1 // SPDX-License-Identifier: GPL-2.0-only OR MIT
2 /* Copyright (c) 2023 Imagination Technologies Ltd. */
3
4 #include "pvr_context.h"
5 #include "pvr_debugfs.h"
6 #include "pvr_device.h"
7 #include "pvr_drv.h"
8 #include "pvr_free_list.h"
9 #include "pvr_gem.h"
10 #include "pvr_hwrt.h"
11 #include "pvr_job.h"
12 #include "pvr_mmu.h"
13 #include "pvr_power.h"
14 #include "pvr_rogue_defs.h"
15 #include "pvr_rogue_fwif_client.h"
16 #include "pvr_rogue_fwif_shared.h"
17 #include "pvr_trace.h"
18 #include "pvr_vm.h"
19
20 #include <uapi/drm/pvr_drm.h>
21
22 #include <drm/drm_device.h>
23 #include <drm/drm_drv.h>
24 #include <drm/drm_file.h>
25 #include <drm/drm_gem.h>
26 #include <drm/drm_ioctl.h>
27
28 #include <linux/err.h>
29 #include <linux/export.h>
30 #include <linux/fs.h>
31 #include <linux/kernel.h>
32 #include <linux/list.h>
33 #include <linux/module.h>
34 #include <linux/moduleparam.h>
35 #include <linux/of_device.h>
36 #include <linux/of_platform.h>
37 #include <linux/platform_device.h>
38 #include <linux/pm_runtime.h>
39 #include <linux/xarray.h>
40
41 /**
42 * DOC: PowerVR (Series 6 and later) and IMG Graphics Driver
43 *
44 * This driver supports the following PowerVR/IMG graphics cores from Imagination Technologies:
45 *
46 * * AXE-1-16M (33.15.11.3)
47 * * BXM-4-64 MC1 (36.52.104.182)
48 * * BXS-4-64 MC1 (36.53.104.796)
49 */
50
51 /**
52 * pvr_ioctl_create_bo() - IOCTL to create a GEM buffer object.
53 * @drm_dev: [IN] Target DRM device.
54 * @raw_args: [IN/OUT] Arguments passed to this IOCTL. This must be of type
55 * &struct drm_pvr_ioctl_create_bo_args.
56 * @file: [IN] DRM file-private data.
57 *
58 * Called from userspace with %DRM_IOCTL_PVR_CREATE_BO.
59 *
60 * Return:
61 * * 0 on success,
62 * * -%EINVAL if the value of &drm_pvr_ioctl_create_bo_args.size is zero
63 * or wider than &typedef size_t,
64 * * -%EINVAL if any bits in &drm_pvr_ioctl_create_bo_args.flags that are
65 * reserved or undefined are set,
66 * * -%EINVAL if any padding fields in &drm_pvr_ioctl_create_bo_args are not
67 * zero,
68 * * Any error encountered while creating the object (see
69 * pvr_gem_object_create()), or
70 * * Any error encountered while transferring ownership of the object into a
71 * userspace-accessible handle (see pvr_gem_object_into_handle()).
72 */
73 static int
pvr_ioctl_create_bo(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)74 pvr_ioctl_create_bo(struct drm_device *drm_dev, void *raw_args,
75 struct drm_file *file)
76 {
77 struct drm_pvr_ioctl_create_bo_args *args = raw_args;
78 struct pvr_device *pvr_dev = to_pvr_device(drm_dev);
79 struct pvr_file *pvr_file = to_pvr_file(file);
80
81 struct pvr_gem_object *pvr_obj;
82 size_t sanitized_size;
83
84 int idx;
85 int err;
86
87 if (!drm_dev_enter(drm_dev, &idx))
88 return -EIO;
89
90 /* All padding fields must be zeroed. */
91 if (args->_padding_c != 0) {
92 err = -EINVAL;
93 goto err_drm_dev_exit;
94 }
95
96 /*
97 * On 64-bit platforms (our primary target), size_t is a u64. However,
98 * on other architectures we have to check for overflow when casting
99 * down to size_t from u64.
100 *
101 * We also disallow zero-sized allocations, and reserved (kernel-only)
102 * flags.
103 */
104 if (args->size > SIZE_MAX || args->size == 0 || args->flags &
105 ~DRM_PVR_BO_FLAGS_MASK || args->size & (PVR_DEVICE_PAGE_SIZE - 1)) {
106 err = -EINVAL;
107 goto err_drm_dev_exit;
108 }
109
110 sanitized_size = (size_t)args->size;
111
112 /*
113 * Create a buffer object and transfer ownership to a userspace-
114 * accessible handle.
115 */
116 pvr_obj = pvr_gem_object_create(pvr_dev, sanitized_size, args->flags);
117 if (IS_ERR(pvr_obj)) {
118 err = PTR_ERR(pvr_obj);
119 goto err_drm_dev_exit;
120 }
121
122 /* This function will not modify &args->handle unless it succeeds. */
123 err = pvr_gem_object_into_handle(pvr_obj, pvr_file, &args->handle);
124 if (err)
125 goto err_destroy_obj;
126
127 drm_dev_exit(idx);
128
129 return 0;
130
131 err_destroy_obj:
132 /*
133 * GEM objects are refcounted, so there is no explicit destructor
134 * function. Instead, we release the singular reference we currently
135 * hold on the object and let GEM take care of the rest.
136 */
137 pvr_gem_object_put(pvr_obj);
138
139 err_drm_dev_exit:
140 drm_dev_exit(idx);
141
142 return err;
143 }
144
145 /**
146 * pvr_ioctl_get_bo_mmap_offset() - IOCTL to generate a "fake" offset to be
147 * used when calling mmap() from userspace to map the given GEM buffer object
148 * @drm_dev: [IN] DRM device (unused).
149 * @raw_args: [IN/OUT] Arguments passed to this IOCTL. This must be of type
150 * &struct drm_pvr_ioctl_get_bo_mmap_offset_args.
151 * @file: [IN] DRM file private data.
152 *
153 * Called from userspace with %DRM_IOCTL_PVR_GET_BO_MMAP_OFFSET.
154 *
155 * This IOCTL does *not* perform an mmap. See the docs on
156 * &struct drm_pvr_ioctl_get_bo_mmap_offset_args for details.
157 *
158 * Return:
159 * * 0 on success,
160 * * -%ENOENT if the handle does not reference a valid GEM buffer object,
161 * * -%EINVAL if any padding fields in &struct
162 * drm_pvr_ioctl_get_bo_mmap_offset_args are not zero, or
163 * * Any error returned by drm_gem_create_mmap_offset().
164 */
165 static int
pvr_ioctl_get_bo_mmap_offset(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)166 pvr_ioctl_get_bo_mmap_offset(struct drm_device *drm_dev, void *raw_args,
167 struct drm_file *file)
168 {
169 struct drm_pvr_ioctl_get_bo_mmap_offset_args *args = raw_args;
170 struct pvr_file *pvr_file = to_pvr_file(file);
171 struct pvr_gem_object *pvr_obj;
172 struct drm_gem_object *gem_obj;
173 int idx;
174 int ret;
175
176 if (!drm_dev_enter(drm_dev, &idx))
177 return -EIO;
178
179 /* All padding fields must be zeroed. */
180 if (args->_padding_4 != 0) {
181 ret = -EINVAL;
182 goto err_drm_dev_exit;
183 }
184
185 /*
186 * Obtain a kernel reference to the buffer object. This reference is
187 * counted and must be manually dropped before returning. If a buffer
188 * object cannot be found for the specified handle, return -%ENOENT (No
189 * such file or directory).
190 */
191 pvr_obj = pvr_gem_object_from_handle(pvr_file, args->handle);
192 if (!pvr_obj) {
193 ret = -ENOENT;
194 goto err_drm_dev_exit;
195 }
196
197 gem_obj = gem_from_pvr_gem(pvr_obj);
198
199 /*
200 * Allocate a fake offset which can be used in userspace calls to mmap
201 * on the DRM device file. If this fails, return the error code. This
202 * operation is idempotent.
