ums.c revision 307777
1/*-
2 * Copyright (c) 1998 The NetBSD Foundation, Inc.
3 * All rights reserved.
4 *
5 * This code is derived from software contributed to The NetBSD Foundation
6 * by Lennart Augustsson (lennart@augustsson.net) at
7 * Carlstedt Research & Technology.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions
11 * are met:
12 * 1. Redistributions of source code must retain the above copyright
13 *    notice, this list of conditions and the following disclaimer.
14 * 2. Redistributions in binary form must reproduce the above copyright
15 *    notice, this list of conditions and the following disclaimer in the
16 *    documentation and/or other materials provided with the distribution.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
19 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
20 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
21 * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
22 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
23 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
24 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
25 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
26 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
27 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
28 * POSSIBILITY OF SUCH DAMAGE.
29 */
30
31#include <sys/cdefs.h>
32__FBSDID("$FreeBSD: stable/11/sys/dev/usb/input/ums.c 307777 2016-10-22 16:38:39Z gonzo $");
33
34/*
35 * HID spec: http://www.usb.org/developers/devclass_docs/HID1_11.pdf
36 */
37
38#include "opt_evdev.h"
39
40#include <sys/stdint.h>
41#include <sys/stddef.h>
42#include <sys/param.h>
43#include <sys/queue.h>
44#include <sys/types.h>
45#include <sys/systm.h>
46#include <sys/kernel.h>
47#include <sys/bus.h>
48#include <sys/module.h>
49#include <sys/lock.h>
50#include <sys/mutex.h>
51#include <sys/condvar.h>
52#include <sys/sysctl.h>
53#include <sys/sx.h>
54#include <sys/unistd.h>
55#include <sys/callout.h>
56#include <sys/malloc.h>
57#include <sys/priv.h>
58#include <sys/conf.h>
59#include <sys/fcntl.h>
60#include <sys/sbuf.h>
61
62#include <dev/usb/usb.h>
63#include <dev/usb/usbdi.h>
64#include <dev/usb/usbdi_util.h>
65#include <dev/usb/usbhid.h>
66#include "usbdevs.h"
67
68#define	USB_DEBUG_VAR ums_debug
69#include <dev/usb/usb_debug.h>
70
71#include <dev/usb/quirk/usb_quirk.h>
72
73#ifdef EVDEV_SUPPORT
74#include <dev/evdev/input.h>
75#include <dev/evdev/evdev.h>
76#endif
77
78#include <sys/ioccom.h>
79#include <sys/filio.h>
80#include <sys/tty.h>
81#include <sys/mouse.h>
82
83#ifdef USB_DEBUG
84static int ums_debug = 0;
85
86static SYSCTL_NODE(_hw_usb, OID_AUTO, ums, CTLFLAG_RW, 0, "USB ums");
87SYSCTL_INT(_hw_usb_ums, OID_AUTO, debug, CTLFLAG_RWTUN,
88    &ums_debug, 0, "Debug level");
89#endif
90
91#define	MOUSE_FLAGS_MASK (HIO_CONST|HIO_RELATIVE)
92#define	MOUSE_FLAGS (HIO_RELATIVE)
93
94#define	UMS_BUF_SIZE      8		/* bytes */
95#define	UMS_IFQ_MAXLEN   50		/* units */
96#define	UMS_BUTTON_MAX   31		/* exclusive, must be less than 32 */
97#define	UMS_BUT(i) ((i) < 3 ? (((i) + 2) % 3) : (i))
98#define	UMS_INFO_MAX	  2		/* maximum number of HID sets */
99
100enum {
101	UMS_INTR_DT,
102	UMS_N_TRANSFER,
103};
104
105struct ums_info {
106	struct hid_location sc_loc_w;
107	struct hid_location sc_loc_x;
108	struct hid_location sc_loc_y;
109	struct hid_location sc_loc_z;
110	struct hid_location sc_loc_t;
111	struct hid_location sc_loc_btn[UMS_BUTTON_MAX];
112
113	uint32_t sc_flags;
114#define	UMS_FLAG_X_AXIS     0x0001
115#define	UMS_FLAG_Y_AXIS     0x0002
116#define	UMS_FLAG_Z_AXIS     0x0004
117#define	UMS_FLAG_T_AXIS     0x0008
118#define	UMS_FLAG_SBU        0x0010	/* spurious button up events */
119#define	UMS_FLAG_REVZ	    0x0020	/* Z-axis is reversed */
120#define	UMS_FLAG_W_AXIS     0x0040
121
122	uint8_t	sc_iid_w;
123	uint8_t	sc_iid_x;
124	uint8_t	sc_iid_y;
125	uint8_t	sc_iid_z;
126	uint8_t	sc_iid_t;
127	uint8_t	sc_iid_btn[UMS_BUTTON_MAX];
128	uint8_t	sc_buttons;
129};
130
131struct ums_softc {
132	struct usb_fifo_sc sc_fifo;
133	struct mtx sc_mtx;
134	struct usb_callout sc_callout;
135	struct ums_info sc_info[UMS_INFO_MAX];
136
137	mousehw_t sc_hw;
138	mousemode_t sc_mode;
139	mousestatus_t sc_status;
140
141	struct usb_xfer *sc_xfer[UMS_N_TRANSFER];
142
143	int sc_pollrate;
144	int sc_fflags;
145#ifdef EVDEV_SUPPORT
146	int sc_evflags;
147#define	UMS_EVDEV_OPENED	1
148#endif
149
150	uint8_t	sc_buttons;
151	uint8_t	sc_iid;
152	uint8_t	sc_temp[64];
153
154#ifdef EVDEV_SUPPORT
155	struct evdev_dev *sc_evdev;
156#endif
157};
158
159static void ums_put_queue_timeout(void *__sc);
160
161static usb_callback_t ums_intr_callback;
162
163static device_probe_t ums_probe;
164static device_attach_t ums_attach;
165static device_detach_t ums_detach;
166
167static usb_fifo_cmd_t ums_fifo_start_read;
168static usb_fifo_cmd_t ums_fifo_stop_read;
169static usb_fifo_open_t ums_fifo_open;
170static usb_fifo_close_t ums_fifo_close;
