usbdi.c revision 1.182.4.6 1 1.182.4.6 martin /* $NetBSD: usbdi.c,v 1.182.4.6 2024/03/12 12:34:50 martin Exp $ */
2 1.1 augustss
3 1.1 augustss /*
4 1.169 skrll * Copyright (c) 1998, 2012, 2015 The NetBSD Foundation, Inc.
5 1.1 augustss * All rights reserved.
6 1.1 augustss *
7 1.11 augustss * This code is derived from software contributed to The NetBSD Foundation
8 1.72 augustss * by Lennart Augustsson (lennart (at) augustsson.net) at
9 1.169 skrll * Carlstedt Research & Technology, Matthew R. Green (mrg (at) eterna.com.au),
10 1.169 skrll * and Nick Hudson.
11 1.1 augustss *
12 1.1 augustss * Redistribution and use in source and binary forms, with or without
13 1.1 augustss * modification, are permitted provided that the following conditions
14 1.1 augustss * are met:
15 1.1 augustss * 1. Redistributions of source code must retain the above copyright
16 1.1 augustss * notice, this list of conditions and the following disclaimer.
17 1.1 augustss * 2. Redistributions in binary form must reproduce the above copyright
18 1.1 augustss * notice, this list of conditions and the following disclaimer in the
19 1.1 augustss * documentation and/or other materials provided with the distribution.
20 1.1 augustss *
21 1.1 augustss * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
22 1.1 augustss * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
23 1.1 augustss * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
24 1.1 augustss * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
25 1.1 augustss * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
26 1.1 augustss * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
27 1.1 augustss * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
28 1.1 augustss * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
29 1.1 augustss * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
30 1.1 augustss * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
31 1.1 augustss * POSSIBILITY OF SUCH DAMAGE.
32 1.1 augustss */
33 1.84 lukem
34 1.84 lukem #include <sys/cdefs.h>
35 1.182.4.6 martin __KERNEL_RCSID(0, "$NetBSD: usbdi.c,v 1.182.4.6 2024/03/12 12:34:50 martin Exp $");
36 1.115 pavel
37 1.141 christos #ifdef _KERNEL_OPT
38 1.162 skrll #include "opt_usb.h"
39 1.115 pavel #include "opt_compat_netbsd.h"
40 1.169 skrll #include "usb_dma.h"
41 1.141 christos #endif
42 1.1 augustss
43 1.1 augustss #include <sys/param.h>
44 1.1 augustss #include <sys/systm.h>
45 1.1 augustss #include <sys/kernel.h>
46 1.15 augustss #include <sys/device.h>
47 1.169 skrll #include <sys/kmem.h>
48 1.1 augustss #include <sys/proc.h>
49 1.121 ad #include <sys/bus.h>
50 1.136 mrg #include <sys/cpu.h>
51 1.36 augustss
52 1.1 augustss #include <dev/usb/usb.h>
53 1.1 augustss #include <dev/usb/usbdi.h>
54 1.1 augustss #include <dev/usb/usbdi_util.h>
55 1.1 augustss #include <dev/usb/usbdivar.h>
56 1.36 augustss #include <dev/usb/usb_mem.h>
57 1.105 augustss #include <dev/usb/usb_quirks.h>
58 1.162 skrll #include <dev/usb/usbhist.h>
59 1.1 augustss
60 1.119 drochner /* UTF-8 encoding stuff */
61 1.119 drochner #include <fs/unicode.h>
62 1.119 drochner
63 1.1 augustss extern int usbdebug;
64 1.1 augustss
65 1.169 skrll Static usbd_status usbd_ar_pipe(struct usbd_pipe *);
66 1.169 skrll Static void usbd_start_next(struct usbd_pipe *);
67 1.69 augustss Static usbd_status usbd_open_pipe_ival
68 1.169 skrll (struct usbd_interface *, uint8_t, uint8_t, struct usbd_pipe **, int);
69 1.169 skrll static void *usbd_alloc_buffer(struct usbd_xfer *, uint32_t);
70 1.169 skrll static void usbd_free_buffer(struct usbd_xfer *);
71 1.169 skrll static struct usbd_xfer *usbd_alloc_xfer(struct usbd_device *, unsigned int);
72 1.169 skrll static usbd_status usbd_free_xfer(struct usbd_xfer *);
73 1.176 khorben static void usbd_request_async_cb(struct usbd_xfer *, void *, usbd_status);
74 1.182.4.3 martin static void usbd_xfer_timeout(void *);
75 1.182.4.3 martin static void usbd_xfer_timeout_task(void *);
76 1.182.4.3 martin static bool usbd_xfer_probe_timeout(struct usbd_xfer *);
77 1.182.4.3 martin static void usbd_xfer_cancel_timeout_async(struct usbd_xfer *);
78 1.1 augustss
79 1.162 skrll #if defined(USB_DEBUG)
80 1.82 augustss void
81 1.82 augustss usbd_dump_iface(struct usbd_interface *iface)
82 1.82 augustss {
83 1.182.4.1 martin USBHIST_FUNC();
84 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "iface %#jx", (uintptr_t)iface, 0, 0, 0);
85 1.162 skrll
86 1.82 augustss if (iface == NULL)
87 1.82 augustss return;
88 1.175 pgoyette USBHIST_LOG(usbdebug, " device = %#jx idesc = %#jx index = %d",
89 1.175 pgoyette (uintptr_t)iface->ui_dev, (uintptr_t)iface->ui_idesc,
90 1.175 pgoyette iface->ui_index, 0);
91 1.175 pgoyette USBHIST_LOG(usbdebug, " altindex=%d priv=%#jx",
92 1.175 pgoyette iface->ui_altindex, (uintptr_t)iface->ui_priv, 0, 0);
93 1.82 augustss }
94 1.82 augustss
95 1.82 augustss void
96 1.82 augustss usbd_dump_device(struct usbd_device *dev)
97 1.82 augustss {
98 1.182.4.1 martin USBHIST_FUNC();
99 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "dev = %#jx", (uintptr_t)dev, 0, 0, 0);
100 1.162 skrll
101 1.82 augustss if (dev == NULL)
102 1.82 augustss return;
103 1.175 pgoyette USBHIST_LOG(usbdebug, " bus = %#jx default_pipe = %#jx",
104 1.175 pgoyette (uintptr_t)dev->ud_bus, (uintptr_t)dev->ud_pipe0, 0, 0);
105 1.175 pgoyette USBHIST_LOG(usbdebug, " address = %jd config = %jd depth = %jd ",
106 1.169 skrll dev->ud_addr, dev->ud_config, dev->ud_depth, 0);
107 1.175 pgoyette USBHIST_LOG(usbdebug, " speed = %jd self_powered = %jd "
108 1.175 pgoyette "power = %jd langid = %jd",
109 1.169 skrll dev->ud_speed, dev->ud_selfpowered, dev->ud_power, dev->ud_langid);
110 1.82 augustss }
111 1.82 augustss
112 1.82 augustss void
113 1.82 augustss usbd_dump_endpoint(struct usbd_endpoint *endp)
114 1.82 augustss {
115 1.182.4.1 martin USBHIST_FUNC();
116 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "endp = %#jx", (uintptr_t)endp, 0, 0, 0);
117 1.162 skrll
118 1.82 augustss if (endp == NULL)
119 1.82 augustss return;
120 1.175 pgoyette USBHIST_LOG(usbdebug, " edesc = %#jx refcnt = %jd",
121 1.175 pgoyette (uintptr_t)endp->ue_edesc, endp->ue_refcnt, 0, 0);
122 1.169 skrll if (endp->ue_edesc)
123 1.162 skrll USBHIST_LOG(usbdebug, " bEndpointAddress=0x%02x",
124 1.169 skrll endp->ue_edesc->bEndpointAddress, 0, 0, 0);
125 1.82 augustss }
126 1.82 augustss
127 1.28 augustss void
128 1.169 skrll usbd_dump_queue(struct usbd_pipe *pipe)
129 1.28 augustss {
130 1.169 skrll struct usbd_xfer *xfer;
131 1.28 augustss
132 1.182.4.1 martin USBHIST_FUNC();
133 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "pipe = %#jx", (uintptr_t)pipe, 0, 0, 0);
134 1.162 skrll
135 1.169 skrll SIMPLEQ_FOREACH(xfer, &pipe->up_queue, ux_next) {
136 1.175 pgoyette USBHIST_LOG(usbdebug, " xfer = %#jx", (uintptr_t)xfer,
137 1.175 pgoyette 0, 0, 0);
138 1.28 augustss }
139 1.82 augustss }
140 1.82 augustss
141 1.82 augustss void
142 1.169 skrll usbd_dump_pipe(struct usbd_pipe *pipe)
143 1.82 augustss {
144 1.182.4.1 martin USBHIST_FUNC();
145 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "pipe = %#jx", (uintptr_t)pipe, 0, 0, 0);
146 1.162 skrll
147 1.82 augustss if (pipe == NULL)
148 1.82 augustss return;
149 1.169 skrll usbd_dump_iface(pipe->up_iface);
150 1.169 skrll usbd_dump_device(pipe->up_dev);
151 1.169 skrll usbd_dump_endpoint(pipe->up_endpoint);
152 1.162 skrll USBHIST_LOG(usbdebug, "(usbd_dump_pipe)", 0, 0, 0, 0);
153 1.175 pgoyette USBHIST_LOG(usbdebug, " running = %jd aborting = %jd",
154 1.169 skrll pipe->up_running, pipe->up_aborting, 0, 0);
155 1.175 pgoyette USBHIST_LOG(usbdebug, " intrxfer = %#jx, repeat = %jd, "
156 1.175 pgoyette "interval = %jd", (uintptr_t)pipe->up_intrxfer, pipe->up_repeat,
157 1.175 pgoyette pipe->up_interval, 0);
158 1.28 augustss }
159 1.28 augustss #endif
160 1.28 augustss
161 1.102 augustss usbd_status
162 1.169 skrll usbd_open_pipe(struct usbd_interface *iface, uint8_t address,
163 1.169 skrll uint8_t flags, struct usbd_pipe **pipe)
164 1.102 augustss {
165 1.102 augustss return (usbd_open_pipe_ival(iface, address, flags, pipe,
166 1.60 augustss USBD_DEFAULT_INTERVAL));
167 1.60 augustss }
168 1.60 augustss
169 1.102 augustss usbd_status
170 1.169 skrll usbd_open_pipe_ival(struct usbd_interface *iface, uint8_t address,
171 1.169 skrll uint8_t flags, struct usbd_pipe **pipe, int ival)
172 1.102 augustss {
173 1.169 skrll struct usbd_pipe *p;
174 1.1 augustss struct usbd_endpoint *ep;
175 1.48 augustss usbd_status err;
176 1.12 augustss int i;
177 1.1 augustss
178 1.182.4.1 martin USBHIST_FUNC();
179 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "iface = %#jx address = 0x%jx flags = 0x%jx",
180 1.175 pgoyette (uintptr_t)iface, address, flags, 0);
181 1.53 augustss
182 1.169 skrll for (i = 0; i < iface->ui_idesc->bNumEndpoints; i++) {
183 1.169 skrll ep = &iface->ui_endpoints[i];
184 1.169 skrll if (ep->ue_edesc == NULL)
185 1.169 skrll return USBD_IOERROR;
186 1.169 skrll if (ep->ue_edesc->bEndpointAddress == address)
187 1.1 augustss goto found;
188 1.1 augustss }
189 1.169 skrll return USBD_BAD_ADDRESS;
190 1.1 augustss found:
191 1.169 skrll if ((flags & USBD_EXCLUSIVE_USE) && ep->ue_refcnt != 0)
192 1.169 skrll return USBD_IN_USE;
193 1.169 skrll err = usbd_setup_pipe_flags(iface->ui_dev, iface, ep, ival, &p, flags);
194 1.48 augustss if (err)
195 1.169 skrll return err;
196 1.169 skrll LIST_INSERT_HEAD(&iface->ui_pipes, p, up_next);
197 1.1 augustss *pipe = p;
198 1.169 skrll return USBD_NORMAL_COMPLETION;
199 1.1 augustss }
200 1.1 augustss
