kgd_kfd_interface.h 15 KB

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  1. /*
  2. * Copyright 2014 Advanced Micro Devices, Inc.
  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 shall be included in
  12. * all copies or substantial portions of the Software.
  13. *
  14. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  15. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  16. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
  17. * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
  18. * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
  19. * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
  20. * OTHER DEALINGS IN THE SOFTWARE.
  21. */
  22. /*
  23. * This file defines the private interface between the
  24. * AMD kernel graphics drivers and the AMD KFD.
  25. */
  26. #ifndef KGD_KFD_INTERFACE_H_INCLUDED
  27. #define KGD_KFD_INTERFACE_H_INCLUDED
  28. #include <linux/types.h>
  29. #include <linux/bitmap.h>
  30. #include <linux/dma-fence.h>
  31. struct pci_dev;
  32. #define KFD_INTERFACE_VERSION 2
  33. #define KGD_MAX_QUEUES 128
  34. struct kfd_dev;
  35. struct kgd_dev;
  36. struct kgd_mem;
  37. enum kfd_preempt_type {
  38. KFD_PREEMPT_TYPE_WAVEFRONT_DRAIN = 0,
  39. KFD_PREEMPT_TYPE_WAVEFRONT_RESET,
  40. };
  41. struct kfd_vm_fault_info {
  42. uint64_t page_addr;
  43. uint32_t vmid;
  44. uint32_t mc_id;
  45. uint32_t status;
  46. bool prot_valid;
  47. bool prot_read;
  48. bool prot_write;
  49. bool prot_exec;
  50. };
  51. struct kfd_cu_info {
  52. uint32_t num_shader_engines;
  53. uint32_t num_shader_arrays_per_engine;
  54. uint32_t num_cu_per_sh;
  55. uint32_t cu_active_number;
  56. uint32_t cu_ao_mask;
  57. uint32_t simd_per_cu;
  58. uint32_t max_waves_per_simd;
  59. uint32_t wave_front_size;
  60. uint32_t max_scratch_slots_per_cu;
  61. uint32_t lds_size;
  62. uint32_t cu_bitmap[4][4];
  63. };
  64. /* For getting GPU local memory information from KGD */
  65. struct kfd_local_mem_info {
  66. uint64_t local_mem_size_private;
  67. uint64_t local_mem_size_public;
  68. uint32_t vram_width;
  69. uint32_t mem_clk_max;
  70. };
  71. enum kgd_memory_pool {
  72. KGD_POOL_SYSTEM_CACHEABLE = 1,
  73. KGD_POOL_SYSTEM_WRITECOMBINE = 2,
  74. KGD_POOL_FRAMEBUFFER = 3,
  75. };
  76. enum kgd_engine_type {
  77. KGD_ENGINE_PFP = 1,
  78. KGD_ENGINE_ME,
  79. KGD_ENGINE_CE,
  80. KGD_ENGINE_MEC1,
  81. KGD_ENGINE_MEC2,
  82. KGD_ENGINE_RLC,
  83. KGD_ENGINE_SDMA1,
  84. KGD_ENGINE_SDMA2,
  85. KGD_ENGINE_MAX
  86. };
  87. struct kgd2kfd_shared_resources {
  88. /* Bit n == 1 means VMID n is available for KFD. */
  89. unsigned int compute_vmid_bitmap;
  90. /* number of pipes per mec */
  91. uint32_t num_pipe_per_mec;
  92. /* number of queues per pipe */
  93. uint32_t num_queue_per_pipe;
  94. /* Bit n == 1 means Queue n is available for KFD */
  95. DECLARE_BITMAP(queue_bitmap, KGD_MAX_QUEUES);
  96. /* Doorbell assignments (SOC15 and later chips only). Only
  97. * specific doorbells are routed to each SDMA engine. Others
  98. * are routed to IH and VCN. They are not usable by the CP.
  99. *
  100. * Any doorbell number D that satisfies the following condition
  101. * is reserved: (D & reserved_doorbell_mask) == reserved_doorbell_val
  102. *
  103. * KFD currently uses 1024 (= 0x3ff) doorbells per process. If
  104. * doorbells 0x0f0-0x0f7 and 0x2f-0x2f7 are reserved, that means
  105. * mask would be set to 0x1f8 and val set to 0x0f0.
