  698. return 0;
  699. }
  700. /**
  701. * cail_pll_write - write PLL register
  702. *
  703. * @info: atom card_info pointer
  704. * @reg: PLL register offset
  705. * @val: value to write to the pll register
  706. *
  707. * Provides a PLL register accessor for the atom interpreter (r4xx+).
  708. */
  709. static void cail_pll_write(struct card_info *info, uint32_t reg, uint32_t val)
  710. {
  711. }
  712. /**
  713. * cail_mc_read - read MC (Memory Controller) register
  714. *
  715. * @info: atom card_info pointer
  716. * @reg: MC register offset
  717. *
  718. * Provides an MC register accessor for the atom interpreter (r4xx+).
  719. * Returns the value of the MC register.
  720. */
  721. static uint32_t cail_mc_read(struct card_info *info, uint32_t reg)
  722. {
  723. return 0;
  724. }
  725. /**
  726. * cail_mc_write - write MC (Memory Controller) register
  727. *
  728. * @info: atom card_info pointer
  729. * @reg: MC register offset
  730. * @val: value to write to the pll register
  731. *
  732. * Provides a MC register accessor for the atom interpreter (r4xx+).
  733. */
  734. static void cail_mc_write(struct card_info *info, uint32_t reg, uint32_t val)
  735. {
  736. }
  737. /**
  738. * cail_reg_write - write MMIO register
  739. *
  740. * @info: atom card_info pointer
  741. * @reg: MMIO register offset
  742. * @val: value to write to the pll register
  743. *
  744. * Provides a MMIO register accessor for the atom interpreter (r4xx+).
  745. */
  746. static void cail_reg_write(struct card_info *info, uint32_t reg, uint32_t val)
  747. {
  748. struct amdgpu_device *adev = info->dev->dev_private;
  749. WREG32(reg, val);
  750. }
  751. /**
  752. * cail_reg_read - read MMIO register
  753. *
  754. * @info: atom card_info pointer
  755. * @reg: MMIO register offset
  756. *
  757. * Provides an MMIO register accessor for the atom interpreter (r4xx+).
  758. * Returns the value of the MMIO register.
  759. */
  760. static uint32_t cail_reg_read(struct card_info *info, uint32_t reg)
  761. {
  762. struct amdgpu_device *adev = info->dev->dev_private;
  763. uint32_t r;
  764. r = RREG32(reg);
  765. return r;
  766. }
  767. /**
  768. * cail_ioreg_write - write IO register
  769. *
  770. * @info: atom card_info pointer
  771. * @reg: IO register offset
  772. * @val: value to write to the pll register
  773. *
  774. * Provides a IO register accessor for the atom interpreter (r4xx+).
  775. */
  776. static void cail_ioreg_write(struct card_info *info, uint32_t reg, uint32_t val)
  777. {
  778. struct amdgpu_device *adev = info->dev->dev_private;
  779. WREG32_IO(reg, val);
  780. }
  781. /**
  782. * cail_ioreg_read - read IO register
  783. *
  784. * @info: atom card_info pointer
  785. * @reg: IO register offset
  786. *
  787. * Provides an IO register accessor for the atom interpreter (r4xx+).
  788. * Returns the value of the IO register.
  789. */
  790. static uint32_t cail_ioreg_read(struct card_info *info, uint32_t reg)
  791. {
  792. struct amdgpu_device *adev = info->dev->dev_private;
  793. uint32_t r;
  794. r = RREG32_IO(reg);
  795. return r;
  796. }
  797. /**
  798. * amdgpu_atombios_fini - free the driver info and callbacks for atombios
  799. *
  800. * @adev: amdgpu_device pointer
  801. *
  802. * Frees the driver info and register access callbacks for the ATOM
  803. * interpreter (r4xx+).
  804. * Called at driver shutdown.
  805. */
  806. static void amdgpu_atombios_fini(struct amdgpu_device *adev)
  807. {
  808. if (adev->mode_info.atom_context) {
  809. kfree(adev->mode_info.atom_context->scratch);
  810. kfree(adev->mode_info.atom_context->iio);
  811. }
  812. kfree(adev->mode_info.atom_context);
  813. adev->mode_info.atom_context = NULL;
  814. kfree(adev->mode_info.atom_card_info);
  815. adev->mode_info.atom_card_info = NULL;
  816. }
  817. /**
  818. * amdgpu_atombios_init - init the driver info and callbacks for atombios
  819. *
  820. * @adev: amdgpu_device pointer
  821. *
  822. * Initializes the driver info and register access callbacks for the
  823. * ATOM interpreter (r4xx+).
  824. * Returns 0 on sucess, -ENOMEM on failure.
  825. * Called at driver startup.
  826. */
  827. static int amdgpu_atombios_init(struct amdgpu_device *adev)
  828. {
  829. struct card_info *atom_card_info =
  830. kzalloc(sizeof(struct card_info), GFP_KERNEL);
  831. if (!atom_card_info)
  832. return -ENOMEM;
  833. adev->mode_info.atom_card_info = atom_card_info;
  834. atom_card_info->dev = adev->ddev;
  835. atom_card_info->reg_read = cail_reg_read;
  836. atom_card_info->reg_write = cail_reg_write;
  837. /* needed for iio ops */
  838. if (adev->rio_mem) {
  839. atom_card_info->ioreg_read = cail_ioreg_read;
  840. atom_card_info->ioreg_write = cail_ioreg_write;
  841. } else {
  842. DRM_ERROR("Unable to find PCI I/O BAR; using MMIO for ATOM IIO\n");
  843. atom_card_info->ioreg_read = cail_reg_read;
  844. atom_card_info->ioreg_write = cail_reg_write;
  845. }
  846. atom_card_info->mc_read = cail_mc_read;
  847. atom_card_info->mc_write = cail_mc_write;
  848. atom_card_info->pll_read = cail_pll_read;
  849. atom_card_info->pll_write = cail_pll_write;
  850. adev->mode_info.atom_context = amdgpu_atom_parse(atom_card_info, adev->bios);
  851. if (!adev->mode_info.atom_context) {
  852. amdgpu_atombios_fini(adev);
  853. return -ENOMEM;
  854. }
  855. mutex_init(&adev->mode_info.atom_context->mutex);
  856. amdgpu_atombios_scratch_regs_init(adev);
  857. amdgpu_atom_allocate_fb_scratch(adev->mode_info.atom_context);
  858. return 0;
  859. }
  860. /* if we get transitioned to only one device, take VGA back */
  861. /**
  862. * amdgpu_vga_set_decode - enable/disable vga decode
  863. *
  864. * @cookie: amdgpu_device pointer
  865. * @state: enable/disable vga decode
  866. *
  867. * Enable/disable vga decode (all asics).
  868. * Returns VGA resource flags.
  869. */
  870. static unsigned int amdgpu_vga_set_decode(void *cookie, bool state)
  871. {
  872. struct amdgpu_device *adev = cookie;
  873. amdgpu_asic_set_vga_state(adev, state);
  874. if (state)
  875. return VGA_RSRC_LEGACY_IO | VGA_RSRC_LEGACY_MEM |
  876. VGA_RSRC_NORMAL_IO | VGA_RSRC_NORMAL_MEM;
  877. else
  878. return VGA_RSRC_NORMAL_IO | VGA_RSRC_NORMAL_MEM;
  879. }
  880. /**
  881. * amdgpu_check_pot_argument - check that argument is a power of two
  882. *
  883. * @arg: value to check
  884. *
  885. * Validates that a certain argument is a power of two (all asics).
  886. * Returns true if argument is valid.
  887. */
  888. static bool amdgpu_check_pot_argument(int arg)
  889. {
  890. return (arg & (arg - 1)) == 0;
  891. }
  892. /**
  893. * amdgpu_check_arguments - validate module params
  894. *
  895. * @adev: amdgpu_device pointer
  896. *
  897. * Validates certain module parameters and updates
  898. * the associated values used by the driver (all asics).
  899. */
  900. static void amdgpu_check_arguments(struct amdgpu_device *adev)
  901. {
  902. if (amdgpu_sched_jobs < 4) {
  903. dev_warn(adev->dev, "sched jobs (%d) must be at least 4\n",
  904. amdgpu_sched_jobs);
  905. amdgpu_sched_jobs = 4;
  906. } else if (!amdgpu_check_pot_argument(amdgpu_sched_jobs)){
  907. dev_warn(adev->dev, "sched jobs (%d) must be a power of 2\n",
  908. amdgpu_sched_jobs);
  909. amdgpu_sched_jobs = roundup_pow_of_two(amdgpu_sched_jobs);
  910. }
  911. if (amdgpu_gart_size != -1) {
  912. /* gtt size must be greater or equal to 32M */
  913. if (amdgpu_gart_size < 32) {
  914. dev_warn(adev->dev, "gart size (%d) too small\n",
  915. amdgpu_gart_size);
  916. amdgpu_gart_size = -1;
  917. }
  918. }
  919. if (!amdgpu_check_pot_argument(amdgpu_vm_size)) {
  920. dev_warn(adev->dev, "VM size (%d) must be a power of 2\n",
  921. amdgpu_vm_size);
  922. amdgpu_vm_size = 8;
  923. }
  924. if (amdgpu_vm_size < 1) {
  925. dev_warn(adev->dev, "VM size (%d) too small, min is 1GB\n",
  926. amdgpu_vm_size);
  927. amdgpu_vm_size = 8;
  928. }
  929. /*
  930. * Max GPUVM size for Cayman, SI and CI are 40 bits.
  931. */
  932. if (amdgpu_vm_size > 1024) {
  933. dev_warn(adev->dev, "VM size (%d) too large, max is 1TB\n",
  934. amdgpu_vm_size);
  935. amdgpu_vm_size = 8;
  936. }
  937. /* defines number of bits in page table versus page directory,
  938. * a page is 4KB so we have 12 bits offset, minimum 9 bits in the
  939. * page table and the remaining bits are in the page directory */
  940. if (amdgpu_vm_block_size == -1) {
  941. /* Total bits covered by PD + PTs */
  942. unsigned bits = ilog2(amdgpu_vm_size) + 18;
  943. /* Make sure the PD is 4K in size up to 8GB address space.
  944. Above that split equal between PD and PTs */
  945. if (amdgpu_vm_size <= 8)
  946. amdgpu_vm_block_size = bits - 9;
  947. else
  948. amdgpu_vm_block_size = (bits + 3) / 2;
  949. } else if (amdgpu_vm_block_size < 9) {
  950. dev_warn(adev->dev, "VM page table size (%d) too small\n",
  951. amdgpu_vm_block_size);
  952. amdgpu_vm_block_size = 9;
  953. }
  954. if (amdgpu_vm_block_size > 24 ||
  955. (amdgpu_vm_size * 1024) < (1ull << amdgpu_vm_block_size)) {
  956. dev_warn(adev->dev, "VM page table size (%d) too large\n",
  957. amdgpu_vm_block_size);
  958. amdgpu_vm_block_size = 9;
  959. }
  960. }
  961. /**
  962. * amdgpu_switcheroo_set_state - set switcheroo state
  963. *
  964. * @pdev: pci dev pointer
  965. * @state: vga_switcheroo state
  966. *
  967. * Callback for the switcheroo driver. Suspends or resumes the
  968. * the asics before or after it is powered up using ACPI methods.
