blob: 872a1da4c02eea06a332f03ee6389a1dd3bec5ca [file] [log] [blame]
Oded Gabbay4a488a72014-07-16 21:08:55 +03001/*
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#ifndef KFD_PRIV_H_INCLUDED
24#define KFD_PRIV_H_INCLUDED
25
26#include <linux/hashtable.h>
27#include <linux/mmu_notifier.h>
28#include <linux/mutex.h>
29#include <linux/types.h>
30#include <linux/atomic.h>
31#include <linux/workqueue.h>
32#include <linux/spinlock.h>
Oded Gabbay19f6d2a2014-07-16 23:25:31 +030033#include <linux/kfd_ioctl.h>
Oded Gabbay4a488a72014-07-16 21:08:55 +030034#include <kgd_kfd_interface.h>
35
Evgeny Pinchuk5b5c4e42014-07-16 21:22:32 +030036#define KFD_SYSFS_FILE_MODE 0444
37
Ben Gozed6e6a32014-07-17 00:45:35 +030038/*
39 * When working with cp scheduler we should assign the HIQ manually or via
40 * the radeon driver to a fixed hqd slot, here are the fixed HIQ hqd slot
41 * definitions for Kaveri. In Kaveri only the first ME queues participates
42 * in the cp scheduling taking that in mind we set the HIQ slot in the
43 * second ME.
44 */
45#define KFD_CIK_HIQ_PIPE 4
46#define KFD_CIK_HIQ_QUEUE 0
47
Evgeny Pinchuk5b5c4e42014-07-16 21:22:32 +030048/* GPU ID hash width in bits */
49#define KFD_GPU_ID_HASH_WIDTH 16
50
51/* Macro for allocating structures */
52#define kfd_alloc_struct(ptr_to_struct) \
53 ((typeof(ptr_to_struct)) kzalloc(sizeof(*ptr_to_struct), GFP_KERNEL))
54
Oded Gabbay19f6d2a2014-07-16 23:25:31 +030055/* Kernel module parameter to specify maximum number of supported processes */
56extern int max_num_of_processes;
57
58#define KFD_MAX_NUM_OF_PROCESSES_DEFAULT 32
59#define KFD_MAX_NUM_OF_PROCESSES 512
60
61/*
62 * Kernel module parameter to specify maximum number of supported queues
63 * per process
64 */
65extern int max_num_of_queues_per_process;
66
67#define KFD_MAX_NUM_OF_QUEUES_PER_PROCESS_DEFAULT 128
68#define KFD_MAX_NUM_OF_QUEUES_PER_PROCESS 1024
69
Ben Gozed6e6a32014-07-17 00:45:35 +030070#define KFD_KERNEL_QUEUE_SIZE 2048
71
Ben Goz31c21fe2014-07-17 00:48:28 +030072/* Kernel module parameter to specify the scheduling policy */
73extern int sched_policy;
74
75/**
76 * enum kfd_sched_policy
77 *
78 * @KFD_SCHED_POLICY_HWS: H/W scheduling policy known as command processor (cp)
79 * scheduling. In this scheduling mode we're using the firmware code to
80 * schedule the user mode queues and kernel queues such as HIQ and DIQ.
81 * the HIQ queue is used as a special queue that dispatches the configuration
82 * to the cp and the user mode queues list that are currently running.
83 * the DIQ queue is a debugging queue that dispatches debugging commands to the
84 * firmware.
85 * in this scheduling mode user mode queues over subscription feature is
86 * enabled.
87 *
88 * @KFD_SCHED_POLICY_HWS_NO_OVERSUBSCRIPTION: The same as above but the over
89 * subscription feature disabled.
90 *
91 * @KFD_SCHED_POLICY_NO_HWS: no H/W scheduling policy is a mode which directly
92 * set the command processor registers and sets the queues "manually". This
93 * mode is used *ONLY* for debugging proposes.
