usb_core.h revision 192984
1/* $FreeBSD: head/sys/dev/usb/usb_core.h 192984 2009-05-28 17:36:36Z thompsa $ */
2/*-
3 * Copyright (c) 2008 Hans Petter Selasky. All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 *    notice, this list of conditions and the following disclaimer in the
12 *    documentation and/or other materials provided with the distribution.
13 *
14 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
15 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
18 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24 * SUCH DAMAGE.
25 */
26
27/*
28 * Including this file is mandatory for all USB related c-files in the kernel.
29 */
30
31#ifndef _USB2_CORE_H_
32#define	_USB2_CORE_H_
33
34#define	USB_STACK_VERSION 2000		/* 2.0 */
35
36/* Allow defines in "opt_usb.h" to override configuration */
37
38#include "opt_usb.h"
39#include "opt_bus.h"
40
41/* Default USB configuration */
42
43/*
44 * The following macro defines if the code shall use cv_xxx() instead
45 * of msleep() and wakeup().
46 */
47#ifndef USB_HAVE_CONDVAR
48#define	USB_HAVE_CONDVAR 0
49#endif
50
51/*
52 * The following macro defines if the code shall support
53 * /dev/usb/x.y.z.
54 */
55#ifndef USB_HAVE_UGEN
56#define	USB_HAVE_UGEN 1
57#endif
58
59/*
60 * The following macro defines if the code shall support BUS-DMA.
61 */
62#ifndef USB_HAVE_BUSDMA
63#define	USB_HAVE_BUSDMA 1
64#endif
65
66/*
67 * The following macro defines if the code shall support the Linux
68 * compatibility layer.
69 */
70#ifndef USB_HAVE_COMPAT_LINUX
71#define	USB_HAVE_COMPAT_LINUX 1
72#endif
73
74/*
75 * The following macro defines if the code shall support
76 * userland data transfer via copyin() and copyout()
77 */
78#ifndef USB_HAVE_USER_IO
79#define	USB_HAVE_USER_IO 1
80#endif
81
82/*
83 * The following macro defines if the code shall support copy in via
84 * bsd-mbufs to USB.
85 */
86#ifndef USB_HAVE_MBUF
87#define	USB_HAVE_MBUF 1
88#endif
89
90/*
91 * The following macro defines if the code shall compile a table
92 * describing USB vendor and product IDs.
93 */
94#ifndef USB_VERBOSE
95#define	USB_VERBOSE 1
96#endif
97
98/*
99 * The following macro defines if USB debugging support shall be
100 * compiled for the USB core and all drivers.
101 */
102#ifndef USB_DEBUG
103#define	USB_DEBUG 1
104#endif
105
106/*
107 * The following macro defines if USB transaction translator support
108 * shall be supported for the USB HUB and USB controller drivers.
109 */
110#ifndef	USB_HAVE_TT_SUPPORT
111#define	USB_HAVE_TT_SUPPORT 1
112#endif
113
114/*
115 * The following macro defines if the USB power daemon shall
116 * be supported in the USB core.
117 */
118#ifndef	USB_HAVE_POWERD
119#define	USB_HAVE_POWERD 1
120#endif
121
122/*
123 * The following macro defines if the USB autoinstall detection shall
124 * be supported in the USB core.
125 */
126#ifndef USB_HAVE_MSCTEST
127#define	USB_HAVE_MSCTEST 1
128#endif
129
130#ifndef USB_TD_GET_PROC
131#define	USB_TD_GET_PROC(td) (td)->td_proc
132#endif
133
134#ifndef USB_PROC_GET_GID
135#define	USB_PROC_GET_GID(td) (td)->p_pgid
136#endif
137
138/* Include files */
139
140#include <sys/stdint.h>
141#include <sys/stddef.h>
142#include <sys/param.h>
143#include <sys/queue.h>
144#include <sys/types.h>
145#include <sys/systm.h>
146#include <sys/kernel.h>
147#include <sys/bus.h>
148#include <sys/linker_set.h>
149#include <sys/module.h>
150#include <sys/lock.h>
151#include <sys/mutex.h>
152#include <sys/condvar.h>
153#include <sys/sysctl.h>
154#include <sys/sx.h>
155#include <sys/unistd.h>
156#include <sys/callout.h>
157#include <sys/malloc.h>
158#include <sys/priv.h>
159
160#include <dev/usb/usb_defs.h>
161#include <dev/usb/usb_revision.h>
162
163#include "usb_if.h"
164
165#ifndef USB_HOST_ALIGN
166#define	USB_HOST_ALIGN    8		/* bytes, must be power of two */
167#endif
168
169#ifndef USB_FS_ISOC_UFRAME_MAX
170#define	USB_FS_ISOC_UFRAME_MAX 4	/* exclusive unit */
171#endif
172
173#if (USB_FS_ISOC_UFRAME_MAX > 6)
174#error "USB_FS_ISOC_UFRAME_MAX cannot be set higher than 6"
175#endif
176
177#ifndef USB_BUS_MAX
178#define	USB_BUS_MAX 256			/* units */
179#endif
180
181#ifndef USB_MAX_DEVICES
182#define	USB_MAX_DEVICES 128		/* units */
183#endif
184
185#if (USB_MAX_DEVICES < USB_MIN_DEVICES)
186#error "Minimum number of devices is greater than maximum number of devices."
