1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * Copyright (C) 2012 Intel, Inc. 4 * Copyright (C) 2013 Intel, Inc. 5 * Copyright (C) 2014 Linaro Limited 6 * Copyright (C) 2011-2016 Google, Inc. 7 * 8 * This software is licensed under the terms of the GNU General Public 9 * License version 2, as published by the Free Software Foundation, and 10 * may be copied, distributed, and modified under those terms. 11 * 12 * This program is distributed in the hope that it will be useful, 13 * but WITHOUT ANY WARRANTY; without even the implied warranty of 14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 15 * GNU General Public License for more details. 16 * 17 */ 18 19 /* This source file contains the implementation of a special device driver 20 * that intends to provide a *very* fast communication channel between the 21 * guest system and the QEMU emulator. 22 * 23 * Usage from the guest is simply the following (error handling simplified): 24 * 25 * int fd = open("/dev/qemu_pipe",O_RDWR); 26 * .... write() or read() through the pipe. 27 * 28 * This driver doesn't deal with the exact protocol used during the session. 29 * It is intended to be as simple as something like: 30 * 31 * // do this _just_ after opening the fd to connect to a specific 32 * // emulator service. 33 * const char* msg = "<pipename>"; 34 * if (write(fd, msg, strlen(msg)+1) < 0) { 35 * ... could not connect to <pipename> service 36 * close(fd); 37 * } 38 * 39 * // after this, simply read() and write() to communicate with the 40 * // service. Exact protocol details left as an exercise to the reader. 41 * 42 * This driver is very fast because it doesn't copy any data through 43 * intermediate buffers, since the emulator is capable of translating 44 * guest user addresses into host ones. 45 * 46 * Note that we must however ensure that each user page involved in the 47 * exchange is properly mapped during a transfer. 48 */ 49 50 #include <linux/module.h> 51 #include <linux/mod_devicetable.h> 52 #include <linux/interrupt.h> 53 #include <linux/kernel.h> 54 #include <linux/spinlock.h> 55 #include <linux/miscdevice.h> 56 #include <linux/platform_device.h> 57 #include <linux/poll.h> 58 #include <linux/sched.h> 59 #include <linux/bitops.h> 60 #include <linux/slab.h> 61 #include <linux/io.h> 62 #include <linux/dma-mapping.h> 63 #include <linux/mm.h> 64 #include <linux/acpi.h> 65 #include <linux/bug.h> 66 #include "goldfish_pipe_qemu.h" 67 68 /* 69 * Update this when something changes in the driver's behavior so the host 70 * can benefit from knowing it 71 */ 72 enum { 73 PIPE_DRIVER_VERSION = 2, 74 PIPE_CURRENT_DEVICE_VERSION = 2 75 }; 76 77 enum { 78 MAX_BUFFERS_PER_COMMAND = 336, 79 MAX_SIGNALLED_PIPES = 64, 80 INITIAL_PIPES_CAPACITY = 64 81 }; 82 83 struct goldfish_pipe_dev; 84 85 /* A per-pipe command structure, shared with the host */ 86 struct goldfish_pipe_command { 87 s32 cmd; /* PipeCmdCode, guest -> host */ 88 s32 id; /* pipe id, guest -> host */ 89 s32 status; /* command execution status, host -> guest */ 90 s32 reserved; /* to pad to 64-bit boundary */ 91 union { 92 /* Parameters for PIPE_CMD_{READ,WRITE} */ 93 struct { 94 /* number of buffers, guest -> host */ 95 u32 buffers_count; 96 /* number of consumed bytes, host -> guest */ 97 s32 consumed_size; 98 /* buffer pointers, guest -> host */ 99 u64 ptrs[MAX_BUFFERS_PER_COMMAND]; 100 /* buffer sizes, guest -> host */ 101 u32 sizes[MAX_BUFFERS_PER_COMMAND]; 102 } rw_params; 103 }; 104 }; 105 106 /* A single signalled pipe information */ 107 struct signalled_pipe_buffer { 108 u32 id; 109 u32 flags; 110 }; 111 112 /* Parameters for the PIPE_CMD_OPEN