94 *
95 */
96enum kfd_sched_policy {
97 KFD_SCHED_POLICY_HWS = 0,
98 KFD_SCHED_POLICY_HWS_NO_OVERSUBSCRIPTION,
99 KFD_SCHED_POLICY_NO_HWS
100};
101
Ben Gozed6e6a32014-07-17 00:45:35 +0300102enum cache_policy {
103 cache_policy_coherent,
104 cache_policy_noncoherent
105};
106
Ben Goz0da75582015-01-01 17:10:01 +0200107enum asic_family_type {
108 CHIP_KAVERI = 0,
109 CHIP_CARRIZO
110};
111
Oded Gabbay4a488a72014-07-16 21:08:55 +0300112struct kfd_device_info {
Ben Goz0da75582015-01-01 17:10:01 +0200113 unsigned int asic_family;
Oded Gabbay4a488a72014-07-16 21:08:55 +0300114 unsigned int max_pasid_bits;
115 size_t ih_ring_entry_size;
Alexey Skidanovf7c826a2014-10-13 16:35:12 +0300116 uint8_t num_of_watch_points;
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300117 uint16_t mqd_size_aligned;
Oded Gabbay4a488a72014-07-16 21:08:55 +0300118};
119
Oded Gabbay36b5c082014-10-26 09:53:10 +0200120struct kfd_mem_obj {
121 uint32_t range_start;
122 uint32_t range_end;
123 uint64_t gpu_addr;
124 uint32_t *cpu_ptr;
125};
126
Oded Gabbay4a488a72014-07-16 21:08:55 +0300127struct kfd_dev {
128 struct kgd_dev *kgd;
129
130 const struct kfd_device_info *device_info;
131 struct pci_dev *pdev;
132
133 unsigned int id; /* topology stub index */
134
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300135 phys_addr_t doorbell_base; /* Start of actual doorbells used by
136 * KFD. It is aligned for mapping
137 * into user mode
138 */
139 size_t doorbell_id_offset; /* Doorbell offset (from KFD doorbell
140 * to HW doorbell, GFX reserved some
141 * at the start)
142 */
143 size_t doorbell_process_limit; /* Number of processes we have doorbell
144 * space for.
145 */
146 u32 __iomem *doorbell_kernel_ptr; /* This is a pointer for a doorbells
147 * page used by kernel queue
148 */
149
Oded Gabbay4a488a72014-07-16 21:08:55 +0300150 struct kgd2kfd_shared_resources shared_resources;
151
Oded Gabbay36b5c082014-10-26 09:53:10 +0200152 void *gtt_mem;
153 uint64_t gtt_start_gpu_addr;
154 void *gtt_start_cpu_ptr;
155 void *gtt_sa_bitmap;
156 struct mutex gtt_sa_lock;
157 unsigned int gtt_sa_chunk_size;
158 unsigned int gtt_sa_num_of_chunks;
159
Andrew Lewyckyb3f5e6b2014-07-17 01:37:30 +0300160 void *interrupt_ring;
161 size_t interrupt_ring_size;
162 atomic_t interrupt_ring_rptr;
163 atomic_t interrupt_ring_wptr;
164 struct work_struct interrupt_work;
165 spinlock_t interrupt_lock;
166
Ben Gozed6e6a32014-07-17 00:45:35 +0300167 /* QCM Device instance */
168 struct device_queue_manager *dqm;
Oded Gabbay4a488a72014-07-16 21:08:55 +0300169
Ben Gozed6e6a32014-07-17 00:45:35 +0300170 bool init_complete;
Andrew Lewyckyb3f5e6b2014-07-17 01:37:30 +0300171 /*
172 * Interrupts of interest to KFD are copied
173 * from the HW ring into a SW ring.
174 */
175 bool interrupts_active;
Oded Gabbay4a488a72014-07-16 21:08:55 +0300176};
177
178/* KGD2KFD callbacks */
179void kgd2kfd_exit(void);
180struct kfd_dev *kgd2kfd_probe(struct kgd_dev *kgd, struct pci_dev *pdev);
181bool kgd2kfd_device_init(struct kfd_dev *kfd,
182 const struct kgd2kfd_shared_resources *gpu_resources);
183void kgd2kfd_device_exit(struct kfd_dev *kfd);
184
185extern const struct kfd2kgd_calls *kfd2kgd;
186
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300187enum kfd_mempool {
188 KFD_MEMPOOL_SYSTEM_CACHEABLE = 1,
189 KFD_MEMPOOL_SYSTEM_WRITECOMBINE = 2,
190 KFD_MEMPOOL_FRAMEBUFFER = 3,
191};
192
Oded Gabbay4a488a72014-07-16 21:08:55 +0300193/* Character device interface */
194int kfd_chardev_init(void);
195void kfd_chardev_exit(void);
196struct device *kfd_chardev(void);
197
Ben Goz241f24f2014-07-17 00:55:28 +0300198/**
199 * enum kfd_preempt_type_filter
200 *
201 * @KFD_PREEMPT_TYPE_FILTER_SINGLE_QUEUE: Preempts single queue.
