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69354a83 HG |
1 | /* |
2 | * USB redirector usb-guest | |
3 | * | |
cb897117 | 4 | * Copyright (c) 2011-2012 Red Hat, Inc. |
69354a83 HG |
5 | * |
6 | * Red Hat Authors: | |
7 | * Hans de Goede <[email protected]> | |
8 | * | |
9 | * Permission is hereby granted, free of charge, to any person obtaining a copy | |
10 | * of this software and associated documentation files (the "Software"), to deal | |
11 | * in the Software without restriction, including without limitation the rights | |
12 | * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell | |
13 | * copies of the Software, and to permit persons to whom the Software is | |
14 | * furnished to do so, subject to the following conditions: | |
15 | * | |
16 | * The above copyright notice and this permission notice shall be included in | |
17 | * all copies or substantial portions of the Software. | |
18 | * | |
19 | * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR | |
20 | * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, | |
21 | * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL | |
22 | * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER | |
23 | * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, | |
24 | * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN | |
25 | * THE SOFTWARE. | |
26 | */ | |
27 | ||
28 | #include "qemu-common.h" | |
1de7afc9 | 29 | #include "qemu/timer.h" |
83c9089e | 30 | #include "monitor/monitor.h" |
9c17d615 | 31 | #include "sysemu/sysemu.h" |
1de7afc9 | 32 | #include "qemu/iov.h" |
62054c06 | 33 | #include "char/char.h" |
69354a83 HG |
34 | |
35 | #include <dirent.h> | |
36 | #include <sys/ioctl.h> | |
37 | #include <signal.h> | |
38 | #include <usbredirparser.h> | |
6af16589 | 39 | #include <usbredirfilter.h> |
69354a83 HG |
40 | |
41 | #include "hw/usb.h" | |
42 | ||
43 | #define MAX_ENDPOINTS 32 | |
1510168e | 44 | #define NO_INTERFACE_INFO 255 /* Valid interface_count always <= 32 */ |
69354a83 HG |
45 | #define EP2I(ep_address) (((ep_address & 0x80) >> 3) | (ep_address & 0x0f)) |
46 | #define I2EP(i) (((i & 0x10) << 3) | (i & 0x0f)) | |
7e9638d3 HG |
47 | #define USBEP2I(usb_ep) (((usb_ep)->pid == USB_TOKEN_IN) ? \ |
48 | ((usb_ep)->nr | 0x10) : ((usb_ep)->nr)) | |
49 | #define I2USBEP(d, i) (usb_ep_get(&(d)->dev, \ | |
50 | ((i) & 0x10) ? USB_TOKEN_IN : USB_TOKEN_OUT, \ | |
51 | (i) & 0x0f)) | |
69354a83 | 52 | |
69354a83 HG |
53 | typedef struct USBRedirDevice USBRedirDevice; |
54 | ||
55 | /* Struct to hold buffered packets (iso or int input packets) */ | |
56 | struct buf_packet { | |
57 | uint8_t *data; | |
58 | int len; | |
59 | int status; | |
60 | QTAILQ_ENTRY(buf_packet)next; | |
61 | }; | |
62 | ||
63 | struct endp_data { | |
64 | uint8_t type; | |
65 | uint8_t interval; | |
66 | uint8_t interface; /* bInterfaceNumber this ep belongs to */ | |
3f4be328 | 67 | uint16_t max_packet_size; /* In bytes, not wMaxPacketSize format !! */ |
69354a83 HG |
68 | uint8_t iso_started; |
69 | uint8_t iso_error; /* For reporting iso errors to the HC */ | |
70 | uint8_t interrupt_started; | |
71 | uint8_t interrupt_error; | |
e1537884 | 72 | uint8_t bufpq_prefilled; |
81fd7b74 | 73 | uint8_t bufpq_dropping_packets; |
69354a83 | 74 | QTAILQ_HEAD(, buf_packet) bufpq; |
fc3f6e1b HG |
75 | int32_t bufpq_size; |
76 | int32_t bufpq_target_size; | |
69354a83 HG |
77 | }; |
78 | ||
8e60452a HG |
79 | struct PacketIdQueueEntry { |
80 | uint64_t id; | |
81 | QTAILQ_ENTRY(PacketIdQueueEntry)next; | |
82 | }; | |
83 | ||
84 | struct PacketIdQueue { | |
85 | USBRedirDevice *dev; | |
86 | const char *name; | |
87 | QTAILQ_HEAD(, PacketIdQueueEntry) head; | |
88 | int size; | |
89 | }; | |
90 | ||
69354a83 HG |
91 | struct USBRedirDevice { |
92 | USBDevice dev; | |
93 | /* Properties */ | |
94 | CharDriverState *cs; | |
95 | uint8_t debug; | |
6af16589 | 96 | char *filter_str; |
65bb3a5c | 97 | int32_t bootindex; |
69354a83 HG |
98 | /* Data passed from chardev the fd_read cb to the usbredirparser read cb */ |
99 | const uint8_t *read_buf; | |
100 | int read_buf_size; | |
ed9873bf HG |
101 | /* For async handling of close */ |
102 | QEMUBH *chardev_close_bh; | |
69354a83 HG |
103 | /* To delay the usb attach in case of quick chardev close + open */ |
104 | QEMUTimer *attach_timer; | |
105 | int64_t next_attach_time; | |
106 | struct usbredirparser *parser; | |
107 | struct endp_data endpoint[MAX_ENDPOINTS]; | |
8e60452a | 108 | struct PacketIdQueue cancelled; |
9a8d4067 | 109 | struct PacketIdQueue already_in_flight; |
6af16589 HG |
110 | /* Data for device filtering */ |
111 | struct usb_redir_device_connect_header device_info; | |
112 | struct usb_redir_interface_info_header interface_info; | |
113 | struct usbredirfilter_rule *filter_rules; | |
114 | int filter_rules_count; | |
cdfd3530 | 115 | int compatible_speedmask; |
69354a83 HG |
116 | }; |
117 | ||
097a66ef | 118 | static void usbredir_hello(void *priv, struct usb_redir_hello_header *h); |
69354a83 HG |
119 | static void usbredir_device_connect(void *priv, |
120 | struct usb_redir_device_connect_header *device_connect); | |
121 | static void usbredir_device_disconnect(void *priv); | |
122 | static void usbredir_interface_info(void *priv, | |
123 | struct usb_redir_interface_info_header *interface_info); | |
124 | static void usbredir_ep_info(void *priv, | |
125 | struct usb_redir_ep_info_header *ep_info); | |
be4a8928 | 126 | static void usbredir_configuration_status(void *priv, uint64_t id, |
69354a83 | 127 | struct usb_redir_configuration_status_header *configuration_status); |
be4a8928 | 128 | static void usbredir_alt_setting_status(void *priv, uint64_t id, |
69354a83 | 129 | struct usb_redir_alt_setting_status_header *alt_setting_status); |
be4a8928 | 130 | static void usbredir_iso_stream_status(void *priv, uint64_t id, |
69354a83 | 131 | struct usb_redir_iso_stream_status_header *iso_stream_status); |
be4a8928 | 132 | static void usbredir_interrupt_receiving_status(void *priv, uint64_t id, |
69354a83 HG |
133 | struct usb_redir_interrupt_receiving_status_header |
134 | *interrupt_receiving_status); | |
be4a8928 | 135 | static void usbredir_bulk_streams_status(void *priv, uint64_t id, |
69354a83 | 136 | struct usb_redir_bulk_streams_status_header *bulk_streams_status); |
be4a8928 | 137 | static void usbredir_control_packet(void *priv, uint64_t id, |
69354a83 HG |
138 | struct usb_redir_control_packet_header *control_packet, |
139 | uint8_t *data, int data_len); | |
be4a8928 | 140 | static void usbredir_bulk_packet(void *priv, uint64_t id, |
69354a83 HG |
141 | struct usb_redir_bulk_packet_header *bulk_packet, |
142 | uint8_t *data, int data_len); | |
be4a8928 | 143 | static void usbredir_iso_packet(void *priv, uint64_t id, |
69354a83 HG |
144 | struct usb_redir_iso_packet_header *iso_packet, |
145 | uint8_t *data, int data_len); | |
be4a8928 | 146 | static void usbredir_interrupt_packet(void *priv, uint64_t id, |
69354a83 HG |
147 | struct usb_redir_interrupt_packet_header *interrupt_header, |
148 | uint8_t *data, int data_len); | |
149 | ||
9a77a0f5 HG |
150 | static void usbredir_handle_status(USBRedirDevice *dev, USBPacket *p, |
151 | int status); | |
69354a83 | 152 | |
35efba2c HG |
153 | #define VERSION "qemu usb-redir guest " QEMU_VERSION |
154 | ||
69354a83 HG |
155 | /* |
156 | * Logging stuff | |
157 | */ | |
158 | ||
159 | #define ERROR(...) \ | |
160 | do { \ | |
161 | if (dev->debug >= usbredirparser_error) { \ | |
162 | error_report("usb-redir error: " __VA_ARGS__); \ | |
163 | } \ | |
164 | } while (0) | |
165 | #define WARNING(...) \ | |
166 | do { \ | |
167 | if (dev->debug >= usbredirparser_warning) { \ | |
168 | error_report("usb-redir warning: " __VA_ARGS__); \ | |
169 | } \ | |
170 | } while (0) | |
171 | #define INFO(...) \ | |
172 | do { \ | |
173 | if (dev->debug >= usbredirparser_info) { \ | |
174 | error_report("usb-redir: " __VA_ARGS__); \ | |
175 | } \ | |
176 | } while (0) | |
177 | #define DPRINTF(...) \ | |
178 | do { \ | |
179 | if (dev->debug >= usbredirparser_debug) { \ | |
180 | error_report("usb-redir: " __VA_ARGS__); \ | |
181 | } \ | |
182 | } while (0) | |
183 | #define DPRINTF2(...) \ | |
184 | do { \ | |
185 | if (dev->debug >= usbredirparser_debug_data) { \ | |
186 | error_report("usb-redir: " __VA_ARGS__); \ | |
187 | } \ | |
188 | } while (0) | |
189 | ||
190 | static void usbredir_log(void *priv, int level, const char *msg) | |
191 | { | |
192 | USBRedirDevice *dev = priv; | |
193 | ||
194 | if (dev->debug < level) { | |
195 | return; | |
196 | } | |
197 | ||
be62a2eb | 198 | error_report("%s", msg); |
69354a83 HG |
199 | } |
200 | ||
201 | static void usbredir_log_data(USBRedirDevice *dev, const char *desc, | |
202 | const uint8_t *data, int len) | |
203 | { | |
204 | int i, j, n; | |
205 | ||
206 | if (dev->debug < usbredirparser_debug_data) { | |
207 | return; | |
208 | } | |
209 | ||
210 | for (i = 0; i < len; i += j) { | |
211 | char buf[128]; | |
212 | ||
213 | n = sprintf(buf, "%s", desc); | |
214 | for (j = 0; j < 8 && i + j < len; j++) { | |
215 | n += sprintf(buf + n, " %02X", data[i + j]); | |
216 | } | |
be62a2eb | 217 | error_report("%s", buf); |
69354a83 HG |
218 | } |
219 | } | |
220 | ||
221 | /* | |
222 | * usbredirparser io functions | |
223 | */ | |
224 | ||
225 | static int usbredir_read(void *priv, uint8_t *data, int count) | |
226 | { | |
227 | USBRedirDevice *dev = priv; | |
228 | ||
229 | if (dev->read_buf_size < count) { | |
230 | count = dev->read_buf_size; | |
231 | } | |
232 | ||
233 | memcpy(data, dev->read_buf, count); | |
234 | ||
235 | dev->read_buf_size -= count; | |
236 | if (dev->read_buf_size) { | |
237 | dev->read_buf += count; | |
238 | } else { | |
239 | dev->read_buf = NULL; | |
240 | } | |
241 | ||
242 | return count; | |
243 | } | |
244 | ||
245 | static int usbredir_write(void *priv, uint8_t *data, int count) | |
246 | { | |
247 | USBRedirDevice *dev = priv; | |
248 | ||
c1b71a1d HG |
249 | if (!dev->cs->opened) { |
250 | return 0; | |
251 | } | |
252 | ||
fc3f6e1b HG |
253 | /* Don't send new data to the chardev until our state is fully synced */ |
254 | if (!runstate_check(RUN_STATE_RUNNING)) { | |
255 | return 0; | |
256 | } | |
257 | ||
