umidi.c revision 1.65.12.1 1 1.65.12.1 martin /* $NetBSD: umidi.c,v 1.65.12.1 2015/01/11 14:13:25 martin Exp $ */
2 1.65.12.1 martin
3 1.1 tshiozak /*
4 1.65.12.1 martin * Copyright (c) 2001, 2012, 2014 The NetBSD Foundation, Inc.
5 1.1 tshiozak * All rights reserved.
6 1.1 tshiozak *
7 1.1 tshiozak * This code is derived from software contributed to The NetBSD Foundation
8 1.61 mrg * by Takuya SHIOZAKI (tshiozak (at) NetBSD.org), (full-size transfers, extended
9 1.61 mrg * hw_if) Chapman Flack (chap (at) NetBSD.org), and Matthew R. Green
10 1.61 mrg * (mrg (at) eterna.com.au).
11 1.1 tshiozak *
12 1.1 tshiozak * Redistribution and use in source and binary forms, with or without
13 1.1 tshiozak * modification, are permitted provided that the following conditions
14 1.1 tshiozak * are met:
15 1.1 tshiozak * 1. Redistributions of source code must retain the above copyright
16 1.1 tshiozak * notice, this list of conditions and the following disclaimer.
17 1.1 tshiozak * 2. Redistributions in binary form must reproduce the above copyright
18 1.1 tshiozak * notice, this list of conditions and the following disclaimer in the
19 1.1 tshiozak * documentation and/or other materials provided with the distribution.
20 1.1 tshiozak *
21 1.1 tshiozak * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
22 1.1 tshiozak * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
23 1.1 tshiozak * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
24 1.1 tshiozak * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
25 1.1 tshiozak * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
26 1.1 tshiozak * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
27 1.1 tshiozak * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
28 1.1 tshiozak * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
29 1.1 tshiozak * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
30 1.1 tshiozak * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
31 1.1 tshiozak * POSSIBILITY OF SUCH DAMAGE.
32 1.1 tshiozak */
33 1.10 lukem
34 1.10 lukem #include <sys/cdefs.h>
35 1.65.12.1 martin __KERNEL_RCSID(0, "$NetBSD: umidi.c,v 1.65.12.1 2015/01/11 14:13:25 martin Exp $");
36 1.1 tshiozak
37 1.26 chap #include <sys/types.h>
38 1.1 tshiozak #include <sys/param.h>
39 1.1 tshiozak #include <sys/systm.h>
40 1.1 tshiozak #include <sys/kernel.h>
41 1.52 mrg #include <sys/kmem.h>
42 1.1 tshiozak #include <sys/device.h>
43 1.1 tshiozak #include <sys/ioctl.h>
44 1.1 tshiozak #include <sys/conf.h>
45 1.1 tshiozak #include <sys/file.h>
46 1.1 tshiozak #include <sys/select.h>
47 1.1 tshiozak #include <sys/proc.h>
48 1.1 tshiozak #include <sys/vnode.h>
49 1.1 tshiozak #include <sys/poll.h>
50 1.32 ad #include <sys/intr.h>
51 1.26 chap
52 1.1 tshiozak #include <dev/usb/usb.h>
53 1.1 tshiozak #include <dev/usb/usbdi.h>
54 1.1 tshiozak #include <dev/usb/usbdi_util.h>
55 1.1 tshiozak