201 1.102 augustss usbd_status
202 1.169 skrll usbd_open_pipe_intr(struct usbd_interface *iface, uint8_t address,
203 1.169 skrll uint8_t flags, struct usbd_pipe **pipe,
204 1.169 skrll void *priv, void *buffer, uint32_t len,
205 1.74 augustss usbd_callback cb, int ival)
206 1.1 augustss {
207 1.48 augustss usbd_status err;
208 1.169 skrll struct usbd_xfer *xfer;
209 1.169 skrll struct usbd_pipe *ipipe;
210 1.1 augustss
211 1.182.4.1 martin USBHIST_FUNC();
212 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "address = 0x%jx flags = 0x%jx len = %jd",
213 1.162 skrll address, flags, len, 0);
214 1.53 augustss
215 1.150 jmcneill err = usbd_open_pipe_ival(iface, address,
216 1.150 jmcneill USBD_EXCLUSIVE_USE | (flags & USBD_MPSAFE),
217 1.60 augustss &ipipe, ival);
218 1.48 augustss if (err)
219 1.169 skrll return err;
220 1.169 skrll err = usbd_create_xfer(ipipe, len, flags, 0, &xfer);
221 1.169 skrll if (err)
222 1.1 augustss goto bad1;
223 1.169 skrll
224 1.169 skrll usbd_setup_xfer(xfer, priv, buffer, len, flags, USBD_NO_TIMEOUT, cb);
225 1.169 skrll ipipe->up_intrxfer = xfer;
226 1.169 skrll ipipe->up_repeat = 1;
227 1.48 augustss err = usbd_transfer(xfer);
228 1.1 augustss *pipe = ipipe;
229 1.48 augustss if (err != USBD_IN_PROGRESS)
230 1.169 skrll goto bad3;
231 1.169 skrll return USBD_NORMAL_COMPLETION;
232 1.169 skrll
233 1.169 skrll bad3:
234 1.169 skrll ipipe->up_intrxfer = NULL;
235 1.169 skrll ipipe->up_repeat = 0;
236 1.1 augustss
237 1.169 skrll usbd_destroy_xfer(xfer);
238 1.36 augustss bad1:
239 1.1 augustss usbd_close_pipe(ipipe);
240 1.169 skrll return err;
241 1.9 augustss }
242 1.9 augustss
243 1.1 augustss usbd_status
244 1.169 skrll usbd_close_pipe(struct usbd_pipe *pipe)
245 1.1 augustss {
246 1.162 skrll USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
247 1.162 skrll
248 1.169 skrll KASSERT(pipe != NULL);
249 1.26 augustss
250 1.138 mrg usbd_lock_pipe(pipe);
251 1.169 skrll
252 1.169 skrll if (!SIMPLEQ_EMPTY(&pipe->up_queue)) {
253 1.169 skrll printf("WARNING: pipe closed with active xfers on addr %d\n",
254 1.169 skrll pipe->up_dev->ud_addr);
255 1.169 skrll usbd_ar_pipe(pipe);
256 1.138 mrg }
257 1.169 skrll
258 1.169 skrll KASSERT(SIMPLEQ_EMPTY(&pipe->up_queue));
259 1.169 skrll
260 1.169 skrll LIST_REMOVE(pipe, up_next);
261 1.169 skrll pipe->up_endpoint->ue_refcnt--;
262 1.169 skrll
263 1.181 skrll pipe->up_methods->upm_close(pipe);
264 1.181 skrll
265 1.169 skrll if (pipe->up_intrxfer != NULL) {
266 1.169 skrll usbd_unlock_pipe(pipe);
267 1.169 skrll usbd_destroy_xfer(pipe->up_intrxfer);
268 1.169 skrll usbd_lock_pipe(pipe);
269 1.138 mrg }
270 1.169 skrll
271 1.138 mrg usbd_unlock_pipe(pipe);
272 1.169 skrll kmem_free(pipe, pipe->up_dev->ud_bus->ub_pipesize);
273 1.169 skrll
274 1.169 skrll return USBD_NORMAL_COMPLETION;
275 1.1 augustss }
276 1.1 augustss
277 1.31 augustss usbd_status
278 1.169 skrll usbd_transfer(struct usbd_xfer *xfer)
279 1.1 augustss {
280 1.169 skrll struct usbd_pipe *pipe = xfer->ux_pipe;
281 1.48 augustss usbd_status err;
282 1.120 kiyohara unsigned int size, flags;
283 1.16 augustss
284 1.182.4.1 martin USBHIST_FUNC(); USBHIST_CALLARGS(usbdebug,
285 1.175 pgoyette "xfer = %#jx, flags = %#jx, pipe = %#jx, running = %jd",
286 1.175 pgoyette (uintptr_t)xfer, xfer->ux_flags, (uintptr_t)pipe, pipe->up_running);
287 1.177 mrg KASSERT(xfer->ux_status == USBD_NOT_STARTED);
288 1.134 jmcneill
289 1.28 augustss #ifdef USB_DEBUG
290 1.28 augustss if (usbdebug > 5)
291 1.28 augustss usbd_dump_queue(pipe);
292 1.28 augustss #endif
293 1.169 skrll xfer->ux_done = 0;
294 1.31 augustss
295 1.169 skrll if (pipe->up_aborting) {
296 1.175 pgoyette USBHIST_LOG(usbdebug, "<- done xfer %#jx, aborting",
297 1.175 pgoyette (uintptr_t)xfer, 0, 0, 0);
298 1.169 skrll return USBD_CANCELLED;
299 1.162 skrll }
300 1.71 augustss
301 1.169 skrll KASSERT(xfer->ux_length == 0 || xfer->ux_buf != NULL);
302 1.169 skrll
303 1.169 skrll size = xfer->ux_length;
304 1.169 skrll flags = xfer->ux_flags;
305 1.37 augustss
306 1.169 skrll if (size != 0) {
307 1.169 skrll /*
308 1.169 skrll * Use the xfer buffer if none specified in transfer setup.
309 1.169 skrll * isoc transfers always use the xfer buffer, i.e.
310 1.169 skrll * ux_buffer is always NULL for isoc.
311 1.169 skrll */
312 1.169 skrll if (xfer->ux_buffer == NULL) {
313 1.169 skrll xfer->ux_buffer = xfer->ux_buf;
314 1.169 skrll }
315 1.169 skrll
316 1.169 skrll /*
317 1.169 skrll * If not using the xfer buffer copy data to the
318 1.169 skrll * xfer buffer for OUT transfers of >0 length
319 1.169 skrll */
320 1.169 skrll if (xfer->ux_buffer != xfer->ux_buf) {
321 1.169 skrll KASSERT(xfer->ux_buf);
322 1.169 skrll if (!usbd_xfer_isread(xfer)) {
323 1.169 skrll memcpy(xfer->ux_buf, xfer->ux_buffer, size);
324 1.169 skrll }
325 1.162 skrll }
326 1.38 augustss }
327 1.37 augustss
328 1.120 kiyohara /* xfer is not valid after the transfer method unless synchronous */
329 1.169 skrll err = pipe->up_methods->upm_transfer(xfer);
330 1.37 augustss
331 1.51 augustss if (err != USBD_IN_PROGRESS && err) {
332 1.168 skrll /*
333 1.168 skrll * The transfer made it onto the pipe queue, but didn't get
334 1.168 skrll * accepted by the HCD for some reason. It needs removing
335 1.168 skrll * from the pipe queue.
336 1.168 skrll */
337 1.182.4.1 martin USBHIST_LOG(usbdebug, "xfer failed: %s, reinserting",
338 1.182.4.1 martin err, 0, 0, 0);
339 1.168 skrll usbd_lock_pipe(pipe);
340 1.182.4.5 martin #ifdef DIAGNOSTIC
341 1.182.4.5 martin xfer->ux_state = XFER_BUSY;
342 1.182.4.5 martin #endif
343 1.169 skrll SIMPLEQ_REMOVE_HEAD(&pipe->up_queue, ux_next);
344 1.169 skrll if (pipe->up_serialise)
345 1.169 skrll usbd_start_next(pipe);
346 1.168 skrll usbd_unlock_pipe(pipe);
347 1.37 augustss }
348 1.37 augustss
349 1.162 skrll if (!(flags & USBD_SYNCHRONOUS)) {
350 1.175 pgoyette USBHIST_LOG(usbdebug, "<- done xfer %#jx, not sync (err %jd)",
351 1.175 pgoyette (uintptr_t)xfer, err, 0, 0);
352 1.169 skrll return err;
353 1.162 skrll }
354 1.31 augustss
355 1.162 skrll if (err != USBD_IN_PROGRESS) {
356 1.182.4.1 martin USBHIST_LOG(usbdebug, "<- done xfer %#jx, sync (err %jd)",
357 1.182.4.1 martin (uintptr_t)xfer, err, 0, 0);
358 1.169 skrll return err;
359 1.162 skrll }
360 1.167 skrll
361 1.167 skrll /* Sync transfer, wait for completion. */
362 1.138 mrg usbd_lock_pipe(pipe);
363 1.169 skrll while (!xfer->ux_done) {
364 1.169 skrll if (pipe->up_dev->ud_bus->ub_usepolling)
365 1.103 provos panic("usbd_transfer: not done");
366 1.175 pgoyette USBHIST_LOG(usbdebug, "<- sleeping on xfer %#jx",
367 1.175 pgoyette (uintptr_t)xfer, 0, 0, 0);
368 1.138 mrg
369 1.144 christos err = 0;
370 1.138 mrg if ((flags & USBD_SYNCHRONOUS_SIG) != 0) {
371 1.169 skrll err = cv_wait_sig(&xfer->ux_cv, pipe->up_dev->ud_bus->ub_lock);
372 1.138 mrg } else {
373 1.169 skrll cv_wait(&xfer->ux_cv, pipe->up_dev->ud_bus->ub_lock);
374 1.138 mrg }
375 1.154 aymeric if (err) {
376 1.169 skrll if (!xfer->ux_done)
377 1.169 skrll pipe->up_methods->upm_abort(xfer);
378 1.144 christos break;
379 1.154 aymeric }
380 1.31 augustss }
381 1.138 mrg usbd_unlock_pipe(pipe);
382 1.169 skrll return xfer->ux_status;
383 1.31 augustss }
384 1.31 augustss
385 1.31 augustss /* Like usbd_transfer(), but waits for completion. */
386 1.31 augustss usbd_status
387 1.169 skrll usbd_sync_transfer(struct usbd_xfer *xfer)
388 1.31 augustss {
389 1.169 skrll xfer->ux_flags |= USBD_SYNCHRONOUS;
390 1.169 skrll return usbd_transfer(xfer);
391 1.16 augustss }
392 1.16 augustss
393 1.138 mrg /* Like usbd_transfer(), but waits for completion and listens for signals. */
394 1.138 mrg usbd_status
395 1.169 skrll usbd_sync_transfer_sig(struct usbd_xfer *xfer)
396 1.138 mrg {
397 1.169 skrll xfer->ux_flags |= USBD_SYNCHRONOUS | USBD_SYNCHRONOUS_SIG;
398 1.169 skrll return usbd_transfer(xfer);
399 1.138 mrg }
400 1.138 mrg
401 1.169 skrll static void *
402 1.169 skrll usbd_alloc_buffer(struct usbd_xfer *xfer, uint32_t size)
403 1.36 augustss {
404 1.169 skrll KASSERT(xfer->ux_buf == NULL);
405 1.169 skrll KASSERT(size != 0);
406 1.169 skrll
407 1.169 skrll xfer->ux_bufsize = 0;
408 1.169 skrll #if NUSB_DMA > 0
409 1.169 skrll struct usbd_bus *bus = xfer->ux_bus;
410 1.169 skrll
411 1.169 skrll if (bus->ub_usedma) {
412 1.169 skrll usb_dma_t *dmap = &xfer->ux_dmabuf;
413 1.169 skrll
414 1.169 skrll int err = usb_allocmem_flags(bus, size, 0, dmap, bus->ub_dmaflags);
415 1.169 skrll if (err) {
416 1.169 skrll return NULL;
417 1.169 skrll }
418 1.169 skrll xfer->ux_buf = KERNADDR(&xfer->ux_dmabuf, 0);
419 1.169 skrll xfer->ux_bufsize = size;
420 1.37 augustss
421 1.169 skrll return xfer->ux_buf;
422 1.169 skrll }
423 1.92 augustss #endif
424 1.169 skrll KASSERT(xfer->ux_bus->ub_usedma == false);
425 1.169 skrll xfer->ux_buf = kmem_alloc(size, KM_SLEEP);
426 1.173 chs xfer->ux_bufsize = size;
427 1.169 skrll return xfer->ux_buf;
428 1.36 augustss }
429 1.36 augustss
430 1.169 skrll static void
431 1.169 skrll usbd_free_buffer(struct usbd_xfer *xfer)
432 1.36 augustss {
433 1.169 skrll KASSERT(xfer->ux_buf != NULL);
434 1.169 skrll KASSERT(xfer->ux_bufsize != 0);
435 1.169 skrll
436 1.169 skrll void *buf = xfer->ux_buf;
437 1.169 skrll uint32_t size = xfer->ux_bufsize;
438 1.169 skrll
439 1.169 skrll xfer->ux_buf = NULL;
440 1.169 skrll xfer->ux_bufsize = 0;
441 1.169 skrll
442 1.169 skrll #if NUSB_DMA > 0
443 1.169 skrll struct usbd_bus *bus = xfer->ux_bus;
444 1.169 skrll
445 1.169 skrll if (bus->ub_usedma) {
446 1.169 skrll usb_dma_t *dmap = &xfer->ux_dmabuf;
447 1.169 skrll