203 */
204 ret = drm_gem_create_mmap_offset(gem_obj);
205 if (ret != 0) {
206 /* Drop our reference to the buffer object. */
207 drm_gem_object_put(gem_obj);
208 goto err_drm_dev_exit;
209 }
210
211 /*
212 * Read out the fake offset allocated by the earlier call to
213 * drm_gem_create_mmap_offset.
214 */
215 args->offset = drm_vma_node_offset_addr(&gem_obj->vma_node);
216
217 /* Drop our reference to the buffer object. */
218 pvr_gem_object_put(pvr_obj);
219
220 err_drm_dev_exit:
221 drm_dev_exit(idx);
222
223 return ret;
224 }
225
226 static __always_inline __maybe_unused u64
pvr_fw_version_packed(u32 major,u32 minor)227 pvr_fw_version_packed(u32 major, u32 minor)
228 {
229 return ((u64)major << 32) | minor;
230 }
231
232 static u32
rogue_get_common_store_partition_space_size(struct pvr_device * pvr_dev)233 rogue_get_common_store_partition_space_size(struct pvr_device *pvr_dev)
234 {
235 u32 max_partitions = 0;
236 u32 tile_size_x = 0;
237 u32 tile_size_y = 0;
238
239 PVR_FEATURE_VALUE(pvr_dev, tile_size_x, &tile_size_x);
240 PVR_FEATURE_VALUE(pvr_dev, tile_size_y, &tile_size_y);
241 PVR_FEATURE_VALUE(pvr_dev, max_partitions, &max_partitions);
242
243 if (tile_size_x == 16 && tile_size_y == 16) {
244 u32 usc_min_output_registers_per_pix = 0;
245
246 PVR_FEATURE_VALUE(pvr_dev, usc_min_output_registers_per_pix,
247 &usc_min_output_registers_per_pix);
248
249 return tile_size_x * tile_size_y * max_partitions *
250 usc_min_output_registers_per_pix;
251 }
252
253 return max_partitions * 1024;
254 }
255
256 static u32
rogue_get_common_store_alloc_region_size(struct pvr_device * pvr_dev)257 rogue_get_common_store_alloc_region_size(struct pvr_device *pvr_dev)
258 {
259 u32 common_store_size_in_dwords = 512 * 4 * 4;
260 u32 alloc_region_size;
261
262 PVR_FEATURE_VALUE(pvr_dev, common_store_size_in_dwords, &common_store_size_in_dwords);
263
264 alloc_region_size = common_store_size_in_dwords - (256U * 4U) -
265 rogue_get_common_store_partition_space_size(pvr_dev);
266
267 if (PVR_HAS_QUIRK(pvr_dev, 44079)) {
268 u32 common_store_split_point = (768U * 4U * 4U);
269
270 return min(common_store_split_point - (256U * 4U), alloc_region_size);
271 }
272
273 return alloc_region_size;
274 }
275
276 static inline u32
rogue_get_num_phantoms(struct pvr_device * pvr_dev)277 rogue_get_num_phantoms(struct pvr_device *pvr_dev)
278 {
279 u32 num_clusters = 1;
280
281 PVR_FEATURE_VALUE(pvr_dev, num_clusters, &num_clusters);
282
283 return ROGUE_REQ_NUM_PHANTOMS(num_clusters);
284 }
285
286 static inline u32
rogue_get_max_coeffs(struct pvr_device * pvr_dev)287 rogue_get_max_coeffs(struct pvr_device *pvr_dev)
288 {
289 u32 max_coeff_additional_portion = ROGUE_MAX_VERTEX_SHARED_REGISTERS;
290 u32 pending_allocation_shared_regs = 2U * 1024U;
291 u32 pending_allocation_coeff_regs = 0U;
292 u32 num_phantoms = rogue_get_num_phantoms(pvr_dev);
293 u32 tiles_in_flight = 0;
294 u32 max_coeff_pixel_portion;
295
296 PVR_FEATURE_VALUE(pvr_dev, isp_max_tiles_in_flight, &tiles_in_flight);
297 max_coeff_pixel_portion = DIV_ROUND_UP(tiles_in_flight, num_phantoms);
298 max_coeff_pixel_portion *= ROGUE_MAX_PIXEL_SHARED_REGISTERS;
299
300 /*
301 * Compute tasks on cores with BRN48492 and without compute overlap may lock
302 * up without two additional lines of coeffs.
303 */
304 if (PVR_HAS_QUIRK(pvr_dev, 48492) && !PVR_HAS_FEATURE(pvr_dev, compute_overlap))
305 pending_allocation_coeff_regs = 2U * 1024U;
306
307 if (PVR_HAS_ENHANCEMENT(pvr_dev, 38748))
308 pending_allocation_shared_regs = 0;
309
310 if (PVR_HAS_ENHANCEMENT(pvr_dev, 38020))
311 max_coeff_additional_portion += ROGUE_MAX_COMPUTE_SHARED_REGISTERS;
312
313 return rogue_get_common_store_alloc_region_size(pvr_dev) + pending_allocation_coeff_regs -
314 (max_coeff_pixel_portion + max_coeff_additional_portion +
315 pending_allocation_shared_regs);
316 }
317
318 static inline u32
rogue_get_cdm_max_local_mem_size_regs(struct pvr_device * pvr_dev)319 rogue_get_cdm_max_local_mem_size_regs(struct pvr_device *pvr_dev)
320 {
321 u32 available_coeffs_in_dwords = rogue_get_max_coeffs(pvr_dev);
322
323 if (PVR_HAS_QUIRK(pvr_dev, 48492) && PVR_HAS_FEATURE(pvr_dev, roguexe) &&
324 !PVR_HAS_FEATURE(pvr_dev, compute_overlap)) {
325 /* Driver must not use the 2 reserved lines. */
326 available_coeffs_in_dwords -= ROGUE_CSRM_LINE_SIZE_IN_DWORDS * 2;
327 }
328
329 /*
330 * The maximum amount of local memory available to a kernel is the minimum
331 * of the total number of coefficient registers available and the max common
332 * store allocation size which can be made by the CDM.
333 *
334 * If any coeff lines are reserved for tessellation or pixel then we need to
335 * subtract those too.
336 */
337 return min(available_coeffs_in_dwords, (u32)ROGUE_MAX_PER_KERNEL_LOCAL_MEM_SIZE_REGS);
338 }
339
340 /**
341 * pvr_dev_query_gpu_info_get()
342 * @pvr_dev: Device pointer.
343 * @args: [IN] Device query arguments containing a pointer to a userspace
344 * struct drm_pvr_dev_query_gpu_info.
345 *
346 * If the query object pointer is NULL, the size field is updated with the
347 * expected size of the query object.
348 *
349 * Returns:
350 * * 0 on success, or if size is requested using a NULL pointer, or
351 * * -%E2BIG if the indicated length of the allocation is less than is
352 * required to contain the copied data, or
353 * * -%EFAULT if local memory could not be copied to userspace.
354 */
355 static int
pvr_dev_query_gpu_info_get(struct pvr_device * pvr_dev,struct drm_pvr_ioctl_dev_query_args * args)356 pvr_dev_query_gpu_info_get(struct pvr_device *pvr_dev,
357 struct drm_pvr_ioctl_dev_query_args *args)
358 {
359 struct drm_pvr_dev_query_gpu_info gpu_info = {0};
360 int err;
361
362 if (!args->pointer) {
363 args->size = sizeof(struct drm_pvr_dev_query_gpu_info);
364 return 0;
365 }
366
367 gpu_info.gpu_id =
368 pvr_gpu_id_to_packed_bvnc(&pvr_dev->gpu_id);
369 gpu_info.num_phantoms = rogue_get_num_phantoms(pvr_dev);
370
371 err = PVR_UOBJ_SET(args->pointer, args->size, gpu_info);
372 if (err < 0)
373 return err;
374
375 if (args->size > sizeof(gpu_info))
376 args->size = sizeof(gpu_info);
377 return 0;
378 }
379
380 /**
381 * pvr_dev_query_runtime_info_get()
382 * @pvr_dev: Device pointer.