171static usb_fifo_ioctl_t ums_fifo_ioctl;
172
173#ifdef EVDEV_SUPPORT
174static evdev_open_t ums_ev_open;
175static evdev_close_t ums_ev_close;
176#endif
177
178static void	ums_start_rx(struct ums_softc *);
179static void	ums_stop_rx(struct ums_softc *);
180static void	ums_put_queue(struct ums_softc *, int32_t, int32_t,
181		    int32_t, int32_t, int32_t);
182static int	ums_sysctl_handler_parseinfo(SYSCTL_HANDLER_ARGS);
183
184static struct usb_fifo_methods ums_fifo_methods = {
185	.f_open = &ums_fifo_open,
186	.f_close = &ums_fifo_close,
187	.f_ioctl = &ums_fifo_ioctl,
188	.f_start_read = &ums_fifo_start_read,
189	.f_stop_read = &ums_fifo_stop_read,
190	.basename[0] = "ums",
191};
192
193#ifdef EVDEV_SUPPORT
194static const struct evdev_methods ums_evdev_methods = {
195	.ev_open = &ums_ev_open,
196	.ev_close = &ums_ev_close,
197};
198#endif
199
200static void
201ums_put_queue_timeout(void *__sc)
202{
203	struct ums_softc *sc = __sc;
204
205	mtx_assert(&sc->sc_mtx, MA_OWNED);
206
207	ums_put_queue(sc, 0, 0, 0, 0, 0);
208}
209
210static void
211ums_intr_callback(struct usb_xfer *xfer, usb_error_t error)
212{
213	struct ums_softc *sc = usbd_xfer_softc(xfer);
214	struct ums_info *info = &sc->sc_info[0];
215	struct usb_page_cache *pc;
216	uint8_t *buf = sc->sc_temp;
217	int32_t buttons = 0;
218	int32_t buttons_found = 0;
219	int32_t dw = 0;
220	int32_t dx = 0;
221	int32_t dy = 0;
222	int32_t dz = 0;
223	int32_t dt = 0;
224	uint8_t i;
225	uint8_t id;
226	int len;
227
228	usbd_xfer_status(xfer, &len, NULL, NULL, NULL);
229
230	switch (USB_GET_STATE(xfer)) {
231	case USB_ST_TRANSFERRED:
232		DPRINTFN(6, "sc=%p actlen=%d\n", sc, len);
233
234		if (len > (int)sizeof(sc->sc_temp)) {
235			DPRINTFN(6, "truncating large packet to %zu bytes\n",
236			    sizeof(sc->sc_temp));
237			len = sizeof(sc->sc_temp);
238		}
239		if (len == 0)
240			goto tr_setup;
241
242		pc = usbd_xfer_get_frame(xfer, 0);
243		usbd_copy_out(pc, 0, buf, len);
244
245		DPRINTFN(6, "data = %02x %02x %02x %02x "
246		    "%02x %02x %02x %02x\n",
247		    (len > 0) ? buf[0] : 0, (len > 1) ? buf[1] : 0,
248		    (len > 2) ? buf[2] : 0, (len > 3) ? buf[3] : 0,
249		    (len > 4) ? buf[4] : 0, (len > 5) ? buf[5] : 0,
250		    (len > 6) ? buf[6] : 0, (len > 7) ? buf[7] : 0);
251
252		if (sc->sc_iid) {
253			id = *buf;
254
255			len--;
256			buf++;
257
258		} else {
259			id = 0;
260			if (sc->sc_info[0].sc_flags & UMS_FLAG_SBU) {
261				if ((*buf == 0x14) || (*buf == 0x15)) {
262					goto tr_setup;
263				}
264			}
265		}
266
267	repeat:
268		if ((info->sc_flags & UMS_FLAG_W_AXIS) &&
269		    (id == info->sc_iid_w))
270			dw += hid_get_data(buf, len, &info->sc_loc_w);
271
272		if ((info->sc_flags & UMS_FLAG_X_AXIS) &&
273		    (id == info->sc_iid_x))
274			dx += hid_get_data(buf, len, &info->sc_loc_x);
275
276		if ((info->sc_flags & UMS_FLAG_Y_AXIS) &&
277		    (id == info->sc_iid_y))
278			dy = -hid_get_data(buf, len, &info->sc_loc_y);
279
280		if ((info->sc_flags & UMS_FLAG_Z_AXIS) &&
281		    (id == info->sc_iid_z)) {
282			int32_t temp;
283			temp = hid_get_data(buf, len, &info->sc_loc_z);
284			if (info->sc_flags & UMS_FLAG_REVZ)
285				temp = -temp;
286			dz -= temp;
287		}
288
289		if ((info->sc_flags & UMS_FLAG_T_AXIS) &&
290		    (id == info->sc_iid_t))
291			dt -= hid_get_data(buf, len, &info->sc_loc_t);
292
293		for (i = 0; i < info->sc_buttons; i++) {
294			uint32_t mask;
295			mask = 1UL << UMS_BUT(i);
296			/* check for correct button ID */
297			if (id != info->sc_iid_btn[i])
298				continue;
299			/* check for button pressed */
300			if (hid_get_data(buf, len, &info->sc_loc_btn[i]))
301				buttons |= mask;
302			/* register button mask */
303			buttons_found |= mask;
304		}
305
306		if (++info != &sc->sc_info[UMS_INFO_MAX])
307			goto repeat;
308
309		/* keep old button value(s) for non-detected buttons */
310		buttons |= sc->sc_status.button & ~buttons_found;
311
312		if (dx || dy || dz || dt || dw ||
313		    (buttons != sc->sc_status.button)) {
314
315			DPRINTFN(6, "x:%d y:%d z:%d t:%d w:%d buttons:0x%08x\n",
316			    dx, dy, dz, dt, dw, buttons);
317
318			/* translate T-axis into button presses until further */
319			if (dt > 0)
320				buttons |= 1UL << 5;
321			else if (dt < 0)
322				buttons |= 1UL << 6;
323
324			sc->sc_status.button = buttons;
325			sc->sc_status.dx += dx;
326			sc->sc_status.dy += dy;
327			sc->sc_status.dz += dz;
328			/*
329			 * sc->sc_status.dt += dt;
330			 * no way to export this yet
331			 */
332
333			/*
334		         * The Qtronix keyboard has a built in PS/2
335		         * port for a mouse.  The firmware once in a
336		         * while posts a spurious button up
337		         * event. This event we ignore by doing a
338		         * timeout for 50 msecs.  If we receive
339		         * dx=dy=dz=buttons=0 before we add the event
340		         * to the queue.  In any other case we delete
341		         * the timeout event.