448 1.169 skrll usb_freemem(bus, dmap);
449 1.37 augustss return;
450 1.37 augustss }
451 1.37 augustss #endif
452 1.169 skrll KASSERT(xfer->ux_bus->ub_usedma == false);
453 1.169 skrll
454 1.169 skrll kmem_free(buf, size);
455 1.36 augustss }
456 1.36 augustss
457 1.38 augustss void *
458 1.169 skrll usbd_get_buffer(struct usbd_xfer *xfer)
459 1.38 augustss {
460 1.169 skrll return xfer->ux_buf;
461 1.38 augustss }
462 1.38 augustss
463 1.169 skrll struct usbd_pipe *
464 1.169 skrll usbd_get_pipe0(struct usbd_device *dev)
465 1.1 augustss {
466 1.169 skrll
467 1.169 skrll return dev->ud_pipe0;
468 1.169 skrll }
469 1.169 skrll
470 1.169 skrll static struct usbd_xfer *
471 1.169 skrll usbd_alloc_xfer(struct usbd_device *dev, unsigned int nframes)
472 1.169 skrll {
473 1.169 skrll struct usbd_xfer *xfer;
474 1.1 augustss
475 1.182.4.1 martin USBHIST_FUNC();
476 1.162 skrll
477 1.169 skrll ASSERT_SLEEPABLE();
478 1.169 skrll
479 1.169 skrll xfer = dev->ud_bus->ub_methods->ubm_allocx(dev->ud_bus, nframes);
480 1.48 augustss if (xfer == NULL)
481 1.182.4.1 martin goto out;
482 1.169 skrll xfer->ux_bus = dev->ud_bus;
483 1.169 skrll callout_init(&xfer->ux_callout, CALLOUT_MPSAFE);
484 1.182.4.3 martin callout_setfunc(&xfer->ux_callout, usbd_xfer_timeout, xfer);
485 1.169 skrll cv_init(&xfer->ux_cv, "usbxfer");
486 1.182.4.3 martin usb_init_task(&xfer->ux_aborttask, usbd_xfer_timeout_task, xfer,
487 1.182.4.3 martin USB_TASKQ_MPSAFE);
488 1.162 skrll
489 1.182.4.1 martin out:
490 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "returns %#jx", (uintptr_t)xfer, 0, 0, 0);
491 1.162 skrll
492 1.169 skrll return xfer;
493 1.1 augustss }
494 1.1 augustss
495 1.169 skrll static usbd_status
496 1.169 skrll usbd_free_xfer(struct usbd_xfer *xfer)
497 1.1 augustss {
498 1.182.4.1 martin USBHIST_FUNC();
499 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "%#jx", (uintptr_t)xfer, 0, 0, 0);
500 1.162 skrll
501 1.169 skrll if (xfer->ux_buf) {
502 1.48 augustss usbd_free_buffer(xfer);
503 1.169 skrll }
504 1.182.4.3 martin
505 1.182.4.3 martin /* Wait for any straggling timeout to complete. */
506 1.182.4.3 martin mutex_enter(xfer->ux_bus->ub_lock);
507 1.182.4.3 martin xfer->ux_timeout_reset = false; /* do not resuscitate */
508 1.182.4.3 martin callout_halt(&xfer->ux_callout, xfer->ux_bus->ub_lock);
509 1.182.4.3 martin usb_rem_task_wait(xfer->ux_pipe->up_dev, &xfer->ux_aborttask,
510 1.182.4.3 martin USB_TASKQ_HC, xfer->ux_bus->ub_lock);
511 1.182.4.3 martin mutex_exit(xfer->ux_bus->ub_lock);
512 1.182.4.3 martin
513 1.169 skrll cv_destroy(&xfer->ux_cv);
514 1.169 skrll xfer->ux_bus->ub_methods->ubm_freex(xfer->ux_bus, xfer);
515 1.169 skrll return USBD_NORMAL_COMPLETION;
516 1.169 skrll }
517 1.169 skrll
518 1.169 skrll int
519 1.169 skrll usbd_create_xfer(struct usbd_pipe *pipe, size_t len, unsigned int flags,
520 1.169 skrll unsigned int nframes, struct usbd_xfer **xp)
521 1.169 skrll {
522 1.169 skrll KASSERT(xp != NULL);
523 1.171 pooka void *buf = NULL;
524 1.169 skrll
525 1.169 skrll struct usbd_xfer *xfer = usbd_alloc_xfer(pipe->up_dev, nframes);
526 1.169 skrll if (xfer == NULL)
527 1.169 skrll return ENOMEM;
528 1.169 skrll
529 1.182.4.4 martin xfer->ux_pipe = pipe;
530 1.182.4.4 martin xfer->ux_flags = flags;
531 1.182.4.4 martin xfer->ux_nframes = nframes;
532 1.182.4.4 martin xfer->ux_methods = pipe->up_methods;
533 1.182.4.4 martin
534 1.169 skrll if (len) {
535 1.169 skrll buf = usbd_alloc_buffer(xfer, len);
536 1.169 skrll if (!buf) {
537 1.169 skrll usbd_free_xfer(xfer);
538 1.169 skrll return ENOMEM;
539 1.169 skrll }
540 1.169 skrll }
541 1.169 skrll
542 1.169 skrll if (xfer->ux_methods->upm_init) {
543 1.169 skrll int err = xfer->ux_methods->upm_init(xfer);
544 1.169 skrll if (err) {
545 1.169 skrll usbd_free_xfer(xfer);
546 1.169 skrll return err;
547 1.169 skrll }
548 1.169 skrll }
549 1.169 skrll
550 1.169 skrll *xp = xfer;
551 1.169 skrll return 0;
552 1.1 augustss }
553 1.1 augustss
554 1.36 augustss void
555 1.169 skrll usbd_destroy_xfer(struct usbd_xfer *xfer)
556 1.169 skrll {
557 1.169 skrll
558 1.169 skrll if (xfer->ux_methods->upm_fini) {
559 1.169 skrll xfer->ux_methods->upm_fini(xfer);
560 1.169 skrll }
561 1.169 skrll
562 1.169 skrll usbd_free_xfer(xfer);
563 1.1 augustss }
564 1.1 augustss
565 1.36 augustss void
566 1.169 skrll usbd_setup_xfer(struct usbd_xfer *xfer, void *priv, void *buffer,
567 1.169 skrll uint32_t length, uint16_t flags, uint32_t timeout, usbd_callback callback)
568 1.169 skrll {
569 1.169 skrll KASSERT(xfer->ux_pipe);
570 1.169 skrll
571 1.169 skrll xfer->ux_priv = priv;
572 1.169 skrll xfer->ux_buffer = buffer;
573 1.169 skrll xfer->ux_length = length;
574 1.169 skrll xfer->ux_actlen = 0;
575 1.169 skrll xfer->ux_flags = flags;
576 1.169 skrll xfer->ux_timeout = timeout;
577 1.169 skrll xfer->ux_status = USBD_NOT_STARTED;
578 1.169 skrll xfer->ux_callback = callback;
579 1.169 skrll xfer->ux_rqflags &= ~URQ_REQUEST;
580 1.169 skrll xfer->ux_nframes = 0;
581 1.36 augustss }
582 1.36 augustss
583 1.36 augustss void
584 1.169 skrll usbd_setup_default_xfer(struct usbd_xfer *xfer, struct usbd_device *dev,
585 1.169 skrll void *priv, uint32_t timeout, usb_device_request_t *req, void *buffer,
586 1.169 skrll uint32_t length, uint16_t flags, usbd_callback callback)
587 1.169 skrll {
588 1.169 skrll KASSERT(xfer->ux_pipe == dev->ud_pipe0);
589 1.169 skrll
590 1.169 skrll xfer->ux_priv = priv;
591 1.169 skrll xfer->ux_buffer = buffer;
592 1.169 skrll xfer->ux_length = length;
593 1.169 skrll xfer->ux_actlen = 0;
594 1.169 skrll xfer->ux_flags = flags;
595 1.169 skrll xfer->ux_timeout = timeout;
596 1.169 skrll xfer->ux_status = USBD_NOT_STARTED;
597 1.169 skrll xfer->ux_callback = callback;
598 1.169 skrll xfer->ux_request = *req;
599 1.169 skrll xfer->ux_rqflags |= URQ_REQUEST;
600 1.169 skrll xfer->ux_nframes = 0;
601 1.169 skrll }
602 1.169 skrll
603 1.169 skrll void
604 1.169 skrll usbd_setup_isoc_xfer(struct usbd_xfer *xfer, void *priv, uint16_t *frlengths,
605 1.169 skrll uint32_t nframes, uint16_t flags, usbd_callback callback)
606 1.169 skrll {
607 1.169 skrll xfer->ux_priv = priv;
608 1.169 skrll xfer->ux_buffer = NULL;
609 1.169 skrll xfer->ux_length = 0;
610 1.169 skrll xfer->ux_actlen = 0;
611 1.169 skrll xfer->ux_flags = flags;
612 1.169 skrll xfer->ux_timeout = USBD_NO_TIMEOUT;
613 1.169 skrll xfer->ux_status = USBD_NOT_STARTED;
614 1.169 skrll xfer->ux_callback = callback;
615 1.169 skrll xfer->ux_rqflags &= ~URQ_REQUEST;
616 1.169 skrll xfer->ux_frlengths = frlengths;
617 1.169 skrll xfer->ux_nframes = nframes;
618 1.1 augustss }
619 1.1 augustss
620 1.31 augustss void
621 1.169 skrll usbd_get_xfer_status(struct usbd_xfer *xfer, void **priv,
622 1.169 skrll void **buffer, uint32_t *count, usbd_status *status)
623 1.1 augustss {
624 1.48 augustss if (priv != NULL)
625 1.169 skrll *priv = xfer->ux_priv;
626 1.48 augustss if (buffer != NULL)
627 1.169 skrll *buffer = xfer->ux_buffer;
628 1.48 augustss if (count != NULL)
629 1.169 skrll *count = xfer->ux_actlen;
630 1.48 augustss if (status != NULL)
631 1.169 skrll *status = xfer->ux_status;
632 1.1 augustss }
633 1.1 augustss
634 1.1 augustss usb_config_descriptor_t *
635 1.169 skrll usbd_get_config_descriptor(struct usbd_device *dev)
636 1.1 augustss {
637 1.169 skrll KASSERT(dev != NULL);
638 1.169 skrll
639 1.169 skrll return dev->ud_cdesc;
640 1.1 augustss }
641 1.1 augustss
642 1.1 augustss usb_interface_descriptor_t *
643 1.169 skrll usbd_get_interface_descriptor(struct usbd_interface *iface)
644 1.1 augustss {
645 1.169 skrll KASSERT(iface != NULL);
646 1.169 skrll
647 1.169 skrll return iface->ui_idesc;
648 1.1 augustss }
649 1.1 augustss
650 1.1 augustss usb_device_descriptor_t *
651 1.169 skrll usbd_get_device_descriptor(struct usbd_device *dev)
652 1.1 augustss {
653 1.169 skrll KASSERT(dev != NULL);
654 1.169 skrll
655 1.169 skrll return &dev->ud_ddesc;
656 1.1 augustss }
657 1.1 augustss
658 1.1 augustss usb_endpoint_descriptor_t *
659 1.169 skrll usbd_interface2endpoint_descriptor(struct usbd_interface *iface, uint8_t index)
660 1.1 augustss {
661 1.169 skrll
662 1.169 skrll if (index >= iface->ui_idesc->bNumEndpoints)
663 1.169 skrll return NULL;
664 1.169 skrll return iface->ui_endpoints[index].ue_edesc;
665 1.1 augustss }
666 1.1 augustss
667 1.125 jmorse /* Some drivers may wish to abort requests on the default pipe, *
668 1.125 jmorse * but there is no mechanism for getting a handle on it. */
669 1.125 jmorse usbd_status
670 1.125 jmorse usbd_abort_default_pipe(struct usbd_device *device)
671 1.125 jmorse {
672 1.169 skrll return usbd_abort_pipe(device->ud_pipe0);
673 1.125 jmorse }
674 1.125 jmorse
675 1.102 augustss usbd_status
676 1.169 skrll usbd_abort_pipe(struct usbd_pipe *pipe)
677 1.1 augustss {
678 1.48 augustss usbd_status err;
679 1.1 augustss
680 1.169 skrll KASSERT(pipe != NULL);
681 1.169 skrll
682 1.138 mrg usbd_lock_pipe(pipe);
683 1.48 augustss err = usbd_ar_pipe(pipe);
684 1.138 mrg usbd_unlock_pipe(pipe);
685 1.169 skrll return err;
686 1.1 augustss }
687 1.102 augustss
688 1.102 augustss usbd_status
689 1.169 skrll usbd_clear_endpoint_stall(struct usbd_pipe *pipe)
690 1.1 augustss {
691 1.169 skrll struct usbd_device *dev = pipe->up_dev;
692 1.1 augustss usb_device_request_t req;
693 1.48 augustss usbd_status err;
694 1.1 augustss
695 1.162 skrll USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
696 1.33 augustss
697 1.102 augustss /*
698 1.87 augustss * Clearing en endpoint stall resets the endpoint toggle, so
699 1.33 augustss * do the same to the HC toggle.
