1 /* 2 * 3 * Intel Management Engine Interface (Intel MEI) Linux driver 4 * Copyright (c) 2003-2012, Intel Corporation. 5 * 6 * This program is free software; you can redistribute it and/or modify it 7 * under the terms and conditions of the GNU General Public License, 8 * version 2, as published by the Free Software Foundation. 9 * 10 * This program is distributed in the hope it will be useful, but WITHOUT 11 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or 12 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for 13 * more details. 14 * 15 */ 16 17 #include <linux/sched/signal.h> 18 #include <linux/wait.h> 19 #include <linux/delay.h> 20 #include <linux/slab.h> 21 #include <linux/pm_runtime.h> 22 23 #include <linux/mei.h> 24 25 #include "mei_dev.h" 26 #include "hbm.h" 27 #include "client.h" 28 29 /** 30 * mei_me_cl_init - initialize me client 31 * 32 * @me_cl: me client 33 */ 34 void mei_me_cl_init(struct mei_me_client *me_cl) 35 { 36 INIT_LIST_HEAD(&me_cl->list); 37 kref_init(&me_cl->refcnt); 38 } 39 40 /** 41 * mei_me_cl_get - increases me client refcount 42 * 43 * @me_cl: me client 44 * 45 * Locking: called under "dev->device_lock" lock 46 * 47 * Return: me client or NULL 48 */ 49 struct mei_me_client *mei_me_cl_get(struct mei_me_client *me_cl) 50 { 51 if (me_cl && kref_get_unless_zero(&me_cl->refcnt)) 52 return me_cl; 53 54 return NULL; 55 } 56 57 /** 58 * mei_me_cl_release - free me client 59 * 60 * Locking: called under "dev->device_lock" lock 61 * 62 * @ref: me_client refcount 63 */ 64 static void mei_me_cl_release(struct kref *ref) 65 { 66 struct mei_me_client *me_cl = 67 container_of(ref, struct mei_me_client, refcnt); 68 69 kfree(me_cl); 70 } 71 72 /** 73 * mei_me_cl_put - decrease me client refcount and free client if necessary 74 * 75 * Locking: called under "dev->device_lock" lock 76 * 77 * @me_cl: me client 78 */ 79 void mei_me_cl_put(struct mei_me_client *me_cl) 80 { 81 if (me_cl) 82 kref_put(&me_cl->refcnt, mei_me_cl_release); 83 } 84 85 /** 86 * __mei_me_cl_del - delete me client from the list and decrease 87 * reference counter 88 * 89 * @dev: mei device 90 * @me_cl: me client 91 * 92 * Locking: dev->me_clients_rwsem 93 */ 94 static void __mei_me_cl_del(struct mei_device *dev, struct mei_me_client *me_cl) 95 { 96 if (!me_cl) 97 return; 98 99 list_del_init(&me_cl->list); 100 mei_me_cl_put(me_cl); 101 } 102 103 /** 104 * mei_me_cl_del - delete me client from the list and decrease 105 * reference counter 106 * 107 * @dev: mei device 108 * @me_cl: me client 109 */ 110 void mei_me_cl_del(struct mei_device *dev, struct mei_me_client *me_cl) 111 { 112 down_write(&dev->me_clients_rwsem); 113 __mei_me_cl_del(dev, me_cl); 114 up_write(&dev->me_clients_rwsem); 115 } 116 117 /** 118 * mei_me_cl_add - add me client to the list 119 * 120 * @dev: mei device 121 * @me_cl: me client 122 */ 123 void mei_me_cl_add(struct mei_device *dev, struct mei_me_client *me_cl) 124 { 125 down_write(&dev->me_clients_rwsem); 126 list_add(&me_cl->list, &dev->me_clients); 127 up_write(&dev->me_clients_rwsem); 128 } 129 130 /** 131 * __mei_me_cl_by_uuid - locate me client by uuid 132 * increases ref count 133 * 134 * @dev: mei device 135 * @uuid: me client uuid 136 * 137 * Return: me client or NULL if not found 138 * 139 * Locking: dev->me_clients_rwsem 140 */ 141 static struct mei_me_client *__mei_me_cl_by_uuid(struct mei_device *dev, 142 const uuid_le *uuid) 143 { 144 struct mei_me_client *me_cl; 145 const uuid_le *pn; 146 147 WARN_ON(!rwsem_is_locked(&dev->me_clients_rwsem)); 148 149 list_for_each_entry(me_cl, &dev->me_clients, list) { 150 pn = &me_cl->props.protocol_name; 151 if (uuid_le_cmp(*uuid, *pn) == 0) 152 return mei_me_cl_get(me_cl); 153 } 154 155 return NULL; 156 } 157 158 /** 159 * mei_me_cl_by_uuid - locate me client by uuid 160 * increases ref count 161 * 162 * @dev: mei device 163 * @uuid: me client uuid 164 * 165 * Return: me client or NULL if not found 166 * 167 * Locking: dev->me_clients_rwsem 168 */ 169 struct mei_me_client *mei_me_cl_by_uuid(struct mei_device *dev, 170 const uuid_le *uuid) 171 { 172 struct mei_me_client *me_cl; 173 174 down_read(&dev->me_clients_rwsem); 175 me_cl = __mei_me_cl_by_uuid(dev, uuid); 176 up_read(&dev->me_clients_rwsem); 177 178 return me_cl; 179 } 180 181 /** 182 * mei_me_cl_by_id - locate me client by client id 183 * increases ref count 184 * 185 * @dev: the device structure 186 * @client_id: me client id 187 * 188 * Return: me client or NULL if not found 189 * 190 * Locking: dev->me_clients_rwsem 191 */ 192 struct mei_me_client *mei_me_cl_by_id(struct mei_device *dev, u8 client_id) 193 { 194 195 struct mei_me_client *__me_cl, *me_cl = NULL; 196 197 down_read(&dev->me_clients_rwsem); 198 list_for_each_entry(__me_cl, &dev->me_clients, list) { 199 if (__me_cl->client_id == client_id) { 200 me_cl = mei_me_cl_get(__me_cl); 201 break; 202 } 203 } 204 up_read(&dev->me_clients_rwsem); 205 206 return me_cl; 207 } 208 209 /** 210 * __mei_me_cl_by_uuid_id - locate me client by client id and uuid 211 * increases ref count 212 * 213 * @dev: the device structure 214 * @uuid: me client uuid 215 * @client_id: me client id 216 * 217 * Return: me client or null if not found 218 * 219 * Locking: dev->me_clients_rwsem 220 */ 221 static struct mei_me_client *__mei_me_cl_by_uuid_id(struct mei_device *dev, 222 const uuid_le *uuid, u8 client_id) 223 { 224 struct mei_me_client *me_cl; 225 const uuid_le *pn; 226 227 WARN_ON(!rwsem_is_locked(&dev->me_clients_rwsem)); 228 229 