56 1.62 jdc #include <dev/auconv.h>
57 1.1 tshiozak #include <dev/usb/usbdevs.h>
58 1.1 tshiozak #include <dev/usb/umidi_quirks.h>
59 1.1 tshiozak #include <dev/midi_if.h>
60 1.1 tshiozak
61 1.65.12.1 martin /* Jack Descriptor */
62 1.65.12.1 martin #define UMIDI_MS_HEADER 0x01
63 1.65.12.1 martin #define UMIDI_IN_JACK 0x02
64 1.65.12.1 martin #define UMIDI_OUT_JACK 0x03
65 1.65.12.1 martin
66 1.65.12.1 martin /* Jack Type */
67 1.65.12.1 martin #define UMIDI_EMBEDDED 0x01
68 1.65.12.1 martin #define UMIDI_EXTERNAL 0x02
69 1.65.12.1 martin
70 1.65.12.1 martin /* generic, for iteration */
71 1.65.12.1 martin typedef struct {
72 1.65.12.1 martin uByte bLength;
73 1.65.12.1 martin uByte bDescriptorType;
74 1.65.12.1 martin uByte bDescriptorSubtype;
75 1.65.12.1 martin } UPACKED umidi_cs_descriptor_t;
76 1.65.12.1 martin
77 1.65.12.1 martin typedef struct {
78 1.65.12.1 martin uByte bLength;
79 1.65.12.1 martin uByte bDescriptorType;
80 1.65.12.1 martin uByte bDescriptorSubtype;
81 1.65.12.1 martin uWord bcdMSC;
82 1.65.12.1 martin uWord wTotalLength;
83 1.65.12.1 martin } UPACKED umidi_cs_interface_descriptor_t;
84 1.65.12.1 martin #define UMIDI_CS_INTERFACE_DESCRIPTOR_SIZE 7
85 1.65.12.1 martin
86 1.65.12.1 martin typedef struct {
87 1.65.12.1 martin uByte bLength;
88 1.65.12.1 martin uByte bDescriptorType;
89 1.65.12.1 martin uByte bDescriptorSubtype;
90 1.65.12.1 martin uByte bNumEmbMIDIJack;
91 1.65.12.1 martin } UPACKED umidi_cs_endpoint_descriptor_t;
92 1.65.12.1 martin #define UMIDI_CS_ENDPOINT_DESCRIPTOR_SIZE 4
93 1.65.12.1 martin
94 1.65.12.1 martin typedef struct {
95 1.65.12.1 martin uByte bLength;
96 1.65.12.1 martin uByte bDescriptorType;
97 1.65.12.1 martin uByte bDescriptorSubtype;
98 1.65.12.1 martin uByte bJackType;
99 1.65.12.1 martin uByte bJackID;
100 1.65.12.1 martin } UPACKED umidi_jack_descriptor_t;
101 1.65.12.1 martin #define UMIDI_JACK_DESCRIPTOR_SIZE 5
102 1.65.12.1 martin
103 1.65.12.1 martin
104 1.65.12.1 martin #define TO_D(p) ((usb_descriptor_t *)(p))
105 1.65.12.1 martin #define NEXT_D(desc) TO_D((char *)(desc)+(desc)->bLength)
106 1.65.12.1 martin #define TO_IFD(desc) ((usb_interface_descriptor_t *)(desc))
107 1.65.12.1 martin #define TO_CSIFD(desc) ((umidi_cs_interface_descriptor_t *)(desc))
108 1.65.12.1 martin #define TO_EPD(desc) ((usb_endpoint_descriptor_t *)(desc))
109 1.65.12.1 martin #define TO_CSEPD(desc) ((umidi_cs_endpoint_descriptor_t *)(desc))
110 1.65.12.1 martin
111 1.65.12.1 martin
112 1.65.12.1 martin #define UMIDI_PACKET_SIZE 4
113 1.65.12.1 martin
114 1.65.12.1 martin /*
115 1.65.12.1 martin * hierarchie
116 1.65.12.1 martin *
117 1.65.12.1 martin * <-- parent child -->
118 1.65.12.1 martin *
119 1.65.12.1 martin * umidi(sc) -> endpoint -> jack <- (dynamically assignable) - mididev
120 1.65.12.1 martin * ^ | ^ |
121 1.65.12.1 martin * +-----+ +-----+
122 1.65.12.1 martin */
123 1.65.12.1 martin