383 * @args: [IN] Device query arguments containing a pointer to a userspace
384 * struct drm_pvr_dev_query_runtime_info.
385 *
386 * If the query object pointer is NULL, the size field is updated with the
387 * expected size of the query object.
388 *
389 * Returns:
390 * * 0 on success, or if size is requested using a NULL pointer, or
391 * * -%E2BIG if the indicated length of the allocation is less than is
392 * required to contain the copied data, or
393 * * -%EFAULT if local memory could not be copied to userspace.
394 */
395 static int
pvr_dev_query_runtime_info_get(struct pvr_device * pvr_dev,struct drm_pvr_ioctl_dev_query_args * args)396 pvr_dev_query_runtime_info_get(struct pvr_device *pvr_dev,
397 struct drm_pvr_ioctl_dev_query_args *args)
398 {
399 struct drm_pvr_dev_query_runtime_info runtime_info = {0};
400 int err;
401
402 if (!args->pointer) {
403 args->size = sizeof(struct drm_pvr_dev_query_runtime_info);
404 return 0;
405 }
406
407 runtime_info.free_list_min_pages =
408 pvr_get_free_list_min_pages(pvr_dev);
409 runtime_info.free_list_max_pages =
410 ROGUE_PM_MAX_FREELIST_SIZE / ROGUE_PM_PAGE_SIZE;
411 runtime_info.common_store_alloc_region_size =
412 rogue_get_common_store_alloc_region_size(pvr_dev);
413 runtime_info.common_store_partition_space_size =
414 rogue_get_common_store_partition_space_size(pvr_dev);
415 runtime_info.max_coeffs = rogue_get_max_coeffs(pvr_dev);
416 runtime_info.cdm_max_local_mem_size_regs =
417 rogue_get_cdm_max_local_mem_size_regs(pvr_dev);
418
419 err = PVR_UOBJ_SET(args->pointer, args->size, runtime_info);
420 if (err < 0)
421 return err;
422
423 if (args->size > sizeof(runtime_info))
424 args->size = sizeof(runtime_info);
425 return 0;
426 }
427
428 /**
429 * pvr_dev_query_quirks_get() - Unpack array of quirks at the address given
430 * in a struct drm_pvr_dev_query_quirks, or gets the amount of space required
431 * for it.
432 * @pvr_dev: Device pointer.
433 * @args: [IN] Device query arguments containing a pointer to a userspace
434 * struct drm_pvr_dev_query_query_quirks.
435 *
436 * If the query object pointer is NULL, the size field is updated with the
437 * expected size of the query object.
438 * If the userspace pointer in the query object is NULL, or the count is
439 * short, no data is copied.
440 * The count field will be updated to that copied, or if either pointer is
441 * NULL, that which would have been copied.
442 * The size field in the query object will be updated to the size copied.
443 *
444 * Returns:
445 * * 0 on success, or if size/count is requested using a NULL pointer, or
446 * * -%EINVAL if args contained non-zero reserved fields, or
447 * * -%E2BIG if the indicated length of the allocation is less than is
448 * required to contain the copied data, or
449 * * -%EFAULT if local memory could not be copied to userspace.
450 */
451 static int
pvr_dev_query_quirks_get(struct pvr_device * pvr_dev,struct drm_pvr_ioctl_dev_query_args * args)452 pvr_dev_query_quirks_get(struct pvr_device *pvr_dev,
453 struct drm_pvr_ioctl_dev_query_args *args)
454 {
455 /*
456 * @FIXME - hardcoding of numbers here is intended as an
457 * intermediate step so the UAPI can be fixed, but requires a
458 * a refactor in the future to store them in a more appropriate
459 * location
460 */
461 static const u32 umd_quirks_musthave[] = {
462 47217,
463 49927,
464 62269,
465 };
466 static const u32 umd_quirks[] = {
467 48545,
468 51764,
469 };
470 struct drm_pvr_dev_query_quirks query;
471 u32 out[ARRAY_SIZE(umd_quirks_musthave) + ARRAY_SIZE(umd_quirks)];
472 size_t out_musthave_count = 0;
473 size_t out_count = 0;
474 int err;
475
476 if (!args->pointer) {
477 args->size = sizeof(struct drm_pvr_dev_query_quirks);
478 return 0;
479 }
480
481 err = PVR_UOBJ_GET(query, args->size, args->pointer);
482
483 if (err < 0)
484 return err;
485 if (query._padding_c)
486 return -EINVAL;
487
488 for (int i = 0; i < ARRAY_SIZE(umd_quirks_musthave); i++) {
489 if (pvr_device_has_uapi_quirk(pvr_dev, umd_quirks_musthave[i])) {
490 out[out_count++] = umd_quirks_musthave[i];
491 out_musthave_count++;
492 }
493 }
494
495 for (int i = 0; i < ARRAY_SIZE(umd_quirks); i++) {
496 if (pvr_device_has_uapi_quirk(pvr_dev, umd_quirks[i]))
497 out[out_count++] = umd_quirks[i];
498 }
499
500 if (!query.quirks)
501 goto copy_out;
502 if (query.count < out_count)
503 return -E2BIG;
504
505 if (copy_to_user(u64_to_user_ptr(query.quirks), out,
506 out_count * sizeof(u32))) {
507 return -EFAULT;
508 }
509
510 query.musthave_count = out_musthave_count;
511
512 copy_out:
513 query.count = out_count;
514 err = PVR_UOBJ_SET(args->pointer, args->size, query);
515 if (err < 0)
516 return err;
517
518 if (args->size > sizeof(query))
519 args->size = sizeof(query);
520 return 0;
521 }
522
523 /**
524 * pvr_dev_query_enhancements_get() - Unpack array of enhancements at the
525 * address given in a struct drm_pvr_dev_query_enhancements, or gets the amount
526 * of space required for it.
527 * @pvr_dev: Device pointer.
528 * @args: [IN] Device query arguments containing a pointer to a userspace
529 * struct drm_pvr_dev_query_enhancements.
530 *
531 * If the query object pointer is NULL, the size field is updated with the
532 * expected size of the query object.
533 * If the userspace pointer in the query object is NULL, or the count is
534 * short, no data is copied.
535 * The count field will be updated to that copied, or if either pointer is
536 * NULL, that which would have been copied.
537 * The size field in the query object will be updated to the size copied.
538 *
539 * Returns:
540 * * 0 on success, or if size/count is requested using a NULL pointer, or
541 * * -%EINVAL if args contained non-zero reserved fields, or
542 * * -%E2BIG if the indicated length of the allocation is less than is
543 * required to contain the copied data, or
544 * * -%EFAULT if local memory could not be copied to userspace.