  106. */
  107. unsigned int sdma_doorbell[2][2];
  108. unsigned int reserved_doorbell_mask;
  109. unsigned int reserved_doorbell_val;
  110. /* Base address of doorbell aperture. */
  111. phys_addr_t doorbell_physical_address;
  112. /* Size in bytes of doorbell aperture. */
  113. size_t doorbell_aperture_size;
  114. /* Number of bytes at start of aperture reserved for KGD. */
  115. size_t doorbell_start_offset;
  116. /* GPUVM address space size in bytes */
  117. uint64_t gpuvm_size;
  118. /* Minor device number of the render node */
  119. int drm_render_minor;
  120. };
  121. struct tile_config {
  122. uint32_t *tile_config_ptr;
  123. uint32_t *macro_tile_config_ptr;
  124. uint32_t num_tile_configs;
  125. uint32_t num_macro_tile_configs;
  126. uint32_t gb_addr_config;
  127. uint32_t num_banks;
  128. uint32_t num_ranks;
  129. };
  130. /*
  131. * Allocation flag domains
  132. * NOTE: This must match the corresponding definitions in kfd_ioctl.h.
  133. */
  134. #define ALLOC_MEM_FLAGS_VRAM (1 << 0)
  135. #define ALLOC_MEM_FLAGS_GTT (1 << 1)
  136. #define ALLOC_MEM_FLAGS_USERPTR (1 << 2) /* TODO */
  137. #define ALLOC_MEM_FLAGS_DOORBELL (1 << 3) /* TODO */
  138. /*
  139. * Allocation flags attributes/access options.
  140. * NOTE: This must match the corresponding definitions in kfd_ioctl.h.
  141. */
  142. #define ALLOC_MEM_FLAGS_WRITABLE (1 << 31)
  143. #define ALLOC_MEM_FLAGS_EXECUTABLE (1 << 30)
  144. #define ALLOC_MEM_FLAGS_PUBLIC (1 << 29)
  145. #define ALLOC_MEM_FLAGS_NO_SUBSTITUTE (1 << 28) /* TODO */
  146. #define ALLOC_MEM_FLAGS_AQL_QUEUE_MEM (1 << 27)
  147. #define ALLOC_MEM_FLAGS_COHERENT (1 << 26) /* For GFXv9 or later */
  148. /**
  149. * struct kfd2kgd_calls
  150. *
  151. * @init_gtt_mem_allocation: Allocate a buffer on the gart aperture.
  152. * The buffer can be used for mqds, hpds, kernel queue, fence and runlists
  153. *
  154. * @free_gtt_mem: Frees a buffer that was allocated on the gart aperture
  155. *
  156. * @get_local_mem_info: Retrieves information about GPU local memory
  157. *
  158. * @get_gpu_clock_counter: Retrieves GPU clock counter
  159. *
  160. * @get_max_engine_clock_in_mhz: Retrieves maximum GPU clock in MHz
  161. *
  162. * @alloc_pasid: Allocate a PASID
  163. * @free_pasid: Free a PASID
  164. *
  165. * @program_sh_mem_settings: A function that should initiate the memory
  166. * properties such as main aperture memory type (cache / non cached) and
  167. * secondary aperture base address, size and memory type.
  168. * This function is used only for no cp scheduling mode.
  169. *
  170. * @set_pasid_vmid_mapping: Exposes pasid/vmid pair to the H/W for no cp
  171. * scheduling mode. Only used for no cp scheduling mode.
  172. *
  173. * @hqd_load: Loads the mqd structure to a H/W hqd slot. used only for no cp
  174. * sceduling mode.
  175. *
  176. * @hqd_sdma_load: Loads the SDMA mqd structure to a H/W SDMA hqd slot.
  177. * used only for no HWS mode.
  178. *
  179. * @hqd_dump: Dumps CPC HQD registers to an array of address-value pairs.
  180. * Array is allocated with kmalloc, needs to be freed with kfree by caller.
  181. *
  182. * @hqd_sdma_dump: Dumps SDMA HQD registers to an array of address-value pairs.
  183. * Array is allocated with kmalloc, needs to be freed with kfree by caller.
  184. *
  185. * @hqd_is_occupies: Checks if a hqd slot is occupied.