124 1.65.12.1 martin /* midi device */
125 1.65.12.1 martin struct umidi_mididev {
126 1.65.12.1 martin struct umidi_softc *sc;
127 1.65.12.1 martin device_t mdev;
128 1.65.12.1 martin /* */
129 1.65.12.1 martin struct umidi_jack *in_jack;
130 1.65.12.1 martin struct umidi_jack *out_jack;
131 1.65.12.1 martin char *label;
132 1.65.12.1 martin size_t label_len;
133 1.65.12.1 martin /* */
134 1.65.12.1 martin int opened;
135 1.65.12.1 martin int closing;
136 1.65.12.1 martin int flags;
137 1.65.12.1 martin };
138 1.65.12.1 martin
139 1.65.12.1 martin /* Jack Information */
140 1.65.12.1 martin struct umidi_jack {
141 1.65.12.1 martin struct umidi_endpoint *endpoint;
142 1.65.12.1 martin /* */
143 1.65.12.1 martin int cable_number;
144 1.65.12.1 martin void *arg;
145 1.65.12.1 martin int bound;
146 1.65.12.1 martin int opened;
147 1.65.12.1 martin unsigned char *midiman_ppkt;
148 1.65.12.1 martin union {
149 1.65.12.1 martin struct {
150 1.65.12.1 martin void (*intr)(void *);
151 1.65.12.1 martin } out;
152 1.65.12.1 martin struct {
153 1.65.12.1 martin void (*intr)(void *, int);
154 1.65.12.1 martin } in;
155 1.65.12.1 martin } u;
156 1.65.12.1 martin };
157 1.65.12.1 martin
158 1.65.12.1 martin #define UMIDI_MAX_EPJACKS 16
159 1.65.12.1 martin typedef unsigned char (*umidi_packet_bufp)[UMIDI_PACKET_SIZE];
160 1.65.12.1 martin /* endpoint data */
161 1.65.12.1 martin struct umidi_endpoint {
162 1.65.12.1 martin struct umidi_softc *sc;
163 1.65.12.1 martin /* */
164 1.65.12.1 martin int addr;
165 1.65.12.1 martin usbd_pipe_handle pipe;
166 1.65.12.1 martin usbd_xfer_handle xfer;
167 1.65.12.1 martin umidi_packet_bufp buffer;
168 1.65.12.1 martin umidi_packet_bufp next_slot;
169 1.65.12.1 martin u_int32_t buffer_size;
170 1.65.12.1 martin int num_scheduled;
171 1.65.12.1 martin int num_open;
172 1.65.12.1 martin int num_jacks;
173 1.65.12.1 martin int soliciting;
174 1.65.12.1 martin void *solicit_cookie;
175 1.65.12.1 martin int armed;
176 1.65.12.1 martin struct umidi_jack *jacks[UMIDI_MAX_EPJACKS];
177 1.65.12.1 martin u_int16_t this_schedule; /* see UMIDI_MAX_EPJACKS */
178 1.65.12.1 martin u_int16_t next_schedule;
179 1.65.12.1 martin };
180 1.65.12.1 martin
181 1.65.12.1 martin /* software context */
182 1.65.12.1 martin struct umidi_softc {
183 1.65.12.1 martin device_t sc_dev;
184 1.65.12.1 martin usbd_device_handle sc_udev;
185 1.65.12.1 martin usbd_interface_handle sc_iface;
186 1.65.12.1 martin const struct umidi_quirk *sc_quirk;
187 1.65.12.1 martin
188 1.65.12.1 martin int sc_dying;
189 1.65.12.1 martin
190 1.65.12.1 martin int sc_out_num_jacks;
191 1.65.12.1 martin struct umidi_jack *sc_out_jacks;
192 1.65.12.1 martin int sc_in_num_jacks;
193 1.65.12.1 martin struct umidi_jack *sc_in_jacks;
194 1.65.12.1 martin struct umidi_jack *sc_jacks;
195 1.65.12.1 martin
196 1.65.12.1 martin int sc_num_mididevs;