545 */
546 static int
pvr_dev_query_enhancements_get(struct pvr_device * pvr_dev,struct drm_pvr_ioctl_dev_query_args * args)547 pvr_dev_query_enhancements_get(struct pvr_device *pvr_dev,
548 struct drm_pvr_ioctl_dev_query_args *args)
549 {
550 /*
551 * @FIXME - hardcoding of numbers here is intended as an
552 * intermediate step so the UAPI can be fixed, but requires a
553 * a refactor in the future to store them in a more appropriate
554 * location
555 */
556 const u32 umd_enhancements[] = {
557 35421,
558 42064,
559 };
560 struct drm_pvr_dev_query_enhancements query;
561 u32 out[ARRAY_SIZE(umd_enhancements)];
562 size_t out_idx = 0;
563 int err;
564
565 if (!args->pointer) {
566 args->size = sizeof(struct drm_pvr_dev_query_enhancements);
567 return 0;
568 }
569
570 err = PVR_UOBJ_GET(query, args->size, args->pointer);
571
572 if (err < 0)
573 return err;
574 if (query._padding_a)
575 return -EINVAL;
576 if (query._padding_c)
577 return -EINVAL;
578
579 for (int i = 0; i < ARRAY_SIZE(umd_enhancements); i++) {
580 if (pvr_device_has_uapi_enhancement(pvr_dev, umd_enhancements[i]))
581 out[out_idx++] = umd_enhancements[i];
582 }
583
584 if (!query.enhancements)
585 goto copy_out;
586 if (query.count < out_idx)
587 return -E2BIG;
588
589 if (copy_to_user(u64_to_user_ptr(query.enhancements), out,
590 out_idx * sizeof(u32))) {
591 return -EFAULT;
592 }
593
594 copy_out:
595 query.count = out_idx;
596 err = PVR_UOBJ_SET(args->pointer, args->size, query);
597 if (err < 0)
598 return err;
599
600 if (args->size > sizeof(query))
601 args->size = sizeof(query);
602 return 0;
603 }
604
605 /**
606 * pvr_ioctl_dev_query() - IOCTL to copy information about a device
607 * @drm_dev: [IN] DRM device.
608 * @raw_args: [IN/OUT] Arguments passed to this IOCTL. This must be of type
609 * &struct drm_pvr_ioctl_dev_query_args.
610 * @file: [IN] DRM file private data.
611 *
612 * Called from userspace with %DRM_IOCTL_PVR_DEV_QUERY.
613 * If the given receiving struct pointer is NULL, or the indicated size is too
614 * small, the expected size of the struct type will be returned in the size
615 * argument field.
616 *
617 * Return:
618 * * 0 on success or when fetching the size with args->pointer == NULL, or
619 * * -%E2BIG if the indicated size of the receiving struct is less than is
620 * required to contain the copied data, or
621 * * -%EINVAL if the indicated struct type is unknown, or
622 * * -%ENOMEM if local memory could not be allocated, or
623 * * -%EFAULT if local memory could not be copied to userspace.
624 */
625 static int
pvr_ioctl_dev_query(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)626 pvr_ioctl_dev_query(struct drm_device *drm_dev, void *raw_args,
627 struct drm_file *file)
628 {
629 struct pvr_device *pvr_dev = to_pvr_device(drm_dev);
630 struct drm_pvr_ioctl_dev_query_args *args = raw_args;
631 int idx;
632 int ret = -EINVAL;
633
634 if (!drm_dev_enter(drm_dev, &idx))
635 return -EIO;
636
637 switch ((enum drm_pvr_dev_query)args->type) {
638 case DRM_PVR_DEV_QUERY_GPU_INFO_GET:
639 ret = pvr_dev_query_gpu_info_get(pvr_dev, args);
640 break;
641
642 case DRM_PVR_DEV_QUERY_RUNTIME_INFO_GET:
643 ret = pvr_dev_query_runtime_info_get(pvr_dev, args);
644 break;
645
646 case DRM_PVR_DEV_QUERY_QUIRKS_GET:
647 ret = pvr_dev_query_quirks_get(pvr_dev, args);
648 break;
649
650 case DRM_PVR_DEV_QUERY_ENHANCEMENTS_GET:
651 ret = pvr_dev_query_enhancements_get(pvr_dev, args);
652 break;
653
654 case DRM_PVR_DEV_QUERY_HEAP_INFO_GET:
655 ret = pvr_heap_info_get(pvr_dev, args);
656 break;
657
658 case DRM_PVR_DEV_QUERY_STATIC_DATA_AREAS_GET:
659 ret = pvr_static_data_areas_get(pvr_dev, args);
660 break;
661 }
662
663 drm_dev_exit(idx);
664
665 return ret;
666 }
667
668 /**
669 * pvr_ioctl_create_context() - IOCTL to create a context
670 * @drm_dev: [IN] DRM device.
671 * @raw_args: [IN/OUT] Arguments passed to this IOCTL. This must be of type
672 * &struct drm_pvr_ioctl_create_context_args.
673 * @file: [IN] DRM file private data.
674 *
675 * Called from userspace with %DRM_IOCTL_PVR_CREATE_CONTEXT.
676 *
677 * Return:
678 * * 0 on success, or
679 * * -%EINVAL if provided arguments are invalid, or
680 * * -%EFAULT if arguments can't be copied from userspace, or
681 * * Any error returned by pvr_create_render_context().
682 */
683 static int
pvr_ioctl_create_context(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)684 pvr_ioctl_create_context(struct drm_device *drm_dev, void *raw_args,
685 struct drm_file *file)
686 {
687 struct drm_pvr_ioctl_create_context_args *args = raw_args;
688 struct pvr_file *pvr_file = file->driver_priv;
689 int idx;
690 int ret;
691
692 if (!drm_dev_enter(drm_dev, &idx))
693 return -EIO;
694
695 ret = pvr_context_create(pvr_file, args);
696
697 drm_dev_exit(idx);
698
699 return ret;
700 }
701
702 /**
703 * pvr_ioctl_destroy_context() - IOCTL to destroy a context
704 * @drm_dev: [IN] DRM device.
705 * @raw_args: [IN/OUT] Arguments passed to this IOCTL. This must be of type
706 * &struct drm_pvr_ioctl_destroy_context_args.
707 * @file: [IN] DRM file private data.
708 *
709 * Called from userspace with %DRM_IOCTL_PVR_DESTROY_CONTEXT.
710 *
711 * Return:
712 * * 0 on success, or
713 * * -%EINVAL if context not in context list.
714 */
715 static int
pvr_ioctl_destroy_context(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)716 pvr_ioctl_destroy_context(struct drm_device *drm_dev, void *raw_args,
717 struct drm_file *file)
718 {
719 struct drm_pvr_ioctl_destroy_context_args *args = raw_args;
720 struct pvr_file *pvr_file = file->driver_priv;
721
722 if (args->_padding_4)
723 return -EINVAL;
724
725 return pvr_context_destroy(pvr_file, args->handle);
726 }
727
728 /**
729 * pvr_ioctl_create_free_list() - IOCTL to create a free list
730 * @drm_dev: [IN] DRM device.
731 * @raw_args: [IN/OUT] Arguments passed to this IOCTL. This must be of type
732 * &struct drm_pvr_ioctl_create_free_list_args.
733 * @file: [IN] DRM file private data.
734 *
735 * Called from userspace with %DRM_IOCTL_PVR_CREATE_FREE_LIST.
736 *
737 * Return:
738 * * 0 on success, or
739 * * Any error returned by pvr_free_list_create().
740 */
741 static int
pvr_ioctl_create_free_list(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)742 pvr_ioctl_create_free_list(struct drm_device *drm_dev, void *raw_args,
743 struct drm_file *file)
744 {
745 struct drm_pvr_ioctl_create_free_list_args *args = raw_args;
746 struct pvr_file *pvr_file = to_pvr_file(file);
747 struct pvr_free_list *free_list;
748 int idx;
749 int err;
750
751 if (!drm_dev_enter(drm_dev, &idx))
752 return -EIO;
753
754 free_list = pvr_free_list_create(pvr_file, args);
755 if (IS_ERR(free_list)) {
756 err = PTR_ERR(free_list);
757 goto err_drm_dev_exit;
758 }
759
760 /* Allocate object handle for userspace. */
761 err = xa_alloc(&pvr_file->free_list_handles,
762 &args->handle,
763 free_list,
764 xa_limit_32b,
765 GFP_KERNEL);
766 if (err < 0)
767 goto err_cleanup;
768
769 drm_dev_exit(idx);
770
771 return 0;
772
773 err_cleanup:
774 pvr_free_list_put(free_list);
775
776 err_drm_dev_exit:
777 drm_dev_exit(idx);
778
779 return err;
780 }
781
782 /**
783 * pvr_ioctl_destroy_free_list() - IOCTL to destroy a free list
784 * @drm_dev: [IN] DRM device.