  969. */
  970. static void amdgpu_switcheroo_set_state(struct pci_dev *pdev, enum vga_switcheroo_state state)
  971. {
  972. struct drm_device *dev = pci_get_drvdata(pdev);
  973. if (amdgpu_device_is_px(dev) && state == VGA_SWITCHEROO_OFF)
  974. return;
  975. if (state == VGA_SWITCHEROO_ON) {
  976. unsigned d3_delay = dev->pdev->d3_delay;
  977. printk(KERN_INFO "amdgpu: switched on\n");
  978. /* don't suspend or resume card normally */
  979. dev->switch_power_state = DRM_SWITCH_POWER_CHANGING;
  980. amdgpu_device_resume(dev, true, true);
  981. dev->pdev->d3_delay = d3_delay;
  982. dev->switch_power_state = DRM_SWITCH_POWER_ON;
  983. drm_kms_helper_poll_enable(dev);
  984. } else {
  985. printk(KERN_INFO "amdgpu: switched off\n");
  986. drm_kms_helper_poll_disable(dev);
  987. dev->switch_power_state = DRM_SWITCH_POWER_CHANGING;
  988. amdgpu_device_suspend(dev, true, true);
  989. dev->switch_power_state = DRM_SWITCH_POWER_OFF;
  990. }
  991. }
  992. /**
  993. * amdgpu_switcheroo_can_switch - see if switcheroo state can change
  994. *
  995. * @pdev: pci dev pointer
  996. *
  997. * Callback for the switcheroo driver. Check of the switcheroo
  998. * state can be changed.
  999. * Returns true if the state can be changed, false if not.
  1000. */
  1001. static bool amdgpu_switcheroo_can_switch(struct pci_dev *pdev)
  1002. {
  1003. struct drm_device *dev = pci_get_drvdata(pdev);
  1004. /*
  1005. * FIXME: open_count is protected by drm_global_mutex but that would lead to
  1006. * locking inversion with the driver load path. And the access here is
  1007. * completely racy anyway. So don't bother with locking for now.
  1008. */
  1009. return dev->open_count == 0;
  1010. }
  1011. static const struct vga_switcheroo_client_ops amdgpu_switcheroo_ops = {
  1012. .set_gpu_state = amdgpu_switcheroo_set_state,
  1013. .reprobe = NULL,
  1014. .can_switch = amdgpu_switcheroo_can_switch,
  1015. };
  1016. int amdgpu_set_clockgating_state(struct amdgpu_device *adev,
  1017. enum amd_ip_block_type block_type,
  1018. enum amd_clockgating_state state)
  1019. {
  1020. int i, r = 0;
  1021. for (i = 0; i < adev->num_ip_blocks; i++) {
  1022. if (!adev->ip_block_status[i].valid)
  1023. continue;
  1024. if (adev->ip_blocks[i].type == block_type) {
  1025. r = adev->ip_blocks[i].funcs->set_clockgating_state((void *)adev,
  1026. state);
  1027. if (r)
  1028. return r;
  1029. break;
  1030. }
  1031. }
  1032. return r;
  1033. }
  1034. int amdgpu_set_powergating_state(struct amdgpu_device *adev,
  1035. enum amd_ip_block_type block_type,
  1036. enum amd_powergating_state state)
  1037. {
  1038. int i, r = 0;
  1039. for (i = 0; i < adev->num_ip_blocks; i++) {
  1040. if (!adev->ip_block_status[i].valid)
  1041. continue;
  1042. if (adev->ip_blocks[i].type == block_type) {
  1043. r = adev->ip_blocks[i].funcs->set_powergating_state((void *)adev,
  1044. state);
  1045. if (r)
  1046. return r;
  1047. break;
  1048. }
  1049. }
  1050. return r;
  1051. }
  1052. int amdgpu_wait_for_idle(struct amdgpu_device *adev,
  1053. enum amd_ip_block_type block_type)
  1054. {
  1055. int i, r;
  1056. for (i = 0; i < adev->num_ip_blocks; i++) {
  1057. if (!adev->ip_block_status[i].valid)
  1058. continue;
  1059. if (adev->ip_blocks[i].type == block_type) {
  1060. r = adev->ip_blocks[i].funcs->wait_for_idle((void *)adev);
  1061. if (r)
  1062. return r;
  1063. break;
  1064. }
  1065. }
  1066. return 0;
  1067. }
  1068. bool amdgpu_is_idle(struct amdgpu_device *adev,
  1069. enum amd_ip_block_type block_type)
  1070. {
  1071. int i;
  1072. for (i = 0; i < adev->num_ip_blocks; i++) {
  1073. if (!adev->ip_block_status[i].valid)
  1074. continue;
  1075. if (adev->ip_blocks[i].type == block_type)
  1076. return adev->ip_blocks[i].funcs->is_idle((void *)adev);
  1077. }
  1078. return true;
  1079. }
  1080. const struct amdgpu_ip_block_version * amdgpu_get_ip_block(
  1081. struct amdgpu_device *adev,
  1082. enum amd_ip_block_type type)
  1083. {
  1084. int i;
  1085. for (i = 0; i < adev->num_ip_blocks; i++)
  1086. if (adev->ip_blocks[i].type == type)
  1087. return &adev->ip_blocks[i];
  1088. return NULL;
  1089. }
  1090. /**
  1091. * amdgpu_ip_block_version_cmp
  1092. *
  1093. * @adev: amdgpu_device pointer
  1094. * @type: enum amd_ip_block_type
  1095. * @major: major version
  1096. * @minor: minor version
  1097. *
  1098. * return 0 if equal or greater
  1099. * return 1 if smaller or the ip_block doesn't exist
  1100. */
  1101. int amdgpu_ip_block_version_cmp(struct amdgpu_device *adev,
  1102. enum amd_ip_block_type type,
  1103. u32 major, u32 minor)
  1104. {
  1105. const struct amdgpu_ip_block_version *ip_block;
  1106. ip_block = amdgpu_get_ip_block(adev, type);
  1107. if (ip_block && ((ip_block->major > major) ||
  1108. ((ip_block->major == major) &&
  1109. (ip_block->minor >= minor))))
  1110. return 0;
  1111. return 1;
  1112. }
  1113. static void amdgpu_whether_enable_virtual_display(struct amdgpu_device *adev)
  1114. {
  1115. adev->enable_virtual_display = false;
  1116. if (amdgpu_virtual_display) {
  1117. struct drm_device *ddev = adev->ddev;
  1118. const char *pci_address_name = pci_name(ddev->pdev);
  1119. char *pciaddstr, *pciaddstr_tmp, *pciaddname;
  1120. pciaddstr = kstrdup(amdgpu_virtual_display, GFP_KERNEL);
  1121. pciaddstr_tmp = pciaddstr;
  1122. while ((pciaddname = strsep(&pciaddstr_tmp, ";"))) {
  1123. if (!strcmp(pci_address_name, pciaddname)) {
  1124. adev->enable_virtual_display = true;
  1125. break;
  1126. }
  1127. }
  1128. DRM_INFO("virtual display string:%s, %s:virtual_display:%d\n",
  1129. amdgpu_virtual_display, pci_address_name,
  1130. adev->enable_virtual_display);
  1131. kfree(pciaddstr);
  1132. }
  1133. }
  1134. static int amdgpu_early_init(struct amdgpu_device *adev)
  1135. {
  1136. int i, r;
  1137. amdgpu_whether_enable_virtual_display(adev);
  1138. switch (adev->asic_type) {
  1139. case CHIP_TOPAZ:
  1140. case CHIP_TONGA:
  1141. case CHIP_FIJI:
  1142. case CHIP_POLARIS11:
  1143. case CHIP_POLARIS10:
  1144. case CHIP_CARRIZO:
  1145. case CHIP_STONEY:
  1146. if (adev->asic_type == CHIP_CARRIZO || adev->asic_type == CHIP_STONEY)
  1147. adev->family = AMDGPU_FAMILY_CZ;
  1148. else
  1149. adev->family = AMDGPU_FAMILY_VI;
  1150. r = vi_set_ip_blocks(adev);
  1151. if (r)
  1152. return r;
  1153. break;
  1154. #ifdef CONFIG_DRM_AMDGPU_SI
  1155. case CHIP_VERDE:
  1156. case CHIP_TAHITI:
  1157. case CHIP_PITCAIRN:
  1158. case CHIP_OLAND:
  1159. case CHIP_HAINAN:
  1160. adev->family = AMDGPU_FAMILY_SI;
  1161. r = si_set_ip_blocks(adev);
  1162. if (r)
  1163. return r;
  1164. break;
  1165. #endif
  1166. #ifdef CONFIG_DRM_AMDGPU_CIK
  1167. case CHIP_BONAIRE:
  1168. case CHIP_HAWAII:
  1169. case CHIP_KAVERI:
  1170. case CHIP_KABINI:
  1171. case CHIP_MULLINS:
  1172. if ((adev->asic_type == CHIP_BONAIRE) || (adev->asic_type == CHIP_HAWAII))
  1173. adev->family = AMDGPU_FAMILY_CI;
  1174. else
  1175. adev->family = AMDGPU_FAMILY_KV;
  1176. r = cik_set_ip_blocks(adev);
  1177. if (r)
  1178. return r;
  1179. break;
  1180. #endif
  1181. default:
  1182. /* FIXME: not supported yet */
  1183. return -EINVAL;
  1184. }
  1185. adev->ip_block_status = kcalloc(adev->num_ip_blocks,