202 *
203 * @KFD_PRERMPT_TYPE_FILTER_ALL_QUEUES: Preempts all queues in the
204 * running queues list.
205 *
206 * @KFD_PRERMPT_TYPE_FILTER_BY_PASID: Preempts queues that belongs to
207 * specific process.
208 *
209 */
210enum kfd_preempt_type_filter {
211 KFD_PREEMPT_TYPE_FILTER_SINGLE_QUEUE,
212 KFD_PREEMPT_TYPE_FILTER_ALL_QUEUES,
213 KFD_PREEMPT_TYPE_FILTER_BY_PASID
214};
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300215
Ben Goz6e99df52014-07-17 00:36:17 +0300216enum kfd_preempt_type {
217 KFD_PREEMPT_TYPE_WAVEFRONT,
218 KFD_PREEMPT_TYPE_WAVEFRONT_RESET
219};
220
Ben Gozed8aab42014-07-17 00:18:51 +0300221/**
222 * enum kfd_queue_type
223 *
224 * @KFD_QUEUE_TYPE_COMPUTE: Regular user mode queue type.
225 *
226 * @KFD_QUEUE_TYPE_SDMA: Sdma user mode queue type.
227 *
228 * @KFD_QUEUE_TYPE_HIQ: HIQ queue type.
229 *
230 * @KFD_QUEUE_TYPE_DIQ: DIQ queue type.
231 */
232enum kfd_queue_type {
233 KFD_QUEUE_TYPE_COMPUTE,
234 KFD_QUEUE_TYPE_SDMA,
235 KFD_QUEUE_TYPE_HIQ,
236 KFD_QUEUE_TYPE_DIQ
237};
238
Ben Goz6e99df52014-07-17 00:36:17 +0300239enum kfd_queue_format {
240 KFD_QUEUE_FORMAT_PM4,
241 KFD_QUEUE_FORMAT_AQL
242};
243
Ben Gozed8aab42014-07-17 00:18:51 +0300244/**
245 * struct queue_properties
246 *
247 * @type: The queue type.
248 *
249 * @queue_id: Queue identifier.
250 *
251 * @queue_address: Queue ring buffer address.
252 *
253 * @queue_size: Queue ring buffer size.
254 *
255 * @priority: Defines the queue priority relative to other queues in the
256 * process.
257 * This is just an indication and HW scheduling may override the priority as
258 * necessary while keeping the relative prioritization.
259 * the priority granularity is from 0 to f which f is the highest priority.
260 * currently all queues are initialized with the highest priority.
261 *
262 * @queue_percent: This field is partially implemented and currently a zero in
263 * this field defines that the queue is non active.
264 *
265 * @read_ptr: User space address which points to the number of dwords the
266 * cp read from the ring buffer. This field updates automatically by the H/W.
267 *
268 * @write_ptr: Defines the number of dwords written to the ring buffer.
269 *
270 * @doorbell_ptr: This field aim is to notify the H/W of new packet written to
271 * the queue ring buffer. This field should be similar to write_ptr and the user
272 * should update this field after he updated the write_ptr.
273 *
274 * @doorbell_off: The doorbell offset in the doorbell pci-bar.
275 *
276 * @is_interop: Defines if this is a interop queue. Interop queue means that the
277 * queue can access both graphics and compute resources.
278 *
279 * @is_active: Defines if the queue is active or not.
280 *
281 * @vmid: If the scheduling mode is no cp scheduling the field defines the vmid
282 * of the queue.
283 *
284 * This structure represents the queue properties for each queue no matter if
285 * it's user mode or kernel mode queue.
