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Merge branch 'linus' into smp/urgent
[mirror_ubuntu-jammy-kernel.git] / drivers / most / most_usb.c
CommitLineData
1a79f22d 1// SPDX-License-Identifier: GPL-2.0
a4198cdf 2/*
6e01fc77 3 * usb.c - Hardware dependent module for USB
a4198cdf
CG
4 *
5 * Copyright (C) 2013-2015 Microchip Technology Germany II GmbH & Co. KG
a4198cdf
CG
6 */
7
a4198cdf
CG
8#include <linux/module.h>
9#include <linux/fs.h>
10#include <linux/usb.h>
11#include <linux/slab.h>
12#include <linux/init.h>
13#include <linux/cdev.h>
14#include <linux/device.h>
15#include <linux/list.h>
16#include <linux/completion.h>
17#include <linux/mutex.h>
18#include <linux/spinlock.h>
19#include <linux/interrupt.h>
20#include <linux/workqueue.h>
21#include <linux/sysfs.h>
22#include <linux/dma-mapping.h>
23#include <linux/etherdevice.h>
24#include <linux/uaccess.h>
b2765275 25#include <linux/most.h>
a4198cdf
CG
26
27#define USB_MTU 512
28#define NO_ISOCHRONOUS_URB 0
29#define AV_PACKETS_PER_XACT 2
30#define BUF_CHAIN_SIZE 0xFFFF
31#define MAX_NUM_ENDPOINTS 30
32#define MAX_SUFFIX_LEN 10
33#define MAX_STRING_LEN 80
34#define MAX_BUF_SIZE 0xFFFF
a4198cdf
CG
35
36#define USB_VENDOR_ID_SMSC 0x0424 /* VID: SMSC */
37#define USB_DEV_ID_BRDG 0xC001 /* PID: USB Bridge */
654f7ec4 38#define USB_DEV_ID_OS81118 0xCF18 /* PID: USB OS81118 */
b50762ea 39#define USB_DEV_ID_OS81119 0xCF19 /* PID: USB OS81119 */
5bf9bd8d 40#define USB_DEV_ID_OS81210 0xCF30 /* PID: USB OS81210 */
a4198cdf
CG
41/* DRCI Addresses */
42#define DRCI_REG_NI_STATE 0x0100
43#define DRCI_REG_PACKET_BW 0x0101
44#define DRCI_REG_NODE_ADDR 0x0102
45#define DRCI_REG_NODE_POS 0x0103
46#define DRCI_REG_MEP_FILTER 0x0140
47#define DRCI_REG_HASH_TBL0 0x0141
48#define DRCI_REG_HASH_TBL1 0x0142
49#define DRCI_REG_HASH_TBL2 0x0143
50#define DRCI_REG_HASH_TBL3 0x0144
51#define DRCI_REG_HW_ADDR_HI 0x0145
52#define DRCI_REG_HW_ADDR_MI 0x0146
53#define DRCI_REG_HW_ADDR_LO 0x0147
d747e8ec
CG
54#define DRCI_REG_BASE 0x1100
55#define DRCI_COMMAND 0x02
a4198cdf
CG
56#define DRCI_READ_REQ 0xA0
57#define DRCI_WRITE_REQ 0xA1
58
a4198cdf
CG
59/**
60 * struct most_dci_obj - Direct Communication Interface
61 * @kobj:position in sysfs
62 * @usb_device: pointer to the usb device
c0554645 63 * @reg_addr: register address for arbitrary DCI access
a4198cdf
CG
64 */
65struct most_dci_obj {
4d5f022f 66 struct device dev;
a4198cdf 67 struct usb_device *usb_device;
c0554645 68 u16 reg_addr;
a4198cdf 69};
9cbe5aa6 70
4d5f022f 71#define to_dci_obj(p) container_of(p, struct most_dci_obj, dev)
a4198cdf 72
cc28983c
CG
73struct most_dev;
74
75struct clear_hold_work {
76 struct work_struct ws;
77 struct most_dev *mdev;
78 unsigned int channel;
79 int pipe;
80};
81
82#define to_clear_hold_work(w) container_of(w, struct clear_hold_work, ws)
83
a4198cdf
CG
84/**
85 * struct most_dev - holds all usb interface specific stuff
a4198cdf
CG
86 * @usb_device: pointer to usb device
87 * @iface: hardware interface
88 * @cap: channel capabilities
89 * @conf: channel configuration
90 * @dci: direct communication interface of hardware
a4198cdf 91 * @ep_address: endpoint address table
a4198cdf
CG
92 * @description: device description
93 * @suffix: suffix for channel name
88d1878b 94 * @channel_lock: synchronize channel access
a4198cdf
CG
95 * @padding_active: indicates channel uses padding
96 * @is_channel_healthy: health status table of each channel
27e6245e 97 * @busy_urbs: list of anchored items
a4198cdf
CG
98 * @io_mutex: synchronize I/O with disconnect
99 * @link_stat_timer: timer for link status reports
100 * @poll_work_obj: work for polling link status
101 */
102struct most_dev {
723de0f9 103 struct device dev;
a4198cdf
CG
104 struct usb_device *usb_device;
105 struct most_interface iface;
106 struct most_channel_capability *cap;
107 struct most_channel_config *conf;
108 struct most_dci_obj *dci;
a4198cdf 109 u8 *ep_address;
a4198cdf
CG
110 char description[MAX_STRING_LEN];
111 char suffix[MAX_NUM_ENDPOINTS][MAX_SUFFIX_LEN];
88d1878b 112 spinlock_t channel_lock[MAX_NUM_ENDPOINTS]; /* sync channel access */
a4198cdf
CG
113 bool padding_active[MAX_NUM_ENDPOINTS];
114 bool is_channel_healthy[MAX_NUM_ENDPOINTS];
cc28983c 115 struct clear_hold_work clear_work[MAX_NUM_ENDPOINTS];
27e6245e 116 struct usb_anchor *busy_urbs;
a4198cdf
CG
117 struct mutex io_mutex;
118 struct timer_list link_stat_timer;
119 struct work_struct poll_work_obj;
9917b209
RE
120 void (*on_netinfo)(struct most_interface *most_iface,
121 unsigned char link_state, unsigned char *addrs);
a4198cdf 122};
9cbe5aa6 123
a4198cdf 124#define to_mdev(d) container_of(d, struct most_dev, iface)
723de0f9 125#define to_mdev_from_dev(d) container_of(d, struct most_dev, dev)
a4198cdf
CG
126#define to_mdev_from_work(w) container_of(w, struct most_dev, poll_work_obj)
127
a4198cdf
CG
128static void wq_clear_halt(struct work_struct *wq_obj);
129static void wq_netinfo(struct work_struct *wq_obj);
130
a4198cdf
CG
131/**
132 * drci_rd_reg - read a DCI register
133 * @dev: usb device
134 * @reg: register address
135 * @buf: buffer to store data
136 *
137 * This is reads data from INIC's direct register communication interface
138 */
26370228 139static inline int drci_rd_reg(struct usb_device *dev, u16 reg, u16 *buf)
a4198cdf 140{
26370228 141 int retval;