187#endif
188
189#ifndef USB_IFACE_MAX
190#define	USB_IFACE_MAX 32		/* units */
191#endif
192
193#ifndef USB_FIFO_MAX
194#define	USB_FIFO_MAX 128		/* units */
195#endif
196
197#if (USB_FIFO_MAX & 1)
198#error "Number of FIFOs must be odd."
199#endif
200
201#define	USB_MAX_FS_ISOC_FRAMES_PER_XFER (120)	/* units */
202#define	USB_MAX_HS_ISOC_FRAMES_PER_XFER (8*120)	/* units */
203
204#ifndef USB_HUB_MAX_DEPTH
205#define	USB_HUB_MAX_DEPTH	5
206#endif
207
208#ifndef USB_EP0_BUFSIZE
209#define	USB_EP0_BUFSIZE		1024	/* bytes */
210#endif
211
212/* USB transfer states */
213
214#define	USB_ST_SETUP       0
215#define	USB_ST_TRANSFERRED 1
216#define	USB_ST_ERROR       2
217
218/*
219 * The following macro will return the current state of an USB
220 * transfer like defined by the "USB_ST_XXX" enums.
221 */
222#define	USB_GET_STATE(xfer) ((xfer)->usb2_state)
223
224/*
225 * The following macro will tell if an USB transfer is currently
226 * receiving or transferring data.
227 */
228#define	USB_GET_DATA_ISREAD(xfer) ((xfer)->flags_int.usb_mode == \
229	USB_MODE_DEVICE ? (((xfer)->endpoint & UE_DIR_IN) ? 0 : 1) : \
230	(((xfer)->endpoint & UE_DIR_IN) ? 1 : 0))
231
232/*
233 * The following macros are used used to convert milliseconds into
234 * HZ. We use 1024 instead of 1000 milliseconds per second to save a
235 * full division.
236 */
237#define	USB_MS_HZ 1024
238
239#define	USB_MS_TO_TICKS(ms) \
240  (((uint32_t)((((uint32_t)(ms)) * ((uint32_t)(hz))) + USB_MS_HZ - 1)) / USB_MS_HZ)
241
242/* macros */
243
244#define	usb2_callout_init_mtx(c,m,f) callout_init_mtx(&(c)->co,m,f)
245#define	usb2_callout_reset(c,t,f,d) callout_reset(&(c)->co,t,f,d)
246#define	usb2_callout_stop(c) callout_stop(&(c)->co)
247#define	usb2_callout_drain(c) callout_drain(&(c)->co)
248#define	usb2_callout_pending(c) callout_pending(&(c)->co)
249
250#define	USB_BUS_LOCK(_b)		mtx_lock(&(_b)->bus_mtx)
251#define	USB_BUS_UNLOCK(_b)		mtx_unlock(&(_b)->bus_mtx)
252#define	USB_BUS_LOCK_ASSERT(_b, _t)	mtx_assert(&(_b)->bus_mtx, _t)
253#define	USB_XFER_LOCK(_x)		mtx_lock((_x)->xroot->xfer_mtx)
254#define	USB_XFER_UNLOCK(_x)		mtx_unlock((_x)->xroot->xfer_mtx)
255#define	USB_XFER_LOCK_ASSERT(_x, _t)	mtx_assert((_x)->xroot->xfer_mtx, _t)
256/* structure prototypes */
257
258struct file;
259struct usb_bus;
260struct usb_device;
261struct usb_device_request;
262struct usb_page;
263struct usb_page_cache;
264struct usb_xfer;
265struct usb_xfer_root;
266
267/* typedefs */
268
269typedef void (usb2_callback_t)(struct usb_xfer *);
270
271#ifndef USB_HAVE_USB_ERROR_T
272typedef uint8_t usb2_error_t;		/* see "USB_ERR_XXX" */
273#endif
274
275#ifndef USB_HAVE_TIMEOUT_T
276typedef uint32_t usb2_timeout_t;	/* milliseconds */
277#endif
278
279#ifndef USB_HAVE_FRLENGTH_T
280typedef uint32_t usb2_frlength_t;	/* bytes */
281#endif
282
283#ifndef USB_HAVE_FRCOUNT_T
284typedef uint32_t usb2_frcount_t;	/* units */
285#endif
286
287#ifndef USB_HAVE_SIZE_T
288typedef uint32_t usb2_size_t;		/* bytes */
289#endif
290
291#ifndef USB_HAVE_TICKS_T
292typedef uint32_t usb2_ticks_t;		/* system defined */
293#endif
294
295#ifndef USB_HAVE_POWER_MASK_T
296typedef uint16_t usb2_power_mask_t;	/* see "USB_HW_POWER_XXX" */
297#endif
298
299typedef usb2_error_t (usb2_handle_request_t)(struct usb_device *,