700 1.33 augustss */
701 1.169 skrll pipe->up_methods->upm_cleartoggle(pipe);
702 1.33 augustss
703 1.1 augustss req.bmRequestType = UT_WRITE_ENDPOINT;
704 1.1 augustss req.bRequest = UR_CLEAR_FEATURE;
705 1.15 augustss USETW(req.wValue, UF_ENDPOINT_HALT);
706 1.169 skrll USETW(req.wIndex, pipe->up_endpoint->ue_edesc->bEndpointAddress);
707 1.1 augustss USETW(req.wLength, 0);
708 1.48 augustss err = usbd_do_request(dev, &req, 0);
709 1.1 augustss #if 0
710 1.1 augustss XXX should we do this?
711 1.51 augustss if (!err) {
712 1.1 augustss pipe->state = USBD_PIPE_ACTIVE;
713 1.1 augustss /* XXX activate pipe */
714 1.1 augustss }
715 1.1 augustss #endif
716 1.169 skrll return err;
717 1.1 augustss }
718 1.1 augustss
719 1.139 mrg void
720 1.156 skrll usbd_clear_endpoint_stall_task(void *arg)
721 1.7 augustss {
722 1.169 skrll struct usbd_pipe *pipe = arg;
723 1.169 skrll struct usbd_device *dev = pipe->up_dev;
724 1.7 augustss usb_device_request_t req;
725 1.7 augustss
726 1.169 skrll pipe->up_methods->upm_cleartoggle(pipe);
727 1.33 augustss
728 1.7 augustss req.bmRequestType = UT_WRITE_ENDPOINT;
729 1.7 augustss req.bRequest = UR_CLEAR_FEATURE;
730 1.15 augustss USETW(req.wValue, UF_ENDPOINT_HALT);
731 1.169 skrll USETW(req.wIndex, pipe->up_endpoint->ue_edesc->bEndpointAddress);
732 1.7 augustss USETW(req.wLength, 0);
733 1.156 skrll (void)usbd_do_request(dev, &req, 0);
734 1.139 mrg }
735 1.139 mrg
736 1.139 mrg void
737 1.169 skrll usbd_clear_endpoint_stall_async(struct usbd_pipe *pipe)
738 1.139 mrg {
739 1.169 skrll usb_add_task(pipe->up_dev, &pipe->up_async_task, USB_TASKQ_DRIVER);
740 1.7 augustss }
741 1.7 augustss
742 1.61 augustss void
743 1.169 skrll usbd_clear_endpoint_toggle(struct usbd_pipe *pipe)
744 1.61 augustss {
745 1.169 skrll
746 1.169 skrll pipe->up_methods->upm_cleartoggle(pipe);
747 1.61 augustss }
748 1.61 augustss
749 1.102 augustss usbd_status
750 1.169 skrll usbd_endpoint_count(struct usbd_interface *iface, uint8_t *count)
751 1.1 augustss {
752 1.169 skrll KASSERT(iface != NULL);
753 1.169 skrll KASSERT(iface->ui_idesc != NULL);
754 1.169 skrll
755 1.169 skrll *count = iface->ui_idesc->bNumEndpoints;
756 1.169 skrll return USBD_NORMAL_COMPLETION;
757 1.1 augustss }
758 1.1 augustss
759 1.102 augustss usbd_status
760 1.169 skrll usbd_interface_count(struct usbd_device *dev, uint8_t *count)
761 1.1 augustss {
762 1.169 skrll
763 1.169 skrll if (dev->ud_cdesc == NULL)
764 1.169 skrll return USBD_NOT_CONFIGURED;
765 1.169 skrll *count = dev->ud_cdesc->bNumInterface;
766 1.169 skrll return USBD_NORMAL_COMPLETION;
767 1.1 augustss }
768 1.1 augustss
769 1.85 augustss void
770 1.169 skrll usbd_interface2device_handle(struct usbd_interface *iface,
771 1.169 skrll struct usbd_device **dev)
772 1.1 augustss {
773 1.169 skrll
774 1.169 skrll *dev = iface->ui_dev;
775 1.1 augustss }
776 1.1 augustss
777 1.102 augustss usbd_status
778 1.169 skrll usbd_device2interface_handle(struct usbd_device *dev,
779 1.169 skrll uint8_t ifaceno, struct usbd_interface **iface)
780 1.1 augustss {
781 1.169 skrll
782 1.169 skrll if (dev->ud_cdesc == NULL)
783 1.169 skrll return USBD_NOT_CONFIGURED;
784 1.169 skrll if (ifaceno >= dev->ud_cdesc->bNumInterface)
785 1.169 skrll return USBD_INVAL;
786 1.169 skrll *iface = &dev->ud_ifaces[ifaceno];
787 1.169 skrll return USBD_NORMAL_COMPLETION;
788 1.1 augustss }
789 1.1 augustss
790 1.169 skrll struct usbd_device *
791 1.169 skrll usbd_pipe2device_handle(struct usbd_pipe *pipe)
792 1.36 augustss {
793 1.169 skrll KASSERT(pipe != NULL);
794 1.169 skrll
795 1.169 skrll return pipe->up_dev;
796 1.36 augustss }
797 1.36 augustss
798 1.13 augustss /* XXXX use altno */
799 1.3 augustss usbd_status
800 1.169 skrll usbd_set_interface(struct usbd_interface *iface, int altidx)
801 1.3 augustss {
802 1.3 augustss usb_device_request_t req;
803 1.48 augustss usbd_status err;
804 1.73 augustss void *endpoints;
805 1.13 augustss
806 1.182.4.1 martin USBHIST_FUNC();
807 1.169 skrll
808 1.169 skrll if (LIST_FIRST(&iface->ui_pipes) != NULL)
809 1.169 skrll return USBD_IN_USE;
810 1.13 augustss
811 1.169 skrll endpoints = iface->ui_endpoints;
812 1.169 skrll int nendpt = iface->ui_idesc->bNumEndpoints;
813 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "iface %#jx endpoints = %#jx nendpt %jd",
814 1.175 pgoyette (uintptr_t)iface, (uintptr_t)endpoints,
815 1.175 pgoyette iface->ui_idesc->bNumEndpoints, 0);
816 1.169 skrll err = usbd_fill_iface_data(iface->ui_dev, iface->ui_index, altidx);
817 1.48 augustss if (err)
818 1.169 skrll return err;
819 1.73 augustss
820 1.76 augustss /* new setting works, we can free old endpoints */
821 1.169 skrll if (endpoints != NULL) {
822 1.175 pgoyette USBHIST_LOG(usbdebug, "iface %#jx endpoints = %#jx nendpt %jd",
823 1.175 pgoyette (uintptr_t)iface, (uintptr_t)endpoints, nendpt, 0);
824 1.169 skrll kmem_free(endpoints, nendpt * sizeof(struct usbd_endpoint));
825 1.73 augustss }
826 1.169 skrll KASSERT(iface->ui_idesc != NULL);
827 1.3 augustss
828 1.3 augustss req.bmRequestType = UT_WRITE_INTERFACE;
829 1.3 augustss req.bRequest = UR_SET_INTERFACE;
830 1.169 skrll USETW(req.wValue, iface->ui_idesc->bAlternateSetting);
831 1.169 skrll USETW(req.wIndex, iface->ui_idesc->bInterfaceNumber);
832 1.3 augustss USETW(req.wLength, 0);
833 1.169 skrll return usbd_do_request(iface->ui_dev, &req, 0);
834 1.12 augustss }
835 1.12 augustss
836 1.12 augustss int
837 1.74 augustss usbd_get_no_alts(usb_config_descriptor_t *cdesc, int ifaceno)
838 1.12 augustss {
839 1.13 augustss char *p = (char *)cdesc;
840 1.13 augustss char *end = p + UGETW(cdesc->wTotalLength);
841 1.12 augustss usb_interface_descriptor_t *d;
842 1.12 augustss int n;
843 1.12 augustss
844 1.12 augustss for (n = 0; p < end; p += d->bLength) {
845 1.12 augustss d = (usb_interface_descriptor_t *)p;
846 1.102 augustss if (p + d->bLength <= end &&
847 1.12 augustss d->bDescriptorType == UDESC_INTERFACE &&
848 1.13 augustss d->bInterfaceNumber == ifaceno)
849 1.12 augustss n++;
850 1.12 augustss }
851 1.169 skrll return n;
852 1.13 augustss }
853 1.13 augustss
854 1.13 augustss int
855 1.169 skrll usbd_get_interface_altindex(struct usbd_interface *iface)
856 1.13 augustss {
857 1.169 skrll return iface->ui_altindex;
858 1.12 augustss }
859 1.12 augustss
860 1.12 augustss usbd_status
861 1.169 skrll usbd_get_interface(struct usbd_interface *iface, uint8_t *aiface)
862 1.12 augustss {
863 1.12 augustss usb_device_request_t req;
864 1.12 augustss
865 1.12 augustss req.bmRequestType = UT_READ_INTERFACE;
866 1.12 augustss req.bRequest = UR_GET_INTERFACE;
867 1.12 augustss USETW(req.wValue, 0);
868 1.169 skrll USETW(req.wIndex, iface->ui_idesc->bInterfaceNumber);
869 1.12 augustss USETW(req.wLength, 1);
870 1.169 skrll return usbd_do_request(iface->ui_dev, &req, aiface);
871 1.3 augustss }
872 1.1 augustss
873 1.1 augustss /*** Internal routines ***/
874 1.1 augustss
875 1.174 skrll /* Dequeue all pipe operations, called with bus lock held. */
876 1.69 augustss Static usbd_status
877 1.169 skrll usbd_ar_pipe(struct usbd_pipe *pipe)
878 1.1 augustss {
879 1.169 skrll struct usbd_xfer *xfer;
880 1.1 augustss
881 1.182.4.1 martin USBHIST_FUNC();
882 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "pipe = %#jx", (uintptr_t)pipe, 0, 0, 0);
883 1.162 skrll
884 1.169 skrll KASSERT(mutex_owned(pipe->up_dev->ud_bus->ub_lock));
885 1.138 mrg
886 1.28 augustss #ifdef USB_DEBUG
887 1.28 augustss if (usbdebug > 5)
888 1.28 augustss usbd_dump_queue(pipe);
889 1.28 augustss #endif
890 1.169 skrll pipe->up_repeat = 0;
891 1.182.4.2 martin pipe->up_running = 0;
892 1.169 skrll pipe->up_aborting = 1;
893 1.169 skrll while ((xfer = SIMPLEQ_FIRST(&pipe->up_queue)) != NULL) {
894 1.175 pgoyette USBHIST_LOG(usbdebug, "pipe = %#jx xfer = %#jx "
895 1.175 pgoyette "(methods = %#jx)", (uintptr_t)pipe, (uintptr_t)xfer,
896 1.175 pgoyette (uintptr_t)pipe->up_methods, 0);
897 1.182 rin if (xfer->ux_status == USBD_NOT_STARTED) {
898 1.182.4.5 martin #ifdef DIAGNOSTIC
899 1.182.4.5 martin xfer->ux_state = XFER_BUSY;
900 1.182.4.5 martin #endif
901 1.182 rin SIMPLEQ_REMOVE_HEAD(&pipe->up_queue, ux_next);
902 1.182 rin } else {
903 1.182 rin /* Make the HC abort it (and invoke the callback). */
904 1.182 rin pipe->up_methods->upm_abort(xfer);
905 1.182 rin /* XXX only for non-0 usbd_clear_endpoint_stall(pipe); */
906 1.182 rin }
907 1.20 augustss }
908 1.169 skrll pipe->up_aborting = 0;
909 1.169 skrll return USBD_NORMAL_COMPLETION;
910 1.1 augustss }
911 1.1 augustss
912 1.138 mrg /* Called with USB lock held. */
913 1.31 augustss void
914 1.169 skrll usb_transfer_complete(struct usbd_xfer *xfer)
915 1.1 augustss {
916 1.169 skrll struct usbd_pipe *pipe = xfer->ux_pipe;
917 1.172 skrll struct usbd_bus *bus = pipe->up_dev->ud_bus;
918 1.169 skrll int sync = xfer->ux_flags & USBD_SYNCHRONOUS;
919 1.179 manu int erred;
920 1.169 skrll int polling = bus->ub_usepolling;
921 1.169 skrll int repeat = pipe->up_repeat;
922 1.31 augustss
923 1.182.4.1 martin USBHIST_FUNC();
924 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "pipe = %#jx xfer = %#jx status = %jd "
925 1.175 pgoyette "actlen = %jd", (uintptr_t)pipe, (uintptr_t)xfer, xfer->ux_status,
926 1.175 pgoyette xfer->ux_actlen);
927 1.134 jmcneill
928 1.169 skrll KASSERT(polling || mutex_owned(pipe->up_dev->ud_bus->ub_lock));
929 1.177 mrg KASSERTMSG(xfer->ux_state == XFER_ONQU, "xfer %p state is %x", xfer,
930 1.177 mrg xfer->ux_state);
931 1.169 skrll KASSERT(pipe != NULL);
932 1.5 augustss
933 1.179 manu /*
934 1.179 manu * If device is known to miss out ack, then pretend that
935 1.179 manu * output timeout is a success. Userland should handle
936 1.179 manu * the logic to verify that the operation succeeded.