list_for_each_entry(me_cl, &dev->me_clients, list) { 230 pn = &me_cl->props.protocol_name; 231 if (uuid_le_cmp(*uuid, *pn) == 0 && 232 me_cl->client_id == client_id) 233 return mei_me_cl_get(me_cl); 234 } 235 236 return NULL; 237 } 238 239 240 /** 241 * mei_me_cl_by_uuid_id - locate me client by client id and uuid 242 * increases ref count 243 * 244 * @dev: the device structure 245 * @uuid: me client uuid 246 * @client_id: me client id 247 * 248 * Return: me client or null if not found 249 */ 250 struct mei_me_client *mei_me_cl_by_uuid_id(struct mei_device *dev, 251 const uuid_le *uuid, u8 client_id) 252 { 253 struct mei_me_client *me_cl; 254 255 down_read(&dev->me_clients_rwsem); 256 me_cl = __mei_me_cl_by_uuid_id(dev, uuid, client_id); 257 up_read(&dev->me_clients_rwsem); 258 259 return me_cl; 260 } 261 262 /** 263 * mei_me_cl_rm_by_uuid - remove all me clients matching uuid 264 * 265 * @dev: the device structure 266 * @uuid: me client uuid 267 * 268 * Locking: called under "dev->device_lock" lock 269 */ 270 void mei_me_cl_rm_by_uuid(struct mei_device *dev, const uuid_le *uuid) 271 { 272 struct mei_me_client *me_cl; 273 274 dev_dbg(dev->dev, "remove %pUl\n", uuid); 275 276 down_write(&dev->me_clients_rwsem); 277 me_cl = __mei_me_cl_by_uuid(dev, uuid); 278 __mei_me_cl_del(dev, me_cl); 279 up_write(&dev->me_clients_rwsem); 280 } 281 282 /** 283 * mei_me_cl_rm_by_uuid_id - remove all me clients matching client id 284 * 285 * @dev: the device structure 286 * @uuid: me client uuid 287 * @id: me client id 288 * 289 * Locking: called under "dev->device_lock" lock 290 */ 291 void mei_me_cl_rm_by_uuid_id(struct mei_device *dev, const uuid_le *uuid, u8 id) 292 { 293 struct mei_me_client *me_cl; 294 295 dev_dbg(dev->dev, "remove %pUl %d\n", uuid, id); 296 297 down_write(&dev->me_clients_rwsem); 298 me_cl = __mei_me_cl_by_uuid_id(dev, uuid, id); 299 __mei_me_cl_del(dev, me_cl); 300 up_write(&dev->me_clients_rwsem); 301 } 302 303 /** 304 * mei_me_cl_rm_all - remove all me clients 305 * 306 * @dev: the device structure 307 * 308 * Locking: called under "dev->device_lock" lock 309 */ 310 void mei_me_cl_rm_all(struct mei_device *dev) 311 { 312 struct mei_me_client *me_cl, *next; 313 314 down_write(&dev->me_clients_rwsem); 315 list_for_each_entry_safe(me_cl, next, &dev->me_clients, list) 316 __mei_me_cl_del(dev, me_cl); 317 up_write(&dev->me_clients_rwsem); 318 } 319 320 /** 321 * mei_cl_cmp_id - tells if the clients are the same 322 * 323 * @cl1: host client 1 324 * @cl2: host client 2 325 * 326 * Return: true - if the clients has same host and me ids 327 * false - otherwise 328 */ 329 static inline bool mei_cl_cmp_id(const struct mei_cl *cl1, 330 const struct mei_cl *cl2) 331 { 332 return cl1 && cl2 && 333 (cl1->host_client_id == cl2->host_client_id) && 334 (mei_cl_me_id(cl1) == mei_cl_me_id(cl2)); 335 } 336 337 /** 338 * mei_io_cb_free - free mei_cb_private related memory 339 * 340 * @cb: mei callback struct 341 */ 342 void mei_io_cb_free(struct mei_cl_cb *cb) 343 { 344 if (cb == NULL) 345 return; 346 347 list_del(&cb->list); 348 kfree(cb->buf.data); 349 kfree(cb); 350 } 351 352 /** 353 * mei_io_cb_init - allocate and initialize io callback 354 * 355 * @cl: mei client 356 * @type: operation type 357 * @fp: pointer to file structure 358 * 359 * Return: mei_cl_cb pointer or NULL; 360 */ 361 static struct mei_cl_cb *mei_io_cb_init(struct mei_cl *cl, 362 enum mei_cb_file_ops type, 363 const struct file *fp) 364 { 365 struct mei_cl_cb *cb; 366 367 cb = kzalloc(sizeof(struct mei_cl_cb), GFP_KERNEL); 368 if (!cb) 369 return NULL; 370 371 INIT_LIST_HEAD(&cb->list); 372 cb->fp = fp; 373 cb->cl = cl; 374 cb->buf_idx = 0; 375 cb->fop_type = type; 376 return cb; 377 } 378 379 /** 380 * __mei_io_list_flush_cl - removes and frees cbs belonging to cl. 381 * 382 * @head: an instance of our list structure 383 * @cl: host client, can be NULL for flushing the whole list 384 * @free: whether to free the cbs 385 */ 386 static void __mei_io_list_flush_cl(struct list_head *head, 387 const struct mei_cl *cl, bool free) 388 { 389 struct mei_cl_cb *cb, *next; 390 391 /* enable removing everything if no cl is specified */ 392 list_for_each_entry_safe(cb, next, head, list) { 393 if (!cl || mei_cl_cmp_id(cl, cb->cl)) { 394 list_del_init(&cb->list); 395 if (free) 396 mei_io_cb_free(cb); 397 } 398 } 399 } 400 401 /** 402 * mei_io_list_flush_cl - removes list entry belonging to cl. 403 * 404 * @head: An instance of our list structure 405 * @cl: host client 406 */ 407 static inline void mei_io_list_flush_cl(struct list_head *head, 408 const struct mei_cl *cl) 409 { 410 __mei_io_list_flush_cl(head, cl, false); 411 } 412 413 /** 414 * mei_io_list_free_cl - removes cb belonging to cl and free them 415 * 416 * @head: An instance of our list structure 417 * @cl: host client 418 */ 419 static inline void mei_io_list_free_cl(struct list_head *head, 420 const struct mei_cl *cl) 421 { 422 __mei_io_list_flush_cl(head, cl, true); 423 } 424 425 /** 426 * mei_io_list_free_fp - free cb from a list that matches file pointer 427 * 428 * @head: io list 429 * @fp: file pointer (matching cb file object), may be NULL 430 */ 431 void mei_io_list_free_fp(struct list_head *head, const struct file *fp) 432 { 433 struct mei_cl_cb *cb, *next; 434 435 list_for_each_entry_safe(cb, next, head, list) 436 if (!fp || fp == cb->fp) 437 mei_io_cb_free(cb); 438 } 439 440 /** 441 * mei_cl_alloc_cb - a convenient wrapper for allocating read cb 442 * 443 * @cl: host client 444 * @length: size of the buffer 445 * @fop_type: operation type 446 * @fp: associated file pointer (might be NULL) 447 * 448 * Return: cb on success and NULL on failure 449 */ 450 struct mei_cl_cb *mei_cl_alloc_cb(struct mei_cl *cl, size_t length, 451 enum mei_cb_file_ops fop_type, 452 const struct file *fp) 453 { 454 struct mei_cl_cb *cb; 455 456 cb = mei_io_cb_init(cl, fop_type, fp); 457 if (!cb) 458 return NULL; 459 460 if (length == 0) 461 return cb; 462 463 cb->buf.data = kmalloc(length, GFP_KERNEL); 464 if (!cb->buf.data) { 465 mei_io_cb_free(cb); 466 return NULL; 467 } 468 cb->buf.size = length; 469 470 return cb; 471 } 472 473 /** 474 * mei_cl_enqueue_ctrl_wr_cb - a convenient wrapper for allocating 475 * and enqueuing of the control commands cb 476 * 477 * @cl: host client 478 * @length: size of the buffer 479 * @fop_type: operation type 480 * @fp: associated file pointer (might be NULL) 481 * 482 * Return: cb on success and NULL on failure 483 * Locking: called under "dev->device_lock" lock 484 */ 485 struct mei_cl_cb *mei_cl_enqueue_ctrl_wr_cb(struct mei_cl *cl, size_t length, 486 enum mei_cb_file_ops fop_type, 487 const struct file *fp) 488 { 489 struct mei_cl_cb *cb; 490 491 /* for RX always allocate at least client's mtu */ 492 if (length) 493 length = max_t(size_t, length, mei_cl_mtu(cl)); 494 495 cb = mei_cl_alloc_cb(cl, length, fop_type, fp); 496 if (!cb) 497 return NULL; 498 499 list_add_tail(&cb->list, &cl->dev->ctrl_wr_list); 500 return cb; 501 } 502 503 /** 504 * mei_cl_read_cb - find this cl's callback in the read list 505 * for a specific file 506 * 507 * @cl: host client 508 * @fp: file pointer (matching cb file object), may be NULL 509 * 510 * Return: cb on success, NULL if cb is not found 511 */ 512 struct mei_cl_cb *mei_cl_read_cb(const struct mei_cl *cl, const struct file *fp) 513 { 514 struct mei_cl_cb *cb; 515 516 list_for_each_entry(cb, &cl->rd_completed, list) 517 if (!fp || fp == cb->fp) 518 return cb; 519 520 return NULL; 521 } 522 523 /** 524 * mei_cl_flush_queues - flushes queue lists belonging to cl. 525 * 526 * @cl: host client 527 * @fp: file pointer (matching cb file object), may be NULL 528 * 529 * Return: 0 on success, -EINVAL if cl or cl->dev is NULL. 530 */ 531 int mei_cl_flush_queues(struct mei_cl *cl, const struct file *fp) 532 { 533 struct mei_device *dev; 534 535 if (WARN_ON(!cl || !cl->dev)) 536 return -EINVAL; 537 538 dev = cl->dev; 539 540 cl_dbg(dev, cl, "remove list entry belonging to cl\n"); 541 mei_io_list_free_cl(&cl->dev->write_list, cl); 542 mei_io_list_free_cl(&cl->dev->write_waiting_list, cl); 543 mei_io_list_flush_cl(&cl->dev->ctrl_wr_list, cl); 544 mei_io_list_flush_cl(&cl->dev->ctrl_rd_list, cl); 545 mei_io_list_free_fp(&cl->rd_pending, fp); 546 mei_io_list_free_fp(&cl->rd_completed, fp); 547 548 return 0; 549 } 550 551 /** 552 * mei_cl_init - initializes cl. 553 * 554 * @cl: host client to be initialized 555 * @dev: mei device 556 */ 557 void mei_cl_init(struct mei_cl *cl, struct mei_device *dev) 558 { 559 memset(cl, 0, sizeof(struct mei_cl)); 560 init_waitqueue_head(&cl->wait); 561 init_waitqueue_head(&cl->rx_wait); 562 init_waitqueue_head(&cl->tx_wait); 563 init_waitqueue_head(&cl->ev_wait); 564 INIT_LIST_HEAD(&cl->rd_completed); 565 INIT_LIST_HEAD(&cl->rd_pending); 566 INIT_LIST_HEAD(&cl->link); 567 cl->writing_state = MEI_IDLE; 568 cl->state = MEI_FILE_UNINITIALIZED; 569 cl->dev = dev; 570 } 571 572 /** 573 * mei_cl_allocate - allocates cl structure and sets it up. 574 * 575 * @dev: mei device 576 * Return: The allocated file or NULL on failure 577 */ 578 struct mei_cl *mei_cl_allocate(struct mei_device *dev) 579 { 580 struct mei_cl *cl; 581 582 cl = kmalloc(sizeof(struct mei_cl), GFP_KERNEL); 583 if (!cl) 584 return NULL; 585 586 mei_cl_init(cl, dev); 587 588 return cl; 589 } 590 591 /** 592 * mei_cl_link - allocate host id in the host map 593 * 594 * @cl: host client 595 * 596 * Return: 0 on success 597 * -EINVAL on incorrect values 598 * -EMFILE if open count exceeded. 599 */ 600 int mei_cl_link(struct mei_cl *cl) 601 { 602 struct mei_device *dev; 603 long open_handle_count; 604 int id; 605 606 if (WARN_ON(!cl || !cl->dev)) 607 return -EINVAL; 608 609 dev = cl->dev; 610 611 id = find_first_zero_bit(dev->host_clients_map, MEI_CLIENTS_MAX); 612 if (id >= MEI_CLIENTS_MAX) { 613 dev_err(dev->dev, "id exceeded %d", MEI_CLIENTS_MAX); 614 return -EMFILE; 615 } 616 617 open_handle_count = dev->open_handle_count + dev->iamthif_open_count; 618 if (open_handle_count >= MEI_MAX_OPEN_HANDLE_COUNT) { 619 dev_err(dev->dev, "open_handle_count exceeded %d", 620 MEI_MAX_OPEN_HANDLE_COUNT); 621 return -EMFILE; 622 } 623 624 dev->open_handle_count++; 625 626 cl->host_client_id = id; 627 list_add_tail(&cl->link, &dev->file_list); 628 629 set_bit(id, dev->host_clients_map); 630 631 cl->state = MEI_FILE_INITIALIZING; 632 633 cl_dbg(dev, cl, "link cl\n"); 634 return 0; 635 } 636 637 /** 638 * mei_cl_unlink - remove host client from the list 639 * 640 * @cl: host client 641 * 642 * Return: always 0 643 */ 644 int mei_cl_unlink(struct mei_cl *cl) 645 { 646 struct mei_device *dev; 647 648 /* don't shout on error exit path */ 649 if (!cl) 650 return 0; 651 652 /* amthif might not be initialized */ 653 if (!cl->dev) 654 return 0; 655 656 dev = cl->dev; 657 658 cl_dbg(dev, cl, "unlink client"); 659 660 if (dev->open_handle_count > 0) 661 dev->open_handle_count--; 662 663 /* never clear the 0 bit */ 664 if (cl->host_client_id) 665 clear_bit(cl->host_client_id, dev->host_clients_map); 666 667 list_del_init(&cl->link); 