342		         */
343			if ((sc->sc_info[0].sc_flags & UMS_FLAG_SBU) &&
344			    (dx == 0) && (dy == 0) && (dz == 0) && (dt == 0) &&
345			    (dw == 0) && (buttons == 0)) {
346
347				usb_callout_reset(&sc->sc_callout, hz / 20,
348				    &ums_put_queue_timeout, sc);
349			} else {
350
351				usb_callout_stop(&sc->sc_callout);
352
353				ums_put_queue(sc, dx, dy, dz, dt, buttons);
354			}
355		}
356	case USB_ST_SETUP:
357tr_setup:
358		/* check if we can put more data into the FIFO */
359		if (usb_fifo_put_bytes_max(sc->sc_fifo.fp[USB_FIFO_RX]) == 0) {
360#ifdef EVDEV_SUPPORT
361			if (sc->sc_evflags == 0)
362				break;
363#else
364			break;
365#endif
366		}
367
368		usbd_xfer_set_frame_len(xfer, 0, usbd_xfer_max_len(xfer));
369		usbd_transfer_submit(xfer);
370		break;
371
372	default:			/* Error */
373		if (error != USB_ERR_CANCELLED) {
374			/* try clear stall first */
375			usbd_xfer_set_stall(xfer);
376			goto tr_setup;
377		}
378		break;
379	}
380}
381
382static const struct usb_config ums_config[UMS_N_TRANSFER] = {
383
384	[UMS_INTR_DT] = {
385		.type = UE_INTERRUPT,
386		.endpoint = UE_ADDR_ANY,
387		.direction = UE_DIR_IN,
388		.flags = {.pipe_bof = 1,.short_xfer_ok = 1,},
389		.bufsize = 0,	/* use wMaxPacketSize */
390		.callback = &ums_intr_callback,
391	},
392};
393
394/* A match on these entries will load ums */
395static const STRUCT_USB_HOST_ID __used ums_devs[] = {
396	{USB_IFACE_CLASS(UICLASS_HID),
397	 USB_IFACE_SUBCLASS(UISUBCLASS_BOOT),
398	 USB_IFACE_PROTOCOL(UIPROTO_MOUSE),},
399};
400
401static int
402ums_probe(device_t dev)
403{
404	struct usb_attach_arg *uaa = device_get_ivars(dev);
405	void *d_ptr;
406	int error;
407	uint16_t d_len;
408
409	DPRINTFN(11, "\n");
410
411	if (uaa->usb_mode != USB_MODE_HOST)
412		return (ENXIO);
413
414	if (uaa->info.bInterfaceClass != UICLASS_HID)
415		return (ENXIO);
416
417	if (usb_test_quirk(uaa, UQ_UMS_IGNORE))
418		return (ENXIO);
419
420	if ((uaa->info.bInterfaceSubClass == UISUBCLASS_BOOT) &&
421	    (uaa->info.bInterfaceProtocol == UIPROTO_MOUSE))
422		return (BUS_PROBE_DEFAULT);
423
424	error = usbd_req_get_hid_desc(uaa->device, NULL,
425	    &d_ptr, &d_len, M_TEMP, uaa->info.bIfaceIndex);
426
427	if (error)
428		return (ENXIO);
429
430	if (hid_is_mouse(d_ptr, d_len))
431		error = BUS_PROBE_DEFAULT;
432	else
433		error = ENXIO;
434
435	free(d_ptr, M_TEMP);
436	return (error);
437}
438
439static void
440ums_hid_parse(struct ums_softc *sc, device_t dev, const uint8_t *buf,
441    uint16_t len, uint8_t index)
442{
443	struct ums_info *info = &sc->sc_info[index];
444	uint32_t flags;
445	uint8_t i;
446	uint8_t j;
447
448	if (hid_locate(buf, len, HID_USAGE2(HUP_GENERIC_DESKTOP, HUG_X),
449	    hid_input, index, &info->sc_loc_x, &flags, &info->sc_iid_x)) {
450
451		if ((flags & MOUSE_FLAGS_MASK) == MOUSE_FLAGS) {
452			info->sc_flags |= UMS_FLAG_X_AXIS;
453		}
454	}
455	if (hid_locate(buf, len, HID_USAGE2(HUP_GENERIC_DESKTOP, HUG_Y),
456	    hid_input, index, &info->sc_loc_y, &flags, &info->sc_iid_y)) {
457
458		if ((flags & MOUSE_FLAGS_MASK) == MOUSE_FLAGS) {
459			info->sc_flags |= UMS_FLAG_Y_AXIS;
460		}
461	}
462	/* Try the wheel first as the Z activator since it's tradition. */
463	if (hid_locate(buf, len, HID_USAGE2(HUP_GENERIC_DESKTOP,
464	    HUG_WHEEL), hid_input, index, &info->sc_loc_z, &flags,
465	    &info->sc_iid_z) ||
466	    hid_locate(buf, len, HID_USAGE2(HUP_GENERIC_DESKTOP,
467	    HUG_TWHEEL), hid_input, index, &info->sc_loc_z, &flags,
468	    &info->sc_iid_z)) {
469		if ((flags & MOUSE_FLAGS_MASK) == MOUSE_FLAGS) {
470			info->sc_flags |= UMS_FLAG_Z_AXIS;
471		}
472		/*
473		 * We might have both a wheel and Z direction, if so put
474		 * put the Z on the W coordinate.