command */ 113 struct open_command_param { 114 u64 command_buffer_ptr; 115 u32 rw_params_max_count; 116 }; 117 118 /* Device-level set of buffers shared with the host */ 119 struct goldfish_pipe_dev_buffers { 120 struct open_command_param open_command_params; 121 struct signalled_pipe_buffer 122 signalled_pipe_buffers[MAX_SIGNALLED_PIPES]; 123 }; 124 125 /* This data type models a given pipe instance */ 126 struct goldfish_pipe { 127 /* pipe ID - index into goldfish_pipe_dev::pipes array */ 128 u32 id; 129 130 /* The wake flags pipe is waiting for 131 * Note: not protected with any lock, uses atomic operations 132 * and barriers to make it thread-safe. 133 */ 134 unsigned long flags; 135 136 /* wake flags host have signalled, 137 * - protected by goldfish_pipe_dev::lock 138 */ 139 unsigned long signalled_flags; 140 141 /* A pointer to command buffer */ 142 struct goldfish_pipe_command *command_buffer; 143 144 /* doubly linked list of signalled pipes, protected by 145 * goldfish_pipe_dev::lock 146 */ 147 struct goldfish_pipe *prev_signalled; 148 struct goldfish_pipe *next_signalled; 149 150 /* 151 * A pipe's own lock. Protects the following: 152 * - *command_buffer - makes sure a command can safely write its 153 * parameters to the host and read the results back. 154 */ 155 struct mutex lock; 156 157 /* A wake queue for sleeping until host signals an event */ 158 wait_queue_head_t wake_queue; 159 160 /* Pointer to the parent goldfish_pipe_dev instance */ 161 struct goldfish_pipe_dev *dev; 162 163 /* A buffer of pages, too large to fit into a stack frame */ 164 struct page *pages[MAX_BUFFERS_PER_COMMAND]; 165 }; 166 167 /* The global driver data. Holds a reference to the i/o page used to 168 * communicate with the emulator, and a wake queue for blocked tasks 169 * waiting to be awoken. 170 */ 171 struct goldfish_pipe_dev { 172 /* A magic number to check if this is an instance of this struct */ 173 void *magic; 174 175 /* 176 * Global device spinlock. Protects the following members: 177 * - pipes, pipes_capacity 178 * - [*pipes, *pipes + pipes_capacity) - array data 179 * - first_signalled_pipe, 180 * goldfish_pipe::prev_signalled, 181 * goldfish_pipe::next_signalled, 182 * goldfish_pipe::signalled_flags - all singnalled-related fields, 183 * in all allocated pipes 184 * - open_command_params - PIPE_CMD_OPEN-related buffers 185 * 186 * It looks like a lot of different fields, but the trick is that 187 * the only operation that happens often is the signalled pipes array 188 * manipulation. That's why it's OK for now to keep the rest of the 189 * fields under the same lock. If we notice too much contention because 190 * of PIPE_CMD_OPEN, then we should add a separate lock there. 191 */ 192 spinlock_t lock; 193 194 /* 195 * Array of the pipes of |pipes_capacity| elements, 196 * indexed by goldfish_pipe::id 197 */ 198 struct goldfish_pipe **pipes; 199 u32 pipes_capacity; 200 201 /* Pointers to the buffers host uses for interaction with this driver */ 202 struct goldfish_pipe_dev_buffers *buffers; 203 204 /* Head of a doubly linked list of signalled pipes */ 205 struct goldfish_pipe *first_signalled_pipe; 206 207 /* ptr to platform device's device struct */ 208 struct device *pdev_dev; 209 210 /* Some device-specific data */ 211 int irq; 212 int version; 213 unsigned char __iomem *base; 214 215 /* an irq tasklet to run goldfish_interrupt_task */ 216 struct tasklet_struct irq_tasklet; 217 218 struct miscdevice miscdev; 219 }; 220 221 static int goldfish_pipe_cmd_locked(struct goldfish_pipe *pipe, 222 enum PipeCmdCode cmd) 223 { 224 pipe->command_buffer->cmd = cmd; 