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Merge branch 'i2c/for-4.18' of git://git.kernel.org/pub/scm/linux/kernel/git/wsa...
[linux.git] / drivers / gpu / drm / amd / amdkfd / kfd_kernel_queue.c
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
24 #include <linux/types.h>
25 #include <linux/mutex.h>
26 #include <linux/slab.h>
27 #include <linux/printk.h>
28 #include <linux/sched.h>
29 #include "kfd_kernel_queue.h"
30 #include "kfd_priv.h"
31 #include "kfd_device_queue_manager.h"
32 #include "kfd_pm4_headers.h"
33 #include "kfd_pm4_opcodes.h"
34
35 #define PM4_COUNT_ZERO (((1 << 15) - 1) << 16)
36
37 static bool initialize(struct kernel_queue *kq, struct kfd_dev *dev,
38                 enum kfd_queue_type type, unsigned int queue_size)
39 {
40         struct queue_properties prop;
41         int retval;
42         union PM4_MES_TYPE_3_HEADER nop;
43
44         if (WARN_ON(type != KFD_QUEUE_TYPE_DIQ && type != KFD_QUEUE_TYPE_HIQ))
45                 return false;
46
47         pr_debug("Initializing queue type %d size %d\n", KFD_QUEUE_TYPE_HIQ,
48                         queue_size);
49
50         memset(&prop, 0, sizeof(prop));
51         memset(&nop, 0, sizeof(nop));
52
53         nop.opcode = IT_NOP;
54         nop.type = PM4_TYPE_3;
55         nop.u32all |= PM4_COUNT_ZERO;
56
57         kq->dev = dev;
58         kq->nop_packet = nop.u32all;
59         switch (type) {
60         case KFD_QUEUE_TYPE_DIQ:
61         case KFD_QUEUE_TYPE_HIQ:
62                 kq->mqd = dev->dqm->ops.get_mqd_manager(dev->dqm,
63                                                 KFD_MQD_TYPE_HIQ);
64                 break;
65         default:
66                 pr_err("Invalid queue type %d\n", type);
67                 return false;
68         }
69
70         if (!kq->mqd)
71                 return false;
72
73         prop.doorbell_ptr = kfd_get_kernel_doorbell(dev, &prop.doorbell_off);
74
75         if (!prop.doorbell_ptr) {
76                 pr_err("Failed to initialize doorbell");
77                 goto err_get_kernel_doorbell;
78         }
79
80         retval = kfd_gtt_sa_allocate(dev, queue_size, &kq->pq);
81         if (retval != 0) {
82                 pr_err("Failed to init pq queues size %d\n", queue_size);
83                 goto err_pq_allocate_vidmem;
84         }
85
86         kq->pq_kernel_addr = kq->pq->cpu_ptr;
87         kq->pq_gpu_addr = kq->pq->gpu_addr;
88
89         retval = kq->ops_asic_specific.initialize(kq, dev, type, queue_size);
90         if (!retval)
91                 goto err_eop_allocate_vidmem;
92
93         retval = kfd_gtt_sa_allocate(dev, sizeof(*kq->rptr_kernel),
94                                         &kq->rptr_mem);
95
96         if (retval != 0)
97                 goto err_rptr_allocate_vidmem;
98
99         kq->rptr_kernel = kq->rptr_mem->cpu_ptr;
100         kq->rptr_gpu_addr = kq->rptr_mem->gpu_addr;
101
102         retval = kfd_gtt_sa_allocate(dev, dev->device_info->doorbell_size,
103                                         &kq->wptr_mem);
104
105         if (retval != 0)
106                 goto err_wptr_allocate_vidmem;
107
108         kq->wptr_kernel = kq->wptr_mem->cpu_ptr;
109         kq->wptr_gpu_addr = kq->wptr_mem->gpu_addr;
110
111         memset(kq->pq_kernel_addr, 0, queue_size);
112         memset(kq->rptr_kernel, 0, sizeof(*kq->rptr_kernel));
113         memset(kq->wptr_kernel, 0, sizeof(*kq->wptr_kernel));
114
115         prop.queue_size = queue_size;
116         prop.is_interop = false;
117         prop.priority = 1;
118         prop.queue_percent = 100;
119         prop.type = type;
120         prop.vmid = 0;
121         prop.queue_address = kq->pq_gpu_addr;
122         prop.read_ptr = (uint32_t *) kq->rptr_gpu_addr;
123         prop.write_ptr = (uint32_t *) kq->wptr_gpu_addr;
124         prop.eop_ring_buffer_address = kq->eop_gpu_addr;
125         prop.eop_ring_buffer_size = PAGE_SIZE;
126
127         if (init_queue(&kq->queue, &prop) != 0)
128                 goto err_init_queue;
129
130         kq->queue->device = dev;
131         kq->queue->process = kfd_get_process(current);
132
133         retval = kq->mqd->init_mqd(kq->mqd, &kq->queue->mqd,
134                                         &kq->queue->mqd_mem_obj,
135                                         &kq->queue->gart_mqd_addr,
136                                         &kq->queue->properties);