668 669 cl->state = MEI_FILE_UNINITIALIZED; 670 cl->writing_state = MEI_IDLE; 671 672 WARN_ON(!list_empty(&cl->rd_completed) || 673 !list_empty(&cl->rd_pending) || 674 !list_empty(&cl->link)); 675 676 return 0; 677 } 678 679 void mei_host_client_init(struct mei_device *dev) 680 { 681 dev->dev_state = MEI_DEV_ENABLED; 682 dev->reset_count = 0; 683 684 schedule_work(&dev->bus_rescan_work); 685 686 pm_runtime_mark_last_busy(dev->dev); 687 dev_dbg(dev->dev, "rpm: autosuspend\n"); 688 pm_request_autosuspend(dev->dev); 689 } 690 691 /** 692 * mei_hbuf_acquire - try to acquire host buffer 693 * 694 * @dev: the device structure 695 * Return: true if host buffer was acquired 696 */ 697 bool mei_hbuf_acquire(struct mei_device *dev) 698 { 699 if (mei_pg_state(dev) == MEI_PG_ON || 700 mei_pg_in_transition(dev)) { 701 dev_dbg(dev->dev, "device is in pg\n"); 702 return false; 703 } 704 705 if (!dev->hbuf_is_ready) { 706 dev_dbg(dev->dev, "hbuf is not ready\n"); 707 return false; 708 } 709 710 dev->hbuf_is_ready = false; 711 712 return true; 713 } 714 715 /** 716 * mei_cl_wake_all - wake up readers, writers and event waiters so 717 * they can be interrupted 718 * 719 * @cl: host client 720 */ 721 static void mei_cl_wake_all(struct mei_cl *cl) 722 { 723 struct mei_device *dev = cl->dev; 724 725 /* synchronized under device mutex */ 726 if (waitqueue_active(&cl->rx_wait)) { 727 cl_dbg(dev, cl, "Waking up reading client!\n"); 728 wake_up_interruptible(&cl->rx_wait); 729 } 730 /* synchronized under device mutex */ 731 if (waitqueue_active(&cl->tx_wait)) { 732 cl_dbg(dev, cl, "Waking up writing client!\n"); 733 wake_up_interruptible(&cl->tx_wait); 734 } 735 /* synchronized under device mutex */ 736 if (waitqueue_active(&cl->ev_wait)) { 737 cl_dbg(dev, cl, "Waking up waiting for event clients!\n"); 738 wake_up_interruptible(&cl->ev_wait); 739 } 740 /* synchronized under device mutex */ 741 if (waitqueue_active(&cl->wait)) { 742 cl_dbg(dev, cl, "Waking up ctrl write clients!\n"); 743 wake_up(&cl->wait); 744 } 745 } 746 747 /** 748 * mei_cl_set_disconnected - set disconnected state and clear 749 * associated states and resources 750 * 751 * @cl: host client 752 */ 753 static void mei_cl_set_disconnected(struct mei_cl *cl) 754 { 755 struct mei_device *dev = cl->dev; 756 757 if (cl->state == MEI_FILE_DISCONNECTED || 758 cl->state <= MEI_FILE_INITIALIZING) 759 return; 760 761 cl->state = MEI_FILE_DISCONNECTED; 762 mei_io_list_free_cl(&dev->write_list, cl); 763 mei_io_list_free_cl(&dev->write_waiting_list, cl); 764 mei_io_list_flush_cl(&dev->ctrl_rd_list, cl); 765 mei_io_list_flush_cl(&dev->ctrl_wr_list, cl); 766 mei_io_list_free_cl(&dev->amthif_cmd_list, cl); 767 mei_cl_wake_all(cl); 768 cl->rx_flow_ctrl_creds = 0; 769 cl->tx_flow_ctrl_creds = 0; 770 cl->timer_count = 0; 771 772 mei_cl_bus_module_put(cl); 773 774 if (!cl->me_cl) 775 return; 776 777 if (!WARN_ON(cl->me_cl->connect_count == 0)) 778 cl->me_cl->connect_count--; 779 780 if (cl->me_cl->connect_count == 0) 781 cl->me_cl->tx_flow_ctrl_creds = 0; 782 783 mei_me_cl_put(cl->me_cl); 784 cl->me_cl = NULL; 785 } 786 787 static int mei_cl_set_connecting(struct mei_cl *cl, struct mei_me_client *me_cl) 788 { 789 if (!mei_me_cl_get(me_cl)) 790 return -ENOENT; 791 792 /* only one connection is allowed for fixed address clients */ 793 if (me_cl->props.fixed_address) { 794 if (me_cl->connect_count) { 795 mei_me_cl_put(me_cl); 796 return -EBUSY; 797 } 798 } 799 800 cl->me_cl = me_cl; 801 cl->state = MEI_FILE_CONNECTING; 802 cl->me_cl->connect_count++; 803 804 return 0; 805 } 806 807 /* 808 * mei_cl_send_disconnect - send disconnect request 809 * 810 * @cl: host client 811 * @cb: callback block 812 * 813 * Return: 0, OK; otherwise, error. 814 */ 815 static int mei_cl_send_disconnect(struct mei_cl *cl, struct mei_cl_cb *cb) 816 { 817 struct mei_device *dev; 818 int ret; 819 820 dev = cl->dev; 821 822 ret = mei_hbm_cl_disconnect_req(dev, cl); 823 cl->status = ret; 824 if (ret) { 825 cl->state = MEI_FILE_DISCONNECT_REPLY; 826 return ret; 827 } 828 829 list_move_tail(&cb->list, &dev->ctrl_rd_list); 830 cl->timer_count = MEI_CONNECT_TIMEOUT; 831 mei_schedule_stall_timer(dev); 832 833 return 0; 834 } 835 836 /** 837 * mei_cl_irq_disconnect - processes close related operation from 838 * interrupt thread context - send disconnect request 839 * 840 * @cl: client 841 * @cb: callback block. 842 * @cmpl_list: complete list. 843 * 844 * Return: 0, OK; otherwise, error. 845 */ 846 int mei_cl_irq_disconnect(struct mei_cl *cl, struct mei_cl_cb *cb, 847 struct list_head *cmpl_list) 848 { 849 struct mei_device *dev = cl->dev; 850 u32 msg_slots; 851 int slots; 852 int ret; 853 854 msg_slots = mei_data2slots(sizeof(struct hbm_client_connect_request)); 855 slots = mei_hbuf_empty_slots(dev); 856 857 if (slots < msg_slots) 858 return -EMSGSIZE; 859 860 ret = mei_cl_send_disconnect(cl, cb); 861 if (ret) 862 list_move_tail(&cb->list, cmpl_list); 863 864 return ret; 865 } 866 867 /** 868 * __mei_cl_disconnect - disconnect host client from the me one 869 * internal function runtime pm has to be already acquired 870 * 871 * @cl: host client 872 * 873 * Return: 0 on success, <0 on failure. 874 */ 875 static int __mei_cl_disconnect(struct mei_cl *cl) 876 { 877 struct mei_device *dev; 878 struct mei_cl_cb *cb; 879 int rets; 880 881 dev = cl->dev; 882 883 cl->state = MEI_FILE_DISCONNECTING; 884 885 cb = mei_cl_enqueue_ctrl_wr_cb(cl, 0, MEI_FOP_DISCONNECT, NULL); 886 if (!cb) { 887 rets = -ENOMEM; 888 goto out; 889 } 890 891 if (mei_hbuf_acquire(dev)) { 892 rets = mei_cl_send_disconnect(cl, cb); 893 if (rets) { 894 cl_err(dev, cl, "failed to disconnect.