1 // SPDX-License-Identifier: GPL-2.0+ 2 /* 3 * f_printer.c - USB printer function driver 4 * 5 * Copied from drivers/usb/gadget/legacy/printer.c, 6 * which was: 7 * 8 * printer.c -- Printer gadget driver 9 * 10 * Copyright (C) 2003-2005 David Brownell 11 * Copyright (C) 2006 Craig W. Nadler 12 */ 13 14 #include <linux/module.h> 15 #include <linux/kernel.h> 16 #include <linux/delay.h> 17 #include <linux/ioport.h> 18 #include <linux/sched.h> 19 #include <linux/slab.h> 20 #include <linux/mutex.h> 21 #include <linux/errno.h> 22 #include <linux/init.h> 23 #include <linux/idr.h> 24 #include <linux/timer.h> 25 #include <linux/list.h> 26 #include <linux/interrupt.h> 27 #include <linux/device.h> 28 #include <linux/moduleparam.h> 29 #include <linux/fs.h> 30 #include <linux/poll.h> 31 #include <linux/types.h> 32 #include <linux/ctype.h> 33 #include <linux/cdev.h> 34 #include <linux/kref.h> 35 36 #include <asm/byteorder.h> 37 #include <linux/io.h> 38 #include <linux/irq.h> 39 #include <linux/uaccess.h> 40 #include <linux/unaligned.h> 41 42 #include <linux/usb/ch9.h> 43 #include <linux/usb/composite.h> 44 #include <linux/usb/gadget.h> 45 #include <linux/usb/g_printer.h> 46 47 #include "u_printer.h" 48 49 #define PRINTER_MINORS 4 50 #define GET_DEVICE_ID 0 51 #define GET_PORT_STATUS 1 52 #define SOFT_RESET 2 53 54 #define DEFAULT_Q_LEN 10 /* same as legacy g_printer gadget */ 55 56 static int major, minors; 57 static const struct class usb_gadget_class = { 58 .name = "usb_printer_gadget", 59 }; 60 61 static DEFINE_IDA(printer_ida); 62 static DEFINE_MUTEX(printer_ida_lock); /* protects access do printer_ida */ 63 64 /*-------------------------------------------------------------------------*/ 65 66 struct printer_dev { 67 spinlock_t lock; /* lock this structure */ 68 /* lock buffer lists during read/write calls */ 69 struct mutex lock_printer_io; 70 struct usb_gadget *gadget; 71 s8 interface; 72 struct usb_ep *in_ep, *out_ep; 73 struct kref kref; 74 struct list_head rx_reqs; /* List of free RX structs */ 75 struct list_head rx_reqs_active; /* List of Active RX xfers */ 76 struct list_head rx_buffers; /* List of completed xfers */ 77 /* wait until there is data to be read. */ 78 wait_queue_head_t rx_wait; 79 struct list_head tx_reqs; /* List of free TX structs */ 80 struct list_head tx_reqs_active; /* List of Active TX xfers */ 81 /* Wait until there are write buffers available to use. */ 82 wait_queue_head_t tx_wait; 83 /* Wait until all write buffers have been sent. */ 84 wait_queue_head_t tx_flush_wait; 85 struct usb_request *current_rx_req; 86 size_t current_rx_bytes; 87 u8 *current_rx_buf; 88 u8 printer_status; 89 u8 reset_printer; 90 int minor; 91 struct cdev printer_cdev; 92 u8 printer_cdev_open; 93 wait_queue_head_t wait; 94 unsigned q_len; 95 char **pnp_string; /* We don't own memory! */ 96 struct usb_function function; 97 }; 98 99 static inline struct printer_dev *func_to_printer(struct usb_function *f) 100 { 101 return container_of(f, struct printer_dev, function); 102 } 103 104 /*-------------------------------------------------------------------------*/ 105 106 /* 107 * DESCRIPTORS ... most are static, but strings and (full) configuration 108 * descriptors are built on demand. 109 */ 110 111 /* holds our biggest descriptor */ 112 #define USB_DESC_BUFSIZE 256 113 #define USB_BUFSIZE 8192 114 115 static struct usb_interface_descriptor intf_desc = { 116 .bLength = sizeof(intf_desc), 117 .bDescriptorType = USB_DT_INTERFACE, 118 .bNumEndpoints = 2, 119 .bInterfaceClass = USB_CLASS_PRINTER, 120 .bInterfaceSubClass = 1, /* Printer Sub-Class */ 121 .bInterfaceProtocol = 2, /* Bi-Directional */ 122 .iInterface = 0 123 }; 124 125 static struct usb_endpoint_descriptor fs_ep_in_desc = { 126 .bLength = USB_DT_ENDPOINT_SIZE, 127 .bDescriptorType = USB_DT_ENDPOINT, 128 .bEndpointAddress = USB_DIR_IN, 129 .bmAttributes = USB_ENDPOINT_XFER_BULK 130 }; 131 132 static struct usb_endpoint_descriptor fs_ep_out_desc = { 133 .bLength = USB_DT_ENDPOINT_SIZE, 134 .bDescriptorType = USB_DT_ENDPOINT, 135 .bEndpointAddress = USB_DIR_OUT, 136 .bmAttributes = USB_ENDPOINT_XFER_BULK 137 }; 138 139 static struct usb_descriptor_header *fs_printer_function[] = { 140 (struct usb_descriptor_header *) &intf_desc, 141 (struct usb_descriptor_header *) &fs_ep_in_desc, 142 (struct usb_descriptor_header *) &fs_ep_out_desc, 143 NULL 144 }; 145 146 /* 147 * usb 2.0 devices need to expose both high speed and full speed 148 * descriptors, unless they only run at full speed. 149 */ 150 151 static struct usb_endpoint_descriptor hs_ep_in_desc = { 152 .bLength = USB_DT_ENDPOINT_SIZE, 153 .bDescriptorType = USB_DT_ENDPOINT, 154 .bmAttributes = USB_ENDPOINT_XFER_BULK, 155 .wMaxPacketSize = cpu_to_le16(512) 156 }; 157 158 static struct usb_endpoint_descriptor hs_ep_out_desc = { 159 .bLength = USB_DT_ENDPOINT_SIZE, 160 .bDescriptorType = USB_DT_ENDPOINT, 161 .bmAttributes = USB_ENDPOINT_XFER_BULK, 162 .wMaxPacketSize = cpu_to_le16(512) 163 }; 164 165 static struct usb_descriptor_header *hs_printer_function[] = { 166 (struct usb_descriptor_header *) &intf_desc, 167 (struct usb_descriptor_header *) &hs_ep_in_desc, 168 (struct usb_descriptor_header *) &hs_ep_out_desc, 169 NULL 170 }; 171 172 /* 173 * Added endpoint descriptors for 3.0 devices 174 */ 175 176 static struct usb_endpoint_descriptor ss_ep_in_desc = { 177 .bLength = USB_DT_ENDPOINT_SIZE, 