2cc6e0a1 | 258 | return qemu_chr_fe_write(dev->cs, data, count); |
69354a83 HG |
259 | } |
260 | ||
261 | /* | |
de550a6a | 262 | * Cancelled and buffered packets helpers |
69354a83 HG |
263 | */ |
264 | ||
8e60452a HG |
265 | static void packet_id_queue_init(struct PacketIdQueue *q, |
266 | USBRedirDevice *dev, const char *name) | |
69354a83 | 267 | { |
8e60452a HG |
268 | q->dev = dev; |
269 | q->name = name; | |
270 | QTAILQ_INIT(&q->head); | |
271 | q->size = 0; | |
272 | } | |
273 | ||
274 | static void packet_id_queue_add(struct PacketIdQueue *q, uint64_t id) | |
275 | { | |
276 | USBRedirDevice *dev = q->dev; | |
277 | struct PacketIdQueueEntry *e; | |
69354a83 | 278 | |
8e60452a HG |
279 | DPRINTF("adding packet id %"PRIu64" to %s queue\n", id, q->name); |
280 | ||
281 | e = g_malloc0(sizeof(struct PacketIdQueueEntry)); | |
282 | e->id = id; | |
283 | QTAILQ_INSERT_TAIL(&q->head, e, next); | |
284 | q->size++; | |
285 | } | |
69354a83 | 286 | |
8e60452a HG |
287 | static int packet_id_queue_remove(struct PacketIdQueue *q, uint64_t id) |
288 | { | |
289 | USBRedirDevice *dev = q->dev; | |
290 | struct PacketIdQueueEntry *e; | |
de550a6a | 291 | |
8e60452a HG |
292 | QTAILQ_FOREACH(e, &q->head, next) { |
293 | if (e->id == id) { | |
294 | DPRINTF("removing packet id %"PRIu64" from %s queue\n", | |
295 | id, q->name); | |
296 | QTAILQ_REMOVE(&q->head, e, next); | |
297 | q->size--; | |
298 | g_free(e); | |
299 | return 1; | |
300 | } | |
301 | } | |
302 | return 0; | |
303 | } | |
304 | ||
305 | static void packet_id_queue_empty(struct PacketIdQueue *q) | |
306 | { | |
307 | USBRedirDevice *dev = q->dev; | |
308 | struct PacketIdQueueEntry *e, *next_e; | |
309 | ||
310 | DPRINTF("removing %d packet-ids from %s queue\n", q->size, q->name); | |
311 | ||
312 | QTAILQ_FOREACH_SAFE(e, &q->head, next, next_e) { | |
313 | QTAILQ_REMOVE(&q->head, e, next); | |
314 | g_free(e); | |
315 | } | |
316 | q->size = 0; | |
317 | } | |
318 | ||
319 | static void usbredir_cancel_packet(USBDevice *udev, USBPacket *p) | |
320 | { | |
321 | USBRedirDevice *dev = DO_UPCAST(USBRedirDevice, dev, udev); | |
322 | ||
1b36c4d8 HG |
323 | if (p->combined) { |
324 | usb_combined_packet_cancel(udev, p); | |
325 | return; | |
326 | } | |
327 | ||
8e60452a | 328 | packet_id_queue_add(&dev->cancelled, p->id); |
de550a6a HG |
329 | usbredirparser_send_cancel_data_packet(dev->parser, p->id); |
330 | usbredirparser_do_write(dev->parser); | |
69354a83 HG |
331 | } |
332 | ||
de550a6a | 333 | static int usbredir_is_cancelled(USBRedirDevice *dev, uint64_t id) |
69354a83 | 334 | { |
de550a6a HG |
335 | if (!dev->dev.attached) { |
336 | return 1; /* Treat everything as cancelled after a disconnect */ | |
337 | } | |
8e60452a | 338 | return packet_id_queue_remove(&dev->cancelled, id); |
69354a83 HG |
339 | } |
340 | ||
9a8d4067 HG |
341 | static void usbredir_fill_already_in_flight_from_ep(USBRedirDevice *dev, |
342 | struct USBEndpoint *ep) | |
343 | { | |
344 | static USBPacket *p; | |
345 | ||
346 | QTAILQ_FOREACH(p, &ep->queue, queue) { | |
1b36c4d8 HG |
347 | /* Skip combined packets, except for the first */ |
348 | if (p->combined && p != p->combined->first) { | |
349 | continue; | |
350 | } | |
2cb343b4 HG |
351 | if (p->state == USB_PACKET_ASYNC) { |
352 | packet_id_queue_add(&dev->already_in_flight, p->id); | |
353 | } | |
9a8d4067 HG |
354 | } |
355 | } | |
356 | ||
357 | static void usbredir_fill_already_in_flight(USBRedirDevice *dev) | |
358 | { | |
359 | int ep; | |
360 | struct USBDevice *udev = &dev->dev; | |
361 | ||
362 | usbredir_fill_already_in_flight_from_ep(dev, &udev->ep_ctl); | |
363 | ||
364 | for (ep = 0; ep < USB_MAX_ENDPOINTS; ep++) { | |
365 | usbredir_fill_already_in_flight_from_ep(dev, &udev->ep_in[ep]); | |
366 | usbredir_fill_already_in_flight_from_ep(dev, &udev->ep_out[ep]); | |
367 | } | |
368 | } | |
369 | ||
370 | static int usbredir_already_in_flight(USBRedirDevice *dev, uint64_t id) | |
371 | { | |
372 | return packet_id_queue_remove(&dev->already_in_flight, id); | |
373 | } | |
374 | ||
de550a6a HG |
375 | static USBPacket *usbredir_find_packet_by_id(USBRedirDevice *dev, |
376 | uint8_t ep, uint64_t id) | |
69354a83 | 377 | { |
de550a6a | 378 | USBPacket *p; |
69354a83 | 379 | |
de550a6a HG |
380 | if (usbredir_is_cancelled(dev, id)) { |
381 | return NULL; | |
382 | } | |
69354a83 | 383 | |
de550a6a HG |
384 | p = usb_ep_find_packet_by_id(&dev->dev, |
385 | (ep & USB_DIR_IN) ? USB_TOKEN_IN : USB_TOKEN_OUT, | |
386 | ep & 0x0f, id); | |
387 | if (p == NULL) { | |
388 | ERROR("could not find packet with id %"PRIu64"\n", id); | |
69354a83 | 389 | } |
de550a6a | 390 | return p; |
69354a83 HG |
391 | } |
392 | ||
81fd7b74 | 393 | static void bufp_alloc(USBRedirDevice *dev, |
69354a83 HG |
394 | uint8_t *data, int len, int status, uint8_t ep) |
395 | { | |
81fd7b74 HG |
396 | struct buf_packet *bufp; |
397 | ||
398 | if (!dev->endpoint[EP2I(ep)].bufpq_dropping_packets && | |
399 | dev->endpoint[EP2I(ep)].bufpq_size > | |
400 | 2 * dev->endpoint[EP2I(ep)].bufpq_target_size) { | |
401 | DPRINTF("bufpq overflow, dropping packets ep %02X\n", ep); | |
402 | dev->endpoint[EP2I(ep)].bufpq_dropping_packets = 1; | |
403 | } | |
404 | /* Since we're interupting the stream anyways, drop enough packets to get | |
405 | back to our target buffer size */ | |
406 | if (dev->endpoint[EP2I(ep)].bufpq_dropping_packets) { | |
407 | if (dev->endpoint[EP2I(ep)].bufpq_size > | |
408 | dev->endpoint[EP2I(ep)].bufpq_target_size) { | |
409 | free(data); | |
410 | return; | |
411 | } | |
412 | dev->endpoint[EP2I(ep)].bufpq_dropping_packets = 0; | |
413 | } | |
414 | ||
415 | bufp = g_malloc(sizeof(struct buf_packet)); | |
69354a83 HG |
416 | bufp->data = data; |
417 | bufp->len = len; | |
418 | bufp->status = status; | |
419 | QTAILQ_INSERT_TAIL(&dev->endpoint[EP2I(ep)].bufpq, bufp, next); | |
e1537884 | 420 | dev->endpoint[EP2I(ep)].bufpq_size++; |
69354a83 HG |
421 | } |
422 | ||
423 | static void bufp_free(USBRedirDevice *dev, struct buf_packet *bufp, | |
424 | uint8_t ep) | |
425 | { | |
426 | QTAILQ_REMOVE(&dev->endpoint[EP2I(ep)].bufpq, bufp, next); | |
e1537884 | 427 | dev->endpoint[EP2I(ep)].bufpq_size--; |
69354a83 | 428 | free(bufp->data); |
7267c094 | 429 | g_free(bufp); |
69354a83 HG |
430 | } |
431 | ||
432 | static void usbredir_free_bufpq(USBRedirDevice *dev, uint8_t ep) | |
433 | { | |
434 | struct buf_packet *buf, *buf_next; | |
435 | ||
436 | QTAILQ_FOREACH_SAFE(buf, &dev->endpoint[EP2I(ep)].bufpq, next, buf_next) { | |
437 | bufp_free(dev, buf, ep); | |
438 | } | |
439 | } | |
440 | ||
441 | /* | |
442 | * USBDevice callbacks | |
443 | */ | |
444 | ||
445 | static void usbredir_handle_reset(USBDevice *udev) | |
446 | { | |
447 | USBRedirDevice *dev = DO_UPCAST(USBRedirDevice, dev, udev); | |
448 | ||
449 | DPRINTF("reset device\n"); | |
450 | usbredirparser_send_reset(dev->parser); | |
451 | usbredirparser_do_write(dev->parser); | |
452 | } | |
453 | ||
9a77a0f5 | 454 | static void usbredir_handle_iso_data(USBRedirDevice *dev, USBPacket *p, |
69354a83 HG |
455 | uint8_t ep) |
456 | { | |
457 | int status, len; | |
69354a83 HG |
458 | if (!dev->endpoint[EP2I(ep)].iso_started && |
459 | !dev->endpoint[EP2I(ep)].iso_error) { | |
460 | struct usb_redir_start_iso_stream_header start_iso = { | |
461 | .endpoint = ep, | |
69354a83 | 462 | }; |
e8a7dd29 HG |
463 | int pkts_per_sec; |
464 | ||
465 | if (dev->dev.speed == USB_SPEED_HIGH) { | |
466 | pkts_per_sec = 8000 / dev->endpoint[EP2I(ep)].interval; | |
467 | } else { | |
468 | pkts_per_sec = 1000 / dev->endpoint[EP2I(ep)].interval; | |
469 | } | |
470 | /* Testing has shown that we need circa 60 ms buffer */ | |
471 | dev->endpoint[EP2I(ep)].bufpq_target_size = (pkts_per_sec * 60) / 1000; | |
472 | ||
473 | /* Aim for approx 100 interrupts / second on the client to | |
474 | balance latency and interrupt load */ | |
475 | start_iso.pkts_per_urb = pkts_per_sec / 100; | |
476 | if (start_iso.pkts_per_urb < 1) { | |
477 | start_iso.pkts_per_urb = 1; | |
478 | } else if (start_iso.pkts_per_urb > 32) { | |
479 | start_iso.pkts_per_urb = 32; | |
480 | } | |
481 | ||
482 | start_iso.no_urbs = (dev->endpoint[EP2I(ep)].bufpq_target_size + | |
483 | start_iso.pkts_per_urb - 1) / | |
484 | start_iso.pkts_per_urb; | |
485 | /* Output endpoints pre-fill only 1/2 of the packets, keeping the rest | |
486 | as overflow buffer. Also see the usbredir protocol documentation */ | |
487 | if (!(ep & USB_DIR_IN)) { | |
488 | start_iso.no_urbs *= 2; | |
489 | } | |
490 | if (start_iso.no_urbs > 16) { | |
491 | start_iso.no_urbs = 16; | |
492 | } | |
493 | ||
69354a83 HG |
494 | /* No id, we look at the ep when receiving a status back */ |
495 | usbredirparser_send_start_iso_stream(dev->parser, 0, &start_iso); | |
496 | usbredirparser_do_write(dev->parser); | |
32213543 HG |
497 | DPRINTF("iso stream started pkts/sec %d pkts/urb %d urbs %d ep %02X\n", |
498 | pkts_per_sec, start_iso.pkts_per_urb, start_iso.no_urbs, ep); | |
69354a83 | 499 | dev->endpoint[EP2I(ep)].iso_started = 1; |
e1537884 | 500 | dev->endpoint[EP2I(ep)].bufpq_prefilled = 0; |
81fd7b74 | 501 | dev->endpoint[EP2I(ep)].bufpq_dropping_packets = 0; |
69354a83 HG |
502 | } |
503 | ||
504 | if (ep & USB_DIR_IN) { | |
505 | struct buf_packet *isop; | |
506 | ||
e1537884 HG |
507 | if (dev->endpoint[EP2I(ep)].iso_started && |
508 | !dev->endpoint[EP2I(ep)].bufpq_prefilled) { | |
509 | if (dev->endpoint[EP2I(ep)].bufpq_size < | |
510 | dev->endpoint[EP2I(ep)].bufpq_target_size) { | |
9a77a0f5 | 511 | return; |
e1537884 HG |
512 | } |
513 | dev->endpoint[EP2I(ep)].bufpq_prefilled = 1; | |
514 | } | |
515 | ||
69354a83 HG |
516 | isop = QTAILQ_FIRST(&dev->endpoint[EP2I(ep)].bufpq); |
517 | if (isop == NULL) { | |
32213543 HG |
518 | DPRINTF("iso-token-in ep %02X, no isop, iso_error: %d\n", |
519 | ep, dev->endpoint[EP2I(ep)].iso_error); | |
e1537884 HG |
520 | /* Re-fill the buffer */ |
521 | dev->endpoint[EP2I(ep)].bufpq_prefilled = 0; | |
69354a83 HG |
522 | /* Check iso_error for stream errors, otherwise its an underrun */ |
523 | status = dev->endpoint[EP2I(ep)].iso_error; | |
524 | dev->endpoint[EP2I(ep)].iso_error = 0; | |
9a77a0f5 HG |
525 | p->status = status ? USB_RET_IOERROR : USB_RET_SUCCESS; |
526 | return; | |