a0dbe1b2 142 __le16 *dma_buf;
26370228
CG
143 u8 req_type = USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_DEVICE;
144
a0dbe1b2 145 dma_buf = kzalloc(sizeof(*dma_buf), GFP_KERNEL);
26370228
CG
146 if (!dma_buf)
147 return -ENOMEM;
148
149 retval = usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
150 DRCI_READ_REQ, req_type,
151 0x0000,
5a10380b 152 reg, dma_buf, sizeof(*dma_buf), 5 * HZ);
c81c9c3e 153 *buf = le16_to_cpu(*dma_buf);
26370228
CG
154 kfree(dma_buf);
155
ffd069ec
CG
156 if (retval < 0)
157 return retval;
158 return 0;
a4198cdf
CG
159}
160
161/**
162 * drci_wr_reg - write a DCI register
163 * @dev: usb device
164 * @reg: register address
165 * @data: data to write
166 *
167 * This is writes data to INIC's direct register communication interface
168 */
169static inline int drci_wr_reg(struct usb_device *dev, u16 reg, u16 data)
170{
171 return usb_control_msg(dev,
172 usb_sndctrlpipe(dev, 0),
173 DRCI_WRITE_REQ,
174 USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
175 data,
176 reg,
177 NULL,
178 0,
179 5 * HZ);
180}
181
e33269f6
AS
182static inline int start_sync_ep(struct usb_device *usb_dev, u16 ep)
183{
184 return drci_wr_reg(usb_dev, DRCI_REG_BASE + DRCI_COMMAND + ep * 16, 1);
185}
186
a4198cdf
CG
187/**
188 * get_stream_frame_size - calculate frame size of current configuration
1c538a41 189 * @dev: device structure
a4198cdf
CG
190 * @cfg: channel configuration
191 */
1c538a41
CG
192static unsigned int get_stream_frame_size(struct device *dev,
193 struct most_channel_config *cfg)
a4198cdf 194{
2c069b61 195 unsigned int frame_size;
a4198cdf
CG
196 unsigned int sub_size = cfg->subbuffer_size;
197
198 if (!sub_size) {
62573221 199 dev_warn(dev, "Misconfig: Subbuffer size zero.\n");
2c069b61 200 return 0;
a4198cdf
CG
201 }
202 switch (cfg->data_type) {
0540609f 203 case MOST_CH_ISOC:
a4198cdf
CG
204 frame_size = AV_PACKETS_PER_XACT * sub_size;
205 break;
206 case MOST_CH_SYNC:
207 if (cfg->packets_per_xact == 0) {
62573221 208 dev_warn(dev, "Misconfig: Packets per XACT zero\n");
a4198cdf 209 frame_size = 0;
9deba73d 210 } else if (cfg->packets_per_xact == 0xFF) {
a4198cdf 211 frame_size = (USB_MTU / sub_size) * sub_size;
9deba73d 212 } else {
a4198cdf 213 frame_size = cfg->packets_per_xact * sub_size;
9deba73d 214 }
a4198cdf
CG
215 break;
216 default:
62573221 217 dev_warn(dev, "Query frame size of non-streaming channel\n");
11974ace 218 frame_size = 0;
a4198cdf
CG
219 break;
220 }
221 return frame_size;
222}
223
224/**
225 * hdm_poison_channel - mark buffers of this channel as invalid
226 * @iface: pointer to the interface
227 * @channel: channel ID
228 *
229 * This unlinks all URBs submitted to the HCD,
230 * calls the associated completion function of the core and removes
231 * them from the list.
232 *
233 * Returns 0 on success or error code otherwise.
234 */
23fe15fa 235static int hdm_poison_channel(struct most_interface *iface, int channel)
a4198cdf 236{
089612f1 237 struct most_dev *mdev = to_mdev(iface);
b24c9fe9
CG
238 unsigned long flags;
239 spinlock_t *lock; /* temp. lock */
a4198cdf 240
188d5b41 241 if (channel < 0 || channel >= iface->num_channels) {
59ed0480 242 dev_warn(&mdev->usb_device->dev, "Channel ID out of range.\n");
a4198cdf
CG
243 return -ECHRNG;
244 }
245
88d1878b 246 lock = mdev->channel_lock + channel;
b24c9fe9 247 spin_lock_irqsave(lock, flags);
a4198cdf 248 mdev->is_channel_healthy[channel] = false;
b24c9fe9 249 spin_unlock_irqrestore(lock, flags);
a4198cdf 250
cc28983c
CG
251 cancel_work_sync(&mdev->clear_work[channel].ws);
252
a4198cdf 253 mutex_lock(&mdev->io_mutex);
3a542007 254 usb_kill_anchored_urbs(&mdev->busy_urbs[channel]);
ec58d2a8 255 if (mdev->padding_active[channel])
a4198cdf
CG
256 mdev->padding_active[channel] = false;
257
258 if (mdev->conf[channel].data_type == MOST_CH_ASYNC) {
259 del_timer_sync(&mdev->link_stat_timer);
260 cancel_work_sync(&mdev->poll_work_obj);
261 }
262 mutex_unlock(&mdev->io_mutex);
263 return 0;
264}
265
266/**
267 * hdm_add_padding - add padding bytes
268 * @mdev: most device
269 * @channel: channel ID
270 * @mbo: buffer object
271 *
272 * This inserts the INIC hardware specific padding bytes into a streaming
273 * channel's buffer
274 */
23fe15fa 275static int hdm_add_padding(struct most_dev *mdev, int channel, struct mbo *mbo)
a4198cdf
CG
276{
277 struct most_channel_config *conf = &mdev->conf[channel];
1c538a41 278 unsigned int frame_size = get_stream_frame_size(&mdev->dev, conf);
ac33fbb8 279 unsigned int j, num_frames;
a4198cdf 280
a4198cdf 281 if (!frame_size)
441be56f 282 return -EINVAL;
a4198cdf
CG
283 num_frames = mbo->buffer_length / frame_size;
284
285 if (num_frames < 1) {
59ed0480
CG
286 dev_err(&mdev->usb_device->dev,
287 "Missed minimal transfer unit.\n");
441be56f 288 return -EINVAL;
a4198cdf
CG
289 }
290
5c13155d
AS
291 for (j = num_frames - 1; j > 0; j--)
292 memmove(mbo->virt_address + j * USB_MTU,
293 mbo->virt_address + j * frame_size,
a4198cdf 294 frame_size);
a4198cdf
CG
295 mbo->buffer_length = num_frames * USB_MTU;
296 return 0;
297}
298
299/**
300 * hdm_remove_padding - remove padding bytes
301 * @mdev: most device
302 * @channel: channel ID
303 * @mbo: buffer object
304 *
305 * This takes the INIC hardware specific padding bytes off a streaming
306 * channel's buffer.