  186. *
  187. * @hqd_destroy: Destructs and preempts the queue assigned to that hqd slot.
  188. *
  189. * @hqd_sdma_is_occupied: Checks if an SDMA hqd slot is occupied.
  190. *
  191. * @hqd_sdma_destroy: Destructs and preempts the SDMA queue assigned to that
  192. * SDMA hqd slot.
  193. *
  194. * @get_fw_version: Returns FW versions from the header
  195. *
  196. * @set_scratch_backing_va: Sets VA for scratch backing memory of a VMID.
  197. * Only used for no cp scheduling mode
  198. *
  199. * @get_tile_config: Returns GPU-specific tiling mode information
  200. *
  201. * @get_cu_info: Retrieves activated cu info
  202. *
  203. * @get_vram_usage: Returns current VRAM usage
  204. *
  205. * @create_process_vm: Create a VM address space for a given process and GPU
  206. *
  207. * @destroy_process_vm: Destroy a VM
  208. *
  209. * @get_process_page_dir: Get physical address of a VM page directory
  210. *
  211. * @set_vm_context_page_table_base: Program page table base for a VMID
  212. *
  213. * @alloc_memory_of_gpu: Allocate GPUVM memory
  214. *
  215. * @free_memory_of_gpu: Free GPUVM memory
  216. *
  217. * @map_memory_to_gpu: Map GPUVM memory into a specific VM address
  218. * space. Allocates and updates page tables and page directories as
  219. * needed. This function may return before all page table updates have
  220. * completed. This allows multiple map operations (on multiple GPUs)
  221. * to happen concurrently. Use sync_memory to synchronize with all
  222. * pending updates.
  223. *
  224. * @unmap_memor_to_gpu: Unmap GPUVM memory from a specific VM address space
  225. *
  226. * @sync_memory: Wait for pending page table updates to complete
  227. *
  228. * @map_gtt_bo_to_kernel: Map a GTT BO for kernel access
  229. * Pins the BO, maps it to kernel address space. Such BOs are never evicted.
  230. * The kernel virtual address remains valid until the BO is freed.
  231. *
  232. * @restore_process_bos: Restore all BOs that belong to the
  233. * process. This is intended for restoring memory mappings after a TTM
  234. * eviction.
  235. *
  236. * @invalidate_tlbs: Invalidate TLBs for a specific PASID
  237. *
  238. * @invalidate_tlbs_vmid: Invalidate TLBs for a specific VMID
  239. *
  240. * @submit_ib: Submits an IB to the engine specified by inserting the
  241. * IB to the corresponding ring (ring type). The IB is executed with the
  242. * specified VMID in a user mode context.
  243. *
  244. * @get_vm_fault_info: Return information about a recent VM fault on
  245. * GFXv7 and v8. If multiple VM faults occurred since the last call of
  246. * this function, it will return information about the first of those
  247. * faults. On GFXv9 VM fault information is fully contained in the IH
  248. * packet and this function is not needed.
  249. *
  250. * @read_vmid_from_vmfault_reg: On Hawaii the VMID is not set in the
  251. * IH ring entry. This function allows the KFD ISR to get the VMID
  252. * from the fault status register as early as possible.
  253. *
  254. * @gpu_recover: let kgd reset gpu after kfd detect CPC hang
  255. *
  256. * @set_compute_idle: Indicates that compute is idle on a device. This
  257. * can be used to change power profiles depending on compute activity.
  258. *
  259. * This structure contains function pointers to services that the kgd driver
  260. * provides to amdkfd driver.