69354a83 | 527 | } |
32213543 HG |
528 | DPRINTF2("iso-token-in ep %02X status %d len %d queue-size: %d\n", ep, |
529 | isop->status, isop->len, dev->endpoint[EP2I(ep)].bufpq_size); | |
69354a83 HG |
530 | |
531 | status = isop->status; | |
69354a83 | 532 | len = isop->len; |
4f4321c1 | 533 | if (len > p->iov.size) { |
32213543 HG |
534 | ERROR("received iso data is larger then packet ep %02X (%d > %d)\n", |
535 | ep, len, (int)p->iov.size); | |
e94ca437 HG |
536 | len = p->iov.size; |
537 | status = usb_redir_babble; | |
69354a83 | 538 | } |
4f4321c1 | 539 | usb_packet_copy(p, isop->data, len); |
69354a83 | 540 | bufp_free(dev, isop, ep); |
e94ca437 | 541 | usbredir_handle_status(dev, p, status); |
69354a83 HG |
542 | } else { |
543 | /* If the stream was not started because of a pending error don't | |
544 | send the packet to the usb-host */ | |
545 | if (dev->endpoint[EP2I(ep)].iso_started) { | |
546 | struct usb_redir_iso_packet_header iso_packet = { | |
547 | .endpoint = ep, | |
4f4321c1 | 548 | .length = p->iov.size |
69354a83 | 549 | }; |
4f4321c1 | 550 | uint8_t buf[p->iov.size]; |
69354a83 | 551 | /* No id, we look at the ep when receiving a status back */ |
4f4321c1 | 552 | usb_packet_copy(p, buf, p->iov.size); |
69354a83 | 553 | usbredirparser_send_iso_packet(dev->parser, 0, &iso_packet, |
4f4321c1 | 554 | buf, p->iov.size); |
69354a83 HG |
555 | usbredirparser_do_write(dev->parser); |
556 | } | |
557 | status = dev->endpoint[EP2I(ep)].iso_error; | |
558 | dev->endpoint[EP2I(ep)].iso_error = 0; | |
4f4321c1 GH |
559 | DPRINTF2("iso-token-out ep %02X status %d len %zd\n", ep, status, |
560 | p->iov.size); | |
9a77a0f5 | 561 | usbredir_handle_status(dev, p, status); |
69354a83 HG |
562 | } |
563 | } | |
564 | ||
565 | static void usbredir_stop_iso_stream(USBRedirDevice *dev, uint8_t ep) | |
566 | { | |
567 | struct usb_redir_stop_iso_stream_header stop_iso_stream = { | |
568 | .endpoint = ep | |
569 | }; | |
570 | if (dev->endpoint[EP2I(ep)].iso_started) { | |
571 | usbredirparser_send_stop_iso_stream(dev->parser, 0, &stop_iso_stream); | |
572 | DPRINTF("iso stream stopped ep %02X\n", ep); | |
573 | dev->endpoint[EP2I(ep)].iso_started = 0; | |
574 | } | |
2bd836e5 | 575 | dev->endpoint[EP2I(ep)].iso_error = 0; |
69354a83 HG |
576 | usbredir_free_bufpq(dev, ep); |
577 | } | |
578 | ||
9a77a0f5 | 579 | static void usbredir_handle_bulk_data(USBRedirDevice *dev, USBPacket *p, |
69354a83 HG |
580 | uint8_t ep) |
581 | { | |
69354a83 | 582 | struct usb_redir_bulk_packet_header bulk_packet; |
1b36c4d8 | 583 | size_t size = (p->combined) ? p->combined->iov.size : p->iov.size; |
69354a83 | 584 | |
1b36c4d8 | 585 | DPRINTF("bulk-out ep %02X len %zd id %"PRIu64"\n", ep, size, p->id); |
69354a83 | 586 | |
9a8d4067 | 587 | if (usbredir_already_in_flight(dev, p->id)) { |
9a77a0f5 HG |
588 | p->status = USB_RET_ASYNC; |
589 | return; | |
9a8d4067 HG |
590 | } |
591 | ||
69354a83 | 592 | bulk_packet.endpoint = ep; |
1b36c4d8 | 593 | bulk_packet.length = size; |
69354a83 | 594 | bulk_packet.stream_id = 0; |
1b36c4d8 | 595 | bulk_packet.length_high = size >> 16; |
c19a7981 HG |
596 | assert(bulk_packet.length_high == 0 || |
597 | usbredirparser_peer_has_cap(dev->parser, | |
598 | usb_redir_cap_32bits_bulk_length)); | |
69354a83 HG |
599 | |
600 | if (ep & USB_DIR_IN) { | |
de550a6a | 601 | usbredirparser_send_bulk_packet(dev->parser, p->id, |
69354a83 HG |
602 | &bulk_packet, NULL, 0); |
603 | } else { | |
1b36c4d8 HG |
604 | uint8_t buf[size]; |
605 | if (p->combined) { | |
606 | iov_to_buf(p->combined->iov.iov, p->combined->iov.niov, | |
607 | 0, buf, size); | |
608 | } else { | |
609 | usb_packet_copy(p, buf, size); | |
610 | } | |
611 | usbredir_log_data(dev, "bulk data out:", buf, size); | |
de550a6a | 612 | usbredirparser_send_bulk_packet(dev->parser, p->id, |
1b36c4d8 | 613 | &bulk_packet, buf, size); |
69354a83 HG |
614 | } |
615 | usbredirparser_do_write(dev->parser); | |
9a77a0f5 | 616 | p->status = USB_RET_ASYNC; |
69354a83 HG |
617 | } |
618 | ||
234e810c HG |
619 | static void usbredir_handle_interrupt_in_data(USBRedirDevice *dev, |
620 | USBPacket *p, uint8_t ep) | |
69354a83 | 621 | { |
234e810c HG |
622 | /* Input interrupt endpoint, buffered packet input */ |
623 | struct buf_packet *intp; | |
624 | int status, len; | |
69354a83 | 625 | |
234e810c HG |
626 | if (!dev->endpoint[EP2I(ep)].interrupt_started && |
627 | !dev->endpoint[EP2I(ep)].interrupt_error) { | |
628 | struct usb_redir_start_interrupt_receiving_header start_int = { | |
629 | .endpoint = ep, | |
630 | }; | |
631 | /* No id, we look at the ep when receiving a status back */ | |
632 | usbredirparser_send_start_interrupt_receiving(dev->parser, 0, | |
633 | &start_int); | |
634 | usbredirparser_do_write(dev->parser); | |
635 | DPRINTF("interrupt recv started ep %02X\n", ep); | |
636 | dev->endpoint[EP2I(ep)].interrupt_started = 1; | |
637 | /* We don't really want to drop interrupt packets ever, but | |
638 | having some upper limit to how much we buffer is good. */ | |
639 | dev->endpoint[EP2I(ep)].bufpq_target_size = 1000; | |
640 | dev->endpoint[EP2I(ep)].bufpq_dropping_packets = 0; | |
641 | } | |
69354a83 | 642 | |
234e810c HG |
643 | intp = QTAILQ_FIRST(&dev->endpoint[EP2I(ep)].bufpq); |
644 | if (intp == NULL) { | |
645 | DPRINTF2("interrupt-token-in ep %02X, no intp\n", ep); | |
646 | /* Check interrupt_error for stream errors */ | |
647 | status = dev->endpoint[EP2I(ep)].interrupt_error; | |
648 | dev->endpoint[EP2I(ep)].interrupt_error = 0; | |
649 | if (status) { | |
650 | usbredir_handle_status(dev, p, status); | |
651 | } else { | |
652 | p->status = USB_RET_NAK; | |
69354a83 | 653 | } |
234e810c HG |
654 | return; |
655 | } | |
656 | DPRINTF("interrupt-token-in ep %02X status %d len %d\n", ep, | |
657 | intp->status, intp->len); | |
658 | ||
659 | status = intp->status; | |
660 | len = intp->len; | |
661 | if (len > p->iov.size) { | |
662 | ERROR("received int data is larger then packet ep %02X\n", ep); | |
663 | len = p->iov.size; | |
664 | status = usb_redir_babble; | |
665 | } | |
666 | usb_packet_copy(p, intp->data, len); | |
667 | bufp_free(dev, intp, ep); | |
668 | usbredir_handle_status(dev, p, status); | |
669 | } | |
69354a83 | 670 | |
723aedd5 HG |
671 | /* |
672 | * Handle interrupt out data, the usbredir protocol expects us to do this | |
673 | * async, so that it can report back a completion status. But guests will | |
674 | * expect immediate completion for an interrupt endpoint, and handling this | |
675 | * async causes migration issues. So we report success directly, counting | |
676 | * on the fact that output interrupt packets normally always succeed. | |
677 | */ | |
234e810c HG |
678 | static void usbredir_handle_interrupt_out_data(USBRedirDevice *dev, |
679 | USBPacket *p, uint8_t ep) | |
680 | { | |
234e810c HG |
681 | struct usb_redir_interrupt_packet_header interrupt_packet; |
682 | uint8_t buf[p->iov.size]; | |
9a8d4067 | 683 | |
234e810c HG |
684 | DPRINTF("interrupt-out ep %02X len %zd id %"PRIu64"\n", ep, |
685 | p->iov.size, p->id); | |
69354a83 | 686 | |
234e810c HG |
687 | interrupt_packet.endpoint = ep; |
688 | interrupt_packet.length = p->iov.size; | |
689 | ||
690 | usb_packet_copy(p, buf, p->iov.size); | |
691 | usbredir_log_data(dev, "interrupt data out:", buf, p->iov.size); | |
692 | usbredirparser_send_interrupt_packet(dev->parser, p->id, | |
693 | &interrupt_packet, buf, p->iov.size); | |
694 | usbredirparser_do_write(dev->parser); | |
69354a83 HG |
695 | } |
696 | ||
697 | static void usbredir_stop_interrupt_receiving(USBRedirDevice *dev, | |
698 | uint8_t ep) | |
699 | { | |
700 | struct usb_redir_stop_interrupt_receiving_header stop_interrupt_recv = { | |
701 | .endpoint = ep | |
702 | }; | |
703 | if (dev->endpoint[EP2I(ep)].interrupt_started) { | |
704 | usbredirparser_send_stop_interrupt_receiving(dev->parser, 0, | |
705 | &stop_interrupt_recv); | |
706 | DPRINTF("interrupt recv stopped ep %02X\n", ep); | |
707 | dev->endpoint[EP2I(ep)].interrupt_started = 0; | |
708 | } | |
2bd836e5 | 709 | dev->endpoint[EP2I(ep)].interrupt_error = 0; |
69354a83 HG |
710 | usbredir_free_bufpq(dev, ep); |
711 | } | |
712 | ||
9a77a0f5 | 713 | static void usbredir_handle_data(USBDevice *udev, USBPacket *p) |
69354a83 HG |
714 | { |
715 | USBRedirDevice *dev = DO_UPCAST(USBRedirDevice, dev, udev); | |
716 | uint8_t ep; | |
717 | ||
079d0b7f | 718 | ep = p->ep->nr; |
69354a83 HG |
719 | if (p->pid == USB_TOKEN_IN) { |
720 | ep |= USB_DIR_IN; | |
721 | } | |
722 | ||
723 | switch (dev->endpoint[EP2I(ep)].type) { | |
724 | case USB_ENDPOINT_XFER_CONTROL: | |
725 | ERROR("handle_data called for control transfer on ep %02X\n", ep); | |
9a77a0f5 HG |
726 | p->status = USB_RET_NAK; |
727 | break; | |
69354a83 | 728 | case USB_ENDPOINT_XFER_ISOC: |
9a77a0f5 HG |
729 | usbredir_handle_iso_data(dev, p, ep); |
730 | break; | |
69354a83 | 731 | case USB_ENDPOINT_XFER_BULK: |
1b36c4d8 HG |
732 | if (p->state == USB_PACKET_SETUP && p->pid == USB_TOKEN_IN && |
733 | p->ep->pipeline) { | |
9a77a0f5 HG |
734 | p->status = USB_RET_ADD_TO_QUEUE; |
735 | break; | |
1b36c4d8 | 736 | } |
9a77a0f5 HG |
737 | usbredir_handle_bulk_data(dev, p, ep); |
738 | break; | |
69354a83 | 739 | case USB_ENDPOINT_XFER_INT: |
234e810c HG |
740 | if (ep & USB_DIR_IN) { |
741 | usbredir_handle_interrupt_in_data(dev, p, ep); | |
742 | } else { | |
743 | usbredir_handle_interrupt_out_data(dev, p, ep); | |
744 | } | |
9a77a0f5 | 745 | break; |
69354a83 HG |
746 | default: |
747 | ERROR("handle_data ep %02X has unknown type %d\n", ep, | |
748 | dev->endpoint[EP2I(ep)].type); | |
9a77a0f5 | 749 | p->status = USB_RET_NAK; |
69354a83 HG |
750 | } |
751 | } | |
752 | ||
1b36c4d8 HG |
753 | static void usbredir_flush_ep_queue(USBDevice *dev, USBEndpoint *ep) |
754 | { | |
755 | if (ep->pid == USB_TOKEN_IN && ep->pipeline) { | |
756 | usb_ep_combine_input_packets(ep); | |
757 | } | |
758 | } | |
759 | ||
f8c126f3 HG |
760 | static void usbredir_stop_ep(USBRedirDevice *dev, int i) |
761 | { | |
762 | uint8_t ep = I2EP(i); | |
763 | ||
764 | switch (dev->endpoint[i].type) { | |
765 | case USB_ENDPOINT_XFER_ISOC: | |
766 | usbredir_stop_iso_stream(dev, ep); | |
767 | break; | |
768 | case USB_ENDPOINT_XFER_INT: | |