  1186. sizeof(struct amdgpu_ip_block_status), GFP_KERNEL);
  1187. if (adev->ip_block_status == NULL)
  1188. return -ENOMEM;
  1189. if (adev->ip_blocks == NULL) {
  1190. DRM_ERROR("No IP blocks found!\n");
  1191. return r;
  1192. }
  1193. for (i = 0; i < adev->num_ip_blocks; i++) {
  1194. if ((amdgpu_ip_block_mask & (1 << i)) == 0) {
  1195. DRM_ERROR("disabled ip block: %d\n", i);
  1196. adev->ip_block_status[i].valid = false;
  1197. } else {
  1198. if (adev->ip_blocks[i].funcs->early_init) {
  1199. r = adev->ip_blocks[i].funcs->early_init((void *)adev);
  1200. if (r == -ENOENT) {
  1201. adev->ip_block_status[i].valid = false;
  1202. } else if (r) {
  1203. DRM_ERROR("early_init of IP block <%s> failed %d\n", adev->ip_blocks[i].funcs->name, r);
  1204. return r;
  1205. } else {
  1206. adev->ip_block_status[i].valid = true;
  1207. }
  1208. } else {
  1209. adev->ip_block_status[i].valid = true;
  1210. }
  1211. }
  1212. }
  1213. adev->cg_flags &= amdgpu_cg_mask;
  1214. adev->pg_flags &= amdgpu_pg_mask;
  1215. return 0;
  1216. }
  1217. static int amdgpu_init(struct amdgpu_device *adev)
  1218. {
  1219. int i, r;
  1220. for (i = 0; i < adev->num_ip_blocks; i++) {
  1221. if (!adev->ip_block_status[i].valid)
  1222. continue;
  1223. r = adev->ip_blocks[i].funcs->sw_init((void *)adev);
  1224. if (r) {
  1225. DRM_ERROR("sw_init of IP block <%s> failed %d\n", adev->ip_blocks[i].funcs->name, r);
  1226. return r;
  1227. }
  1228. adev->ip_block_status[i].sw = true;
  1229. /* need to do gmc hw init early so we can allocate gpu mem */
  1230. if (adev->ip_blocks[i].type == AMD_IP_BLOCK_TYPE_GMC) {
  1231. r = amdgpu_vram_scratch_init(adev);
  1232. if (r) {
  1233. DRM_ERROR("amdgpu_vram_scratch_init failed %d\n", r);
  1234. return r;
  1235. }
  1236. r = adev->ip_blocks[i].funcs->hw_init((void *)adev);
  1237. if (r) {
  1238. DRM_ERROR("hw_init %d failed %d\n", i, r);
  1239. return r;
  1240. }
  1241. r = amdgpu_wb_init(adev);
  1242. if (r) {
  1243. DRM_ERROR("amdgpu_wb_init failed %d\n", r);
  1244. return r;
  1245. }
  1246. adev->ip_block_status[i].hw = true;
  1247. }
  1248. }
  1249. for (i = 0; i < adev->num_ip_blocks; i++) {
  1250. if (!adev->ip_block_status[i].sw)
  1251. continue;
  1252. /* gmc hw init is done early */
  1253. if (adev->ip_blocks[i].type == AMD_IP_BLOCK_TYPE_GMC)
  1254. continue;
  1255. r = adev->ip_blocks[i].funcs->hw_init((void *)adev);
  1256. if (r) {
  1257. DRM_ERROR("hw_init of IP block <%s> failed %d\n", adev->ip_blocks[i].funcs->name, r);
  1258. return r;
  1259. }
  1260. adev->ip_block_status[i].hw = true;
  1261. }
  1262. return 0;
  1263. }
  1264. static int amdgpu_late_init(struct amdgpu_device *adev)
  1265. {
  1266. int i = 0, r;
  1267. for (i = 0; i < adev->num_ip_blocks; i++) {
  1268. if (!adev->ip_block_status[i].valid)
  1269. continue;
  1270. if (adev->ip_blocks[i].type == AMD_IP_BLOCK_TYPE_UVD ||
  1271. adev->ip_blocks[i].type == AMD_IP_BLOCK_TYPE_VCE)
  1272. continue;
  1273. /* enable clockgating to save power */
  1274. r = adev->ip_blocks[i].funcs->set_clockgating_state((void *)adev,
  1275. AMD_CG_STATE_GATE);
  1276. if (r) {
  1277. DRM_ERROR("set_clockgating_state(gate) of IP block <%s> failed %d\n", adev->ip_blocks[i].funcs->name, r);
  1278. return r;
  1279. }
  1280. if (adev->ip_blocks[i].funcs->late_init) {
  1281. r = adev->ip_blocks[i].funcs->late_init((void *)adev);
  1282. if (r) {
  1283. DRM_ERROR("late_init of IP block <%s> failed %d\n", adev->ip_blocks[i].funcs->name, r);
  1284. return r;
  1285. }
  1286. }
  1287. }
  1288. return 0;
  1289. }
  1290. static int amdgpu_fini(struct amdgpu_device *adev)
  1291. {
  1292. int i, r;
  1293. for (i = adev->num_ip_blocks - 1; i >= 0; i--) {
  1294. if (!adev->ip_block_status[i].hw)
  1295. continue;
  1296. if (adev->ip_blocks[i].type == AMD_IP_BLOCK_TYPE_GMC) {
  1297. amdgpu_wb_fini(adev);
  1298. amdgpu_vram_scratch_fini(adev);
  1299. }
  1300. /* ungate blocks before hw fini so that we can shutdown the blocks safely */
  1301. r = adev->ip_blocks[i].funcs->set_clockgating_state((void *)adev,
  1302. AMD_CG_STATE_UNGATE);
  1303. if (r) {
  1304. DRM_ERROR("set_clockgating_state(ungate) of IP block <%s> failed %d\n", adev->ip_blocks[i].funcs->name, r);
  1305. return r;
  1306. }
  1307. r = adev->ip_blocks[i].funcs->hw_fini((void *)adev);
  1308. /* XXX handle errors */
  1309. if (r) {
  1310. DRM_DEBUG("hw_fini of IP block <%s> failed %d\n", adev->ip_blocks[i].funcs->name, r);
  1311. }
  1312. adev->ip_block_status[i].hw = false;
  1313. }
  1314. for (i = adev->num_ip_blocks - 1; i >= 0; i--) {
  1315. if (!adev->ip_block_status[i].sw)
  1316. continue;
  1317. r = adev->ip_blocks[i].funcs->sw_fini((void *)adev);
  1318. /* XXX handle errors */
  1319. if (r) {
  1320. DRM_DEBUG("sw_fini of IP block <%s> failed %d\n", adev->ip_blocks[i].funcs->name, r);
  1321. }
  1322. adev->ip_block_status[i].sw = false;
  1323. adev->ip_block_status[i].valid = false;
  1324. }
  1325. for (i = adev->num_ip_blocks - 1; i >= 0; i--) {
  1326. if (adev->ip_blocks[i].funcs->late_fini)
  1327. adev->ip_blocks[i].funcs->late_fini((void *)adev);
  1328. }
  1329. return 0;
  1330. }
  1331. static int amdgpu_suspend(struct amdgpu_device *adev)
  1332. {
  1333. int i, r;
  1334. /* ungate SMC block first */
  1335. r = amdgpu_set_clockgating_state(adev, AMD_IP_BLOCK_TYPE_SMC,
  1336. AMD_CG_STATE_UNGATE);
  1337. if (r) {
  1338. DRM_ERROR("set_clockgating_state(ungate) SMC failed %d\n",r);
  1339. }
  1340. for (i = adev->num_ip_blocks - 1; i >= 0; i--) {
  1341. if (!adev->ip_block_status[i].valid)
  1342. continue;
  1343. /* ungate blocks so that suspend can properly shut them down */
  1344. if (i != AMD_IP_BLOCK_TYPE_SMC) {
  1345. r = adev->ip_blocks[i].funcs->set_clockgating_state((void *)adev,
  1346. AMD_CG_STATE_UNGATE);
  1347. if (r) {
  1348. DRM_ERROR("set_clockgating_state(ungate) of IP block <%s> failed %d\n", adev->ip_blocks[i].funcs->name, r);
  1349. }
  1350. }
  1351. /* XXX handle errors */
  1352. r = adev->ip_blocks[i].funcs->suspend(adev);
  1353. /* XXX handle errors */
  1354. if (r) {
  1355. DRM_ERROR("suspend of IP block <%s> failed %d\n", adev->ip_blocks[i].funcs->name, r);
  1356. }
  1357. }
  1358. return 0;
  1359. }
  1360. static int amdgpu_resume(struct amdgpu_device *adev)
  1361. {
  1362. int i, r;
  1363. for (i = 0; i < adev->num_ip_blocks; i++) {
  1364. if (!adev->ip_block_status[i].valid)
  1365. continue;
  1366. r = adev->ip_blocks[i].funcs->resume(adev);
  1367. if (r) {
  1368. DRM_ERROR("resume of IP block <%s> failed %d\n", adev->ip_blocks[i].funcs->name, r);
  1369. return r;
  1370. }
  1371. }
  1372. return 0;
  1373. }
  1374. static void amdgpu_device_detect_sriov_bios(struct amdgpu_device *adev)
  1375. {
  1376. if (amdgpu_atombios_has_gpu_virtualization_table(adev))
  1377. adev->virtualization.virtual_caps |= AMDGPU_SRIOV_CAPS_SRIOV_VBIOS;
  1378. }
  1379. /**
  1380. * amdgpu_device_init - initialize the driver
  1381. *
  1382. * @adev: amdgpu_device pointer
  1383. * @pdev: drm dev pointer
  1384. * @pdev: pci dev pointer
  1385. * @flags: driver flags
  1386. *
  1387. * Initializes the driver info and hw (all asics).
  1388. * Returns 0 for success or an error on failure.
  1389. * Called at driver startup.