286 *
287 */
288struct queue_properties {
289 enum kfd_queue_type type;
Ben Goz6e99df52014-07-17 00:36:17 +0300290 enum kfd_queue_format format;
Ben Gozed8aab42014-07-17 00:18:51 +0300291 unsigned int queue_id;
292 uint64_t queue_address;
293 uint64_t queue_size;
294 uint32_t priority;
295 uint32_t queue_percent;
296 uint32_t *read_ptr;
297 uint32_t *write_ptr;
Oded Gabbay5cd78de2014-11-20 16:14:56 +0200298 uint32_t __iomem *doorbell_ptr;
Ben Gozed8aab42014-07-17 00:18:51 +0300299 uint32_t doorbell_off;
300 bool is_interop;
301 bool is_active;
302 /* Not relevant for user mode queues in cp scheduling */
303 unsigned int vmid;
Ben Goz77669eb2015-01-03 22:12:31 +0200304 /* Relevant only for sdma queues*/
305 uint32_t sdma_engine_id;
306 uint32_t sdma_queue_id;
307 uint32_t sdma_vm_addr;
Ben Gozff3d04a2015-01-04 10:37:18 +0200308 /* Relevant only for VI */
309 uint64_t eop_ring_buffer_address;
310 uint32_t eop_ring_buffer_size;
311 uint64_t ctx_save_restore_area_address;
312 uint32_t ctx_save_restore_area_size;
Ben Gozed8aab42014-07-17 00:18:51 +0300313};
314
315/**
316 * struct queue
317 *
318 * @list: Queue linked list.
319 *
320 * @mqd: The queue MQD.
321 *
322 * @mqd_mem_obj: The MQD local gpu memory object.
323 *
324 * @gart_mqd_addr: The MQD gart mc address.
325 *
326 * @properties: The queue properties.
327 *
328 * @mec: Used only in no cp scheduling mode and identifies to micro engine id
329 * that the queue should be execute on.
330 *
331 * @pipe: Used only in no cp scheduling mode and identifies the queue's pipe id.
332 *
333 * @queue: Used only in no cp scheduliong mode and identifies the queue's slot.
334 *
335 * @process: The kfd process that created this queue.
336 *
337 * @device: The kfd device that created this queue.
338 *
339 * This structure represents user mode compute queues.
340 * It contains all the necessary data to handle such queues.
341 *
342 */
343
344struct queue {
345 struct list_head list;
346 void *mqd;
347 struct kfd_mem_obj *mqd_mem_obj;
348 uint64_t gart_mqd_addr;
349 struct queue_properties properties;
350
351 uint32_t mec;
352 uint32_t pipe;
353 uint32_t queue;
354
Ben Goz77669eb2015-01-03 22:12:31 +0200355 unsigned int sdma_id;
356
Ben Gozed8aab42014-07-17 00:18:51 +0300357 struct kfd_process *process;
358 struct kfd_dev *device;
359};
360
Ben Goz6e99df52014-07-17 00:36:17 +0300361/*
362 * Please read the kfd_mqd_manager.h description.
363 */
364enum KFD_MQD_TYPE {
Ben Goz85d258f2015-01-04 10:36:30 +0200365 KFD_MQD_TYPE_COMPUTE = 0, /* for no cp scheduling */
366 KFD_MQD_TYPE_HIQ, /* for hiq */
367 KFD_MQD_TYPE_CP, /* for cp queues and diq */
368 KFD_MQD_TYPE_SDMA, /* for sdma queues */
Ben Goz6e99df52014-07-17 00:36:17 +0300369 KFD_MQD_TYPE_MAX
370};
371
Ben Goz241f24f2014-07-17 00:55:28 +0300372struct scheduling_resources {
373 unsigned int vmid_mask;
374 enum kfd_queue_type type;
375 uint64_t queue_mask;
376 uint64_t gws_mask;
377 uint32_t oac_mask;
378 uint32_t gds_heap_base;
379 uint32_t gds_heap_size;
380};
381
382struct process_queue_manager {
383 /* data */
384 struct kfd_process *process;
385 unsigned int num_concurrent_processes;
386 struct list_head queues;
387 unsigned long *queue_slot_bitmap;
388};
389
390struct qcm_process_device {
391 /* The Device Queue Manager that owns this data */
392 struct device_queue_manager *dqm;
393 struct process_queue_manager *pqm;
394 /* Device Queue Manager lock */
395 struct mutex *lock;
396 /* Queues list */
397 struct list_head queues_list;
398 struct list_head priv_queue_list;
399
400 unsigned int queue_count;
401 unsigned int vmid;
402 bool is_debug;
403 /*
404 * All the memory management data should be here too
405 */
406 uint64_t gds_context_area;
407 uint32_t sh_mem_config;
408 uint32_t sh_mem_bases;
409 uint32_t sh_mem_ape1_base;
410 uint32_t sh_mem_ape1_limit;
411 uint32_t page_table_base;
412 uint32_t gds_size;
413 uint32_t num_gws;
414 uint32_t num_oac;
415};
416
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300417/* Data that is per-process-per device. */
418struct kfd_process_device {
419 /*
420 * List of all per-device data for a process.