\n"); 895 goto out; 896 } 897 } 898 899 mutex_unlock(&dev->device_lock); 900 wait_event_timeout(cl->wait, 901 cl->state == MEI_FILE_DISCONNECT_REPLY || 902 cl->state == MEI_FILE_DISCONNECTED, 903 mei_secs_to_jiffies(MEI_CL_CONNECT_TIMEOUT)); 904 mutex_lock(&dev->device_lock); 905 906 rets = cl->status; 907 if (cl->state != MEI_FILE_DISCONNECT_REPLY && 908 cl->state != MEI_FILE_DISCONNECTED) { 909 cl_dbg(dev, cl, "timeout on disconnect from FW client.\n"); 910 rets = -ETIME; 911 } 912 913 out: 914 /* we disconnect also on error */ 915 mei_cl_set_disconnected(cl); 916 if (!rets) 917 cl_dbg(dev, cl, "successfully disconnected from FW client.\n"); 918 919 mei_io_cb_free(cb); 920 return rets; 921 } 922 923 /** 924 * mei_cl_disconnect - disconnect host client from the me one 925 * 926 * @cl: host client 927 * 928 * Locking: called under "dev->device_lock" lock 929 * 930 * Return: 0 on success, <0 on failure. 931 */ 932 int mei_cl_disconnect(struct mei_cl *cl) 933 { 934 struct mei_device *dev; 935 int rets; 936 937 if (WARN_ON(!cl || !cl->dev)) 938 return -ENODEV; 939 940 dev = cl->dev; 941 942 cl_dbg(dev, cl, "disconnecting"); 943 944 if (!mei_cl_is_connected(cl)) 945 return 0; 946 947 if (mei_cl_is_fixed_address(cl)) { 948 mei_cl_set_disconnected(cl); 949 return 0; 950 } 951 952 rets = pm_runtime_get(dev->dev); 953 if (rets < 0 && rets != -EINPROGRESS) { 954 pm_runtime_put_noidle(dev->dev); 955 cl_err(dev, cl, "rpm: get failed %d\n", rets); 956 return rets; 957 } 958 959 rets = __mei_cl_disconnect(cl); 960 961 cl_dbg(dev, cl, "rpm: autosuspend\n"); 962 pm_runtime_mark_last_busy(dev->dev); 963 pm_runtime_put_autosuspend(dev->dev); 964 965 return rets; 966 } 967 968 969 /** 970 * mei_cl_is_other_connecting - checks if other 971 * client with the same me client id is connecting 972 * 973 * @cl: private data of the file object 974 * 975 * Return: true if other client is connected, false - otherwise. 976 */ 977 static bool mei_cl_is_other_connecting(struct mei_cl *cl) 978 { 979 struct mei_device *dev; 980 struct mei_cl_cb *cb; 981 982 dev = cl->dev; 983 984 list_for_each_entry(cb, &dev->ctrl_rd_list, list) { 985 if (cb->fop_type == MEI_FOP_CONNECT && 986 mei_cl_me_id(cl) == mei_cl_me_id(cb->cl)) 987 return true; 988 } 989 990 return false; 991 } 992 993 /** 994 * mei_cl_send_connect - send connect request 995 * 996 * @cl: host client 997 * @cb: callback block 998 * 999 * Return: 0, OK; otherwise, error. 1000 */ 1001 static int mei_cl_send_connect(struct mei_cl *cl, struct mei_cl_cb *cb) 1002 { 1003 struct mei_device *dev; 1004 int ret; 1005 1006 dev = cl->dev; 1007 1008 ret = mei_hbm_cl_connect_req(dev, cl); 1009 cl->status = ret; 1010 if (ret) { 1011 cl->state = MEI_FILE_DISCONNECT_REPLY; 1012 return ret; 1013 } 1014 1015 list_move_tail(&cb->list, &dev->ctrl_rd_list); 1016 cl->timer_count = MEI_CONNECT_TIMEOUT; 1017 mei_schedule_stall_timer(dev); 1018 return 0; 1019 } 1020 1021 /** 1022 * mei_cl_irq_connect - send connect request in irq_thread context 1023 * 1024 * @cl: host client 1025 * @cb: callback block 1026 * @cmpl_list: complete list 1027 * 1028 * Return: 0, OK; otherwise, error. 1029 */ 1030 int mei_cl_irq_connect(struct mei_cl *cl, struct mei_cl_cb *cb, 1031 struct list_head *cmpl_list) 1032 { 1033 struct mei_device *dev = cl->dev; 1034 u32 msg_slots; 1035 int slots; 1036 int rets; 1037 1038 msg_slots = mei_data2slots(sizeof(struct hbm_client_connect_request)); 1039 slots = mei_hbuf_empty_slots(dev); 1040 1041 if (mei_cl_is_other_connecting(cl)) 1042 return 0; 1043 1044 if (slots < msg_slots) 1045 return -EMSGSIZE; 1046 1047 rets = mei_cl_send_connect(cl, cb); 1048 if (rets) 1049 list_move_tail(&cb->list, cmpl_list); 1050 1051 return rets; 1052 } 1053 1054 /** 1055 * mei_cl_connect - connect host client to the me one 1056 * 1057 * @cl: host client 1058 * @me_cl: me client 1059 * @fp: pointer to file structure 1060 * 1061 * Locking: called under "dev->device_lock" lock 1062 * 1063 * Return: 0 on success, <0 on failure. 1064 */ 1065 int mei_cl_connect(struct mei_cl *cl, struct mei_me_client *me_cl, 1066 const struct file *fp) 1067 { 1068 struct mei_device *dev; 1069 struct mei_cl_cb *cb; 1070 int rets; 1071 1072 if (WARN_ON(!cl || !cl->dev || !me_cl)) 1073 return -ENODEV; 1074 1075 dev = cl->dev; 1076 1077 if (!mei_cl_bus_module_get(cl)) 1078 return -ENODEV; 1079 1080 rets = mei_cl_set_connecting(cl, me_cl); 1081 if (rets) 1082 goto nortpm; 1083 1084 if (mei_cl_is_fixed_address(cl)) { 1085 cl->state = MEI_FILE_CONNECTED; 1086 rets = 0; 1087 goto nortpm; 1088 } 1089 1090 rets = pm_runtime_get(dev->dev); 1091 if (rets < 0 && rets != -EINPROGRESS) { 1092 pm_runtime_put_noidle(dev->dev); 1093 cl_err(dev, cl, "rpm: get failed %d\n", rets); 1094 goto nortpm; 1095 } 1096 1097 cb = mei_cl_enqueue_ctrl_wr_cb(cl, 0, MEI_FOP_CONNECT, fp); 1098 if (!cb) { 1099 rets = -ENOMEM; 1100 goto out; 1101 } 1102 1103 /* run hbuf acquire last so we don't have to undo */ 1104 if (!mei_cl_is_other_connecting(cl) && mei_hbuf_acquire(dev)) { 1105 rets = mei_cl_send_connect(cl, cb); 1106 if (rets) 1107 goto out; 1108 } 1109 1110 mutex_unlock(&dev->device_lock); 1111 wait_event_timeout(cl->wait, 1112 (cl->state == MEI_FILE_CONNECTED || 1113 cl->state == MEI_FILE_DISCONNECTED || 1114 cl->state == MEI_FILE_DISCONNECT_REQUIRED || 1115 cl->state == MEI_FILE_DISCONNECT_REPLY), 1116 mei_secs_to_jiffies(MEI_CL_CONNECT_TIMEOUT)); 