475		 */
476		if (hid_locate(buf, len, HID_USAGE2(HUP_GENERIC_DESKTOP,
477		    HUG_Z), hid_input, index, &info->sc_loc_w, &flags,
478		    &info->sc_iid_w)) {
479
480			if ((flags & MOUSE_FLAGS_MASK) == MOUSE_FLAGS) {
481				info->sc_flags |= UMS_FLAG_W_AXIS;
482			}
483		}
484	} else if (hid_locate(buf, len, HID_USAGE2(HUP_GENERIC_DESKTOP,
485	    HUG_Z), hid_input, index, &info->sc_loc_z, &flags,
486	    &info->sc_iid_z)) {
487
488		if ((flags & MOUSE_FLAGS_MASK) == MOUSE_FLAGS) {
489			info->sc_flags |= UMS_FLAG_Z_AXIS;
490		}
491	}
492	/*
493	 * The Microsoft Wireless Intellimouse 2.0 reports it's wheel
494	 * using 0x0048, which is HUG_TWHEEL, and seems to expect you
495	 * to know that the byte after the wheel is the tilt axis.
496	 * There are no other HID axis descriptors other than X,Y and
497	 * TWHEEL
498	 */
499	if (hid_locate(buf, len, HID_USAGE2(HUP_GENERIC_DESKTOP,
500	    HUG_TWHEEL), hid_input, index, &info->sc_loc_t,
501	    &flags, &info->sc_iid_t)) {
502
503		info->sc_loc_t.pos += 8;
504
505		if ((flags & MOUSE_FLAGS_MASK) == MOUSE_FLAGS) {
506			info->sc_flags |= UMS_FLAG_T_AXIS;
507		}
508	} else if (hid_locate(buf, len, HID_USAGE2(HUP_CONSUMER,
509		HUC_AC_PAN), hid_input, index, &info->sc_loc_t,
510		&flags, &info->sc_iid_t)) {
511
512		if ((flags & MOUSE_FLAGS_MASK) == MOUSE_FLAGS)
513			info->sc_flags |= UMS_FLAG_T_AXIS;
514	}
515	/* figure out the number of buttons */
516
517	for (i = 0; i < UMS_BUTTON_MAX; i++) {
518		if (!hid_locate(buf, len, HID_USAGE2(HUP_BUTTON, (i + 1)),
519		    hid_input, index, &info->sc_loc_btn[i], NULL,
520		    &info->sc_iid_btn[i])) {
521			break;
522		}
523	}
524
525	/* detect other buttons */
526
527	for (j = 0; (i < UMS_BUTTON_MAX) && (j < 2); i++, j++) {
528		if (!hid_locate(buf, len, HID_USAGE2(HUP_MICROSOFT, (j + 1)),
529		    hid_input, index, &info->sc_loc_btn[i], NULL,
530		    &info->sc_iid_btn[i])) {
531			break;
532		}
533	}
534
535	info->sc_buttons = i;
536
537	if (i > sc->sc_buttons)
538		sc->sc_buttons = i;
539
540	if (info->sc_flags == 0)
541		return;
542
543	/* announce information about the mouse */
544	device_printf(dev, "%d buttons and [%s%s%s%s%s] coordinates ID=%u\n",
545	    (info->sc_buttons),
546	    (info->sc_flags & UMS_FLAG_X_AXIS) ? "X" : "",
547	    (info->sc_flags & UMS_FLAG_Y_AXIS) ? "Y" : "",
548	    (info->sc_flags & UMS_FLAG_Z_AXIS) ? "Z" : "",
549	    (info->sc_flags & UMS_FLAG_T_AXIS) ? "T" : "",
550	    (info->sc_flags & UMS_FLAG_W_AXIS) ? "W" : "",
551	    info->sc_iid_x);
552}
553
554static int
555ums_attach(device_t dev)
556{
557	struct usb_attach_arg *uaa = device_get_ivars(dev);
558	struct ums_softc *sc = device_get_softc(dev);
559	struct ums_info *info;
560	void *d_ptr = NULL;
561	int isize;
562	int err;
563	uint16_t d_len;
564	uint8_t i;
565#ifdef USB_DEBUG
566	uint8_t j;
567#endif
568
569	DPRINTFN(11, "sc=%p\n", sc);
570
571	device_set_usb_desc(dev);
572
573	mtx_init(&sc->sc_mtx, "ums lock", NULL, MTX_DEF | MTX_RECURSE);
574
575	usb_callout_init_mtx(&sc->sc_callout, &sc->sc_mtx, 0);
576
577	/*
578         * Force the report (non-boot) protocol.
579         *
580         * Mice without boot protocol support may choose not to implement
581         * Set_Protocol at all; Ignore any error.
582         */
583	err = usbd_req_set_protocol(uaa->device, NULL,
584	    uaa->info.bIfaceIndex, 1);
585
586	err = usbd_transfer_setup(uaa->device,
587	    &uaa->info.bIfaceIndex, sc->sc_xfer, ums_config,
588	    UMS_N_TRANSFER, sc, &sc->sc_mtx);
589
590	if (err) {
591		DPRINTF("error=%s\n", usbd_errstr(err));
592		goto detach;
593	}
594
595	/* Get HID descriptor */
596	err = usbd_req_get_hid_desc(uaa->device, NULL, &d_ptr,
597	    &d_len, M_TEMP, uaa->info.bIfaceIndex);
598
599	if (err) {
600		device_printf(dev, "error reading report description\n");
601		goto detach;
602	}
603
604	isize = hid_report_size(d_ptr, d_len, hid_input, &sc->sc_iid);
605
606	/*
607	 * The Microsoft Wireless Notebook Optical Mouse seems to be in worse
608	 * shape than the Wireless Intellimouse 2.0, as its X, Y, wheel, and
609	 * all of its other button positions are all off. It also reports that
610	 * it has two additional buttons and a tilt wheel.