197 1.65.12.1 martin struct umidi_mididev *sc_mididevs;
198 1.65.12.1 martin
199 1.65.12.1 martin int sc_out_num_endpoints;
200 1.65.12.1 martin struct umidi_endpoint *sc_out_ep;
201 1.65.12.1 martin int sc_in_num_endpoints;
202 1.65.12.1 martin struct umidi_endpoint *sc_in_ep;
203 1.65.12.1 martin struct umidi_endpoint *sc_endpoints;
204 1.65.12.1 martin size_t sc_endpoints_len;
205 1.65.12.1 martin int cblnums_global;
206 1.65.12.1 martin
207 1.65.12.1 martin kmutex_t sc_lock;
208 1.65.12.1 martin kcondvar_t sc_cv;
209 1.65.12.1 martin kcondvar_t sc_detach_cv;
210 1.65.12.1 martin
211 1.65.12.1 martin int sc_refcnt;
212 1.65.12.1 martin };
213 1.65.12.1 martin
214 1.1 tshiozak #ifdef UMIDI_DEBUG
215 1.1 tshiozak #define DPRINTF(x) if (umididebug) printf x
216 1.1 tshiozak #define DPRINTFN(n,x) if (umididebug >= (n)) printf x
217 1.26 chap #include <sys/time.h>
218 1.26 chap static struct timeval umidi_tv;
219 1.1 tshiozak int umididebug = 0;
220 1.1 tshiozak #else
221 1.1 tshiozak #define DPRINTF(x)
222 1.1 tshiozak #define DPRINTFN(n,x)
223 1.1 tshiozak #endif
224 1.1 tshiozak
225 1.52 mrg #define UMIDI_ENDPOINT_SIZE(sc) (sizeof(*(sc)->sc_out_ep) * \
226 1.52 mrg (sc->sc_out_num_endpoints + \
227 1.52 mrg sc->sc_in_num_endpoints))
228 1.52 mrg
229 1.1 tshiozak
230 1.1 tshiozak static int umidi_open(void *, int,
231 1.1 tshiozak void (*)(void *, int), void (*)(void *), void *);
232 1.1 tshiozak static void umidi_close(void *);
233 1.26 chap static int umidi_channelmsg(void *, int, int, u_char *, int);
234 1.26 chap static int umidi_commonmsg(void *, int, u_char *, int);
235 1.26 chap static int umidi_sysex(void *, u_char *, int);
236 1.26 chap static int umidi_rtmsg(void *, int);
237 1.1 tshiozak static void umidi_getinfo(void *, struct midi_info *);
238 1.45 jmcneill static void umidi_get_locks(void *, kmutex_t **, kmutex_t **);
239 1.1 tshiozak
240 1.3 tshiozak static usbd_status alloc_pipe(struct umidi_endpoint *);
241 1.3 tshiozak static void free_pipe(struct umidi_endpoint *);
242 1.1 tshiozak
243 1.1 tshiozak static usbd_status alloc_all_endpoints(struct umidi_softc *);
244 1.1 tshiozak static void free_all_endpoints(struct umidi_softc *);
245 1.1 tshiozak
246 1.1 tshiozak static usbd_status alloc_all_jacks(struct umidi_softc *);
247 1.1 tshiozak static void free_all_jacks(struct umidi_softc *);
248 1.1 tshiozak static usbd_status bind_jacks_to_mididev(struct umidi_softc *,
249 1.1 tshiozak struct umidi_jack *,
250 1.1 tshiozak struct umidi_jack *,
251 1.1 tshiozak struct umidi_mididev *);
252 1.4 tshiozak static void unbind_jacks_from_mididev(struct umidi_mididev *);
253 1.4 tshiozak static void unbind_all_jacks(struct umidi_softc *);
254 1.1 tshiozak static usbd_status assign_all_jacks_automatically(struct umidi_softc *);
255 1.4 tshiozak static usbd_status open_out_jack(struct umidi_jack *, void *,
256 1.4 tshiozak void (*)(void *));