178 .bDescriptorType = USB_DT_ENDPOINT, 179 .bmAttributes = USB_ENDPOINT_XFER_BULK, 180 .wMaxPacketSize = cpu_to_le16(1024), 181 }; 182 183 static struct usb_ss_ep_comp_descriptor ss_ep_in_comp_desc = { 184 .bLength = sizeof(ss_ep_in_comp_desc), 185 .bDescriptorType = USB_DT_SS_ENDPOINT_COMP, 186 }; 187 188 static struct usb_endpoint_descriptor ss_ep_out_desc = { 189 .bLength = USB_DT_ENDPOINT_SIZE, 190 .bDescriptorType = USB_DT_ENDPOINT, 191 .bmAttributes = USB_ENDPOINT_XFER_BULK, 192 .wMaxPacketSize = cpu_to_le16(1024), 193 }; 194 195 static struct usb_ss_ep_comp_descriptor ss_ep_out_comp_desc = { 196 .bLength = sizeof(ss_ep_out_comp_desc), 197 .bDescriptorType = USB_DT_SS_ENDPOINT_COMP, 198 }; 199 200 static struct usb_descriptor_header *ss_printer_function[] = { 201 (struct usb_descriptor_header *) &intf_desc, 202 (struct usb_descriptor_header *) &ss_ep_in_desc, 203 (struct usb_descriptor_header *) &ss_ep_in_comp_desc, 204 (struct usb_descriptor_header *) &ss_ep_out_desc, 205 (struct usb_descriptor_header *) &ss_ep_out_comp_desc, 206 NULL 207 }; 208 209 /* maxpacket and other transfer characteristics vary by speed. */ 210 static inline struct usb_endpoint_descriptor *ep_desc(struct usb_gadget *gadget, 211 struct usb_endpoint_descriptor *fs, 212 struct usb_endpoint_descriptor *hs, 213 struct usb_endpoint_descriptor *ss) 214 { 215 switch (gadget->speed) { 216 case USB_SPEED_SUPER_PLUS: 217 case USB_SPEED_SUPER: 218 return ss; 219 case USB_SPEED_HIGH: 220 return hs; 221 default: 222 return fs; 223 } 224 } 225 226 /*-------------------------------------------------------------------------*/ 227 228 static void printer_dev_free(struct kref *kref) 229 { 230 struct printer_dev *dev = container_of(kref, struct printer_dev, kref); 231 232 kfree(dev); 233 } 234 235 static struct usb_request * 236 printer_req_alloc(struct usb_ep *ep, unsigned len, gfp_t gfp_flags) 237 { 238 struct usb_request *req; 239 240 req = usb_ep_alloc_request(ep, gfp_flags); 241 242 if (req != NULL) { 243 req->length = len; 244 req->buf = kmalloc(len, gfp_flags); 245 if (req->buf == NULL) { 246 usb_ep_free_request(ep, req); 247 return NULL; 248 } 249 } 250 251 return req; 252 } 253 254 static void 255 printer_req_free(struct usb_ep *ep, struct usb_request *req) 256 { 257 if (ep != NULL && req != NULL) { 258 kfree(req->buf); 259 usb_ep_free_request(ep, req); 260 } 261 } 262 263 /*-------------------------------------------------------------------------*/ 264 265 static void rx_complete(struct usb_ep *ep, struct usb_request *req) 266 { 267 struct printer_dev *dev = ep->driver_data; 268 int status = req->status; 269 unsigned long flags; 270 271 spin_lock_irqsave(&dev->lock, flags); 272 273 list_del_init(&req->list); /* Remode from Active List */ 274 275 switch (status) { 276 277 /* normal completion */ 278 case 0: 279 if (req->actual > 0) { 280 list_add_tail(&req->list, &dev->rx_buffers); 281 DBG(dev, "G_Printer : rx length %d\n", req->actual); 282 } else { 283 list_add(&req->list, &dev->rx_reqs); 284 } 285 break; 286 287 /* software-driven interface shutdown */ 288 case -ECONNRESET: /* unlink */ 289 case -ESHUTDOWN: /* disconnect etc */ 290 VDBG(dev, "rx shutdown, code %d\n", status); 291 list_add(&req->list, &dev->rx_reqs); 292 break; 293 294 /* for hardware automagic (such as pxa) */ 295 case -ECONNABORTED: /* endpoint reset */ 296 DBG(dev, "rx %s reset\n", ep->name); 297 list_add(&req->list, &dev->rx_reqs); 298 break; 299 300 /* data overrun */ 301 case -EOVERFLOW: 302 fallthrough; 303 304 default: 305 DBG(dev, "rx status %d\n", status); 306 list_add(&req->list, &dev->rx_reqs); 307 break; 308 } 309 310 wake_up_interruptible(&dev->rx_wait); 311 spin_unlock_irqrestore(&dev->lock, flags); 312 } 313 314 static void tx_complete(struct usb_ep *ep, struct usb_request *req) 315 { 316 struct printer_dev *dev = ep->driver_data; 317 318 switch (req->status) { 319 default: 320 VDBG(dev, "tx err %d\n", req->status); 321 fallthrough; 322 case -ECONNRESET: /* unlink */ 323 case -ESHUTDOWN: /* disconnect etc */ 324 break; 325 case 0: 326 break; 327 } 328 329 spin_lock(&dev->lock); 330 /* Take the request struct off the active list and put it on the 331 * free list. 332 */ 333 list_del_init(&req->list); 334 list_add(&req->list, &dev->tx_reqs); 335 wake_up_interruptible(&dev->tx_wait); 336 if (likely(list_empty(&dev->tx_reqs_active))) 337 wake_up_interruptible(&dev->tx_flush_wait); 338 339 spin_unlock(&dev->lock); 340 } 341 342 /*-------------------------------------------------------------------------*/ 343 344 static int 345 printer_open(struct inode *inode, struct file *fd) 346 { 347 struct printer_dev *dev; 348 unsigned long flags; 349 int ret = -EBUSY; 350 351 dev = container_of(inode->i_cdev, struct printer_dev, printer_cdev); 352 353 spin_lock_irqsave(&dev->lock, flags); 354 355 if (dev->interface < 0) { 356 spin_unlock_irqrestore(&dev->lock, flags); 357 return -ENODEV; 358 } 359 360 if (!dev->printer_cdev_open) { 361 dev->printer_cdev_open = 1; 362 fd->private_data = dev; 363 ret = 0; 364 /* Change the printer status to show that it's on-line. */ 365 dev->printer_status |= PRINTER_SELECTED; 366 kref_get(&dev->kref); 367 } 368 369 spin_unlock_irqrestore(&dev->lock, flags); 370 371 return ret; 372 } 373 374 static int 375 printer_close(struct inode *inode, struct file *fd) 376 { 377 struct printer_dev *dev = fd->private_data; 