611	 */
612	if (usb_test_quirk(uaa, UQ_MS_BAD_CLASS)) {
613
614		sc->sc_iid = 0;
615
616		info = &sc->sc_info[0];
617		info->sc_flags = (UMS_FLAG_X_AXIS |
618		    UMS_FLAG_Y_AXIS |
619		    UMS_FLAG_Z_AXIS |
620		    UMS_FLAG_SBU);
621		info->sc_buttons = 3;
622		isize = 5;
623		/* 1st byte of descriptor report contains garbage */
624		info->sc_loc_x.pos = 16;
625		info->sc_loc_x.size = 8;
626		info->sc_loc_y.pos = 24;
627		info->sc_loc_y.size = 8;
628		info->sc_loc_z.pos = 32;
629		info->sc_loc_z.size = 8;
630		info->sc_loc_btn[0].pos = 8;
631		info->sc_loc_btn[0].size = 1;
632		info->sc_loc_btn[1].pos = 9;
633		info->sc_loc_btn[1].size = 1;
634		info->sc_loc_btn[2].pos = 10;
635		info->sc_loc_btn[2].size = 1;
636
637		/* Announce device */
638		device_printf(dev, "3 buttons and [XYZ] "
639		    "coordinates ID=0\n");
640
641	} else {
642		/* Search the HID descriptor and announce device */
643		for (i = 0; i < UMS_INFO_MAX; i++) {
644			ums_hid_parse(sc, dev, d_ptr, d_len, i);
645		}
646	}
647
648	if (usb_test_quirk(uaa, UQ_MS_REVZ)) {
649		info = &sc->sc_info[0];
650		/* Some wheels need the Z axis reversed. */
651		info->sc_flags |= UMS_FLAG_REVZ;
652	}
653	if (isize > (int)usbd_xfer_max_framelen(sc->sc_xfer[UMS_INTR_DT])) {
654		DPRINTF("WARNING: report size, %d bytes, is larger "
655		    "than interrupt size, %d bytes!\n", isize,
656		    usbd_xfer_max_framelen(sc->sc_xfer[UMS_INTR_DT]));
657	}
658	free(d_ptr, M_TEMP);
659	d_ptr = NULL;
660
661#ifdef USB_DEBUG
662	for (j = 0; j < UMS_INFO_MAX; j++) {
663		info = &sc->sc_info[j];
664
665		DPRINTF("sc=%p, index=%d\n", sc, j);
666		DPRINTF("X\t%d/%d id=%d\n", info->sc_loc_x.pos,
667		    info->sc_loc_x.size, info->sc_iid_x);
668		DPRINTF("Y\t%d/%d id=%d\n", info->sc_loc_y.pos,
669		    info->sc_loc_y.size, info->sc_iid_y);
670		DPRINTF("Z\t%d/%d id=%d\n", info->sc_loc_z.pos,
671		    info->sc_loc_z.size, info->sc_iid_z);
672		DPRINTF("T\t%d/%d id=%d\n", info->sc_loc_t.pos,
673		    info->sc_loc_t.size, info->sc_iid_t);
674		DPRINTF("W\t%d/%d id=%d\n", info->sc_loc_w.pos,
675		    info->sc_loc_w.size, info->sc_iid_w);
676
677		for (i = 0; i < info->sc_buttons; i++) {
678			DPRINTF("B%d\t%d/%d id=%d\n",
679			    i + 1, info->sc_loc_btn[i].pos,
680			    info->sc_loc_btn[i].size, info->sc_iid_btn[i]);
681		}
682	}
683	DPRINTF("size=%d, id=%d\n", isize, sc->sc_iid);
684#endif
685
686	err = usb_fifo_attach(uaa->device, sc, &sc->sc_mtx,
687	    &ums_fifo_methods, &sc->sc_fifo,
688	    device_get_unit(dev), -1, uaa->info.bIfaceIndex,
689  	    UID_ROOT, GID_OPERATOR, 0644);
690	if (err)
691		goto detach;
692
693#ifdef EVDEV_SUPPORT
694	sc->sc_evdev = evdev_alloc();
695	evdev_set_name(sc->sc_evdev, device_get_desc(dev));
696	evdev_set_phys(sc->sc_evdev, device_get_nameunit(dev));
697	evdev_set_id(sc->sc_evdev, BUS_USB, uaa->info.idVendor,
698	    uaa->info.idProduct, 0);
699	evdev_set_serial(sc->sc_evdev, usb_get_serial(uaa->device));
700	evdev_set_methods(sc->sc_evdev, sc, &ums_evdev_methods);
701	evdev_support_prop(sc->sc_evdev, INPUT_PROP_POINTER);
702	evdev_support_event(sc->sc_evdev, EV_SYN);
703	evdev_support_event(sc->sc_evdev, EV_REL);
704	evdev_support_event(sc->sc_evdev, EV_KEY);
705
706	info = &sc->sc_info[0];
707
708	if (info->sc_flags & UMS_FLAG_X_AXIS)
709		evdev_support_rel(sc->sc_evdev, REL_X);
710
711	if (info->sc_flags & UMS_FLAG_Y_AXIS)
712		evdev_support_rel(sc->sc_evdev, REL_Y);
713
714	if (info->sc_flags & UMS_FLAG_Z_AXIS)
715		evdev_support_rel(sc->sc_evdev, REL_WHEEL);
716
717	if (info->sc_flags & UMS_FLAG_T_AXIS)
718		evdev_support_rel(sc->sc_evdev, REL_HWHEEL);
719
720	for (i = 0; i < info->sc_buttons; i++)
721		evdev_support_key(sc->sc_evdev, BTN_MOUSE + i);
722
723	err = evdev_register(sc->sc_evdev);
724	if (err)
725		goto detach;
726#endif
727
728	SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
729	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)),
730	    OID_AUTO, "parseinfo", CTLTYPE_STRING|CTLFLAG_RD,
731	    sc, 0, ums_sysctl_handler_parseinfo,
732	    "", "Dump of parsed HID report descriptor");
733
734	return (0);
735
736detach:
737	if (d_ptr) {