307 */
ba170ee2
CG
308static int hdm_remove_padding(struct most_dev *mdev, int channel,
309 struct mbo *mbo)
a4198cdf 310{
a4198cdf 311 struct most_channel_config *const conf = &mdev->conf[channel];
1c538a41 312 unsigned int frame_size = get_stream_frame_size(&mdev->dev, conf);
ac33fbb8 313 unsigned int j, num_frames;
a4198cdf 314
a4198cdf 315 if (!frame_size)
441be56f 316 return -EINVAL;
a4198cdf
CG
317 num_frames = mbo->processed_length / USB_MTU;
318
319 for (j = 1; j < num_frames; j++)
320 memmove(mbo->virt_address + frame_size * j,
321 mbo->virt_address + USB_MTU * j,
322 frame_size);
323
324 mbo->processed_length = frame_size * num_frames;
325 return 0;
326}
327
328/**
329 * hdm_write_completion - completion function for submitted Tx URBs
330 * @urb: the URB that has been completed
331 *
332 * This checks the status of the completed URB. In case the URB has been
333 * unlinked before, it is immediately freed. On any other error the MBO
334 * transfer flag is set. On success it frees allocated resources and calls
335 * the completion function.
336 *
337 * Context: interrupt!
338 */
339static void hdm_write_completion(struct urb *urb)
340{
089612f1 341 struct mbo *mbo = urb->context;
089612f1
CG
342 struct most_dev *mdev = to_mdev(mbo->ifp);
343 unsigned int channel = mbo->hdm_channel_id;
88d1878b 344 spinlock_t *lock = mdev->channel_lock + channel;
a4198cdf 345 unsigned long flags;
a4198cdf 346
b24c9fe9 347 spin_lock_irqsave(lock, flags);
a4198cdf 348
3a542007
AS
349 mbo->processed_length = 0;
350 mbo->status = MBO_E_INVAL;
351 if (likely(mdev->is_channel_healthy[channel])) {
a4198cdf 352 switch (urb->status) {
3a542007
AS
353 case 0:
354 case -ESHUTDOWN:
355 mbo->processed_length = urb->actual_length;
356 mbo->status = MBO_SUCCESS;
357 break;
a4198cdf 358 case -EPIPE:
be8a8ca3
CG
359 dev_warn(&mdev->usb_device->dev,
360 "Broken pipe on ep%02x\n",
3b1a774b 361 mdev->ep_address[channel]);
879c93fe 362 mdev->is_channel_healthy[channel] = false;
cc28983c
CG
363 mdev->clear_work[channel].pipe = urb->pipe;
364 schedule_work(&mdev->clear_work[channel].ws);
3a542007 365 break;
a4198cdf
CG
366 case -ENODEV:
367 case -EPROTO:
368 mbo->status = MBO_E_CLOSE;
369 break;
a4198cdf 370 }
a4198cdf
CG
371 }
372
cf6a599e 373 spin_unlock_irqrestore(lock, flags);
a4198cdf
CG
374
375 if (likely(mbo->complete))
376 mbo->complete(mbo);
377 usb_free_urb(urb);
378}
379
380/**
9f17591f 381 * hdm_read_completion - completion function for submitted Rx URBs
a4198cdf
CG
382 * @urb: the URB that has been completed
383 *
384 * This checks the status of the completed URB. In case the URB has been
385 * unlinked before it is immediately freed. On any other error the MBO transfer
386 * flag is set. On success it frees allocated resources, removes
387 * padding bytes -if necessary- and calls the completion function.
388 *
389 * Context: interrupt!
a4198cdf
CG
390 */
391static void hdm_read_completion(struct urb *urb)
392{
089612f1 393 struct mbo *mbo = urb->context;
089612f1
CG
394 struct most_dev *mdev = to_mdev(mbo->ifp);
395 unsigned int channel = mbo->hdm_channel_id;
396 struct device *dev = &mdev->usb_device->dev;
88d1878b 397 spinlock_t *lock = mdev->channel_lock + channel;
a4198cdf 398 unsigned long flags;
a4198cdf 399
b24c9fe9 400 spin_lock_irqsave(lock, flags);
a4198cdf 401
3a542007
AS
402 mbo->processed_length = 0;
403 mbo->status = MBO_E_INVAL;
404 if (likely(mdev->is_channel_healthy[channel])) {
a4198cdf 405 switch (urb->status) {
3a542007
AS
406 case 0:
407 case -ESHUTDOWN:
408 mbo->processed_length = urb->actual_length;
409 mbo->status = MBO_SUCCESS;
410 if (mdev->padding_active[channel] &&
411 hdm_remove_padding(mdev, channel, mbo)) {
412 mbo->processed_length = 0;
413 mbo->status = MBO_E_INVAL;
414 }
415 break;
a4198cdf 416 case -EPIPE:
3b1a774b
CG
417 dev_warn(dev, "Broken pipe on ep%02x\n",
418 mdev->ep_address[channel]);
879c93fe 419 mdev->is_channel_healthy[channel] = false;
cc28983c
CG
420 mdev->clear_work[channel].pipe = urb->pipe;
421 schedule_work(&mdev->clear_work[channel].ws);
3a542007 422 break;
a4198cdf
CG
423 case -ENODEV:
424 case -EPROTO:
425 mbo->status = MBO_E_CLOSE;
426 break;
427 case -EOVERFLOW:
3b1a774b
CG
428 dev_warn(dev, "Babble on ep%02x\n",
429 mdev->ep_address[channel]);
a4198cdf
CG
430 break;
431 }
a4198cdf 432 }
b24c9fe9 433
cf6a599e 434 spin_unlock_irqrestore(lock, flags);
a4198cdf
CG
435
436 if (likely(mbo->complete))
437 mbo->complete(mbo);
438 usb_free_urb(urb);
439}
440
441/**
442 * hdm_enqueue - receive a buffer to be used for data transfer
443 * @iface: interface to enqueue to
444 * @channel: ID of the channel
445 * @mbo: pointer to the buffer object
446 *
447 * This allocates a new URB and fills it according to the channel
448 * that is being used for transmission of data. Before the URB is
449 * submitted it is stored in the private anchor list.
450 *
451 * Returns 0 on success. On any error the URB is freed and a error code
452 * is returned.
453 *
454 * Context: Could in _some_ cases be interrupt!
