1 // SPDX-License-Identifier: GPL-2.0 2 // Copyright (c) 2011-2018, The Linux Foundation. All rights reserved. 3 // Copyright (c) 2018, Linaro Limited 4 5 #include <linux/completion.h> 6 #include <linux/device.h> 7 #include <linux/dma-buf.h> 8 #include <linux/dma-mapping.h> 9 #include <linux/dma-resv.h> 10 #include <linux/idr.h> 11 #include <linux/list.h> 12 #include <linux/miscdevice.h> 13 #include <linux/module.h> 14 #include <linux/of_address.h> 15 #include <linux/of.h> 16 #include <linux/platform_device.h> 17 #include <linux/sort.h> 18 #include <linux/of_platform.h> 19 #include <linux/rpmsg.h> 20 #include <linux/scatterlist.h> 21 #include <linux/slab.h> 22 #include <linux/firmware/qcom/qcom_scm.h> 23 #include <uapi/misc/fastrpc.h> 24 #include <linux/of_reserved_mem.h> 25 #include <linux/bits.h> 26 27 #define ADSP_DOMAIN_ID (0) 28 #define MDSP_DOMAIN_ID (1) 29 #define SDSP_DOMAIN_ID (2) 30 #define CDSP_DOMAIN_ID (3) 31 #define GDSP_DOMAIN_ID (4) 32 #define FASTRPC_MAX_SESSIONS 14 33 #define FASTRPC_MAX_VMIDS 16 34 #define FASTRPC_ALIGN 128 35 #define FASTRPC_MAX_FDLIST 16 36 #define FASTRPC_MAX_CRCLIST 64 37 #define FASTRPC_CTX_MAX (256) 38 #define FASTRPC_INIT_HANDLE 1 39 #define FASTRPC_DSP_UTILITIES_HANDLE 2 40 #define FASTRPC_CTXID_MASK (0xFF0) 41 #define INIT_FILELEN_MAX (2 * 1024 * 1024) 42 #define INIT_FILE_NAMELEN_MAX (128) 43 #define FASTRPC_DEVICE_NAME "fastrpc" 44 45 /* Add memory to static PD pool, protection thru XPU */ 46 #define ADSP_MMAP_HEAP_ADDR 4 47 /* MAP static DMA buffer on DSP User PD */ 48 #define ADSP_MMAP_DMA_BUFFER 6 49 /* Add memory to static PD pool protection thru hypervisor */ 50 #define ADSP_MMAP_REMOTE_HEAP_ADDR 8 51 /* Add memory to userPD pool, for user heap */ 52 #define ADSP_MMAP_ADD_PAGES 0x1000 53 /* Add memory to userPD pool, for LLC heap */ 54 #define ADSP_MMAP_ADD_PAGES_LLC 0x3000, 55 56 #define DSP_UNSUPPORTED_API (0x80000414) 57 /* MAX NUMBER of DSP ATTRIBUTES SUPPORTED */ 58 #define FASTRPC_MAX_DSP_ATTRIBUTES (256) 59 #define FASTRPC_MAX_DSP_ATTRIBUTES_LEN (sizeof(u32) * FASTRPC_MAX_DSP_ATTRIBUTES) 60 61 /* Retrives number of input buffers from the scalars parameter */ 62 #define REMOTE_SCALARS_INBUFS(sc) (((sc) >> 16) & 0x0ff) 63 64 /* Retrives number of output buffers from the scalars parameter */ 65 #define REMOTE_SCALARS_OUTBUFS(sc) (((sc) >> 8) & 0x0ff) 66 67 /* Retrives number of input handles from the scalars parameter */ 68 #define REMOTE_SCALARS_INHANDLES(sc) (((sc) >> 4) & 0x0f) 69 70 /* Retrives number of output handles from the scalars parameter */ 71 #define REMOTE_SCALARS_OUTHANDLES(sc) ((sc) & 0x0f) 72 73 #define REMOTE_SCALARS_LENGTH(sc) (REMOTE_SCALARS_INBUFS(sc) + \ 74 REMOTE_SCALARS_OUTBUFS(sc) + \ 75 REMOTE_SCALARS_INHANDLES(sc)+ \ 76 REMOTE_SCALARS_OUTHANDLES(sc)) 77 #define FASTRPC_BUILD_SCALARS(attr, method, in, out, oin, oout) \ 78 (((attr & 0x07) << 29) | \ 79 ((method & 0x1f) << 24) | \ 80 ((in & 0xff) << 16) | \ 81 ((out & 0xff) << 8) | \ 82 ((oin & 0x0f) << 4) | \ 83 (oout & 0x0f)) 84 85 #define FASTRPC_SCALARS(method, in, out) \ 86 FASTRPC_BUILD_SCALARS(0, method, in, out, 0, 0) 87 88 #define FASTRPC_CREATE_PROCESS_NARGS 6 89 #define FASTRPC_CREATE_STATIC_PROCESS_NARGS 3 90 /* Remote Method id table */ 91 #define FASTRPC_RMID_INIT_ATTACH 0 92 #define FASTRPC_RMID_INIT_RELEASE 1 93 #define FASTRPC_RMID_INIT_MMAP 4 94 #define FASTRPC_RMID_INIT_MUNMAP 5 95 #define FASTRPC_RMID_INIT_CREATE 6 96 #define FASTRPC_RMID_INIT_CREATE_ATTR 7 97 #define FASTRPC_RMID_INIT_CREATE_STATIC 8 98 #define FASTRPC_RMID_INIT_MEM_MAP 10 99 #define FASTRPC_RMID_INIT_MEM_UNMAP 11 100 101 /* Protection Domain(PD) ids */ 102 #define ROOT_PD (0) 103 #define USER_PD (1) 104 #define SENSORS_PD (2) 105 106 #define miscdev_to_fdevice(d) container_of(d, struct fastrpc_device, miscdev) 107 108 struct fastrpc_phy_page { 109 dma_addr_t addr; /* dma address */ 110 u64 size; /* size of contiguous region */ 111 }; 112 113 struct fastrpc_invoke_buf { 114 u32 num; /* number of contiguous regions */ 115 u32 pgidx; /* index to start of contiguous region */ 116 }; 117 118 struct fastrpc_remote_dmahandle { 119 s32 fd; /* dma handle fd */ 120 u32 offset; /* dma handle offset */ 121 u32 len; /* dma handle length */ 122 }; 123 124 struct fastrpc_remote_buf { 125 u64 pv; /* buffer pointer */ 126 u64 len; /* length of buffer */ 127 }; 128 129 union fastrpc_remote_arg { 130 struct fastrpc_remote_buf buf; 131 struct fastrpc_remote_dmahandle dma; 132 }; 133 134 struct fastrpc_mmap_rsp_msg { 135 u64 vaddr; 136 }; 137 138 struct fastrpc_mmap_req_msg { 139 s32 client_id; 140 u32 flags; 141 u64 vaddr; 142 s32 num; 143 }; 144 145 struct fastrpc_mem_map_req_msg { 146 s32 client_id; 147 s32 fd; 148 s32 offset; 149 u32 flags; 150 u64 vaddrin; 151 s32 num; 152 s32 data_len; 153 }; 154 155 struct fastrpc_munmap_req_msg { 156 s32 client_id; 157 u64 vaddr; 158 u64 size; 159 }; 160 161 struct fastrpc_mem_unmap_req_msg { 162 s32 client_id; 163 s32 fd; 164 u64 vaddrin; 165 u64 len; 166 }; 167 168 struct fastrpc_msg { 169 int client_id; /* process client id */ 170 int tid; /* thread id */ 171 u64 ctx; /* invoke caller context */ 172 u32 handle; /* handle to invoke */ 173 u32 sc; /* scalars structure describing the data */ 174 dma_addr_t addr; /* dma address */ 175 u64 size; /* size of contiguous region */ 176 }; 177 178 struct fastrpc_invoke_rsp { 179 u64 ctx; /* invoke caller context */ 180 int retval; /* invoke return value */ 181 }; 182 183 struct fastrpc_buf_overlap { 184 u64 start; 185 u64 end; 186 int raix; 187 u64 mstart; 188 u64 mend; 189 u64 offset; 190 }; 191 192 struct fastrpc_buf { 193 struct fastrpc_user *fl; 194 struct dma_buf *dmabuf; 195 struct device *dev; 196 void *virt; 197 dma_addr_t dma_addr; 198 u64 size; 199 /* Lock for dma buf attachments */ 200 struct mutex lock; 201 struct list_head attachments; 202 /* mmap support */ 203 struct list_head node; /* list of user requested mmaps */ 204 uintptr_t raddr; 205 }; 206 207 struct fastrpc_dma_buf_attachment { 208 struct device *dev; 209 struct sg_table sgt; 210 struct list_head node; 211 }; 212 213 struct fastrpc_map { 214 struct list_head node; 215 struct fastrpc_user *fl; 216 int fd; 217 struct dma_buf *buf; 218 struct sg_table *table; 219 struct dma_buf_attachment *attach; 220 dma_addr_t dma_addr; 221 u64 size; 222 void *va; 223 u64 len; 224 u64 raddr; 225 u32 attr; 226 struct kref refcount; 227 }; 228 229 struct fastrpc_invoke_ctx { 230 int nscalars; 231 int nbufs; 232 int retval; 233 int pid; 234 int client_id; 235 u32 sc; 236 u32 *crc; 237 u64 ctxid; 238 u64 msg_sz; 239 struct kref refcount; 240 struct list_head node; /* list of ctxs */ 241 struct completion work; 242 struct work_struct put_work; 243 struct fastrpc_msg msg; 244 struct fastrpc_user *fl; 245 union fastrpc_remote_arg *rpra; 246 struct fastrpc_map **maps; 247 struct fastrpc_buf *buf; 248 struct fastrpc_invoke_args *args; 249 struct fastrpc_buf_overlap *olaps; 250 struct fastrpc_channel_ctx *cctx; 251 }; 252 253 struct fastrpc_session_ctx { 254 struct device *dev; 255 int sid; 256 bool used; 257 bool valid; 258 }; 259 260 struct fastrpc_soc_data { 261 u32 sid_pos; 262 u32 dma_addr_bits_cdsp; 263 u32 dma_addr_bits_default; 264 }; 265 266 struct fastrpc_channel_ctx { 267 int domain_id; 268 int sesscount; 269 int vmcount; 270 struct qcom_scm_vmperm vmperms[FASTRPC_MAX_VMIDS]; 271 struct rpmsg_device *rpdev; 272 struct fastrpc_session_ctx session[FASTRPC_MAX_SESSIONS]; 273 spinlock_t lock; 274 struct idr ctx_idr; 275 struct list_head users; 276 struct kref refcount; 277 /* Flag if dsp attributes are cached */ 278 bool valid_attributes; 279 u32 dsp_attributes[FASTRPC_MAX_DSP_ATTRIBUTES]; 280 struct fastrpc_device *secure_fdevice; 281 struct fastrpc_device *fdevice; 282 struct fastrpc_buf *remote_heap; 283 struct list_head invoke_interrupted_mmaps; 284 bool secure; 285 bool unsigned_support; 286 u64 dma_mask; 287 const struct fastrpc_soc_data *soc_data; 288 }; 289 290 struct fastrpc_device { 291 struct fastrpc_channel_ctx *cctx; 292 struct miscdevice miscdev; 293 bool secure; 294 }; 295 296 struct fastrpc_user { 297 struct list_head user; 298 struct list_head maps; 299 struct list_head pending; 300 struct list_head mmaps; 301 302 struct fastrpc_channel_ctx *cctx; 303 struct fastrpc_session_ctx *sctx; 304 struct fastrpc_buf *init_mem; 305 306 int client_id; 307 int pd; 308 bool is_secure_dev; 309 /* Lock for lists */ 310 spinlock_t lock; 311 /* lock for allocations */ 312 struct mutex mutex; 313 /* Reference count */ 314 struct kref refcount; 315 }; 316 317 /* Extract SMMU PA from consolidated IOVA */ 318 static inline dma_addr_t fastrpc_ipa_to_dma_addr(struct fastrpc_channel_ctx *cctx, dma_addr_t iova) 319 { 320 if (!cctx->soc_data->sid_pos) 321 return 0; 322 return iova & GENMASK_ULL(cctx->soc_data->sid_pos - 1, 0); 323 } 324 325 /* 326 * Prepare the consolidated iova to send to DSP by prepending the SID 327 * to smmu PA at the appropriate position 328 */ 329 static inline u64 fastrpc_sid_offset(struct fastrpc_channel_ctx *cctx, 330 