378 unsigned long flags; 379 380 spin_lock_irqsave(&dev->lock, flags); 381 dev->printer_cdev_open = 0; 382 fd->private_data = NULL; 383 /* Change printer status to show that the printer is off-line. */ 384 dev->printer_status &= ~PRINTER_SELECTED; 385 spin_unlock_irqrestore(&dev->lock, flags); 386 387 kref_put(&dev->kref, printer_dev_free); 388 389 return 0; 390 } 391 392 /* This function must be called with interrupts turned off. */ 393 static void 394 setup_rx_reqs(struct printer_dev *dev) 395 { 396 struct usb_request *req; 397 398 while (likely(!list_empty(&dev->rx_reqs))) { 399 int error; 400 401 req = container_of(dev->rx_reqs.next, 402 struct usb_request, list); 403 list_del_init(&req->list); 404 405 /* The USB Host sends us whatever amount of data it wants to 406 * so we always set the length field to the full USB_BUFSIZE. 407 * If the amount of data is more than the read() caller asked 408 * for it will be stored in the request buffer until it is 409 * asked for by read(). 410 */ 411 req->length = USB_BUFSIZE; 412 req->complete = rx_complete; 413 414 /* here, we unlock, and only unlock, to avoid deadlock. */ 415 spin_unlock(&dev->lock); 416 error = usb_ep_queue(dev->out_ep, req, GFP_ATOMIC); 417 spin_lock(&dev->lock); 418 if (error) { 419 DBG(dev, "rx submit --> %d\n", error); 420 list_add(&req->list, &dev->rx_reqs); 421 break; 422 } 423 /* if the req is empty, then add it into dev->rx_reqs_active. */ 424 else if (list_empty(&req->list)) 425 list_add(&req->list, &dev->rx_reqs_active); 426 } 427 } 428 429 static ssize_t 430 printer_read(struct file *fd, char __user *buf, size_t len, loff_t *ptr) 431 { 432 struct printer_dev *dev = fd->private_data; 433 unsigned long flags; 434 size_t size; 435 size_t bytes_copied; 436 struct usb_request *req; 437 /* This is a pointer to the current USB rx request. */ 438 struct usb_request *current_rx_req; 439 /* This is the number of bytes in the current rx buffer. */ 440 size_t current_rx_bytes; 441 /* This is a pointer to the current rx buffer. */ 442 u8 *current_rx_buf; 443 444 if (len == 0) 445 return -EINVAL; 446 447 DBG(dev, "printer_read trying to read %d bytes\n", (int)len); 448 449 mutex_lock(&dev->lock_printer_io); 450 spin_lock_irqsave(&dev->lock, flags); 451 452 if (dev->interface < 0) 453 goto out_disabled; 454 455 /* We will use this flag later to check if a printer reset happened 456 * after we turn interrupts back on. 457 */ 458 dev->reset_printer = 0; 459 460 setup_rx_reqs(dev); 461 /* this dropped the lock - need to retest */ 462 if (dev->interface < 0) 463 goto out_disabled; 464 465 bytes_copied = 0; 466 current_rx_req = dev->current_rx_req; 467 current_rx_bytes = dev->current_rx_bytes; 468 current_rx_buf = dev->current_rx_buf; 469 dev->current_rx_req = NULL; 470 dev->current_rx_bytes = 0; 471 dev->current_rx_buf = NULL; 472 473 /* Check if there is any data in the read buffers. Please note that 474 * current_rx_bytes is the number of bytes in the current rx buffer. 475 * If it is zero then check if there are any other rx_buffers that 476 * are on the completed list. We are only out of data if all rx 477 * buffers are empty. 478 */ 479 if ((current_rx_bytes == 0) && 480 (likely(list_empty(&dev->rx_buffers)))) { 481 /* Turn interrupts back on before sleeping. */ 482 spin_unlock_irqrestore(&dev->lock, flags); 483 484 /* 485 * If no data is available check if this is a NON-Blocking 486 * call or not. 487 */ 488 if (fd->f_flags & (O_NONBLOCK|O_NDELAY)) { 489 mutex_unlock(&dev->lock_printer_io); 490 return -EAGAIN; 491 } 492 493 /* Sleep until data is available */ 494 wait_event_interruptible(dev->rx_wait, 495 (likely(!list_empty(&dev->rx_buffers)))); 496 spin_lock_irqsave(&dev->lock, flags); 497 if (dev->interface < 0) 498 goto out_disabled; 499 } 500 501 /* We have data to return then copy it to the caller's buffer.*/ 502 while ((current_rx_bytes || likely(!list_empty(&dev->rx_buffers))) 503 && len) { 504 if (current_rx_bytes == 0) { 505 req = container_of(dev->rx_buffers.next, 506 struct usb_request, list); 507 list_del_init(&req->list); 508 509 if (req->actual && req->buf) { 510 current_rx_req = req; 511 current_rx_bytes = req->actual; 512 current_rx_buf = req->buf; 513 } else { 514 list_add(&req->list, &dev->rx_reqs); 515 continue; 516 } 517 } 518 519 /* Don't leave irqs off while doing memory copies */ 520 spin_unlock_irqrestore(&dev->lock, flags); 521 522 if (len > current_rx_bytes) 523 size = current_rx_bytes; 524 else 525 size = len; 526 527 size -= copy_to_user(buf, current_rx_buf, size); 528 bytes_copied += size; 529 len -= size; 530 buf += size; 531 532 spin_lock_irqsave(&dev->lock, flags); 533 534 /* We've disconnected or reset so return. */ 535 if (dev->reset_printer) { 536 list_add(¤t_rx_req->list, &dev->rx_reqs); 537 spin_unlock_irqrestore(&dev->lock, flags); 538 mutex_unlock(&dev->lock_printer_io); 539 return -EAGAIN; 540 } 541 542 if (dev->interface < 0) 543 goto out_disabled; 544 545 /* If we not returning all the data left in this RX request 546 * buffer then adjust the amount of data left in the buffer. 