421 * Starts from kfd_process.per_device_data.
422 */
423 struct list_head per_device_list;
424
425 /* The device that owns this data. */
426 struct kfd_dev *dev;
427
428
Ben Goz45102042014-07-17 01:04:10 +0300429 /* per-process-per device QCM data structure */
430 struct qcm_process_device qpd;
431
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300432 /*Apertures*/
433 uint64_t lds_base;
434 uint64_t lds_limit;
435 uint64_t gpuvm_base;
436 uint64_t gpuvm_limit;
437 uint64_t scratch_base;
438 uint64_t scratch_limit;
439
440 /* Is this process/pasid bound to this device? (amd_iommu_bind_pasid) */
441 bool bound;
442};
443
Alexey Skidanov52a5fdc2014-11-19 17:07:00 +0200444#define qpd_to_pdd(x) container_of(x, struct kfd_process_device, qpd)
445
Oded Gabbay4a488a72014-07-16 21:08:55 +0300446/* Process data */
447struct kfd_process {
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300448 /*
449 * kfd_process are stored in an mm_struct*->kfd_process*
450 * hash table (kfd_processes in kfd_process.c)
451 */
452 struct hlist_node kfd_processes;
453
454 struct mm_struct *mm;
455
456 struct mutex mutex;
457
458 /*
459 * In any process, the thread that started main() is the lead
460 * thread and outlives the rest.
461 * It is here because amd_iommu_bind_pasid wants a task_struct.
462 */
463 struct task_struct *lead_thread;
464
465 /* We want to receive a notification when the mm_struct is destroyed */
466 struct mmu_notifier mmu_notifier;
467
468 /* Use for delayed freeing of kfd_process structure */
469 struct rcu_head rcu;
470
471 unsigned int pasid;
472
473 /*
474 * List of kfd_process_device structures,
475 * one for each device the process is using.
476 */
477 struct list_head per_device_data;
478
Ben Goz45102042014-07-17 01:04:10 +0300479 struct process_queue_manager pqm;
480
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300481 /* The process's queues. */
482 size_t queue_array_size;
483
484 /* Size is queue_array_size, up to MAX_PROCESS_QUEUES. */
485 struct kfd_queue **queues;
486
487 unsigned long allocated_queue_bitmap[DIV_ROUND_UP(KFD_MAX_NUM_OF_QUEUES_PER_PROCESS, BITS_PER_LONG)];
488
489 /*Is the user space process 32 bit?*/
490 bool is_32bit_user_mode;
Oded Gabbay4a488a72014-07-16 21:08:55 +0300491};
492
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300493void kfd_process_create_wq(void);
494void kfd_process_destroy_wq(void);
495struct kfd_process *kfd_create_process(const struct task_struct *);
496struct kfd_process *kfd_get_process(const struct task_struct *);
497
Ben Goz64c7f8c2014-07-17 01:27:00 +0300498struct kfd_process_device *kfd_bind_process_to_device(struct kfd_dev *dev,
499 struct kfd_process *p);
Oded Gabbayb17f0682014-07-17 00:06:27 +0300500void kfd_unbind_process_from_device(struct kfd_dev *dev, unsigned int pasid);
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300501struct kfd_process_device *kfd_get_process_device_data(struct kfd_dev *dev,
Alexey Skidanov093c7d82014-11-18 14:00:04 +0200502 struct kfd_process *p);
503struct kfd_process_device *kfd_create_process_device_data(struct kfd_dev *dev,
504 struct kfd_process *p);