struct fastrpc_session_ctx *sctx) 331 { 332 return (u64)sctx->sid << cctx->soc_data->sid_pos; 333 } 334 335 static void fastrpc_free_map(struct kref *ref) 336 { 337 struct fastrpc_map *map; 338 339 map = container_of(ref, struct fastrpc_map, refcount); 340 341 if (map->table) { 342 if (map->attr & FASTRPC_ATTR_SECUREMAP) { 343 struct qcom_scm_vmperm perm; 344 int vmid = map->fl->cctx->vmperms[0].vmid; 345 u64 src_perms = BIT(QCOM_SCM_VMID_HLOS) | BIT(vmid); 346 int err = 0; 347 348 perm.vmid = QCOM_SCM_VMID_HLOS; 349 perm.perm = QCOM_SCM_PERM_RWX; 350 err = qcom_scm_assign_mem(map->dma_addr, map->len, 351 &src_perms, &perm, 1); 352 if (err) { 353 dev_err(map->fl->sctx->dev, 354 "Failed to assign memory dma_addr %pad size 0x%llx err %d\n", 355 &map->dma_addr, map->len, err); 356 return; 357 } 358 } 359 dma_buf_unmap_attachment_unlocked(map->attach, map->table, 360 DMA_BIDIRECTIONAL); 361 dma_buf_detach(map->buf, map->attach); 362 dma_buf_put(map->buf); 363 } 364 365 if (map->fl) { 366 spin_lock(&map->fl->lock); 367 list_del(&map->node); 368 spin_unlock(&map->fl->lock); 369 map->fl = NULL; 370 } 371 372 kfree(map); 373 } 374 375 static void fastrpc_map_put(struct fastrpc_map *map) 376 { 377 if (map) 378 kref_put(&map->refcount, fastrpc_free_map); 379 } 380 381 static int fastrpc_map_get(struct fastrpc_map *map) 382 { 383 if (!map) 384 return -ENOENT; 385 386 return kref_get_unless_zero(&map->refcount) ? 0 : -ENOENT; 387 } 388 389 390 static int fastrpc_map_lookup(struct fastrpc_user *fl, int fd, 391 struct fastrpc_map **ppmap, bool take_ref) 392 { 393 struct fastrpc_map *map = NULL; 394 struct dma_buf *buf; 395 int ret = -ENOENT; 396 397 buf = dma_buf_get(fd); 398 if (IS_ERR(buf)) 399 return PTR_ERR(buf); 400 401 spin_lock(&fl->lock); 402 list_for_each_entry(map, &fl->maps, node) { 403 if (map->fd != fd || map->buf != buf) 404 continue; 405 406 if (take_ref) { 407 ret = fastrpc_map_get(map); 408 if (ret) 409 break; 410 } 411 412 *ppmap = map; 413 ret = 0; 414 break; 415 } 416 spin_unlock(&fl->lock); 417 418 dma_buf_put(buf); 419 420 return ret; 421 } 422 423 static void fastrpc_buf_free(struct fastrpc_buf *buf) 424 { 425 dma_free_coherent(buf->dev, buf->size, buf->virt, 426 fastrpc_ipa_to_dma_addr(buf->fl->cctx, buf->dma_addr)); 427 kfree(buf); 428 } 429 430 static int __fastrpc_buf_alloc(struct fastrpc_user *fl, struct device *dev, 431 u64 size, struct fastrpc_buf **obuf) 432 { 433 struct fastrpc_buf *buf; 434 435 buf = kzalloc_obj(*buf); 436 if (!buf) 437 return -ENOMEM; 438 439 INIT_LIST_HEAD(&buf->attachments); 440 INIT_LIST_HEAD(&buf->node); 441 mutex_init(&buf->lock); 442 443 buf->fl = fl; 444 buf->virt = NULL; 445 buf->dma_addr = 0; 446 buf->size = size; 447 buf->dev = dev; 448 buf->raddr = 0; 449 450 buf->virt = dma_alloc_coherent(dev, buf->size, &buf->dma_addr, 451 GFP_KERNEL); 452 if (!buf->virt) { 453 mutex_destroy(&buf->lock); 454 kfree(buf); 455 return -ENOMEM; 456 } 457 458 *obuf = buf; 459 460 return 0; 461 } 462 463 static int fastrpc_buf_alloc(struct fastrpc_user *fl, struct device *dev, 464 u64 size, struct fastrpc_buf **obuf) 465 { 466 int ret; 467 struct fastrpc_buf *buf; 468 469 ret = __fastrpc_buf_alloc(fl, dev, size, obuf); 470 if (ret) 471 return ret; 472 473 buf = *obuf; 474 475 if (fl->sctx && fl->sctx->sid) 476 buf->dma_addr += fastrpc_sid_offset(fl->cctx, fl->sctx); 477 478 return 0; 479 } 480 481 static int fastrpc_remote_heap_alloc(struct fastrpc_user *fl, struct device *dev, 482 u64 size, struct fastrpc_buf **obuf) 483 { 484 struct device *rdev = &fl->cctx->rpdev->dev; 485 486 return __fastrpc_buf_alloc(fl, rdev, size, obuf); 487 } 488 489 static void fastrpc_channel_ctx_free(struct kref *ref) 490 { 491 struct fastrpc_channel_ctx *cctx; 492 493 cctx = container_of(ref, struct fastrpc_channel_ctx, refcount); 494 495 idr_destroy(&cctx->ctx_idr); 496 kfree(cctx); 497 } 498 499 static void fastrpc_channel_ctx_get(struct fastrpc_channel_ctx *cctx) 500 { 501 kref_get(&cctx->refcount); 502 } 503 504 static void fastrpc_channel_ctx_put(struct fastrpc_channel_ctx *cctx) 505 { 506 kref_put(&cctx->refcount, fastrpc_channel_ctx_free); 507 } 508 509 static void fastrpc_context_put(struct fastrpc_invoke_ctx *ctx); 510 511 static void fastrpc_user_free(struct kref *ref) 512 { 513 struct fastrpc_user *fl = container_of(ref, struct fastrpc_user, refcount); 514 struct fastrpc_invoke_ctx *ctx, *n; 515 struct fastrpc_map *map, *m; 516 struct fastrpc_buf *buf, *b; 517 518 if (fl->init_mem) 519 fastrpc_buf_free(fl->init_mem); 520 521 list_for_each_entry_safe(ctx, n, &fl->pending, node) { 522 list_del(&ctx->node); 523 fastrpc_context_put(ctx); 524 } 525 526 list_for_each_entry_safe(map, m, &fl->maps, node) 527 fastrpc_map_put(map); 528 529 list_for_each_entry_safe(buf, b, &fl->mmaps, node) { 530 list_del(&buf->node); 531 fastrpc_buf_free(buf); 532 } 533 534 fastrpc_channel_ctx_put(fl->cctx); 535 mutex_destroy(&fl->mutex); 536 kfree(fl); 537 } 538 539 static void fastrpc_user_get(struct fastrpc_user *fl) 540 { 541 kref_get(&fl->refcount); 542 } 543 544 static void fastrpc_user_put(struct fastrpc_user *fl) 545 { 546 kref_put(&fl->refcount, fastrpc_user_free); 547 } 548 549 static void fastrpc_context_free(struct kref *ref) 550 { 551 struct fastrpc_invoke_ctx *ctx; 552 struct fastrpc_channel_ctx *cctx; 553 struct fastrpc_user *fl; 554 unsigned long flags; 555 int i; 556 557 ctx = container_of(ref, struct fastrpc_invoke_ctx, refcount); 558 cctx = ctx->cctx; 559 fl = ctx->fl; 560 561 for (i = 0; i < ctx->nbufs; i++) 562 fastrpc_map_put(ctx->maps[i]); 563 564 if (ctx->buf) 565 fastrpc_buf_free(ctx->buf); 566 567 spin_lock_irqsave(&cctx->lock, flags); 568 idr_remove(&cctx->ctx_idr, ctx->ctxid >> 4); 569 spin_unlock_irqrestore(&cctx->lock, flags); 570 571 kfree(ctx->maps); 572 kfree(ctx->olaps); 573 kfree(ctx); 574 575 /* Release the reference taken in fastrpc_context_alloc() */ 576 fastrpc_user_put(fl); 577 fastrpc_channel_ctx_put(cctx); 578 } 579 580 static void fastrpc_context_get(struct fastrpc_invoke_ctx *ctx) 581 { 582 kref_get(&ctx->refcount); 583 } 584 585 static void fastrpc_context_put(struct fastrpc_invoke_ctx *ctx) 586 { 587 kref_put(&ctx->refcount, fastrpc_context_free); 588 } 589 590 static void fastrpc_context_put_wq(struct work_struct *work) 591 { 592 struct fastrpc_invoke_ctx *ctx = 593 container_of(work, struct fastrpc_invoke_ctx, put_work); 594 595 fastrpc_context_put(ctx); 596 } 597 598 #define CMP(aa, bb) ((aa) == (bb) ? 0 : (aa) < (bb) ? -1 : 1) 599 static int olaps_cmp(const void *a, const void *b) 600 { 601 struct fastrpc_buf_overlap *pa = (struct fastrpc_buf_overlap *)a; 602 struct fastrpc_buf_overlap *pb = (struct fastrpc_buf_overlap *)b; 603 /* sort with lowest starting buffer first */ 604 int st = CMP(pa->start, pb->start); 605 /* sort with highest ending buffer first */ 606 int ed = CMP(pb->end, pa->end); 607 608 return st == 0 ? ed : st; 609 } 610 611 static void fastrpc_get_buff_overlaps(struct fastrpc_invoke_ctx *ctx) 612 { 613 u64 max_end = 0; 614 int i; 615 616 for (i = 0; i < ctx->nbufs; ++i) { 617 ctx->olaps[i].start = ctx->args[i].ptr; 618 ctx->olaps[i].end = ctx->olaps[i].start + ctx->args[i].length; 619 ctx->olaps[i].raix = i; 620 } 621 622 sort(ctx->olaps, ctx->nbufs, sizeof(*ctx->olaps), olaps_cmp, NULL); 623 624 for (i = 0; i < ctx->nbufs; ++i) { 625 /* Falling inside previous range */ 626 if (ctx->olaps[i].start < max_end) { 627 ctx->olaps[i].mstart = max_end; 628 ctx->olaps[i].mend = ctx->olaps[i].end; 629 ctx->olaps[i].offset = max_end - ctx->olaps[i].start; 630 631 if (ctx->olaps[i].end > max_end) { 632 max_end = ctx->olaps[i].end; 633 } else { 634 ctx->olaps[i].mend = 0; 635 ctx->olaps[i].mstart = 0; 636 } 637 638 } else { 639 ctx->olaps[i].mend = ctx->olaps[i].end; 640 ctx->olaps[i].mstart = ctx->olaps[i].start; 641 ctx->olaps[i].offset = 0; 642 max_end = ctx->olaps[i].end; 643 } 644 } 645 } 646 647 static struct fastrpc_invoke_ctx *fastrpc_context_alloc( 648 struct fastrpc_user *user, u32 kernel, u32 sc, 649 struct fastrpc_invoke_args *args) 650 { 651 struct fastrpc_channel_ctx *cctx = user->cctx; 652 struct fastrpc_invoke_ctx *ctx = NULL; 653 unsigned long flags; 654 int ret; 655 656 ctx = kzalloc_obj(*ctx); 657 if (!ctx) 658 return ERR_PTR(-ENOMEM); 659 660 INIT_LIST_HEAD(&ctx->node); 661 ctx->fl = user; 662 ctx->nscalars = REMOTE_SCALARS_LENGTH(sc); 663 ctx->nbufs = REMOTE_SCALARS_INBUFS(sc) + 664 REMOTE_SCALARS_OUTBUFS(sc); 665 666 if (ctx->nscalars) { 667 ctx->maps = kzalloc_objs(*ctx->maps, ctx->nscalars); 668 if (!ctx->maps) { 669 kfree(ctx); 670 return ERR_PTR(-ENOMEM); 671 } 672 ctx->olaps = kzalloc_objs(*ctx->olaps, ctx->nscalars); 673 if (!ctx->olaps) { 674 kfree(ctx->maps); 675 kfree(ctx); 676 return ERR_PTR(-ENOMEM); 677 } 678 ctx->args = args; 679 fastrpc_get_buff_overlaps(ctx); 680 } 681 682 /* Released in fastrpc_context_put() */ 683 fastrpc_channel_ctx_get(cctx); 684 /* Take a reference to user, released in fastrpc_context_free() */ 685 fastrpc_user_get(user); 686 687 ctx->sc = sc; 688 ctx->retval = -1; 