547 * Othewise if we are done with this RX request buffer then 548 * requeue it to get any incoming data from the USB host. 549 */ 550 if (size < current_rx_bytes) { 551 current_rx_bytes -= size; 552 current_rx_buf += size; 553 } else { 554 list_add(¤t_rx_req->list, &dev->rx_reqs); 555 current_rx_bytes = 0; 556 current_rx_buf = NULL; 557 current_rx_req = NULL; 558 } 559 } 560 561 dev->current_rx_req = current_rx_req; 562 dev->current_rx_bytes = current_rx_bytes; 563 dev->current_rx_buf = current_rx_buf; 564 565 spin_unlock_irqrestore(&dev->lock, flags); 566 mutex_unlock(&dev->lock_printer_io); 567 568 DBG(dev, "printer_read returned %d bytes\n", (int)bytes_copied); 569 570 if (bytes_copied) 571 return bytes_copied; 572 else 573 return -EAGAIN; 574 575 out_disabled: 576 spin_unlock_irqrestore(&dev->lock, flags); 577 mutex_unlock(&dev->lock_printer_io); 578 return -ENODEV; 579 } 580 581 static ssize_t 582 printer_write(struct file *fd, const char __user *buf, size_t len, loff_t *ptr) 583 { 584 struct printer_dev *dev = fd->private_data; 585 unsigned long flags; 586 size_t size; /* Amount of data in a TX request. */ 587 size_t bytes_copied = 0; 588 struct usb_request *req; 589 int value; 590 591 DBG(dev, "printer_write trying to send %d bytes\n", (int)len); 592 593 if (len == 0) 594 return -EINVAL; 595 596 mutex_lock(&dev->lock_printer_io); 597 spin_lock_irqsave(&dev->lock, flags); 598 599 if (dev->interface < 0) 600 goto out_disabled; 601 602 /* Check if a printer reset happens while we have interrupts on */ 603 dev->reset_printer = 0; 604 605 /* Check if there is any available write buffers */ 606 if (likely(list_empty(&dev->tx_reqs))) { 607 /* Turn interrupts back on before sleeping. */ 608 spin_unlock_irqrestore(&dev->lock, flags); 609 610 /* 611 * If write buffers are available check if this is 612 * a NON-Blocking call or not. 613 */ 614 if (fd->f_flags & (O_NONBLOCK|O_NDELAY)) { 615 mutex_unlock(&dev->lock_printer_io); 616 return -EAGAIN; 617 } 618 619 /* Sleep until a write buffer is available */ 620 wait_event_interruptible(dev->tx_wait, 621 (likely(!list_empty(&dev->tx_reqs)))); 622 spin_lock_irqsave(&dev->lock, flags); 623 if (dev->interface < 0) 624 goto out_disabled; 625 } 626 627 while (likely(!list_empty(&dev->tx_reqs)) && len) { 628 629 if (len > USB_BUFSIZE) 630 size = USB_BUFSIZE; 631 else 632 size = len; 633 634 req = container_of(dev->tx_reqs.next, struct usb_request, 635 list); 636 list_del_init(&req->list); 637 638 req->complete = tx_complete; 639 req->length = size; 640 641 /* Check if we need to send a zero length packet. */ 642 if (len > size) 643 /* They will be more TX requests so no yet. */ 644 req->zero = 0; 645 else 646 /* If the data amount is not a multiple of the 647 * maxpacket size then send a zero length packet. 648 */ 649 req->zero = ((len % dev->in_ep->maxpacket) == 0); 650 651 /* Don't leave irqs off while doing memory copies */ 652 spin_unlock_irqrestore(&dev->lock, flags); 653 654 if (copy_from_user(req->buf, buf, size)) { 655 list_add(&req->list, &dev->tx_reqs); 656 mutex_unlock(&dev->lock_printer_io); 657 return bytes_copied; 658 } 659 660 bytes_copied += size; 661 len -= size; 662 buf += size; 663 664 spin_lock_irqsave(&dev->lock, flags); 665 666 /* We've disconnected or reset so free the req and buffer */ 667 if (dev->reset_printer) { 668 list_add(&req->list, &dev->tx_reqs); 669 spin_unlock_irqrestore(&dev->lock, flags); 670 mutex_unlock(&dev->lock_printer_io); 671 return -EAGAIN; 672 } 673 674 if (dev->interface < 0) 675 goto out_disabled; 676 677 list_add(&req->list, &dev->tx_reqs_active); 678 679 /* here, we unlock, and only unlock, to avoid deadlock. */ 680 spin_unlock(&dev->lock); 681 value = usb_ep_queue(dev->in_ep, req, GFP_ATOMIC); 682 spin_lock(&dev->lock); 683 if (value) { 684 list_move(&req->list, &dev->tx_reqs); 685 spin_unlock_irqrestore(&dev->lock, flags); 686 mutex_unlock(&dev->lock_printer_io); 687 return -EAGAIN; 688 } 689 if (dev->interface < 0) 690 goto out_disabled; 691 } 692 693 spin_unlock_irqrestore(&dev->lock, flags); 694 mutex_unlock(&dev->lock_printer_io); 695 696 DBG(dev, "printer_write sent %d bytes\n", (int)bytes_copied); 697 698 if (bytes_copied) 699 return bytes_copied; 700 else 701 return -EAGAIN; 702 703 out_disabled: 704 spin_unlock_irqrestore(&dev->lock, flags); 705 mutex_unlock(&dev->lock_printer_io); 706 return -ENODEV; 707 } 708 709 static int 710 printer_fsync(struct file *fd, loff_t start, loff_t end, int datasync) 711 { 712 struct printer_dev *dev = fd->private_data; 713 struct inode *inode = file_inode(fd); 714 unsigned long flags; 715 int tx_list_empty; 716 717 inode_lock(inode); 718 spin_lock_irqsave(&dev->lock, flags); 719 720 if (dev->interface < 0) { 721 spin_unlock_irqrestore(&dev->lock, flags); 722 inode_unlock(inode); 723 return -ENODEV; 724 } 725 726 tx_list_empty = (likely(list_empty(&dev->tx_reqs))); 727 spin_unlock_irqrestore(&dev->lock, flags); 728 729 if (!tx_list_empty) { 730 /* Sleep until all data has been sent */ 731 wait_event_interruptible(dev->tx_flush_wait, 732 (likely(list_empty(&dev->tx_reqs_active)))); 733 } 734 inode_unlock(inode); 735 736 return 0; 737 } 738 739 static __poll_t 740 printer_poll(struct file *fd, poll_table *wait) 741 { 742 struct printer_dev *dev = fd->private_data; 743 unsigned long flags; 744 __poll_t status = 0; 745 746 mutex_lock(&dev->lock_printer_io); 747 spin_lock_irqsave(&dev->lock, flags); 748 749 if (dev->interface < 0) { 750 spin_unlock_irqrestore(&dev->lock, flags); 751 mutex_unlock(&dev->lock_printer_io); 752 return EPOLLERR | EPOLLHUP; 753 } 754 755 setup_rx_reqs(dev); 756 spin_unlock_irqrestore(&dev->lock, flags); 757 mutex_unlock(&dev->lock_printer_io); 