769 | if (ep & USB_DIR_IN) { | |
770 | usbredir_stop_interrupt_receiving(dev, ep); | |
771 | } | |
772 | break; | |
773 | } | |
774 | usbredir_free_bufpq(dev, ep); | |
775 | } | |
776 | ||
d8553dd0 HG |
777 | static void usbredir_ep_stopped(USBDevice *udev, USBEndpoint *uep) |
778 | { | |
779 | USBRedirDevice *dev = DO_UPCAST(USBRedirDevice, dev, udev); | |
780 | ||
781 | usbredir_stop_ep(dev, USBEP2I(uep)); | |
782 | usbredirparser_do_write(dev->parser); | |
783 | } | |
784 | ||
9a77a0f5 | 785 | static void usbredir_set_config(USBRedirDevice *dev, USBPacket *p, |
69354a83 HG |
786 | int config) |
787 | { | |
788 | struct usb_redir_set_configuration_header set_config; | |
69354a83 HG |
789 | int i; |
790 | ||
de550a6a | 791 | DPRINTF("set config %d id %"PRIu64"\n", config, p->id); |
69354a83 HG |
792 | |
793 | for (i = 0; i < MAX_ENDPOINTS; i++) { | |
f8c126f3 | 794 | usbredir_stop_ep(dev, i); |
69354a83 HG |
795 | } |
796 | ||
797 | set_config.configuration = config; | |
de550a6a | 798 | usbredirparser_send_set_configuration(dev->parser, p->id, &set_config); |
69354a83 | 799 | usbredirparser_do_write(dev->parser); |
9a77a0f5 | 800 | p->status = USB_RET_ASYNC; |
69354a83 HG |
801 | } |
802 | ||
9a77a0f5 | 803 | static void usbredir_get_config(USBRedirDevice *dev, USBPacket *p) |
69354a83 | 804 | { |
de550a6a | 805 | DPRINTF("get config id %"PRIu64"\n", p->id); |
69354a83 | 806 | |
de550a6a | 807 | usbredirparser_send_get_configuration(dev->parser, p->id); |
69354a83 | 808 | usbredirparser_do_write(dev->parser); |
9a77a0f5 | 809 | p->status = USB_RET_ASYNC; |
69354a83 HG |
810 | } |
811 | ||
9a77a0f5 | 812 | static void usbredir_set_interface(USBRedirDevice *dev, USBPacket *p, |
69354a83 HG |
813 | int interface, int alt) |
814 | { | |
815 | struct usb_redir_set_alt_setting_header set_alt; | |
69354a83 HG |
816 | int i; |
817 | ||
de550a6a | 818 | DPRINTF("set interface %d alt %d id %"PRIu64"\n", interface, alt, p->id); |
69354a83 HG |
819 | |
820 | for (i = 0; i < MAX_ENDPOINTS; i++) { | |
821 | if (dev->endpoint[i].interface == interface) { | |
f8c126f3 | 822 | usbredir_stop_ep(dev, i); |
69354a83 HG |
823 | } |
824 | } | |
825 | ||
826 | set_alt.interface = interface; | |
827 | set_alt.alt = alt; | |
de550a6a | 828 | usbredirparser_send_set_alt_setting(dev->parser, p->id, &set_alt); |
69354a83 | 829 | usbredirparser_do_write(dev->parser); |
9a77a0f5 | 830 | p->status = USB_RET_ASYNC; |
69354a83 HG |
831 | } |
832 | ||
9a77a0f5 | 833 | static void usbredir_get_interface(USBRedirDevice *dev, USBPacket *p, |
69354a83 HG |
834 | int interface) |
835 | { | |
836 | struct usb_redir_get_alt_setting_header get_alt; | |
69354a83 | 837 | |
de550a6a | 838 | DPRINTF("get interface %d id %"PRIu64"\n", interface, p->id); |
69354a83 HG |
839 | |
840 | get_alt.interface = interface; | |
de550a6a | 841 | usbredirparser_send_get_alt_setting(dev->parser, p->id, &get_alt); |
69354a83 | 842 | usbredirparser_do_write(dev->parser); |
9a77a0f5 | 843 | p->status = USB_RET_ASYNC; |
69354a83 HG |
844 | } |
845 | ||
9a77a0f5 | 846 | static void usbredir_handle_control(USBDevice *udev, USBPacket *p, |
69354a83 HG |
847 | int request, int value, int index, int length, uint8_t *data) |
848 | { | |
849 | USBRedirDevice *dev = DO_UPCAST(USBRedirDevice, dev, udev); | |
850 | struct usb_redir_control_packet_header control_packet; | |
69354a83 | 851 | |
9a8d4067 | 852 | if (usbredir_already_in_flight(dev, p->id)) { |
9a77a0f5 HG |
853 | p->status = USB_RET_ASYNC; |
854 | return; | |
9a8d4067 HG |
855 | } |
856 | ||
69354a83 HG |
857 | /* Special cases for certain standard device requests */ |
858 | switch (request) { | |
859 | case DeviceOutRequest | USB_REQ_SET_ADDRESS: | |
860 | DPRINTF("set address %d\n", value); | |
861 | dev->dev.addr = value; | |
9a77a0f5 | 862 | return; |
69354a83 | 863 | case DeviceOutRequest | USB_REQ_SET_CONFIGURATION: |
9a77a0f5 HG |
864 | usbredir_set_config(dev, p, value & 0xff); |
865 | return; | |
69354a83 | 866 | case DeviceRequest | USB_REQ_GET_CONFIGURATION: |
9a77a0f5 HG |
867 | usbredir_get_config(dev, p); |
868 | return; | |
69354a83 | 869 | case InterfaceOutRequest | USB_REQ_SET_INTERFACE: |
9a77a0f5 HG |
870 | usbredir_set_interface(dev, p, index, value); |
871 | return; | |
69354a83 | 872 | case InterfaceRequest | USB_REQ_GET_INTERFACE: |
9a77a0f5 HG |
873 | usbredir_get_interface(dev, p, index); |
874 | return; | |
69354a83 HG |
875 | } |
876 | ||
de550a6a HG |
877 | /* Normal ctrl requests, note request is (bRequestType << 8) | bRequest */ |
878 | DPRINTF( | |
879 | "ctrl-out type 0x%x req 0x%x val 0x%x index %d len %d id %"PRIu64"\n", | |
880 | request >> 8, request & 0xff, value, index, length, p->id); | |
69354a83 HG |
881 | |
882 | control_packet.request = request & 0xFF; | |
883 | control_packet.requesttype = request >> 8; | |
884 | control_packet.endpoint = control_packet.requesttype & USB_DIR_IN; | |
885 | control_packet.value = value; | |
886 | control_packet.index = index; | |
887 | control_packet.length = length; | |
69354a83 HG |
888 | |
889 | if (control_packet.requesttype & USB_DIR_IN) { | |
de550a6a | 890 | usbredirparser_send_control_packet(dev->parser, p->id, |
69354a83 HG |
891 | &control_packet, NULL, 0); |
892 | } else { | |
893 | usbredir_log_data(dev, "ctrl data out:", data, length); | |
de550a6a | 894 | usbredirparser_send_control_packet(dev->parser, p->id, |
69354a83 HG |
895 | &control_packet, data, length); |
896 | } | |
897 | usbredirparser_do_write(dev->parser); | |
9a77a0f5 | 898 | p->status = USB_RET_ASYNC; |
69354a83 HG |
899 | } |
900 | ||
901 | /* | |
902 | * Close events can be triggered by usbredirparser_do_write which gets called | |
903 | * from within the USBDevice data / control packet callbacks and doing a | |
904 | * usb_detach from within these callbacks is not a good idea. | |
905 | * | |
ed9873bf | 906 | * So we use a bh handler to take care of close events. |
69354a83 | 907 | */ |
ed9873bf | 908 | static void usbredir_chardev_close_bh(void *opaque) |
69354a83 HG |
909 | { |
910 | USBRedirDevice *dev = opaque; | |
911 | ||
912 | usbredir_device_disconnect(dev); | |
913 | ||
914 | if (dev->parser) { | |
09054d19 | 915 | DPRINTF("destroying usbredirparser\n"); |
69354a83 HG |
916 | usbredirparser_destroy(dev->parser); |
917 | dev->parser = NULL; | |
918 | } | |
ed9873bf | 919 | } |
69354a83 | 920 | |
dbbf0195 | 921 | static void usbredir_create_parser(USBRedirDevice *dev) |
ed9873bf HG |
922 | { |
923 | uint32_t caps[USB_REDIR_CAPS_SIZE] = { 0, }; | |
fc3f6e1b | 924 | int flags = 0; |
6af16589 | 925 | |
09054d19 HG |
926 | DPRINTF("creating usbredirparser\n"); |
927 | ||
ed9873bf HG |
928 | dev->parser = qemu_oom_check(usbredirparser_create()); |
929 | dev->parser->priv = dev; | |
930 | dev->parser->log_func = usbredir_log; | |
931 | dev->parser->read_func = usbredir_read; | |
932 | dev->parser->write_func = usbredir_write; | |
933 | dev->parser->hello_func = usbredir_hello; | |
934 | dev->parser->device_connect_func = usbredir_device_connect; | |
935 | dev->parser->device_disconnect_func = usbredir_device_disconnect; | |
936 | dev->parser->interface_info_func = usbredir_interface_info; | |
937 | dev->parser->ep_info_func = usbredir_ep_info; | |
938 | dev->parser->configuration_status_func = usbredir_configuration_status; | |
939 | dev->parser->alt_setting_status_func = usbredir_alt_setting_status; | |
940 | dev->parser->iso_stream_status_func = usbredir_iso_stream_status; | |
941 | dev->parser->interrupt_receiving_status_func = | |
942 | usbredir_interrupt_receiving_status; | |
943 | dev->parser->bulk_streams_status_func = usbredir_bulk_streams_status; | |
944 | dev->parser->control_packet_func = usbredir_control_packet; | |
945 | dev->parser->bulk_packet_func = usbredir_bulk_packet; | |
946 | dev->parser->iso_packet_func = usbredir_iso_packet; | |
947 | dev->parser->interrupt_packet_func = usbredir_interrupt_packet; | |
948 | dev->read_buf = NULL; | |
949 | dev->read_buf_size = 0; | |
950 | ||
951 | usbredirparser_caps_set_cap(caps, usb_redir_cap_connect_device_version); | |
952 | usbredirparser_caps_set_cap(caps, usb_redir_cap_filter); | |
0fde3b7a | 953 | usbredirparser_caps_set_cap(caps, usb_redir_cap_ep_info_max_packet_size); |
be4a8928 | 954 | usbredirparser_caps_set_cap(caps, usb_redir_cap_64bits_ids); |
c19a7981 | 955 | usbredirparser_caps_set_cap(caps, usb_redir_cap_32bits_bulk_length); |
fc3f6e1b HG |
956 | |
957 | if (runstate_check(RUN_STATE_INMIGRATE)) { | |
958 | flags |= usbredirparser_fl_no_hello; | |
959 | } | |
35efba2c | 960 | usbredirparser_init(dev->parser, VERSION, caps, USB_REDIR_CAPS_SIZE, |
fc3f6e1b | 961 | flags); |
ed9873bf | 962 | usbredirparser_do_write(dev->parser); |
69354a83 HG |
963 | } |
964 | ||
910c1e6b HG |
965 | static void usbredir_reject_device(USBRedirDevice *dev) |
966 | { | |
967 | usbredir_device_disconnect(dev); | |
968 | if (usbredirparser_peer_has_cap(dev->parser, usb_redir_cap_filter)) { | |
969 | usbredirparser_send_filter_reject(dev->parser); | |
970 | usbredirparser_do_write(dev->parser); | |
971 | } | |
972 | } | |
973 | ||
69354a83 HG |
974 | static void usbredir_do_attach(void *opaque) |
975 | { | |
976 | USBRedirDevice *dev = opaque; | |
977 | ||
a508cc42 HG |
978 | /* In order to work properly with XHCI controllers we need these caps */ |
979 | if ((dev->dev.port->speedmask & USB_SPEED_MASK_SUPER) && !( | |
980 | usbredirparser_peer_has_cap(dev->parser, | |
981 | usb_redir_cap_ep_info_max_packet_size) && | |
d3aea641 HG |
982 | usbredirparser_peer_has_cap(dev->parser, |
983 | usb_redir_cap_32bits_bulk_length) && | |
a508cc42 HG |
984 | usbredirparser_peer_has_cap(dev->parser, |
985 | usb_redir_cap_64bits_ids))) { | |
986 | ERROR("usb-redir-host lacks capabilities needed for use with XHCI\n"); | |
987 | usbredir_reject_device(dev); | |
988 | return; | |
989 | } | |
990 | ||
714f9db0 | 991 | if (usb_device_attach(&dev->dev) != 0) { |
cdfd3530 | 992 | WARNING("rejecting device due to speed mismatch\n"); |
910c1e6b | 993 | usbredir_reject_device(dev); |
714f9db0 | 994 | } |
69354a83 HG |
995 | } |
996 | ||
997 | /* | |
998 | * chardev callbacks | |
999 | */ | |
1000 | ||
1001 | static int usbredir_chardev_can_read(void *opaque) | |
1002 | { | |
1003 | USBRedirDevice *dev = opaque; | |