937 1.179 manu */
938 1.179 manu if (pipe->up_dev->ud_quirks &&
939 1.179 manu pipe->up_dev->ud_quirks->uq_flags & UQ_MISS_OUT_ACK &&
940 1.179 manu xfer->ux_status == USBD_TIMEOUT &&
941 1.179 manu !usbd_xfer_isread(xfer)) {
942 1.179 manu USBHIST_LOG(usbdebug, "Possible output ack miss for xfer %#jx: "
943 1.179 manu "hiding write timeout to %d.%s for %d bytes written",
944 1.180 manu (uintptr_t)xfer, curlwp->l_proc->p_pid, curlwp->l_lid,
945 1.179 manu xfer->ux_length);
946 1.179 manu
947 1.179 manu xfer->ux_status = USBD_NORMAL_COMPLETION;
948 1.179 manu xfer->ux_actlen = xfer->ux_length;
949 1.179 manu }
950 1.179 manu
951 1.179 manu erred = xfer->ux_status == USBD_CANCELLED ||
952 1.179 manu xfer->ux_status == USBD_TIMEOUT;
953 1.179 manu
954 1.47 augustss if (!repeat) {
955 1.47 augustss /* Remove request from queue. */
956 1.153 jakllsch
957 1.169 skrll KASSERTMSG(!SIMPLEQ_EMPTY(&pipe->up_queue),
958 1.145 skrll "pipe %p is empty, but xfer %p wants to complete", pipe,
959 1.145 skrll xfer);
960 1.169 skrll KASSERTMSG(xfer == SIMPLEQ_FIRST(&pipe->up_queue),
961 1.169 skrll "xfer %p is not start of queue (%p is at start)", xfer,
962 1.169 skrll SIMPLEQ_FIRST(&pipe->up_queue));
963 1.169 skrll
964 1.47 augustss #ifdef DIAGNOSTIC
965 1.169 skrll xfer->ux_state = XFER_BUSY;
966 1.45 augustss #endif
967 1.169 skrll SIMPLEQ_REMOVE_HEAD(&pipe->up_queue, ux_next);
968 1.47 augustss }
969 1.175 pgoyette USBHIST_LOG(usbdebug, "xfer %#jx: repeat %jd new head = %#jx",
970 1.175 pgoyette (uintptr_t)xfer, repeat, (uintptr_t)SIMPLEQ_FIRST(&pipe->up_queue),
971 1.175 pgoyette 0);
972 1.31 augustss
973 1.31 augustss /* Count completed transfers. */
974 1.169 skrll ++pipe->up_dev->ud_bus->ub_stats.uds_requests
975 1.169 skrll [pipe->up_endpoint->ue_edesc->bmAttributes & UE_XFERTYPE];
976 1.1 augustss
977 1.169 skrll xfer->ux_done = 1;
978 1.169 skrll if (!xfer->ux_status && xfer->ux_actlen < xfer->ux_length &&
979 1.169 skrll !(xfer->ux_flags & USBD_SHORT_XFER_OK)) {
980 1.175 pgoyette USBHIST_LOG(usbdebug, "short transfer %jd < %jd",
981 1.169 skrll xfer->ux_actlen, xfer->ux_length, 0, 0);
982 1.169 skrll xfer->ux_status = USBD_SHORT_XFER;
983 1.1 augustss }
984 1.31 augustss
985 1.175 pgoyette USBHIST_LOG(usbdebug, "xfer %#jx doing done %#jx", (uintptr_t)xfer,
986 1.175 pgoyette (uintptr_t)pipe->up_methods->upm_done, 0, 0);
987 1.169 skrll pipe->up_methods->upm_done(xfer);
988 1.169 skrll
989 1.169 skrll if (xfer->ux_length != 0 && xfer->ux_buffer != xfer->ux_buf) {
990 1.169 skrll KDASSERTMSG(xfer->ux_actlen <= xfer->ux_length,
991 1.169 skrll "actlen %d length %d",xfer->ux_actlen, xfer->ux_length);
992 1.148 jmcneill
993 1.169 skrll /* Only if IN transfer */
994 1.169 skrll if (usbd_xfer_isread(xfer)) {
995 1.169 skrll memcpy(xfer->ux_buffer, xfer->ux_buf, xfer->ux_actlen);
996 1.138 mrg }
997 1.169 skrll }
998 1.169 skrll
999 1.175 pgoyette USBHIST_LOG(usbdebug, "xfer %#jx doing callback %#jx status %jd",
1000 1.175 pgoyette (uintptr_t)xfer, (uintptr_t)xfer->ux_callback, xfer->ux_status, 0);
1001 1.169 skrll
1002 1.169 skrll if (xfer->ux_callback) {
1003 1.178 mrg if (!polling) {
1004 1.169 skrll mutex_exit(pipe->up_dev->ud_bus->ub_lock);
1005 1.178 mrg if (!(pipe->up_flags & USBD_MPSAFE))
1006 1.178 mrg KERNEL_LOCK(1, curlwp);
1007 1.178 mrg }
1008 1.169 skrll
1009 1.169 skrll xfer->ux_callback(xfer, xfer->ux_priv, xfer->ux_status);
1010 1.169 skrll
1011 1.178 mrg if (!polling) {
1012 1.178 mrg if (!(pipe->up_flags & USBD_MPSAFE))
1013 1.178 mrg KERNEL_UNLOCK_ONE(curlwp);
1014 1.169 skrll mutex_enter(pipe->up_dev->ud_bus->ub_lock);
1015 1.178 mrg }
1016 1.124 jmcneill }
1017 1.31 augustss
1018 1.138 mrg if (sync && !polling) {
1019 1.175 pgoyette USBHIST_LOG(usbdebug, "<- done xfer %#jx, wakeup",
1020 1.175 pgoyette (uintptr_t)xfer, 0, 0, 0);
1021 1.169 skrll cv_broadcast(&xfer->ux_cv);
1022 1.138 mrg }
1023 1.31 augustss
1024 1.169 skrll if (repeat) {
1025 1.169 skrll xfer->ux_actlen = 0;
1026 1.169 skrll xfer->ux_status = USBD_NOT_STARTED;
1027 1.169 skrll } else {
1028 1.40 augustss /* XXX should we stop the queue on all errors? */
1029 1.169 skrll if (erred && pipe->up_iface != NULL) /* not control pipe */
1030 1.169 skrll pipe->up_running = 0;
1031 1.40 augustss }
1032 1.169 skrll if (pipe->up_running && pipe->up_serialise)
1033 1.169 skrll usbd_start_next(pipe);
1034 1.1 augustss }
1035 1.1 augustss
1036 1.138 mrg /* Called with USB lock held. */
1037 1.31 augustss usbd_status
1038 1.169 skrll usb_insert_transfer(struct usbd_xfer *xfer)
1039 1.1 augustss {
1040 1.169 skrll struct usbd_pipe *pipe = xfer->ux_pipe;
1041 1.48 augustss usbd_status err;
1042 1.31 augustss
1043 1.182.4.1 martin USBHIST_FUNC(); USBHIST_CALLARGS(usbdebug,
1044 1.182.4.1 martin "xfer = %#jx pipe = %#jx running = %jd timeout = %jd",
1045 1.182.4.1 martin (uintptr_t)xfer, (uintptr_t)pipe,
1046 1.175 pgoyette pipe->up_running, xfer->ux_timeout);
1047 1.134 jmcneill
1048 1.169 skrll KASSERT(mutex_owned(pipe->up_dev->ud_bus->ub_lock));
1049 1.174 skrll KASSERTMSG(xfer->ux_state == XFER_BUSY, "xfer %p state is %x", xfer,
1050 1.174 skrll xfer->ux_state);
1051 1.134 jmcneill
1052 1.93 augustss #ifdef DIAGNOSTIC
1053 1.169 skrll xfer->ux_state = XFER_ONQU;
1054 1.93 augustss #endif
1055 1.169 skrll SIMPLEQ_INSERT_TAIL(&pipe->up_queue, xfer, ux_next);
1056 1.169 skrll if (pipe->up_running && pipe->up_serialise)
1057 1.48 augustss err = USBD_IN_PROGRESS;
1058 1.37 augustss else {
1059 1.169 skrll pipe->up_running = 1;
1060 1.48 augustss err = USBD_NORMAL_COMPLETION;
1061 1.37 augustss }
1062 1.175 pgoyette USBHIST_LOG(usbdebug, "<- done xfer %#jx, err %jd", (uintptr_t)xfer,
1063 1.175 pgoyette err, 0, 0);
1064 1.169 skrll return err;
1065 1.1 augustss }
1066 1.1 augustss
1067 1.138 mrg /* Called with USB lock held. */
1068 1.31 augustss void
1069 1.169 skrll usbd_start_next(struct usbd_pipe *pipe)
1070 1.31 augustss {
1071 1.169 skrll struct usbd_xfer *xfer;
1072 1.48 augustss usbd_status err;
1073 1.40 augustss
1074 1.182.4.1 martin USBHIST_FUNC();
1075 1.162 skrll
1076 1.169 skrll KASSERT(pipe != NULL);
1077 1.169 skrll KASSERT(pipe->up_methods != NULL);
1078 1.169 skrll KASSERT(pipe->up_methods->upm_start != NULL);
1079 1.169 skrll KASSERT(pipe->up_serialise == true);
1080 1.31 augustss
1081 1.169 skrll int polling = pipe->up_dev->ud_bus->ub_usepolling;
1082 1.169 skrll KASSERT(polling || mutex_owned(pipe->up_dev->ud_bus->ub_lock));
1083 1.138 mrg
1084 1.31 augustss /* Get next request in queue. */
1085 1.169 skrll xfer = SIMPLEQ_FIRST(&pipe->up_queue);
1086 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "pipe = %#jx, xfer = %#jx", (uintptr_t)pipe,
1087 1.175 pgoyette (uintptr_t)xfer, 0, 0);
1088 1.51 augustss if (xfer == NULL) {
1089 1.169 skrll pipe->up_running = 0;
1090 1.51 augustss } else {
1091 1.165 skrll if (!polling)
1092 1.169 skrll mutex_exit(pipe->up_dev->ud_bus->ub_lock);
1093 1.169 skrll err = pipe->up_methods->upm_start(xfer);
1094 1.165 skrll if (!polling)
1095 1.169 skrll mutex_enter(pipe->up_dev->ud_bus->ub_lock);
1096 1.158 skrll
1097 1.48 augustss if (err != USBD_IN_PROGRESS) {
1098 1.175 pgoyette USBHIST_LOG(usbdebug, "error = %jd", err, 0, 0, 0);
1099 1.169 skrll pipe->up_running = 0;
1100 1.31 augustss /* XXX do what? */
1101 1.31 augustss }
1102 1.1 augustss }
1103 1.138 mrg
1104 1.169 skrll KASSERT(polling || mutex_owned(pipe->up_dev->ud_bus->ub_lock));
1105 1.1 augustss }
1106 1.1 augustss
1107 1.1 augustss usbd_status
1108 1.169 skrll usbd_do_request(struct usbd_device *dev, usb_device_request_t *req, void *data)
1109 1.1 augustss {
1110 1.17 augustss
1111 1.169 skrll return usbd_do_request_flags(dev, req, data, 0, 0,
1112 1.169 skrll USBD_DEFAULT_TIMEOUT);
1113 1.77 augustss }
1114 1.77 augustss
1115 1.77 augustss usbd_status
1116 1.169 skrll usbd_do_request_flags(struct usbd_device *dev, usb_device_request_t *req,
1117 1.169 skrll void *data, uint16_t flags, int *actlen, uint32_t timeout)
1118 1.77 augustss {
1119 1.182.4.1 martin size_t len = UGETW(req->wLength);
1120 1.182.4.1 martin
1121 1.182.4.1 martin return usbd_do_request_len(dev, req, len, data, flags, actlen, timeout);
1122 1.182.4.1 martin }
1123 1.182.4.1 martin
1124 1.182.4.1 martin usbd_status
1125 1.182.4.1 martin usbd_do_request_len(struct usbd_device *dev, usb_device_request_t *req,
1126 1.182.4.1 martin size_t len, void *data, uint16_t flags, int *actlen, uint32_t timeout)
1127 1.182.4.1 martin {
1128 1.169 skrll struct usbd_xfer *xfer;
1129 1.48 augustss usbd_status err;
1130 1.1 augustss
1131 1.182.4.1 martin KASSERT(len >= UGETW(req->wLength));
1132 1.182.4.1 martin
1133 1.182.4.1 martin USBHIST_FUNC();
1134 1.182.4.1 martin USBHIST_CALLARGS(usbdebug, "dev=%#jx req=%jx flags=%jx len=%jx",
1135 1.182.4.1 martin (uintptr_t)dev, (uintptr_t)req, flags, len);
1136 1.182.4.1 martin
1137 1.169 skrll ASSERT_SLEEPABLE();
1138 1.7 augustss
1139 1.169 skrll int error = usbd_create_xfer(dev->ud_pipe0, len, 0, 0, &xfer);
1140 1.169 skrll if (error)
1141 1.169 skrll return error;
1142 1.169 skrll
1143 1.169 skrll usbd_setup_default_xfer(xfer, dev, 0, timeout, req, data,
1144 1.169 skrll UGETW(req->wLength), flags, NULL);
1145 1.169 skrll KASSERT(xfer->ux_pipe == dev->ud_pipe0);
1146 1.48 augustss err = usbd_sync_transfer(xfer);
1147 1.1 augustss #if defined(USB_DEBUG) || defined(DIAGNOSTIC)
1148 1.169 skrll if (xfer->ux_actlen > xfer->ux_length) {
1149 1.175 pgoyette USBHIST_LOG(usbdebug, "overrun addr = %jd type = 0x%02jx",
1150 1.169 skrll dev->ud_addr, xfer->ux_request.bmRequestType, 0, 0);
1151 1.175 pgoyette USBHIST_LOG(usbdebug, " req = 0x%02jx val = %jd "
1152 1.175 pgoyette "index = %jd",
1153 1.169 skrll xfer->ux_request.bRequest, UGETW(xfer->ux_request.wValue),
1154 1.169 skrll UGETW(xfer->ux_request.wIndex), 0);
1155 1.175 pgoyette USBHIST_LOG(usbdebug, " rlen = %jd length = %jd "
1156 1.175 pgoyette "actlen = %jd",
1157 1.169 skrll UGETW(xfer->ux_request.wLength),
1158 1.169 skrll xfer->ux_length, xfer->ux_actlen, 0);
1159 1.112 dogcow }
1160 1.1 augustss #endif
1161 1.48 augustss if (actlen != NULL)
1162 1.169 skrll *actlen = xfer->ux_actlen;
1163 1.169 skrll
1164 1.169 skrll usbd_destroy_xfer(xfer);
1165 1.15 augustss
1166 1.132 matt if (err) {
1167 1.175 pgoyette USBHIST_LOG(usbdebug, "returning err = %jd", err, 0, 0, 0);
1168 1.132 matt }
1169 1.169 skrll return err;
1170 1.7 augustss }
1171 1.7 augustss
1172 1.176 khorben static void
1173 1.176 khorben usbd_request_async_cb(struct usbd_xfer *xfer, void *priv, usbd_status status)
1174 1.176 khorben {
1175 1.176 khorben usbd_free_xfer(xfer);
1176 1.176 khorben }
1177 1.176 khorben
1178 1.176 khorben /*
1179 1.176 khorben * Execute a request without waiting for completion.