300    struct usb_device_request *, const void **, uint16_t *);
301
302/* structures */
303
304/*
305 * Common queue structure for USB transfers.
306 */
307struct usb_xfer_queue {
308	TAILQ_HEAD(, usb_xfer) head;
309	struct usb_xfer *curr;		/* current USB transfer processed */
310	void    (*command) (struct usb_xfer_queue *pq);
311	uint8_t	recurse_1:1;
312	uint8_t	recurse_2:1;
313};
314
315/*
316 * The following is a wrapper for the callout structure to ease
317 * porting the code to other platforms.
318 */
319struct usb_callout {
320	struct callout co;
321};
322
323/*
324 * The following structure defines a set of USB transfer flags.
325 */
326struct usb_xfer_flags {
327	uint8_t	force_short_xfer:1;	/* force a short transmit transfer
328					 * last */
329	uint8_t	short_xfer_ok:1;	/* allow short receive transfers */
330	uint8_t	short_frames_ok:1;	/* allow short frames */
331	uint8_t	pipe_bof:1;		/* block pipe on failure */
332	uint8_t	proxy_buffer:1;		/* makes buffer size a factor of
333					 * "max_frame_size" */
334	uint8_t	ext_buffer:1;		/* uses external DMA buffer */
335	uint8_t	manual_status:1;	/* non automatic status stage on
336					 * control transfers */
337	uint8_t	no_pipe_ok:1;		/* set if "USB_ERR_NO_PIPE" error can
338					 * be ignored */
339	uint8_t	stall_pipe:1;		/* set if the endpoint belonging to
340					 * this USB transfer should be stalled
341					 * before starting this transfer! */
342};
343
344/*
345 * The following structure defines a set of internal USB transfer
346 * flags.
347 */
348struct usb_xfer_flags_int {
349
350	enum usb_hc_mode usb_mode;	/* shadow copy of "udev->usb_mode" */
351	uint16_t control_rem;		/* remainder in bytes */
352
353	uint8_t	open:1;			/* set if USB pipe has been opened */
354	uint8_t	transferring:1;		/* set if an USB transfer is in
355					 * progress */
356	uint8_t	did_dma_delay:1;	/* set if we waited for HW DMA */
357	uint8_t	did_close:1;		/* set if we closed the USB transfer */
358	uint8_t	draining:1;		/* set if we are draining an USB
359					 * transfer */
360	uint8_t	started:1;		/* keeps track of started or stopped */
361	uint8_t	bandwidth_reclaimed:1;
362	uint8_t	control_xfr:1;		/* set if control transfer */
363	uint8_t	control_hdr:1;		/* set if control header should be
364					 * sent */
365	uint8_t	control_act:1;		/* set if control transfer is active */
366	uint8_t	control_stall:1;	/* set if control transfer should be stalled */
367
368	uint8_t	short_frames_ok:1;	/* filtered version */
369	uint8_t	short_xfer_ok:1;	/* filtered version */
370#if USB_HAVE_BUSDMA
371	uint8_t	bdma_enable:1;		/* filtered version (only set if
372					 * hardware supports DMA) */
373	uint8_t	bdma_no_post_sync:1;	/* set if the USB callback wrapper
374					 * should not do the BUS-DMA post sync
375					 * operation */
376	uint8_t	bdma_setup:1;		/* set if BUS-DMA has been setup */
377#endif
378	uint8_t	isochronous_xfr:1;	/* set if isochronous transfer */
379	uint8_t	curr_dma_set:1;		/* used by USB HC/DC driver */
380	uint8_t	can_cancel_immed:1;	/* set if USB transfer can be
381					 * cancelled immediately */
382};
383
384/*
385 * The following structure define an USB configuration, that basically
386 * is used when setting up an USB transfer.