738		free(d_ptr, M_TEMP);
739	}
740	ums_detach(dev);
741	return (ENOMEM);
742}
743
744static int
745ums_detach(device_t self)
746{
747	struct ums_softc *sc = device_get_softc(self);
748
749	DPRINTF("sc=%p\n", sc);
750
751	usb_fifo_detach(&sc->sc_fifo);
752
753#ifdef EVDEV_SUPPORT
754	evdev_free(sc->sc_evdev);
755#endif
756
757	usbd_transfer_unsetup(sc->sc_xfer, UMS_N_TRANSFER);
758
759	usb_callout_drain(&sc->sc_callout);
760
761	mtx_destroy(&sc->sc_mtx);
762
763	return (0);
764}
765
766static void
767ums_reset(struct ums_softc *sc)
768{
769
770	/* reset all USB mouse parameters */
771
772	if (sc->sc_buttons > MOUSE_MSC_MAXBUTTON)
773		sc->sc_hw.buttons = MOUSE_MSC_MAXBUTTON;
774	else
775		sc->sc_hw.buttons = sc->sc_buttons;
776
777	sc->sc_hw.iftype = MOUSE_IF_USB;
778	sc->sc_hw.type = MOUSE_MOUSE;
779	sc->sc_hw.model = MOUSE_MODEL_GENERIC;
780	sc->sc_hw.hwid = 0;
781
782	sc->sc_mode.protocol = MOUSE_PROTO_MSC;
783	sc->sc_mode.rate = -1;
784	sc->sc_mode.resolution = MOUSE_RES_UNKNOWN;
785	sc->sc_mode.accelfactor = 0;
786	sc->sc_mode.level = 0;
787	sc->sc_mode.packetsize = MOUSE_MSC_PACKETSIZE;
788	sc->sc_mode.syncmask[0] = MOUSE_MSC_SYNCMASK;
789	sc->sc_mode.syncmask[1] = MOUSE_MSC_SYNC;
790
791	/* reset status */
792
793	sc->sc_status.flags = 0;
794	sc->sc_status.button = 0;
795	sc->sc_status.obutton = 0;
796	sc->sc_status.dx = 0;
797	sc->sc_status.dy = 0;
798	sc->sc_status.dz = 0;
799	/* sc->sc_status.dt = 0; */
800}
801
802static void
803ums_start_rx(struct ums_softc *sc)
804{
805	int rate;
806
807	/* Check if we should override the default polling interval */
808	rate = sc->sc_pollrate;
809	/* Range check rate */
810	if (rate > 1000)
811		rate = 1000;
812	/* Check for set rate */
813	if ((rate > 0) && (sc->sc_xfer[UMS_INTR_DT] != NULL)) {
814		DPRINTF("Setting pollrate = %d\n", rate);
815		/* Stop current transfer, if any */
816		usbd_transfer_stop(sc->sc_xfer[UMS_INTR_DT]);
817		/* Set new interval */
818		usbd_xfer_set_interval(sc->sc_xfer[UMS_INTR_DT], 1000 / rate);
819		/* Only set pollrate once */
820		sc->sc_pollrate = 0;
821	}
822
823	usbd_transfer_start(sc->sc_xfer[UMS_INTR_DT]);
824}
825
826static void
827ums_stop_rx(struct ums_softc *sc)
828{
829	usbd_transfer_stop(sc->sc_xfer[UMS_INTR_DT]);
830	usb_callout_stop(&sc->sc_callout);
831}
832
833static void
834ums_fifo_start_read(struct usb_fifo *fifo)
835{
836	struct ums_softc *sc = usb_fifo_softc(fifo);
837
838	ums_start_rx(sc);
839}
840
841static void
842ums_fifo_stop_read(struct usb_fifo *fifo)
843{
844	struct ums_softc *sc = usb_fifo_softc(fifo);
845
846	ums_stop_rx(sc);
847}
848
849
850#if ((MOUSE_SYS_PACKETSIZE != 8) || \
851     (MOUSE_MSC_PACKETSIZE != 5))
852#error "Software assumptions are not met. Please update code."
853#endif
854
855static void
856ums_put_queue(struct ums_softc *sc, int32_t dx, int32_t dy,
857    int32_t dz, int32_t dt, int32_t buttons)
858{
859	uint8_t buf[8];
860
861	if (1) {
862
863		if (dx > 254)
864			dx = 254;
865		if (dx < -256)
866			dx = -256;
867		if (dy > 254)
868			dy = 254;
869		if (dy < -256)
870			dy = -256;
871		if (dz > 126)
872			dz = 126;
873		if (dz < -128)
874			dz = -128;
875		if (dt > 126)
876			dt = 126;
877		if (dt < -128)
878			dt = -128;
879
880		buf[0] = sc->sc_mode.syncmask[1];
881		buf[0] |= (~buttons) & MOUSE_MSC_BUTTONS;
882		buf[1] = dx >> 1;
883		buf[2] = dy >> 1;
884		buf[3] = dx - (dx >> 1);
885		buf[4] = dy - (dy >> 1);
886
887		if (sc->sc_mode.level == 1) {
888			buf[5] = dz >> 1;
889			buf[6] = dz - (dz >> 1);
890			buf[7] = (((~buttons) >> 3) & MOUSE_SYS_EXTBUTTONS);
891		}
892		usb_fifo_put_data_linear(sc->sc_fifo.fp[USB_FIFO_RX], buf,
893		    sc->sc_mode.packetsize, 1);
894
895#ifdef EVDEV_SUPPORT
896		if (evdev_rcpt_mask & EVDEV_RCPT_HW_MOUSE) {
897			/* Push evdev event */
898			evdev_push_event(sc->sc_evdev, EV_REL, REL_X, dx);
899			evdev_push_event(sc->sc_evdev, EV_REL, REL_Y, -dy);
900			evdev_push_event(sc->sc_evdev, EV_REL, REL_WHEEL, -dz);
901			evdev_push_event(sc->sc_evdev, EV_REL, REL_HWHEEL, dt);
902			evdev_push_mouse_btn(sc->sc_evdev,
903			    (buttons & ~MOUSE_STDBUTTONS) |