1004 | ||
ed9873bf HG |
1005 | if (!dev->parser) { |
1006 | WARNING("chardev_can_read called on non open chardev!\n"); | |
69354a83 HG |
1007 | return 0; |
1008 | } | |
ed9873bf | 1009 | |
fc3f6e1b HG |
1010 | /* Don't read new data from the chardev until our state is fully synced */ |
1011 | if (!runstate_check(RUN_STATE_RUNNING)) { | |
1012 | return 0; | |
1013 | } | |
1014 | ||
ed9873bf HG |
1015 | /* usbredir_parser_do_read will consume *all* data we give it */ |
1016 | return 1024 * 1024; | |
69354a83 HG |
1017 | } |
1018 | ||
1019 | static void usbredir_chardev_read(void *opaque, const uint8_t *buf, int size) | |
1020 | { | |
1021 | USBRedirDevice *dev = opaque; | |
1022 | ||
1023 | /* No recursion allowed! */ | |
1024 | assert(dev->read_buf == NULL); | |
1025 | ||
1026 | dev->read_buf = buf; | |
1027 | dev->read_buf_size = size; | |
1028 | ||
1029 | usbredirparser_do_read(dev->parser); | |
1030 | /* Send any acks, etc. which may be queued now */ | |
1031 | usbredirparser_do_write(dev->parser); | |
1032 | } | |
1033 | ||
1034 | static void usbredir_chardev_event(void *opaque, int event) | |
1035 | { | |
1036 | USBRedirDevice *dev = opaque; | |
1037 | ||
1038 | switch (event) { | |
1039 | case CHR_EVENT_OPENED: | |
09054d19 | 1040 | DPRINTF("chardev open\n"); |
dbbf0195 HG |
1041 | /* Make sure any pending closes are handled (no-op if none pending) */ |
1042 | usbredir_chardev_close_bh(dev); | |
1043 | qemu_bh_cancel(dev->chardev_close_bh); | |
1044 | usbredir_create_parser(dev); | |
ed9873bf | 1045 | break; |
69354a83 | 1046 | case CHR_EVENT_CLOSED: |
09054d19 | 1047 | DPRINTF("chardev close\n"); |
ed9873bf | 1048 | qemu_bh_schedule(dev->chardev_close_bh); |
69354a83 HG |
1049 | break; |
1050 | } | |
1051 | } | |
1052 | ||
1053 | /* | |
1054 | * init + destroy | |
1055 | */ | |
1056 | ||
fc3f6e1b HG |
1057 | static void usbredir_vm_state_change(void *priv, int running, RunState state) |
1058 | { | |
1059 | USBRedirDevice *dev = priv; | |
1060 | ||
1061 | if (state == RUN_STATE_RUNNING && dev->parser != NULL) { | |
1062 | usbredirparser_do_write(dev->parser); /* Flush any pending writes */ | |
1063 | } | |
1064 | } | |
1065 | ||
bd019b73 HG |
1066 | static void usbredir_init_endpoints(USBRedirDevice *dev) |
1067 | { | |
1068 | int i; | |
1069 | ||
1070 | usb_ep_init(&dev->dev); | |
1071 | memset(dev->endpoint, 0, sizeof(dev->endpoint)); | |
1072 | for (i = 0; i < MAX_ENDPOINTS; i++) { | |
1073 | QTAILQ_INIT(&dev->endpoint[i].bufpq); | |
1074 | } | |
1075 | } | |
1076 | ||
69354a83 HG |
1077 | static int usbredir_initfn(USBDevice *udev) |
1078 | { | |
1079 | USBRedirDevice *dev = DO_UPCAST(USBRedirDevice, dev, udev); | |
1080 | int i; | |
1081 | ||
1082 | if (dev->cs == NULL) { | |
1083 | qerror_report(QERR_MISSING_PARAMETER, "chardev"); | |
1084 | return -1; | |
1085 | } | |
1086 | ||
6af16589 HG |
1087 | if (dev->filter_str) { |
1088 | i = usbredirfilter_string_to_rules(dev->filter_str, ":", "|", | |
1089 | &dev->filter_rules, | |
1090 | &dev->filter_rules_count); | |
1091 | if (i) { | |
1092 | qerror_report(QERR_INVALID_PARAMETER_VALUE, "filter", | |
1093 | "a usb device filter string"); | |
1094 | return -1; | |
1095 | } | |
1096 | } | |
1097 | ||
ed9873bf | 1098 | dev->chardev_close_bh = qemu_bh_new(usbredir_chardev_close_bh, dev); |
69354a83 HG |
1099 | dev->attach_timer = qemu_new_timer_ms(vm_clock, usbredir_do_attach, dev); |
1100 | ||
8e60452a | 1101 | packet_id_queue_init(&dev->cancelled, dev, "cancelled"); |
9a8d4067 | 1102 | packet_id_queue_init(&dev->already_in_flight, dev, "already-in-flight"); |
bd019b73 | 1103 | usbredir_init_endpoints(dev); |
69354a83 HG |
1104 | |
1105 | /* We'll do the attach once we receive the speed from the usb-host */ | |
1106 | udev->auto_attach = 0; | |
1107 | ||
cdfd3530 | 1108 | /* Will be cleared during setup when we find conflicts */ |
95a59dc0 | 1109 | dev->compatible_speedmask = USB_SPEED_MASK_FULL | USB_SPEED_MASK_HIGH; |
cdfd3530 | 1110 | |
65f9d986 HG |
1111 | /* Let the backend know we are ready */ |
1112 | qemu_chr_fe_open(dev->cs); | |
69354a83 HG |
1113 | qemu_chr_add_handlers(dev->cs, usbredir_chardev_can_read, |
1114 | usbredir_chardev_read, usbredir_chardev_event, dev); | |
1115 | ||
fc3f6e1b | 1116 | qemu_add_vm_change_state_handler(usbredir_vm_state_change, dev); |
65bb3a5c | 1117 | add_boot_device_path(dev->bootindex, &udev->qdev, NULL); |
69354a83 HG |
1118 | return 0; |
1119 | } | |
1120 | ||
1121 | static void usbredir_cleanup_device_queues(USBRedirDevice *dev) | |
1122 | { | |
69354a83 HG |
1123 | int i; |
1124 | ||
8e60452a | 1125 | packet_id_queue_empty(&dev->cancelled); |
9a8d4067 | 1126 | packet_id_queue_empty(&dev->already_in_flight); |
69354a83 HG |
1127 | for (i = 0; i < MAX_ENDPOINTS; i++) { |
1128 | usbredir_free_bufpq(dev, I2EP(i)); | |
1129 | } | |
1130 | } | |
1131 | ||
1132 | static void usbredir_handle_destroy(USBDevice *udev) | |
1133 | { | |
1134 | USBRedirDevice *dev = DO_UPCAST(USBRedirDevice, dev, udev); | |
1135 | ||
65f9d986 | 1136 | qemu_chr_fe_close(dev->cs); |
70f24fb6 | 1137 | qemu_chr_delete(dev->cs); |
69354a83 | 1138 | /* Note must be done after qemu_chr_close, as that causes a close event */ |
ed9873bf | 1139 | qemu_bh_delete(dev->chardev_close_bh); |
69354a83 HG |
1140 | |
1141 | qemu_del_timer(dev->attach_timer); | |
1142 | qemu_free_timer(dev->attach_timer); | |
1143 | ||
1144 | usbredir_cleanup_device_queues(dev); | |
1145 | ||
1146 | if (dev->parser) { | |
1147 | usbredirparser_destroy(dev->parser); | |
1148 | } | |
6af16589 HG |
1149 | |
1150 | free(dev->filter_rules); | |
1151 | } | |
1152 | ||
1153 | static int usbredir_check_filter(USBRedirDevice *dev) | |
1154 | { | |
1510168e | 1155 | if (dev->interface_info.interface_count == NO_INTERFACE_INFO) { |
6af16589 | 1156 | ERROR("No interface info for device\n"); |
5b3bd682 | 1157 | goto error; |
6af16589 HG |
1158 | } |
1159 | ||
1160 | if (dev->filter_rules) { | |
1161 | if (!usbredirparser_peer_has_cap(dev->parser, | |
1162 | usb_redir_cap_connect_device_version)) { | |
1163 | ERROR("Device filter specified and peer does not have the " | |
1164 | "connect_device_version capability\n"); | |
5b3bd682 | 1165 | goto error; |
6af16589 HG |
1166 | } |
1167 | ||
1168 | if (usbredirfilter_check( | |
1169 | dev->filter_rules, | |
1170 | dev->filter_rules_count, | |
1171 | dev->device_info.device_class, | |
1172 | dev->device_info.device_subclass, | |
1173 | dev->device_info.device_protocol, | |
1174 | dev->interface_info.interface_class, | |
1175 | dev->interface_info.interface_subclass, | |
1176 | dev->interface_info.interface_protocol, | |
1177 | dev->interface_info.interface_count, | |
1178 | dev->device_info.vendor_id, | |
1179 | dev->device_info.product_id, | |
1180 | dev->device_info.device_version_bcd, | |
1181 | 0) != 0) { | |
5b3bd682 | 1182 | goto error; |
6af16589 HG |
1183 | } |
1184 | } | |
1185 | ||
1186 | return 0; | |
5b3bd682 HG |
1187 | |
1188 | error: | |
910c1e6b | 1189 | usbredir_reject_device(dev); |
5b3bd682 | 1190 | return -1; |
69354a83 HG |
1191 | } |
1192 | ||
1193 | /* | |
1194 | * usbredirparser packet complete callbacks | |
1195 | */ | |
1196 | ||
9a77a0f5 HG |
1197 | static void usbredir_handle_status(USBRedirDevice *dev, USBPacket *p, |
1198 | int status) | |
69354a83 HG |
1199 | { |
1200 | switch (status) { | |
1201 | case usb_redir_success: | |
9a77a0f5 HG |
1202 | p->status = USB_RET_SUCCESS; /* Clear previous ASYNC status */ |
1203 | break; | |
69354a83 | 1204 | case usb_redir_stall: |
9a77a0f5 HG |
1205 | p->status = USB_RET_STALL; |
1206 | break; | |
69354a83 | 1207 | case usb_redir_cancelled: |
18113340 HG |
1208 | /* |
1209 | * When the usbredir-host unredirects a device, it will report a status | |
1210 | * of cancelled for all pending packets, followed by a disconnect msg. | |
1211 | */ | |
9a77a0f5 HG |
1212 | p->status = USB_RET_IOERROR; |
1213 | break; | |
69354a83 | 1214 | case usb_redir_inval: |
d61000a8 | 1215 | WARNING("got invalid param error from usb-host?\n"); |
9a77a0f5 HG |
1216 | p->status = USB_RET_IOERROR; |
1217 | break; | |
adae502c | 1218 | case usb_redir_babble: |
9a77a0f5 HG |
1219 | p->status = USB_RET_BABBLE; |
1220 | break; | |
69354a83 HG |
1221 | case usb_redir_ioerror: |
1222 | case usb_redir_timeout: | |
1223 | default: | |
9a77a0f5 | 1224 | p->status = USB_RET_IOERROR; |
69354a83 HG |
1225 | } |
1226 | } | |
1227 | ||
097a66ef HG |
1228 | static void usbredir_hello(void *priv, struct usb_redir_hello_header *h) |
1229 | { | |
1230 | USBRedirDevice *dev = priv; | |
1231 | ||
1232 | /* Try to send the filter info now that we've the usb-host's caps */ | |
1233 | if (usbredirparser_peer_has_cap(dev->parser, usb_redir_cap_filter) && | |
1234 | dev->filter_rules) { | |
1235 | usbredirparser_send_filter_filter(dev->parser, dev->filter_rules, | |
1236 | dev->filter_rules_count); | |
1237 | usbredirparser_do_write(dev->parser); | |
1238 | } | |
1239 | } | |
1240 | ||
69354a83 HG |
1241 | static void usbredir_device_connect(void *priv, |
1242 | struct usb_redir_device_connect_header *device_connect) | |
1243 | { | |
1244 | USBRedirDevice *dev = priv; | |
6af16589 | 1245 | const char *speed; |
69354a83 | 1246 | |
99f08100 HG |
1247 | if (qemu_timer_pending(dev->attach_timer) || dev->dev.attached) { |
1248 | ERROR("Received device connect while already connected\n"); | |
1249 | return; | |
1250 | } | |
1251 | ||
69354a83 HG |
1252 | switch (device_connect->speed) { |
1253 | case usb_redir_speed_low: | |
6af16589 | 1254 | speed = "low speed"; |
69354a83 | 1255 | dev->dev.speed = USB_SPEED_LOW; |
cdfd3530 | 1256 | dev->compatible_speedmask &= ~USB_SPEED_MASK_FULL; |
95a59dc0 | 1257 | dev->compatible_speedmask &= ~USB_SPEED_MASK_HIGH; |
69354a83 HG |
1258 | break; |
1259 | case usb_redir_speed_full: | |
6af16589 | 1260 | speed = "full speed"; |
69354a83 | 1261 | dev->dev.speed = USB_SPEED_FULL; |
95a59dc0 | 1262 | dev->compatible_speedmask &= ~USB_SPEED_MASK_HIGH; |
69354a83 HG |
1263 | break; |
1264 | case usb_redir_speed_high: | |
6af16589 | 1265 | speed = "high speed"; |
69354a83 HG |
1266 | dev->dev.speed = USB_SPEED_HIGH; |
1267 | break; | |
1268 | case usb_redir_speed_super: | |
6af16589 | 1269 | speed = "super speed"; |
69354a83 HG |