  1390. */
  1391. int amdgpu_device_init(struct amdgpu_device *adev,
  1392. struct drm_device *ddev,
  1393. struct pci_dev *pdev,
  1394. uint32_t flags)
  1395. {
  1396. int r, i;
  1397. bool runtime = false;
  1398. u32 max_MBps;
  1399. adev->shutdown = false;
  1400. adev->dev = &pdev->dev;
  1401. adev->ddev = ddev;
  1402. adev->pdev = pdev;
  1403. adev->flags = flags;
  1404. adev->asic_type = flags & AMD_ASIC_MASK;
  1405. adev->is_atom_bios = false;
  1406. adev->usec_timeout = AMDGPU_MAX_USEC_TIMEOUT;
  1407. adev->mc.gtt_size = 512 * 1024 * 1024;
  1408. adev->accel_working = false;
  1409. adev->num_rings = 0;
  1410. adev->mman.buffer_funcs = NULL;
  1411. adev->mman.buffer_funcs_ring = NULL;
  1412. adev->vm_manager.vm_pte_funcs = NULL;
  1413. adev->vm_manager.vm_pte_num_rings = 0;
  1414. adev->gart.gart_funcs = NULL;
  1415. adev->fence_context = fence_context_alloc(AMDGPU_MAX_RINGS);
  1416. adev->smc_rreg = &amdgpu_invalid_rreg;
  1417. adev->smc_wreg = &amdgpu_invalid_wreg;
  1418. adev->pcie_rreg = &amdgpu_invalid_rreg;
  1419. adev->pcie_wreg = &amdgpu_invalid_wreg;
  1420. adev->pciep_rreg = &amdgpu_invalid_rreg;
  1421. adev->pciep_wreg = &amdgpu_invalid_wreg;
  1422. adev->uvd_ctx_rreg = &amdgpu_invalid_rreg;
  1423. adev->uvd_ctx_wreg = &amdgpu_invalid_wreg;
  1424. adev->didt_rreg = &amdgpu_invalid_rreg;
  1425. adev->didt_wreg = &amdgpu_invalid_wreg;
  1426. adev->gc_cac_rreg = &amdgpu_invalid_rreg;
  1427. adev->gc_cac_wreg = &amdgpu_invalid_wreg;
  1428. adev->audio_endpt_rreg = &amdgpu_block_invalid_rreg;
  1429. adev->audio_endpt_wreg = &amdgpu_block_invalid_wreg;
  1430. DRM_INFO("initializing kernel modesetting (%s 0x%04X:0x%04X 0x%04X:0x%04X 0x%02X).\n",
  1431. amdgpu_asic_name[adev->asic_type], pdev->vendor, pdev->device,
  1432. pdev->subsystem_vendor, pdev->subsystem_device, pdev->revision);
  1433. /* mutex initialization are all done here so we
  1434. * can recall function without having locking issues */
  1435. mutex_init(&adev->vm_manager.lock);
  1436. atomic_set(&adev->irq.ih.lock, 0);
  1437. mutex_init(&adev->pm.mutex);
  1438. mutex_init(&adev->gfx.gpu_clock_mutex);
  1439. mutex_init(&adev->srbm_mutex);
  1440. mutex_init(&adev->grbm_idx_mutex);
  1441. mutex_init(&adev->mn_lock);
  1442. hash_init(adev->mn_hash);
  1443. amdgpu_check_arguments(adev);
  1444. /* Registers mapping */
  1445. /* TODO: block userspace mapping of io register */
  1446. spin_lock_init(&adev->mmio_idx_lock);
  1447. spin_lock_init(&adev->smc_idx_lock);
  1448. spin_lock_init(&adev->pcie_idx_lock);
  1449. spin_lock_init(&adev->uvd_ctx_idx_lock);
  1450. spin_lock_init(&adev->didt_idx_lock);
  1451. spin_lock_init(&adev->gc_cac_idx_lock);
  1452. spin_lock_init(&adev->audio_endpt_idx_lock);
  1453. spin_lock_init(&adev->mm_stats.lock);
  1454. INIT_LIST_HEAD(&adev->shadow_list);
  1455. mutex_init(&adev->shadow_list_lock);
  1456. INIT_LIST_HEAD(&adev->gtt_list);
  1457. spin_lock_init(&adev->gtt_list_lock);
  1458. if (adev->asic_type >= CHIP_BONAIRE) {
  1459. adev->rmmio_base = pci_resource_start(adev->pdev, 5);
  1460. adev->rmmio_size = pci_resource_len(adev->pdev, 5);
  1461. } else {
  1462. adev->rmmio_base = pci_resource_start(adev->pdev, 2);
  1463. adev->rmmio_size = pci_resource_len(adev->pdev, 2);
  1464. }
  1465. adev->rmmio = ioremap(adev->rmmio_base, adev->rmmio_size);
  1466. if (adev->rmmio == NULL) {
  1467. return -ENOMEM;
  1468. }
  1469. DRM_INFO("register mmio base: 0x%08X\n", (uint32_t)adev->rmmio_base);
  1470. DRM_INFO("register mmio size: %u\n", (unsigned)adev->rmmio_size);
  1471. if (adev->asic_type >= CHIP_BONAIRE)
  1472. /* doorbell bar mapping */
  1473. amdgpu_doorbell_init(adev);
  1474. /* io port mapping */
  1475. for (i = 0; i < DEVICE_COUNT_RESOURCE; i++) {
  1476. if (pci_resource_flags(adev->pdev, i) & IORESOURCE_IO) {
  1477. adev->rio_mem_size = pci_resource_len(adev->pdev, i);
  1478. adev->rio_mem = pci_iomap(adev->pdev, i, adev->rio_mem_size);
  1479. break;
  1480. }
  1481. }
  1482. if (adev->rio_mem == NULL)
  1483. DRM_ERROR("Unable to find PCI I/O BAR\n");
  1484. /* early init functions */
  1485. r = amdgpu_early_init(adev);
  1486. if (r)
  1487. return r;
  1488. /* if we have > 1 VGA cards, then disable the amdgpu VGA resources */
  1489. /* this will fail for cards that aren't VGA class devices, just
  1490. * ignore it */
  1491. vga_client_register(adev->pdev, adev, NULL, amdgpu_vga_set_decode);
  1492. if (amdgpu_runtime_pm == 1)
  1493. runtime = true;
  1494. if (amdgpu_device_is_px(ddev))
  1495. runtime = true;
  1496. vga_switcheroo_register_client(adev->pdev, &amdgpu_switcheroo_ops, runtime);
  1497. if (runtime)
  1498. vga_switcheroo_init_domain_pm_ops(adev->dev, &adev->vga_pm_domain);
  1499. /* Read BIOS */
  1500. if (!amdgpu_get_bios(adev)) {
  1501. r = -EINVAL;
  1502. goto failed;
  1503. }
  1504. /* Must be an ATOMBIOS */
  1505. if (!adev->is_atom_bios) {
  1506. dev_err(adev->dev, "Expecting atombios for GPU\n");
  1507. r = -EINVAL;
  1508. goto failed;
  1509. }
  1510. r = amdgpu_atombios_init(adev);
  1511. if (r) {
  1512. dev_err(adev->dev, "amdgpu_atombios_init failed\n");
  1513. goto failed;
  1514. }
  1515. /* detect if we are with an SRIOV vbios */
  1516. amdgpu_device_detect_sriov_bios(adev);
  1517. /* Post card if necessary */
  1518. if (amdgpu_vpost_needed(adev)) {
  1519. if (!adev->bios) {
  1520. dev_err(adev->dev, "no vBIOS found\n");
  1521. r = -EINVAL;
  1522. goto failed;
  1523. }
  1524. DRM_INFO("GPU posting now...\n");
  1525. r = amdgpu_atom_asic_init(adev->mode_info.atom_context);
  1526. if (r) {
  1527. dev_err(adev->dev, "gpu post error!\n");
  1528. goto failed;
  1529. }
  1530. } else {
  1531. DRM_INFO("GPU post is not needed\n");
  1532. }
  1533. /* Initialize clocks */
  1534. r = amdgpu_atombios_get_clock_info(adev);
  1535. if (r) {
  1536. dev_err(adev->dev, "amdgpu_atombios_get_clock_info failed\n");
  1537. goto failed;
  1538. }
  1539. /* init i2c buses */
  1540. amdgpu_atombios_i2c_init(adev);
  1541. /* Fence driver */
  1542. r = amdgpu_fence_driver_init(adev);
  1543. if (r) {
  1544. dev_err(adev->dev, "amdgpu_fence_driver_init failed\n");
  1545. goto failed;
  1546. }
  1547. /* init the mode config */
  1548. drm_mode_config_init(adev->ddev);
  1549. r = amdgpu_init(adev);
  1550. if (r) {
  1551. dev_err(adev->dev, "amdgpu_init failed\n");
  1552. amdgpu_fini(adev);
  1553. goto failed;
  1554. }
  1555. adev->accel_working = true;
  1556. /* Initialize the buffer migration limit. */
  1557. if (amdgpu_moverate >= 0)
  1558. max_MBps = amdgpu_moverate;
  1559. else
  1560. max_MBps = 8; /* Allow 8 MB/s. */
  1561. /* Get a log2 for easy divisions. */
  1562. adev->mm_stats.log2_max_MBps = ilog2(max(1u, max_MBps));
  1563. amdgpu_fbdev_init(adev);
  1564. r = amdgpu_ib_pool_init(adev);
  1565. if (r) {
  1566. dev_err(adev->dev, "IB initialization failed (%d).\n", r);
  1567. goto failed;
  1568. }
  1569. r = amdgpu_ib_ring_tests(adev);
  1570. if (r)
  1571. DRM_ERROR("ib ring test failed (%d).\n", r);
  1572. r = amdgpu_gem_debugfs_init(adev);
  1573. if (r) {
  1574. DRM_ERROR("registering gem debugfs failed (%d).\n", r);
  1575. }
  1576. r = amdgpu_debugfs_regs_init(adev);
  1577. if (r) {
  1578. DRM_ERROR("registering register debugfs failed (%d).\n", r);
  1579. }
  1580. r = amdgpu_debugfs_firmware_init(adev);
  1581. if (r) {
  1582. DRM_ERROR("registering firmware debugfs failed (%d).\n", r);
  1583. return r;
  1584. }
  1585. if ((amdgpu_testing & 1)) {
  1586. if (adev->accel_working)
  1587. amdgpu_test_moves(adev);
  1588. else
  1589. DRM_INFO("amdgpu: acceleration disabled, skipping move tests\n");
  1590. }
  1591. if ((amdgpu_testing & 2)) {
  1592. if (adev->accel_working)
  1593. amdgpu_test_syncing(adev);
  1594. else
  1595. DRM_INFO("amdgpu: acceleration disabled, skipping sync tests\n");
  1596. }
  1597. if (amdgpu_benchmarking) {
  1598. if (adev->accel_working)
  1599. amdgpu_benchmark(adev, amdgpu_benchmarking);
  1600. else
  1601. DRM_INFO("amdgpu: acceleration disabled, skipping benchmarks\n");
  1602. }
  1603. /* enable clockgating, etc. after ib tests, etc. since some blocks require
  1604. * explicit gating rather than handling it automatically.
  1605. */
  1606. r = amdgpu_late_init(adev);
  1607. if (r) {
  1608. dev_err(adev->dev, "amdgpu_late_init failed\n");
  1609. goto failed;
  1610. }
  1611. return 0;
  1612. failed:
  1613. if (runtime)
  1614. vga_switcheroo_fini_domain_pm_ops(adev->dev);
  1615. return r;
  1616. }
  1617. static void amdgpu_debugfs_remove_files(struct amdgpu_device *adev);
  1618. /**
  1619. * amdgpu_device_fini - tear down the driver
  1620. *
  1621. * @adev: amdgpu_device pointer
  1622. *
  1623. * Tear down the driver info (all asics).
  1624. * Called at driver shutdown.