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300505
Alexey Skidanov775921e2014-07-17 01:49:36 +0300506/* Process device data iterator */
507struct kfd_process_device *kfd_get_first_process_device_data(struct kfd_process *p);
508struct kfd_process_device *kfd_get_next_process_device_data(struct kfd_process *p,
509 struct kfd_process_device *pdd);
510bool kfd_has_process_device_data(struct kfd_process *p);
511
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300512/* PASIDs */
513int kfd_pasid_init(void);
514void kfd_pasid_exit(void);
515bool kfd_set_pasid_limit(unsigned int new_limit);
516unsigned int kfd_get_pasid_limit(void);
517unsigned int kfd_pasid_alloc(void);
518void kfd_pasid_free(unsigned int pasid);
519
520/* Doorbells */
521void kfd_doorbell_init(struct kfd_dev *kfd);
522int kfd_doorbell_mmap(struct kfd_process *process, struct vm_area_struct *vma);
523u32 __iomem *kfd_get_kernel_doorbell(struct kfd_dev *kfd,
524 unsigned int *doorbell_off);
525void kfd_release_kernel_doorbell(struct kfd_dev *kfd, u32 __iomem *db_addr);
526u32 read_kernel_doorbell(u32 __iomem *db);
527void write_kernel_doorbell(u32 __iomem *db, u32 value);
528unsigned int kfd_queue_id_to_doorbell(struct kfd_dev *kfd,
529 struct kfd_process *process,
530 unsigned int queue_id);
531
Oded Gabbay6e810902014-10-27 14:36:07 +0200532/* GTT Sub-Allocator */
533
534int kfd_gtt_sa_allocate(struct kfd_dev *kfd, unsigned int size,
535 struct kfd_mem_obj **mem_obj);
536
537int kfd_gtt_sa_free(struct kfd_dev *kfd, struct kfd_mem_obj *mem_obj);
538
Oded Gabbay4a488a72014-07-16 21:08:55 +0300539extern struct device *kfd_device;
540
Evgeny Pinchuk5b5c4e42014-07-16 21:22:32 +0300541/* Topology */
542int kfd_topology_init(void);
543void kfd_topology_shutdown(void);
544int kfd_topology_add_device(struct kfd_dev *gpu);
545int kfd_topology_remove_device(struct kfd_dev *gpu);
546struct kfd_dev *kfd_device_by_id(uint32_t gpu_id);
547struct kfd_dev *kfd_device_by_pci_dev(const struct pci_dev *pdev);
548struct kfd_dev *kfd_topology_enum_kfd_devices(uint8_t idx);
549
Oded Gabbay4a488a72014-07-16 21:08:55 +0300550/* Interrupts */
Andrew Lewyckyb3f5e6b2014-07-17 01:37:30 +0300551int kfd_interrupt_init(struct kfd_dev *dev);
552void kfd_interrupt_exit(struct kfd_dev *dev);
553void kgd2kfd_interrupt(struct kfd_dev *kfd, const void *ih_ring_entry);
554bool enqueue_ih_ring_entry(struct kfd_dev *kfd, const void *ih_ring_entry);
Oded Gabbay4a488a72014-07-16 21:08:55 +0300555
556/* Power Management */
Andrew Lewyckyb3f5e6b2014-07-17 01:37:30 +0300557void kgd2kfd_suspend(struct kfd_dev *kfd);
558int kgd2kfd_resume(struct kfd_dev *kfd);
Oded Gabbay4a488a72014-07-16 21:08:55 +0300559
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300560/* amdkfd Apertures */
561int kfd_init_apertures(struct kfd_process *process);
562
Ben Gozed6e6a32014-07-17 00:45:35 +0300563/* Queue Context Management */
Ben Goz241f24f2014-07-17 00:55:28 +0300564inline uint32_t lower_32(uint64_t x);
565inline uint32_t upper_32(uint64_t x);
Ben Goz77669eb2015-01-03 22:12:31 +0200566struct cik_sdma_rlc_registers *get_sdma_mqd(void *mqd);
567inline uint32_t get_sdma_base_addr(struct cik_sdma_rlc_registers *m);