1270 | dev->dev.speed = USB_SPEED_SUPER; |
1271 | break; | |
1272 | default: | |
6af16589 | 1273 | speed = "unknown speed"; |
69354a83 HG |
1274 | dev->dev.speed = USB_SPEED_FULL; |
1275 | } | |
6af16589 HG |
1276 | |
1277 | if (usbredirparser_peer_has_cap(dev->parser, | |
1278 | usb_redir_cap_connect_device_version)) { | |
1279 | INFO("attaching %s device %04x:%04x version %d.%d class %02x\n", | |
1280 | speed, device_connect->vendor_id, device_connect->product_id, | |
52234bc0 HG |
1281 | ((device_connect->device_version_bcd & 0xf000) >> 12) * 10 + |
1282 | ((device_connect->device_version_bcd & 0x0f00) >> 8), | |
1283 | ((device_connect->device_version_bcd & 0x00f0) >> 4) * 10 + | |
1284 | ((device_connect->device_version_bcd & 0x000f) >> 0), | |
6af16589 HG |
1285 | device_connect->device_class); |
1286 | } else { | |
1287 | INFO("attaching %s device %04x:%04x class %02x\n", speed, | |
1288 | device_connect->vendor_id, device_connect->product_id, | |
1289 | device_connect->device_class); | |
1290 | } | |
1291 | ||
cdfd3530 | 1292 | dev->dev.speedmask = (1 << dev->dev.speed) | dev->compatible_speedmask; |
6af16589 HG |
1293 | dev->device_info = *device_connect; |
1294 | ||
1295 | if (usbredir_check_filter(dev)) { | |
1296 | WARNING("Device %04x:%04x rejected by device filter, not attaching\n", | |
1297 | device_connect->vendor_id, device_connect->product_id); | |
1298 | return; | |
1299 | } | |
1300 | ||
69354a83 HG |
1301 | qemu_mod_timer(dev->attach_timer, dev->next_attach_time); |
1302 | } | |
1303 | ||
1304 | static void usbredir_device_disconnect(void *priv) | |
1305 | { | |
1306 | USBRedirDevice *dev = priv; | |
1307 | ||
1308 | /* Stop any pending attaches */ | |
1309 | qemu_del_timer(dev->attach_timer); | |
1310 | ||
1311 | if (dev->dev.attached) { | |
09054d19 | 1312 | DPRINTF("detaching device\n"); |
69354a83 | 1313 | usb_device_detach(&dev->dev); |
69354a83 HG |
1314 | /* |
1315 | * Delay next usb device attach to give the guest a chance to see | |
1316 | * see the detach / attach in case of quick close / open succession | |
1317 | */ | |
1318 | dev->next_attach_time = qemu_get_clock_ms(vm_clock) + 200; | |
1319 | } | |
99f08100 HG |
1320 | |
1321 | /* Reset state so that the next dev connected starts with a clean slate */ | |
1322 | usbredir_cleanup_device_queues(dev); | |
bd019b73 | 1323 | usbredir_init_endpoints(dev); |
1510168e | 1324 | dev->interface_info.interface_count = NO_INTERFACE_INFO; |
a0625c56 HG |
1325 | dev->dev.addr = 0; |
1326 | dev->dev.speed = 0; | |
95a59dc0 | 1327 | dev->compatible_speedmask = USB_SPEED_MASK_FULL | USB_SPEED_MASK_HIGH; |
69354a83 HG |
1328 | } |
1329 | ||
1330 | static void usbredir_interface_info(void *priv, | |
1331 | struct usb_redir_interface_info_header *interface_info) | |
1332 | { | |
6af16589 HG |
1333 | USBRedirDevice *dev = priv; |
1334 | ||
1335 | dev->interface_info = *interface_info; | |
1336 | ||
1337 | /* | |
1338 | * If we receive interface info after the device has already been | |
1339 | * connected (ie on a set_config), re-check the filter. | |
1340 | */ | |
1341 | if (qemu_timer_pending(dev->attach_timer) || dev->dev.attached) { | |
1342 | if (usbredir_check_filter(dev)) { | |
1343 | ERROR("Device no longer matches filter after interface info " | |
1344 | "change, disconnecting!\n"); | |
6af16589 HG |
1345 | } |
1346 | } | |
69354a83 HG |
1347 | } |
1348 | ||
cdfd3530 JK |
1349 | static void usbredir_mark_speed_incompatible(USBRedirDevice *dev, int speed) |
1350 | { | |
1351 | dev->compatible_speedmask &= ~(1 << speed); | |
1352 | dev->dev.speedmask = (1 << dev->dev.speed) | dev->compatible_speedmask; | |
1353 | } | |
1354 | ||
6ba43f1f HG |
1355 | static void usbredir_set_pipeline(USBRedirDevice *dev, struct USBEndpoint *uep) |
1356 | { | |
1357 | if (uep->type != USB_ENDPOINT_XFER_BULK) { | |
1358 | return; | |
1359 | } | |
1360 | if (uep->pid == USB_TOKEN_OUT) { | |
1361 | uep->pipeline = true; | |
1362 | } | |
1b36c4d8 HG |
1363 | if (uep->pid == USB_TOKEN_IN && uep->max_packet_size != 0 && |
1364 | usbredirparser_peer_has_cap(dev->parser, | |
1365 | usb_redir_cap_32bits_bulk_length)) { | |
1366 | uep->pipeline = true; | |
1367 | } | |
6ba43f1f HG |
1368 | } |
1369 | ||
7e03d178 HG |
1370 | static void usbredir_setup_usb_eps(USBRedirDevice *dev) |
1371 | { | |
1372 | struct USBEndpoint *usb_ep; | |
7e9638d3 | 1373 | int i; |
7e03d178 HG |
1374 | |
1375 | for (i = 0; i < MAX_ENDPOINTS; i++) { | |
7e9638d3 | 1376 | usb_ep = I2USBEP(dev, i); |
7e03d178 HG |
1377 | usb_ep->type = dev->endpoint[i].type; |
1378 | usb_ep->ifnum = dev->endpoint[i].interface; | |
1379 | usb_ep->max_packet_size = dev->endpoint[i].max_packet_size; | |
1380 | usbredir_set_pipeline(dev, usb_ep); | |
1381 | } | |
1382 | } | |
1383 | ||
69354a83 HG |
1384 | static void usbredir_ep_info(void *priv, |
1385 | struct usb_redir_ep_info_header *ep_info) | |
1386 | { | |
1387 | USBRedirDevice *dev = priv; | |
1388 | int i; | |
1389 | ||
1390 | for (i = 0; i < MAX_ENDPOINTS; i++) { | |
1391 | dev->endpoint[i].type = ep_info->type[i]; | |
1392 | dev->endpoint[i].interval = ep_info->interval[i]; | |
1393 | dev->endpoint[i].interface = ep_info->interface[i]; | |
7e03d178 HG |
1394 | if (usbredirparser_peer_has_cap(dev->parser, |
1395 | usb_redir_cap_ep_info_max_packet_size)) { | |
1396 | dev->endpoint[i].max_packet_size = ep_info->max_packet_size[i]; | |
1397 | } | |
e8a7dd29 HG |
1398 | switch (dev->endpoint[i].type) { |
1399 | case usb_redir_type_invalid: | |
1400 | break; | |
1401 | case usb_redir_type_iso: | |
cdfd3530 | 1402 | usbredir_mark_speed_incompatible(dev, USB_SPEED_FULL); |
95a59dc0 | 1403 | usbredir_mark_speed_incompatible(dev, USB_SPEED_HIGH); |
cdfd3530 | 1404 | /* Fall through */ |
e8a7dd29 | 1405 | case usb_redir_type_interrupt: |
cdfd3530 JK |
1406 | if (!usbredirparser_peer_has_cap(dev->parser, |
1407 | usb_redir_cap_ep_info_max_packet_size) || | |
1408 | ep_info->max_packet_size[i] > 64) { | |
1409 | usbredir_mark_speed_incompatible(dev, USB_SPEED_FULL); | |
1410 | } | |
95a59dc0 HG |
1411 | if (!usbredirparser_peer_has_cap(dev->parser, |
1412 | usb_redir_cap_ep_info_max_packet_size) || | |
1413 | ep_info->max_packet_size[i] > 1024) { | |
1414 | usbredir_mark_speed_incompatible(dev, USB_SPEED_HIGH); | |
1415 | } | |
e8a7dd29 HG |
1416 | if (dev->endpoint[i].interval == 0) { |
1417 | ERROR("Received 0 interval for isoc or irq endpoint\n"); | |
24ac283a HG |
1418 | usbredir_reject_device(dev); |
1419 | return; | |
e8a7dd29 HG |
1420 | } |
1421 | /* Fall through */ | |
1422 | case usb_redir_type_control: | |
1423 | case usb_redir_type_bulk: | |
69354a83 HG |
1424 | DPRINTF("ep: %02X type: %d interface: %d\n", I2EP(i), |
1425 | dev->endpoint[i].type, dev->endpoint[i].interface); | |
e8a7dd29 HG |
1426 | break; |
1427 | default: | |
1428 | ERROR("Received invalid endpoint type\n"); | |
24ac283a | 1429 | usbredir_reject_device(dev); |
0454b611 | 1430 | return; |
69354a83 HG |
1431 | } |
1432 | } | |
cdfd3530 JK |
1433 | /* The new ep info may have caused a speed incompatibility, recheck */ |
1434 | if (dev->dev.attached && | |
1435 | !(dev->dev.port->speedmask & dev->dev.speedmask)) { | |
1436 | ERROR("Device no longer matches speed after endpoint info change, " | |
1437 | "disconnecting!\n"); | |
1438 | usbredir_reject_device(dev); | |
1439 | return; | |
1440 | } | |
7e03d178 | 1441 | usbredir_setup_usb_eps(dev); |
69354a83 HG |
1442 | } |
1443 | ||
be4a8928 | 1444 | static void usbredir_configuration_status(void *priv, uint64_t id, |
69354a83 HG |
1445 | struct usb_redir_configuration_status_header *config_status) |
1446 | { | |
1447 | USBRedirDevice *dev = priv; | |
de550a6a | 1448 | USBPacket *p; |
69354a83 | 1449 | |
be4a8928 HG |
1450 | DPRINTF("set config status %d config %d id %"PRIu64"\n", |
1451 | config_status->status, config_status->configuration, id); | |
69354a83 | 1452 | |
de550a6a HG |
1453 | p = usbredir_find_packet_by_id(dev, 0, id); |
1454 | if (p) { | |
cb897117 | 1455 | if (dev->dev.setup_buf[0] & USB_DIR_IN) { |
69354a83 | 1456 | dev->dev.data_buf[0] = config_status->configuration; |
9a77a0f5 | 1457 | p->actual_length = 1; |
69354a83 | 1458 | } |
9a77a0f5 | 1459 | usbredir_handle_status(dev, p, config_status->status); |
de550a6a | 1460 | usb_generic_async_ctrl_complete(&dev->dev, p); |
69354a83 | 1461 | } |
69354a83 HG |
1462 | } |
1463 | ||
be4a8928 | 1464 | static void usbredir_alt_setting_status(void *priv, uint64_t id, |
69354a83 HG |
1465 | struct usb_redir_alt_setting_status_header *alt_setting_status) |
1466 | { | |
1467 | USBRedirDevice *dev = priv; | |
de550a6a | 1468 | USBPacket *p; |
69354a83 | 1469 | |
be4a8928 HG |
1470 | DPRINTF("alt status %d intf %d alt %d id: %"PRIu64"\n", |
1471 | alt_setting_status->status, alt_setting_status->interface, | |
69354a83 HG |
1472 | alt_setting_status->alt, id); |
1473 | ||
de550a6a HG |
1474 | p = usbredir_find_packet_by_id(dev, 0, id); |
1475 | if (p) { | |
cb897117 | 1476 | if (dev->dev.setup_buf[0] & USB_DIR_IN) { |
69354a83 | 1477 | dev->dev.data_buf[0] = alt_setting_status->alt; |
9a77a0f5 | 1478 | p->actual_length = 1; |
69354a83 | 1479 | } |
9a77a0f5 | 1480 | usbredir_handle_status(dev, p, alt_setting_status->status); |
de550a6a | 1481 | usb_generic_async_ctrl_complete(&dev->dev, p); |
69354a83 | 1482 | } |
69354a83 HG |
1483 | } |
1484 | ||
be4a8928 | 1485 | static void usbredir_iso_stream_status(void *priv, uint64_t id, |
69354a83 HG |
1486 | struct usb_redir_iso_stream_status_header *iso_stream_status) |
1487 | { | |
1488 | USBRedirDevice *dev = priv; | |
1489 | uint8_t ep = iso_stream_status->endpoint; | |
1490 | ||
be4a8928 | 1491 | DPRINTF("iso status %d ep %02X id %"PRIu64"\n", iso_stream_status->status, |
69354a83 HG |
1492 | ep, id); |
1493 | ||
2bd836e5 | 1494 | if (!dev->dev.attached || !dev->endpoint[EP2I(ep)].iso_started) { |
99f08100 HG |
1495 | return; |
1496 | } | |
1497 | ||
69354a83 HG |
1498 | dev->endpoint[EP2I(ep)].iso_error = iso_stream_status->status; |
1499 | if (iso_stream_status->status == usb_redir_stall) { | |
1500 | DPRINTF("iso stream stopped by peer ep %02X\n", ep); | |
1501 | dev->endpoint[EP2I(ep)].iso_started = 0; | |
1502 | } | |
1503 | } | |
1504 | ||
be4a8928 | 1505 | static void usbredir_interrupt_receiving_status(void *priv, uint64_t id, |