  1625. */
  1626. void amdgpu_device_fini(struct amdgpu_device *adev)
  1627. {
  1628. int r;
  1629. DRM_INFO("amdgpu: finishing device.\n");
  1630. adev->shutdown = true;
  1631. /* evict vram memory */
  1632. amdgpu_bo_evict_vram(adev);
  1633. amdgpu_ib_pool_fini(adev);
  1634. amdgpu_fence_driver_fini(adev);
  1635. drm_crtc_force_disable_all(adev->ddev);
  1636. amdgpu_fbdev_fini(adev);
  1637. r = amdgpu_fini(adev);
  1638. kfree(adev->ip_block_status);
  1639. adev->ip_block_status = NULL;
  1640. adev->accel_working = false;
  1641. /* free i2c buses */
  1642. amdgpu_i2c_fini(adev);
  1643. amdgpu_atombios_fini(adev);
  1644. kfree(adev->bios);
  1645. adev->bios = NULL;
  1646. vga_switcheroo_unregister_client(adev->pdev);
  1647. if (adev->flags & AMD_IS_PX)
  1648. vga_switcheroo_fini_domain_pm_ops(adev->dev);
  1649. vga_client_register(adev->pdev, NULL, NULL, NULL);
  1650. if (adev->rio_mem)
  1651. pci_iounmap(adev->pdev, adev->rio_mem);
  1652. adev->rio_mem = NULL;
  1653. iounmap(adev->rmmio);
  1654. adev->rmmio = NULL;
  1655. if (adev->asic_type >= CHIP_BONAIRE)
  1656. amdgpu_doorbell_fini(adev);
  1657. amdgpu_debugfs_regs_cleanup(adev);
  1658. amdgpu_debugfs_remove_files(adev);
  1659. }
  1660. /*
  1661. * Suspend & resume.
  1662. */
  1663. /**
  1664. * amdgpu_device_suspend - initiate device suspend
  1665. *
  1666. * @pdev: drm dev pointer
  1667. * @state: suspend state
  1668. *
  1669. * Puts the hw in the suspend state (all asics).
  1670. * Returns 0 for success or an error on failure.
  1671. * Called at driver suspend.
  1672. */
  1673. int amdgpu_device_suspend(struct drm_device *dev, bool suspend, bool fbcon)
  1674. {
  1675. struct amdgpu_device *adev;
  1676. struct drm_crtc *crtc;
  1677. struct drm_connector *connector;
  1678. int r;
  1679. if (dev == NULL || dev->dev_private == NULL) {
  1680. return -ENODEV;
  1681. }
  1682. adev = dev->dev_private;
  1683. if (dev->switch_power_state == DRM_SWITCH_POWER_OFF)
  1684. return 0;
  1685. drm_kms_helper_poll_disable(dev);
  1686. /* turn off display hw */
  1687. drm_modeset_lock_all(dev);
  1688. list_for_each_entry(connector, &dev->mode_config.connector_list, head) {
  1689. drm_helper_connector_dpms(connector, DRM_MODE_DPMS_OFF);
  1690. }
  1691. drm_modeset_unlock_all(dev);
  1692. /* unpin the front buffers and cursors */
  1693. list_for_each_entry(crtc, &dev->mode_config.crtc_list, head) {
  1694. struct amdgpu_crtc *amdgpu_crtc = to_amdgpu_crtc(crtc);
  1695. struct amdgpu_framebuffer *rfb = to_amdgpu_framebuffer(crtc->primary->fb);
  1696. struct amdgpu_bo *robj;
  1697. if (amdgpu_crtc->cursor_bo) {
  1698. struct amdgpu_bo *aobj = gem_to_amdgpu_bo(amdgpu_crtc->cursor_bo);
  1699. r = amdgpu_bo_reserve(aobj, false);
  1700. if (r == 0) {
  1701. amdgpu_bo_unpin(aobj);
  1702. amdgpu_bo_unreserve(aobj);
  1703. }
  1704. }
  1705. if (rfb == NULL || rfb->obj == NULL) {
  1706. continue;
  1707. }
  1708. robj = gem_to_amdgpu_bo(rfb->obj);
  1709. /* don't unpin kernel fb objects */
  1710. if (!amdgpu_fbdev_robj_is_fb(adev, robj)) {
  1711. r = amdgpu_bo_reserve(robj, false);
  1712. if (r == 0) {
  1713. amdgpu_bo_unpin(robj);
  1714. amdgpu_bo_unreserve(robj);
  1715. }
  1716. }
  1717. }
  1718. /* evict vram memory */
  1719. amdgpu_bo_evict_vram(adev);
  1720. amdgpu_fence_driver_suspend(adev);
  1721. r = amdgpu_suspend(adev);
  1722. /* evict remaining vram memory */
  1723. amdgpu_bo_evict_vram(adev);
  1724. pci_save_state(dev->pdev);
  1725. if (suspend) {
  1726. /* Shut down the device */
  1727. pci_disable_device(dev->pdev);
  1728. pci_set_power_state(dev->pdev, PCI_D3hot);
  1729. } else {
  1730. r = amdgpu_asic_reset(adev);
  1731. if (r)
  1732. DRM_ERROR("amdgpu asic reset failed\n");
  1733. }
  1734. if (fbcon) {
  1735. console_lock();
  1736. amdgpu_fbdev_set_suspend(adev, 1);
  1737. console_unlock();
  1738. }
  1739. return 0;
  1740. }
  1741. /**
  1742. * amdgpu_device_resume - initiate device resume
  1743. *
  1744. * @pdev: drm dev pointer
  1745. *
  1746. * Bring the hw back to operating state (all asics).
  1747. * Returns 0 for success or an error on failure.
  1748. * Called at driver resume.
  1749. */
  1750. int amdgpu_device_resume(struct drm_device *dev, bool resume, bool fbcon)
  1751. {
  1752. struct drm_connector *connector;
  1753. struct amdgpu_device *adev = dev->dev_private;
  1754. struct drm_crtc *crtc;
  1755. int r;
  1756. if (dev->switch_power_state == DRM_SWITCH_POWER_OFF)
  1757. return 0;
  1758. if (fbcon)
  1759. console_lock();
  1760. if (resume) {
  1761. pci_set_power_state(dev->pdev, PCI_D0);
  1762. pci_restore_state(dev->pdev);
  1763. r = pci_enable_device(dev->pdev);
  1764. if (r) {
  1765. if (fbcon)
  1766. console_unlock();
  1767. return r;
  1768. }
  1769. }
  1770. /* post card */
  1771. if (!amdgpu_card_posted(adev) || !resume) {
  1772. r = amdgpu_atom_asic_init(adev->mode_info.atom_context);
  1773. if (r)
  1774. DRM_ERROR("amdgpu asic init failed\n");
  1775. }
  1776. r = amdgpu_resume(adev);
  1777. if (r)
  1778. DRM_ERROR("amdgpu_resume failed (%d).\n", r);
  1779. amdgpu_fence_driver_resume(adev);
  1780. if (resume) {
  1781. r = amdgpu_ib_ring_tests(adev);
  1782. if (r)
  1783. DRM_ERROR("ib ring test failed (%d).\n", r);
  1784. }
  1785. r = amdgpu_late_init(adev);
  1786. if (r)
  1787. return r;
  1788. /* pin cursors */
  1789. list_for_each_entry(crtc, &dev->mode_config.crtc_list, head) {
  1790. struct amdgpu_crtc *amdgpu_crtc = to_amdgpu_crtc(crtc);
  1791. if (amdgpu_crtc->cursor_bo) {
  1792. struct amdgpu_bo *aobj = gem_to_amdgpu_bo(amdgpu_crtc->cursor_bo);
  1793. r = amdgpu_bo_reserve(aobj, false);
  1794. if (r == 0) {
  1795. r = amdgpu_bo_pin(aobj,
  1796. AMDGPU_GEM_DOMAIN_VRAM,
  1797. &amdgpu_crtc->cursor_addr);
  1798. if (r != 0)
  1799. DRM_ERROR("Failed to pin cursor BO (%d)\n", r);
  1800. amdgpu_bo_unreserve(aobj);
  1801. }
  1802. }
  1803. }
  1804. /* blat the mode back in */
  1805. if (fbcon) {
  1806. drm_helper_resume_force_mode(dev);
  1807. /* turn on display hw */
  1808. drm_modeset_lock_all(dev);
  1809. list_for_each_entry(connector, &dev->mode_config.connector_list, head) {
  1810. drm_helper_connector_dpms(connector, DRM_MODE_DPMS_ON);
  1811. }
  1812. drm_modeset_unlock_all(dev);
  1813. }
  1814. drm_kms_helper_poll_enable(dev);
  1815. /*
  1816. * Most of the connector probing functions try to acquire runtime pm
  1817. * refs to ensure that the GPU is powered on when connector polling is
  1818. * performed. Since we're calling this from a runtime PM callback,
  1819. * trying to acquire rpm refs will cause us to deadlock.
  1820. *
  1821. * Since we're guaranteed to be holding the rpm lock, it's safe to
  1822. * temporarily disable the rpm helpers so this doesn't deadlock us.