455 */
ba170ee2
CG
456static int hdm_enqueue(struct most_interface *iface, int channel,
457 struct mbo *mbo)
a4198cdf 458{
e3881eb5 459 struct most_dev *mdev = to_mdev(iface);
a4198cdf
CG
460 struct most_channel_config *conf;
461 int retval = 0;
462 struct urb *urb;
a4198cdf
CG
463 unsigned long length;
464 void *virt_address;
465
188d5b41 466 if (!mbo)
441be56f 467 return -EINVAL;
188d5b41 468 if (iface->num_channels <= channel || channel < 0)
a4198cdf 469 return -ECHRNG;
a4198cdf 470
8bf56cfa
CG
471 urb = usb_alloc_urb(NO_ISOCHRONOUS_URB, GFP_KERNEL);
472 if (!urb)
473 return -ENOMEM;
474
a4198cdf
CG
475 conf = &mdev->conf[channel];
476
c06b99e0
CG
477 mutex_lock(&mdev->io_mutex);
478 if (!mdev->usb_device) {
479 retval = -ENODEV;
8bf56cfa 480 goto err_free_urb;
c06b99e0 481 }
a4198cdf 482
dd53ecba
CG
483 if ((conf->direction & MOST_CH_TX) && mdev->padding_active[channel] &&
484 hdm_add_padding(mdev, channel, mbo)) {
441be56f 485 retval = -EINVAL;
bddd3c25 486 goto err_free_urb;
dd53ecba 487 }
a4198cdf
CG
488
489 urb->transfer_dma = mbo->bus_address;
490 virt_address = mbo->virt_address;
491 length = mbo->buffer_length;
492
493 if (conf->direction & MOST_CH_TX) {
494 usb_fill_bulk_urb(urb, mdev->usb_device,
495 usb_sndbulkpipe(mdev->usb_device,
496 mdev->ep_address[channel]),
497 virt_address,
498 length,
499 hdm_write_completion,
500 mbo);
9a32315b
CG
501 if (conf->data_type != MOST_CH_ISOC &&
502 conf->data_type != MOST_CH_SYNC)
a4198cdf
CG
503 urb->transfer_flags |= URB_ZERO_PACKET;
504 } else {
505 usb_fill_bulk_urb(urb, mdev->usb_device,
506 usb_rcvbulkpipe(mdev->usb_device,
507 mdev->ep_address[channel]),
508 virt_address,
9161e931 509 length + conf->extra_len,
a4198cdf
CG
510 hdm_read_completion,
511 mbo);
512 }
513 urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
514
27e6245e 515 usb_anchor_urb(urb, &mdev->busy_urbs[channel]);
ec7e0a18 516
a4198cdf
CG
517 retval = usb_submit_urb(urb, GFP_KERNEL);
518 if (retval) {
be8a8ca3
CG
519 dev_err(&mdev->usb_device->dev,
520 "URB submit failed with error %d.\n", retval);
bddd3c25 521 goto err_unanchor_urb;
a4198cdf 522 }
6405fe21
CG
523 mutex_unlock(&mdev->io_mutex);
524 return 0;
a4198cdf 525
bddd3c25 526err_unanchor_urb:
27e6245e 527 usb_unanchor_urb(urb);
bddd3c25 528err_free_urb:
a4198cdf 529 usb_free_urb(urb);
c06b99e0 530 mutex_unlock(&mdev->io_mutex);
a4198cdf
CG
531 return retval;
532}
533
3598cec5
CG
534static void *hdm_dma_alloc(struct mbo *mbo, u32 size)
535{
536 struct most_dev *mdev = to_mdev(mbo->ifp);
537
538 return usb_alloc_coherent(mdev->usb_device, size, GFP_KERNEL,
539 &mbo->bus_address);
540}
541
542static void hdm_dma_free(struct mbo *mbo, u32 size)
543{
544 struct most_dev *mdev = to_mdev(mbo->ifp);
545
546 usb_free_coherent(mdev->usb_device, size, mbo->virt_address,
547 mbo->bus_address);
548}
549
a4198cdf
CG
550/**
551 * hdm_configure_channel - receive channel configuration from core
552 * @iface: interface
553 * @channel: channel ID
554 * @conf: structure that holds the configuration information
25e3854c
CG
555 *
556 * The attached network interface controller (NIC) supports a padding mode
557 * to avoid short packets on USB, hence increasing the performance due to a
558 * lower interrupt load. This mode is default for synchronous data and can
559 * be switched on for isochronous data. In case padding is active the
560 * driver needs to know the frame size of the payload in order to calculate
561 * the number of bytes it needs to pad when transmitting or to cut off when
562 * receiving data.
563 *
a4198cdf 564 */
23fe15fa
AR
565static int hdm_configure_channel(struct most_interface *iface, int channel,
566 struct most_channel_config *conf)
a4198cdf
CG
567{
568 unsigned int num_frames;
569 unsigned int frame_size;
089612f1
CG
570 struct most_dev *mdev = to_mdev(iface);
571 struct device *dev = &mdev->usb_device->dev;
59ed0480 572
188d5b41 573 if (!conf) {
3e8621ab 574 dev_err(dev, "Bad config pointer.\n");
a4198cdf
CG
575 return -EINVAL;
576 }
188d5b41 577 if (channel < 0 || channel >= iface->num_channels) {
59ed0480 578 dev_err(dev, "Channel ID out of range.\n");
a4198cdf
CG
579 return -EINVAL;
580 }
d92e6991
CIK
581
582 mdev->is_channel_healthy[channel] = true;
583 mdev->clear_work[channel].channel = channel;
584 mdev->clear_work[channel].mdev = mdev;
585 INIT_WORK(&mdev->clear_work[channel].ws, wq_clear_halt);
586
dd53ecba 587 if (!conf->num_buffers || !conf->buffer_size) {
59ed0480 588 dev_err(dev, "Misconfig: buffer size or #buffers zero.\n");
a4198cdf
CG
589 return -EINVAL;
590 }
591
dd53ecba 592 if (conf->data_type != MOST_CH_SYNC &&
0540609f 593 !(conf->data_type == MOST_CH_ISOC &&
dd53ecba 594 conf->packets_per_xact != 0xFF)) {
a4198cdf 595 mdev->padding_active[channel] = false;
25e3854c
CG
596 /*
597 * Since the NIC's padding mode is not going to be
598 * used, we can skip the frame size calculations and
599 * move directly on to exit.