785 * @raw_args: [IN] Arguments passed to this IOCTL. This must be of type
786 * &struct drm_pvr_ioctl_destroy_free_list_args.
787 * @file: [IN] DRM file private data.
788 *
789 * Called from userspace with %DRM_IOCTL_PVR_DESTROY_FREE_LIST.
790 *
791 * Return:
792 * * 0 on success, or
793 * * -%EINVAL if free list not in object list.
794 */
795 static int
pvr_ioctl_destroy_free_list(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)796 pvr_ioctl_destroy_free_list(struct drm_device *drm_dev, void *raw_args,
797 struct drm_file *file)
798 {
799 struct drm_pvr_ioctl_destroy_free_list_args *args = raw_args;
800 struct pvr_file *pvr_file = to_pvr_file(file);
801 struct pvr_free_list *free_list;
802
803 if (args->_padding_4)
804 return -EINVAL;
805
806 free_list = xa_erase(&pvr_file->free_list_handles, args->handle);
807 if (!free_list)
808 return -EINVAL;
809
810 pvr_free_list_put(free_list);
811 return 0;
812 }
813
814 /**
815 * pvr_ioctl_create_hwrt_dataset() - IOCTL to create a HWRT dataset
816 * @drm_dev: [IN] DRM device.
817 * @raw_args: [IN/OUT] Arguments passed to this IOCTL. This must be of type
818 * &struct drm_pvr_ioctl_create_hwrt_dataset_args.
819 * @file: [IN] DRM file private data.
820 *
821 * Called from userspace with %DRM_IOCTL_PVR_CREATE_HWRT_DATASET.
822 *
823 * Return:
824 * * 0 on success, or
825 * * Any error returned by pvr_hwrt_dataset_create().
826 */
827 static int
pvr_ioctl_create_hwrt_dataset(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)828 pvr_ioctl_create_hwrt_dataset(struct drm_device *drm_dev, void *raw_args,
829 struct drm_file *file)
830 {
831 struct drm_pvr_ioctl_create_hwrt_dataset_args *args = raw_args;
832 struct pvr_file *pvr_file = to_pvr_file(file);
833 struct pvr_hwrt_dataset *hwrt;
834 int idx;
835 int err;
836
837 if (!drm_dev_enter(drm_dev, &idx))
838 return -EIO;
839
840 hwrt = pvr_hwrt_dataset_create(pvr_file, args);
841 if (IS_ERR(hwrt)) {
842 err = PTR_ERR(hwrt);
843 goto err_drm_dev_exit;
844 }
845
846 /* Allocate object handle for userspace. */
847 err = xa_alloc(&pvr_file->hwrt_handles,
848 &args->handle,
849 hwrt,
850 xa_limit_32b,
851 GFP_KERNEL);
852 if (err < 0)
853 goto err_cleanup;
854
855 drm_dev_exit(idx);
856
857 return 0;
858
859 err_cleanup:
860 pvr_hwrt_dataset_put(hwrt);
861
862 err_drm_dev_exit:
863 drm_dev_exit(idx);
864
865 return err;
866 }
867
868 /**
869 * pvr_ioctl_destroy_hwrt_dataset() - IOCTL to destroy a HWRT dataset
870 * @drm_dev: [IN] DRM device.
871 * @raw_args: [IN] Arguments passed to this IOCTL. This must be of type
872 * &struct drm_pvr_ioctl_destroy_hwrt_dataset_args.
873 * @file: [IN] DRM file private data.
874 *
875 * Called from userspace with %DRM_IOCTL_PVR_DESTROY_HWRT_DATASET.
876 *
877 * Return:
878 * * 0 on success, or
879 * * -%EINVAL if HWRT dataset not in object list.
880 */
881 static int
pvr_ioctl_destroy_hwrt_dataset(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)882 pvr_ioctl_destroy_hwrt_dataset(struct drm_device *drm_dev, void *raw_args,
883 struct drm_file *file)
884 {
885 struct drm_pvr_ioctl_destroy_hwrt_dataset_args *args = raw_args;
886 struct pvr_file *pvr_file = to_pvr_file(file);
887 struct pvr_hwrt_dataset *hwrt;
888
889 if (args->_padding_4)
890 return -EINVAL;
891
892 hwrt = xa_erase(&pvr_file->hwrt_handles, args->handle);
893 if (!hwrt)
894 return -EINVAL;
895
896 pvr_hwrt_dataset_put(hwrt);
897 return 0;
898 }
899
900 /**
901 * pvr_ioctl_create_vm_context() - IOCTL to create a VM context
902 * @drm_dev: [IN] DRM device.
903 * @raw_args: [IN/OUT] Arguments passed to this IOCTL. This must be of type
904 * &struct drm_pvr_ioctl_create_vm_context_args.
905 * @file: [IN] DRM file private data.
906 *
907 * Called from userspace with %DRM_IOCTL_PVR_CREATE_VM_CONTEXT.
908 *
909 * Return:
910 * * 0 on success, or
911 * * Any error returned by pvr_vm_create_context().
912 */
913 static int
pvr_ioctl_create_vm_context(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)914 pvr_ioctl_create_vm_context(struct drm_device *drm_dev, void *raw_args,
915 struct drm_file *file)
916 {
917 struct drm_pvr_ioctl_create_vm_context_args *args = raw_args;
918 struct pvr_file *pvr_file = to_pvr_file(file);
919 struct pvr_vm_context *vm_ctx;
920 int idx;
921 int err;
922
923 if (!drm_dev_enter(drm_dev, &idx))
924 return -EIO;
925
926 if (args->_padding_4) {
927 err = -EINVAL;
928 goto err_drm_dev_exit;
929 }
930
931 vm_ctx = pvr_vm_create_context(pvr_file->pvr_dev, true);
932 if (IS_ERR(vm_ctx)) {
933 err = PTR_ERR(vm_ctx);
934 goto err_drm_dev_exit;
935 }
936
937 /* Allocate object handle for userspace. */
938 err = xa_alloc(&pvr_file->vm_ctx_handles,
939 &args->handle,
940 vm_ctx,
941 xa_limit_32b,
942 GFP_KERNEL);
943 if (err < 0)
944 goto err_cleanup;
945
946 drm_dev_exit(idx);
947
948 return 0;
949
950 err_cleanup:
951 pvr_vm_context_put(vm_ctx);
952
953 err_drm_dev_exit:
954 drm_dev_exit(idx);
955
956 return err;
957 }
958
959 /**
960 * pvr_ioctl_destroy_vm_context() - IOCTL to destroy a VM context
961 * @drm_dev: [IN] DRM device.
962 * @raw_args: [IN] Arguments passed to this IOCTL. This must be of type
963 * &struct drm_pvr_ioctl_destroy_vm_context_args.
964 * @file: [IN] DRM file private data.
965 *
966 * Called from userspace with %DRM_IOCTL_PVR_DESTROY_VM_CONTEXT.
967 *
968 * Return:
969 * * 0 on success, or
970 * * -%EINVAL if object not in object list.
971 */
972 static int
pvr_ioctl_destroy_vm_context(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)973 pvr_ioctl_destroy_vm_context(struct drm_device *drm_dev, void *raw_args,
974 struct drm_file *file)
975 {
976 struct drm_pvr_ioctl_destroy_vm_context_args *args = raw_args;
977 struct pvr_file *pvr_file = to_pvr_file(file);
978 struct pvr_vm_context *vm_ctx;
979
980 if (args->_padding_4)
981 return -EINVAL;
982
983 vm_ctx = xa_erase(&pvr_file->vm_ctx_handles, args->handle);
984 if (!vm_ctx)
985 return -EINVAL;
986
987 pvr_vm_context_put(vm_ctx);
988 return 0;
989 }
990
991 /**
992 * pvr_ioctl_vm_map() - IOCTL to map buffer to GPU address space.
993 * @drm_dev: [IN] DRM device.