137         if (retval != 0)
138                 goto err_init_mqd;
139
140         /* assign HIQ to HQD */
141         if (type == KFD_QUEUE_TYPE_HIQ) {
142                 pr_debug("Assigning hiq to hqd\n");
143                 kq->queue->pipe = KFD_CIK_HIQ_PIPE;
144                 kq->queue->queue = KFD_CIK_HIQ_QUEUE;
145                 kq->mqd->load_mqd(kq->mqd, kq->queue->mqd, kq->queue->pipe,
146                                   kq->queue->queue, &kq->queue->properties,
147                                   NULL);
148         } else {
149                 /* allocate fence for DIQ */
150
151                 retval = kfd_gtt_sa_allocate(dev, sizeof(uint32_t),
152                                                 &kq->fence_mem_obj);
153
154                 if (retval != 0)
155                         goto err_alloc_fence;
156
157                 kq->fence_kernel_address = kq->fence_mem_obj->cpu_ptr;
158                 kq->fence_gpu_addr = kq->fence_mem_obj->gpu_addr;
159         }
160
161         print_queue(kq->queue);
162
163         return true;
164 err_alloc_fence:
165 err_init_mqd:
166         uninit_queue(kq->queue);
167 err_init_queue:
168         kfd_gtt_sa_free(dev, kq->wptr_mem);
169 err_wptr_allocate_vidmem:
170         kfd_gtt_sa_free(dev, kq->rptr_mem);
171 err_rptr_allocate_vidmem:
172         kfd_gtt_sa_free(dev, kq->eop_mem);
173 err_eop_allocate_vidmem:
174         kfd_gtt_sa_free(dev, kq->pq);
175 err_pq_allocate_vidmem:
176         kfd_release_kernel_doorbell(dev, prop.doorbell_ptr);
177 err_get_kernel_doorbell:
178         return false;
179
180 }
181
182 static void uninitialize(struct kernel_queue *kq)
183 {
184         if (kq->queue->properties.type == KFD_QUEUE_TYPE_HIQ)
185                 kq->mqd->destroy_mqd(kq->mqd,
186                                         kq->queue->mqd,
187                                         KFD_PREEMPT_TYPE_WAVEFRONT_RESET,
188                                         KFD_UNMAP_LATENCY_MS,
189                                         kq->queue->pipe,
190                                         kq->queue->queue);
191         else if (kq->queue->properties.type == KFD_QUEUE_TYPE_DIQ)
192                 kfd_gtt_sa_free(kq->dev, kq->fence_mem_obj);
193
194         kq->mqd->uninit_mqd(kq->mqd, kq->queue->mqd, kq->queue->mqd_mem_obj);
195
196         kfd_gtt_sa_free(kq->dev, kq->rptr_mem);
197         kfd_gtt_sa_free(kq->dev, kq->wptr_mem);
198         kq->ops_asic_specific.uninitialize(kq);
199         kfd_gtt_sa_free(kq->dev, kq->pq);
200         kfd_release_kernel_doorbell(kq->dev,
201                                         kq->queue->properties.doorbell_ptr);
202         uninit_queue(kq->queue);
203 }
204
205 static int acquire_packet_buffer(struct kernel_queue *kq,
206                 size_t packet_size_in_dwords, unsigned int **buffer_ptr)
207 {
208         size_t available_size;
209         size_t queue_size_dwords;
210         uint32_t wptr, rptr;
211         uint64_t wptr64;
212         unsigned int *queue_address;
213
214         /* When rptr == wptr, the buffer is empty.
215          * When rptr == wptr + 1, the buffer is full.
216          * It is always rptr that advances to the position of wptr, rather than
217          * the opposite. So we can only use up to queue_size_dwords - 1 dwords.
218          */
219         rptr = *kq->rptr_kernel;
220         wptr = kq->pending_wptr;
221         wptr64 = kq->pending_wptr64;
222         queue_address = (unsigned int *)kq->pq_kernel_addr;
223         queue_size_dwords = kq->queue->properties.queue_size / 4;
224
225         pr_debug("rptr: %d\n", rptr);
226         pr_debug("wptr: %d\n", wptr);
227         pr_debug("queue_address 0x%p\n", queue_address);
228
229         available_size = (rptr + queue_size_dwords - 1 - wptr) %
230                                                         queue_size_dwords;
231
232         if (packet_size_in_dwords > available_size) {
233                 /*
234                  * make sure calling functions know
235                  * acquire_packet_buffer() failed
236                  */
237                 goto err_no_space;
238         }
239
240         if (wptr + packet_size_in_dwords >= queue_size_dwords) {
241                 /* make sure after rolling back to position 0, there is
242                  * still enough space.