600 */
a4198cdf
CG
601 goto exit;
602 }
603
604 mdev->padding_active[channel] = true;
a4198cdf 605
1c538a41 606 frame_size = get_stream_frame_size(&mdev->dev, conf);
dd53ecba 607 if (frame_size == 0 || frame_size > USB_MTU) {
59ed0480 608 dev_warn(dev, "Misconfig: frame size wrong\n");
a4198cdf
CG
609 return -EINVAL;
610 }
611
f5001928
AS
612 num_frames = conf->buffer_size / frame_size;
613
a4198cdf 614 if (conf->buffer_size % frame_size) {
f5001928 615 u16 old_size = conf->buffer_size;
a4198cdf 616
f5001928
AS
617 conf->buffer_size = num_frames * frame_size;
618 dev_warn(dev, "%s: fixed buffer size (%d -> %d)\n",
619 mdev->suffix[channel], old_size, conf->buffer_size);
620 }
a4198cdf
CG
621
622 /* calculate extra length to comply w/ HW padding */
f5001928
AS
623 conf->extra_len = num_frames * (USB_MTU - frame_size);
624
a4198cdf
CG
625exit:
626 mdev->conf[channel] = *conf;
7c23baa9
AS
627 if (conf->data_type == MOST_CH_ASYNC) {
628 u16 ep = mdev->ep_address[channel];
7c23baa9 629
e33269f6 630 if (start_sync_ep(mdev->usb_device, ep) < 0)
7c23baa9
AS
631 dev_warn(dev, "sync for ep%02x failed", ep);
632 }
a4198cdf
CG
633 return 0;
634}
635
a4198cdf
CG
636/**
637 * hdm_request_netinfo - request network information
638 * @iface: pointer to interface
639 * @channel: channel ID
640 *
641 * This is used as trigger to set up the link status timer that
642 * polls for the NI state of the INIC every 2 seconds.
643 *
644 */
d35bbfaa
AS
645static void hdm_request_netinfo(struct most_interface *iface, int channel,
646 void (*on_netinfo)(struct most_interface *,
647 unsigned char,
648 unsigned char *))
a4198cdf 649{
e3881eb5 650 struct most_dev *mdev = to_mdev(iface);
a4198cdf 651
d35bbfaa
AS
652 mdev->on_netinfo = on_netinfo;
653 if (!on_netinfo)
654 return;
655
a4198cdf
CG
656 mdev->link_stat_timer.expires = jiffies + HZ;
657 mod_timer(&mdev->link_stat_timer, mdev->link_stat_timer.expires);
658}
659
660/**
f28e6cd3 661 * link_stat_timer_handler - schedule work obtaining mac address and link status
a4198cdf
CG
662 * @data: pointer to USB device instance
663 *
664 * The handler runs in interrupt context. That's why we need to defer the
665 * tasks to a work queue.
666 */
e99e88a9 667static void link_stat_timer_handler(struct timer_list *t)
a4198cdf 668{
e99e88a9 669 struct most_dev *mdev = from_timer(mdev, t, link_stat_timer);
a4198cdf 670
e3479f77 671 schedule_work(&mdev->poll_work_obj);
a4198cdf
CG
672 mdev->link_stat_timer.expires = jiffies + (2 * HZ);
673 add_timer(&mdev->link_stat_timer);
674}
675
676/**
f28e6cd3 677 * wq_netinfo - work queue function to deliver latest networking information
a4198cdf
CG
678 * @wq_obj: object that holds data for our deferred work to do
679 *
680 * This retrieves the network interface status of the USB INIC
a4198cdf
CG
681 */
682static void wq_netinfo(struct work_struct *wq_obj)
683{
089612f1 684 struct most_dev *mdev = to_mdev_from_work(wq_obj);
f28e6cd3
AS
685 struct usb_device *usb_device = mdev->usb_device;
686 struct device *dev = &usb_device->dev;
687 u16 hi, mi, lo, link;
688 u8 hw_addr[6];
689
ffd069ec 690 if (drci_rd_reg(usb_device, DRCI_REG_HW_ADDR_HI, &hi)) {
f28e6cd3
AS
691 dev_err(dev, "Vendor request 'hw_addr_hi' failed\n");
692 return;
693 }
a4198cdf 694
ffd069ec 695 if (drci_rd_reg(usb_device, DRCI_REG_HW_ADDR_MI, &mi)) {
f28e6cd3
AS
696 dev_err(dev, "Vendor request 'hw_addr_mid' failed\n");
697 return;
698 }
699
ffd069ec 700 if (drci_rd_reg(usb_device, DRCI_REG_HW_ADDR_LO, &lo)) {
f28e6cd3
AS
701 dev_err(dev, "Vendor request 'hw_addr_low' failed\n");
702 return;
703 }
a4198cdf 704
ffd069ec 705 if (drci_rd_reg(usb_device, DRCI_REG_NI_STATE, &link)) {
f28e6cd3 706 dev_err(dev, "Vendor request 'link status' failed\n");
a4198cdf 707 return;
f28e6cd3
AS
708 }
709
710 hw_addr[0] = hi >> 8;
711 hw_addr[1] = hi;
712 hw_addr[2] = mi >> 8;
713 hw_addr[3] = mi;
714 hw_addr[4] = lo >> 8;
715 hw_addr[5] = lo;
716
d35bbfaa
AS
717 if (mdev->on_netinfo)
718 mdev->on_netinfo(&mdev->iface, link, hw_addr);
a4198cdf
CG
719}
720
721/**
722 * wq_clear_halt - work queue function
723 * @wq_obj: work_struct object to execute
724 *
725 * This sends a clear_halt to the given USB pipe.
726 */
727static void wq_clear_halt(struct work_struct *wq_obj)
728{
cc28983c
CG
729 struct clear_hold_work *clear_work = to_clear_hold_work(wq_obj);
730 struct most_dev *mdev = clear_work->mdev;
731 unsigned int channel = clear_work->channel;
732 int pipe = clear_work->pipe;
1fd4fb8c
CG
733 int snd_pipe;
734 int peer;
a4198cdf 735
cc28983c 736 mutex_lock(&mdev->io_mutex);
bf9503f1 737 most_stop_enqueue(&mdev->iface, channel);
3a542007 738 usb_kill_anchored_urbs(&mdev->busy_urbs[channel]);
cc28983c 739 if (usb_clear_halt(mdev->usb_device, pipe))
59ed0480 740 dev_warn(&mdev->usb_device->dev, "Failed to reset endpoint.\n");
a4198cdf 741
8f20f2dc
CG
742 /* If the functional Stall condition has been set on an
743 * asynchronous rx channel, we need to clear the tx channel
744 * too, since the hardware runs its clean-up sequence on both
745 * channels, as they are physically one on the network.
746 *
747 * The USB interface that exposes the asynchronous channels
748 * contains always two endpoints, and two only.