758 759 poll_wait(fd, &dev->rx_wait, wait); 760 poll_wait(fd, &dev->tx_wait, wait); 761 762 spin_lock_irqsave(&dev->lock, flags); 763 if (likely(!list_empty(&dev->tx_reqs))) 764 status |= EPOLLOUT | EPOLLWRNORM; 765 766 if (likely(dev->current_rx_bytes) || 767 likely(!list_empty(&dev->rx_buffers))) 768 status |= EPOLLIN | EPOLLRDNORM; 769 770 spin_unlock_irqrestore(&dev->lock, flags); 771 772 return status; 773 } 774 775 static long 776 printer_ioctl(struct file *fd, unsigned int code, unsigned long arg) 777 { 778 struct printer_dev *dev = fd->private_data; 779 unsigned long flags; 780 int status = 0; 781 782 DBG(dev, "printer_ioctl: cmd=0x%4.4x, arg=%lu\n", code, arg); 783 784 /* handle ioctls */ 785 786 spin_lock_irqsave(&dev->lock, flags); 787 788 if (dev->interface < 0) { 789 spin_unlock_irqrestore(&dev->lock, flags); 790 return -ENODEV; 791 } 792 793 switch (code) { 794 case GADGET_GET_PRINTER_STATUS: 795 status = (int)dev->printer_status; 796 break; 797 case GADGET_SET_PRINTER_STATUS: 798 dev->printer_status = (u8)arg; 799 break; 800 default: 801 /* could not handle ioctl */ 802 DBG(dev, "printer_ioctl: ERROR cmd=0x%4.4xis not supported\n", 803 code); 804 status = -ENOTTY; 805 } 806 807 spin_unlock_irqrestore(&dev->lock, flags); 808 809 return status; 810 } 811 812 /* used after endpoint configuration */ 813 static const struct file_operations printer_io_operations = { 814 .owner = THIS_MODULE, 815 .open = printer_open, 816 .read = printer_read, 817 .write = printer_write, 818 .fsync = printer_fsync, 819 .poll = printer_poll, 820 .unlocked_ioctl = printer_ioctl, 821 .release = printer_close, 822 .llseek = noop_llseek, 823 }; 824 825 /*-------------------------------------------------------------------------*/ 826 827 static int 828 set_printer_interface(struct printer_dev *dev) 829 { 830 int result = 0; 831 832 dev->in_ep->desc = ep_desc(dev->gadget, &fs_ep_in_desc, &hs_ep_in_desc, 833 &ss_ep_in_desc); 834 dev->in_ep->driver_data = dev; 835 836 dev->out_ep->desc = ep_desc(dev->gadget, &fs_ep_out_desc, 837 &hs_ep_out_desc, &ss_ep_out_desc); 838 dev->out_ep->driver_data = dev; 839 840 result = usb_ep_enable(dev->in_ep); 841 if (result != 0) { 842 DBG(dev, "enable %s --> %d\n", dev->in_ep->name, result); 843 goto done; 844 } 845 846 result = usb_ep_enable(dev->out_ep); 847 if (result != 0) { 848 DBG(dev, "enable %s --> %d\n", dev->out_ep->name, result); 849 goto done; 850 } 851 852 done: 853 /* on error, disable any endpoints */ 854 if (result != 0) { 855 (void) usb_ep_disable(dev->in_ep); 856 (void) usb_ep_disable(dev->out_ep); 857 dev->in_ep->desc = NULL; 858 dev->out_ep->desc = NULL; 859 } 860 861 /* caller is responsible for cleanup on error */ 862 return result; 863 } 864 865 static void printer_reset_interface(struct printer_dev *dev) 866 { 867 unsigned long flags; 868 869 if (dev->interface < 0) 870 return; 871 872 if (dev->in_ep->desc) 873 usb_ep_disable(dev->in_ep); 874 875 if (dev->out_ep->desc) 876 usb_ep_disable(dev->out_ep); 877 878 spin_lock_irqsave(&dev->lock, flags); 879 dev->in_ep->desc = NULL; 880 dev->out_ep->desc = NULL; 881 dev->interface = -1; 882 spin_unlock_irqrestore(&dev->lock, flags); 883 } 884 885 /* Change our operational Interface. */ 886 static int set_interface(struct printer_dev *dev, unsigned number) 887 { 888 int result = 0; 889 890 /* Free the current interface */ 891 printer_reset_interface(dev); 892 893 result = set_printer_interface(dev); 894 if (result) 895 printer_reset_interface(dev); 896 else 897 dev->interface = number; 898 899 if (!result) 900 INFO(dev, "Using interface %x\n", number); 901 902 return result; 903 } 904 905 static void printer_soft_reset(struct printer_dev *dev) 906 { 907 struct usb_request *req; 908 909 if (usb_ep_disable(dev->in_ep)) 910 DBG(dev, "Failed to disable USB in_ep\n"); 911 if (usb_ep_disable(dev->out_ep)) 912 DBG(dev, "Failed to disable USB out_ep\n"); 913 914 if (dev->current_rx_req != NULL) { 915 list_add(&dev->current_rx_req->list, &dev->rx_reqs); 916 dev->current_rx_req = NULL; 917 } 918 dev->current_rx_bytes = 0; 919 dev->current_rx_buf = NULL; 920 dev->reset_printer = 1; 921 922 while (likely(!(list_empty(&dev->rx_buffers)))) { 923 req = container_of(dev->rx_buffers.next, struct usb_request, 924 list); 925 list_del_init(&req->list); 926 list_add(&req->list, &dev->rx_reqs); 927 } 928 929 while (likely(!(list_empty(&dev->rx_reqs_active)))) { 930 req = container_of(dev->rx_buffers.next, struct usb_request, 931 list); 932 list_del_init(&req->list); 933 list_add(&req->list, &dev->rx_reqs); 934 } 935 936 while (likely(!(list_empty(&dev->tx_reqs_active)))) { 937 req = container_of(dev->tx_reqs_active.next, 938 struct usb_request, list); 939 list_del_init(&req->list); 940 list_add(&req->list, &dev->tx_reqs); 941 } 942 943 if (usb_ep_enable(dev->in_ep)) 944 DBG(dev, "Failed to enable USB in_ep\n"); 945 if (usb_ep_enable(dev->out_ep)) 946 DBG(dev, "Failed to enable USB out_ep\n"); 947 948 wake_up_interruptible(&dev->rx_wait); 949 wake_up_interruptible(&dev->tx_wait); 950 wake_up_interruptible(&dev->tx_flush_wait); 951 } 952 953 /*-------------------------------------------------------------------------*/ 954 955 static bool gprinter_req_match(struct usb_function *f, 956 const struct usb_ctrlrequest *ctrl, 957 bool config0) 958 { 959 struct printer_dev *dev = func_to_printer(f); 960 u16 w_index = le16_to_cpu(ctrl->wIndex); 961 u16 w_value = le16_to_cpu(ctrl->wValue); 962 u16 w_length = le16_to_cpu(ctrl->wLength); 963 964 if (config0) 965 return false; 966 967 if ((ctrl->bRequestType & USB_RECIP_MASK) != USB_RECIP_INTERFACE || 968 (ctrl->bRequestType & USB_TYPE_MASK) != USB_TYPE_CLASS) 969 return false; 970 971 switch (ctrl->bRequest) { 972 case GET_DEVICE_ID: 973 w_index >>= 8; 974 if (USB_DIR_IN & ctrl->bRequestType) 975 break; 976 return false; 977 case GET_PORT_STATUS: 978 if (!w_value && w_length == 1 && 979 (USB_DIR_IN & ctrl->bRequestType)) 980 break; 981 return false; 982 case SOFT_RESET: 983 if (!w_value && !w_length && 984 !