689 ctx->pid = current->pid; 690 ctx->client_id = user->client_id; 691 ctx->cctx = cctx; 692 init_completion(&ctx->work); 693 INIT_WORK(&ctx->put_work, fastrpc_context_put_wq); 694 695 spin_lock(&user->lock); 696 list_add_tail(&ctx->node, &user->pending); 697 spin_unlock(&user->lock); 698 699 spin_lock_irqsave(&cctx->lock, flags); 700 ret = idr_alloc_cyclic(&cctx->ctx_idr, ctx, 1, 701 FASTRPC_CTX_MAX, GFP_ATOMIC); 702 if (ret < 0) { 703 spin_unlock_irqrestore(&cctx->lock, flags); 704 goto err_idr; 705 } 706 ctx->ctxid = ret << 4; 707 spin_unlock_irqrestore(&cctx->lock, flags); 708 709 kref_init(&ctx->refcount); 710 711 return ctx; 712 err_idr: 713 spin_lock(&user->lock); 714 list_del(&ctx->node); 715 spin_unlock(&user->lock); 716 fastrpc_user_put(user); 717 fastrpc_channel_ctx_put(cctx); 718 kfree(ctx->maps); 719 kfree(ctx->olaps); 720 kfree(ctx); 721 722 return ERR_PTR(ret); 723 } 724 725 static struct sg_table * 726 fastrpc_map_dma_buf(struct dma_buf_attachment *attachment, 727 enum dma_data_direction dir) 728 { 729 struct fastrpc_dma_buf_attachment *a = attachment->priv; 730 struct sg_table *table; 731 int ret; 732 733 table = &a->sgt; 734 735 ret = dma_map_sgtable(attachment->dev, table, dir, 0); 736 if (ret) 737 table = ERR_PTR(ret); 738 return table; 739 } 740 741 static void fastrpc_unmap_dma_buf(struct dma_buf_attachment *attach, 742 struct sg_table *table, 743 enum dma_data_direction dir) 744 { 745 dma_unmap_sgtable(attach->dev, table, dir, 0); 746 } 747 748 static void fastrpc_release(struct dma_buf *dmabuf) 749 { 750 struct fastrpc_buf *buffer = dmabuf->priv; 751 752 fastrpc_buf_free(buffer); 753 } 754 755 static int fastrpc_dma_buf_attach(struct dma_buf *dmabuf, 756 struct dma_buf_attachment *attachment) 757 { 758 struct fastrpc_dma_buf_attachment *a; 759 struct fastrpc_buf *buffer = dmabuf->priv; 760 int ret; 761 762 a = kzalloc_obj(*a); 763 if (!a) 764 return -ENOMEM; 765 766 ret = dma_get_sgtable(buffer->dev, &a->sgt, buffer->virt, 767 fastrpc_ipa_to_dma_addr(buffer->fl->cctx, buffer->dma_addr), 768 buffer->size); 769 if (ret < 0) { 770 dev_err(buffer->dev, "failed to get scatterlist from DMA API\n"); 771 kfree(a); 772 return -EINVAL; 773 } 774 775 a->dev = attachment->dev; 776 INIT_LIST_HEAD(&a->node); 777 attachment->priv = a; 778 779 mutex_lock(&buffer->lock); 780 list_add(&a->node, &buffer->attachments); 781 mutex_unlock(&buffer->lock); 782 783 return 0; 784 } 785 786 static void fastrpc_dma_buf_detatch(struct dma_buf *dmabuf, 787 struct dma_buf_attachment *attachment) 788 { 789 struct fastrpc_dma_buf_attachment *a = attachment->priv; 790 struct fastrpc_buf *buffer = dmabuf->priv; 791 792 mutex_lock(&buffer->lock); 793 list_del(&a->node); 794 mutex_unlock(&buffer->lock); 795 sg_free_table(&a->sgt); 796 kfree(a); 797 } 798 799 static int fastrpc_vmap(struct dma_buf *dmabuf, struct iosys_map *map) 800 { 801 struct fastrpc_buf *buf = dmabuf->priv; 802 803 iosys_map_set_vaddr(map, buf->virt); 804 805 return 0; 806 } 807 808 static int fastrpc_mmap(struct dma_buf *dmabuf, 809 struct vm_area_struct *vma) 810 { 811 struct fastrpc_buf *buf = dmabuf->priv; 812 size_t size = vma->vm_end - vma->vm_start; 813 814 dma_resv_assert_held(dmabuf->resv); 815 816 return dma_mmap_coherent(buf->dev, vma, buf->virt, 817 fastrpc_ipa_to_dma_addr(buf->fl->cctx, buf->dma_addr), size); 818 } 819 820 static const struct dma_buf_ops fastrpc_dma_buf_ops = { 821 .attach = fastrpc_dma_buf_attach, 822 .detach = fastrpc_dma_buf_detatch, 823 .map_dma_buf = fastrpc_map_dma_buf, 824 .unmap_dma_buf = fastrpc_unmap_dma_buf, 825 .mmap = fastrpc_mmap, 826 .vmap = fastrpc_vmap, 827 .release = fastrpc_release, 828 }; 829 830 static dma_addr_t fastrpc_compute_dma_addr(struct fastrpc_user *fl, dma_addr_t sg_dma_addr) 831 { 832 return sg_dma_addr + fastrpc_sid_offset(fl->cctx, fl->sctx); 833 } 834 835 static int fastrpc_map_attach(struct fastrpc_user *fl, int fd, 836 u64 len, u32 attr, struct fastrpc_map **ppmap) 837 { 838 struct fastrpc_session_ctx *sess = fl->sctx; 839 struct fastrpc_map *map = NULL; 840 struct sg_table *table; 841 struct scatterlist *sgl = NULL; 842 int err = 0, sgl_index = 0; 843 844 map = kzalloc_obj(*map); 845 if (!map) 846 return -ENOMEM; 847 848 INIT_LIST_HEAD(&map->node); 849 kref_init(&map->refcount); 850 851 map->fl = fl; 852 map->fd = fd; 853 map->buf = dma_buf_get(fd); 854 if (IS_ERR(map->buf)) { 855 err = PTR_ERR(map->buf); 856 goto get_err; 857 } 858 859 map->attach = dma_buf_attach(map->buf, sess->dev); 860 if (IS_ERR(map->attach)) { 861 dev_err(sess->dev, "Failed to attach dmabuf\n"); 862 err = PTR_ERR(map->attach); 863 goto attach_err; 864 } 865 866 table = dma_buf_map_attachment_unlocked(map->attach, DMA_BIDIRECTIONAL); 867 if (IS_ERR(table)) { 868 err = PTR_ERR(table); 869 goto map_err; 870 } 871 map->table = table; 872 873 if (attr & FASTRPC_ATTR_SECUREMAP) 874 map->dma_addr = sg_phys(map->table->sgl); 875 else 876 map->dma_addr = fastrpc_compute_dma_addr(fl, sg_dma_address(map->table->sgl)); 877 for_each_sg(map->table->sgl, sgl, map->table->nents, 878 sgl_index) 879 map->size += sg_dma_len(sgl); 880 if (len > map->size) { 881 dev_dbg(sess->dev, "Bad size passed len 0x%llx map size 0x%llx\n", 882 len, map->size); 883 err = -EINVAL; 884 goto map_err; 885 } 886 map->va = sg_virt(map->table->sgl); 887 map->len = len; 888 889 if (attr & FASTRPC_ATTR_SECUREMAP) { 890 /* 891 * If subsystem VMIDs are defined in DTSI, then do 892 * hyp_assign from HLOS to those VM(s) 893 */ 894 u64 src_perms = BIT(QCOM_SCM_VMID_HLOS); 895 struct qcom_scm_vmperm dst_perms[2] = {0}; 896 897 dst_perms[0].vmid = QCOM_SCM_VMID_HLOS; 898 dst_perms[0].perm = QCOM_SCM_PERM_RW; 899 dst_perms[1].vmid = fl->cctx->vmperms[0].vmid; 900 dst_perms[1].perm = QCOM_SCM_PERM_RWX; 901 map->attr = attr; 902 err = qcom_scm_assign_mem(map->dma_addr, (u64)map->len, &src_perms, dst_perms, 2); 903 if (err) { 904 dev_err(sess->dev, 905 "Failed to assign memory with dma_addr %pad size 0x%llx err %d\n", 906 &map->dma_addr, map->len, err); 907 goto map_err; 908 } 909 } 910 spin_lock(&fl->lock); 911 list_add_tail(&map->node, &fl->maps); 912 spin_unlock(&fl->lock); 913 *ppmap = map; 914 915 return 0; 916 917 map_err: 918 dma_buf_detach(map->buf, map->attach); 919 attach_err: 920 dma_buf_put(map->buf); 921 get_err: 922 fastrpc_map_put(map); 923 924 return err; 925 } 926 927 static int fastrpc_map_create(struct fastrpc_user *fl, int fd, 928 u64 len, u32 attr, struct fastrpc_map **ppmap) 929 { 930 if (!fastrpc_map_lookup(fl, fd, ppmap, true)) 931 return 0; 932 933 return fastrpc_map_attach(fl, fd, len, attr, ppmap); 934 } 935 936 /* 937 * Fastrpc payload buffer with metadata looks like: 938 * 939 * >>>>>> START of METADATA <<<<<<<<< 940 * +---------------------------------+ 941 * | Arguments | 942 * | type:(union fastrpc_remote_arg)| 943 * | (0 - N) | 944 * +---------------------------------+ 945 * | Invoke Buffer list | 946 * | type:(struct fastrpc_invoke_buf)| 947 * | (0 - N) | 948 * +---------------------------------+ 949 * | Page info list | 950 * | type:(struct fastrpc_phy_page) | 951 * | (0 - N) | 952 * +---------------------------------+ 953 * | Optional info | 954 * |(can be specific to SoC/Firmware)| 955 * +---------------------------------+ 956 * >>>>>>>> END of METADATA <<<<<<<<< 957 * +---------------------------------+ 958 * | Inline ARGS | 959 * | (0-N) | 960 * +---------------------------------+ 961 */ 962 963 static int fastrpc_get_meta_size(struct fastrpc_invoke_ctx *ctx) 964 { 965 int size = 0; 966 967 size = (sizeof(struct fastrpc_remote_buf) + 968 sizeof(struct fastrpc_invoke_buf) + 969 sizeof(struct fastrpc_phy_page)) * ctx->nscalars + 970 sizeof(u64) * FASTRPC_MAX_FDLIST + 971 sizeof(u32) * FASTRPC_MAX_CRCLIST; 972 973 return size; 974 } 975 976 static u64 fastrpc_get_payload_size(struct fastrpc_invoke_ctx *ctx, int metalen) 977 { 978 u64 size = 0; 979 int oix; 980 981 size = ALIGN(metalen, FASTRPC_ALIGN); 982 for (oix = 0; oix < ctx->nbufs; oix++) { 983 int i = ctx->olaps[oix].raix; 984 985 if (ctx->args[i].fd == 0 || ctx->args[i].fd == -1) { 986 987 if (ctx->olaps[oix].offset == 0) 988 size = ALIGN(size, FASTRPC_ALIGN); 989 990 size += (ctx->olaps[oix].mend - ctx->olaps[oix].mstart); 991 } 992 } 993 994 return size; 995 } 996 997 static int fastrpc_create_maps(struct fastrpc_invoke_ctx *ctx) 998 { 999 struct device *dev = ctx->fl->sctx->dev; 1000 int i, err; 1001 1002 for (i = 0; i < ctx->nscalars; ++i) { 1003 1004 if (ctx->args[i].fd == 0 || ctx->args[i].fd == -1 || 1005 ctx->args[i].length == 0) 1006 continue; 1007 1008 if (i < ctx->nbufs) 1009 err = fastrpc_map_create(ctx->fl, ctx->args[i].fd, 1010 ctx->args[i].length, ctx->args[i].attr, &ctx->maps[i]); 1011 else 1012 err = fastrpc_map_attach(ctx->fl, ctx->args[i].fd, 1013 ctx->args[i].length, ctx->args[i].attr, &ctx->maps[i]); 1014 if (err) { 1015 dev_err(dev, "Error Creating map %d\n", err); 1016 return -EINVAL; 1017 } 1018 1019 } 1020 return 0; 1021 } 1022 1023 static struct fastrpc_invoke_buf *fastrpc_invoke_buf_start(union