1180 1.176 khorben * Can be used from interrupt context.
1181 1.176 khorben */
1182 1.176 khorben usbd_status
1183 1.176 khorben usbd_request_async(struct usbd_device *dev, struct usbd_xfer *xfer,
1184 1.176 khorben usb_device_request_t *req, void *priv, usbd_callback callback)
1185 1.176 khorben {
1186 1.176 khorben usbd_status err;
1187 1.176 khorben
1188 1.176 khorben if (callback == NULL)
1189 1.176 khorben callback = usbd_request_async_cb;
1190 1.176 khorben
1191 1.176 khorben usbd_setup_default_xfer(xfer, dev, priv,
1192 1.176 khorben USBD_DEFAULT_TIMEOUT, req, NULL, UGETW(req->wLength), 0,
1193 1.176 khorben callback);
1194 1.176 khorben err = usbd_transfer(xfer);
1195 1.176 khorben if (err != USBD_IN_PROGRESS) {
1196 1.176 khorben usbd_free_xfer(xfer);
1197 1.176 khorben return (err);
1198 1.176 khorben }
1199 1.176 khorben return (USBD_NORMAL_COMPLETION);
1200 1.176 khorben }
1201 1.176 khorben
1202 1.78 augustss const struct usbd_quirks *
1203 1.169 skrll usbd_get_quirks(struct usbd_device *dev)
1204 1.1 augustss {
1205 1.81 augustss #ifdef DIAGNOSTIC
1206 1.81 augustss if (dev == NULL) {
1207 1.81 augustss printf("usbd_get_quirks: dev == NULL\n");
1208 1.81 augustss return 0;
1209 1.81 augustss }
1210 1.81 augustss #endif
1211 1.169 skrll return dev->ud_quirks;
1212 1.1 augustss }
1213 1.1 augustss
1214 1.1 augustss /* XXX do periodic free() of free list */
1215 1.1 augustss
1216 1.6 augustss /*
1217 1.6 augustss * Called from keyboard driver when in polling mode.
1218 1.6 augustss */
1219 1.6 augustss void
1220 1.169 skrll usbd_dopoll(struct usbd_interface *iface)
1221 1.6 augustss {
1222 1.169 skrll iface->ui_dev->ud_bus->ub_methods->ubm_dopoll(iface->ui_dev->ud_bus);
1223 1.8 augustss }
1224 1.8 augustss
1225 1.138 mrg /*
1226 1.178 mrg * This is for keyboard driver as well, which only operates in polling
1227 1.178 mrg * mode from the ask root, etc., prompt and from DDB.
1228 1.138 mrg */
1229 1.8 augustss void
1230 1.169 skrll usbd_set_polling(struct usbd_device *dev, int on)
1231 1.8 augustss {
1232 1.133 jmcneill
1233 1.169 skrll mutex_enter(dev->ud_bus->ub_lock);
1234 1.182.4.6 martin if (on) {
1235 1.182.4.6 martin /*
1236 1.182.4.6 martin * Enabling polling. If we're enabling for the first
1237 1.182.4.6 martin * time, call the softint routine on transition while
1238 1.182.4.6 martin * we hold the lock and polling is still disabled, and
1239 1.182.4.6 martin * then enable polling -- once polling is enabled, we
1240 1.182.4.6 martin * must not hold the lock when we call the softint
1241 1.182.4.6 martin * routine.
1242 1.182.4.6 martin */
1243 1.182.4.6 martin KASSERT(dev->ud_bus->ub_usepolling < __type_max(char));
1244 1.182.4.6 martin if (dev->ud_bus->ub_usepolling == 0)
1245 1.182.4.6 martin dev->ud_bus->ub_methods->ubm_softint(dev->ud_bus);
1246 1.182.4.6 martin dev->ud_bus->ub_usepolling++;
1247 1.182.4.6 martin } else {
1248 1.182.4.6 martin /*
1249 1.182.4.6 martin * Disabling polling. If we're disabling polling for
1250 1.182.4.6 martin * the last time, disable polling first and then call
1251 1.182.4.6 martin * the softint routine while we hold the lock -- until
1252 1.182.4.6 martin * polling is disabled, we must not hold the lock when
1253 1.182.4.6 martin * we call the softint routine.
1254 1.182.4.6 martin */
1255 1.182.4.6 martin KASSERT(dev->ud_bus->ub_usepolling > 0);
1256 1.182.4.6 martin dev->ud_bus->ub_usepolling--;
1257 1.182.4.6 martin if (dev->ud_bus->ub_usepolling == 0)
1258 1.182.4.6 martin dev->ud_bus->ub_methods->ubm_softint(dev->ud_bus);
1259 1.182.4.6 martin }
1260 1.169 skrll mutex_exit(dev->ud_bus->ub_lock);
1261 1.6 augustss }
1262 1.12 augustss
1263 1.12 augustss
1264 1.12 augustss usb_endpoint_descriptor_t *
1265 1.169 skrll usbd_get_endpoint_descriptor(struct usbd_interface *iface, uint8_t address)
1266 1.12 augustss {
1267 1.12 augustss struct usbd_endpoint *ep;
1268 1.12 augustss int i;
1269 1.12 augustss
1270 1.169 skrll for (i = 0; i < iface->ui_idesc->bNumEndpoints; i++) {
1271 1.169 skrll ep = &iface->ui_endpoints[i];
1272 1.169 skrll if (ep->ue_edesc->bEndpointAddress == address)
1273 1.169 skrll return iface->ui_endpoints[i].ue_edesc;
1274 1.12 augustss }
1275 1.169 skrll return NULL;
1276 1.63 augustss }
1277 1.63 augustss
1278 1.63 augustss /*
1279 1.63 augustss * usbd_ratecheck() can limit the number of error messages that occurs.
1280 1.63 augustss * When a device is unplugged it may take up to 0.25s for the hub driver
1281 1.169 skrll * to notice it. If the driver continuously tries to do I/O operations
1282 1.63 augustss * this can generate a large number of messages.
1283 1.63 augustss */
1284 1.63 augustss int
1285 1.74 augustss usbd_ratecheck(struct timeval *last)
1286 1.63 augustss {
1287 1.64 augustss static struct timeval errinterval = { 0, 250000 }; /* 0.25 s*/
1288 1.63 augustss
1289 1.169 skrll return ratecheck(last, &errinterval);
1290 1.89 augustss }
1291 1.89 augustss
1292 1.89 augustss /*
1293 1.89 augustss * Search for a vendor/product pair in an array. The item size is
1294 1.89 augustss * given as an argument.
1295 1.89 augustss */
1296 1.90 augustss const struct usb_devno *
1297 1.90 augustss usb_match_device(const struct usb_devno *tbl, u_int nentries, u_int sz,
1298 1.169 skrll uint16_t vendor, uint16_t product)
1299 1.89 augustss {
1300 1.89 augustss while (nentries-- > 0) {
1301 1.169 skrll uint16_t tproduct = tbl->ud_product;
1302 1.93 augustss if (tbl->ud_vendor == vendor &&
1303 1.93 augustss (tproduct == product || tproduct == USB_PRODUCT_ANY))
1304 1.169 skrll return tbl;
1305 1.95 augustss tbl = (const struct usb_devno *)((const char *)tbl + sz);
1306 1.89 augustss }
1307 1.169 skrll return NULL;
1308 1.12 augustss }
1309 1.12 augustss
1310 1.105 augustss
1311 1.105 augustss void
1312 1.169 skrll usb_desc_iter_init(struct usbd_device *dev, usbd_desc_iter_t *iter)
1313 1.105 augustss {
1314 1.105 augustss const usb_config_descriptor_t *cd = usbd_get_config_descriptor(dev);
1315 1.105 augustss
1316 1.169 skrll iter->cur = (const uByte *)cd;
1317 1.169 skrll iter->end = (const uByte *)cd + UGETW(cd->wTotalLength);
1318 1.105 augustss }
1319 1.105 augustss
1320 1.105 augustss const usb_descriptor_t *
1321 1.105 augustss usb_desc_iter_next(usbd_desc_iter_t *iter)
1322 1.105 augustss {
1323 1.105 augustss const usb_descriptor_t *desc;
1324 1.105 augustss
1325 1.105 augustss if (iter->cur + sizeof(usb_descriptor_t) >= iter->end) {
1326 1.105 augustss if (iter->cur != iter->end)
1327 1.105 augustss printf("usb_desc_iter_next: bad descriptor\n");
1328 1.105 augustss return NULL;
1329 1.105 augustss }
1330 1.108 christos desc = (const usb_descriptor_t *)iter->cur;
1331 1.105 augustss if (desc->bLength == 0) {
1332 1.105 augustss printf("usb_desc_iter_next: descriptor length = 0\n");
1333 1.105 augustss return NULL;
1334 1.105 augustss }
1335 1.105 augustss iter->cur += desc->bLength;
1336 1.105 augustss if (iter->cur > iter->end) {
1337 1.105 augustss printf("usb_desc_iter_next: descriptor length too large\n");
1338 1.105 augustss return NULL;
1339 1.105 augustss }
1340 1.105 augustss return desc;
1341 1.105 augustss }
1342 1.105 augustss
1343 1.105 augustss usbd_status
1344 1.169 skrll usbd_get_string(struct usbd_device *dev, int si, char *buf)
1345 1.105 augustss {
1346 1.115 pavel return usbd_get_string0(dev, si, buf, 1);
1347 1.115 pavel }
1348 1.115 pavel
1349 1.115 pavel usbd_status
1350 1.169 skrll usbd_get_string0(struct usbd_device *dev, int si, char *buf, int unicode)
1351 1.115 pavel {
1352 1.169 skrll int swap = dev->ud_quirks->uq_flags & UQ_SWAP_UNICODE;
1353 1.105 augustss usb_string_descriptor_t us;
1354 1.105 augustss char *s;
1355 1.116 macallan int i, n;
1356 1.169 skrll uint16_t c;
1357 1.105 augustss usbd_status err;
1358 1.105 augustss int size;
1359 1.105 augustss
1360 1.162 skrll USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
1361 1.162 skrll
1362 1.105 augustss buf[0] = '\0';
1363 1.105 augustss if (si == 0)
1364 1.169 skrll return USBD_INVAL;
1365 1.169 skrll if (dev->ud_quirks->uq_flags & UQ_NO_STRINGS)
1366 1.169 skrll return USBD_STALLED;
1367 1.169 skrll if (dev->ud_langid == USBD_NOLANG) {
1368 1.105 augustss /* Set up default language */
1369 1.105 augustss err = usbd_get_string_desc(dev, USB_LANGUAGE_TABLE, 0, &us,
1370 1.105 augustss &size);
1371 1.105 augustss if (err || size < 4) {
1372 1.162 skrll USBHIST_LOG(usbdebug, "getting lang failed, using 0",
1373 1.162 skrll 0, 0, 0, 0);
1374 1.169 skrll dev->ud_langid = 0; /* Well, just pick something then */
1375 1.105 augustss } else {
1376 1.105 augustss /* Pick the first language as the default. */
1377 1.169 skrll dev->ud_langid = UGETW(us.bString[0]);
1378 1.105 augustss }
1379 1.105 augustss }
1380 1.169 skrll err = usbd_get_string_desc(dev, si, dev->ud_langid, &us, &size);
1381 1.105 augustss if (err)
1382 1.169 skrll return err;
1383 1.105 augustss s = buf;
1384 1.105 augustss n = size / 2 - 1;
1385 1.115 pavel if (unicode) {
1386 1.115 pavel for (i = 0; i < n; i++) {
1387 1.115 pavel c = UGETW(us.bString[i]);
1388 1.115 pavel if (swap)
1389 1.115 pavel c = (c >> 8) | (c << 8);
1390 1.119 drochner s += wput_utf8(s, 3, c);
1391 1.115 pavel }
1392 1.115 pavel *s++ = 0;
1393 1.115 pavel }
1394 1.115 pavel #ifdef COMPAT_30
1395 1.115 pavel else {
1396 1.119 drochner for (i = 0; i < n; i++) {
1397 1.115 pavel c = UGETW(us.bString[i]);
1398 1.115 pavel if (swap)
1399 1.115 pavel c = (c >> 8) | (c << 8);
1400 1.119 drochner *s++ = (c < 0x80) ? c : '?';
1401 1.107 augustss }
1402 1.119 drochner *s++ = 0;
1403 1.105 augustss }
1404 1.115 pavel #endif
1405 1.169 skrll return USBD_NORMAL_COMPLETION;
1406 1.105 augustss }
1407 1.182.4.3 martin
1408 1.182.4.3 martin /*
1409 1.182.4.3 martin * usbd_xfer_trycomplete(xfer)
1410 1.182.4.3 martin *
1411 1.182.4.3 martin * Try to claim xfer for completion. Return true if successful,
1412 1.182.4.3 martin * false if the xfer has been synchronously aborted or has timed
1413 1.182.4.3 martin * out.