  261. *
  262. */
  263. struct kfd2kgd_calls {
  264. int (*init_gtt_mem_allocation)(struct kgd_dev *kgd, size_t size,
  265. void **mem_obj, uint64_t *gpu_addr,
  266. void **cpu_ptr, bool mqd_gfx9);
  267. void (*free_gtt_mem)(struct kgd_dev *kgd, void *mem_obj);
  268. void (*get_local_mem_info)(struct kgd_dev *kgd,
  269. struct kfd_local_mem_info *mem_info);
  270. uint64_t (*get_gpu_clock_counter)(struct kgd_dev *kgd);
  271. uint32_t (*get_max_engine_clock_in_mhz)(struct kgd_dev *kgd);
  272. int (*alloc_pasid)(unsigned int bits);
  273. void (*free_pasid)(unsigned int pasid);
  274. /* Register access functions */
  275. void (*program_sh_mem_settings)(struct kgd_dev *kgd, uint32_t vmid,
  276. uint32_t sh_mem_config, uint32_t sh_mem_ape1_base,
  277. uint32_t sh_mem_ape1_limit, uint32_t sh_mem_bases);
  278. int (*set_pasid_vmid_mapping)(struct kgd_dev *kgd, unsigned int pasid,
  279. unsigned int vmid);
  280. int (*init_interrupts)(struct kgd_dev *kgd, uint32_t pipe_id);
  281. int (*hqd_load)(struct kgd_dev *kgd, void *mqd, uint32_t pipe_id,
  282. uint32_t queue_id, uint32_t __user *wptr,
  283. uint32_t wptr_shift, uint32_t wptr_mask,
  284. struct mm_struct *mm);
  285. int (*hqd_sdma_load)(struct kgd_dev *kgd, void *mqd,
  286. uint32_t __user *wptr, struct mm_struct *mm);
  287. int (*hqd_dump)(struct kgd_dev *kgd,
  288. uint32_t pipe_id, uint32_t queue_id,
  289. uint32_t (**dump)[2], uint32_t *n_regs);
  290. int (*hqd_sdma_dump)(struct kgd_dev *kgd,
  291. uint32_t engine_id, uint32_t queue_id,
  292. uint32_t (**dump)[2], uint32_t *n_regs);
  293. bool (*hqd_is_occupied)(struct kgd_dev *kgd, uint64_t queue_address,
  294. uint32_t pipe_id, uint32_t queue_id);
  295. int (*hqd_destroy)(struct kgd_dev *kgd, void *mqd, uint32_t reset_type,
  296. unsigned int timeout, uint32_t pipe_id,
  297. uint32_t queue_id);
  298. bool (*hqd_sdma_is_occupied)(struct kgd_dev *kgd, void *mqd);
  299. int (*hqd_sdma_destroy)(struct kgd_dev *kgd, void *mqd,
  300. unsigned int timeout);
  301. int (*address_watch_disable)(struct kgd_dev *kgd);
  302. int (*address_watch_execute)(struct kgd_dev *kgd,
  303. unsigned int watch_point_id,
  304. uint32_t cntl_val,
  305. uint32_t addr_hi,
  306. uint32_t addr_lo);
  307. int (*wave_control_execute)(struct kgd_dev *kgd,
  308. uint32_t gfx_index_val,
  309. uint32_t sq_cmd);
  310. uint32_t (*address_watch_get_offset)(struct kgd_dev *kgd,
  311. unsigned int watch_point_id,
  312. unsigned int reg_offset);
  313. bool (*get_atc_vmid_pasid_mapping_valid)(
  314. struct kgd_dev *kgd,
  315. uint8_t vmid);
  316. uint16_t (*get_atc_vmid_pasid_mapping_pasid)(
  317. struct kgd_dev *kgd,
  318. uint8_t vmid);
  319. uint16_t (*get_fw_version)(struct kgd_dev *kgd,
  320. enum kgd_engine_type type);
  321. void (*set_scratch_backing_va)(struct kgd_dev *kgd,
  322. uint64_t va, uint32_t vmid);
  323. int (*get_tile_config)(struct kgd_dev *kgd, struct tile_config *config);
  324. void (*get_cu_info)(struct kgd_dev *kgd,
  325. struct kfd_cu_info *cu_info);
  326. uint64_t (*get_vram_usage)(struct kgd_dev *kgd);
  327. int (*create_process_vm)(struct kgd_dev *kgd, void **vm,
  328. void **process_info, struct dma_fence **ef);
  329. int (*acquire_process_vm)(struct kgd_dev *kgd, struct file *filp,
  330. void **vm, void **process_info, struct dma_fence **ef);
  331. void (*destroy_process_vm)(struct kgd_dev *kgd, void *vm);
  332. uint32_t (*get_process_page_dir)(void *vm);
  333. void (*set_vm_context_page_table_base)(struct kgd_dev *kgd,