Ben Goz241f24f2014-07-17 00:55:28 +0300568
Ben Gozed6e6a32014-07-17 00:45:35 +0300569int init_queue(struct queue **q, struct queue_properties properties);
570void uninit_queue(struct queue *q);
Ben Goz45102042014-07-17 01:04:10 +0300571void print_queue_properties(struct queue_properties *q);
Ben Gozed6e6a32014-07-17 00:45:35 +0300572void print_queue(struct queue *q);
573
Ben Goz64c7f8c2014-07-17 01:27:00 +0300574struct mqd_manager *mqd_manager_init(enum KFD_MQD_TYPE type,
575 struct kfd_dev *dev);
576struct device_queue_manager *device_queue_manager_init(struct kfd_dev *dev);
577void device_queue_manager_uninit(struct device_queue_manager *dqm);
Ben Goz241f24f2014-07-17 00:55:28 +0300578struct kernel_queue *kernel_queue_init(struct kfd_dev *dev,
579 enum kfd_queue_type type);
580void kernel_queue_uninit(struct kernel_queue *kq);
581
Ben Goz45102042014-07-17 01:04:10 +0300582/* Process Queue Manager */
583struct process_queue_node {
584 struct queue *q;
585 struct kernel_queue *kq;
586 struct list_head process_queue_list;
587};
588
589int pqm_init(struct process_queue_manager *pqm, struct kfd_process *p);
590void pqm_uninit(struct process_queue_manager *pqm);
591int pqm_create_queue(struct process_queue_manager *pqm,
592 struct kfd_dev *dev,
593 struct file *f,
594 struct queue_properties *properties,
595 unsigned int flags,
596 enum kfd_queue_type type,
597 unsigned int *qid);
598int pqm_destroy_queue(struct process_queue_manager *pqm, unsigned int qid);
599int pqm_update_queue(struct process_queue_manager *pqm, unsigned int qid,
600 struct queue_properties *p);
601
Ben Gozed6e6a32014-07-17 00:45:35 +0300602/* Packet Manager */
603
Ben Goz241f24f2014-07-17 00:55:28 +0300604#define KFD_HIQ_TIMEOUT (500)
605
Ben Goz64c7f8c2014-07-17 01:27:00 +0300606#define KFD_FENCE_COMPLETED (100)
607#define KFD_FENCE_INIT (10)
Ben Goz241f24f2014-07-17 00:55:28 +0300608#define KFD_UNMAP_LATENCY (150)
609
Ben Gozed6e6a32014-07-17 00:45:35 +0300610struct packet_manager {
611 struct device_queue_manager *dqm;
612 struct kernel_queue *priv_queue;
613 struct mutex lock;
614 bool allocated;
615 struct kfd_mem_obj *ib_buffer_obj;
616};
617
Ben Goz64c7f8c2014-07-17 01:27:00 +0300618int pm_init(struct packet_manager *pm, struct device_queue_manager *dqm);
619void pm_uninit(struct packet_manager *pm);
620int pm_send_set_resources(struct packet_manager *pm,
621 struct scheduling_resources *res);
622int pm_send_runlist(struct packet_manager *pm, struct list_head *dqm_queues);
623int pm_send_query_status(struct packet_manager *pm, uint64_t fence_address,
624 uint32_t fence_value);
625
626int pm_send_unmap_queue(struct packet_manager *pm, enum kfd_queue_type type,
627 enum kfd_preempt_type_filter mode,
628 uint32_t filter_param, bool reset,
629 unsigned int sdma_engine);
630
Ben Goz241f24f2014-07-17 00:55:28 +0300631void pm_release_ib(struct packet_manager *pm);
632
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300633uint64_t kfd_get_number_elems(struct kfd_dev *kfd);
634phys_addr_t kfd_get_process_doorbells(struct kfd_dev *dev,
635 struct kfd_process *process);
636
Oded Gabbay4a488a72014-07-16 21:08:55 +0300637#endif