1414 1.182.4.3 martin *
1415 1.182.4.3 martin * If this returns true, caller is responsible for setting
1416 1.182.4.3 martin * xfer->ux_status and calling usb_transfer_complete. To be used
1417 1.182.4.3 martin * in a host controller interrupt handler.
1418 1.182.4.3 martin *
1419 1.182.4.3 martin * Caller must either hold the bus lock or have the bus in polling
1420 1.182.4.3 martin * mode.
1421 1.182.4.3 martin */
1422 1.182.4.3 martin bool
1423 1.182.4.3 martin usbd_xfer_trycomplete(struct usbd_xfer *xfer)
1424 1.182.4.3 martin {
1425 1.182.4.3 martin struct usbd_bus *bus __diagused = xfer->ux_bus;
1426 1.182.4.3 martin
1427 1.182.4.3 martin KASSERT(bus->ub_usepolling || mutex_owned(bus->ub_lock));
1428 1.182.4.3 martin
1429 1.182.4.3 martin /*
1430 1.182.4.3 martin * If software has completed it, either by synchronous abort or
1431 1.182.4.3 martin * by timeout, too late.
1432 1.182.4.3 martin */
1433 1.182.4.3 martin if (xfer->ux_status != USBD_IN_PROGRESS)
1434 1.182.4.3 martin return false;
1435 1.182.4.3 martin
1436 1.182.4.3 martin /*
1437 1.182.4.3 martin * We are completing the xfer. Cancel the timeout if we can,
1438 1.182.4.3 martin * but only asynchronously. See usbd_xfer_cancel_timeout_async
1439 1.182.4.3 martin * for why we need not wait for the callout or task here.
1440 1.182.4.3 martin */
1441 1.182.4.3 martin usbd_xfer_cancel_timeout_async(xfer);
1442 1.182.4.3 martin
1443 1.182.4.3 martin /* Success! Note: Caller must set xfer->ux_status afterwar. */
1444 1.182.4.3 martin return true;
1445 1.182.4.3 martin }
1446 1.182.4.3 martin
1447 1.182.4.3 martin /*
1448 1.182.4.3 martin * usbd_xfer_abort(xfer)
1449 1.182.4.3 martin *
1450 1.182.4.3 martin * Try to claim xfer to abort. If successful, mark it completed
1451 1.182.4.3 martin * with USBD_CANCELLED and call the bus-specific method to abort
1452 1.182.4.3 martin * at the hardware level.
1453 1.182.4.3 martin *
1454 1.182.4.3 martin * To be called in thread context from struct
1455 1.182.4.3 martin * usbd_pipe_methods::upm_abort.
1456 1.182.4.3 martin *
1457 1.182.4.3 martin * Caller must hold the bus lock.
1458 1.182.4.3 martin */
1459 1.182.4.3 martin void
1460 1.182.4.3 martin usbd_xfer_abort(struct usbd_xfer *xfer)
1461 1.182.4.3 martin {
1462 1.182.4.3 martin struct usbd_bus *bus = xfer->ux_bus;
1463 1.182.4.3 martin
1464 1.182.4.3 martin KASSERT(mutex_owned(bus->ub_lock));
1465 1.182.4.3 martin
1466 1.182.4.3 martin /*
1467 1.182.4.3 martin * If host controller interrupt or timer interrupt has
1468 1.182.4.3 martin * completed it, too late. But the xfer cannot be
1469 1.182.4.3 martin * cancelled already -- only one caller can synchronously
1470 1.182.4.3 martin * abort.
1471 1.182.4.3 martin */
1472 1.182.4.3 martin KASSERT(xfer->ux_status != USBD_CANCELLED);
1473 1.182.4.3 martin if (xfer->ux_status != USBD_IN_PROGRESS)
1474 1.182.4.3 martin return;
1475 1.182.4.3 martin
1476 1.182.4.3 martin /*
1477 1.182.4.3 martin * Cancel the timeout if we can, but only asynchronously; see
1478 1.182.4.3 martin * usbd_xfer_cancel_timeout_async for why we need not wait for
1479 1.182.4.3 martin * the callout or task here.
1480 1.182.4.3 martin */
1481 1.182.4.3 martin usbd_xfer_cancel_timeout_async(xfer);
1482 1.182.4.3 martin
1483 1.182.4.3 martin /*
1484 1.182.4.3 martin * We beat everyone else. Claim the status as cancelled and do
1485 1.182.4.3 martin * the bus-specific dance to abort the hardware.
1486 1.182.4.3 martin */
1487 1.182.4.3 martin xfer->ux_status = USBD_CANCELLED;
1488 1.182.4.3 martin bus->ub_methods->ubm_abortx(xfer);
1489 1.182.4.3 martin }
1490 1.182.4.3 martin
1491 1.182.4.3 martin /*
1492 1.182.4.3 martin * usbd_xfer_timeout(xfer)
1493 1.182.4.3 martin *
1494 1.182.4.3 martin * Called at IPL_SOFTCLOCK when too much time has elapsed waiting
1495 1.182.4.3 martin * for xfer to complete. Since we can't abort the xfer at
1496 1.182.4.3 martin * IPL_SOFTCLOCK, defer to a usb_task to run it in thread context,
1497 1.182.4.3 martin * unless the xfer has completed or aborted concurrently -- and if
1498 1.182.4.3 martin * the xfer has also been resubmitted, take care of rescheduling
1499 1.182.4.3 martin * the callout.
1500 1.182.4.3 martin */
1501 1.182.4.3 martin static void
1502 1.182.4.3 martin usbd_xfer_timeout(void *cookie)
1503 1.182.4.3 martin {
1504 1.182.4.3 martin struct usbd_xfer *xfer = cookie;
1505 1.182.4.3 martin struct usbd_bus *bus = xfer->ux_bus;
1506 1.182.4.3 martin struct usbd_device *dev = xfer->ux_pipe->up_dev;
1507 1.182.4.3 martin
1508 1.182.4.3 martin /* Acquire the lock so we can transition the timeout state. */
1509 1.182.4.3 martin mutex_enter(bus->ub_lock);
1510 1.182.4.3 martin
1511 1.182.4.3 martin /*
1512 1.182.4.3 martin * Use usbd_xfer_probe_timeout to check whether the timeout is
1513 1.182.4.3 martin * still valid, or to reschedule the callout if necessary. If
1514 1.182.4.3 martin * it is still valid, schedule the task.
1515 1.182.4.3 martin */
1516 1.182.4.3 martin if (usbd_xfer_probe_timeout(xfer))
1517 1.182.4.3 martin usb_add_task(dev, &xfer->ux_aborttask, USB_TASKQ_HC);
1518 1.182.4.3 martin
1519 1.182.4.3 martin /*
1520 1.182.4.3 martin * Notify usbd_xfer_cancel_timeout_async that we may have
1521 1.182.4.3 martin * scheduled the task. This causes callout_invoking to return
1522 1.182.4.3 martin * false in usbd_xfer_cancel_timeout_async so that it can tell
1523 1.182.4.3 martin * which stage in the callout->task->abort process we're at.
1524 1.182.4.3 martin */
1525 1.182.4.3 martin callout_ack(&xfer->ux_callout);
1526 1.182.4.3 martin
1527 1.182.4.3 martin /* All done -- release the lock. */
1528 1.182.4.3 martin mutex_exit(bus->ub_lock);
1529 1.182.4.3 martin }
1530 1.182.4.3 martin
1531 1.182.4.3 martin /*
1532 1.182.4.3 martin * usbd_xfer_timeout_task(xfer)
1533 1.182.4.3 martin *
1534 1.182.4.3 martin * Called in thread context when too much time has elapsed waiting
1535 1.182.4.3 martin * for xfer to complete. Abort the xfer with USBD_TIMEOUT, unless
1536 1.182.4.3 martin * it has completed or aborted concurrently -- and if the xfer has
1537 1.182.4.3 martin * also been resubmitted, take care of rescheduling the callout.
1538 1.182.4.3 martin */
1539 1.182.4.3 martin static void
1540 1.182.4.3 martin usbd_xfer_timeout_task(void *cookie)
1541 1.182.4.3 martin {
1542 1.182.4.3 martin struct usbd_xfer *xfer = cookie;
1543 1.182.4.3 martin struct usbd_bus *bus = xfer->ux_bus;
1544 1.182.4.3 martin
1545 1.182.4.3 martin /* Acquire the lock so we can transition the timeout state. */
1546 1.182.4.3 martin mutex_enter(bus->ub_lock);
1547 1.182.4.3 martin
1548 1.182.4.3 martin /*
1549 1.182.4.3 martin * Use usbd_xfer_probe_timeout to check whether the timeout is
1550 1.182.4.3 martin * still valid, or to reschedule the callout if necessary. If
1551 1.182.4.3 martin * it is not valid -- the timeout has been asynchronously
1552 1.182.4.3 martin * cancelled, or the xfer has already been resubmitted -- then
1553 1.182.4.3 martin * we're done here.
1554 1.182.4.3 martin */
1555 1.182.4.3 martin if (!usbd_xfer_probe_timeout(xfer))
1556 1.182.4.3 martin goto out;
1557 1.182.4.3 martin
1558 1.182.4.3 martin /*
1559 1.182.4.3 martin * May have completed or been aborted, but we're the only one
1560 1.182.4.3 martin * who can time it out. If it has completed or been aborted,
1561 1.182.4.3 martin * no need to timeout.
1562 1.182.4.3 martin */
1563 1.182.4.3 martin KASSERT(xfer->ux_status != USBD_TIMEOUT);
1564 1.182.4.3 martin if (xfer->ux_status != USBD_IN_PROGRESS)
1565 1.182.4.3 martin goto out;
1566 1.182.4.3 martin
1567 1.182.4.3 martin /*
1568 1.182.4.3 martin * We beat everyone else. Claim the status as timed out and do
1569 1.182.4.3 martin * the bus-specific dance to abort the hardware.
1570 1.182.4.3 martin */
1571 1.182.4.3 martin xfer->ux_status = USBD_TIMEOUT;
1572 1.182.4.3 martin bus->ub_methods->ubm_abortx(xfer);
1573 1.182.4.3 martin
1574 1.182.4.3 martin out: /* All done -- release the lock. */
1575 1.182.4.3 martin mutex_exit(bus->ub_lock);
1576 1.182.4.3 martin }
1577 1.182.4.3 martin
1578 1.182.4.3 martin /*
1579 1.182.4.3 martin * usbd_xfer_probe_timeout(xfer)
1580 1.182.4.3 martin *
1581 1.182.4.3 martin * Probe the status of xfer's timeout. Acknowledge and process a
1582 1.182.4.3 martin * request to reschedule. Return true if the timeout is still
1583 1.182.4.3 martin * valid and the caller should take further action (queueing a
1584 1.182.4.3 martin * task or aborting the xfer), false if it must stop here.