225 /* failure by default */ 226 pipe->command_buffer->status = PIPE_ERROR_INVAL; 227 writel(pipe->id, pipe->dev->base + PIPE_REG_CMD); 228 return pipe->command_buffer->status; 229 } 230 231 static int goldfish_pipe_cmd(struct goldfish_pipe *pipe, enum PipeCmdCode cmd) 232 { 233 int status; 234 235 if (mutex_lock_interruptible(&pipe->lock)) 236 return PIPE_ERROR_IO; 237 status = goldfish_pipe_cmd_locked(pipe, cmd); 238 mutex_unlock(&pipe->lock); 239 return status; 240 } 241 242 /* 243 * This function converts an error code returned by the emulator through 244 * the PIPE_REG_STATUS i/o register into a valid negative errno value. 245 */ 246 static int goldfish_pipe_error_convert(int status) 247 { 248 switch (status) { 249 case PIPE_ERROR_AGAIN: 250 return -EAGAIN; 251 case PIPE_ERROR_NOMEM: 252 return -ENOMEM; 253 case PIPE_ERROR_IO: 254 return -EIO; 255 default: 256 return -EINVAL; 257 } 258 } 259 260 static int goldfish_pin_pages(unsigned long first_page, 261 unsigned long last_page, 262 unsigned int last_page_size, 263 int is_write, 264 struct page *pages[MAX_BUFFERS_PER_COMMAND], 265 unsigned int *iter_last_page_size) 266 { 267 int ret; 268 int requested_pages = ((last_page - first_page) >> PAGE_SHIFT) + 1; 269 270 if (requested_pages > MAX_BUFFERS_PER_COMMAND) { 271 requested_pages = MAX_BUFFERS_PER_COMMAND; 272 *iter_last_page_size = PAGE_SIZE; 273 } else { 274 *iter_last_page_size = last_page_size; 275 } 276 277 ret = pin_user_pages_fast(first_page, requested_pages, 278 !is_write ? FOLL_WRITE : 0, 279 pages); 280 if (ret <= 0) 281 return -EFAULT; 282 if (ret < requested_pages) 283 *iter_last_page_size = PAGE_SIZE; 284 285 return ret; 286 } 287 288 /* Populate the call parameters, merging adjacent pages together */ 289 static void populate_rw_params(struct page **pages, 290 int pages_count, 291 unsigned long address, 292 unsigned long address_end, 293 unsigned long first_page, 294 unsigned long last_page, 295 unsigned int iter_last_page_size, 296 int is_write, 297 struct goldfish_pipe_command *command) 298 { 299 /* 300 * Process the first page separately - it's the only page that 301 * needs special handling for its start address. 302 */ 303 unsigned long xaddr = page_to_phys(pages[0]); 304 unsigned long xaddr_prev = xaddr; 305 int buffer_idx = 0; 306 int i = 1; 307 int size_on_page = first_page == last_page 308 ? (int)(address_end - address) 309 : (PAGE_SIZE - (address & ~PAGE_MASK)); 310 command->rw_params.ptrs[0] = (u64)(xaddr | (address & ~PAGE_MASK)); 311 command->rw_params.sizes[0] = size_on_page; 312 for (; i < pages_count; ++i) { 313 xaddr = page_to_phys(pages[i]); 314 size_on_page = (i == pages_count - 1) ? 315 iter_last_page_size : PAGE_SIZE; 316 if (xaddr == xaddr_prev + PAGE_SIZE) { 317 command->rw_params.sizes[buffer_idx] += size_on_page; 318 } else { 319 ++buffer_idx; 320 command->rw_params.ptrs[buffer_idx] = (u64)xaddr; 321 command->rw_params.sizes[buffer_idx] = size_on_page; 322 } 323 xaddr_prev = xaddr; 324 } 325 command->rw_params.buffers_count = buffer_idx + 1; 326 } 327 328 static int transfer_max_buffers(struct goldfish_pipe *pipe, 329 unsigned long address, 330 unsigned long address_end, 331 int is_write, 332 unsigned long last_page, 333 unsigned int last_page_size, 334 s32 *consumed_size, 335 int *status) 336 { 337 unsigned long first_page = address & PAGE_MASK; 338 unsigned int iter_last_page_size; 339 int pages_count; 340 341 /* Serialize access to the pipe command buffers */ 342 if (mutex_lock_interruptible(&pipe->lock)) 343 return -ERESTARTSYS; 344 345 pages_count = goldfish_pin_pages(first_page, last_page, 346 last_page_size, is_write, 