1117 mutex_lock(&dev->device_lock); 1118 1119 if (!mei_cl_is_connected(cl)) { 1120 if (cl->state == MEI_FILE_DISCONNECT_REQUIRED) { 1121 mei_io_list_flush_cl(&dev->ctrl_rd_list, cl); 1122 mei_io_list_flush_cl(&dev->ctrl_wr_list, cl); 1123 /* ignore disconnect return valuue; 1124 * in case of failure reset will be invoked 1125 */ 1126 __mei_cl_disconnect(cl); 1127 rets = -EFAULT; 1128 goto out; 1129 } 1130 1131 /* timeout or something went really wrong */ 1132 if (!cl->status) 1133 cl->status = -EFAULT; 1134 } 1135 1136 rets = cl->status; 1137 out: 1138 cl_dbg(dev, cl, "rpm: autosuspend\n"); 1139 pm_runtime_mark_last_busy(dev->dev); 1140 pm_runtime_put_autosuspend(dev->dev); 1141 1142 mei_io_cb_free(cb); 1143 1144 nortpm: 1145 if (!mei_cl_is_connected(cl)) 1146 mei_cl_set_disconnected(cl); 1147 1148 return rets; 1149 } 1150 1151 /** 1152 * mei_cl_alloc_linked - allocate and link host client 1153 * 1154 * @dev: the device structure 1155 * 1156 * Return: cl on success ERR_PTR on failure 1157 */ 1158 struct mei_cl *mei_cl_alloc_linked(struct mei_device *dev) 1159 { 1160 struct mei_cl *cl; 1161 int ret; 1162 1163 cl = mei_cl_allocate(dev); 1164 if (!cl) { 1165 ret = -ENOMEM; 1166 goto err; 1167 } 1168 1169 ret = mei_cl_link(cl); 1170 if (ret) 1171 goto err; 1172 1173 return cl; 1174 err: 1175 kfree(cl); 1176 return ERR_PTR(ret); 1177 } 1178 1179 /** 1180 * mei_cl_tx_flow_ctrl_creds - checks flow_control credits for cl. 1181 * 1182 * @cl: host client 1183 * 1184 * Return: 1 if tx_flow_ctrl_creds >0, 0 - otherwise. 1185 */ 1186 static int mei_cl_tx_flow_ctrl_creds(struct mei_cl *cl) 1187 { 1188 if (WARN_ON(!cl || !cl->me_cl)) 1189 return -EINVAL; 1190 1191 if (cl->tx_flow_ctrl_creds > 0) 1192 return 1; 1193 1194 if (mei_cl_is_fixed_address(cl)) 1195 return 1; 1196 1197 if (mei_cl_is_single_recv_buf(cl)) { 1198 if (cl->me_cl->tx_flow_ctrl_creds > 0) 1199 return 1; 1200 } 1201 return 0; 1202 } 1203 1204 /** 1205 * mei_cl_tx_flow_ctrl_creds_reduce - reduces transmit flow control credits 1206 * for a client 1207 * 1208 * @cl: host client 1209 * 1210 * Return: 1211 * 0 on success 1212 * -EINVAL when ctrl credits are <= 0 1213 */ 1214 static int mei_cl_tx_flow_ctrl_creds_reduce(struct mei_cl *cl) 1215 { 1216 if (WARN_ON(!cl || !cl->me_cl)) 1217 return -EINVAL; 1218 1219 if (mei_cl_is_fixed_address(cl)) 1220 return 0; 1221 1222 if (mei_cl_is_single_recv_buf(cl)) { 1223 if (WARN_ON(cl->me_cl->tx_flow_ctrl_creds <= 0)) 1224 return -EINVAL; 1225 cl->me_cl->tx_flow_ctrl_creds--; 1226 } else { 1227 if (WARN_ON(cl->tx_flow_ctrl_creds <= 0)) 1228 return -EINVAL; 1229 cl->tx_flow_ctrl_creds--; 1230 } 1231 return 0; 1232 } 1233 1234 /** 1235 * mei_cl_notify_fop2req - convert fop to proper request 1236 * 1237 * @fop: client notification start response command 1238 * 1239 * Return: MEI_HBM_NOTIFICATION_START/STOP 1240 */ 1241 u8 mei_cl_notify_fop2req(enum mei_cb_file_ops fop) 1242 { 1243 if (fop == MEI_FOP_NOTIFY_START) 1244 return MEI_HBM_NOTIFICATION_START; 1245 else 1246 return MEI_HBM_NOTIFICATION_STOP; 1247 } 1248 1249 /** 1250 * mei_cl_notify_req2fop - convert notification request top file operation type 1251 * 1252 * @req: hbm notification request type 1253 * 1254 * Return: MEI_FOP_NOTIFY_START/STOP 1255 */ 1256 enum mei_cb_file_ops mei_cl_notify_req2fop(u8 req) 1257 { 1258 if (req == MEI_HBM_NOTIFICATION_START) 1259 return MEI_FOP_NOTIFY_START; 1260 else 1261 return MEI_FOP_NOTIFY_STOP; 1262 } 1263 1264 /** 1265 * mei_cl_irq_notify - send notification request in irq_thread context 1266 * 1267 * @cl: client 1268 * @cb: callback block. 1269 * @cmpl_list: complete list. 1270 * 1271 * Return: 0 on such and error otherwise. 1272 */ 1273 int mei_cl_irq_notify(struct mei_cl *cl, struct mei_cl_cb *cb, 1274 struct list_head *cmpl_list) 1275 { 1276 struct mei_device *dev = cl->dev; 1277 u32 msg_slots; 1278 int slots; 1279 int ret; 1280 bool request; 1281 1282 msg_slots = mei_data2slots(sizeof(struct hbm_client_connect_request)); 1283 slots = mei_hbuf_empty_slots(dev); 1284 1285 if (slots < msg_slots) 1286 return -EMSGSIZE; 1287 1288 request = mei_cl_notify_fop2req(cb->fop_type); 1289 ret = mei_hbm_cl_notify_req(dev, cl, request); 1290 if (ret) { 1291 cl->status = ret; 1292 list_move_tail(&cb->list, cmpl_list); 1293 return ret; 1294 } 1295 1296 list_move_tail(&cb->list, &dev->ctrl_rd_list); 1297 return 0; 1298 } 1299 1300 /** 1301 * mei_cl_notify_request - send notification stop/start request 1302 * 1303 * @cl: host client 1304 * @fp: associate request with file 1305 * @request: 1 for start or 0 for stop 1306 * 1307 * Locking: called under "dev->device_lock" lock 1308 * 1309 * Return: 0 on such and error otherwise. 1310 */ 1311 int mei_cl_notify_request(struct mei_cl *cl, 1312 const struct file *fp, u8 request) 1313 { 1314 struct mei_device *dev; 1315 struct mei_cl_cb *cb; 1316 enum mei_cb_file_ops fop_type; 1317 int rets; 1318 1319 if (WARN_ON(!cl || !cl->dev)) 1320 return -ENODEV; 1321 1322 dev = cl->dev; 1323 1324 if (!dev->hbm_f_ev_supported) { 1325 cl_dbg(dev, cl, "notifications not supported\n"); 1326 return -EOPNOTSUPP; 1327 } 1328 1329 if (!mei_cl_is_connected(cl)) 1330 return -ENODEV; 1331 1332 rets = pm_runtime_get(dev->dev); 1333 if (rets < 0 && rets != -EINPROGRESS) { 1334 pm_runtime_put_noidle(dev->dev); 1335 cl_err(dev, cl, "rpm: get failed %d\n", rets); 1336 return rets; 1337 } 1338 1339 fop_type = mei_cl_notify_req2fop(request); 1340 cb = mei_cl_enqueue_ctrl_wr_cb(cl, 0, fop_type, fp); 1341 if (!cb) { 1342 rets = -ENOMEM; 