69354a83 HG |
1506 | struct usb_redir_interrupt_receiving_status_header |
1507 | *interrupt_receiving_status) | |
1508 | { | |
1509 | USBRedirDevice *dev = priv; | |
1510 | uint8_t ep = interrupt_receiving_status->endpoint; | |
1511 | ||
be4a8928 | 1512 | DPRINTF("interrupt recv status %d ep %02X id %"PRIu64"\n", |
69354a83 HG |
1513 | interrupt_receiving_status->status, ep, id); |
1514 | ||
2bd836e5 | 1515 | if (!dev->dev.attached || !dev->endpoint[EP2I(ep)].interrupt_started) { |
99f08100 HG |
1516 | return; |
1517 | } | |
1518 | ||
69354a83 HG |
1519 | dev->endpoint[EP2I(ep)].interrupt_error = |
1520 | interrupt_receiving_status->status; | |
1521 | if (interrupt_receiving_status->status == usb_redir_stall) { | |
1522 | DPRINTF("interrupt receiving stopped by peer ep %02X\n", ep); | |
1523 | dev->endpoint[EP2I(ep)].interrupt_started = 0; | |
1524 | } | |
1525 | } | |
1526 | ||
be4a8928 | 1527 | static void usbredir_bulk_streams_status(void *priv, uint64_t id, |
69354a83 HG |
1528 | struct usb_redir_bulk_streams_status_header *bulk_streams_status) |
1529 | { | |
1530 | } | |
1531 | ||
be4a8928 | 1532 | static void usbredir_control_packet(void *priv, uint64_t id, |
69354a83 HG |
1533 | struct usb_redir_control_packet_header *control_packet, |
1534 | uint8_t *data, int data_len) | |
1535 | { | |
1536 | USBRedirDevice *dev = priv; | |
de550a6a | 1537 | USBPacket *p; |
69354a83 | 1538 | int len = control_packet->length; |
69354a83 | 1539 | |
be4a8928 | 1540 | DPRINTF("ctrl-in status %d len %d id %"PRIu64"\n", control_packet->status, |
69354a83 HG |
1541 | len, id); |
1542 | ||
95a59dc0 HG |
1543 | /* Fix up USB-3 ep0 maxpacket size to allow superspeed connected devices |
1544 | * to work redirected to a not superspeed capable hcd */ | |
1545 | if (dev->dev.speed == USB_SPEED_SUPER && | |
1546 | !((dev->dev.port->speedmask & USB_SPEED_MASK_SUPER)) && | |
1547 | control_packet->requesttype == 0x80 && | |
1548 | control_packet->request == 6 && | |
1549 | control_packet->value == 0x100 && control_packet->index == 0 && | |
1550 | data_len >= 18 && data[7] == 9) { | |
1551 | data[7] = 64; | |
1552 | } | |
1553 | ||
de550a6a HG |
1554 | p = usbredir_find_packet_by_id(dev, 0, id); |
1555 | if (p) { | |
9a77a0f5 | 1556 | usbredir_handle_status(dev, p, control_packet->status); |
e94ca437 | 1557 | if (data_len > 0) { |
69354a83 | 1558 | usbredir_log_data(dev, "ctrl data in:", data, data_len); |
e94ca437 | 1559 | if (data_len > sizeof(dev->dev.data_buf)) { |
69354a83 HG |
1560 | ERROR("ctrl buffer too small (%d > %zu)\n", |
1561 | data_len, sizeof(dev->dev.data_buf)); | |
9a77a0f5 | 1562 | p->status = USB_RET_STALL; |
e94ca437 | 1563 | data_len = len = sizeof(dev->dev.data_buf); |
69354a83 | 1564 | } |
e94ca437 | 1565 | memcpy(dev->dev.data_buf, data, data_len); |
69354a83 | 1566 | } |
9a77a0f5 | 1567 | p->actual_length = len; |
de550a6a | 1568 | usb_generic_async_ctrl_complete(&dev->dev, p); |
69354a83 | 1569 | } |
69354a83 HG |
1570 | free(data); |
1571 | } | |
1572 | ||
be4a8928 | 1573 | static void usbredir_bulk_packet(void *priv, uint64_t id, |
69354a83 HG |
1574 | struct usb_redir_bulk_packet_header *bulk_packet, |
1575 | uint8_t *data, int data_len) | |
1576 | { | |
1577 | USBRedirDevice *dev = priv; | |
1578 | uint8_t ep = bulk_packet->endpoint; | |
c19a7981 | 1579 | int len = (bulk_packet->length_high << 16) | bulk_packet->length; |
de550a6a | 1580 | USBPacket *p; |
69354a83 | 1581 | |
be4a8928 HG |
1582 | DPRINTF("bulk-in status %d ep %02X len %d id %"PRIu64"\n", |
1583 | bulk_packet->status, ep, len, id); | |
69354a83 | 1584 | |
de550a6a HG |
1585 | p = usbredir_find_packet_by_id(dev, ep, id); |
1586 | if (p) { | |
1b36c4d8 | 1587 | size_t size = (p->combined) ? p->combined->iov.size : p->iov.size; |
9a77a0f5 | 1588 | usbredir_handle_status(dev, p, bulk_packet->status); |
e94ca437 | 1589 | if (data_len > 0) { |
69354a83 | 1590 | usbredir_log_data(dev, "bulk data in:", data, data_len); |
e94ca437 | 1591 | if (data_len > size) { |
2979a361 HG |
1592 | ERROR("bulk got more data then requested (%d > %zd)\n", |
1593 | data_len, p->iov.size); | |
9a77a0f5 | 1594 | p->status = USB_RET_BABBLE; |
e94ca437 HG |
1595 | data_len = len = size; |
1596 | } | |
1597 | if (p->combined) { | |
1598 | iov_from_buf(p->combined->iov.iov, p->combined->iov.niov, | |
1599 | 0, data, data_len); | |
1600 | } else { | |
1601 | usb_packet_copy(p, data, data_len); | |
69354a83 HG |
1602 | } |
1603 | } | |
9a77a0f5 | 1604 | p->actual_length = len; |
1b36c4d8 HG |
1605 | if (p->pid == USB_TOKEN_IN && p->ep->pipeline) { |
1606 | usb_combined_input_packet_complete(&dev->dev, p); | |
1607 | } else { | |
1608 | usb_packet_complete(&dev->dev, p); | |
1609 | } | |
69354a83 | 1610 | } |
69354a83 HG |
1611 | free(data); |
1612 | } | |
1613 | ||
be4a8928 | 1614 | static void usbredir_iso_packet(void *priv, uint64_t id, |
69354a83 HG |
1615 | struct usb_redir_iso_packet_header *iso_packet, |
1616 | uint8_t *data, int data_len) | |
1617 | { | |
1618 | USBRedirDevice *dev = priv; | |
1619 | uint8_t ep = iso_packet->endpoint; | |
1620 | ||
be4a8928 HG |
1621 | DPRINTF2("iso-in status %d ep %02X len %d id %"PRIu64"\n", |
1622 | iso_packet->status, ep, data_len, id); | |
69354a83 HG |
1623 | |
1624 | if (dev->endpoint[EP2I(ep)].type != USB_ENDPOINT_XFER_ISOC) { | |
1625 | ERROR("received iso packet for non iso endpoint %02X\n", ep); | |
1626 | free(data); | |
1627 | return; | |
1628 | } | |
1629 | ||
1630 | if (dev->endpoint[EP2I(ep)].iso_started == 0) { | |
1631 | DPRINTF("received iso packet for non started stream ep %02X\n", ep); | |
1632 | free(data); | |
1633 | return; | |
1634 | } | |
1635 | ||
1636 | /* bufp_alloc also adds the packet to the ep queue */ | |
1637 | bufp_alloc(dev, data, data_len, iso_packet->status, ep); | |
1638 | } | |
1639 | ||
be4a8928 | 1640 | static void usbredir_interrupt_packet(void *priv, uint64_t id, |
69354a83 HG |
1641 | struct usb_redir_interrupt_packet_header *interrupt_packet, |
1642 | uint8_t *data, int data_len) | |
1643 | { | |
1644 | USBRedirDevice *dev = priv; | |
1645 | uint8_t ep = interrupt_packet->endpoint; | |
1646 | ||
be4a8928 | 1647 | DPRINTF("interrupt-in status %d ep %02X len %d id %"PRIu64"\n", |
69354a83 HG |
1648 | interrupt_packet->status, ep, data_len, id); |
1649 | ||
1650 | if (dev->endpoint[EP2I(ep)].type != USB_ENDPOINT_XFER_INT) { | |
1651 | ERROR("received int packet for non interrupt endpoint %02X\n", ep); | |
1652 | free(data); | |
1653 | return; | |
1654 | } | |
1655 | ||
1656 | if (ep & USB_DIR_IN) { | |
1657 | if (dev->endpoint[EP2I(ep)].interrupt_started == 0) { | |
1658 | DPRINTF("received int packet while not started ep %02X\n", ep); | |
1659 | free(data); | |
1660 | return; | |
1661 | } | |
1662 | ||
8beba930 HG |
1663 | if (QTAILQ_EMPTY(&dev->endpoint[EP2I(ep)].bufpq)) { |
1664 | usb_wakeup(usb_ep_get(&dev->dev, USB_TOKEN_IN, ep & 0x0f)); | |
1665 | } | |
1666 | ||
69354a83 HG |
1667 | /* bufp_alloc also adds the packet to the ep queue */ |
1668 | bufp_alloc(dev, data, data_len, interrupt_packet->status, ep); | |
1669 | } else { | |
723aedd5 HG |
1670 | /* |
1671 | * We report output interrupt packets as completed directly upon | |
1672 | * submission, so all we can do here if one failed is warn. | |
1673 | */ | |
1674 | if (interrupt_packet->status) { | |
1675 | WARNING("interrupt output failed status %d ep %02X id %"PRIu64"\n", | |
1676 | interrupt_packet->status, ep, id); | |
69354a83 | 1677 | } |
69354a83 HG |
1678 | } |
1679 | } | |
1680 | ||
fc3f6e1b HG |
1681 | /* |
1682 | * Migration code | |
1683 | */ | |
1684 | ||
1685 | static void usbredir_pre_save(void *priv) | |
1686 | { | |
1687 | USBRedirDevice *dev = priv; | |
1688 | ||
1689 | usbredir_fill_already_in_flight(dev); | |
1690 | } | |
1691 | ||
1692 | static int usbredir_post_load(void *priv, int version_id) | |
1693 | { | |
1694 | USBRedirDevice *dev = priv; | |
fc3f6e1b HG |
1695 | |
1696 | switch (dev->device_info.speed) { | |
1697 | case usb_redir_speed_low: | |
1698 | dev->dev.speed = USB_SPEED_LOW; | |
1699 | break; | |
1700 | case usb_redir_speed_full: | |
1701 | dev->dev.speed = USB_SPEED_FULL; | |
1702 | break; | |
1703 | case usb_redir_speed_high: | |
1704 | dev->dev.speed = USB_SPEED_HIGH; | |
1705 | break; | |
1706 | case usb_redir_speed_super: | |
1707 | dev->dev.speed = USB_SPEED_SUPER; | |
1708 | break; | |
1709 | default: | |
1710 | dev->dev.speed = USB_SPEED_FULL; | |
1711 | } | |
1712 | dev->dev.speedmask = (1 << dev->dev.speed); | |
1713 | ||
7e03d178 HG |
1714 | usbredir_setup_usb_eps(dev); |
1715 | ||
fc3f6e1b HG |
1716 | return 0; |
1717 | } | |
1718 | ||
1719 | /* For usbredirparser migration */ | |
1720 | static void usbredir_put_parser(QEMUFile *f, void *priv, size_t unused) | |
1721 | { | |
1722 | USBRedirDevice *dev = priv; | |
1723 | uint8_t *data; | |
1724 | int len; | |
1725 | ||
1726 | if (dev->parser == NULL) { | |
1727 | qemu_put_be32(f, 0); | |
1728 | return; | |
1729 | } | |
1730 | ||
1731 | usbredirparser_serialize(dev->parser, &data, &len); | |
1732 | qemu_oom_check(data); | |
1733 | ||
1734 | qemu_put_be32(f, len); | |
1735 | qemu_put_buffer(f, data, len); | |
1736 | ||
1737 | free(data); | |
1738 | } | |
1739 | ||
1740 | static int usbredir_get_parser(QEMUFile *f, void *priv, size_t unused) | |
1741 | { | |
1742 | USBRedirDevice *dev = priv; | |
1743 | uint8_t *data; | |
1744 | int len, ret; | |
1745 | ||
1746 | len = qemu_get_be32(f); | |
1747 | if (len == 0) { | |
1748 | return 0; | |
1749 | } | |
1750 | ||
1751 | /* | |
5c16f767 HG |
1752 | * If our chardev is not open already at this point the usbredir connection |
1753 | * has been broken (non seamless migration, or restore from disk). | |
1754 | * | |
1755 | * In this case create a temporary parser to receive the migration data, | |
1756 | * and schedule the close_bh to report the device as disconnected to the | |
1757 | * guest and to destroy the parser again. | |
fc3f6e1b HG |
1758 | */ |
1759 | if (dev->parser == NULL) { | |
5c16f767 HG |
1760 | WARNING("usb-redir connection broken during migration\n"); |
1761 | usbredir_create_parser(dev); | |
1762 | qemu_bh_schedule(dev->chardev_close_bh); | |
fc3f6e1b HG |
1763 | } |
1764 | ||
1765 | data = g_malloc(len); | |