994 * @raw_args: [IN] Arguments passed to this IOCTL. This must be of type
995 * &struct drm_pvr_ioctl_vm_map_args.
996 * @file: [IN] DRM file private data.
997 *
998 * Called from userspace with %DRM_IOCTL_PVR_VM_MAP.
999 *
1000 * Return:
1001 * * 0 on success,
1002 * * -%EINVAL if &drm_pvr_ioctl_vm_op_map_args.flags is not zero,
1003 * * -%EINVAL if the bounds specified by &drm_pvr_ioctl_vm_op_map_args.offset
1004 * and &drm_pvr_ioctl_vm_op_map_args.size are not valid or do not fall
1005 * within the buffer object specified by
1006 * &drm_pvr_ioctl_vm_op_map_args.handle,
1007 * * -%EINVAL if the bounds specified by
1008 * &drm_pvr_ioctl_vm_op_map_args.device_addr and
1009 * &drm_pvr_ioctl_vm_op_map_args.size do not form a valid device-virtual
1010 * address range which falls entirely within a single heap, or
1011 * * -%ENOENT if &drm_pvr_ioctl_vm_op_map_args.handle does not refer to a
1012 * valid PowerVR buffer object.
1013 */
1014 static int
pvr_ioctl_vm_map(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)1015 pvr_ioctl_vm_map(struct drm_device *drm_dev, void *raw_args,
1016 struct drm_file *file)
1017 {
1018 struct pvr_device *pvr_dev = to_pvr_device(drm_dev);
1019 struct drm_pvr_ioctl_vm_map_args *args = raw_args;
1020 struct pvr_file *pvr_file = to_pvr_file(file);
1021 struct pvr_vm_context *vm_ctx;
1022
1023 struct pvr_gem_object *pvr_obj;
1024 size_t pvr_obj_size;
1025
1026 u64 offset_plus_size;
1027 int idx;
1028 int err;
1029
1030 if (!drm_dev_enter(drm_dev, &idx))
1031 return -EIO;
1032
1033 /* Initial validation of args. */
1034 if (args->_padding_14) {
1035 err = -EINVAL;
1036 goto err_drm_dev_exit;
1037 }
1038
1039 if (args->flags != 0 ||
1040 check_add_overflow(args->offset, args->size, &offset_plus_size) ||
1041 !pvr_find_heap_containing(pvr_dev, args->device_addr, args->size)) {
1042 err = -EINVAL;
1043 goto err_drm_dev_exit;
1044 }
1045
1046 vm_ctx = pvr_vm_context_lookup(pvr_file, args->vm_context_handle);
1047 if (!vm_ctx) {
1048 err = -EINVAL;
1049 goto err_drm_dev_exit;
1050 }
1051
1052 pvr_obj = pvr_gem_object_from_handle(pvr_file, args->handle);
1053 if (!pvr_obj) {
1054 err = -ENOENT;
1055 goto err_put_vm_context;
1056 }
1057
1058 pvr_obj_size = pvr_gem_object_size(pvr_obj);
1059
1060 /*
1061 * Validate offset and size args. The alignment of these will be
1062 * checked when mapping; for now just check that they're within valid
1063 * bounds
1064 */
1065 if (args->offset >= pvr_obj_size || offset_plus_size > pvr_obj_size) {
1066 err = -EINVAL;
1067 goto err_put_pvr_object;
1068 }
1069
1070 err = pvr_vm_map(vm_ctx, pvr_obj, args->offset,
1071 args->device_addr, args->size);
1072 if (err)
1073 goto err_put_pvr_object;
1074
1075 /*
1076 * In order to set up the mapping, we needed a reference to &pvr_obj.
1077 * However, pvr_vm_map() obtains and stores its own reference, so we
1078 * must release ours before returning.
1079 */
1080
1081 err_put_pvr_object:
1082 pvr_gem_object_put(pvr_obj);
1083
1084 err_put_vm_context:
1085 pvr_vm_context_put(vm_ctx);
1086
1087 err_drm_dev_exit:
1088 drm_dev_exit(idx);
1089
1090 return err;
1091 }
1092
1093 /**
1094 * pvr_ioctl_vm_unmap() - IOCTL to unmap buffer from GPU address space.
1095 * @drm_dev: [IN] DRM device.
1096 * @raw_args: [IN] Arguments passed to this IOCTL. This must be of type
1097 * &struct drm_pvr_ioctl_vm_unmap_args.
1098 * @file: [IN] DRM file private data.
1099 *
1100 * Called from userspace with %DRM_IOCTL_PVR_VM_UNMAP.
1101 *
1102 * Return:
1103 * * 0 on success,
1104 * * -%EINVAL if &drm_pvr_ioctl_vm_op_unmap_args.device_addr is not a valid
1105 * device page-aligned device-virtual address, or
1106 * * -%ENOENT if there is currently no PowerVR buffer object mapped at
1107 * &drm_pvr_ioctl_vm_op_unmap_args.device_addr.
1108 */
1109 static int
pvr_ioctl_vm_unmap(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)1110 pvr_ioctl_vm_unmap(struct drm_device *drm_dev, void *raw_args,
1111 struct drm_file *file)
1112 {
1113 struct drm_pvr_ioctl_vm_unmap_args *args = raw_args;
1114 struct pvr_file *pvr_file = to_pvr_file(file);
1115 struct pvr_vm_context *vm_ctx;
1116 int err;
1117
1118 /* Initial validation of args. */
1119 if (args->_padding_4)
1120 return -EINVAL;
1121
1122 vm_ctx = pvr_vm_context_lookup(pvr_file, args->vm_context_handle);
1123 if (!vm_ctx)
1124 return -EINVAL;
1125
1126 err = pvr_vm_unmap(vm_ctx, args->device_addr, args->size);
1127
1128 pvr_vm_context_put(vm_ctx);
1129
1130 return err;
1131 }
1132
1133 /*
1134 * pvr_ioctl_submit_job() - IOCTL to submit a job to the GPU
1135 * @drm_dev: [IN] DRM device.
1136 * @raw_args: [IN] Arguments passed to this IOCTL. This must be of type
1137 * &struct drm_pvr_ioctl_submit_job_args.
1138 * @file: [IN] DRM file private data.
1139 *
1140 * Called from userspace with %DRM_IOCTL_PVR_SUBMIT_JOB.
1141 *
1142 * Return:
1143 * * 0 on success, or
1144 * * -%EINVAL if arguments are invalid.