749 */
750 if (mdev->conf[channel].data_type == MOST_CH_ASYNC &&
751 mdev->conf[channel].direction == MOST_CH_RX) {
1fd4fb8c
CG
752 if (channel == 0)
753 peer = 1;
754 else
755 peer = 0;
756 snd_pipe = usb_sndbulkpipe(mdev->usb_device,
757 mdev->ep_address[peer]);
8f20f2dc
CG
758 usb_clear_halt(mdev->usb_device, snd_pipe);
759 }
879c93fe 760 mdev->is_channel_healthy[channel] = true;
72df4a55 761 most_resume_enqueue(&mdev->iface, channel);
cc28983c 762 mutex_unlock(&mdev->io_mutex);
a4198cdf
CG
763}
764
765/**
766 * hdm_usb_fops - file operation table for USB driver
767 */
768static const struct file_operations hdm_usb_fops = {
769 .owner = THIS_MODULE,
770};
771
772/**
773 * usb_device_id - ID table for HCD device probing
774 */
27acb557 775static const struct usb_device_id usbid[] = {
a4198cdf 776 { USB_DEVICE(USB_VENDOR_ID_SMSC, USB_DEV_ID_BRDG), },
654f7ec4 777 { USB_DEVICE(USB_VENDOR_ID_SMSC, USB_DEV_ID_OS81118), },
b50762ea 778 { USB_DEVICE(USB_VENDOR_ID_SMSC, USB_DEV_ID_OS81119), },
5bf9bd8d 779 { USB_DEVICE(USB_VENDOR_ID_SMSC, USB_DEV_ID_OS81210), },
a4198cdf
CG
780 { } /* Terminating entry */
781};
782
a747b42c
CG
783struct regs {
784 const char *name;
785 u16 reg;
786};
787
788static const struct regs ro_regs[] = {
789 { "ni_state", DRCI_REG_NI_STATE },
790 { "packet_bandwidth", DRCI_REG_PACKET_BW },
791 { "node_address", DRCI_REG_NODE_ADDR },
792 { "node_position", DRCI_REG_NODE_POS },
793};
794
795static const struct regs rw_regs[] = {
796 { "mep_filter", DRCI_REG_MEP_FILTER },
797 { "mep_hash0", DRCI_REG_HASH_TBL0 },
798 { "mep_hash1", DRCI_REG_HASH_TBL1 },
799 { "mep_hash2", DRCI_REG_HASH_TBL2 },
800 { "mep_hash3", DRCI_REG_HASH_TBL3 },
801 { "mep_eui48_hi", DRCI_REG_HW_ADDR_HI },
802 { "mep_eui48_mi", DRCI_REG_HW_ADDR_MI },
803 { "mep_eui48_lo", DRCI_REG_HW_ADDR_LO },
804};
805
806static int get_stat_reg_addr(const struct regs *regs, int size,
807 const char *name, u16 *reg_addr)
808{
809 int i;
810
811 for (i = 0; i < size; i++) {
549d2db7 812 if (sysfs_streq(name, regs[i].name)) {
a747b42c
CG
813 *reg_addr = regs[i].reg;
814 return 0;
815 }
816 }
f470a5b0 817 return -EINVAL;
a747b42c
CG
818}
819
820#define get_static_reg_addr(regs, name, reg_addr) \
821 get_stat_reg_addr(regs, ARRAY_SIZE(regs), name, reg_addr)
822
3d9c54b5 823static ssize_t value_show(struct device *dev, struct device_attribute *attr,
4d5f022f 824 char *buf)
a4198cdf 825{
98a3c4d7 826 const char *name = attr->attr.name;
4d5f022f 827 struct most_dci_obj *dci_obj = to_dci_obj(dev);
0e9b9d08 828 u16 val;
a4198cdf
CG
829 u16 reg_addr;
830 int err;
831
549d2db7 832 if (sysfs_streq(name, "arb_address"))
c0554645 833 return snprintf(buf, PAGE_SIZE, "%04x\n", dci_obj->reg_addr);
98a3c4d7 834
549d2db7 835 if (sysfs_streq(name, "arb_value"))
c0554645 836 reg_addr = dci_obj->reg_addr;
98a3c4d7
CG
837 else if (get_static_reg_addr(ro_regs, name, &reg_addr) &&
838 get_static_reg_addr(rw_regs, name, &reg_addr))
f470a5b0 839 return -EINVAL;
a4198cdf 840
0e9b9d08 841 err = drci_rd_reg(dci_obj->usb_device, reg_addr, &val);
a4198cdf
CG
842 if (err < 0)
843 return err;
844
0e9b9d08 845 return snprintf(buf, PAGE_SIZE, "%04x\n", val);
a4198cdf
CG
846}
847
3d9c54b5 848static ssize_t value_store(struct device *dev, struct device_attribute *attr,
a4198cdf
CG
849 const char *buf, size_t count)
850{
f1b9a843 851 u16 val;
a4198cdf 852 u16 reg_addr;
98a3c4d7 853 const char *name = attr->attr.name;
4d5f022f 854 struct most_dci_obj *dci_obj = to_dci_obj(dev);
e33269f6 855 struct usb_device *usb_dev = dci_obj->usb_device;
a0dbe1b2 856 int err;
a4198cdf 857
a0dbe1b2 858 err = kstrtou16(buf, 16, &val);
c0554645
CG
859 if (err)
860 return err;
861
549d2db7 862 if (sysfs_streq(name, "arb_address")) {
c0554645
CG
863 dci_obj->reg_addr = val;
864 return count;
865 }
98a3c4d7 866
549d2db7 867 if (sysfs_streq(name, "arb_value"))
e33269f6 868 err = drci_wr_reg(usb_dev, dci_obj->reg_addr, val);
549d2db7 869 else if (sysfs_streq(name, "sync_ep"))
e33269f6 870 err = start_sync_ep(usb_dev, val);
b2e8aa52 871 else if (!get_static_reg_addr(rw_regs, name, &reg_addr))
e33269f6
AS
872 err = drci_wr_reg(usb_dev, reg_addr, val);
873 else
f470a5b0 874 return -EINVAL;
a4198cdf 875
a4198cdf
CG
876 if (err < 0)
877 return err;
878
879 return count;
880}
881
f15e3ad3
CG
882static DEVICE_ATTR(ni_state, 0444, value_show, NULL);
883static DEVICE_ATTR(packet_bandwidth, 0444, value_show, NULL);
884static DEVICE_ATTR(node_address, 0444, value_show, NULL);
885static DEVICE_ATTR(node_position, 0444, value_show, NULL);
886static DEVICE_ATTR(sync_ep, 0200, NULL, value_store);
887static DEVICE_ATTR(mep_filter, 0644, value_show, value_store);
888static DEVICE_ATTR(mep_hash0, 0644, value_show, value_store);
889static DEVICE_ATTR(mep_hash1, 0644, value_show, value_store);
890static DEVICE_ATTR(mep_hash2, 0644, value_show, value_store);
891static DEVICE_ATTR(mep_hash3, 0644, value_show, value_store);
892static DEVICE_ATTR(mep_eui48_hi, 0644, value_show, value_store);
893static DEVICE_ATTR(mep_eui48_mi, 0644, value_show, value_store);
894static DEVICE_ATTR(mep_eui48_lo, 0644, value_show, value_store);
895static DEVICE_ATTR(arb_address, 0644, value_show, value_store);
896static DEVICE_ATTR(arb_value, 0644, value_show, value_store);
4d5f022f
CG
897
898static struct attribute *dci_attrs[] = {
899 &dev_attr_ni_state.attr,
900 &dev_attr_packet_bandwidth.attr,
901 &dev_attr_node_address.attr,
902 &dev_attr_node_position.attr,
903 &dev_attr_sync_ep.attr,
904 &dev_attr_mep_filter.attr,
905 &dev_attr_mep_hash0.attr,
906 &dev_attr_mep_hash1.attr,
907 &dev_attr_mep_hash2.attr,
908 &dev_attr_mep_hash3.attr,
909 &dev_attr_mep_eui48_hi.attr,
910 &dev_attr_mep_eui48_mi.attr,
911 &dev_attr_mep_eui48_lo.attr,
912 &dev_attr_arb_address.attr,
913 &dev_attr_arb_value.attr,
a4198cdf
CG
914 NULL,
915};
916
dfeb9380 917ATTRIBUTE_GROUPS(dci);
a4198cdf 918
869d3acd
CG
919static void release_dci(struct device *dev)
920{
921 struct most_dci_obj *dci = to_dci_obj(dev);
922
f1f48239 923 put_device(dev->parent);
869d3acd
CG
924 kfree(dci);
925}
926
723de0f9
CG
927static void release_mdev(struct device *dev)
928{
929 struct most_dev *mdev = to_mdev_from_dev(dev);
930
931 kfree(mdev);
932}
a4198cdf
CG
933/**
934 * hdm_probe - probe function of USB device driver
935 * @interface: Interface of the attached USB device
936 * @id: Pointer to the USB ID table.