243                  */
244                 if (packet_size_in_dwords >= rptr)
245                         goto err_no_space;
246
247                 /* fill nops, roll back and start at position 0 */
248                 while (wptr > 0) {
249                         queue_address[wptr] = kq->nop_packet;
250                         wptr = (wptr + 1) % queue_size_dwords;
251                         wptr64++;
252                 }
253         }
254
255         *buffer_ptr = &queue_address[wptr];
256         kq->pending_wptr = wptr + packet_size_in_dwords;
257         kq->pending_wptr64 = wptr64 + packet_size_in_dwords;
258
259         return 0;
260
261 err_no_space:
262         *buffer_ptr = NULL;
263         return -ENOMEM;
264 }
265
266 static void submit_packet(struct kernel_queue *kq)
267 {
268 #ifdef DEBUG
269         int i;
270
271         for (i = *kq->wptr_kernel; i < kq->pending_wptr; i++) {
272                 pr_debug("0x%2X ", kq->pq_kernel_addr[i]);
273                 if (i % 15 == 0)
274                         pr_debug("\n");
275         }
276         pr_debug("\n");
277 #endif
278
279         kq->ops_asic_specific.submit_packet(kq);
280 }
281
282 static void rollback_packet(struct kernel_queue *kq)
283 {
284         if (kq->dev->device_info->doorbell_size == 8) {
285                 kq->pending_wptr64 = *kq->wptr64_kernel;
286                 kq->pending_wptr = *kq->wptr_kernel %
287                         (kq->queue->properties.queue_size / 4);
288         } else {
289                 kq->pending_wptr = *kq->wptr_kernel;
290         }
291 }
292
293 struct kernel_queue *kernel_queue_init(struct kfd_dev *dev,
294                                         enum kfd_queue_type type)
295 {
296         struct kernel_queue *kq;
297
298         kq = kzalloc(sizeof(*kq), GFP_KERNEL);
299         if (!kq)
300                 return NULL;
301
302         kq->ops.initialize = initialize;
303         kq->ops.uninitialize = uninitialize;
304         kq->ops.acquire_packet_buffer = acquire_packet_buffer;
305         kq->ops.submit_packet = submit_packet;
306         kq->ops.rollback_packet = rollback_packet;
307
308         switch (dev->device_info->asic_family) {
309         case CHIP_CARRIZO:
310         case CHIP_TONGA:
311         case CHIP_FIJI:
312         case CHIP_POLARIS10:
313         case CHIP_POLARIS11:
314                 kernel_queue_init_vi(&kq->ops_asic_specific);
315                 break;
316
317         case CHIP_KAVERI:
318         case CHIP_HAWAII:
319                 kernel_queue_init_cik(&kq->ops_asic_specific);
320                 break;
321
322         case CHIP_VEGA10:
323         case CHIP_RAVEN:
324                 kernel_queue_init_v9(&kq->ops_asic_specific);
325                 break;
326         default:
327                 WARN(1, "Unexpected ASIC family %u",
328                      dev->device_info->asic_family);
329                 goto out_free;
330         }
331
332         if (kq->ops.initialize(kq, dev, type, KFD_KERNEL_QUEUE_SIZE))
333                 return kq;
334
335         pr_err("Failed to init kernel queue\n");
336
337 out_free:
338         kfree(kq);
339         return NULL;
340 }
341
342 void kernel_queue_uninit(struct kernel_queue *kq)
343 {
344         kq->ops.uninitialize(kq);
345         kfree(kq);
346 }
347
348 /* FIXME: Can this test be removed? */
349 static __attribute__((unused)) void test_kq(struct kfd_dev *dev)
350 {
351         struct kernel_queue *kq;
352         uint32_t *buffer, i;
353         int retval;
354
355         pr_err("Starting kernel queue test\n");
356
357         kq = kernel_queue_init(dev, KFD_QUEUE_TYPE_HIQ);
358         if (unlikely(!kq)) {
359                 pr_err("  Failed to initialize HIQ\n");
360                 pr_err("Kernel queue test failed\n");
361                 return;
362         }
363
364         retval = kq->ops.acquire_packet_buffer(kq, 5, &buffer);
365         if (unlikely(retval != 0)) {
366                 pr_err("  Failed to acquire packet buffer\n");
367                 pr_err("Kernel queue test failed\n");
368                 return;
369         }
370         for (i = 0; i < 5; i++)
371                 buffer[i] = kq->nop_packet;
372         kq->ops.submit_packet(kq);
373
374         pr_err("Ending kernel queue test\n");
375 }
376
377
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