387 */
388struct usb_config {
389	usb2_callback_t *callback;	/* USB transfer callback */
390	usb2_frlength_t bufsize;	/* total pipe buffer size in bytes */
391	usb2_frcount_t frames;		/* maximum number of USB frames */
392	usb2_timeout_t interval;	/* interval in milliseconds */
393#define	USB_DEFAULT_INTERVAL	0
394	usb2_timeout_t timeout;		/* transfer timeout in milliseconds */
395	struct usb_xfer_flags flags;	/* transfer flags */
396	enum usb_hc_mode usb_mode;	/* host or device mode */
397	uint8_t	type;			/* pipe type */
398	uint8_t	endpoint;		/* pipe number */
399	uint8_t	direction;		/* pipe direction */
400	uint8_t	ep_index;		/* pipe index match to use */
401	uint8_t	if_index;		/* "ifaces" index to use */
402};
403
404/*
405 * The following structure defines an USB transfer.
406 */
407struct usb_xfer {
408	struct usb_callout timeout_handle;
409	TAILQ_ENTRY(usb_xfer) wait_entry;	/* used at various places */
410
411	struct usb_page_cache *buf_fixup;	/* fixup buffer(s) */
412	struct usb_xfer_queue *wait_queue;	/* pointer to queue that we
413						 * are waiting on */
414	struct usb_page *dma_page_ptr;
415	struct usb_pipe *pipe;		/* our USB pipe */
416	struct usb_xfer_root *xroot;	/* used by HC driver */
417	void   *qh_start[2];		/* used by HC driver */
418	void   *td_start[2];		/* used by HC driver */
419	void   *td_transfer_first;	/* used by HC driver */
420	void   *td_transfer_last;	/* used by HC driver */
421	void   *td_transfer_cache;	/* used by HC driver */
422	void   *priv_sc;		/* device driver data pointer 1 */
423	void   *priv_fifo;		/* device driver data pointer 2 */
424	void   *local_buffer;
425	usb2_frlength_t *frlengths;
426	struct usb_page_cache *frbuffers;
427	usb2_callback_t *callback;
428
429	usb2_frlength_t max_hc_frame_size;
430	usb2_frlength_t max_data_length;
431	usb2_frlength_t sumlen;		/* sum of all lengths in bytes */
432	usb2_frlength_t actlen;		/* actual length in bytes */
433	usb2_timeout_t timeout;		/* milliseconds */
434#define	USB_NO_TIMEOUT 0
435#define	USB_DEFAULT_TIMEOUT 5000	/* 5000 ms = 5 seconds */
436
437	usb2_frcount_t max_frame_count;	/* initial value of "nframes" after
438					 * setup */
439	usb2_frcount_t nframes;		/* number of USB frames to transfer */
440	usb2_frcount_t aframes;		/* actual number of USB frames
441					 * transferred */
442
443	uint16_t max_packet_size;
444	uint16_t max_frame_size;
445	uint16_t qh_pos;
446	uint16_t isoc_time_complete;	/* in ms */
447	usb2_timeout_t interval;	/* milliseconds */
448
449	uint8_t	address;		/* physical USB address */
450	uint8_t	endpoint;		/* physical USB endpoint */
451	uint8_t	max_packet_count;
452	uint8_t	usb2_smask;
453	uint8_t	usb2_cmask;
454	uint8_t	usb2_uframe;
455	uint8_t	usb2_state;
456
457	usb2_error_t error;
458
459	struct usb_xfer_flags flags;
460	struct usb_xfer_flags_int flags_int;
461};
462
463/*
464 * The following structure keeps information that is used to match
465 * against an array of "usb_device_id" elements.