347 pipe->pages, &iter_last_page_size); 348 if (pages_count < 0) { 349 mutex_unlock(&pipe->lock); 350 return pages_count; 351 } 352 353 populate_rw_params(pipe->pages, pages_count, address, address_end, 354 first_page, last_page, iter_last_page_size, is_write, 355 pipe->command_buffer); 356 357 /* Transfer the data */ 358 *status = goldfish_pipe_cmd_locked(pipe, 359 is_write ? PIPE_CMD_WRITE : PIPE_CMD_READ); 360 361 *consumed_size = pipe->command_buffer->rw_params.consumed_size; 362 363 unpin_user_pages_dirty_lock(pipe->pages, pages_count, 364 !is_write && *consumed_size > 0); 365 366 mutex_unlock(&pipe->lock); 367 return 0; 368 } 369 370 static int wait_for_host_signal(struct goldfish_pipe *pipe, int is_write) 371 { 372 u32 wake_bit = is_write ? BIT_WAKE_ON_WRITE : BIT_WAKE_ON_READ; 373 374 set_bit(wake_bit, &pipe->flags); 375 376 /* Tell the emulator we're going to wait for a wake event */ 377 goldfish_pipe_cmd(pipe, 378 is_write ? PIPE_CMD_WAKE_ON_WRITE : PIPE_CMD_WAKE_ON_READ); 379 380 while (test_bit(wake_bit, &pipe->flags)) { 381 if (wait_event_interruptible(pipe->wake_queue, 382 !test_bit(wake_bit, &pipe->flags))) 383 return -ERESTARTSYS; 384 385 if (test_bit(BIT_CLOSED_ON_HOST, &pipe->flags)) 386 return -EIO; 387 } 388 389 return 0; 390 } 391 392 static ssize_t goldfish_pipe_read_write(struct file *filp, 393 char __user *buffer, 394 size_t bufflen, 395 int is_write) 396 { 397 struct goldfish_pipe *pipe = filp->private_data; 398 int count = 0, ret = -EINVAL; 399 unsigned long address, address_end, last_page; 400 unsigned int last_page_size; 401 402 /* If the emulator already closed the pipe, no need to go further */ 403 if (unlikely(test_bit(BIT_CLOSED_ON_HOST, &pipe->flags))) 404 return -EIO; 405 /* Null reads or writes succeeds */ 406 if (unlikely(bufflen == 0)) 407 return 0; 408 /* Check the buffer range for access */ 409 if (unlikely(!access_ok(buffer, bufflen))) 410 return -EFAULT; 411 412 address = (unsigned long)buffer; 413 address_end = address + bufflen; 414 last_page = (address_end - 1) & PAGE_MASK; 415 last_page_size = ((address_end - 1) & ~PAGE_MASK) + 1; 416 417 while (address < address_end) { 418 s32 consumed_size; 419 int status; 420 421 ret = transfer_max_buffers(pipe, address, address_end, is_write, 422 last_page, last_page_size, 423 &consumed_size, &status); 424 if (ret < 0) 425 break; 426 427 if (consumed_size > 0) { 428 /* No matter what's the status, we've transferred 429 * something. 430 */ 431 count += consumed_size; 432 address += consumed_size; 433 } 434 if (status > 0) 435 continue; 436 if (status == 0) { 437 /* EOF */ 438 ret = 0; 439 break; 440 } 441 if (count > 0) { 442 /* 443 * An error occurred, but we already transferred 444 * something on one of the previous iterations. 445 * Just return what we already copied and log this 446 * err. 447 */ 448 if (status != PIPE_ERROR_AGAIN) 449 dev_err_ratelimited(pipe->dev->pdev_dev, 450 "backend error %d on %s\n", 451 status, is_write ? "write" : "read"); 452 break; 453 } 454 455 /* 456 * If the error is not PIPE_ERROR_AGAIN, or if we are in 457 * non-blocking mode, just return the error code. 458 */ 459 if (status != PIPE_ERROR_AGAIN || 460 (filp->f_flags & O_NONBLOCK) != 0) { 461 ret = goldfish_pipe_error_convert(status); 462 break; 463 } 464 465 status = wait_for_host_signal(pipe, is_write); 466 if (status < 0) 467 return status; 468 } 469 470 if (count > 0) 471 return count; 472 return ret; 473 } 474 475 static ssize_t goldfish_pipe_read(struct file *filp, char __user *buffer, 476 size_t bufflen, loff_t *ppos) 477 { 478 return goldfish_pipe_read_write(filp, buffer, bufflen, 479 /* is_write */ 0); 480 } 481 482 static ssize_t goldfish_pipe_write(struct file *filp, 483 const char __user *buffer, size_t bufflen, 484 loff_t *ppos) 485 { 486 /* cast away the const */ 487 char __user *no_const_buffer = (char __user *)buffer; 488 489 return goldfish_pipe_read_write(filp, no_const_buffer, bufflen, 490 /* is_write */ 1); 491 } 492 493 static __poll_t goldfish_pipe_poll(struct file *filp, poll_table *wait) 494 { 495 struct goldfish_pipe *pipe = filp->private_data; 496 __poll_t mask = 0; 497 int status; 498 499 poll_wait(filp, &pipe->wake_queue, wait); 500 501 status = goldfish_pipe_cmd(pipe, PIPE_CMD_POLL); 502 if (status < 0) 503 return -ERESTARTSYS; 504 505 if (status & PIPE_POLL_IN) 506 mask |= EPOLLIN | EPOLLRDNORM; 507 if (status & PIPE_POLL_OUT) 508 mask |= EPOLLOUT | EPOLLWRNORM; 509 if (status & PIPE_POLL_HUP) 510 mask |= EPOLLHUP; 511 if (test_bit(BIT_CLOSED_ON_HOST, &pipe->flags)) 512 mask |= EPOLLERR; 513 514 return mask; 515 } 516 517 static void signalled_pipes_add_locked(struct goldfish_pipe_dev *dev, 518 u32 id, u32 flags) 519 { 520 struct goldfish_pipe *pipe; 521 522 if (WARN_ON(id >= dev->pipes_capacity)) 523 return; 524 525 pipe = dev->pipes[id]; 526 if (!pipe) 527 return; 528 pipe->signalled_flags |= flags; 529 530 if (pipe->prev_signalled || pipe->next_signalled || 531 dev->first_signalled_pipe == pipe) 532 return; /* already in the list */ 533 pipe->next_signalled = dev->first_signalled_pipe; 534 if (dev->first_signalled_pipe) 535 dev->first_signalled_pipe->prev_signalled = pipe; 536 dev->first_signalled_pipe = pipe; 537 } 538 539 static void signalled_pipes_remove_locked(struct goldfish_pipe_dev *dev, 540 struct goldfish_pipe *pipe) 541 { 542 if (pipe->prev_signalled) 543 pipe->prev_signalled->next_signalled = pipe->next_signalled; 544 if (pipe->next_signalled) 545 pipe->next_signalled->prev_signalled = pipe->prev_signalled; 546 if (pipe == dev->first_signalled_pipe) 547 dev->first_signalled_pipe = pipe->next_signalled; 548 pipe->prev_signalled = NULL; 549 pipe->next_signalled = NULL; 550 } 551 552 static struct goldfish_pipe *signalled_pipes_pop_front( 553 struct goldfish_pipe_dev *dev, int *wakes) 554 { 555 struct goldfish_pipe *pipe; 556 unsigned long flags; 557 558 spin_lock_irqsave(&dev->lock, flags); 559 560 pipe = dev->first_signalled_pipe; 561 if (pipe) { 562 *wakes = pipe->signalled_flags; 563 pipe->signalled_flags = 0; 564 /* 565 * This is an optimized version of 566 * signalled_pipes_remove_locked() 567 * - We want to make it as fast as possible to 568 * wake the sleeping pipe operations faster. 569 */ 570 dev->first_signalled_pipe = pipe->next_signalled; 571 if (dev->first_signalled_pipe) 572 dev->first_signalled_pipe->prev_signalled = NULL; 573 pipe->next_signalled = NULL; 574 } 575 576 spin_unlock_irqrestore(&dev->lock, flags); 577 return pipe; 578 } 579 580 static void goldfish_interrupt_task(unsigned long dev_addr) 581 { 582 /* Iterate over the signalled pipes and wake them one by one */ 583 struct goldfish_pipe_dev *dev = (struct goldfish_pipe_dev *)dev_addr; 584 struct goldfish_pipe *pipe; 585 int wakes; 586 587 while ((pipe = signalled_pipes_pop_front(dev, &wakes)) != NULL) { 588 if (wakes & PIPE_WAKE_CLOSED) { 589 pipe->flags = 1 << BIT_CLOSED_ON_HOST; 590 } else { 591 if (wakes & PIPE_WAKE_READ) 592 clear_bit(BIT_WAKE_ON_READ, &pipe->flags); 593 if (wakes & PIPE_WAKE_WRITE) 594 clear_bit(BIT_WAKE_ON_WRITE, &pipe->flags); 595 } 596 /* 597 * wake_up_interruptible() implies a write barrier, so don't 598 * explicitly add another one here. 599 */ 600 wake_up_interruptible(&pipe->wake_queue); 601 } 602 } 603 