(USB_DIR_IN & ctrl->bRequestType)) 985 break; 986 fallthrough; 987 default: 988 return false; 989 } 990 return w_index == dev->interface; 991 } 992 993 /* 994 * The setup() callback implements all the ep0 functionality that's not 995 * handled lower down. 996 */ 997 static int printer_func_setup(struct usb_function *f, 998 const struct usb_ctrlrequest *ctrl) 999 { 1000 struct printer_dev *dev = func_to_printer(f); 1001 struct usb_composite_dev *cdev = f->config->cdev; 1002 struct usb_request *req = cdev->req; 1003 u8 *buf = req->buf; 1004 int value = -EOPNOTSUPP; 1005 u16 wIndex = le16_to_cpu(ctrl->wIndex); 1006 u16 wValue = le16_to_cpu(ctrl->wValue); 1007 u16 wLength = le16_to_cpu(ctrl->wLength); 1008 1009 DBG(dev, "ctrl req%02x.%02x v%04x i%04x l%d\n", 1010 ctrl->bRequestType, ctrl->bRequest, wValue, wIndex, wLength); 1011 1012 switch (ctrl->bRequestType&USB_TYPE_MASK) { 1013 case USB_TYPE_CLASS: 1014 switch (ctrl->bRequest) { 1015 case GET_DEVICE_ID: /* Get the IEEE-1284 PNP String */ 1016 /* Only one printer interface is supported. */ 1017 if ((wIndex>>8) != dev->interface) 1018 break; 1019 1020 if (!*dev->pnp_string) { 1021 value = 0; 1022 break; 1023 } 1024 value = strlen(*dev->pnp_string); 1025 buf[0] = (value >> 8) & 0xFF; 1026 buf[1] = value & 0xFF; 1027 memcpy(buf + 2, *dev->pnp_string, value); 1028 DBG(dev, "1284 PNP String: %x %s\n", value, 1029 *dev->pnp_string); 1030 break; 1031 1032 case GET_PORT_STATUS: /* Get Port Status */ 1033 /* Only one printer interface is supported. */ 1034 if (wIndex != dev->interface) 1035 break; 1036 1037 buf[0] = dev->printer_status; 1038 value = min_t(u16, wLength, 1); 1039 break; 1040 1041 case SOFT_RESET: /* Soft Reset */ 1042 /* Only one printer interface is supported. */ 1043 if (wIndex != dev->interface) 1044 break; 1045 1046 printer_soft_reset(dev); 1047 1048 value = 0; 1049 break; 1050 1051 default: 1052 goto unknown; 1053 } 1054 break; 1055 1056 default: 1057 unknown: 1058 VDBG(dev, 1059 "unknown ctrl req%02x.%02x v%04x i%04x l%d\n", 1060 ctrl->bRequestType, ctrl->bRequest, 1061 wValue, wIndex, wLength); 1062 break; 1063 } 1064 /* host either stalls (value < 0) or reports success */ 1065 if (value >= 0) { 1066 req->length = value; 1067 req->zero = value < wLength; 1068 value = usb_ep_queue(cdev->gadget->ep0, req, GFP_ATOMIC); 1069 if (value < 0) { 1070 ERROR(dev, "%s:%d Error!\n", __func__, __LINE__); 1071 req->status = 0; 1072 } 1073 } 1074 return value; 1075 } 1076 1077 static int printer_func_bind(struct usb_configuration *c, 1078 struct usb_function *f) 1079 { 1080 struct usb_gadget *gadget = c->cdev->gadget; 1081 struct printer_dev *dev = func_to_printer(f); 1082 struct device *pdev; 1083 struct usb_composite_dev *cdev = c->cdev; 1084 struct usb_ep *in_ep; 1085 struct usb_ep *out_ep = NULL; 1086 struct usb_request *req; 1087 dev_t devt; 1088 int id; 1089 int ret; 1090 u32 i; 1091 1092 id = usb_interface_id(c, f); 1093 if (id < 0) 1094 return id; 1095 intf_desc.bInterfaceNumber = id; 1096 1097 /* finish hookup to lower layer ... */ 1098 dev->gadget = gadget; 1099 1100 /* all we really need is bulk IN/OUT */ 1101 in_ep = usb_ep_autoconfig(cdev->gadget, &fs_ep_in_desc); 1102 if (!in_ep) { 1103 autoconf_fail: 1104 dev_err(&cdev->gadget->dev, "can't autoconfigure on %s\n", 1105 cdev->gadget->name); 1106 return -ENODEV; 1107 } 1108 1109 out_ep = usb_ep_autoconfig(cdev->gadget, &fs_ep_out_desc); 1110 if (!out_ep) 1111 goto autoconf_fail; 1112 1113 /* assumes that all endpoints are dual-speed */ 1114 hs_ep_in_desc.bEndpointAddress = fs_ep_in_desc.bEndpointAddress; 1115 hs_ep_out_desc.bEndpointAddress = fs_ep_out_desc.bEndpointAddress; 1116 ss_ep_in_desc.bEndpointAddress = fs_ep_in_desc.bEndpointAddress; 1117 ss_ep_out_desc.bEndpointAddress = fs_ep_out_desc.bEndpointAddress; 1118 1119 ret = usb_assign_descriptors(f, fs_printer_function, 1120 hs_printer_function, ss_printer_function, 1121 ss_printer_function); 1122 if (ret) 1123 return ret; 1124 1125 dev->in_ep = in_ep; 1126 dev->out_ep = out_ep; 1127 1128 ret = -ENOMEM; 1129 for (i = 0; i < dev->q_len; i++) { 1130 req = printer_req_alloc(dev->in_ep, USB_BUFSIZE, GFP_KERNEL); 1131 if (!req) 1132 goto fail_tx_reqs; 1133 list_add(&req->list, &dev->tx_reqs); 1134 } 1135 1136 for (i = 0; i < dev->q_len; i++) { 1137 req = printer_req_alloc(dev->out_ep, USB_BUFSIZE, GFP_KERNEL); 1138 if (!req) 1139 goto fail_rx_reqs; 1140 list_add(&req->list, &dev->rx_reqs); 1141 } 1142 1143 /* Setup the sysfs files for the printer gadget. */ 1144 devt = MKDEV(major, dev->minor); 1145 pdev = device_create(&usb_gadget_class, NULL, devt, 1146 NULL, "g_printer%d", dev->minor); 1147 if (IS_ERR(pdev)) { 1148 ERROR(dev, "Failed to create device: g_printer\n"); 1149 ret = PTR_ERR(pdev); 1150 goto fail_rx_reqs; 1151 } 1152 1153 /* 1154 * Register a character device as an interface to a user mode 1155 * program that handles the printer specific functionality. 