904			    (buttons & (1 << 2) ? MOUSE_BUTTON1DOWN : 0) |
905			    (buttons & (1 << 1) ? MOUSE_BUTTON2DOWN : 0) |
906			    (buttons & (1 << 0) ? MOUSE_BUTTON3DOWN : 0));
907			evdev_sync(sc->sc_evdev);
908		}
909#endif
910	} else {
911		DPRINTF("Buffer full, discarded packet\n");
912	}
913}
914
915static void
916ums_reset_buf(struct ums_softc *sc)
917{
918	/* reset read queue, must be called locked */
919	usb_fifo_reset(sc->sc_fifo.fp[USB_FIFO_RX]);
920}
921
922#ifdef EVDEV_SUPPORT
923static int
924ums_ev_open(struct evdev_dev *evdev, void *ev_softc)
925{
926	struct ums_softc *sc = (struct ums_softc *)ev_softc;
927
928	mtx_lock(&sc->sc_mtx);
929
930	sc->sc_evflags = UMS_EVDEV_OPENED;
931
932	if (sc->sc_fflags == 0) {
933		ums_reset(sc);
934		ums_start_rx(sc);
935	}
936
937	mtx_unlock(&sc->sc_mtx);
938
939	return (0);
940}
941
942static void
943ums_ev_close(struct evdev_dev *evdev, void *ev_softc)
944{
945	struct ums_softc *sc = (struct ums_softc *)ev_softc;
946
947	mtx_lock(&sc->sc_mtx);
948
949	sc->sc_evflags = 0;
950
951	if (sc->sc_fflags == 0)
952		ums_stop_rx(sc);
953
954	mtx_unlock(&sc->sc_mtx);
955}
956#endif
957
958static int
959ums_fifo_open(struct usb_fifo *fifo, int fflags)
960{
961	struct ums_softc *sc = usb_fifo_softc(fifo);
962
963	DPRINTFN(2, "\n");
964
965	/* check for duplicate open, should not happen */
966	if (sc->sc_fflags & fflags)
967		return (EBUSY);
968
969	/* check for first open */
970#ifdef EVDEV_SUPPORT
971	if (sc->sc_fflags == 0 && sc->sc_evflags == 0)
972		ums_reset(sc);
973#else
974	if (sc->sc_fflags == 0)
975		ums_reset(sc);
976#endif
977
978	if (fflags & FREAD) {
979		/* allocate RX buffer */
980		if (usb_fifo_alloc_buffer(fifo,
981		    UMS_BUF_SIZE, UMS_IFQ_MAXLEN)) {
982			return (ENOMEM);
983		}
984	}
985
986	sc->sc_fflags |= fflags & (FREAD | FWRITE);
987	return (0);
988}
989
990static void
991ums_fifo_close(struct usb_fifo *fifo, int fflags)
992{
993	struct ums_softc *sc = usb_fifo_softc(fifo);
994
995	DPRINTFN(2, "\n");
996
997	if (fflags & FREAD)
998		usb_fifo_free_buffer(fifo);
999
1000	sc->sc_fflags &= ~(fflags & (FREAD | FWRITE));
1001}
1002
1003static int
1004ums_fifo_ioctl(struct usb_fifo *fifo, u_long cmd, void *addr, int fflags)
1005{
1006	struct ums_softc *sc = usb_fifo_softc(fifo);
1007	mousemode_t mode;
1008	int error = 0;
1009
1010	DPRINTFN(2, "\n");
1011
1012	mtx_lock(&sc->sc_mtx);
1013
1014	switch (cmd) {
1015	case MOUSE_GETHWINFO:
1016		*(mousehw_t *)addr = sc->sc_hw;
1017		break;
1018
1019	case MOUSE_GETMODE:
1020		*(mousemode_t *)addr = sc->sc_mode;
1021		break;
1022
1023	case MOUSE_SETMODE:
1024		mode = *(mousemode_t *)addr;
1025
1026		if (mode.level == -1) {
1027			/* don't change the current setting */
1028		} else if ((mode.level < 0) || (mode.level > 1)) {
1029			error = EINVAL;
1030			break;
1031		} else {
1032			sc->sc_mode.level = mode.level;
1033		}
1034
1035		/* store polling rate */
1036		sc->sc_pollrate = mode.rate;
1037
1038		if (sc->sc_mode.level == 0) {
1039			if (sc->sc_buttons > MOUSE_MSC_MAXBUTTON)
1040				sc->sc_hw.buttons = MOUSE_MSC_MAXBUTTON;
1041			else
1042				sc->sc_hw.buttons = sc->sc_buttons;
1043			sc->sc_mode.protocol = MOUSE_PROTO_MSC;
1044			sc->sc_mode.packetsize = MOUSE_MSC_PACKETSIZE;
1045			sc->sc_mode.syncmask[0] = MOUSE_MSC_SYNCMASK;
1046			sc->sc_mode.syncmask[1] = MOUSE_MSC_SYNC;
1047		} else if (sc->sc_mode.level == 1) {
1048			if (sc->sc_buttons > MOUSE_SYS_MAXBUTTON)
1049				sc->sc_hw.buttons = MOUSE_SYS_MAXBUTTON;
1050			else
1051				sc->sc_hw.buttons = sc->sc_buttons;
1052			sc->sc_mode.protocol = MOUSE_PROTO_SYSMOUSE;
1053			sc->sc_mode.packetsize = MOUSE_SYS_PACKETSIZE;
1054			sc->sc_mode.syncmask[0] = MOUSE_SYS_SYNCMASK;
1055			sc->sc_mode.syncmask[1] = MOUSE_SYS_SYNC;
1056		}
1057		ums_reset_buf(sc);
1058		break;
1059
1060	case MOUSE_GETLEVEL:
1061		*(int *)addr = sc->sc_mode.level;
1062		break;
1063
1064	case MOUSE_SETLEVEL:
1065		if (*(int *)addr < 0 || *(int *)addr > 1) {
1066			error = EINVAL;
1067			break;
1068		}
1069		sc->sc_mode.level = *(int *)addr;
1070
1071		if (sc->sc_mode.level == 0) {
1072			if (sc->sc_buttons > MOUSE_MSC_MAXBUTTON)