1585 1.182.4.3 martin */
1586 1.182.4.3 martin static bool
1587 1.182.4.3 martin usbd_xfer_probe_timeout(struct usbd_xfer *xfer)
1588 1.182.4.3 martin {
1589 1.182.4.3 martin struct usbd_bus *bus = xfer->ux_bus;
1590 1.182.4.3 martin bool valid;
1591 1.182.4.3 martin
1592 1.182.4.3 martin KASSERT(bus->ub_usepolling || mutex_owned(bus->ub_lock));
1593 1.182.4.3 martin
1594 1.182.4.3 martin /* The timeout must be set. */
1595 1.182.4.3 martin KASSERT(xfer->ux_timeout_set);
1596 1.182.4.3 martin
1597 1.182.4.3 martin /*
1598 1.182.4.3 martin * Neither callout nor task may be pending; they execute
1599 1.182.4.3 martin * alternately in lock step.
1600 1.182.4.3 martin */
1601 1.182.4.3 martin KASSERT(!callout_pending(&xfer->ux_callout));
1602 1.182.4.3 martin KASSERT(!usb_task_pending(xfer->ux_pipe->up_dev, &xfer->ux_aborttask));
1603 1.182.4.3 martin
1604 1.182.4.3 martin /* There are a few cases... */
1605 1.182.4.3 martin if (bus->ub_methods->ubm_dying(bus)) {
1606 1.182.4.3 martin /* Host controller dying. Drop it all on the floor. */
1607 1.182.4.3 martin xfer->ux_timeout_set = false;
1608 1.182.4.3 martin xfer->ux_timeout_reset = false;
1609 1.182.4.3 martin valid = false;
1610 1.182.4.3 martin } else if (xfer->ux_timeout_reset) {
1611 1.182.4.3 martin /*
1612 1.182.4.3 martin * The xfer completed _and_ got resubmitted while we
1613 1.182.4.3 martin * waited for the lock. Acknowledge the request to
1614 1.182.4.3 martin * reschedule, and reschedule it if there is a timeout
1615 1.182.4.3 martin * and the bus is not polling.
1616 1.182.4.3 martin */
1617 1.182.4.3 martin xfer->ux_timeout_reset = false;
1618 1.182.4.3 martin if (xfer->ux_timeout && !bus->ub_usepolling) {
1619 1.182.4.3 martin KASSERT(xfer->ux_timeout_set);
1620 1.182.4.3 martin callout_schedule(&xfer->ux_callout,
1621 1.182.4.3 martin mstohz(xfer->ux_timeout));
1622 1.182.4.3 martin } else {
1623 1.182.4.3 martin /* No more callout or task scheduled. */
1624 1.182.4.3 martin xfer->ux_timeout_set = false;
1625 1.182.4.3 martin }
1626 1.182.4.3 martin valid = false;
1627 1.182.4.3 martin } else if (xfer->ux_status != USBD_IN_PROGRESS) {
1628 1.182.4.3 martin /*
1629 1.182.4.3 martin * The xfer has completed by hardware completion or by
1630 1.182.4.3 martin * software abort, and has not been resubmitted, so the
1631 1.182.4.3 martin * timeout must be unset, and is no longer valid for
1632 1.182.4.3 martin * the caller.
1633 1.182.4.3 martin */
1634 1.182.4.3 martin xfer->ux_timeout_set = false;
1635 1.182.4.3 martin valid = false;
1636 1.182.4.3 martin } else {
1637 1.182.4.3 martin /*
1638 1.182.4.3 martin * The xfer has not yet completed, so the timeout is
1639 1.182.4.3 martin * valid.
1640 1.182.4.3 martin */
1641 1.182.4.3 martin valid = true;
1642 1.182.4.3 martin }
1643 1.182.4.3 martin
1644 1.182.4.3 martin /* Any reset must have been processed. */
1645 1.182.4.3 martin KASSERT(!xfer->ux_timeout_reset);
1646 1.182.4.3 martin
1647 1.182.4.3 martin /*
1648 1.182.4.3 martin * Either we claim the timeout is set, or the callout is idle.
1649 1.182.4.3 martin * If the timeout is still set, we may be handing off to the
1650 1.182.4.3 martin * task instead, so this is an if but not an iff.
1651 1.182.4.3 martin */
1652 1.182.4.3 martin KASSERT(xfer->ux_timeout_set || !callout_pending(&xfer->ux_callout));
1653 1.182.4.3 martin
1654 1.182.4.3 martin /*
1655 1.182.4.3 martin * The task must be idle now.
1656 1.182.4.3 martin *
1657 1.182.4.3 martin * - If the caller is the callout, _and_ the timeout is still
1658 1.182.4.3 martin * valid, the caller will schedule it, but it hasn't been
1659 1.182.4.3 martin * scheduled yet. (If the timeout is not valid, the task
1660 1.182.4.3 martin * should not be scheduled.)
1661 1.182.4.3 martin *
1662 1.182.4.3 martin * - If the caller is the task, it cannot be scheduled again
1663 1.182.4.3 martin * until the callout runs again, which won't happen until we
1664 1.182.4.3 martin * next release the lock.
1665 1.182.4.3 martin */
1666 1.182.4.3 martin KASSERT(!usb_task_pending(xfer->ux_pipe->up_dev, &xfer->ux_aborttask));
1667 1.182.4.3 martin
1668 1.182.4.3 martin KASSERT(bus->ub_usepolling || mutex_owned(bus->ub_lock));
1669 1.182.4.3 martin
1670 1.182.4.3 martin return valid;
1671 1.182.4.3 martin }
1672 1.182.4.3 martin
1673 1.182.4.3 martin /*
1674 1.182.4.3 martin * usbd_xfer_schedule_timeout(xfer)
1675 1.182.4.3 martin *
1676 1.182.4.3 martin * Ensure that xfer has a timeout. If the callout is already
1677 1.182.4.3 martin * queued or the task is already running, request that they
1678 1.182.4.3 martin * reschedule the callout. If not, and if we're not polling,
1679 1.182.4.3 martin * schedule the callout anew.
1680 1.182.4.3 martin *
1681 1.182.4.3 martin * To be called in thread context from struct
1682 1.182.4.3 martin * usbd_pipe_methods::upm_start.
1683 1.182.4.3 martin */
1684 1.182.4.3 martin void
1685 1.182.4.3 martin usbd_xfer_schedule_timeout(struct usbd_xfer *xfer)
1686 1.182.4.3 martin {
1687 1.182.4.3 martin struct usbd_bus *bus = xfer->ux_bus;
1688 1.182.4.3 martin
1689 1.182.4.3 martin KASSERT(bus->ub_usepolling || mutex_owned(bus->ub_lock));
1690 1.182.4.3 martin
1691 1.182.4.3 martin if (xfer->ux_timeout_set) {
1692 1.182.4.3 martin /*
1693 1.182.4.3 martin * Callout or task has fired from a prior completed
1694 1.182.4.3 martin * xfer but has not yet noticed that the xfer is done.
1695 1.182.4.3 martin * Ask it to reschedule itself to ux_timeout.
1696 1.182.4.3 martin */
1697 1.182.4.3 martin xfer->ux_timeout_reset = true;
1698 1.182.4.3 martin } else if (xfer->ux_timeout && !bus->ub_usepolling) {
1699 1.182.4.3 martin /* Callout is not scheduled. Schedule it. */
1700 1.182.4.3 martin KASSERT(!callout_pending(&xfer->ux_callout));
1701 1.182.4.3 martin callout_schedule(&xfer->ux_callout, mstohz(xfer->ux_timeout));
1702 1.182.4.3 martin xfer->ux_timeout_set = true;
1703 1.182.4.3 martin }
1704 1.182.4.3 martin
1705 1.182.4.3 martin KASSERT(bus->ub_usepolling || mutex_owned(bus->ub_lock));
1706 1.182.4.3 martin }
1707 1.182.4.3 martin
1708 1.182.4.3 martin /*
1709 1.182.4.3 martin * usbd_xfer_cancel_timeout_async(xfer)
1710 1.182.4.3 martin *
1711 1.182.4.3 martin * Cancel the callout and the task of xfer, which have not yet run
1712 1.182.4.3 martin * to completion, but don't wait for the callout or task to finish
1713 1.182.4.3 martin * running.
1714 1.182.4.3 martin *
1715 1.182.4.3 martin * If they have already fired, at worst they are waiting for the
1716 1.182.4.3 martin * bus lock. They will see that the xfer is no longer in progress
1717 1.182.4.3 martin * and give up, or they will see that the xfer has been
1718 1.182.4.3 martin * resubmitted with a new timeout and reschedule the callout.
1719 1.182.4.3 martin *
1720 1.182.4.3 martin * If a resubmitted request completed so fast that the callout
1721 1.182.4.3 martin * didn't have time to process a timer reset, just cancel the
1722 1.182.4.3 martin * timer reset.
1723 1.182.4.3 martin */
1724 1.182.4.3 martin static void
1725 1.182.4.3 martin usbd_xfer_cancel_timeout_async(struct usbd_xfer *xfer)
1726 1.182.4.3 martin {
1727 1.182.4.3 martin struct usbd_bus *bus __diagused = xfer->ux_bus;
1728 1.182.4.3 martin
1729 1.182.4.3 martin KASSERT(bus->ub_usepolling || mutex_owned(bus->ub_lock));
1730 1.182.4.3 martin
1731 1.182.4.3 martin /*
1732 1.182.4.3 martin * If the timer wasn't running anyway, forget about it. This
1733 1.182.4.3 martin * can happen if we are completing an isochronous transfer
1734 1.182.4.3 martin * which doesn't use the same timeout logic.
1735 1.182.4.3 martin */
1736 1.182.4.3 martin if (!xfer->ux_timeout_set)
1737 1.182.4.3 martin return;
1738 1.182.4.3 martin
1739 1.182.4.3 martin xfer->ux_timeout_reset = false;
1740 1.182.4.3 martin if (!callout_stop(&xfer->ux_callout)) {
1741 1.182.4.3 martin /*
1742 1.182.4.3 martin * We stopped the callout before it ran. The timeout
1743 1.182.4.3 martin * is no longer set.
1744 1.182.4.3 martin */
1745 1.182.4.3 martin xfer->ux_timeout_set = false;
1746 1.182.4.3 martin } else if (callout_invoking(&xfer->ux_callout)) {
1747 1.182.4.3 martin /*
1748 1.182.4.3 martin * The callout has begun to run but it has not yet
1749 1.182.4.3 martin * acquired the lock and called callout_ack. The task
1750 1.182.4.3 martin * cannot be queued yet, and the callout cannot have
1751 1.182.4.3 martin * been rescheduled yet.
1752 1.182.4.3 martin *
1753 1.182.4.3 martin * By the time the callout acquires the lock, we will
1754 1.182.4.3 martin * have transitioned from USBD_IN_PROGRESS to a
1755 1.182.4.3 martin * completed status, and possibly also resubmitted the
1756 1.182.4.3 martin * xfer and set xfer->ux_timeout_reset = true. In both
1757 1.182.4.3 martin * cases, the callout will DTRT, so no further action
1758 1.182.4.3 martin * is needed here.
1759 1.182.4.3 martin */
1760 1.182.4.3 martin } else if (usb_rem_task(xfer->ux_pipe->up_dev, &xfer->ux_aborttask)) {
1761 1.182.4.3 martin /*
1762 1.182.4.3 martin * The callout had fired and scheduled the task, but we
1763 1.182.4.3 martin * stopped the task before it could run. The timeout
1764 1.182.4.3 martin * is therefore no longer set -- the next resubmission
1765 1.182.4.3 martin * of the xfer must schedule a new timeout.
1766 1.182.4.3 martin *
1767 1.182.4.3 martin * The callout should not be be pending at this point:
1768 1.182.4.3 martin * it is scheduled only under the lock, and only when
1769 1.182.4.3 martin * xfer->ux_timeout_set is false, or by the callout or
1770 1.182.4.3 martin * task itself when xfer->ux_timeout_reset is true.
1771 1.182.4.3 martin */
1772 1.182.4.3 martin xfer->ux_timeout_set = false;
1773 1.182.4.3 martin }
1774 1.182.4.3 martin
1775 1.182.4.3 martin /*
1776 1.182.4.3 martin * The callout cannot be scheduled and the task cannot be
1777 1.182.4.3 martin * queued at this point. Either we cancelled them, or they are
1778 1.182.4.3 martin * already running and waiting for the bus lock.
1779 1.182.4.3 martin */
1780 1.182.4.3 martin KASSERT(!callout_pending(&xfer->ux_callout));
1781 1.182.4.3 martin KASSERT(!usb_task_pending(xfer->ux_pipe->up_dev, &xfer->ux_aborttask));
1782 1.182.4.3 martin
1783 1.182.4.3 martin KASSERT(bus->ub_usepolling || mutex_owned(bus->ub_lock));
1784 1.182.4.3 martin }
1785