1156 */ 1157 cdev_init(&dev->printer_cdev, &printer_io_operations); 1158 dev->printer_cdev.owner = THIS_MODULE; 1159 ret = cdev_add(&dev->printer_cdev, devt, 1); 1160 if (ret) { 1161 ERROR(dev, "Failed to open char device\n"); 1162 goto fail_cdev_add; 1163 } 1164 1165 return 0; 1166 1167 fail_cdev_add: 1168 device_destroy(&usb_gadget_class, devt); 1169 1170 fail_rx_reqs: 1171 while (!list_empty(&dev->rx_reqs)) { 1172 req = container_of(dev->rx_reqs.next, struct usb_request, list); 1173 list_del(&req->list); 1174 printer_req_free(dev->out_ep, req); 1175 } 1176 1177 fail_tx_reqs: 1178 while (!list_empty(&dev->tx_reqs)) { 1179 req = container_of(dev->tx_reqs.next, struct usb_request, list); 1180 list_del(&req->list); 1181 printer_req_free(dev->in_ep, req); 1182 } 1183 1184 usb_free_all_descriptors(f); 1185 return ret; 1186 1187 } 1188 1189 static int printer_func_set_alt(struct usb_function *f, 1190 unsigned intf, unsigned alt) 1191 { 1192 struct printer_dev *dev = func_to_printer(f); 1193 int ret = -ENOTSUPP; 1194 1195 if (!alt) 1196 ret = set_interface(dev, intf); 1197 1198 return ret; 1199 } 1200 1201 static void printer_func_disable(struct usb_function *f) 1202 { 1203 struct printer_dev *dev = func_to_printer(f); 1204 1205 printer_reset_interface(dev); 1206 } 1207 1208 static inline struct f_printer_opts 1209 *to_f_printer_opts(struct config_item *item) 1210 { 1211 return container_of(to_config_group(item), struct f_printer_opts, 1212 func_inst.group); 1213 } 1214 1215 static void printer_attr_release(struct config_item *item) 1216 { 1217 struct f_printer_opts *opts = to_f_printer_opts(item); 1218 1219 usb_put_function_instance(&opts->func_inst); 1220 } 1221 1222 static const struct configfs_item_operations printer_item_ops = { 1223 .release = printer_attr_release, 1224 }; 1225 1226 static ssize_t f_printer_opts_pnp_string_show(struct config_item *item, 1227 char *page) 1228 { 1229 struct f_printer_opts *opts = to_f_printer_opts(item); 1230 int result = 0; 1231 1232 mutex_lock(&opts->lock); 1233 if (!opts->pnp_string) 1234 goto unlock; 1235 1236 result = strscpy(page, opts->pnp_string, PAGE_SIZE); 1237 if (result < 1) { 1238 result = PAGE_SIZE; 1239 } else if (page[result - 1] != '\n' && result + 1 < PAGE_SIZE) { 1240 page[result++] = '\n'; 1241 page[result] = '\0'; 1242 } 1243 1244 unlock: 1245 mutex_unlock(&opts->lock); 1246 1247 return result; 1248 } 1249 1250 static ssize_t f_printer_opts_pnp_string_store(struct config_item *item, 1251 const char *page, size_t len) 1252 { 1253 struct f_printer_opts *opts = to_f_printer_opts(item); 1254 char *new_pnp; 1255 int result; 1256 1257 mutex_lock(&opts->lock); 1258 1259 new_pnp = kstrndup(page, len, GFP_KERNEL); 1260 if (!new_pnp) { 1261 result = -ENOMEM; 1262 goto unlock; 1263 } 1264 1265 if (opts->pnp_string_allocated) 1266 kfree(opts->pnp_string); 1267 1268 opts->pnp_string_allocated = true; 1269 opts->pnp_string = new_pnp; 1270 result = len; 1271 unlock: 1272 mutex_unlock(&opts->lock); 1273 1274 return result; 1275 } 1276 1277 CONFIGFS_ATTR(f_printer_opts_, pnp_string); 1278 1279 static ssize_t f_printer_opts_q_len_show(struct config_item *item, 1280 char *page) 1281 { 1282 struct f_printer_opts *opts = to_f_printer_opts(item); 1283 int result; 1284 1285 mutex_lock(&opts->lock); 1286 result = sprintf(page, "%d\n", opts->q_len); 1287 mutex_unlock(&opts->lock); 1288 1289 return result; 1290 } 1291 1292 static ssize_t f_printer_opts_q_len_store(struct config_item *item, 1293 const char *page, size_t len) 1294 { 1295 struct f_printer_opts *opts = to_f_printer_opts(item); 1296 int ret; 1297 u16 num; 1298 1299 mutex_lock(&opts->lock); 1300 if (opts->refcnt) { 1301 ret = -EBUSY; 1302 goto end; 1303 } 1304 1305 ret = kstrtou16(page, 0, &num); 1306 if (ret) 1307 goto end; 1308 1309 opts->q_len = (unsigned)num; 1310 ret = len; 1311 end: 1312 mutex_unlock(&opts->lock); 1313 return ret; 1314 } 1315 1316 CONFIGFS_ATTR(f_printer_opts_, q_len); 1317 1318 static struct configfs_attribute *printer_attrs[] = { 1319 &f_printer_opts_attr_pnp_string, 1320 &f_printer_opts_attr_q_len, 1321 NULL, 1322 }; 1323 1324 static const struct config_item_type printer_func_type = { 1325 .ct_item_ops = &printer_item_ops, 1326 .ct_attrs = printer_attrs, 1327 .ct_owner = THIS_MODULE, 1328 }; 1329 1330 static inline int gprinter_get_minor(void) 1331 { 1332 int ret; 1333 1334 ret = ida_alloc(&printer_ida, GFP_KERNEL); 1335 if (ret >= PRINTER_MINORS) { 1336 ida_free(&printer_ida, ret); 1337 ret = -ENODEV; 1338 } 1339 1340 return ret; 1341 } 1342 1343 static inline void gprinter_put_minor(int minor) 1344 { 1345 ida_free(&printer_ida, minor); 1346 } 1347 1348 static int gprinter_setup(int); 1349 static void gprinter_cleanup(void); 1350 1351 static void gprinter_free_inst(struct usb_function_instance *f) 1352 { 1353 struct f_printer_opts *opts; 1354 1355 opts = container_of(f, struct f_printer_opts, func_inst); 1356 1357 mutex_lock(&printer_ida_lock); 1358 1359 gprinter_put_minor(opts->minor); 1360 if (ida_is_empty(&printer_ida)) 1361 gprinter_cleanup(); 1362 1363 mutex_unlock(&printer_ida_lock); 1364 1365 if (opts->pnp_string_allocated) 1366 kfree(opts->pnp_string); 1367 kfree(opts); 1368 } 1369 1370 static