1073				sc->sc_hw.buttons = MOUSE_MSC_MAXBUTTON;
1074			else
1075				sc->sc_hw.buttons = sc->sc_buttons;
1076			sc->sc_mode.protocol = MOUSE_PROTO_MSC;
1077			sc->sc_mode.packetsize = MOUSE_MSC_PACKETSIZE;
1078			sc->sc_mode.syncmask[0] = MOUSE_MSC_SYNCMASK;
1079			sc->sc_mode.syncmask[1] = MOUSE_MSC_SYNC;
1080		} else if (sc->sc_mode.level == 1) {
1081			if (sc->sc_buttons > MOUSE_SYS_MAXBUTTON)
1082				sc->sc_hw.buttons = MOUSE_SYS_MAXBUTTON;
1083			else
1084				sc->sc_hw.buttons = sc->sc_buttons;
1085			sc->sc_mode.protocol = MOUSE_PROTO_SYSMOUSE;
1086			sc->sc_mode.packetsize = MOUSE_SYS_PACKETSIZE;
1087			sc->sc_mode.syncmask[0] = MOUSE_SYS_SYNCMASK;
1088			sc->sc_mode.syncmask[1] = MOUSE_SYS_SYNC;
1089		}
1090		ums_reset_buf(sc);
1091		break;
1092
1093	case MOUSE_GETSTATUS:{
1094			mousestatus_t *status = (mousestatus_t *)addr;
1095
1096			*status = sc->sc_status;
1097			sc->sc_status.obutton = sc->sc_status.button;
1098			sc->sc_status.button = 0;
1099			sc->sc_status.dx = 0;
1100			sc->sc_status.dy = 0;
1101			sc->sc_status.dz = 0;
1102			/* sc->sc_status.dt = 0; */
1103
1104			if (status->dx || status->dy || status->dz /* || status->dt */ ) {
1105				status->flags |= MOUSE_POSCHANGED;
1106			}
1107			if (status->button != status->obutton) {
1108				status->flags |= MOUSE_BUTTONSCHANGED;
1109			}
1110			break;
1111		}
1112	default:
1113		error = ENOTTY;
1114		break;
1115	}
1116
1117	mtx_unlock(&sc->sc_mtx);
1118	return (error);
1119}
1120
1121static int
1122ums_sysctl_handler_parseinfo(SYSCTL_HANDLER_ARGS)
1123{
1124	struct ums_softc *sc = arg1;
1125	struct ums_info *info;
1126	struct sbuf *sb;
1127	int i, j, err, had_output;
1128
1129	sb = sbuf_new_auto();
1130	for (i = 0, had_output = 0; i < UMS_INFO_MAX; i++) {
1131		info = &sc->sc_info[i];
1132
1133		/* Don't emit empty info */
1134		if ((info->sc_flags &
1135		    (UMS_FLAG_X_AXIS | UMS_FLAG_Y_AXIS | UMS_FLAG_Z_AXIS |
1136		     UMS_FLAG_T_AXIS | UMS_FLAG_W_AXIS)) == 0 &&
1137		    info->sc_buttons == 0)
1138			continue;
1139
1140		if (had_output)
1141			sbuf_printf(sb, "\n");
1142		had_output = 1;
1143		sbuf_printf(sb, "i%d:", i + 1);
1144		if (info->sc_flags & UMS_FLAG_X_AXIS)
1145			sbuf_printf(sb, " X:r%d, p%d, s%d;",
1146			    (int)info->sc_iid_x,
1147			    (int)info->sc_loc_x.pos,
1148			    (int)info->sc_loc_x.size);
1149		if (info->sc_flags & UMS_FLAG_Y_AXIS)
1150			sbuf_printf(sb, " Y:r%d, p%d, s%d;",
1151			    (int)info->sc_iid_y,
1152			    (int)info->sc_loc_y.pos,
1153			    (int)info->sc_loc_y.size);
1154		if (info->sc_flags & UMS_FLAG_Z_AXIS)
1155			sbuf_printf(sb, " Z:r%d, p%d, s%d;",
1156			    (int)info->sc_iid_z,
1157			    (int)info->sc_loc_z.pos,
1158			    (int)info->sc_loc_z.size);
1159		if (info->sc_flags & UMS_FLAG_T_AXIS)
1160			sbuf_printf(sb, " T:r%d, p%d, s%d;",
1161			    (int)info->sc_iid_t,
1162			    (int)info->sc_loc_t.pos,
1163			    (int)info->sc_loc_t.size);
1164		if (info->sc_flags & UMS_FLAG_W_AXIS)
1165			sbuf_printf(sb, " W:r%d, p%d, s%d;",
1166			    (int)info->sc_iid_w,
1167			    (int)info->sc_loc_w.pos,
1168			    (int)info->sc_loc_w.size);
1169
1170		for (j = 0; j < info->sc_buttons; j++) {
1171			sbuf_printf(sb, " B%d:r%d, p%d, s%d;", j + 1,
1172			    (int)info->sc_iid_btn[j],
1173			    (int)info->sc_loc_btn[j].pos,
1174			    (int)info->sc_loc_btn[j].size);
1175		}
1176	}
1177	sbuf_finish(sb);
1178	err = SYSCTL_OUT(req, sbuf_data(sb), sbuf_len(sb) + 1);
1179	sbuf_delete(sb);
1180
1181	return (err);
1182}
1183
1184static devclass_t ums_devclass;
1185
1186static device_method_t ums_methods[] = {
1187	DEVMETHOD(device_probe, ums_probe),
1188	DEVMETHOD(device_attach, ums_attach),
1189	DEVMETHOD(device_detach, ums_detach),
1190
1191	DEVMETHOD_END
1192};
1193
1194static driver_t ums_driver = {
1195	.name = "ums",
1196	.methods = ums_methods,
1197	.size = sizeof(struct ums_softc),
1198};
1199
1200DRIVER_MODULE(ums, uhub, ums_driver, ums_devclass, NULL, 0);
1201MODULE_DEPEND(ums, usb, 1, 1, 1);
1202#ifdef EVDEV_SUPPORT
1203MODULE_DEPEND(ums, evdev, 1, 1, 1);
1204#endif
1205MODULE_VERSION(ums, 1);
1206USB_PNP_HOST_INFO(ums_devs);
1207