257 1.4 tshiozak static usbd_status open_in_jack(struct umidi_jack *, void *,
258 1.4 tshiozak void (*)(void *, int));
259 1.4 tshiozak static void close_out_jack(struct umidi_jack *);
260 1.4 tshiozak static void close_in_jack(struct umidi_jack *);
261 1.1 tshiozak
262 1.26 chap static usbd_status attach_mididev(struct umidi_softc *, struct umidi_mididev *);
263 1.1 tshiozak static usbd_status detach_mididev(struct umidi_mididev *, int);
264 1.40 dyoung static void deactivate_mididev(struct umidi_mididev *);
265 1.1 tshiozak static usbd_status alloc_all_mididevs(struct umidi_softc *, int);
266 1.1 tshiozak static void free_all_mididevs(struct umidi_softc *);
267 1.1 tshiozak static usbd_status attach_all_mididevs(struct umidi_softc *);
268 1.1 tshiozak static usbd_status detach_all_mididevs(struct umidi_softc *, int);
269 1.40 dyoung static void deactivate_all_mididevs(struct umidi_softc *);
270 1.52 mrg static void describe_mididev(struct umidi_mididev *);
271 1.1 tshiozak
272 1.1 tshiozak #ifdef UMIDI_DEBUG
273 1.1 tshiozak static void dump_sc(struct umidi_softc *);
274 1.1 tshiozak static void dump_ep(struct umidi_endpoint *);
275 1.1 tshiozak static void dump_jack(struct umidi_jack *);
276 1.1 tshiozak #endif
277 1.1 tshiozak
278 1.1 tshiozak static usbd_status start_input_transfer(struct umidi_endpoint *);
279 1.1 tshiozak static usbd_status start_output_transfer(struct umidi_endpoint *);
280 1.26 chap static int out_jack_output(struct umidi_jack *, u_char *, int, int);
281 1.1 tshiozak static void in_intr(usbd_xfer_handle, usbd_private_handle, usbd_status);
282 1.1 tshiozak static void out_intr(usbd_xfer_handle, usbd_private_handle, usbd_status);
283 1.26 chap static void out_solicit(void *); /* struct umidi_endpoint* for softintr */
284 1.47 mrg static void out_solicit_locked(void *); /* pre-locked version */
285 1.1 tshiozak
286 1.1 tshiozak
287 1.22 yamt const struct midi_hw_if umidi_hw_if = {
288 1.45 jmcneill .open = umidi_open,
289 1.45 jmcneill .close = umidi_close,
290 1.45 jmcneill .output = umidi_rtmsg,
291 1.45 jmcneill .getinfo = umidi_getinfo,
292 1.45 jmcneill .get_locks = umidi_get_locks,
293 1.1 tshiozak };
294 1.1 tshiozak
295 1.26 chap struct midi_hw_if_ext umidi_hw_if_ext = {
296 1.26 chap .channel = umidi_channelmsg,
297 1.26 chap .common = umidi_commonmsg,
298 1.26 chap .sysex = umidi_sysex,
299 1.26 chap };
300 1.26 chap
301 1.26 chap struct midi_hw_if_ext umidi_hw_if_mm = {
302 1.26 chap .channel = umidi_channelmsg,
303 1.26 chap .common = umidi_commonmsg,
304 1.26 chap .sysex = umidi_sysex,
305 1.26 chap .compress = 1,
306 1.26 chap };
307 1.26 chap
308 1.37 cube int umidi_match(device_t, cfdata_t, void *);
309 1.34 dyoung void umidi_attach(device_t, device_t, void *);
310 1.34 dyoung void umidi_childdet(device_t, device_t);
311 1.34 dyoung int umidi_detach(device_t, int);
312 1.34 dyoung int umidi_activate(device_t, enum devact);