struct usb_function_instance *gprinter_alloc_inst(void) 1371 { 1372 struct f_printer_opts *opts; 1373 struct usb_function_instance *ret; 1374 int status = 0; 1375 1376 opts = kzalloc_obj(*opts); 1377 if (!opts) 1378 return ERR_PTR(-ENOMEM); 1379 1380 mutex_init(&opts->lock); 1381 opts->func_inst.free_func_inst = gprinter_free_inst; 1382 ret = &opts->func_inst; 1383 1384 /* Make sure q_len is initialized, otherwise the bound device can't support read/write! */ 1385 opts->q_len = DEFAULT_Q_LEN; 1386 1387 mutex_lock(&printer_ida_lock); 1388 1389 if (ida_is_empty(&printer_ida)) { 1390 status = gprinter_setup(PRINTER_MINORS); 1391 if (status) { 1392 ret = ERR_PTR(status); 1393 kfree(opts); 1394 goto unlock; 1395 } 1396 } 1397 1398 opts->minor = gprinter_get_minor(); 1399 if (opts->minor < 0) { 1400 ret = ERR_PTR(opts->minor); 1401 kfree(opts); 1402 if (ida_is_empty(&printer_ida)) 1403 gprinter_cleanup(); 1404 goto unlock; 1405 } 1406 config_group_init_type_name(&opts->func_inst.group, "", 1407 &printer_func_type); 1408 1409 unlock: 1410 mutex_unlock(&printer_ida_lock); 1411 return ret; 1412 } 1413 1414 static void gprinter_free(struct usb_function *f) 1415 { 1416 struct printer_dev *dev = func_to_printer(f); 1417 struct f_printer_opts *opts; 1418 1419 opts = container_of(f->fi, struct f_printer_opts, func_inst); 1420 1421 kref_put(&dev->kref, printer_dev_free); 1422 mutex_lock(&opts->lock); 1423 --opts->refcnt; 1424 mutex_unlock(&opts->lock); 1425 } 1426 1427 static void printer_func_unbind(struct usb_configuration *c, 1428 struct usb_function *f) 1429 { 1430 struct printer_dev *dev; 1431 struct usb_request *req; 1432 1433 dev = func_to_printer(f); 1434 1435 device_destroy(&usb_gadget_class, MKDEV(major, dev->minor)); 1436 1437 /* Remove Character Device */ 1438 cdev_del(&dev->printer_cdev); 1439 1440 /* we must already have been disconnected ... no i/o may be active */ 1441 WARN_ON(!list_empty(&dev->tx_reqs_active)); 1442 WARN_ON(!list_empty(&dev->rx_reqs_active)); 1443 1444 /* Free all memory for this driver. */ 1445 while (!list_empty(&dev->tx_reqs)) { 1446 req = container_of(dev->tx_reqs.next, struct usb_request, 1447 list); 1448 list_del(&req->list); 1449 printer_req_free(dev->in_ep, req); 1450 } 1451 1452 if (dev->current_rx_req != NULL) 1453 printer_req_free(dev->out_ep, dev->current_rx_req); 1454 1455 while (!list_empty(&dev->rx_reqs)) { 1456 req = container_of(dev->rx_reqs.next, 1457 struct usb_request, list); 1458 list_del(&req->list); 1459 printer_req_free(dev->out_ep, req); 1460 } 1461 1462 while (!list_empty(&dev->rx_buffers)) { 1463 req = container_of(dev->rx_buffers.next, 1464 struct usb_request, list); 1465 list_del(&req->list); 1466 printer_req_free(dev->out_ep, req); 1467 } 1468 usb_free_all_descriptors(f); 1469 } 1470 1471 static struct usb_function *gprinter_alloc(struct usb_function_instance *fi) 1472 { 1473 struct printer_dev *dev; 1474 struct f_printer_opts *opts; 1475 1476 opts = container_of(fi, struct f_printer_opts, func_inst); 1477 1478 mutex_lock(&opts->lock); 1479 if (opts->minor >= minors) { 1480 mutex_unlock(&opts->lock); 1481 return ERR_PTR(-ENOENT); 1482 } 1483 1484 dev = kzalloc_obj(*dev); 1485 if (!dev) { 1486 mutex_unlock(&opts->lock); 1487 return ERR_PTR(-ENOMEM); 1488 } 1489 1490 kref_init(&dev->kref); 1491 ++opts->refcnt; 1492 dev->minor = opts->minor; 1493 dev->pnp_string = &opts->pnp_string; 1494 dev->q_len = opts->q_len; 1495 mutex_unlock(&opts->lock); 1496 1497 dev->function.name = "printer"; 1498 dev->function.bind = printer_func_bind; 1499 dev->function.setup = printer_func_setup; 1500 dev->function.unbind = printer_func_unbind; 1501 dev->function.set_alt = printer_func_set_alt; 1502 dev->function.disable = printer_func_disable; 1503 dev->function.req_match = gprinter_req_match; 1504 dev->function.free_func = gprinter_free; 1505 1506 INIT_LIST_HEAD(&dev->tx_reqs); 1507 INIT_LIST_HEAD(&dev->rx_reqs); 1508 INIT_LIST_HEAD(&dev->rx_buffers); 1509 INIT_LIST_HEAD(&dev->tx_reqs_active); 1510 INIT_LIST_HEAD(&dev->rx_reqs_active); 1511 1512 spin_lock_init(&dev->lock); 1513 mutex_init(&dev->lock_printer_io); 1514 init_waitqueue_head(&dev->rx_wait); 1515 init_waitqueue_head(&dev->tx_wait); 1516 init_waitqueue_head(&dev->tx_flush_wait); 1517 1518 dev->interface = -1; 1519 dev->printer_cdev_open = 0; 1520 dev->printer_status = PRINTER_NOT_ERROR; 1521 dev->current_rx_req = NULL; 1522 dev->current_rx_bytes = 0; 1523 dev->current_rx_buf = NULL; 1524 1525 return &dev->function; 1526 } 1527 1528 DECLARE_USB_FUNCTION_INIT(printer, gprinter_alloc_inst, gprinter_alloc); 1529 MODULE_DESCRIPTION("USB printer function driver"); 1530 MODULE_LICENSE("GPL"); 1531 MODULE_AUTHOR("Craig Nadler"); 1532 1533 static int gprinter_setup(int count) 1534 { 1535 int status; 1536 dev_t devt; 1537 1538 status = class_register(&usb_gadget_class); 1539 if (status) 1540 return status; 1541 1542 status = alloc_chrdev_region(&devt, 0, count, "USB printer gadget"); 1543 if (status) { 1544 pr_err("alloc_chrdev_region %d\n", status); 1545 class_unregister(&usb_gadget_class); 1546 return status; 1547 } 1548 1549 major = MAJOR(devt); 1550 minors = count; 1551 1552 return status; 1553 } 1554 1555 static void gprinter_cleanup(void) 1556 { 1557 if (major) { 1558 unregister_chrdev_region(MKDEV(major, 0), minors); 1559 major = minors = 0; 1560 } 1561 class_unregister(&usb_gadget_class); 1562 } 1563