fastrpc_remote_arg *pra, int len) 1024 { 1025 return (struct fastrpc_invoke_buf *)(&pra[len]); 1026 } 1027 1028 static struct fastrpc_phy_page *fastrpc_phy_page_start(struct fastrpc_invoke_buf *buf, int len) 1029 { 1030 return (struct fastrpc_phy_page *)(&buf[len]); 1031 } 1032 1033 static int fastrpc_get_args(u32 kernel, struct fastrpc_invoke_ctx *ctx) 1034 { 1035 struct device *dev = ctx->fl->sctx->dev; 1036 union fastrpc_remote_arg *rpra; 1037 struct fastrpc_invoke_buf *list; 1038 struct fastrpc_phy_page *pages; 1039 int inbufs, i, oix, err = 0; 1040 u64 len, rlen, pkt_size; 1041 u64 pg_start, pg_end; 1042 uintptr_t args; 1043 int metalen; 1044 1045 inbufs = REMOTE_SCALARS_INBUFS(ctx->sc); 1046 metalen = fastrpc_get_meta_size(ctx); 1047 pkt_size = fastrpc_get_payload_size(ctx, metalen); 1048 1049 err = fastrpc_create_maps(ctx); 1050 if (err) 1051 return err; 1052 1053 ctx->msg_sz = pkt_size; 1054 1055 if (ctx->fl->sctx->sid) 1056 err = fastrpc_buf_alloc(ctx->fl, dev, pkt_size, &ctx->buf); 1057 else 1058 err = fastrpc_remote_heap_alloc(ctx->fl, dev, pkt_size, &ctx->buf); 1059 if (err) 1060 return err; 1061 1062 memset(ctx->buf->virt, 0, pkt_size); 1063 rpra = ctx->buf->virt; 1064 list = fastrpc_invoke_buf_start(rpra, ctx->nscalars); 1065 pages = fastrpc_phy_page_start(list, ctx->nscalars); 1066 args = (uintptr_t)ctx->buf->virt + metalen; 1067 rlen = pkt_size - metalen; 1068 ctx->rpra = rpra; 1069 1070 for (oix = 0; oix < ctx->nbufs; ++oix) { 1071 int mlen; 1072 1073 i = ctx->olaps[oix].raix; 1074 len = ctx->args[i].length; 1075 1076 rpra[i].buf.pv = 0; 1077 rpra[i].buf.len = len; 1078 list[i].num = len ? 1 : 0; 1079 list[i].pgidx = i; 1080 1081 if (!len) 1082 continue; 1083 1084 if (ctx->maps[i]) { 1085 struct vm_area_struct *vma = NULL; 1086 1087 rpra[i].buf.pv = (u64) ctx->args[i].ptr; 1088 pages[i].addr = ctx->maps[i]->dma_addr; 1089 1090 mmap_read_lock(current->mm); 1091 vma = vma_lookup(current->mm, ctx->args[i].ptr); 1092 if (vma) 1093 pages[i].addr += (ctx->args[i].ptr & PAGE_MASK) - 1094 vma->vm_start; 1095 mmap_read_unlock(current->mm); 1096 1097 pg_start = (ctx->args[i].ptr & PAGE_MASK) >> PAGE_SHIFT; 1098 pg_end = ((ctx->args[i].ptr + len - 1) & PAGE_MASK) >> 1099 PAGE_SHIFT; 1100 pages[i].size = (pg_end - pg_start + 1) * PAGE_SIZE; 1101 1102 } else { 1103 1104 if (ctx->olaps[oix].offset == 0) { 1105 rlen -= ALIGN(args, FASTRPC_ALIGN) - args; 1106 args = ALIGN(args, FASTRPC_ALIGN); 1107 } 1108 1109 mlen = ctx->olaps[oix].mend - ctx->olaps[oix].mstart; 1110 1111 if (rlen < mlen) 1112 goto bail; 1113 1114 rpra[i].buf.pv = args - ctx->olaps[oix].offset; 1115 pages[i].addr = ctx->buf->dma_addr - 1116 ctx->olaps[oix].offset + 1117 (pkt_size - rlen); 1118 pages[i].addr = pages[i].addr & PAGE_MASK; 1119 1120 pg_start = (rpra[i].buf.pv & PAGE_MASK) >> PAGE_SHIFT; 1121 pg_end = ((rpra[i].buf.pv + len - 1) & PAGE_MASK) >> PAGE_SHIFT; 1122 pages[i].size = (pg_end - pg_start + 1) * PAGE_SIZE; 1123 args = args + mlen; 1124 rlen -= mlen; 1125 } 1126 1127 if (i < inbufs && !ctx->maps[i]) { 1128 void *dst = (void *)(uintptr_t)rpra[i].buf.pv; 1129 void *src = (void *)(uintptr_t)ctx->args[i].ptr; 1130 1131 if (!kernel) { 1132 if (copy_from_user(dst, (void __user *)src, 1133 len)) { 1134 err = -EFAULT; 1135 goto bail; 1136 } 1137 } else { 1138 memcpy(dst, src, len); 1139 } 1140 } 1141 } 1142 1143 for (i = ctx->nbufs; i < ctx->nscalars; ++i) { 1144 list[i].num = ctx->args[i].length ? 1 : 0; 1145 list[i].pgidx = i; 1146 if (ctx->maps[i]) { 1147 pages[i].addr = ctx->maps[i]->dma_addr; 1148 pages[i].size = ctx->maps[i]->size; 1149 } 1150 rpra[i].dma.fd = ctx->args[i].fd; 1151 rpra[i].dma.len = ctx->args[i].length; 1152 rpra[i].dma.offset = (u64) ctx->args[i].ptr; 1153 } 1154 1155 bail: 1156 if (err) 1157 dev_err(dev, "Error: get invoke args failed:%d\n", err); 1158 1159 return err; 1160 } 1161 1162 static int fastrpc_put_args(struct fastrpc_invoke_ctx *ctx, 1163 u32 kernel) 1164 { 1165 union fastrpc_remote_arg *rpra = ctx->rpra; 1166 struct fastrpc_user *fl = ctx->fl; 1167 struct fastrpc_map *mmap = NULL; 1168 struct fastrpc_invoke_buf *list; 1169 struct fastrpc_phy_page *pages; 1170 u64 *fdlist; 1171 int i, inbufs, outbufs, handles; 1172 int ret = 0; 1173 1174 inbufs = REMOTE_SCALARS_INBUFS(ctx->sc); 1175 outbufs = REMOTE_SCALARS_OUTBUFS(ctx->sc); 1176 handles = REMOTE_SCALARS_INHANDLES(ctx->sc) + REMOTE_SCALARS_OUTHANDLES(ctx->sc); 1177 list = fastrpc_invoke_buf_start(rpra, ctx->nscalars); 1178 pages = fastrpc_phy_page_start(list, ctx->nscalars); 1179 fdlist = (uint64_t *)(pages + inbufs + outbufs + handles); 1180 1181 for (i = inbufs; i < ctx->nbufs; ++i) { 1182 if (!ctx->maps[i]) { 1183 void *src = (void *)(uintptr_t)rpra[i].buf.pv; 1184 void *dst = (void *)(uintptr_t)ctx->args[i].ptr; 1185 u64 len = rpra[i].buf.len; 1186 1187 if (!kernel) { 1188 if (copy_to_user((void __user *)dst, src, len)) { 1189 ret = -EFAULT; 1190 goto cleanup_fdlist; 1191 } 1192 } else { 1193 memcpy(dst, src, len); 1194 } 1195 } 1196 } 1197 1198 cleanup_fdlist: 1199 /* Clean up fdlist which is updated by DSP */ 1200 for (i = 0; i < FASTRPC_MAX_FDLIST; i++) { 1201 if (!fdlist[i]) 1202 break; 1203 if (!fastrpc_map_lookup(fl, (int)fdlist[i], &mmap, false)) 1204 fastrpc_map_put(mmap); 1205 } 1206 1207 return ret; 1208 } 1209 1210 static int fastrpc_invoke_send(struct fastrpc_session_ctx *sctx, 1211 struct fastrpc_invoke_ctx *ctx, 1212 u32 kernel, uint32_t handle) 1213 { 1214 struct fastrpc_channel_ctx *cctx; 1215 struct fastrpc_user *fl = ctx->fl; 1216 struct fastrpc_msg *msg = &ctx->msg; 1217 int ret; 1218 1219 cctx = fl->cctx; 1220 msg->client_id = fl->client_id; 1221 msg->tid = current->pid; 1222 1223 if (kernel) 1224 msg->client_id = 0; 1225 1226 msg->ctx = ctx->ctxid | fl->pd; 1227 msg->handle = handle; 1228 msg->sc = ctx->sc; 1229 msg->addr = ctx->buf ? ctx->buf->dma_addr : 0; 1230 msg->size = roundup(ctx->msg_sz, PAGE_SIZE); 1231 fastrpc_context_get(ctx); 1232 1233 ret = rpmsg_send(cctx->rpdev->ept, (void *)msg, sizeof(*msg)); 1234 1235 if (ret) 1236 fastrpc_context_put(ctx); 1237 1238 return ret; 1239 1240 } 1241 1242 static int fastrpc_internal_invoke(struct fastrpc_user *fl, u32 kernel, 1243 u32 handle, u32 sc, 1244 struct fastrpc_invoke_args *args) 1245 { 1246 struct fastrpc_invoke_ctx *ctx = NULL; 1247 struct fastrpc_buf *buf, *b; 1248 1249 int err = 0; 1250 1251 if (!fl->sctx) 1252 return -EINVAL; 1253 1254 if (!fl->cctx->rpdev) 1255 return -EPIPE; 1256 1257 if (handle == FASTRPC_INIT_HANDLE && !kernel) { 1258 dev_warn_ratelimited(fl->sctx->dev, "user app trying to send a kernel RPC message (%d)\n", handle); 1259 return -EPERM; 1260 } 1261 1262 ctx = fastrpc_context_alloc(fl, kernel, sc, args); 1263 if (IS_ERR(ctx)) 1264 return PTR_ERR(ctx); 1265 1266 err = fastrpc_get_args(kernel, ctx); 1267 if (err) 1268 goto bail; 1269 1270 /* make sure that all CPU memory writes are seen by DSP */ 1271 dma_wmb(); 1272 /* Send invoke buffer to remote dsp */ 1273 err = fastrpc_invoke_send(fl->sctx, ctx, kernel, handle); 1274 if (err) 1275 goto bail; 1276 1277 if (kernel) { 1278 if (!wait_for_completion_timeout(&ctx->work, 10 * HZ)) 1279 err = -ETIMEDOUT; 1280 } else { 1281 err = wait_for_completion_interruptible(&ctx->work); 1282 } 1283 1284 if (err) 1285 goto bail; 1286 1287 /* make sure that all memory writes by DSP are seen by CPU */ 1288 dma_rmb(); 1289 /* populate all the output buffers with results */ 1290 err = fastrpc_put_args(ctx, kernel); 1291 if (err) 1292 goto bail; 1293 1294 /* Check the response from remote dsp */ 1295 err = ctx->retval; 1296 if (err) 1297 goto bail; 1298 1299 bail: 1300 if (err != -ERESTARTSYS && err != -ETIMEDOUT) { 1301 /* We are done with this compute context */ 1302 spin_lock(&fl->lock); 1303 list_del(&ctx->node); 1304 spin_unlock(&fl->lock); 1305 fastrpc_context_put(ctx); 1306 } 1307 1308 if (err == -ERESTARTSYS) { 1309 spin_lock(&fl->lock); 1310 list_for_each_entry_safe(buf, b, &fl->mmaps, node) { 1311 list_del(&buf->node); 1312 list_add_tail(&buf->node, &fl->cctx->invoke_interrupted_mmaps); 1313 } 1314 spin_unlock(&fl->lock); 1315 } 1316 1317 if (err) 1318 dev_dbg(fl->sctx->dev, "Error: Invoke Failed %d\n", err); 1319 1320 return err; 1321 } 1322 1323 static bool is_session_rejected(struct fastrpc_user *fl, bool unsigned_pd_request) 1324 { 1325 /* Check if the device node is non-secure and channel is secure*/ 1326 if (!fl->is_secure_dev && fl->cctx->secure) { 1327 /* 1328 * Allow untrusted applications to offload only to Unsigned PD when 1329 * channel is configured as secure and block untrusted apps on channel 1330 * that does not support unsigned PD offload 1331 */ 1332 if (!fl->cctx->unsigned_support || !unsigned_pd_request) { 1333 dev_err(&fl->cctx->rpdev->dev, "Error: Untrusted application trying to offload to signed PD\n"); 1334 return true; 1335 } 1336 } 1337 1338 return false; 1339 } 1340 1341 static int fastrpc_init_create_static_process(struct fastrpc_user *fl, 1342 char __user *argp) 1343 { 1344 struct fastrpc_init_create_static init; 1345 struct fastrpc_invoke_args *args; 1346 struct fastrpc_phy_page pages[1]; 1347 char *name; 1348 int err; 1349 bool scm_done = false; 1350 struct { 1351 int client_id; 1352 u32 namelen; 1353 u32 pageslen; 1354 } inbuf; 1355 u32 sc; 1356 1357 args = kzalloc_objs(*args, FASTRPC_CREATE_STATIC_PROCESS_NARGS); 1358 if (!args) 1359 return -ENOMEM; 1360 1361 if (copy_from_user(&init, argp, sizeof(init))) { 1362 err = -EFAULT; 1363 goto err; 1364 } 1365 1366 if (init.namelen > INIT_FILE_NAMELEN_MAX) { 1367 err = -EINVAL; 1368 goto err; 1369 } 1370 1371 name = memdup_user(u64_to_user_ptr(init.name), init.namelen); 1372 if (IS_ERR(name)) { 1373 err = PTR_ERR(name); 1374 goto err; 1375 } 1376 inbuf.client_id = fl->client_id; 1377 inbuf.namelen = init.namelen; 1378 inbuf.pageslen = 0; 1379 if (!fl->cctx->remote_heap) { 1380 err = fastrpc_remote_heap_alloc(fl, fl->sctx->dev, init.memlen, 1381 &fl->cctx->remote_heap); 1382 if (err) 1383 goto err_name; 1384 1385 /* Map if we have any heap VMIDs associated with this ADSP Static Process. */ 1386 if (fl->cctx->vmcount) { 1387 u64 src_perms = BIT(QCOM_SCM_VMID_HLOS); 1388 1389 err = qcom_scm_assign_mem(fl->cctx->remote_heap->dma_addr, 1390 (u64)fl->cctx->remote_heap->size, 1391 &src_perms, 1392 fl->cctx->vmperms, fl->cctx->vmcount); 1393 if (err) { 1394 dev_err(fl->sctx->dev, 1395 "Failed to assign memory with dma_addr %pad size 0x%llx err %d\n", 1396 &fl->cctx->remote_heap->dma_addr, 1397 fl->cctx->remote_heap->size, err); 1398 goto err_map; 1399 } 1400 scm_done = true; 1401 inbuf.pageslen = 1; 1402 } 1403 } 1404 1405 fl->pd = USER_PD; 1406 1407 args[0].ptr = (u64)(uintptr_t)&inbuf; 1408 args[0].length = sizeof(inbuf); 1409 args[0].fd = -1; 1410 1411 args[1].ptr = (u64)(uintptr_t)name; 1412 args[1].length = inbuf.namelen; 1413 args[1].fd = -1; 1414 1415 pages[0].addr = fl->cctx->remote_heap->dma_addr; 1416 pages[0].size = fl->cctx->remote_heap->size; 1417 1418 args[2].ptr = (u64)(uintptr_t) pages; 1419 args[2].length = sizeof(*pages); 1420 args[2].fd = -1; 1421 1422 sc = FASTRPC_SCALARS(FASTRPC_RMID_INIT_CREATE_STATIC, 3, 0); 1423 1424 err = fastrpc_internal_invoke(fl, true, FASTRPC_INIT_HANDLE, 1425 sc, args); 1426 if (err) 1427 goto err_invoke; 1428 1429 kfree(args); 1430 kfree(name); 1431 1432 return 0; 1433 err_invoke: 1434 if (fl->cctx->vmcount && scm_done) { 1435 u64 src_perms = 0; 1436 struct qcom_scm_vmperm dst_perms; 1437 u32 i; 1438 1439 for (i = 0; i < fl->cctx->vmcount; i++) 1440 src_perms |= BIT(fl->cctx->vmperms[i].vmid); 1441 1442 dst_perms.vmid = QCOM_SCM_VMID_HLOS; 1443 dst_perms.perm = QCOM_SCM_PERM_RWX; 1444 err = qcom_scm_assign_mem(fl->cctx->remote_heap->dma_addr, 1445 (u64)fl->cctx->remote_heap->size, 1446 &src_perms, &dst_perms, 1); 1447 if (err) 1448 dev_err(fl->sctx->dev, "Failed to assign memory dma_addr %pad size 0x%llx err %d\n", 1449 &fl->cctx->remote_heap->dma_addr, fl->cctx->remote_heap->size, err); 1450 } 1451 err_map: 1452 fastrpc_buf_free(fl->cctx->remote_heap); 1453 fl->cctx->remote_heap = NULL; 1454 err_name: 1455 kfree(name); 1456 err: 1457 kfree(args); 1458 1459 return err; 1460 } 1461 1462 static int fastrpc_init_create_process(struct fastrpc_user *fl, 1463 char __user *argp) 1464 { 1465 struct fastrpc_init_create init; 1466 struct fastrpc_invoke_args *args; 1467 struct fastrpc_phy_page pages[1]; 1468 struct fastrpc_map *map = NULL; 1469 struct fastrpc_buf *imem = NULL; 1470 int memlen; 1471 int err; 1472 struct { 1473 int client_id; 1474 u32 namelen; 1475 u32 filelen; 1476 u32 pageslen; 1477 u32 attrs; 1478 u32 siglen; 1479 } inbuf; 1480 u32 sc; 1481 bool unsigned_module = false; 1482 1483 args = kzalloc_objs(*args, FASTRPC_CREATE_PROCESS_NARGS); 1484 if (!args) 1485 return -ENOMEM; 1486 1487 if (copy_from_user(&init, argp, sizeof(init))) { 1488 err = -EFAULT; 1489 goto err; 1490 } 1491 1492 if (init.attrs & FASTRPC_MODE_UNSIGNED_MODULE) 1493 unsigned_module = true; 1494 1495 if (is_session_rejected(fl, unsigned_module)) { 1496 err = -ECONNREFUSED; 1497 goto err; 1498 } 1499 1500 if (init.filelen > INIT_FILELEN_MAX) { 1501 err = -EINVAL; 1502 goto err; 1503 } 1504 1505 inbuf.client_id = fl->client_id; 1506 inbuf.namelen = strlen(current->comm) + 1; 1507 inbuf.filelen = init.filelen; 1508 inbuf.pageslen = 1; 1509 inbuf.attrs = init.attrs; 1510 inbuf.siglen = init.siglen; 1511 fl->pd = USER_PD; 1512 1513 if (init.filelen && init.filefd) { 1514 err = fastrpc_map_create(fl, init.filefd, init.filelen, 0, &map); 1515 if (err) 1516 goto err; 1517 } 1518 1519 memlen = ALIGN(max(INIT_FILELEN_MAX, (int)init.filelen * 4), 1520 1024 * 1024); 1521 err = fastrpc_buf_alloc(fl, fl->sctx->dev, memlen, 1522 &imem); 1523 if (err) 1524 goto err_alloc; 1525 1526 fl->init_mem = imem; 1527 args[0].ptr = (u64)(uintptr_t)&inbuf; 1528 args[0].length = sizeof(inbuf); 1529 args[0].fd = -1; 1530 1531 args[1].ptr = (u64)(uintptr_t)current->comm; 1532 args[1].length = inbuf.namelen; 1533 args[1].fd = -1; 1534 1535 args[2].ptr = (u64) init.file; 1536 args[2].length = inbuf.filelen; 1537 args[2].fd = init.filefd; 1538 1539 pages[0].addr = imem->dma_addr; 1540 pages[0].size = imem->size; 1541 1542 args[3].ptr = (u64)(uintptr_t) pages; 1543 args[3].length = 1 * sizeof(*pages); 1544 args[3].fd = -1; 1545 1546 args[4].ptr = (u64)(uintptr_t)&inbuf.attrs; 1547 args[4].length = sizeof(inbuf.attrs); 1548 args[4].fd = -1; 1549 1550 args[5].ptr = (u64)(uintptr_t) &inbuf.siglen; 1551 args[5].length = sizeof(inbuf.siglen); 1552 args[5].fd = -1; 1553 1554 sc = FASTRPC_SCALARS(FASTRPC_RMID_INIT_CREATE, 4, 0); 1555 if (init.attrs) 1556 sc = FASTRPC_SCALARS(FASTRPC_RMID_INIT_CREATE_ATTR, 4, 0); 1557 1558 err = fastrpc_internal_invoke(fl, true, FASTRPC_INIT_HANDLE, 1559 sc, args); 1560 if (err) 1561 goto err_invoke; 1562 1563 kfree(args); 1564 1565 return 0; 1566 1567 err_invoke: 1568 fl->init_mem = NULL; 1569 fastrpc_buf_free(imem); 1570 err_alloc: 1571 fastrpc_map_put(map); 1572 err: 1573 kfree(args); 1574 1575 return err; 1576 } 1577 1578 static struct fastrpc_session_ctx *fastrpc_session_alloc( 1579 struct fastrpc_user *fl) 1580 { 1581 struct fastrpc_channel_ctx *cctx = fl->cctx; 1582 struct fastrpc_session_ctx *session = NULL; 1583 unsigned long flags; 1584 int i; 1585 1586 spin_lock_irqsave(&cctx->lock, flags); 1587 for (i = 0; i < cctx->sesscount; i++) { 1588 if (!cctx->session[i].used && cctx->session[i].valid) { 1589 cctx->session[i].used = true; 1590 session = &cctx->session[i]; 1591 /* any non-zero ID will work, session_idx + 1 is the simplest one */ 1592 fl->client_id = i + 1; 1593 break; 1594 } 1595 } 1596 spin_unlock_irqrestore(&cctx->lock, flags); 1597 1598 return session; 1599 } 1600 1601 static void fastrpc_session_free(struct fastrpc_channel_ctx *cctx, 1602 struct fastrpc_session_ctx *session) 1603 { 1604 unsigned long flags; 1605 1606 spin_lock_irqsave(&cctx->lock, flags); 1607 session->used = false; 1608 spin_unlock_irqrestore(&cctx->lock, flags); 1609 } 1610 1611 static int fastrpc_release_current_dsp_process(struct fastrpc_user *fl) 1612 { 1613 struct fastrpc_invoke_args args[1]; 1614 int client_id = 0; 1615 u32 sc; 1616 1617 client_id = fl->client_id; 1618 args[0].ptr = (u64)(uintptr_t) &client_id; 1619 args[0].length = sizeof(client_id); 1620 args[0].fd = -1; 1621 sc = FASTRPC_SCALARS(FASTRPC_RMID_INIT_RELEASE, 1, 0); 1622 1623 return fastrpc_internal_invoke(fl, true, FASTRPC_INIT_HANDLE, 1624 sc, &args[0]); 1625 } 1626 1627 static int fastrpc_device_release(struct inode *inode, struct file *file) 1628 { 1629 struct fastrpc_user *fl = (struct fastrpc_user *)file->private_data; 1630 struct fastrpc_channel_ctx *cctx = fl->cctx; 1631 unsigned long flags; 1632 1633 fastrpc_release_current_dsp_process(fl); 1634 1635 spin_lock_irqsave(&cctx->lock, flags); 1636 list_del(&fl->user); 1637 spin_unlock_irqrestore(&cctx->lock, flags); 1638 1639 fastrpc_session_free(cctx, fl->sctx); 1640 file->private_data = NULL; 1641 /* Release the reference taken in fastrpc_device_open */ 1642 fastrpc_user_put(fl); 1643 1644 return 0; 1645 } 1646 1647 static int fastrpc_device_open(struct inode *inode, struct file *filp) 1648 { 1649 struct fastrpc_channel_ctx *cctx; 1650 struct fastrpc_device *fdevice; 1651 struct fastrpc_user *fl = NULL; 1652 unsigned long flags; 1653 1654 fdevice = miscdev_to_fdevice(filp->private_data); 1655 cctx = fdevice->cctx; 1656 1657 fl = kzalloc_obj(*fl); 1658 if (!fl) 1659 return -ENOMEM; 1660 1661 /* Released in fastrpc_device_release() */ 1662 fastrpc_channel_ctx_get(cctx); 1663 1664 filp->private_data = fl; 1665 spin_lock_init(&fl->lock); 1666 mutex_init(&fl->mutex); 1667 INIT_LIST_HEAD(&fl->pending); 1668 INIT_LIST_HEAD(&fl->maps); 1669 INIT_LIST_HEAD(&fl->mmaps); 1670 INIT_LIST_HEAD(&fl->user); 1671 fl->cctx = cctx; 1672 fl->is_secure_dev = fdevice->secure; 1673 1674 fl->sctx = fastrpc_session_alloc(fl); 1675 if (!fl->sctx) { 1676 dev_err(&cctx->rpdev->dev, "No session available\n"); 1677 mutex_destroy(&fl->mutex); 1678 kfree(fl); 1679 fastrpc_channel_ctx_put(cctx); 1680 return -EBUSY; 1681 } 1682 1683 spin_lock_irqsave(&cctx->lock, flags); 