313 1.34 dyoung extern struct cfdriver umidi_cd;
314 1.37 cube CFATTACH_DECL2_NEW(umidi, sizeof(struct umidi_softc), umidi_match,
315 1.34 dyoung umidi_attach, umidi_detach, umidi_activate, NULL, umidi_childdet);
316 1.1 tshiozak
317 1.55 jakllsch int
318 1.42 dyoung umidi_match(device_t parent, cfdata_t match, void *aux)
319 1.1 tshiozak {
320 1.42 dyoung struct usbif_attach_arg *uaa = aux;
321 1.1 tshiozak
322 1.1 tshiozak DPRINTFN(1,("umidi_match\n"));
323 1.1 tshiozak
324 1.3 tshiozak if (umidi_search_quirk(uaa->vendor, uaa->product, uaa->ifaceno))
325 1.3 tshiozak return UMATCH_IFACECLASS_IFACESUBCLASS;
326 1.1 tshiozak
327 1.30 drochner if (uaa->class == UICLASS_AUDIO &&
328 1.30 drochner uaa->subclass == UISUBCLASS_MIDISTREAM)
329 1.3 tshiozak return UMATCH_IFACECLASS_IFACESUBCLASS;
330 1.1 tshiozak
331 1.3 tshiozak return UMATCH_NONE;
332 1.1 tshiozak }
333 1.1 tshiozak
334 1.55 jakllsch void
335 1.42 dyoung umidi_attach(device_t parent, device_t self, void *aux)
336 1.1 tshiozak {
337 1.42 dyoung usbd_status err;
338 1.42 dyoung struct umidi_softc *sc = device_private(self);
339 1.42 dyoung struct usbif_attach_arg *uaa = aux;
340 1.23 augustss char *devinfop;
341 1.1 tshiozak
342 1.1 tshiozak DPRINTFN(1,("umidi_attach\n"));
343 1.1 tshiozak
344 1.37 cube sc->sc_dev = self;
345 1.37 cube
346 1.44 jakllsch aprint_naive("\n");
347 1.44 jakllsch aprint_normal("\n");
348 1.44 jakllsch
349 1.23 augustss devinfop = usbd_devinfo_alloc(uaa->device, 0);
350 1.44 jakllsch aprint_normal_dev(self, "%s\n", devinfop);
351 1.23 augustss usbd_devinfo_free(devinfop);
352 1.1 tshiozak
353 1.1 tshiozak sc->sc_iface = uaa->iface;
354 1.1 tshiozak sc->sc_udev = uaa->device;
355 1.1 tshiozak
356 1.1 tshiozak sc->sc_quirk =
357 1.1 tshiozak umidi_search_quirk(uaa->vendor, uaa->product, uaa->ifaceno);
358 1.37 cube aprint_normal_dev(self, "");
359 1.1 tshiozak umidi_print_quirk(sc->sc_quirk);
360 1.1 tshiozak
361 1.47 mrg mutex_init(&sc->sc_lock, MUTEX_DEFAULT, IPL_USB);
362 1.47 mrg cv_init(&sc->sc_cv, "umidopcl");
363 1.65.12.1 martin cv_init(&sc->sc_detach_cv, "umidetcv");
364 1.65.12.1 martin sc->sc_refcnt = 0;
365 1.1 tshiozak
366 1.1 tshiozak err = alloc_all_endpoints(sc);
367 1.47 mrg if (err != USBD_NORMAL_COMPLETION) {
368 1.37 cube aprint_error_dev(self,
369 1.37 cube "alloc_all_endpoints failed. (err=%d)\n", err);
370 1.65.12.1 martin goto out;
371 1.1 tshiozak }
372 1.1 tshiozak err = alloc_all_jacks(sc);
373 1.47 mrg if (err != USBD_NORMAL_COMPLETION) {
374 1.37 cube aprint_error_dev(self, "alloc_all_jacks failed. (err=%d)\n",
375 1.37 cube err);
376 1.65.12.1 martin goto out_free_endpoints;
377 1.1 tshiozak }
378 1.37 cube aprint_normal_dev(self, "out=%d, in=%d\n",
379 1.1 tshiozak sc->sc_out_num_jacks, sc->sc_in_num_jacks);
380 1.1 tshiozak
381 1.1 tshiozak err = assign_all_jacks_automatically(sc);
382 1.47 mrg if (err != USBD_NORMAL_COMPLETION) {