  334. uint32_t vmid, uint32_t page_table_base);
  335. int (*alloc_memory_of_gpu)(struct kgd_dev *kgd, uint64_t va,
  336. uint64_t size, void *vm,
  337. struct kgd_mem **mem, uint64_t *offset,
  338. uint32_t flags);
  339. int (*free_memory_of_gpu)(struct kgd_dev *kgd, struct kgd_mem *mem);
  340. int (*map_memory_to_gpu)(struct kgd_dev *kgd, struct kgd_mem *mem,
  341. void *vm);
  342. int (*unmap_memory_to_gpu)(struct kgd_dev *kgd, struct kgd_mem *mem,
  343. void *vm);
  344. int (*sync_memory)(struct kgd_dev *kgd, struct kgd_mem *mem, bool intr);
  345. int (*map_gtt_bo_to_kernel)(struct kgd_dev *kgd, struct kgd_mem *mem,
  346. void **kptr, uint64_t *size);
  347. int (*restore_process_bos)(void *process_info, struct dma_fence **ef);
  348. int (*invalidate_tlbs)(struct kgd_dev *kgd, uint16_t pasid);
  349. int (*invalidate_tlbs_vmid)(struct kgd_dev *kgd, uint16_t vmid);
  350. int (*submit_ib)(struct kgd_dev *kgd, enum kgd_engine_type engine,
  351. uint32_t vmid, uint64_t gpu_addr,
  352. uint32_t *ib_cmd, uint32_t ib_len);
  353. int (*get_vm_fault_info)(struct kgd_dev *kgd,
  354. struct kfd_vm_fault_info *info);
  355. uint32_t (*read_vmid_from_vmfault_reg)(struct kgd_dev *kgd);
  356. void (*gpu_recover)(struct kgd_dev *kgd);
  357. void (*set_compute_idle)(struct kgd_dev *kgd, bool idle);
  358. };
  359. /**
  360. * struct kgd2kfd_calls
  361. *
  362. * @exit: Notifies amdkfd that kgd module is unloaded
  363. *
  364. * @probe: Notifies amdkfd about a probe done on a device in the kgd driver.
  365. *
  366. * @device_init: Initialize the newly probed device (if it is a device that
  367. * amdkfd supports)
  368. *
  369. * @device_exit: Notifies amdkfd about a removal of a kgd device
  370. *
  371. * @suspend: Notifies amdkfd about a suspend action done to a kgd device
  372. *
  373. * @resume: Notifies amdkfd about a resume action done to a kgd device
  374. *
  375. * @quiesce_mm: Quiesce all user queue access to specified MM address space
  376. *
  377. * @resume_mm: Resume user queue access to specified MM address space
  378. *
  379. * @schedule_evict_and_restore_process: Schedules work queue that will prepare
  380. * for safe eviction of KFD BOs that belong to the specified process.
  381. *
  382. * @pre_reset: Notifies amdkfd that amdgpu about to reset the gpu
  383. *
  384. * @post_reset: Notify amdkfd that amgpu successfully reseted the gpu
  385. *
  386. * This structure contains function callback pointers so the kgd driver
  387. * will notify to the amdkfd about certain status changes.
  388. *
  389. */
  390. struct kgd2kfd_calls {
  391. void (*exit)(void);
  392. struct kfd_dev* (*probe)(struct kgd_dev *kgd, struct pci_dev *pdev,
  393. const struct kfd2kgd_calls *f2g);
  394. bool (*device_init)(struct kfd_dev *kfd,
  395. const struct kgd2kfd_shared_resources *gpu_resources);
  396. void (*device_exit)(struct kfd_dev *kfd);
  397. void (*interrupt)(struct kfd_dev *kfd, const void *ih_ring_entry);
  398. void (*suspend)(struct kfd_dev *kfd);
  399. int (*resume)(struct kfd_dev *kfd);
  400. int (*quiesce_mm)(struct mm_struct *mm);
  401. int (*resume_mm)(struct mm_struct *mm);
  402. int (*schedule_evict_and_restore_process)(struct mm_struct *mm,
  403. struct dma_fence *fence);
  404. int (*pre_reset)(struct kfd_dev *kfd);
  405. int (*post_reset)(struct kfd_dev *kfd);
  406. };
  407. int kgd2kfd_init(unsigned interface_version,
  408. const struct kgd2kfd_calls **g2f);
  409. #endif /* KGD_KFD_INTERFACE_H_INCLUDED */