1145 */
1146 static int
pvr_ioctl_submit_jobs(struct drm_device * drm_dev,void * raw_args,struct drm_file * file)1147 pvr_ioctl_submit_jobs(struct drm_device *drm_dev, void *raw_args,
1148 struct drm_file *file)
1149 {
1150 struct drm_pvr_ioctl_submit_jobs_args *args = raw_args;
1151 struct pvr_device *pvr_dev = to_pvr_device(drm_dev);
1152 struct pvr_file *pvr_file = to_pvr_file(file);
1153 int idx;
1154 int err;
1155
1156 trace_pvr_job_submit_ioctl(pvr_dev, args->jobs.count);
1157
1158 if (!drm_dev_enter(drm_dev, &idx))
1159 return -EIO;
1160
1161 err = pvr_submit_jobs(pvr_dev, pvr_file, args);
1162
1163 drm_dev_exit(idx);
1164
1165 return err;
1166 }
1167
1168 int
pvr_get_uobj(u64 usr_ptr,u32 usr_stride,u32 min_stride,u32 obj_size,void * out)1169 pvr_get_uobj(u64 usr_ptr, u32 usr_stride, u32 min_stride, u32 obj_size, void *out)
1170 {
1171 if (usr_stride < min_stride)
1172 return -EINVAL;
1173
1174 return copy_struct_from_user(out, obj_size, u64_to_user_ptr(usr_ptr), usr_stride);
1175 }
1176
1177 int
pvr_set_uobj(u64 usr_ptr,u32 usr_stride,u32 min_stride,u32 obj_size,const void * in)1178 pvr_set_uobj(u64 usr_ptr, u32 usr_stride, u32 min_stride, u32 obj_size, const void *in)
1179 {
1180 if (usr_stride < min_stride)
1181 return -EINVAL;
1182
1183 if (copy_to_user(u64_to_user_ptr(usr_ptr), in, min_t(u32, usr_stride, obj_size)))
1184 return -EFAULT;
1185
1186 if (usr_stride > obj_size &&
1187 clear_user(u64_to_user_ptr(usr_ptr + obj_size), usr_stride - obj_size)) {
1188 return -EFAULT;
1189 }
1190
1191 return 0;
1192 }
1193
1194 int
pvr_get_uobj_array(const struct drm_pvr_obj_array * in,u32 min_stride,u32 obj_size,void ** out)1195 pvr_get_uobj_array(const struct drm_pvr_obj_array *in, u32 min_stride, u32 obj_size, void **out)
1196 {
1197 int ret = 0;
1198 void *out_alloc;
1199
1200 if (in->stride < min_stride)
1201 return -EINVAL;
1202
1203 if (!in->count)
1204 return 0;
1205
1206 out_alloc = kvmalloc_array(in->count, obj_size, GFP_KERNEL);
1207 if (!out_alloc)
1208 return -ENOMEM;
1209
1210 if (obj_size == in->stride) {
1211 if (copy_from_user(out_alloc, u64_to_user_ptr(in->array),
1212 (unsigned long)obj_size * in->count))
1213 ret = -EFAULT;
1214 } else {
1215 void __user *in_ptr = u64_to_user_ptr(in->array);
1216 void *out_ptr = out_alloc;
1217
1218 for (u32 i = 0; i < in->count; i++) {
1219 ret = copy_struct_from_user(out_ptr, obj_size, in_ptr, in->stride);
1220 if (ret)
1221 break;
1222
1223 out_ptr += obj_size;
1224 in_ptr += in->stride;
1225 }
1226 }
1227
1228 if (ret) {
1229 kvfree(out_alloc);
1230 return ret;
1231 }
1232
1233 *out = out_alloc;
1234 return 0;
1235 }
1236
1237 int
pvr_set_uobj_array(const struct drm_pvr_obj_array * out,u32 min_stride,u32 obj_size,const void * in)1238 pvr_set_uobj_array(const struct drm_pvr_obj_array *out, u32 min_stride, u32 obj_size,
1239 const void *in)
1240 {
1241 if (out->stride < min_stride)
1242 return -EINVAL;
1243
1244 if (!out->count)
1245 return 0;
1246
1247 if (obj_size == out->stride) {
1248 if (copy_to_user(u64_to_user_ptr(out->array), in,
1249 (unsigned long)obj_size * out->count))
1250 return -EFAULT;
1251 } else {
1252 u32 cpy_elem_size = min_t(u32, out->stride, obj_size);
1253 void __user *out_ptr = u64_to_user_ptr(out->array);
1254 const void *in_ptr = in;
1255
1256 for (u32 i = 0; i < out->count; i++) {
1257 if (copy_to_user(out_ptr, in_ptr, cpy_elem_size))
1258 return -EFAULT;
1259
1260 if (out->stride > obj_size &&
1261 clear_user(out_ptr + cpy_elem_size, out->stride - obj_size)) {
1262 return -EFAULT;
1263 }
1264
1265 out_ptr += out->stride;
1266 in_ptr += obj_size;
1267 }
1268 }
1269
1270 return 0;
1271 }
1272
1273 #define DRM_PVR_IOCTL(_name, _func, _flags) \
1274 DRM_IOCTL_DEF_DRV(PVR_##_name, pvr_ioctl_##_func, _flags)
1275
1276 /* clang-format off */
1277
1278 static const struct drm_ioctl_desc pvr_drm_driver_ioctls[] = {
1279 DRM_PVR_IOCTL(DEV_QUERY, dev_query, DRM_RENDER_ALLOW),
1280 DRM_PVR_IOCTL(CREATE_BO, create_bo, DRM_RENDER_ALLOW),
1281 DRM_PVR_IOCTL(GET_BO_MMAP_OFFSET, get_bo_mmap_offset, DRM_RENDER_ALLOW),
1282 DRM_PVR_IOCTL(CREATE_VM_CONTEXT, create_vm_context, DRM_RENDER_ALLOW),
1283 DRM_PVR_IOCTL(DESTROY_VM_CONTEXT, destroy_vm_context, DRM_RENDER_ALLOW),
1284 DRM_PVR_IOCTL(VM_MAP, vm_map, DRM_RENDER_ALLOW),
1285 DRM_PVR_IOCTL(VM_UNMAP, vm_unmap, DRM_RENDER_ALLOW),
1286 DRM_PVR_IOCTL(CREATE_CONTEXT, create_context, DRM_RENDER_ALLOW),
1287 DRM_PVR_IOCTL(DESTROY_CONTEXT, destroy_context, DRM_RENDER_ALLOW),
1288 DRM_PVR_IOCTL(CREATE_FREE_LIST, create_free_list, DRM_RENDER_ALLOW),
1289 DRM_PVR_IOCTL(DESTROY_FREE_LIST, destroy_free_list, DRM_RENDER_ALLOW),
1290 DRM_PVR_IOCTL(CREATE_HWRT_DATASET, create_hwrt_dataset, DRM_RENDER_ALLOW),
1291 DRM_PVR_IOCTL(DESTROY_HWRT_DATASET, destroy_hwrt_dataset, DRM_RENDER_ALLOW),
1292 DRM_PVR_IOCTL(SUBMIT_JOBS, submit_jobs, DRM_RENDER_ALLOW),
1293 };
1294
1295 /* clang-format on */
1296
1297 #undef DRM_PVR_IOCTL
1298
1299 /**
1300 * pvr_drm_driver_open() - Driver callback when a new &struct drm_file is opened
1301 * @drm_dev: [IN] DRM device.
1302 * @file: [IN] DRM file private data.
1303 *
1304 * Allocates powervr-specific file private data (&struct pvr_file).
1305 *
1306 * Registered in &pvr_drm_driver.
1307 *
1308 * Return:
1309 * * 0 on success,
1310 * * -%ENOMEM if the allocation of a &struct ipvr_file fails, or
1311 * * Any error returned by pvr_memory_context_init().
1312 */
1313 static int
pvr_drm_driver_open(struct drm_device * drm_dev,struct drm_file * file)1314 pvr_drm_driver_open(struct drm_device *drm_dev, struct drm_file *file)
1315 {
1316 struct pvr_device *pvr_dev = to_pvr_device(drm_dev);
1317 struct pvr_file *pvr_file;
1318
1319 pvr_file = kzalloc_obj(*pvr_file);
1320 if (!pvr_file)
1321 return -ENOMEM;
1322
1323 /*
1324 * Store reference to base DRM file private data for use by
1325 * from_pvr_file.
1326 */
1327 pvr_file->file = file;
1328
1329 /*
1330 * Store reference to powervr-specific outer device struct in file
1331 * private data for convenient access.
1332 */
1333 pvr_file->pvr_dev = pvr_dev;
1334
1335 INIT_LIST_HEAD(&pvr_file->contexts);
1336
1337 xa_init_flags(&pvr_file->ctx_handles, XA_FLAGS_ALLOC1);
1338 xa_init_flags(&pvr_file->free_list_handles, XA_FLAGS_ALLOC1);
1339 xa_init_flags(&pvr_file->hwrt_handles, XA_FLAGS_ALLOC1);
1340 xa_init_flags(&pvr_file->vm_ctx_handles, XA_FLAGS_ALLOC1);
1341
1342 /*
1343 * Store reference to powervr-specific file private data in DRM file
1344 * private data.
1345 */
1346 file->driver_priv = pvr_file;
1347
1348 return 0;
1349 }
1350
1351 /**
1352 * pvr_drm_driver_postclose() - One of the driver callbacks when a &struct
1353 * drm_file is closed.