1684 list_add_tail(&fl->user, &cctx->users); 1685 spin_unlock_irqrestore(&cctx->lock, flags); 1686 kref_init(&fl->refcount); 1687 1688 return 0; 1689 } 1690 1691 static int fastrpc_dmabuf_alloc(struct fastrpc_user *fl, char __user *argp) 1692 { 1693 struct fastrpc_alloc_dma_buf bp; 1694 DEFINE_DMA_BUF_EXPORT_INFO(exp_info); 1695 struct fastrpc_buf *buf = NULL; 1696 int err; 1697 1698 if (copy_from_user(&bp, argp, sizeof(bp))) 1699 return -EFAULT; 1700 1701 err = fastrpc_buf_alloc(fl, fl->sctx->dev, bp.size, &buf); 1702 if (err) 1703 return err; 1704 exp_info.ops = &fastrpc_dma_buf_ops; 1705 exp_info.size = bp.size; 1706 exp_info.flags = O_RDWR; 1707 exp_info.priv = buf; 1708 buf->dmabuf = dma_buf_export(&exp_info); 1709 if (IS_ERR(buf->dmabuf)) { 1710 err = PTR_ERR(buf->dmabuf); 1711 fastrpc_buf_free(buf); 1712 return err; 1713 } 1714 1715 bp.fd = dma_buf_fd(buf->dmabuf, O_ACCMODE); 1716 if (bp.fd < 0) { 1717 dma_buf_put(buf->dmabuf); 1718 return -EINVAL; 1719 } 1720 1721 if (copy_to_user(argp, &bp, sizeof(bp))) { 1722 /* 1723 * The usercopy failed, but we can't do much about it, as 1724 * dma_buf_fd() already called fd_install() and made the 1725 * file descriptor accessible for the current process. It 1726 * might already be closed and dmabuf no longer valid when 1727 * we reach this point. Therefore "leak" the fd and rely on 1728 * the process exit path to do any required cleanup. 1729 */ 1730 return -EFAULT; 1731 } 1732 1733 return 0; 1734 } 1735 1736 static int fastrpc_init_attach(struct fastrpc_user *fl, int pd) 1737 { 1738 struct fastrpc_invoke_args args[1]; 1739 int client_id = fl->client_id; 1740 u32 sc; 1741 1742 args[0].ptr = (u64)(uintptr_t) &client_id; 1743 args[0].length = sizeof(client_id); 1744 args[0].fd = -1; 1745 sc = FASTRPC_SCALARS(FASTRPC_RMID_INIT_ATTACH, 1, 0); 1746 fl->pd = pd; 1747 1748 return fastrpc_internal_invoke(fl, true, FASTRPC_INIT_HANDLE, 1749 sc, &args[0]); 1750 } 1751 1752 static int fastrpc_invoke(struct fastrpc_user *fl, char __user *argp) 1753 { 1754 struct fastrpc_invoke_args *args = NULL; 1755 struct fastrpc_invoke inv; 1756 u32 nscalars; 1757 int err; 1758 1759 if (copy_from_user(&inv, argp, sizeof(inv))) 1760 return -EFAULT; 1761 1762 /* nscalars is truncated here to max supported value */ 1763 nscalars = REMOTE_SCALARS_LENGTH(inv.sc); 1764 if (nscalars) { 1765 args = kzalloc_objs(*args, nscalars); 1766 if (!args) 1767 return -ENOMEM; 1768 1769 if (copy_from_user(args, (void __user *)(uintptr_t)inv.args, 1770 nscalars * sizeof(*args))) { 1771 kfree(args); 1772 return -EFAULT; 1773 } 1774 } 1775 1776 err = fastrpc_internal_invoke(fl, false, inv.handle, inv.sc, args); 1777 kfree(args); 1778 1779 return err; 1780 } 1781 1782 static int fastrpc_get_info_from_dsp(struct fastrpc_user *fl, uint32_t *dsp_attr_buf, 1783 uint32_t dsp_attr_buf_len) 1784 { 1785 struct fastrpc_invoke_args args[2] = { 0 }; 1786 1787 /* 1788 * Capability filled in userspace. This carries the information 1789 * about the remoteproc support which is fetched from the remoteproc 1790 * sysfs node by userspace. 1791 */ 1792 dsp_attr_buf[0] = 0; 1793 dsp_attr_buf_len -= 1; 1794 1795 args[0].ptr = (u64)(uintptr_t)&dsp_attr_buf_len; 1796 args[0].length = sizeof(dsp_attr_buf_len); 1797 args[0].fd = -1; 1798 args[1].ptr = (u64)(uintptr_t)&dsp_attr_buf[1]; 1799 args[1].length = dsp_attr_buf_len * sizeof(u32); 1800 args[1].fd = -1; 1801 1802 return fastrpc_internal_invoke(fl, true, FASTRPC_DSP_UTILITIES_HANDLE, 1803 FASTRPC_SCALARS(0, 1, 1), args); 1804 } 1805 1806 static int fastrpc_get_info_from_kernel(struct fastrpc_ioctl_capability *cap, 1807 struct fastrpc_user *fl) 1808 { 1809 struct fastrpc_channel_ctx *cctx = fl->cctx; 1810 uint32_t attribute_id = cap->attribute_id; 1811 uint32_t *dsp_attributes; 1812 unsigned long flags; 1813 int err; 1814 1815 spin_lock_irqsave(&cctx->lock, flags); 1816 /* check if we already have queried dsp for attributes */ 1817 if (cctx->valid_attributes) { 1818 spin_unlock_irqrestore(&cctx->lock, flags); 1819 goto done; 1820 } 1821 spin_unlock_irqrestore(&cctx->lock, flags); 1822 1823 dsp_attributes = kzalloc(FASTRPC_MAX_DSP_ATTRIBUTES_LEN, GFP_KERNEL); 1824 if (!dsp_attributes) 1825 return -ENOMEM; 1826 1827 err = fastrpc_get_info_from_dsp(fl, dsp_attributes, FASTRPC_MAX_DSP_ATTRIBUTES); 1828 if (err == DSP_UNSUPPORTED_API) { 1829 dev_info(&cctx->rpdev->dev, 1830 "Warning: DSP capabilities not supported\n"); 1831 kfree(dsp_attributes); 1832 return -EOPNOTSUPP; 1833 } else if (err) { 1834 dev_err(&cctx->rpdev->dev, "Error: dsp information is incorrect err: %d\n", err); 1835 kfree(dsp_attributes); 1836 return err; 1837 } 1838 1839 spin_lock_irqsave(&cctx->lock, flags); 1840 memcpy(cctx->dsp_attributes, dsp_attributes, FASTRPC_MAX_DSP_ATTRIBUTES_LEN); 1841 cctx->valid_attributes = true; 1842 spin_unlock_irqrestore(&cctx->lock, flags); 1843 kfree(dsp_attributes); 1844 done: 1845 cap->capability = cctx->dsp_attributes[attribute_id]; 1846 return 0; 1847 } 1848 1849 static int fastrpc_get_dsp_info(struct fastrpc_user *fl, char __user *argp) 1850 { 1851 struct fastrpc_ioctl_capability cap = {0}; 1852 int err = 0; 1853 1854 if (copy_from_user(&cap, argp, sizeof(cap))) 1855 return -EFAULT; 1856 1857 cap.capability = 0; 1858 1859 if (cap.attribute_id >= FASTRPC_MAX_DSP_ATTRIBUTES) { 1860 dev_err(&fl->cctx->rpdev->dev, "Error: invalid attribute: %d, err: %d\n", 1861 cap.attribute_id, err); 1862 return -EOVERFLOW; 1863 } 1864 1865 err = fastrpc_get_info_from_kernel(&cap, fl); 1866 if (err) 1867 return err; 1868 1869 if (copy_to_user(argp, &cap, sizeof(cap))) 1870 return -EFAULT; 1871 1872 return 0; 1873 } 1874 1875 static int fastrpc_req_munmap_impl(struct fastrpc_user *fl, struct fastrpc_buf *buf) 1876 { 1877 struct fastrpc_invoke_args args[1] = { [0] = { 0 } }; 1878 struct fastrpc_munmap_req_msg req_msg; 1879 struct device *dev = fl->sctx->dev; 1880 int err; 1881 u32 sc; 1882 1883 req_msg.client_id = fl->client_id; 1884 req_msg.size = buf->size; 1885 req_msg.vaddr = buf->raddr; 1886 1887 args[0].ptr = (u64) (uintptr_t) &req_msg; 1888 args[0].length = sizeof(req_msg); 1889 1890 sc = FASTRPC_SCALARS(FASTRPC_RMID_INIT_MUNMAP, 1, 0); 1891 err = fastrpc_internal_invoke(fl, true, FASTRPC_INIT_HANDLE, sc, 1892 &args[0]); 1893 if (!err) { 1894 dev_dbg(dev, "unmmap\tpt 0x%09lx OK\n", buf->raddr); 1895 fastrpc_buf_free(buf); 1896 } else { 1897 dev_err(dev, "unmmap\tpt 0x%09lx ERROR\n", buf->raddr); 1898 } 1899 1900 return err; 1901 } 1902 1903 static int fastrpc_req_munmap(struct fastrpc_user *fl, char __user *argp) 1904 { 1905 struct fastrpc_buf *buf = NULL, *iter, *b; 1906 struct fastrpc_req_munmap req; 1907 struct device *dev = fl->sctx->dev; 1908 int err; 1909 1910 if (copy_from_user(&req, argp, sizeof(req))) 1911 return -EFAULT; 1912 1913 spin_lock(&fl->lock); 1914 list_for_each_entry_safe(iter, b, &fl->mmaps, node) { 1915 if ((iter->raddr == req.vaddrout) && (iter->size == req.size)) { 1916 list_del(&iter->node); 1917 buf = iter; 1918 break; 1919 } 1920 } 1921 spin_unlock(&fl->lock); 1922 1923 if (!buf) { 1924 dev_err(dev, "mmap\t\tpt 0x%09llx [len 0x%08llx] not in list\n", 1925 req.vaddrout, req.size); 1926 return -EINVAL; 1927 } 1928 1929 err = fastrpc_req_munmap_impl(fl, buf); 1930 if (err) { 1931 spin_lock(&fl->lock); 1932 list_add_tail(&buf->node, &fl->mmaps); 1933 spin_unlock(&fl->lock); 1934 } 1935 1936 return err; 1937 } 1938 1939 static int fastrpc_req_mmap(struct fastrpc_user *fl, char __user *argp) 1940 { 1941 struct fastrpc_invoke_args args[3] = { [0 ... 2] = { 0 } }; 1942 struct fastrpc_buf *buf = NULL; 1943 struct fastrpc_mmap_req_msg req_msg; 1944 struct fastrpc_mmap_rsp_msg rsp_msg; 1945 struct fastrpc_phy_page pages; 1946 struct fastrpc_req_mmap req; 1947 struct device *dev = fl->sctx->dev; 1948 int err; 1949 u32 sc; 1950 1951 if (copy_from_user(&req, argp, sizeof(req))) 1952 return -EFAULT; 1953 1954 if (req.flags != ADSP_MMAP_ADD_PAGES && req.flags != ADSP_MMAP_REMOTE_HEAP_ADDR) { 1955 dev_err(dev, "flag not supported 0x%x\n", req.flags); 1956 1957 return -EINVAL; 1958 } 1959 1960 if (req.vaddrin) { 1961 dev_err(dev, "adding user allocated pages is not supported\n"); 1962 return -EINVAL; 1963 } 1964 1965 if (req.flags == ADSP_MMAP_REMOTE_HEAP_ADDR) 1966 err = fastrpc_remote_heap_alloc(fl, dev, req.size, &buf); 1967 else 1968 err = fastrpc_buf_alloc(fl, dev, req.size, &buf); 1969 1970 if (err) { 1971 dev_err(dev, "failed to allocate buffer\n"); 1972 return err; 1973 } 1974 1975 req_msg.client_id = fl->client_id; 1976 req_msg.flags = req.flags; 1977 req_msg.vaddr = req.vaddrin; 1978 req_msg.num = sizeof(pages); 1979 1980 args[0].ptr = (u64) (uintptr_t) &req_msg; 1981 args[0].length = sizeof(req_msg); 1982 1983 pages.addr = buf->dma_addr; 1984 pages.size = buf->size; 1985 1986 args[1].ptr = (u64) (uintptr_t) &pages; 1987 args[1].length = sizeof(pages); 1988 1989 args[2].ptr = (u64) (uintptr_t) &rsp_msg; 1990 args[2].length = sizeof(rsp_msg); 1991 1992 sc = FASTRPC_SCALARS(FASTRPC_RMID_INIT_MMAP, 2, 1); 1993 err = fastrpc_internal_invoke(fl, true, FASTRPC_INIT_HANDLE, sc, 1994 &args[0]); 1995 if (err) { 1996 dev_err(dev, "mmap error (len 0x%08llx)\n", buf->size); 1997 fastrpc_buf_free(buf); 1998 return err; 1999 } 2000 2001 /* update the buffer to be able to deallocate the memory on the DSP */ 2002 buf->raddr = (uintptr_t) rsp_msg.vaddr; 2003 2004 /* let the client know the address to use */ 2005 req.vaddrout = rsp_msg.vaddr; 2006 2007 /* Add memory to static PD pool, protection thru hypervisor */ 2008 if (req.flags == ADSP_MMAP_REMOTE_HEAP_ADDR && fl->cctx->vmcount) { 2009 u64 src_perms = BIT(QCOM_SCM_VMID_HLOS); 2010 2011 err = qcom_scm_assign_mem(buf->dma_addr, (u64)buf->size, 2012 &src_perms, fl->cctx->vmperms, fl->cctx->vmcount); 2013 if (err) { 2014 dev_err(fl->sctx->dev, 2015 "Failed to assign memory dma_addr %pad size 0x%llx err %d", 2016 &buf->dma_addr, buf->size, err); 2017 goto err_assign; 2018 } 2019 } 2020 2021 spin_lock(&fl->lock); 2022 list_add_tail(&buf->node, &fl->mmaps); 2023 spin_unlock(&fl->lock); 2024 2025 if (copy_to_user((void __user *)argp, &req, sizeof(req))) { 2026 err = -EFAULT; 2027 goto err_assign; 2028 } 2029 2030 dev_dbg(dev, "mmap\t\tpt 0x%09lx OK [len 0x%08llx]\n", 2031 buf->raddr, buf->size); 2032 2033 return 0; 2034 2035 err_assign: 2036 fastrpc_req_munmap_impl(fl, buf); 2037 2038 return err; 2039 } 2040 2041 static int fastrpc_req_mem_unmap_impl(struct fastrpc_user *fl, struct fastrpc_mem_unmap *req) 2042 { 2043 struct fastrpc_invoke_args args[1] = { [0] = { 0 } }; 2044 struct fastrpc_map *map = NULL, *iter, *m; 2045 struct fastrpc_mem_unmap_req_msg req_msg = { 0 }; 2046 int err = 0; 2047 u32 sc; 2048 struct device *dev = fl->sctx->dev; 2049 2050 spin_lock(&fl->lock); 2051 list_for_each_entry_safe(iter, m, &fl->maps, node) { 2052 if ((req->fd < 0 || iter->fd == req->fd) && (iter->raddr == req->vaddr)) { 2053 map = iter; 2054 break; 2055 } 2056 } 2057 2058 spin_unlock(&fl->lock); 2059 2060 if (!map) { 2061 dev_err(dev, "map not in list\n"); 2062 return -EINVAL; 2063 } 2064 2065 req_msg.client_id = fl->client_id; 2066 req_msg.len = map->len; 2067 req_msg.vaddrin = map->raddr; 2068 req_msg.fd = map->fd; 2069 2070 args[0].ptr = (u64) (uintptr_t) &req_msg; 2071 args[0].length = sizeof(req_msg); 2072 2073 sc = FASTRPC_SCALARS(FASTRPC_RMID_INIT_MEM_UNMAP, 1, 0); 2074 err = fastrpc_internal_invoke(fl, true, FASTRPC_INIT_HANDLE, sc, 2075 &args[0]); 2076 if (err) { 2077 dev_err(dev, "unmmap\tpt fd = %d, 0x%09llx error\n", map->fd, map->raddr); 2078 return err; 2079 } 2080 fastrpc_map_put(map); 2081 2082 return 0; 2083 } 2084 2085 static int fastrpc_req_mem_unmap(struct fastrpc_user *fl, char __user *argp) 2086 { 2087 struct fastrpc_mem_unmap req; 2088 2089 if (copy_from_user(&req, argp, sizeof(req))) 2090 return -EFAULT; 2091 2092 return fastrpc_req_mem_unmap_impl(fl, &req); 2093 } 2094 2095 static int fastrpc_req_mem_map(struct fastrpc_user *fl, char __user *argp) 2096 { 2097 struct fastrpc_invoke_args args[4] = { [0 ... 3] = { 0 } }; 2098 struct fastrpc_mem_map_req_msg req_msg = { 0 }; 2099 struct fastrpc_mmap_rsp_msg rsp_msg = { 0 }; 2100 struct fastrpc_mem_unmap req_unmap = { 0 }; 2101 struct fastrpc_phy_page pages = { 0 }; 2102 struct fastrpc_mem_map req; 2103 struct device *dev = fl->sctx->dev; 2104 struct fastrpc_map *map = NULL; 2105 int err; 2106 u32 sc; 2107 2108 if (copy_from_user(&req, argp, sizeof(req))) 2109 return -EFAULT; 2110 2111 /* create SMMU mapping */ 2112 err = fastrpc_map_create(fl, req.fd, req.length, 0, &map); 2113 if (err) { 2114 dev_err(dev, "failed to map buffer, fd = %d\n", req.fd); 2115 return err; 2116 } 2117 2118 req_msg.client_id = fl->client_id; 2119 req_msg.fd = req.fd; 2120 req_msg.offset = req.offset; 2121 req_msg.vaddrin = req.vaddrin; 2122 map->va = (void *) (uintptr_t) req.vaddrin; 2123 req_msg.flags = req.flags; 2124 req_msg.num = sizeof(pages); 2125 req_msg.data_len = 0; 2126 2127 args[0].ptr = (u64) (uintptr_t) &req_msg; 2128 args[0].length = sizeof(req_msg); 2129 2130 pages.addr = map->dma_addr; 2131 pages.size = map->len; 2132 2133 args[1].ptr = (u64) (uintptr_t) &pages; 2134 args[1].length = sizeof(pages); 2135 2136 args[2].ptr = (u64) (uintptr_t) &pages; 2137 args[2].length = 0; 2138 2139 args[3].ptr = (u64) (uintptr_t) &rsp_msg; 2140 args[3].length = sizeof(rsp_msg); 2141 2142 sc = FASTRPC_SCALARS(FASTRPC_RMID_INIT_MEM_MAP, 3, 1); 2143 err = fastrpc_internal_invoke(fl, true, FASTRPC_INIT_HANDLE, sc, &args[0]); 2144 if (err) { 2145 dev_err(dev, "mem mmap error, fd %d, vaddr %llx, size %lld\n", 2146 req.fd, req.vaddrin, map->len); 2147 goto err_invoke; 2148 } 2149 2150 /* update the buffer to be able to deallocate the memory on the DSP */ 2151 map->raddr = rsp_msg.vaddr; 2152 2153 /* let the client know the address to use */ 2154 req.vaddrout = rsp_msg.vaddr; 2155 2156 if (copy_to_user((void __user *)argp, &req, sizeof(req))) { 2157 /* unmap the memory and release the buffer */ 2158 req_unmap.vaddr = (uintptr_t) rsp_msg.vaddr; 2159 req_unmap.length = map->len; 2160 fastrpc_req_mem_unmap_impl(fl, &req_unmap); 2161 return -EFAULT; 2162 } 2163 2164 return 0; 2165 2166 err_invoke: 2167 fastrpc_map_put(map); 2168 2169 return err; 2170 } 2171 2172 static long fastrpc_device_ioctl(struct file *file, unsigned int cmd, 2173 unsigned long arg) 2174 { 2175 struct fastrpc_user *fl = (struct fastrpc_user *)file->private_data; 2176 char __user *argp = (char __user *)arg; 2177 int err; 2178 2179 switch (cmd) { 2180 case FASTRPC_IOCTL_INVOKE: 2181 err = fastrpc_invoke(fl, argp); 2182 break; 2183 case FASTRPC_IOCTL_INIT_ATTACH: 2184 err = fastrpc_init_attach(fl, ROOT_PD); 2185 break; 2186 case FASTRPC_IOCTL_INIT_ATTACH_SNS: 2187 err = fastrpc_init_attach(fl, SENSORS_PD); 2188 break; 2189 case FASTRPC_IOCTL_INIT_CREATE_STATIC: 2190 err = fastrpc_init_create_static_process(fl, argp); 2191 break; 2192 case FASTRPC_IOCTL_INIT_CREATE: 2193 err = fastrpc_init_create_process(fl, argp); 2194 break; 2195 case FASTRPC_IOCTL_ALLOC_DMA_BUFF: 2196 err = fastrpc_dmabuf_alloc(fl, argp); 2197 break; 2198 case FASTRPC_IOCTL_MMAP: 2199 err = fastrpc_req_mmap(fl, argp); 2200 break; 2201 case FASTRPC_IOCTL_MUNMAP: 2202 err = fastrpc_req_munmap(fl, argp); 2203 break; 2204 case FASTRPC_IOCTL_MEM_MAP: 2205 err = fastrpc_req_mem_map(fl, argp); 2206 break; 2207 case FASTRPC_IOCTL_MEM_UNMAP: 2208 err = fastrpc_req_mem_unmap(fl, argp); 2209 break; 2210 case FASTRPC_IOCTL_GET_DSP_INFO: 2211 err = fastrpc_get_dsp_info(fl, argp); 2212 break; 2213 default: 2214 err = -ENOTTY; 2215 break; 2216 } 2217 2218 return err; 2219 } 2220 2221 static const struct file_operations fastrpc_fops = { 2222 .open = fastrpc_device_open, 2223 .release = fastrpc_device_release, 2224 .unlocked_ioctl = fastrpc_device_ioctl, 2225 .compat_ioctl = fastrpc_device_ioctl, 2226 }; 2227 2228 static int fastrpc_cb_probe(struct platform_device *pdev) 2229 { 2230 struct fastrpc_channel_ctx *cctx; 2231 struct fastrpc_session_ctx *sess; 2232 struct device *dev = &pdev->dev; 2233 int i, sessions = 0; 2234 unsigned long flags; 2235 int rc; 2236 u32 dma_bits; 2237 2238 cctx = dev_get_drvdata(dev->parent); 2239 if (!cctx) 2240 return -EINVAL; 2241 2242 of_property_read_u32(dev->of_node, "qcom,nsessions", &sessions); 2243 2244 spin_lock_irqsave(&cctx->lock, flags); 2245 if (cctx->sesscount >= FASTRPC_MAX_SESSIONS) { 2246 dev_err(&pdev->dev, "too many sessions\n"); 2247 spin_unlock_irqrestore(&cctx->lock, flags); 2248 return -ENOSPC; 2249 } 2250 dma_bits = cctx->soc_data->dma_addr_bits_default; 2251 sess = &cctx->session[cctx->sesscount++]; 2252 sess->used = false; 2253 sess->valid = true; 2254 sess->dev = dev; 2255 dev_set_drvdata(dev, sess); 2256 2257 if (cctx->domain_id == CDSP_DOMAIN_ID) 2258 dma_bits = cctx->soc_data->dma_addr_bits_cdsp; 2259 2260 if (of_property_read_u32(dev->of_node, "reg", &sess->sid)) 2261 dev_info(dev, "FastRPC Session ID not specified in DT\n"); 2262 2263 if (sessions > 0) { 2264 struct fastrpc_session_ctx *dup_sess; 2265 2266 for (i = 1; i < sessions; i++) { 2267 if (cctx->sesscount >= FASTRPC_MAX_SESSIONS) 2268 break; 2269 dup_sess = &cctx->session[cctx->sesscount++]; 2270 memcpy(dup_sess, sess, sizeof(*dup_sess)); 2271 } 2272 } 2273 spin_unlock_irqrestore(&cctx->lock, flags); 2274 rc = dma_set_mask(dev, DMA_BIT_MASK(dma_bits)); 2275 if (rc) { 2276 dev_err(dev, "%u-bit DMA enable failed\n", dma_bits); 2277 return rc; 2278 } 2279 2280 return 0; 2281 } 2282 2283 static void fastrpc_cb_remove(struct platform_device *pdev) 2284 { 2285 struct fastrpc_channel_ctx *cctx = dev_get_drvdata(pdev->dev.parent); 2286 struct fastrpc_session_ctx *sess = dev_get_drvdata(&pdev->dev); 2287 unsigned long flags; 2288 int i; 2289 2290 spin_lock_irqsave(&cctx->lock, flags); 2291 for (i = 0; i < FASTRPC_MAX_SESSIONS; i++) { 2292 if (cctx->session[i].sid == sess->sid) { 2293 cctx->session[i].valid = false; 2294 cctx->sesscount--; 2295 } 2296 } 2297 spin_unlock_irqrestore(&cctx->lock, flags); 2298 } 2299 2300 static const struct of_device_id fastrpc_match_table[] = { 2301 { .compatible = "qcom,fastrpc-compute-cb", }, 