  1823. */
  1824. #ifdef CONFIG_PM
  1825. dev->dev->power.disable_depth++;
  1826. #endif
  1827. drm_helper_hpd_irq_event(dev);
  1828. #ifdef CONFIG_PM
  1829. dev->dev->power.disable_depth--;
  1830. #endif
  1831. if (fbcon) {
  1832. amdgpu_fbdev_set_suspend(adev, 0);
  1833. console_unlock();
  1834. }
  1835. return 0;
  1836. }
  1837. static bool amdgpu_check_soft_reset(struct amdgpu_device *adev)
  1838. {
  1839. int i;
  1840. bool asic_hang = false;
  1841. for (i = 0; i < adev->num_ip_blocks; i++) {
  1842. if (!adev->ip_block_status[i].valid)
  1843. continue;
  1844. if (adev->ip_blocks[i].funcs->check_soft_reset)
  1845. adev->ip_blocks[i].funcs->check_soft_reset(adev);
  1846. if (adev->ip_block_status[i].hang) {
  1847. DRM_INFO("IP block:%d is hang!\n", i);
  1848. asic_hang = true;
  1849. }
  1850. }
  1851. return asic_hang;
  1852. }
  1853. static int amdgpu_pre_soft_reset(struct amdgpu_device *adev)
  1854. {
  1855. int i, r = 0;
  1856. for (i = 0; i < adev->num_ip_blocks; i++) {
  1857. if (!adev->ip_block_status[i].valid)
  1858. continue;
  1859. if (adev->ip_block_status[i].hang &&
  1860. adev->ip_blocks[i].funcs->pre_soft_reset) {
  1861. r = adev->ip_blocks[i].funcs->pre_soft_reset(adev);
  1862. if (r)
  1863. return r;
  1864. }
  1865. }
  1866. return 0;
  1867. }
  1868. static bool amdgpu_need_full_reset(struct amdgpu_device *adev)
  1869. {
  1870. if (adev->ip_block_status[AMD_IP_BLOCK_TYPE_GMC].hang ||
  1871. adev->ip_block_status[AMD_IP_BLOCK_TYPE_SMC].hang ||
  1872. adev->ip_block_status[AMD_IP_BLOCK_TYPE_ACP].hang ||
  1873. adev->ip_block_status[AMD_IP_BLOCK_TYPE_DCE].hang) {
  1874. DRM_INFO("Some block need full reset!\n");
  1875. return true;
  1876. }
  1877. return false;
  1878. }
  1879. static int amdgpu_soft_reset(struct amdgpu_device *adev)
  1880. {
  1881. int i, r = 0;
  1882. for (i = 0; i < adev->num_ip_blocks; i++) {
  1883. if (!adev->ip_block_status[i].valid)
  1884. continue;
  1885. if (adev->ip_block_status[i].hang &&
  1886. adev->ip_blocks[i].funcs->soft_reset) {
  1887. r = adev->ip_blocks[i].funcs->soft_reset(adev);
  1888. if (r)
  1889. return r;
  1890. }
  1891. }
  1892. return 0;
  1893. }
  1894. static int amdgpu_post_soft_reset(struct amdgpu_device *adev)
  1895. {
  1896. int i, r = 0;
  1897. for (i = 0; i < adev->num_ip_blocks; i++) {
  1898. if (!adev->ip_block_status[i].valid)
  1899. continue;
  1900. if (adev->ip_block_status[i].hang &&
  1901. adev->ip_blocks[i].funcs->post_soft_reset)
  1902. r = adev->ip_blocks[i].funcs->post_soft_reset(adev);
  1903. if (r)
  1904. return r;
  1905. }
  1906. return 0;
  1907. }
  1908. bool amdgpu_need_backup(struct amdgpu_device *adev)
  1909. {
  1910. if (adev->flags & AMD_IS_APU)
  1911. return false;
  1912. return amdgpu_lockup_timeout > 0 ? true : false;
  1913. }
  1914. static int amdgpu_recover_vram_from_shadow(struct amdgpu_device *adev,
  1915. struct amdgpu_ring *ring,
  1916. struct amdgpu_bo *bo,
  1917. struct fence **fence)
  1918. {
  1919. uint32_t domain;
  1920. int r;
  1921. if (!bo->shadow)
  1922. return 0;
  1923. r = amdgpu_bo_reserve(bo, false);
  1924. if (r)
  1925. return r;
  1926. domain = amdgpu_mem_type_to_domain(bo->tbo.mem.mem_type);
  1927. /* if bo has been evicted, then no need to recover */
  1928. if (domain == AMDGPU_GEM_DOMAIN_VRAM) {
  1929. r = amdgpu_bo_restore_from_shadow(adev, ring, bo,
  1930. NULL, fence, true);
  1931. if (r) {
  1932. DRM_ERROR("recover page table failed!\n");
  1933. goto err;
  1934. }
  1935. }
  1936. err:
  1937. amdgpu_bo_unreserve(bo);
  1938. return r;
  1939. }
  1940. /**
  1941. * amdgpu_gpu_reset - reset the asic
  1942. *
  1943. * @adev: amdgpu device pointer
  1944. *
  1945. * Attempt the reset the GPU if it has hung (all asics).
  1946. * Returns 0 for success or an error on failure.
  1947. */
  1948. int amdgpu_gpu_reset(struct amdgpu_device *adev)
  1949. {
  1950. int i, r;
  1951. int resched;
  1952. bool need_full_reset;
  1953. if (!amdgpu_check_soft_reset(adev)) {
  1954. DRM_INFO("No hardware hang detected. Did some blocks stall?\n");
  1955. return 0;
  1956. }
  1957. atomic_inc(&adev->gpu_reset_counter);
  1958. /* block TTM */
  1959. resched = ttm_bo_lock_delayed_workqueue(&adev->mman.bdev);
  1960. /* block scheduler */
  1961. for (i = 0; i < AMDGPU_MAX_RINGS; ++i) {
  1962. struct amdgpu_ring *ring = adev->rings[i];
  1963. if (!ring)
  1964. continue;
  1965. kthread_park(ring->sched.thread);
  1966. amd_sched_hw_job_reset(&ring->sched);
  1967. }
  1968. /* after all hw jobs are reset, hw fence is meaningless, so force_completion */
  1969. amdgpu_fence_driver_force_completion(adev);
  1970. need_full_reset = amdgpu_need_full_reset(adev);
  1971. if (!need_full_reset) {
  1972. amdgpu_pre_soft_reset(adev);
  1973. r = amdgpu_soft_reset(adev);
  1974. amdgpu_post_soft_reset(adev);
  1975. if (r || amdgpu_check_soft_reset(adev)) {
  1976. DRM_INFO("soft reset failed, will fallback to full reset!\n");
  1977. need_full_reset = true;
  1978. }
  1979. }
  1980. if (need_full_reset) {
  1981. /* save scratch */
  1982. amdgpu_atombios_scratch_regs_save(adev);
  1983. r = amdgpu_suspend(adev);
  1984. retry:
  1985. /* Disable fb access */
  1986. if (adev->mode_info.num_crtc) {
  1987. struct amdgpu_mode_mc_save save;
  1988. amdgpu_display_stop_mc_access(adev, &save);
  1989. amdgpu_wait_for_idle(adev, AMD_IP_BLOCK_TYPE_GMC);
  1990. }
  1991. r = amdgpu_asic_reset(adev);
  1992. /* post card */
  1993. amdgpu_atom_asic_init(adev->mode_info.atom_context);
  1994. if (!r) {
  1995. dev_info(adev->dev, "GPU reset succeeded, trying to resume\n");
  1996. r = amdgpu_resume(adev);
  1997. }
  1998. /* restore scratch */
  1999. amdgpu_atombios_scratch_regs_restore(adev);
  2000. }
  2001. if (!r) {
  2002. amdgpu_irq_gpu_reset_resume_helper(adev);
  2003. if (need_full_reset && amdgpu_need_backup(adev)) {
  2004. r = amdgpu_ttm_recover_gart(adev);
  2005. if (r)
  2006. DRM_ERROR("gart recovery failed!!!\n");
  2007. }
  2008. r = amdgpu_ib_ring_tests(adev);
  2009. if (r) {
  2010. dev_err(adev->dev, "ib ring test failed (%d).\n", r);
  2011. r = amdgpu_suspend(adev);
  2012. need_full_reset = true;
  2013. goto retry;
  2014. }
  2015. /**
  2016. * recovery vm page tables, since we cannot depend on VRAM is
  2017. * consistent after gpu full reset.
  2018. */
  2019. if (need_full_reset && amdgpu_need_backup(adev)) {
  2020. struct amdgpu_ring *ring = adev->mman.buffer_funcs_ring;
  2021. struct amdgpu_bo *bo, *tmp;
  2022. struct fence *fence = NULL, *next = NULL;
  2023. DRM_INFO("recover vram bo from shadow\n");
  2024. mutex_lock(&adev->shadow_list_lock);
  2025. list_for_each_entry_safe(bo, tmp, &adev->shadow_list, shadow_list) {
  2026. amdgpu_recover_vram_from_shadow(adev, ring, bo, &next);
  2027. if (fence) {
  2028. r = fence_wait(fence, false);
  2029. if (r) {
  2030. WARN(r, "recovery from shadow isn't comleted\n");
  2031. break;
  2032. }
  2033. }
  2034. fence_put(fence);
  2035. fence = next;
  2036. }
  2037. mutex_unlock(&adev->shadow_list_lock);
  2038. if (fence) {
  2039. r = fence_wait(fence, false);
  2040. if (r)
  2041. WARN(r, "recovery from shadow isn't comleted\n");
  2042. }
  2043. fence_put(fence);
  2044. }
  2045. for (i = 0; i < AMDGPU_MAX_RINGS; ++i) {
  2046. struct amdgpu_ring *ring = adev->rings[i];
  2047. if (!ring)
  2048. continue;
  2049. amd_sched_job_recovery(&ring->sched);
  2050. kthread_unpark(ring->sched.thread);
  2051. }
  2052. } else {
  2053. dev_err(adev->dev, "asic resume failed (%d).\n", r);
  2054. for (i = 0; i < AMDGPU_MAX_RINGS; ++i) {
  2055. if (adev->rings[i]) {
  2056. kthread_unpark(adev->rings[i]->sched.thread);
  2057. }
  2058. }
  2059. }
  2060. drm_helper_resume_force_mode(adev->ddev);
  2061. ttm_bo_unlock_delayed_workqueue(&adev->mman.bdev, resched);
  2062. if (r) {
  2063. /* bad news, how to tell it to userspace ? */
  2064. dev_info(adev->dev, "GPU reset failed\n");
  2065. }
  2066. return r;
  2067. }
  2068. void amdgpu_get_pcie_info(struct amdgpu_device *adev)
  2069. {
  2070. u32 mask;
  2071. int ret;
  2072. if (amdgpu_pcie_gen_cap)
  2073. adev->pm.pcie_gen_mask = amdgpu_pcie_gen_cap;
  2074. if (amdgpu_pcie_lane_cap)
  2075. adev->pm.pcie_mlw_mask = amdgpu_pcie_lane_cap;
  2076. /* covers APUs as well */
  2077. if (pci_is_root_bus(adev->pdev->bus)) {
  2078. if (adev->pm.pcie_gen_mask == 0)