1766 | qemu_get_buffer(f, data, len); | |
1767 | ||
1768 | ret = usbredirparser_unserialize(dev->parser, data, len); | |
1769 | ||
1770 | g_free(data); | |
1771 | ||
1772 | return ret; | |
1773 | } | |
1774 | ||
1775 | static const VMStateInfo usbredir_parser_vmstate_info = { | |
1776 | .name = "usb-redir-parser", | |
1777 | .put = usbredir_put_parser, | |
1778 | .get = usbredir_get_parser, | |
1779 | }; | |
1780 | ||
1781 | ||
1782 | /* For buffered packets (iso/irq) queue migration */ | |
1783 | static void usbredir_put_bufpq(QEMUFile *f, void *priv, size_t unused) | |
1784 | { | |
1785 | struct endp_data *endp = priv; | |
1786 | struct buf_packet *bufp; | |
1787 | int remain = endp->bufpq_size; | |
1788 | ||
1789 | qemu_put_be32(f, endp->bufpq_size); | |
1790 | QTAILQ_FOREACH(bufp, &endp->bufpq, next) { | |
1791 | qemu_put_be32(f, bufp->len); | |
1792 | qemu_put_be32(f, bufp->status); | |
1793 | qemu_put_buffer(f, bufp->data, bufp->len); | |
1794 | remain--; | |
1795 | } | |
1796 | assert(remain == 0); | |
1797 | } | |
1798 | ||
1799 | static int usbredir_get_bufpq(QEMUFile *f, void *priv, size_t unused) | |
1800 | { | |
1801 | struct endp_data *endp = priv; | |
1802 | struct buf_packet *bufp; | |
1803 | int i; | |
1804 | ||
1805 | endp->bufpq_size = qemu_get_be32(f); | |
1806 | for (i = 0; i < endp->bufpq_size; i++) { | |
1807 | bufp = g_malloc(sizeof(struct buf_packet)); | |
1808 | bufp->len = qemu_get_be32(f); | |
1809 | bufp->status = qemu_get_be32(f); | |
1810 | bufp->data = qemu_oom_check(malloc(bufp->len)); /* regular malloc! */ | |
1811 | qemu_get_buffer(f, bufp->data, bufp->len); | |
1812 | QTAILQ_INSERT_TAIL(&endp->bufpq, bufp, next); | |
1813 | } | |
1814 | return 0; | |
1815 | } | |
1816 | ||
1817 | static const VMStateInfo usbredir_ep_bufpq_vmstate_info = { | |
1818 | .name = "usb-redir-bufpq", | |
1819 | .put = usbredir_put_bufpq, | |
1820 | .get = usbredir_get_bufpq, | |
1821 | }; | |
1822 | ||
1823 | ||
1824 | /* For endp_data migration */ | |
1825 | static const VMStateDescription usbredir_ep_vmstate = { | |
1826 | .name = "usb-redir-ep", | |
1827 | .version_id = 1, | |
1828 | .minimum_version_id = 1, | |
1829 | .fields = (VMStateField[]) { | |
1830 | VMSTATE_UINT8(type, struct endp_data), | |
1831 | VMSTATE_UINT8(interval, struct endp_data), | |
1832 | VMSTATE_UINT8(interface, struct endp_data), | |
1833 | VMSTATE_UINT16(max_packet_size, struct endp_data), | |
1834 | VMSTATE_UINT8(iso_started, struct endp_data), | |
1835 | VMSTATE_UINT8(iso_error, struct endp_data), | |
1836 | VMSTATE_UINT8(interrupt_started, struct endp_data), | |
1837 | VMSTATE_UINT8(interrupt_error, struct endp_data), | |
1838 | VMSTATE_UINT8(bufpq_prefilled, struct endp_data), | |
1839 | VMSTATE_UINT8(bufpq_dropping_packets, struct endp_data), | |
1840 | { | |
1841 | .name = "bufpq", | |
1842 | .version_id = 0, | |
1843 | .field_exists = NULL, | |
1844 | .size = 0, | |
1845 | .info = &usbredir_ep_bufpq_vmstate_info, | |
1846 | .flags = VMS_SINGLE, | |
1847 | .offset = 0, | |
1848 | }, | |
1849 | VMSTATE_INT32(bufpq_target_size, struct endp_data), | |
1850 | VMSTATE_END_OF_LIST() | |
1851 | } | |
1852 | }; | |
1853 | ||
1854 | ||
1855 | /* For PacketIdQueue migration */ | |
1856 | static void usbredir_put_packet_id_q(QEMUFile *f, void *priv, size_t unused) | |
1857 | { | |
1858 | struct PacketIdQueue *q = priv; | |
1859 | USBRedirDevice *dev = q->dev; | |
1860 | struct PacketIdQueueEntry *e; | |
1861 | int remain = q->size; | |
1862 | ||
1863 | DPRINTF("put_packet_id_q %s size %d\n", q->name, q->size); | |
1864 | qemu_put_be32(f, q->size); | |
1865 | QTAILQ_FOREACH(e, &q->head, next) { | |
1866 | qemu_put_be64(f, e->id); | |
1867 | remain--; | |
1868 | } | |
1869 | assert(remain == 0); | |
1870 | } | |
1871 | ||
1872 | static int usbredir_get_packet_id_q(QEMUFile *f, void *priv, size_t unused) | |
1873 | { | |
1874 | struct PacketIdQueue *q = priv; | |
1875 | USBRedirDevice *dev = q->dev; | |
1876 | int i, size; | |
1877 | uint64_t id; | |
1878 | ||
1879 | size = qemu_get_be32(f); | |
1880 | DPRINTF("get_packet_id_q %s size %d\n", q->name, size); | |
1881 | for (i = 0; i < size; i++) { | |
1882 | id = qemu_get_be64(f); | |
1883 | packet_id_queue_add(q, id); | |
1884 | } | |
1885 | assert(q->size == size); | |
1886 | return 0; | |
1887 | } | |
1888 | ||
1889 | static const VMStateInfo usbredir_ep_packet_id_q_vmstate_info = { | |
1890 | .name = "usb-redir-packet-id-q", | |
1891 | .put = usbredir_put_packet_id_q, | |
1892 | .get = usbredir_get_packet_id_q, | |
1893 | }; | |
1894 | ||
1895 | static const VMStateDescription usbredir_ep_packet_id_queue_vmstate = { | |
1896 | .name = "usb-redir-packet-id-queue", | |
1897 | .version_id = 1, | |
1898 | .minimum_version_id = 1, | |
1899 | .fields = (VMStateField[]) { | |
1900 | { | |
1901 | .name = "queue", | |
1902 | .version_id = 0, | |
1903 | .field_exists = NULL, | |
1904 | .size = 0, | |
1905 | .info = &usbredir_ep_packet_id_q_vmstate_info, | |
1906 | .flags = VMS_SINGLE, | |
1907 | .offset = 0, | |
1908 | }, | |
1909 | VMSTATE_END_OF_LIST() | |
1910 | } | |
1911 | }; | |
1912 | ||
1913 | ||
1914 | /* For usb_redir_device_connect_header migration */ | |
1915 | static const VMStateDescription usbredir_device_info_vmstate = { | |
1916 | .name = "usb-redir-device-info", | |
1917 | .version_id = 1, | |
1918 | .minimum_version_id = 1, | |
1919 | .fields = (VMStateField[]) { | |
1920 | VMSTATE_UINT8(speed, struct usb_redir_device_connect_header), | |
1921 | VMSTATE_UINT8(device_class, struct usb_redir_device_connect_header), | |
1922 | VMSTATE_UINT8(device_subclass, struct usb_redir_device_connect_header), | |
1923 | VMSTATE_UINT8(device_protocol, struct usb_redir_device_connect_header), | |
1924 | VMSTATE_UINT16(vendor_id, struct usb_redir_device_connect_header), | |
1925 | VMSTATE_UINT16(product_id, struct usb_redir_device_connect_header), | |
1926 | VMSTATE_UINT16(device_version_bcd, | |
1927 | struct usb_redir_device_connect_header), | |
1928 | VMSTATE_END_OF_LIST() | |
1929 | } | |
1930 | }; | |
1931 | ||
1932 | ||
1933 | /* For usb_redir_interface_info_header migration */ | |
1934 | static const VMStateDescription usbredir_interface_info_vmstate = { | |
1935 | .name = "usb-redir-interface-info", | |
1936 | .version_id = 1, | |
1937 | .minimum_version_id = 1, | |
1938 | .fields = (VMStateField[]) { | |
1939 | VMSTATE_UINT32(interface_count, | |
1940 | struct usb_redir_interface_info_header), | |
1941 | VMSTATE_UINT8_ARRAY(interface, | |
1942 | struct usb_redir_interface_info_header, 32), | |
1943 | VMSTATE_UINT8_ARRAY(interface_class, | |
1944 | struct usb_redir_interface_info_header, 32), | |
1945 | VMSTATE_UINT8_ARRAY(interface_subclass, | |
1946 | struct usb_redir_interface_info_header, 32), | |
1947 | VMSTATE_UINT8_ARRAY(interface_protocol, | |
1948 | struct usb_redir_interface_info_header, 32), | |
1949 | VMSTATE_END_OF_LIST() | |
1950 | } | |
1951 | }; | |
1952 | ||
1953 | ||
1954 | /* And finally the USBRedirDevice vmstate itself */ | |
1955 | static const VMStateDescription usbredir_vmstate = { | |
1956 | .name = "usb-redir", | |
1957 | .version_id = 1, | |
1958 | .minimum_version_id = 1, | |
1959 | .pre_save = usbredir_pre_save, | |
1960 | .post_load = usbredir_post_load, | |
1961 | .fields = (VMStateField[]) { | |
1962 | VMSTATE_USB_DEVICE(dev, USBRedirDevice), | |
1963 | VMSTATE_TIMER(attach_timer, USBRedirDevice), | |
1964 | { | |
1965 | .name = "parser", | |
1966 | .version_id = 0, | |
1967 | .field_exists = NULL, | |
1968 | .size = 0, | |
1969 | .info = &usbredir_parser_vmstate_info, | |
1970 | .flags = VMS_SINGLE, | |
1971 | .offset = 0, | |
1972 | }, | |
1973 | VMSTATE_STRUCT_ARRAY(endpoint, USBRedirDevice, MAX_ENDPOINTS, 1, | |
1974 | usbredir_ep_vmstate, struct endp_data), | |
1975 | VMSTATE_STRUCT(cancelled, USBRedirDevice, 1, | |
1976 | usbredir_ep_packet_id_queue_vmstate, | |
1977 | struct PacketIdQueue), | |
1978 | VMSTATE_STRUCT(already_in_flight, USBRedirDevice, 1, | |
1979 | usbredir_ep_packet_id_queue_vmstate, | |
1980 | struct PacketIdQueue), | |
1981 | VMSTATE_STRUCT(device_info, USBRedirDevice, 1, | |
1982 | usbredir_device_info_vmstate, | |
1983 | struct usb_redir_device_connect_header), | |
1984 | VMSTATE_STRUCT(interface_info, USBRedirDevice, 1, | |
1985 | usbredir_interface_info_vmstate, | |
1986 | struct usb_redir_interface_info_header), | |
1987 | VMSTATE_END_OF_LIST() | |
1988 | } | |
1989 | }; | |
1990 | ||
3bc36349 AL |
1991 | static Property usbredir_properties[] = { |
1992 | DEFINE_PROP_CHR("chardev", USBRedirDevice, cs), | |
618fbc95 | 1993 | DEFINE_PROP_UINT8("debug", USBRedirDevice, debug, usbredirparser_warning), |
6af16589 | 1994 | DEFINE_PROP_STRING("filter", USBRedirDevice, filter_str), |
65bb3a5c | 1995 | DEFINE_PROP_INT32("bootindex", USBRedirDevice, bootindex, -1), |
3bc36349 AL |
1996 | DEFINE_PROP_END_OF_LIST(), |
1997 | }; | |
1998 | ||
62aed765 AL |
1999 | static void usbredir_class_initfn(ObjectClass *klass, void *data) |
2000 | { | |
2001 | USBDeviceClass *uc = USB_DEVICE_CLASS(klass); | |
3bc36349 | 2002 | DeviceClass *dc = DEVICE_CLASS(klass); |
62aed765 AL |
2003 | |
2004 | uc->init = usbredir_initfn; | |
2005 | uc->product_desc = "USB Redirection Device"; | |
2006 | uc->handle_destroy = usbredir_handle_destroy; | |
62aed765 AL |
2007 | uc->cancel_packet = usbredir_cancel_packet; |
2008 | uc->handle_reset = usbredir_handle_reset; | |
2009 | uc->handle_data = usbredir_handle_data; | |
2010 | uc->handle_control = usbredir_handle_control; | |
1b36c4d8 | 2011 | uc->flush_ep_queue = usbredir_flush_ep_queue; |
d8553dd0 | 2012 | uc->ep_stopped = usbredir_ep_stopped; |
fc3f6e1b | 2013 | dc->vmsd = &usbredir_vmstate; |
3bc36349 | 2014 | dc->props = usbredir_properties; |
62aed765 AL |
2015 | } |
2016 | ||
3bc36349 AL |
2017 | static TypeInfo usbredir_dev_info = { |
2018 | .name = "usb-redir", | |
2019 | .parent = TYPE_USB_DEVICE, | |
2020 | .instance_size = sizeof(USBRedirDevice), | |
2021 | .class_init = usbredir_class_initfn, | |
69354a83 HG |
2022 | }; |
2023 | ||
83f7d43a | 2024 | static void usbredir_register_types(void) |
69354a83 | 2025 | { |
3bc36349 | 2026 | type_register_static(&usbredir_dev_info); |
69354a83 | 2027 | } |
83f7d43a AF |
2028 | |
2029 | type_init(usbredir_register_types) |