2302 {} 2303 }; 2304 2305 static struct platform_driver fastrpc_cb_driver = { 2306 .probe = fastrpc_cb_probe, 2307 .remove = fastrpc_cb_remove, 2308 .driver = { 2309 .name = "qcom,fastrpc-cb", 2310 .of_match_table = fastrpc_match_table, 2311 .suppress_bind_attrs = true, 2312 }, 2313 }; 2314 2315 static int fastrpc_device_register(struct device *dev, struct fastrpc_channel_ctx *cctx, 2316 bool is_secured, const char *domain) 2317 { 2318 struct fastrpc_device *fdev; 2319 int err; 2320 2321 fdev = devm_kzalloc(dev, sizeof(*fdev), GFP_KERNEL); 2322 if (!fdev) 2323 return -ENOMEM; 2324 2325 fdev->secure = is_secured; 2326 fdev->cctx = cctx; 2327 fdev->miscdev.minor = MISC_DYNAMIC_MINOR; 2328 fdev->miscdev.fops = &fastrpc_fops; 2329 fdev->miscdev.name = devm_kasprintf(dev, GFP_KERNEL, "fastrpc-%s%s", 2330 domain, is_secured ? "-secure" : ""); 2331 if (!fdev->miscdev.name) 2332 return -ENOMEM; 2333 2334 err = misc_register(&fdev->miscdev); 2335 if (!err) { 2336 if (is_secured) 2337 cctx->secure_fdevice = fdev; 2338 else 2339 cctx->fdevice = fdev; 2340 } 2341 2342 return err; 2343 } 2344 2345 static int fastrpc_get_domain_id(const char *domain) 2346 { 2347 if (!strncmp(domain, "adsp", 4)) 2348 return ADSP_DOMAIN_ID; 2349 else if (!strncmp(domain, "cdsp", 4)) 2350 return CDSP_DOMAIN_ID; 2351 else if (!strncmp(domain, "mdsp", 4)) 2352 return MDSP_DOMAIN_ID; 2353 else if (!strncmp(domain, "sdsp", 4)) 2354 return SDSP_DOMAIN_ID; 2355 else if (!strncmp(domain, "gdsp", 4)) 2356 return GDSP_DOMAIN_ID; 2357 2358 return -EINVAL; 2359 } 2360 2361 static const struct fastrpc_soc_data kaanapali_soc_data = { 2362 .sid_pos = 56, 2363 .dma_addr_bits_cdsp = 34, 2364 .dma_addr_bits_default = 32, 2365 }; 2366 2367 static const struct fastrpc_soc_data default_soc_data = { 2368 .sid_pos = 32, 2369 .dma_addr_bits_cdsp = 32, 2370 .dma_addr_bits_default = 32, 2371 }; 2372 2373 static int fastrpc_rpmsg_probe(struct rpmsg_device *rpdev) 2374 { 2375 struct device *rdev = &rpdev->dev; 2376 struct fastrpc_channel_ctx *data; 2377 int i, err, domain_id = -1, vmcount; 2378 const char *domain; 2379 bool secure_dsp; 2380 unsigned int vmids[FASTRPC_MAX_VMIDS]; 2381 const struct fastrpc_soc_data *soc_data; 2382 2383 soc_data = device_get_match_data(rdev); 2384 2385 err = of_property_read_string(rdev->of_node, "label", &domain); 2386 if (err) { 2387 dev_info(rdev, "FastRPC Domain not specified in DT\n"); 2388 return err; 2389 } 2390 2391 domain_id = fastrpc_get_domain_id(domain); 2392 2393 if (domain_id < 0) { 2394 dev_info(rdev, "FastRPC Domain %s not supported\n", domain); 2395 return -EINVAL; 2396 } 2397 2398 if (of_reserved_mem_device_init_by_idx(rdev, rdev->of_node, 0)) 2399 dev_info(rdev, "no reserved DMA memory for FASTRPC\n"); 2400 2401 vmcount = of_property_read_variable_u32_array(rdev->of_node, 2402 "qcom,vmids", &vmids[0], 0, FASTRPC_MAX_VMIDS); 2403 if (vmcount < 0) 2404 vmcount = 0; 2405 else if (!qcom_scm_is_available()) 2406 return -EPROBE_DEFER; 2407 2408 data = kzalloc_obj(*data); 2409 if (!data) 2410 return -ENOMEM; 2411 2412 if (vmcount) { 2413 data->vmcount = vmcount; 2414 for (i = 0; i < data->vmcount; i++) { 2415 data->vmperms[i].vmid = vmids[i]; 2416 data->vmperms[i].perm = QCOM_SCM_PERM_RWX; 2417 } 2418 } 2419 2420 if (domain_id == SDSP_DOMAIN_ID) { 2421 struct resource res; 2422 u64 src_perms; 2423 2424 err = of_reserved_mem_region_to_resource(rdev->of_node, 0, &res); 2425 if (!err) { 2426 src_perms = BIT(QCOM_SCM_VMID_HLOS); 2427 2428 err = qcom_scm_assign_mem(res.start, resource_size(&res), &src_perms, 2429 data->vmperms, data->vmcount); 2430 if (err) 2431 goto err_free_data; 2432 } 2433 2434 } 2435 2436 secure_dsp = !(of_property_read_bool(rdev->of_node, "qcom,non-secure-domain")); 2437 data->secure = secure_dsp; 2438 data->soc_data = soc_data; 2439 2440 switch (domain_id) { 2441 case ADSP_DOMAIN_ID: 2442 case MDSP_DOMAIN_ID: 2443 case SDSP_DOMAIN_ID: 2444 /* Unsigned PD offloading is only supported on CDSP and GDSP */ 2445 data->unsigned_support = false; 2446 err = fastrpc_device_register(rdev, data, secure_dsp, domain); 2447 if (err) 2448 goto err_free_data; 2449 break; 2450 case CDSP_DOMAIN_ID: 2451 case GDSP_DOMAIN_ID: 2452 data->unsigned_support = true; 2453 /* Create both device nodes so that we can allow both Signed and Unsigned PD */ 2454 err = fastrpc_device_register(rdev, data, true, domain); 2455 if (err) 2456 goto err_free_data; 2457 2458 err = fastrpc_device_register(rdev, data, false, domain); 2459 if (err) 2460 goto err_deregister_fdev; 2461 break; 2462 default: 2463 err = -EINVAL; 2464 goto err_free_data; 2465 } 2466 2467 kref_init(&data->refcount); 2468 2469 rdev->dma_mask = &data->dma_mask; 2470 dma_set_mask_and_coherent(rdev, DMA_BIT_MASK(32)); 2471 INIT_LIST_HEAD(&data->users); 2472 INIT_LIST_HEAD(&data->invoke_interrupted_mmaps); 2473 spin_lock_init(&data->lock); 2474 idr_init(&data->ctx_idr); 2475 data->domain_id = domain_id; 2476 data->rpdev = rpdev; 2477 dev_set_drvdata(&rpdev->dev, data); 2478 2479 err = of_platform_populate(rdev->of_node, NULL, NULL, rdev); 2480 if (err) 2481 goto err_deregister_fdev; 2482 2483 return 0; 2484 2485 err_deregister_fdev: 2486 if (data->fdevice) 2487 misc_deregister(&data->fdevice->miscdev); 2488 if (data->secure_fdevice) 2489 misc_deregister(&data->secure_fdevice->miscdev); 2490 2491 err_free_data: 2492 kfree(data); 2493 return err; 2494 } 2495 2496 static void fastrpc_notify_users(struct fastrpc_user *user) 2497 { 2498 struct fastrpc_invoke_ctx *ctx; 2499 2500 spin_lock(&user->lock); 2501 list_for_each_entry(ctx, &user->pending, node) { 2502 ctx->retval = -EPIPE; 2503 complete(&ctx->work); 2504 } 2505 spin_unlock(&user->lock); 2506 } 2507 2508 static void fastrpc_rpmsg_remove(struct rpmsg_device *rpdev) 2509 { 2510 struct fastrpc_channel_ctx *cctx = dev_get_drvdata(&rpdev->dev); 2511 struct fastrpc_buf *buf, *b; 2512 struct fastrpc_user *user; 2513 unsigned long flags; 2514 2515 /* No invocations past this point */ 2516 spin_lock_irqsave(&cctx->lock, flags); 2517 cctx->rpdev = NULL; 2518 list_for_each_entry(user, &cctx->users, user) 2519 fastrpc_notify_users(user); 2520 spin_unlock_irqrestore(&cctx->lock, flags); 2521 2522 if (cctx->fdevice) 2523 misc_deregister(&cctx->fdevice->miscdev); 2524 2525 if (cctx->secure_fdevice) 2526 misc_deregister(&cctx->secure_fdevice->miscdev); 2527 2528 list_for_each_entry_safe(buf, b, &cctx->invoke_interrupted_mmaps, node) 2529 list_del(&buf->node); 2530 2531 if (cctx->remote_heap) 2532 fastrpc_buf_free(cctx->remote_heap); 2533 2534 of_platform_depopulate(&rpdev->dev); 2535 2536 fastrpc_channel_ctx_put(cctx); 2537 } 2538 2539 static int fastrpc_rpmsg_callback(struct rpmsg_device *rpdev, void *data, 2540 int len, void *priv, u32 addr) 2541 { 2542 struct fastrpc_channel_ctx *cctx = dev_get_drvdata(&rpdev->dev); 2543 struct fastrpc_invoke_rsp *rsp = data; 2544 struct fastrpc_invoke_ctx *ctx; 2545 unsigned long flags; 2546 unsigned long ctxid; 2547 2548 if (len < sizeof(*rsp)) 2549 return -EINVAL; 2550 2551 if (!cctx) 2552 return -ENODEV; 2553 2554 ctxid = ((rsp->ctx & FASTRPC_CTXID_MASK) >> 4); 2555 2556 spin_lock_irqsave(&cctx->lock, flags); 2557 ctx = idr_find(&cctx->ctx_idr, ctxid); 2558 spin_unlock_irqrestore(&cctx->lock, flags); 2559 2560 if (!ctx) { 2561 dev_err(&rpdev->dev, "No context ID matches response\n"); 2562 return -ENOENT; 2563 } 2564 2565 ctx->retval = rsp->retval; 2566 complete(&ctx->work); 2567 2568 /* 2569 * The DMA buffer associated with the context cannot be freed in 2570 * interrupt context so schedule it through a worker thread to 2571 * avoid a kernel BUG. 2572 */ 2573 schedule_work(&ctx->put_work); 2574 2575 return 0; 2576 } 2577 2578 static const struct of_device_id fastrpc_rpmsg_of_match[] = { 2579 { .compatible = "qcom,kaanapali-fastrpc", .data = &kaanapali_soc_data }, 2580 { .compatible = "qcom,fastrpc", .data = &default_soc_data }, 2581 { }, 2582 }; 2583 MODULE_DEVICE_TABLE(of, fastrpc_rpmsg_of_match); 2584 2585 static struct rpmsg_driver fastrpc_driver = { 2586 .probe = fastrpc_rpmsg_probe, 2587 .remove = fastrpc_rpmsg_remove, 2588 .callback = fastrpc_rpmsg_callback, 2589 .drv = { 2590 .name = "qcom,fastrpc", 2591 .of_match_table = fastrpc_rpmsg_of_match, 2592 }, 2593 }; 2594 2595 static int fastrpc_init(void) 2596 { 2597 int ret; 2598 2599 ret = platform_driver_register(&fastrpc_cb_driver); 2600 if (ret < 0) { 2601 pr_err("fastrpc: failed to register cb driver\n"); 2602 return ret; 2603 } 2604 2605 ret = register_rpmsg_driver(&fastrpc_driver); 2606 if (ret < 0) { 2607 pr_err("fastrpc: failed to register rpmsg driver\n"); 2608 platform_driver_unregister(&fastrpc_cb_driver); 2609 return ret; 2610 } 2611 2612 return 0; 2613 } 2614 module_init(fastrpc_init); 2615 2616 static void fastrpc_exit(void) 2617 { 2618 platform_driver_unregister(&fastrpc_cb_driver); 2619 unregister_rpmsg_driver(&fastrpc_driver); 2620 } 2621 module_exit(fastrpc_exit); 2622 2623 MODULE_DESCRIPTION("Qualcomm FastRPC"); 2624 MODULE_LICENSE("GPL v2"); 2625 MODULE_IMPORT_NS("DMA_BUF"); 2626