937 *
938 * This allocates and initializes the device instance, adds the new
939 * entry to the internal list, scans the USB descriptors and registers
940 * the interface with the core.
941 * Additionally, the DCI objects are created and the hardware is sync'd.
942 *
943 * Return 0 on success. In case of an error a negative number is returned.
944 */
945static int
946hdm_probe(struct usb_interface *interface, const struct usb_device_id *id)
947{
089612f1
CG
948 struct usb_host_interface *usb_iface_desc = interface->cur_altsetting;
949 struct usb_device *usb_dev = interface_to_usbdev(interface);
950 struct device *dev = &usb_dev->dev;
a0dbe1b2 951 struct most_dev *mdev;
a4198cdf
CG
952 unsigned int i;
953 unsigned int num_endpoints;
954 struct most_channel_capability *tmp_cap;
a4198cdf 955 struct usb_endpoint_descriptor *ep_desc;
c1a57be0 956 int ret = -ENOMEM;
a4198cdf 957
a0dbe1b2 958 mdev = kzalloc(sizeof(*mdev), GFP_KERNEL);
a4198cdf 959 if (!mdev)
c1a57be0 960 return -ENOMEM;
a4198cdf
CG
961
962 usb_set_intfdata(interface, mdev);
963 num_endpoints = usb_iface_desc->desc.bNumEndpoints;
c1a57be0
CG
964 if (num_endpoints > MAX_NUM_ENDPOINTS) {
965 kfree(mdev);
966 return -EINVAL;
967 }
a4198cdf
CG
968 mutex_init(&mdev->io_mutex);
969 INIT_WORK(&mdev->poll_work_obj, wq_netinfo);
e99e88a9 970 timer_setup(&mdev->link_stat_timer, link_stat_timer_handler, 0);
a4198cdf
CG
971
972 mdev->usb_device = usb_dev;
a4198cdf
CG
973 mdev->link_stat_timer.expires = jiffies + (2 * HZ);
974
975 mdev->iface.mod = hdm_usb_fops.owner;
723de0f9 976 mdev->iface.dev = &mdev->dev;
69c90cf1 977 mdev->iface.driver_dev = &interface->dev;
a4198cdf
CG
978 mdev->iface.interface = ITYPE_USB;
979 mdev->iface.configure = hdm_configure_channel;
980 mdev->iface.request_netinfo = hdm_request_netinfo;
981 mdev->iface.enqueue = hdm_enqueue;
982 mdev->iface.poison_channel = hdm_poison_channel;
3598cec5
CG
983 mdev->iface.dma_alloc = hdm_dma_alloc;
984 mdev->iface.dma_free = hdm_dma_free;
a4198cdf
CG
985 mdev->iface.description = mdev->description;
986 mdev->iface.num_channels = num_endpoints;
987
988 snprintf(mdev->description, sizeof(mdev->description),
5b082c2e 989 "%d-%s:%d.%d",
a4198cdf
CG
990 usb_dev->bus->busnum,
991 usb_dev->devpath,
992 usb_dev->config->desc.bConfigurationValue,
993 usb_iface_desc->desc.bInterfaceNumber);
994
723de0f9
CG
995 mdev->dev.init_name = mdev->description;
996 mdev->dev.parent = &interface->dev;
997 mdev->dev.release = release_mdev;
a4198cdf
CG
998 mdev->conf = kcalloc(num_endpoints, sizeof(*mdev->conf), GFP_KERNEL);
999 if (!mdev->conf)
bddd3c25 1000 goto err_free_mdev;
a4198cdf
CG
1001
1002 mdev->cap = kcalloc(num_endpoints, sizeof(*mdev->cap), GFP_KERNEL);
1003 if (!mdev->cap)
bddd3c25 1004 goto err_free_conf;
a4198cdf
CG
1005
1006 mdev->iface.channel_vector = mdev->cap;
a4198cdf
CG
1007 mdev->ep_address =
1008 kcalloc(num_endpoints, sizeof(*mdev->ep_address), GFP_KERNEL);
1009 if (!mdev->ep_address)
bddd3c25 1010 goto err_free_cap;
a4198cdf 1011
27e6245e
CG
1012 mdev->busy_urbs =
1013 kcalloc(num_endpoints, sizeof(*mdev->busy_urbs), GFP_KERNEL);
1014 if (!mdev->busy_urbs)
bddd3c25 1015 goto err_free_ep_address;
a4198cdf
CG
1016
1017 tmp_cap = mdev->cap;
1018 for (i = 0; i < num_endpoints; i++) {
1019 ep_desc = &usb_iface_desc->endpoint[i].desc;
1020 mdev->ep_address[i] = ep_desc->bEndpointAddress;
1021 mdev->padding_active[i] = false;
1022 mdev->is_channel_healthy[i] = true;
1023
1024 snprintf(&mdev->suffix[i][0], MAX_SUFFIX_LEN, "ep%02x",
1025 mdev->ep_address[i]);
1026
1027 tmp_cap->name_suffix = &mdev->suffix[i][0];
1028 tmp_cap->buffer_size_packet = MAX_BUF_SIZE;
1029 tmp_cap->buffer_size_streaming = MAX_BUF_SIZE;
1030 tmp_cap->num_buffers_packet = BUF_CHAIN_SIZE;
1031 tmp_cap->num_buffers_streaming = BUF_CHAIN_SIZE;
1032 tmp_cap->data_type = MOST_CH_CONTROL | MOST_CH_ASYNC |
0540609f 1033 MOST_CH_ISOC | MOST_CH_SYNC;
afd14cef 1034 if (usb_endpoint_dir_in(ep_desc))
a4198cdf
CG
1035 tmp_cap->direction = MOST_CH_RX;
1036 else
1037 tmp_cap->direction = MOST_CH_TX;
1038 tmp_cap++;
27e6245e 1039 init_usb_anchor(&mdev->busy_urbs[i]);
88d1878b 1040 spin_lock_init(&mdev->channel_lock[i]);
a4198cdf 1041 }
3dcf93fe
CG
1042 dev_dbg(dev, "claimed gadget: Vendor=%4.4x ProdID=%4.4x Bus=%02x Device=%02x\n",
1043 le16_to_cpu(usb_dev->descriptor.idVendor),
1044 le16_to_cpu(usb_dev->descriptor.idProduct),
1045 usb_dev->bus->busnum,
1046 usb_dev->devnum);
1047
1048 dev_dbg(dev, "device path: /sys/bus/usb/devices/%d-%s:%d.%d\n",
1049 usb_dev->bus->busnum,