604 static void goldfish_pipe_device_deinit(struct platform_device *pdev, 605 struct goldfish_pipe_dev *dev); 606 607 /* 608 * The general idea of the interrupt handling: 609 * 610 * 1. device raises an interrupt if there's at least one signalled pipe 611 * 2. IRQ handler reads the signalled pipes and their count from the device 612 * 3. device writes them into a shared buffer and returns the count 613 * it only resets the IRQ if it has returned all signalled pipes, 614 * otherwise it leaves it raised, so IRQ handler will be called 615 * again for the next chunk 616 * 4. IRQ handler adds all returned pipes to the device's signalled pipes list 617 * 5. IRQ handler launches a tasklet to process the signalled pipes from the 618 * list in a separate context 619 */ 620 static irqreturn_t goldfish_pipe_interrupt(int irq, void *dev_id) 621 { 622 u32 count; 623 u32 i; 624 unsigned long flags; 625 struct goldfish_pipe_dev *dev = dev_id; 626 627 if (dev->magic != &goldfish_pipe_device_deinit) 628 return IRQ_NONE; 629 630 /* Request the signalled pipes from the device */ 631 spin_lock_irqsave(&dev->lock, flags); 632 633 count = readl(dev->base + PIPE_REG_GET_SIGNALLED); 634 if (count == 0) { 635 spin_unlock_irqrestore(&dev->lock, flags); 636 return IRQ_NONE; 637 } 638 if (count > MAX_SIGNALLED_PIPES) 639 count = MAX_SIGNALLED_PIPES; 640 641 for (i = 0; i < count; ++i) 642 signalled_pipes_add_locked(dev, 643 dev->buffers->signalled_pipe_buffers[i].id, 644 dev->buffers->signalled_pipe_buffers[i].flags); 645 646 spin_unlock_irqrestore(&dev->lock, flags); 647 648 tasklet_schedule(&dev->irq_tasklet); 649 return IRQ_HANDLED; 650 } 651 652 static int get_free_pipe_id_locked(struct goldfish_pipe_dev *dev) 653 { 654 int id; 655 656 for (id = 0; id < dev->pipes_capacity; ++id) 657 if (!dev->pipes[id]) 658 return id; 659 660 { 661 /* Reallocate the array. 662 * Since get_free_pipe_id_locked runs with interrupts disabled, 663 * we don't want to make calls that could lead to sleep. 664 */ 665 u32 new_capacity = 2 * dev->pipes_capacity; 666 struct goldfish_pipe **pipes = 667 kcalloc(new_capacity, sizeof(*pipes), GFP_ATOMIC); 668 if (!pipes) 669 return -ENOMEM; 670 memcpy(pipes, dev->pipes, sizeof(*pipes) * dev->pipes_capacity); 671 kfree(dev->pipes); 672 dev->pipes = pipes; 673 id = dev->pipes_capacity; 674 dev->pipes_capacity = new_capacity; 675 } 676 return id; 677 } 678 679 /* A helper function to get the instance of goldfish_pipe_dev from file */ 680 static struct goldfish_pipe_dev *to_goldfish_pipe_dev(struct file *file) 681 { 682 struct miscdevice *miscdev = file->private_data; 683 684 return container_of(miscdev, struct goldfish_pipe_dev, miscdev); 685 } 686 687 /** 688 * goldfish_pipe_open - open a channel to the AVD 689 * @inode: inode of device 690 * @file: file struct of opener 691 * 692 * Create a new pipe link between the emulator and the use application. 693 * Each new request produces a new pipe. 694 * 695 * Note: we use the pipe ID as a mux. All goldfish emulations are 32bit 696 * right now so this is fine. A move to 64bit will need this addressing 697 */ 698 static int goldfish_pipe_open(struct inode *inode, struct file *file) 699 { 700 struct goldfish_pipe_dev *dev = to_goldfish_pipe_dev(file); 701 unsigned long flags; 702 int id; 703 int status; 704 705 /* Allocate new pipe kernel object */ 706 struct goldfish_pipe *pipe = kzalloc(sizeof(*pipe), GFP_KERNEL); 707 708 if (!pipe) 709 return -ENOMEM; 710 711 pipe->dev = dev; 712 mutex_init(&pipe->lock); 713 init_waitqueue_head(&pipe->wake_queue); 714 715 /* 716 * Command buffer needs to be allocated on its own page to make sure 717 * it is physically contiguous in host's address space. 