1343 goto out; 1344 } 1345 1346 if (mei_hbuf_acquire(dev)) { 1347 if (mei_hbm_cl_notify_req(dev, cl, request)) { 1348 rets = -ENODEV; 1349 goto out; 1350 } 1351 list_move_tail(&cb->list, &dev->ctrl_rd_list); 1352 } 1353 1354 mutex_unlock(&dev->device_lock); 1355 wait_event_timeout(cl->wait, 1356 cl->notify_en == request || !mei_cl_is_connected(cl), 1357 mei_secs_to_jiffies(MEI_CL_CONNECT_TIMEOUT)); 1358 mutex_lock(&dev->device_lock); 1359 1360 if (cl->notify_en != request && !cl->status) 1361 cl->status = -EFAULT; 1362 1363 rets = cl->status; 1364 1365 out: 1366 cl_dbg(dev, cl, "rpm: autosuspend\n"); 1367 pm_runtime_mark_last_busy(dev->dev); 1368 pm_runtime_put_autosuspend(dev->dev); 1369 1370 mei_io_cb_free(cb); 1371 return rets; 1372 } 1373 1374 /** 1375 * mei_cl_notify - raise notification 1376 * 1377 * @cl: host client 1378 * 1379 * Locking: called under "dev->device_lock" lock 1380 */ 1381 void mei_cl_notify(struct mei_cl *cl) 1382 { 1383 struct mei_device *dev; 1384 1385 if (!cl || !cl->dev) 1386 return; 1387 1388 dev = cl->dev; 1389 1390 if (!cl->notify_en) 1391 return; 1392 1393 cl_dbg(dev, cl, "notify event"); 1394 cl->notify_ev = true; 1395 if (!mei_cl_bus_notify_event(cl)) 1396 wake_up_interruptible(&cl->ev_wait); 1397 1398 if (cl->ev_async) 1399 kill_fasync(&cl->ev_async, SIGIO, POLL_PRI); 1400 1401 } 1402 1403 /** 1404 * mei_cl_notify_get - get or wait for notification event 1405 * 1406 * @cl: host client 1407 * @block: this request is blocking 1408 * @notify_ev: true if notification event was received 1409 * 1410 * Locking: called under "dev->device_lock" lock 1411 * 1412 * Return: 0 on such and error otherwise. 1413 */ 1414 int mei_cl_notify_get(struct mei_cl *cl, bool block, bool *notify_ev) 1415 { 1416 struct mei_device *dev; 1417 int rets; 1418 1419 *notify_ev = false; 1420 1421 if (WARN_ON(!cl || !cl->dev)) 1422 return -ENODEV; 1423 1424 dev = cl->dev; 1425 1426 if (!dev->hbm_f_ev_supported) { 1427 cl_dbg(dev, cl, "notifications not supported\n"); 1428 return -EOPNOTSUPP; 1429 } 1430 1431 if (!mei_cl_is_connected(cl)) 1432 return -ENODEV; 1433 1434 if (cl->notify_ev) 1435 goto out; 1436 1437 if (!block) 1438 return -EAGAIN; 1439 1440 mutex_unlock(&dev->device_lock); 1441 rets = wait_event_interruptible(cl->ev_wait, cl->notify_ev); 1442 mutex_lock(&dev->device_lock); 1443 1444 if (rets < 0) 1445 return rets; 1446 1447 out: 1448 *notify_ev = cl->notify_ev; 1449 cl->notify_ev = false; 1450 return 0; 1451 } 1452 1453 /** 1454 * mei_cl_read_start - the start read client message function. 1455 * 1456 * @cl: host client 1457 * @length: number of bytes to read 1458 * @fp: pointer to file structure 1459 * 1460 * Return: 0 on success, <0 on failure. 1461 */ 1462 int mei_cl_read_start(struct mei_cl *cl, size_t length, const struct file *fp) 1463 { 1464 struct mei_device *dev; 1465 struct mei_cl_cb *cb; 1466 int rets; 1467 1468 if (WARN_ON(!cl || !cl->dev)) 1469 return -ENODEV; 1470 1471 dev = cl->dev; 1472 1473 if (!mei_cl_is_connected(cl)) 1474 return -ENODEV; 1475 1476 if (!mei_me_cl_is_active(cl->me_cl)) { 1477 cl_err(dev, cl, "no such me client\n"); 1478 return -ENOTTY; 1479 } 1480 1481 if (mei_cl_is_fixed_address(cl) || cl == &dev->iamthif_cl) 1482 return 0; 1483 1484 /* HW currently supports only one pending read */ 1485 if (cl->rx_flow_ctrl_creds) 1486 return -EBUSY; 1487 1488 cb = mei_cl_enqueue_ctrl_wr_cb(cl, length, MEI_FOP_READ, fp); 1489 if (!cb) 1490 return -ENOMEM; 1491 1492 rets = pm_runtime_get(dev->dev); 1493 if (rets < 0 && rets != -EINPROGRESS) { 1494 pm_runtime_put_noidle(dev->dev); 1495 cl_err(dev, cl, "rpm: get failed %d\n", rets); 1496 goto nortpm; 1497 } 1498 1499 rets = 0; 1500 if (mei_hbuf_acquire(dev)) { 1501 rets = mei_hbm_cl_flow_control_req(dev, cl); 1502 if (rets < 0) 1503 goto out; 1504 1505 list_move_tail(&cb->list, &cl->rd_pending); 1506 } 1507 cl->rx_flow_ctrl_creds++; 1508 1509 out: 1510 cl_dbg(dev, cl, "rpm: autosuspend\n"); 1511 pm_runtime_mark_last_busy(dev->dev); 1512 pm_runtime_put_autosuspend(dev->dev); 1513 nortpm: 1514 if (rets) 1515 mei_io_cb_free(cb); 1516 1517 return rets; 1518 } 1519 1520 /** 1521 * mei_cl_irq_write - write a message to device 1522 * from the interrupt thread context 1523 * 1524 * @cl: client 1525 * @cb: callback block. 1526 * @cmpl_list: complete list. 1527 * 1528 * Return: 0, OK; otherwise error. 1529 */ 1530 int mei_cl_irq_write(struct mei_cl *cl, struct mei_cl_cb *cb, 1531 struct list_head *cmpl_list) 1532 { 1533 struct mei_device *dev; 1534 struct mei_msg_data *buf; 1535 struct mei_msg_hdr mei_hdr; 1536 size_t len; 1537 u32 msg_slots; 1538 int slots; 1539 int rets; 1540 bool first_chunk; 1541 1542 if (WARN_ON(!cl || !cl->dev)) 1543 return -ENODEV; 1544 1545 dev = cl->dev; 1546 1547 buf = &cb->buf; 1548 1549 first_chunk = cb->buf_idx == 0; 1550 1551 rets = first_chunk ? mei_cl_tx_flow_ctrl_creds(cl) : 1; 1552 if (rets < 0) 1553 goto err; 1554 1555 if (rets == 0) { 1556 cl_dbg(dev, cl, "No flow control credentials: not sending.