1050 usb_dev->devpath,
1051 usb_dev->config->desc.bConfigurationValue,
1052 usb_iface_desc->desc.bInterfaceNumber);
a4198cdf 1053
4d5f022f
CG
1054 ret = most_register_interface(&mdev->iface);
1055 if (ret)
bddd3c25 1056 goto err_free_busy_urbs;
a4198cdf
CG
1057
1058 mutex_lock(&mdev->io_mutex);
654f7ec4 1059 if (le16_to_cpu(usb_dev->descriptor.idProduct) == USB_DEV_ID_OS81118 ||
5bf9bd8d
CG
1060 le16_to_cpu(usb_dev->descriptor.idProduct) == USB_DEV_ID_OS81119 ||
1061 le16_to_cpu(usb_dev->descriptor.idProduct) == USB_DEV_ID_OS81210) {
4d5f022f 1062 mdev->dci = kzalloc(sizeof(*mdev->dci), GFP_KERNEL);
a4198cdf
CG
1063 if (!mdev->dci) {
1064 mutex_unlock(&mdev->io_mutex);
1065 most_deregister_interface(&mdev->iface);
1066 ret = -ENOMEM;
bddd3c25 1067 goto err_free_busy_urbs;
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CG
1068 }
1069
4d5f022f 1070 mdev->dci->dev.init_name = "dci";
723de0f9 1071 mdev->dci->dev.parent = get_device(mdev->iface.dev);
dfeb9380 1072 mdev->dci->dev.groups = dci_groups;
869d3acd 1073 mdev->dci->dev.release = release_dci;
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CG
1074 if (device_register(&mdev->dci->dev)) {
1075 mutex_unlock(&mdev->io_mutex);
1076 most_deregister_interface(&mdev->iface);
1077 ret = -ENOMEM;
bddd3c25 1078 goto err_free_dci;
4d5f022f 1079 }
a4198cdf 1080 mdev->dci->usb_device = mdev->usb_device;
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CG
1081 }
1082 mutex_unlock(&mdev->io_mutex);
1083 return 0;
bddd3c25 1084err_free_dci:
723de0f9 1085 put_device(&mdev->dci->dev);
bddd3c25 1086err_free_busy_urbs:
27e6245e 1087 kfree(mdev->busy_urbs);
bddd3c25 1088err_free_ep_address:
a4198cdf 1089 kfree(mdev->ep_address);
bddd3c25 1090err_free_cap:
a4198cdf 1091 kfree(mdev->cap);
bddd3c25 1092err_free_conf:
a4198cdf 1093 kfree(mdev->conf);
bddd3c25 1094err_free_mdev:
723de0f9 1095 put_device(&mdev->dev);
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CG
1096 return ret;
1097}
1098
1099/**
1100 * hdm_disconnect - disconnect function of USB device driver
1101 * @interface: Interface of the attached USB device
1102 *
1103 * This deregisters the interface with the core, removes the kernel timer
1104 * and frees resources.
1105 *
1106 * Context: hub kernel thread
1107 */
1108static void hdm_disconnect(struct usb_interface *interface)
1109{
089612f1 1110 struct most_dev *mdev = usb_get_intfdata(interface);
a4198cdf 1111
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CG
1112 mutex_lock(&mdev->io_mutex);
1113 usb_set_intfdata(interface, NULL);
1114 mdev->usb_device = NULL;
1115 mutex_unlock(&mdev->io_mutex);
1116
1117 del_timer_sync(&mdev->link_stat_timer);
1118 cancel_work_sync(&mdev->poll_work_obj);
1119
fc157998
CG
1120 if (mdev->dci)
1121 device_unregister(&mdev->dci->dev);
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CG
1122 most_deregister_interface(&mdev->iface);
1123
27e6245e 1124 kfree(mdev->busy_urbs);
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CG
1125 kfree(mdev->cap);
1126 kfree(mdev->conf);
1127 kfree(mdev->ep_address);
f1f48239 1128 put_device(&mdev->dci->dev);
723de0f9 1129 put_device(&mdev->dev);
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CG
1130}
1131
08e1b427
CG
1132static int hdm_suspend(struct usb_interface *interface, pm_message_t message)
1133{
1134 struct most_dev *mdev = usb_get_intfdata(interface);
1135 int i;
1136
1137 mutex_lock(&mdev->io_mutex);
1138 for (i = 0; i < mdev->iface.num_channels; i++) {
1139 most_stop_enqueue(&mdev->iface, i);
1140 usb_kill_anchored_urbs(&mdev->busy_urbs[i]);
1141 }
1142 mutex_unlock(&mdev->io_mutex);
1143 return 0;
1144}
1145
1146static int hdm_resume(struct usb_interface *interface)
1147{
1148 struct most_dev *mdev = usb_get_intfdata(interface);
1149 int i;
1150
1151 mutex_lock(&mdev->io_mutex);
1152 for (i = 0; i < mdev->iface.num_channels; i++)
1153 most_resume_enqueue(&mdev->iface, i);
1154 mutex_unlock(&mdev->io_mutex);
1155 return 0;
1156}
1157
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CG
1158static struct usb_driver hdm_usb = {
1159 .name = "hdm_usb",
1160 .id_table = usbid,
1161 .probe = hdm_probe,
1162 .disconnect = hdm_disconnect,
08e1b427
CG
1163 .resume = hdm_resume,
1164 .suspend = hdm_suspend,
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CG
1165};
1166
b9d7adc4 1167module_usb_driver(hdm_usb);
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CG
1168MODULE_LICENSE("GPL");
1169MODULE_AUTHOR("Christian Gromm <christian.gromm@microchip.com>");
1170MODULE_DESCRIPTION("HDM_4_USB");