1354 * @drm_dev: [IN] DRM device (unused).
1355 * @file: [IN] DRM file private data.
1356 *
1357 * Frees powervr-specific file private data (&struct pvr_file).
1358 *
1359 * Registered in &pvr_drm_driver.
1360 */
1361 static void
pvr_drm_driver_postclose(__always_unused struct drm_device * drm_dev,struct drm_file * file)1362 pvr_drm_driver_postclose(__always_unused struct drm_device *drm_dev,
1363 struct drm_file *file)
1364 {
1365 struct pvr_file *pvr_file = to_pvr_file(file);
1366
1367 /* Kill remaining contexts. */
1368 pvr_destroy_contexts_for_file(pvr_file);
1369
1370 /* Drop references on any remaining objects. */
1371 pvr_destroy_free_lists_for_file(pvr_file);
1372 pvr_destroy_hwrt_datasets_for_file(pvr_file);
1373 pvr_destroy_vm_contexts_for_file(pvr_file);
1374
1375 kfree(pvr_file);
1376 file->driver_priv = NULL;
1377 }
1378
1379 DEFINE_DRM_GEM_FOPS(pvr_drm_driver_fops);
1380
1381 static struct drm_driver pvr_drm_driver = {
1382 .driver_features = DRIVER_GEM | DRIVER_RENDER |
1383 DRIVER_SYNCOBJ | DRIVER_SYNCOBJ_TIMELINE,
1384 .open = pvr_drm_driver_open,
1385 .postclose = pvr_drm_driver_postclose,
1386 .ioctls = pvr_drm_driver_ioctls,
1387 .num_ioctls = ARRAY_SIZE(pvr_drm_driver_ioctls),
1388 .fops = &pvr_drm_driver_fops,
1389 #if defined(CONFIG_DEBUG_FS)
1390 .debugfs_init = pvr_debugfs_init,
1391 #endif
1392
1393 .name = PVR_DRIVER_NAME,
1394 .desc = PVR_DRIVER_DESC,
1395 .major = PVR_DRIVER_MAJOR,
1396 .minor = PVR_DRIVER_MINOR,
1397 .patchlevel = PVR_DRIVER_PATCHLEVEL,
1398
1399 .gem_prime_import_sg_table = drm_gem_shmem_prime_import_sg_table,
1400 .gem_create_object = pvr_gem_create_object,
1401 };
1402
1403 static int
pvr_probe(struct platform_device * plat_dev)1404 pvr_probe(struct platform_device *plat_dev)
1405 {
1406 struct pvr_device *pvr_dev;
1407 struct drm_device *drm_dev;
1408 int err;
1409
1410 pvr_dev = devm_drm_dev_alloc(&plat_dev->dev, &pvr_drm_driver,
1411 struct pvr_device, base);
1412 if (IS_ERR(pvr_dev))
1413 return PTR_ERR(pvr_dev);
1414
1415 drm_dev = &pvr_dev->base;
1416
1417 platform_set_drvdata(plat_dev, drm_dev);
1418
1419 err = pvr_power_domains_init(pvr_dev);
1420 if (err)
1421 return err;
1422
1423 init_rwsem(&pvr_dev->reset_sem);
1424
1425 pvr_context_device_init(pvr_dev);
1426
1427 err = pvr_queue_device_init(pvr_dev);
1428 if (err)
1429 goto err_context_fini;
1430
1431 devm_pm_runtime_enable(&plat_dev->dev);
1432 pm_runtime_mark_last_busy(&plat_dev->dev);
1433
1434 pm_runtime_set_autosuspend_delay(&plat_dev->dev, 50);
1435 pm_runtime_use_autosuspend(&plat_dev->dev);
1436 pvr_watchdog_init(pvr_dev);
1437
1438 err = pvr_device_init(pvr_dev);
1439 if (err)
1440 goto err_watchdog_fini;
1441
1442 err = drm_dev_register(drm_dev, 0);
1443 if (err)
1444 goto err_device_fini;
1445
1446 xa_init_flags(&pvr_dev->free_list_ids, XA_FLAGS_ALLOC1);
1447 xa_init_flags(&pvr_dev->job_ids, XA_FLAGS_ALLOC1);
1448
1449 return 0;
1450
1451 err_device_fini:
1452 pvr_device_fini(pvr_dev);
1453
1454 err_watchdog_fini:
1455 pvr_watchdog_fini(pvr_dev);
1456
1457 pvr_queue_device_fini(pvr_dev);
1458
1459 err_context_fini:
1460 pvr_context_device_fini(pvr_dev);
1461
1462 pvr_power_domains_fini(pvr_dev);
1463
1464 return err;
1465 }
1466
pvr_remove(struct platform_device * plat_dev)1467 static void pvr_remove(struct platform_device *plat_dev)
1468 {
1469 struct drm_device *drm_dev = platform_get_drvdata(plat_dev);
1470 struct pvr_device *pvr_dev = to_pvr_device(drm_dev);
1471
1472 WARN_ON(!xa_empty(&pvr_dev->job_ids));
1473 WARN_ON(!xa_empty(&pvr_dev->free_list_ids));
1474
1475 xa_destroy(&pvr_dev->job_ids);
1476 xa_destroy(&pvr_dev->free_list_ids);
1477
1478 pm_runtime_suspend(drm_dev->dev);
1479 pvr_device_fini(pvr_dev);
1480 drm_dev_unplug(drm_dev);
1481 pvr_watchdog_fini(pvr_dev);
1482 pvr_queue_device_fini(pvr_dev);
1483 pvr_context_device_fini(pvr_dev);
1484 pvr_power_domains_fini(pvr_dev);
1485 }
1486
1487 static const struct pvr_device_data pvr_device_data_manual = {
1488 .pwr_ops = &pvr_power_sequence_ops_manual,
1489 };
1490
1491 static const struct pvr_device_data pvr_device_data_pwrseq = {
1492 .pwr_ops = &pvr_power_sequence_ops_pwrseq,
1493 };
1494
1495 static const struct of_device_id dt_match[] = {
1496 {
1497 .compatible = "thead,th1520-gpu",
1498 .data = &pvr_device_data_pwrseq,
1499 },
1500 {
1501 .compatible = "img,img-rogue",
1502 .data = &pvr_device_data_manual,
1503 },
1504
1505 /*
1506 * This legacy compatible string was introduced early on before the more generic
1507 * "img,img-rogue" was added. Keep it around here for compatibility, but never use
1508 * "img,img-axe" in new devicetrees.
1509 */
1510 {
1511 .compatible = "img,img-axe",
1512 .data = &pvr_device_data_manual,
1513 },
1514 {}
1515 };
1516 MODULE_DEVICE_TABLE(of, dt_match);
1517
1518 static const struct dev_pm_ops pvr_pm_ops = {
1519 RUNTIME_PM_OPS(pvr_power_device_suspend, pvr_power_device_resume, pvr_power_device_idle)
1520 };
1521
1522 static struct platform_driver pvr_driver = {
1523 .probe = pvr_probe,
1524 .remove = pvr_remove,
1525 .driver = {
1526 .name = PVR_DRIVER_NAME,
1527 .pm = &pvr_pm_ops,
1528 .of_match_table = dt_match,
1529 },
1530 };
1531 module_platform_driver(pvr_driver);
1532
1533 MODULE_AUTHOR("Imagination Technologies Ltd.");
1534 MODULE_DESCRIPTION(PVR_DRIVER_DESC);
1535 MODULE_LICENSE("Dual MIT/GPL");
1536 MODULE_IMPORT_NS("DMA_BUF");
1537 MODULE_FIRMWARE("powervr/rogue_33.15.11.3_v1.fw");
1538 MODULE_FIRMWARE("powervr/rogue_36.52.104.182_v1.fw");
1539 MODULE_FIRMWARE("powervr/rogue_36.53.104.796_v1.fw");
1540