  2079. adev->pm.pcie_gen_mask = AMDGPU_DEFAULT_PCIE_GEN_MASK;
  2080. if (adev->pm.pcie_mlw_mask == 0)
  2081. adev->pm.pcie_mlw_mask = AMDGPU_DEFAULT_PCIE_MLW_MASK;
  2082. return;
  2083. }
  2084. if (adev->pm.pcie_gen_mask == 0) {
  2085. ret = drm_pcie_get_speed_cap_mask(adev->ddev, &mask);
  2086. if (!ret) {
  2087. adev->pm.pcie_gen_mask = (CAIL_ASIC_PCIE_LINK_SPEED_SUPPORT_GEN1 |
  2088. CAIL_ASIC_PCIE_LINK_SPEED_SUPPORT_GEN2 |
  2089. CAIL_ASIC_PCIE_LINK_SPEED_SUPPORT_GEN3);
  2090. if (mask & DRM_PCIE_SPEED_25)
  2091. adev->pm.pcie_gen_mask |= CAIL_PCIE_LINK_SPEED_SUPPORT_GEN1;
  2092. if (mask & DRM_PCIE_SPEED_50)
  2093. adev->pm.pcie_gen_mask |= CAIL_PCIE_LINK_SPEED_SUPPORT_GEN2;
  2094. if (mask & DRM_PCIE_SPEED_80)
  2095. adev->pm.pcie_gen_mask |= CAIL_PCIE_LINK_SPEED_SUPPORT_GEN3;
  2096. } else {
  2097. adev->pm.pcie_gen_mask = AMDGPU_DEFAULT_PCIE_GEN_MASK;
  2098. }
  2099. }
  2100. if (adev->pm.pcie_mlw_mask == 0) {
  2101. ret = drm_pcie_get_max_link_width(adev->ddev, &mask);
  2102. if (!ret) {
  2103. switch (mask) {
  2104. case 32:
  2105. adev->pm.pcie_mlw_mask = (CAIL_PCIE_LINK_WIDTH_SUPPORT_X32 |
  2106. CAIL_PCIE_LINK_WIDTH_SUPPORT_X16 |
  2107. CAIL_PCIE_LINK_WIDTH_SUPPORT_X12 |
  2108. CAIL_PCIE_LINK_WIDTH_SUPPORT_X8 |
  2109. CAIL_PCIE_LINK_WIDTH_SUPPORT_X4 |
  2110. CAIL_PCIE_LINK_WIDTH_SUPPORT_X2 |
  2111. CAIL_PCIE_LINK_WIDTH_SUPPORT_X1);
  2112. break;
  2113. case 16:
  2114. adev->pm.pcie_mlw_mask = (CAIL_PCIE_LINK_WIDTH_SUPPORT_X16 |
  2115. CAIL_PCIE_LINK_WIDTH_SUPPORT_X12 |
  2116. CAIL_PCIE_LINK_WIDTH_SUPPORT_X8 |
  2117. CAIL_PCIE_LINK_WIDTH_SUPPORT_X4 |
  2118. CAIL_PCIE_LINK_WIDTH_SUPPORT_X2 |
  2119. CAIL_PCIE_LINK_WIDTH_SUPPORT_X1);
  2120. break;
  2121. case 12:
  2122. adev->pm.pcie_mlw_mask = (CAIL_PCIE_LINK_WIDTH_SUPPORT_X12 |
  2123. CAIL_PCIE_LINK_WIDTH_SUPPORT_X8 |
  2124. CAIL_PCIE_LINK_WIDTH_SUPPORT_X4 |
  2125. CAIL_PCIE_LINK_WIDTH_SUPPORT_X2 |
  2126. CAIL_PCIE_LINK_WIDTH_SUPPORT_X1);
  2127. break;
  2128. case 8:
  2129. adev->pm.pcie_mlw_mask = (CAIL_PCIE_LINK_WIDTH_SUPPORT_X8 |
  2130. CAIL_PCIE_LINK_WIDTH_SUPPORT_X4 |
  2131. CAIL_PCIE_LINK_WIDTH_SUPPORT_X2 |
  2132. CAIL_PCIE_LINK_WIDTH_SUPPORT_X1);
  2133. break;
  2134. case 4:
  2135. adev->pm.pcie_mlw_mask = (CAIL_PCIE_LINK_WIDTH_SUPPORT_X4 |
  2136. CAIL_PCIE_LINK_WIDTH_SUPPORT_X2 |
  2137. CAIL_PCIE_LINK_WIDTH_SUPPORT_X1);
  2138. break;
  2139. case 2:
  2140. adev->pm.pcie_mlw_mask = (CAIL_PCIE_LINK_WIDTH_SUPPORT_X2 |
  2141. CAIL_PCIE_LINK_WIDTH_SUPPORT_X1);
  2142. break;
  2143. case 1:
  2144. adev->pm.pcie_mlw_mask = CAIL_PCIE_LINK_WIDTH_SUPPORT_X1;
  2145. break;
  2146. default:
  2147. break;
  2148. }
  2149. } else {
  2150. adev->pm.pcie_mlw_mask = AMDGPU_DEFAULT_PCIE_MLW_MASK;
  2151. }
  2152. }
  2153. }
  2154. /*
  2155. * Debugfs
  2156. */
  2157. int amdgpu_debugfs_add_files(struct amdgpu_device *adev,
  2158. const struct drm_info_list *files,
  2159. unsigned nfiles)
  2160. {
  2161. unsigned i;
  2162. for (i = 0; i < adev->debugfs_count; i++) {
  2163. if (adev->debugfs[i].files == files) {
  2164. /* Already registered */
  2165. return 0;
  2166. }
  2167. }
  2168. i = adev->debugfs_count + 1;
  2169. if (i > AMDGPU_DEBUGFS_MAX_COMPONENTS) {
  2170. DRM_ERROR("Reached maximum number of debugfs components.\n");
  2171. DRM_ERROR("Report so we increase "
  2172. "AMDGPU_DEBUGFS_MAX_COMPONENTS.\n");
  2173. return -EINVAL;
  2174. }
  2175. adev->debugfs[adev->debugfs_count].files = files;
  2176. adev->debugfs[adev->debugfs_count].num_files = nfiles;
  2177. adev->debugfs_count = i;
  2178. #if defined(CONFIG_DEBUG_FS)
  2179. drm_debugfs_create_files(files, nfiles,
  2180. adev->ddev->control->debugfs_root,
  2181. adev->ddev->control);
  2182. drm_debugfs_create_files(files, nfiles,
  2183. adev->ddev->primary->debugfs_root,
  2184. adev->ddev->primary);
  2185. #endif
  2186. return 0;
  2187. }
  2188. static void amdgpu_debugfs_remove_files(struct amdgpu_device *adev)
  2189. {
  2190. #if defined(CONFIG_DEBUG_FS)
  2191. unsigned i;
  2192. for (i = 0; i < adev->debugfs_count; i++) {
  2193. drm_debugfs_remove_files(adev->debugfs[i].files,
  2194. adev->debugfs[i].num_files,
  2195. adev->ddev->control);
  2196. drm_debugfs_remove_files(adev->debugfs[i].files,
  2197. adev->debugfs[i].num_files,
  2198. adev->ddev->primary);
  2199. }
  2200. #endif
  2201. }
  2202. #if defined(CONFIG_DEBUG_FS)
  2203. static ssize_t amdgpu_debugfs_regs_read(struct file *f, char __user *buf,
  2204. size_t size, loff_t *pos)
  2205. {
  2206. struct amdgpu_device *adev = f->f_inode->i_private;
  2207. ssize_t result = 0;
  2208. int r;
  2209. bool pm_pg_lock, use_bank;
  2210. unsigned instance_bank, sh_bank, se_bank;
  2211. if (size & 0x3 || *pos & 0x3)
  2212. return -EINVAL;
  2213. /* are we reading registers for which a PG lock is necessary? */
  2214. pm_pg_lock = (*pos >> 23) & 1;
  2215. if (*pos & (1ULL << 62)) {
  2216. se_bank = (*pos >> 24) & 0x3FF;
  2217. sh_bank = (*pos >> 34) & 0x3FF;
  2218. instance_bank = (*pos >> 44) & 0x3FF;
  2219. use_bank = 1;
  2220. } else {
  2221. use_bank = 0;
  2222. }
  2223. *pos &= 0x3FFFF;
  2224. if (use_bank) {
  2225. if (sh_bank >= adev->gfx.config.max_sh_per_se ||
  2226. se_bank >= adev->gfx.config.max_shader_engines)
  2227. return -EINVAL;
  2228. mutex_lock(&adev->grbm_idx_mutex);
  2229. amdgpu_gfx_select_se_sh(adev, se_bank,
  2230. sh_bank, instance_bank);
  2231. }
  2232. if (pm_pg_lock)
  2233. mutex_lock(&adev->pm.mutex);
  2234. while (size) {
  2235. uint32_t value;
  2236. if (*pos > adev->rmmio_size)
  2237. goto end;
  2238. value = RREG32(*pos >> 2);
  2239. r = put_user(value, (uint32_t *)buf);
  2240. if (r) {
  2241. result = r;
  2242. goto end;
  2243. }
  2244. result += 4;
  2245. buf += 4;
  2246. *pos += 4;
  2247. size -= 4;
  2248. }
  2249. end:
  2250. if (use_bank) {
  2251. amdgpu_gfx_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
  2252. mutex_unlock(&adev->grbm_idx_mutex);
  2253. }
  2254. if (pm_pg_lock)
  2255. mutex_unlock(&adev->pm.mutex);
  2256. return result;
  2257. }
  2258. static ssize_t amdgpu_debugfs_regs_write(struct file *f, const char __user *buf,
  2259. size_t size, loff_t *pos)
  2260. {
  2261. struct amdgpu_device *adev = f->f_inode->i_private;
  2262. ssize_t result = 0;
  2263. int r;
  2264. if (size & 0x3 || *pos & 0x3)
  2265. return -EINVAL;
  2266. while (size) {
  2267. uint32_t value;
  2268. if (*pos > adev->rmmio_size)
  2269. return result;
  2270. r = get_user(value, (uint32_t *)buf);
  2271. if (r)
  2272. return r;
  2273. WREG32(*pos >> 2, value);
  2274. result += 4;
  2275. buf += 4;
  2276. *pos += 4;
  2277. size -= 4;
  2278. }
  2279. return result;
  2280. }
  2281. static ssize_t amdgpu_debugfs_regs_pcie_read(struct file *f, char __user *buf,
  2282. size_t size, loff_t *pos)
  2283. {
  2284. struct amdgpu_device *adev = f->f_inode->i_private;
  2285. ssize_t result = 0;
  2286. int r;
  2287. if (size & 0x3 || *pos & 0x3)
  2288. return -EINVAL;
  2289. while (size) {
  2290. uint32_t value;
  2291. value = RREG32_PCIE(*pos >> 2);
  2292. r = put_user(value, (uint32_t *)buf);
  2293. if (r)
  2294. return r;
  2295. result += 4;
  2296. buf += 4;
  2297. *pos += 4;
  2298. size -= 4;
  2299. }
  2300. return result;
  2301. }
  2302. static ssize_t amdgpu_debugfs_regs_pcie_write(struct file *f, const char __user *buf,
  2303. size_t size, loff_t *pos)
  2304. {
  2305. struct amdgpu_device *adev = f->f_inode->i_private;
  2306. ssize_t result = 0;
  2307. int r;
  2308. if (size & 0x3 || *pos & 0x3)
  2309. return -EINVAL;
  2310. while (size) {
  2311. uint32_t value;
  2312. r = get_user(value, (uint32_t *)buf);
  2313. if (r)
  2314. return r;
  2315. WREG32_PCIE(*pos >> 2, value);
  2316. result += 4;
  2317. buf += 4;
  2318. *pos += 4;
  2319. size -= 4;
  2320. }
  2321. return result;
  2322. }
  2323. static ssize_t amdgpu_debugfs_regs_didt_read(struct file *f, char __user *buf,
  2324. size_t size, loff_t *pos)
  2325. {
  2326. struct amdgpu_device *adev = f->f_inode->i_private;
  2327. ssize_t result = 0;
  2328. int r;
  2329. if (size & 0x3 || *pos & 0x3)
  2330. return -EINVAL;
  2331. while (size) {
  2332. uint32_t value;
  2333. value = RREG32_DIDT(*pos >> 2);
  2334. r = put_user(value, (uint32_t *)buf);
  2335. if (r)
  2336. return r;
  2337. result += 4;
  2338. buf += 4;
  2339. *pos += 4;