718 */ 719 BUILD_BUG_ON(sizeof(struct goldfish_pipe_command) > PAGE_SIZE); 720 pipe->command_buffer = 721 (struct goldfish_pipe_command *)__get_free_page(GFP_KERNEL); 722 if (!pipe->command_buffer) { 723 status = -ENOMEM; 724 goto err_pipe; 725 } 726 727 spin_lock_irqsave(&dev->lock, flags); 728 729 id = get_free_pipe_id_locked(dev); 730 if (id < 0) { 731 status = id; 732 goto err_id_locked; 733 } 734 735 dev->pipes[id] = pipe; 736 pipe->id = id; 737 pipe->command_buffer->id = id; 738 739 /* Now tell the emulator we're opening a new pipe. */ 740 dev->buffers->open_command_params.rw_params_max_count = 741 MAX_BUFFERS_PER_COMMAND; 742 dev->buffers->open_command_params.command_buffer_ptr = 743 (u64)(unsigned long)__pa(pipe->command_buffer); 744 status = goldfish_pipe_cmd_locked(pipe, PIPE_CMD_OPEN); 745 spin_unlock_irqrestore(&dev->lock, flags); 746 if (status < 0) 747 goto err_cmd; 748 /* All is done, save the pipe into the file's private data field */ 749 file->private_data = pipe; 750 return 0; 751 752 err_cmd: 753 spin_lock_irqsave(&dev->lock, flags); 754 dev->pipes[id] = NULL; 755 err_id_locked: 756 spin_unlock_irqrestore(&dev->lock, flags); 757 free_page((unsigned long)pipe->command_buffer); 758 err_pipe: 759 kfree(pipe); 760 return status; 761 } 762 763 static int goldfish_pipe_release(struct inode *inode, struct file *filp) 764 { 765 unsigned long flags; 766 struct goldfish_pipe *pipe = filp->private_data; 767 struct goldfish_pipe_dev *dev = pipe->dev; 768 769 /* The guest is closing the channel, so tell the emulator right now */ 770 goldfish_pipe_cmd(pipe, PIPE_CMD_CLOSE); 771 772 spin_lock_irqsave(&dev->lock, flags); 773 dev->pipes[pipe->id] = NULL; 774 signalled_pipes_remove_locked(dev, pipe); 775 spin_unlock_irqrestore(&dev->lock, flags); 776 777 filp->private_data = NULL; 778 free_page((unsigned long)pipe->command_buffer); 779 kfree(pipe); 780 return 0; 781 } 782 783 static const struct file_operations goldfish_pipe_fops = { 784 .owner = THIS_MODULE, 785 .read = goldfish_pipe_read, 786 .write = goldfish_pipe_write, 787 .poll = goldfish_pipe_poll, 788 .open = goldfish_pipe_open, 789 .release = goldfish_pipe_release, 790 }; 791 792 static void init_miscdevice(struct miscdevice *miscdev) 793 { 794 memset(miscdev, 0, sizeof(*miscdev)); 795 796 miscdev->minor = MISC_DYNAMIC_MINOR; 797 miscdev->name = "goldfish_pipe"; 798 miscdev->fops = &goldfish_pipe_fops; 799 } 800 801 static void write_pa_addr(void *addr, void __iomem *portl, void __iomem *porth) 802 { 803 const unsigned long paddr = __pa(addr); 804 805 writel(upper_32_bits(paddr), porth); 806 writel(lower_32_bits(paddr), portl); 807 } 808 809 static int goldfish_pipe_device_init(struct platform_device *pdev, 810 struct goldfish_pipe_dev *dev) 811 { 812 int err; 813 814 tasklet_init(&dev->irq_tasklet, &goldfish_interrupt_task, 815 (unsigned long)dev); 816 817 err = devm_request_irq(&pdev->dev, dev->irq, 818 goldfish_pipe_interrupt, 819 IRQF_SHARED, "goldfish_pipe", dev); 820 if (err) { 821 dev_err(&pdev->dev, "unable to allocate IRQ for v2\n"); 822 return err; 823 } 824 825 init_miscdevice(&dev->miscdev); 826 err = misc_register(&dev->miscdev); 827 if (err) { 828 dev_err(&pdev->dev, "unable to register v2 device\n"); 829 return err; 830 } 831 832 dev->pdev_dev = &pdev->dev; 833 dev->first_signalled_pipe = NULL; 834 dev->pipes_capacity = INITIAL_PIPES_CAPACITY; 835 dev->pipes = kcalloc(dev->pipes_capacity, sizeof(*dev->pipes), 836 GFP_KERNEL); 837 if (!dev->pipes) { 838 misc_deregister(&dev->miscdev); 839 return -ENOMEM; 840 } 841 842 /* 843 * We're going to pass two buffers, open_command_params and 844 * signalled_pipe_buffers, to the host. This means each of those buffers 845 * needs to be contained in a single physical page. The easiest choice 846 * is to just allocate a page and place the buffers in it. 847 */ 848 BUILD_BUG_ON(sizeof(struct goldfish_pipe_dev_buffers) > PAGE_SIZE); 849 dev->buffers = (struct goldfish_pipe_dev_buffers *) 850 __get_free_page(GFP_KERNEL); 851 if (!dev->buffers) { 852 kfree(dev->pipes); 853 misc_deregister(&dev->miscdev); 854 return -ENOMEM; 855 } 856 857 /* Send the buffer addresses to the host */ 858 write_pa_addr(&dev->buffers->signalled_pipe_buffers, 859 dev->base + PIPE_REG_SIGNAL_BUFFER, 860 dev->base + PIPE_REG_SIGNAL_BUFFER_HIGH); 861 862 writel(MAX_SIGNALLED_PIPES, 863 dev->base + PIPE_REG_SIGNAL_BUFFER_COUNT); 864 865 write_pa_addr(&dev->buffers->open_command_params, 866 dev->base + PIPE_REG_OPEN_BUFFER, 867 dev->base + PIPE_REG_OPEN_BUFFER_HIGH); 868 869 platform_set_drvdata(pdev, dev); 870 return 0; 871 } 872 873 static void goldfish_pipe_device_deinit(struct platform_device *pdev, 874 struct goldfish_pipe_dev *dev) 875 { 876 misc_deregister(&dev->miscdev); 877 tasklet_kill(&dev->irq_tasklet); 878 kfree(dev->pipes); 879 free_page((unsigned long)dev->buffers); 880 } 881 882 static int goldfish_pipe_probe(struct platform_device *pdev) 883 { 884 struct resource *r; 885 struct goldfish_pipe_dev *dev; 886 887 dev = devm_kzalloc(&pdev->dev, sizeof(*dev), GFP_KERNEL); 888 if (!dev) 889 return -ENOMEM; 890 891 dev->magic = &goldfish_pipe_device_deinit; 892 spin_lock_init(&dev->lock); 893 894 r = platform_get_resource(pdev, IORESOURCE_MEM, 0); 895 if (!r || resource_size(r) < PAGE_SIZE) { 896 dev_err(&pdev->dev, "can't allocate i/o page\n"); 897 return -EINVAL; 898 } 899 dev->base = devm_ioremap(&pdev->dev, r->start, PAGE_SIZE); 900 if (!dev->base) { 901 dev_err(&pdev->dev, "ioremap failed\n"); 902 return -EINVAL; 903 } 904 905 r = platform_get_resource(pdev, IORESOURCE_IRQ, 0); 906 if (!r) 907 return -EINVAL; 908 909 dev->irq = r->start; 910 911 /* 912 * Exchange the versions with the host device 913 * 914 * Note: v1 driver used to not report its version, so we write it before 915 * reading device version back: this allows the host implementation to 916 * detect the old driver (if there was no version write before read). 917 */ 918 writel(PIPE_DRIVER_VERSION, dev->base + PIPE_REG_VERSION); 919 dev->version = readl(dev->base + PIPE_REG_VERSION); 920 if (WARN_ON(dev->version < PIPE_CURRENT_DEVICE_VERSION)) 921 return -EINVAL; 922 923 return goldfish_pipe_device_init(pdev, dev); 924 } 925 926 static int goldfish_pipe_remove(struct platform_device *pdev) 927 { 928 struct goldfish_pipe_dev *dev = platform_get_drvdata(pdev); 929 930 goldfish_pipe_device_deinit(pdev, dev); 931 return 0; 932 } 933 934 static const struct acpi_device_id goldfish_pipe_acpi_match[] = { 935 { "GFSH0003", 0 }, 936 { }, 937 }; 938 MODULE_DEVICE_TABLE(acpi, goldfish_pipe_acpi_match); 939 940 static const struct of_device_id goldfish_pipe_of_match[] = { 941 { .compatible = "google,android-pipe", }, 942 {}, 943 }; 944 MODULE_DEVICE_TABLE(of, goldfish_pipe_of_match); 945 946 static struct platform_driver goldfish_pipe_driver = { 947 .probe = goldfish_pipe_probe, 948 .remove = goldfish_pipe_remove, 949 .driver = { 950 .name = "goldfish_pipe", 951 .of_match_table = goldfish_pipe_of_match, 952 .acpi_match_table = ACPI_PTR(goldfish_pipe_acpi_match), 953 } 954 }; 955 956 module_platform_driver(goldfish_pipe_driver); 957 MODULE_AUTHOR("David Turner <digit@google.com>"); 958 MODULE_LICENSE("GPL v2"); 959