\n"); 1557 return 0; 1558 } 1559 1560 slots = mei_hbuf_empty_slots(dev); 1561 len = buf->size - cb->buf_idx; 1562 msg_slots = mei_data2slots(len); 1563 1564 mei_hdr.host_addr = mei_cl_host_addr(cl); 1565 mei_hdr.me_addr = mei_cl_me_id(cl); 1566 mei_hdr.reserved = 0; 1567 mei_hdr.internal = cb->internal; 1568 1569 if (slots >= msg_slots) { 1570 mei_hdr.length = len; 1571 mei_hdr.msg_complete = 1; 1572 /* Split the message only if we can write the whole host buffer */ 1573 } else if (slots == dev->hbuf_depth) { 1574 msg_slots = slots; 1575 len = (slots * sizeof(u32)) - sizeof(struct mei_msg_hdr); 1576 mei_hdr.length = len; 1577 mei_hdr.msg_complete = 0; 1578 } else { 1579 /* wait for next time the host buffer is empty */ 1580 return 0; 1581 } 1582 1583 cl_dbg(dev, cl, "buf: size = %zu idx = %zu\n", 1584 cb->buf.size, cb->buf_idx); 1585 1586 rets = mei_write_message(dev, &mei_hdr, buf->data + cb->buf_idx); 1587 if (rets) 1588 goto err; 1589 1590 cl->status = 0; 1591 cl->writing_state = MEI_WRITING; 1592 cb->buf_idx += mei_hdr.length; 1593 cb->completed = mei_hdr.msg_complete == 1; 1594 1595 if (first_chunk) { 1596 if (mei_cl_tx_flow_ctrl_creds_reduce(cl)) { 1597 rets = -EIO; 1598 goto err; 1599 } 1600 } 1601 1602 if (mei_hdr.msg_complete) 1603 list_move_tail(&cb->list, &dev->write_waiting_list); 1604 1605 return 0; 1606 1607 err: 1608 cl->status = rets; 1609 list_move_tail(&cb->list, cmpl_list); 1610 return rets; 1611 } 1612 1613 /** 1614 * mei_cl_write - submit a write cb to mei device 1615 * assumes device_lock is locked 1616 * 1617 * @cl: host client 1618 * @cb: write callback with filled data 1619 * 1620 * Return: number of bytes sent on success, <0 on failure. 1621 */ 1622 int mei_cl_write(struct mei_cl *cl, struct mei_cl_cb *cb) 1623 { 1624 struct mei_device *dev; 1625 struct mei_msg_data *buf; 1626 struct mei_msg_hdr mei_hdr; 1627 int size; 1628 int rets; 1629 bool blocking; 1630 1631 if (WARN_ON(!cl || !cl->dev)) 1632 return -ENODEV; 1633 1634 if (WARN_ON(!cb)) 1635 return -EINVAL; 1636 1637 dev = cl->dev; 1638 1639 buf = &cb->buf; 1640 size = buf->size; 1641 blocking = cb->blocking; 1642 1643 cl_dbg(dev, cl, "size=%d\n", size); 1644 1645 rets = pm_runtime_get(dev->dev); 1646 if (rets < 0 && rets != -EINPROGRESS) { 1647 pm_runtime_put_noidle(dev->dev); 1648 cl_err(dev, cl, "rpm: get failed %d\n", rets); 1649 goto free; 1650 } 1651 1652 cb->buf_idx = 0; 1653 cl->writing_state = MEI_IDLE; 1654 1655 mei_hdr.host_addr = mei_cl_host_addr(cl); 1656 mei_hdr.me_addr = mei_cl_me_id(cl); 1657 mei_hdr.reserved = 0; 1658 mei_hdr.msg_complete = 0; 1659 mei_hdr.internal = cb->internal; 1660 1661 rets = mei_cl_tx_flow_ctrl_creds(cl); 1662 if (rets < 0) 1663 goto err; 1664 1665 if (rets == 0) { 1666 cl_dbg(dev, cl, "No flow control credentials: not sending.\n"); 1667 rets = size; 1668 goto out; 1669 } 1670 if (!mei_hbuf_acquire(dev)) { 1671 cl_dbg(dev, cl, "Cannot acquire the host buffer: not sending.\n"); 1672 rets = size; 1673 goto out; 1674 } 1675 1676 /* Check for a maximum length */ 1677 if (size > mei_hbuf_max_len(dev)) { 1678 mei_hdr.length = mei_hbuf_max_len(dev); 1679 mei_hdr.msg_complete = 0; 1680 } else { 1681 mei_hdr.length = size; 1682 mei_hdr.msg_complete = 1; 1683 } 1684 1685 rets = mei_write_message(dev, &mei_hdr, buf->data); 1686 if (rets) 1687 goto err; 1688 1689 rets = mei_cl_tx_flow_ctrl_creds_reduce(cl); 1690 if (rets) 1691 goto err; 1692 1693 cl->writing_state = MEI_WRITING; 1694 cb->buf_idx = mei_hdr.length; 1695 cb->completed = mei_hdr.msg_complete == 1; 1696 1697 out: 1698 if (mei_hdr.msg_complete) 1699 list_add_tail(&cb->list, &dev->write_waiting_list); 1700 else 1701 list_add_tail(&cb->list, &dev->write_list); 1702 1703 cb = NULL; 1704 if (blocking && cl->writing_state != MEI_WRITE_COMPLETE) { 1705 1706 mutex_unlock(&dev->device_lock); 1707 rets = wait_event_interruptible(cl->tx_wait, 1708 cl->writing_state == MEI_WRITE_COMPLETE || 1709 (!mei_cl_is_connected(cl))); 1710 mutex_lock(&dev->device_lock); 1711 /* wait_event_interruptible returns -ERESTARTSYS */ 1712 if (rets) { 1713 if (signal_pending(current)) 1714 rets = -EINTR; 1715 goto err; 1716 } 1717 if (cl->writing_state != MEI_WRITE_COMPLETE) { 1718 rets = -EFAULT; 1719 goto err; 1720 } 1721 } 1722 1723 rets = size; 1724 err: 1725 cl_dbg(dev, cl, "rpm: autosuspend\n"); 1726 pm_runtime_mark_last_busy(dev->dev); 1727 pm_runtime_put_autosuspend(dev->dev); 1728 free: 1729 mei_io_cb_free(cb); 1730 1731 return rets; 1732 } 1733 1734 1735 /** 1736 * mei_cl_complete - processes completed operation for a client 1737 * 1738 * @cl: private data of the file object. 1739 * @cb: callback block. 1740 */ 1741 void mei_cl_complete(struct mei_cl *cl, struct mei_cl_cb *cb) 1742 { 1743 struct mei_device *dev = cl->dev; 1744 1745 switch (cb->fop_type) { 1746 case MEI_FOP_WRITE: 1747 mei_io_cb_free(cb); 1748 cl->writing_state = MEI_WRITE_COMPLETE; 1749 if (waitqueue_active(&cl->tx_wait)) { 1750 wake_up_interruptible(&cl->tx_wait); 1751 } else { 1752 pm_runtime_mark_last_busy(dev->dev); 1753 pm_request_autosuspend(dev->dev); 1754 } 1755 break; 1756 1757 case MEI_FOP_READ: 1758 list_add_tail(&cb->list, &cl->rd_completed); 1759 if (!mei_cl_is_fixed_address(cl) && 1760 !WARN_ON(!cl->rx_flow_ctrl_creds)) 1761 cl->rx_flow_ctrl_creds--; 1762 if (!mei_cl_bus_rx_event(cl)) 1763 wake_up_interruptible(&cl->rx_wait); 1764 break; 1765 1766 case MEI_FOP_CONNECT: 1767 case MEI_FOP_DISCONNECT: 1768 case MEI_FOP_NOTIFY_STOP: 1769 case MEI_FOP_NOTIFY_START: 1770 if (waitqueue_active(&cl->wait)) 1771 wake_up(&cl->wait); 1772 1773 break; 1774 case MEI_FOP_DISCONNECT_RSP: 1775 mei_io_cb_free(cb); 1776 mei_cl_set_disconnected(cl); 1777 break; 1778 default: 1779 BUG_ON(0); 1780 } 1781 } 1782 1783 1784 /** 1785 * mei_cl_all_disconnect - disconnect forcefully all connected clients 1786 * 1787 * @dev: mei device 1788 */ 1789 void mei_cl_all_disconnect(struct mei_device *dev) 1790 { 1791 struct mei_cl *cl; 1792 1793 list_for_each_entry(cl, &dev->file_list, link) 1794 mei_cl_set_disconnected(cl); 1795 } 1796