  2340. size -= 4;
  2341. }
  2342. return result;
  2343. }
  2344. static ssize_t amdgpu_debugfs_regs_didt_write(struct file *f, const char __user *buf,
  2345. size_t size, loff_t *pos)
  2346. {
  2347. struct amdgpu_device *adev = f->f_inode->i_private;
  2348. ssize_t result = 0;
  2349. int r;
  2350. if (size & 0x3 || *pos & 0x3)
  2351. return -EINVAL;
  2352. while (size) {
  2353. uint32_t value;
  2354. r = get_user(value, (uint32_t *)buf);
  2355. if (r)
  2356. return r;
  2357. WREG32_DIDT(*pos >> 2, value);
  2358. result += 4;
  2359. buf += 4;
  2360. *pos += 4;
  2361. size -= 4;
  2362. }
  2363. return result;
  2364. }
  2365. static ssize_t amdgpu_debugfs_regs_smc_read(struct file *f, char __user *buf,
  2366. size_t size, loff_t *pos)
  2367. {
  2368. struct amdgpu_device *adev = f->f_inode->i_private;
  2369. ssize_t result = 0;
  2370. int r;
  2371. if (size & 0x3 || *pos & 0x3)
  2372. return -EINVAL;
  2373. while (size) {
  2374. uint32_t value;
  2375. value = RREG32_SMC(*pos);
  2376. r = put_user(value, (uint32_t *)buf);
  2377. if (r)
  2378. return r;
  2379. result += 4;
  2380. buf += 4;
  2381. *pos += 4;
  2382. size -= 4;
  2383. }
  2384. return result;
  2385. }
  2386. static ssize_t amdgpu_debugfs_regs_smc_write(struct file *f, const char __user *buf,
  2387. size_t size, loff_t *pos)
  2388. {
  2389. struct amdgpu_device *adev = f->f_inode->i_private;
  2390. ssize_t result = 0;
  2391. int r;
  2392. if (size & 0x3 || *pos & 0x3)
  2393. return -EINVAL;
  2394. while (size) {
  2395. uint32_t value;
  2396. r = get_user(value, (uint32_t *)buf);
  2397. if (r)
  2398. return r;
  2399. WREG32_SMC(*pos, value);
  2400. result += 4;
  2401. buf += 4;
  2402. *pos += 4;
  2403. size -= 4;
  2404. }
  2405. return result;
  2406. }
  2407. static ssize_t amdgpu_debugfs_gca_config_read(struct file *f, char __user *buf,
  2408. size_t size, loff_t *pos)
  2409. {
  2410. struct amdgpu_device *adev = f->f_inode->i_private;
  2411. ssize_t result = 0;
  2412. int r;
  2413. uint32_t *config, no_regs = 0;
  2414. if (size & 0x3 || *pos & 0x3)
  2415. return -EINVAL;
  2416. config = kmalloc_array(256, sizeof(*config), GFP_KERNEL);
  2417. if (!config)
  2418. return -ENOMEM;
  2419. /* version, increment each time something is added */
  2420. config[no_regs++] = 2;
  2421. config[no_regs++] = adev->gfx.config.max_shader_engines;
  2422. config[no_regs++] = adev->gfx.config.max_tile_pipes;
  2423. config[no_regs++] = adev->gfx.config.max_cu_per_sh;
  2424. config[no_regs++] = adev->gfx.config.max_sh_per_se;
  2425. config[no_regs++] = adev->gfx.config.max_backends_per_se;
  2426. config[no_regs++] = adev->gfx.config.max_texture_channel_caches;
  2427. config[no_regs++] = adev->gfx.config.max_gprs;
  2428. config[no_regs++] = adev->gfx.config.max_gs_threads;
  2429. config[no_regs++] = adev->gfx.config.max_hw_contexts;
  2430. config[no_regs++] = adev->gfx.config.sc_prim_fifo_size_frontend;
  2431. config[no_regs++] = adev->gfx.config.sc_prim_fifo_size_backend;
  2432. config[no_regs++] = adev->gfx.config.sc_hiz_tile_fifo_size;
  2433. config[no_regs++] = adev->gfx.config.sc_earlyz_tile_fifo_size;
  2434. config[no_regs++] = adev->gfx.config.num_tile_pipes;
  2435. config[no_regs++] = adev->gfx.config.backend_enable_mask;
  2436. config[no_regs++] = adev->gfx.config.mem_max_burst_length_bytes;
  2437. config[no_regs++] = adev->gfx.config.mem_row_size_in_kb;
  2438. config[no_regs++] = adev->gfx.config.shader_engine_tile_size;
  2439. config[no_regs++] = adev->gfx.config.num_gpus;
  2440. config[no_regs++] = adev->gfx.config.multi_gpu_tile_size;
  2441. config[no_regs++] = adev->gfx.config.mc_arb_ramcfg;
  2442. config[no_regs++] = adev->gfx.config.gb_addr_config;
  2443. config[no_regs++] = adev->gfx.config.num_rbs;
  2444. /* rev==1 */
  2445. config[no_regs++] = adev->rev_id;
  2446. config[no_regs++] = adev->pg_flags;
  2447. config[no_regs++] = adev->cg_flags;
  2448. /* rev==2 */
  2449. config[no_regs++] = adev->family;
  2450. config[no_regs++] = adev->external_rev_id;
  2451. while (size && (*pos < no_regs * 4)) {
  2452. uint32_t value;
  2453. value = config[*pos >> 2];
  2454. r = put_user(value, (uint32_t *)buf);
  2455. if (r) {
  2456. kfree(config);
  2457. return r;
  2458. }
  2459. result += 4;
  2460. buf += 4;
  2461. *pos += 4;
  2462. size -= 4;
  2463. }
  2464. kfree(config);
  2465. return result;
  2466. }
  2467. static ssize_t amdgpu_debugfs_sensor_read(struct file *f, char __user *buf,
  2468. size_t size, loff_t *pos)
  2469. {
  2470. struct amdgpu_device *adev = f->f_inode->i_private;
  2471. int idx, r;
  2472. int32_t value;
  2473. if (size != 4 || *pos & 0x3)
  2474. return -EINVAL;
  2475. /* convert offset to sensor number */
  2476. idx = *pos >> 2;
  2477. if (adev->powerplay.pp_funcs && adev->powerplay.pp_funcs->read_sensor)
  2478. r = adev->powerplay.pp_funcs->read_sensor(adev->powerplay.pp_handle, idx, &value);
  2479. else
  2480. return -EINVAL;
  2481. if (!r)
  2482. r = put_user(value, (int32_t *)buf);
  2483. return !r ? 4 : r;
  2484. }
  2485. static const struct file_operations amdgpu_debugfs_regs_fops = {
  2486. .owner = THIS_MODULE,
  2487. .read = amdgpu_debugfs_regs_read,
  2488. .write = amdgpu_debugfs_regs_write,
  2489. .llseek = default_llseek
  2490. };
  2491. static const struct file_operations amdgpu_debugfs_regs_didt_fops = {
  2492. .owner = THIS_MODULE,
  2493. .read = amdgpu_debugfs_regs_didt_read,
  2494. .write = amdgpu_debugfs_regs_didt_write,
  2495. .llseek = default_llseek
  2496. };
  2497. static const struct file_operations amdgpu_debugfs_regs_pcie_fops = {
  2498. .owner = THIS_MODULE,
  2499. .read = amdgpu_debugfs_regs_pcie_read,
  2500. .write = amdgpu_debugfs_regs_pcie_write,
  2501. .llseek = default_llseek
  2502. };
  2503. static const struct file_operations amdgpu_debugfs_regs_smc_fops = {
  2504. .owner = THIS_MODULE,
  2505. .read = amdgpu_debugfs_regs_smc_read,
  2506. .write = amdgpu_debugfs_regs_smc_write,
  2507. .llseek = default_llseek
  2508. };
  2509. static const struct file_operations amdgpu_debugfs_gca_config_fops = {
  2510. .owner = THIS_MODULE,
  2511. .read = amdgpu_debugfs_gca_config_read,
  2512. .llseek = default_llseek
  2513. };
  2514. static const struct file_operations amdgpu_debugfs_sensors_fops = {
  2515. .owner = THIS_MODULE,
  2516. .read = amdgpu_debugfs_sensor_read,
  2517. .llseek = default_llseek
  2518. };
  2519. static const struct file_operations *debugfs_regs[] = {
  2520. &amdgpu_debugfs_regs_fops,
  2521. &amdgpu_debugfs_regs_didt_fops,
  2522. &amdgpu_debugfs_regs_pcie_fops,
  2523. &amdgpu_debugfs_regs_smc_fops,
  2524. &amdgpu_debugfs_gca_config_fops,
  2525. &amdgpu_debugfs_sensors_fops,
  2526. };
  2527. static const char *debugfs_regs_names[] = {
  2528. "amdgpu_regs",
  2529. "amdgpu_regs_didt",
  2530. "amdgpu_regs_pcie",
  2531. "amdgpu_regs_smc",
  2532. "amdgpu_gca_config",
  2533. "amdgpu_sensors",
  2534. };
  2535. static int amdgpu_debugfs_regs_init(struct amdgpu_device *adev)
  2536. {
  2537. struct drm_minor *minor = adev->ddev->primary;
  2538. struct dentry *ent, *root = minor->debugfs_root;
  2539. unsigned i, j;
  2540. for (i = 0; i < ARRAY_SIZE(debugfs_regs); i++) {
  2541. ent = debugfs_create_file(debugfs_regs_names[i],
  2542. S_IFREG | S_IRUGO, root,
  2543. adev, debugfs_regs[i]);
  2544. if (IS_ERR(ent)) {
  2545. for (j = 0; j < i; j++) {
  2546. debugfs_remove(adev->debugfs_regs[i]);
  2547. adev->debugfs_regs[i] = NULL;
  2548. }
  2549. return PTR_ERR(ent);
  2550. }
  2551. if (!i)
  2552. i_size_write(ent->d_inode, adev->rmmio_size);
  2553. adev->debugfs_regs[i] = ent;
  2554. }
  2555. return 0;
  2556. }
  2557. static void amdgpu_debugfs_regs_cleanup(struct amdgpu_device *adev)
  2558. {
  2559. unsigned i;
  2560. for (i = 0; i < ARRAY_SIZE(debugfs_regs); i++) {
  2561. if (adev->debugfs_regs[i]) {
  2562. debugfs_remove(adev->debugfs_regs[i]);
  2563. adev->debugfs_regs[i] = NULL;
  2564. }
  2565. }
  2566. }
  2567. int amdgpu_debugfs_init(struct drm_minor *minor)
  2568. {
  2569. return 0;
  2570. }
  2571. void amdgpu_debugfs_cleanup(struct drm_minor *minor)
  2572. {
  2573. }
  2574. #else
  2575. static int amdgpu_debugfs_regs_init(struct amdgpu_device *adev)
  2576. {
  2577. return 0;
  2578. }
  2579. static void amdgpu_debugfs_regs_cleanup(struct amdgpu_device *adev) { }
  2580. #endif