466 */
467struct usb_lookup_info {
468	uint16_t idVendor;
469	uint16_t idProduct;
470	uint16_t bcdDevice;
471	uint8_t	bDeviceClass;
472	uint8_t	bDeviceSubClass;
473	uint8_t	bDeviceProtocol;
474	uint8_t	bInterfaceClass;
475	uint8_t	bInterfaceSubClass;
476	uint8_t	bInterfaceProtocol;
477	uint8_t	bIfaceIndex;
478	uint8_t	bIfaceNum;
479	uint8_t	bConfigIndex;
480	uint8_t	bConfigNum;
481};
482
483/* Structure used by probe and attach */
484
485struct usb_attach_arg {
486	struct usb_lookup_info info;
487	device_t temp_dev;		/* for internal use */
488	const void *driver_info;	/* for internal use */
489	struct usb_device *device;	/* current device */
490	struct usb_interface *iface;	/* current interface */
491	enum usb_hc_mode usb_mode;	/* host or device mode */
492	uint8_t	port;
493	uint8_t	use_generic;		/* hint for generic drivers */
494};
495
496/* external variables */
497
498MALLOC_DECLARE(M_USB);
499MALLOC_DECLARE(M_USBDEV);
500MALLOC_DECLARE(M_USBHC);
501
502extern struct mtx usb2_ref_lock;
503
504/* typedefs */
505
506typedef struct malloc_type *usb2_malloc_type;
507
508/* prototypes */
509
510const char *usb2_errstr(usb2_error_t error);
511const char *usb2_statestr(enum usb_dev_state state);
512struct usb_config_descriptor *usb2_get_config_descriptor(
513	    struct usb_device *udev);
514struct usb_device_descriptor *usb2_get_device_descriptor(
515	    struct usb_device *udev);
516struct usb_interface *usb2_get_iface(struct usb_device *udev,
517	    uint8_t iface_index);
518struct usb_interface_descriptor *usb2_get_interface_descriptor(
519	    struct usb_interface *iface);
520uint8_t	usb2_clear_stall_callback(struct usb_xfer *xfer1,
521	    struct usb_xfer *xfer2);
522uint8_t	usb2_get_interface_altindex(struct usb_interface *iface);
523usb2_error_t usb2_set_alt_interface_index(struct usb_device *udev,
524	    uint8_t iface_index, uint8_t alt_index);
525enum usb_hc_mode	usb2_get_mode(struct usb_device *udev);
526enum usb_dev_speed	usb2_get_speed(struct usb_device *udev);
527uint32_t usb2_get_isoc_fps(struct usb_device *udev);
528usb2_error_t usb2_transfer_setup(struct usb_device *udev,
529	    const uint8_t *ifaces, struct usb_xfer **pxfer,
530	    const struct usb_config *setup_start, uint16_t n_setup,
531	    void *priv_sc, struct mtx *priv_mtx);
532void	usb2_set_frame_data(struct usb_xfer *xfer, void *ptr,
533	    usb2_frcount_t frindex);
534void	usb2_set_frame_offset(struct usb_xfer *xfer, usb2_frlength_t offset,
535	    usb2_frcount_t frindex);
536void	usb2_start_hardware(struct usb_xfer *xfer);
537void	usb2_transfer_clear_stall(struct usb_xfer *xfer);
538void	usb2_transfer_drain(struct usb_xfer *xfer);
539void	usb2_transfer_set_stall(struct usb_xfer *xfer);
540uint8_t	usb2_transfer_pending(struct usb_xfer *xfer);
541void	usb2_transfer_start(struct usb_xfer *xfer);
542void	usb2_transfer_stop(struct usb_xfer *xfer);
543void	usb2_transfer_unsetup(struct usb_xfer **pxfer, uint16_t n_setup);
544void	usb2_set_parent_iface(struct usb_device *udev, uint8_t iface_index,
545	    uint8_t parent_index);
546uint8_t	usb2_get_bus_index(struct usb_device *udev);
547uint8_t	usb2_get_device_index(struct usb_device *udev);
548void	usb2_set_power_mode(struct usb_device *udev, uint8_t power_mode);
549uint8_t	usb2_device_attached(struct usb_device *udev);
550
551#endif					/* _USB2_CORE_H_ */
552