383 1.37 cube aprint_error_dev(self,
384 1.37 cube "assign_all_jacks_automatically failed. (err=%d)\n", err);
385 1.65.12.1 martin goto out_free_jacks;
386 1.1 tshiozak }
387 1.1 tshiozak err = attach_all_mididevs(sc);
388 1.47 mrg if (err != USBD_NORMAL_COMPLETION) {
389 1.37 cube aprint_error_dev(self,
390 1.37 cube "attach_all_mididevs failed. (err=%d)\n", err);
391 1.65.12.1 martin goto out_free_jacks;
392 1.1 tshiozak }
393 1.1 tshiozak
394 1.1 tshiozak #ifdef UMIDI_DEBUG
395 1.1 tshiozak dump_sc(sc);
396 1.1 tshiozak #endif
397 1.1 tshiozak
398 1.1 tshiozak usbd_add_drv_event(USB_EVENT_DRIVER_ATTACH,
399 1.42 dyoung sc->sc_udev, sc->sc_dev);
400 1.16 augustss
401 1.42 dyoung return;
402 1.65.12.1 martin
403 1.65.12.1 martin out_free_jacks:
404 1.65.12.1 martin unbind_all_jacks(sc);
405 1.65.12.1 martin free_all_jacks(sc);
406 1.65.12.1 martin
407 1.65.12.1 martin out_free_endpoints:
408 1.65.12.1 martin free_all_endpoints(sc);
409 1.65.12.1 martin
410 1.65.12.1 martin out:
411 1.37 cube aprint_error_dev(self, "disabled.\n");
412 1.1 tshiozak sc->sc_dying = 1;
413 1.56 plunky KERNEL_UNLOCK_ONE(curlwp);
414 1.42 dyoung return;
415 1.1 tshiozak }
416 1.1 tshiozak
417 1.34 dyoung void
418 1.34 dyoung umidi_childdet(device_t self, device_t child)
419 1.34 dyoung {
420 1.34 dyoung int i;
421 1.34 dyoung struct umidi_softc *sc = device_private(self);
422 1.34 dyoung
423 1.34 dyoung KASSERT(sc->sc_mididevs != NULL);
424 1.34 dyoung
425 1.34 dyoung for (i = 0; i < sc->sc_num_mididevs; i++) {
426 1.34 dyoung if (sc->sc_mididevs[i].mdev == child)
427 1.34 dyoung break;
428 1.34 dyoung }
429 1.34 dyoung KASSERT(i < sc->sc_num_mididevs);
430 1.34 dyoung sc->sc_mididevs[i].mdev = NULL;
431 1.34 dyoung }
432 1.34 dyoung
433 1.1 tshiozak int
434 1.34 dyoung umidi_activate(device_t self, enum devact act)
435 1.1 tshiozak {
436 1.34 dyoung struct umidi_softc *sc = device_private(self);
437 1.1 tshiozak
438 1.1 tshiozak switch (act) {
439 1.1 tshiozak case DVACT_DEACTIVATE:
440 1.1 tshiozak DPRINTFN(1,("umidi_activate (deactivate)\n"));
441 1.1 tshiozak sc->sc_dying = 1;
442 1.1 tshiozak deactivate_all_mididevs(sc);
443 1.40 dyoung return 0;
444 1.40 dyoung default:
445 1.40 dyoung DPRINTFN(1,("umidi_activate (%d)\n", act));
446 1.40 dyoung return EOPNOTSUPP;
447 1.1 tshiozak }
448 1.1 tshiozak }
449 1.1 tshiozak
450 1.55 jakllsch int
451 1.42 dyoung umidi_detach(device_t self, int flags)
452 1.1 tshiozak {
453 1.42 dyoung struct umidi_softc *sc = device_private(self);
454 1.1 tshiozak
455 1.1 tshiozak DPRINTFN(1,("umidi_detach\n"));
456 1.1 tshiozak
457 1.65.12.1 martin mutex_enter(&sc->sc_lock);
458 1.1 tshiozak sc->sc_dying = 1;
459 1.65.12.1 martin if (--sc->sc_refcnt >= 0)
460 1.65.12.1 martin usb_detach_wait(sc->sc_dev, &sc->sc_detach_cv, &sc->sc_lock);
461 1.65.12.1 martin mutex_exit(&sc->sc_lock);
462 1.65.12.1 martin
463 1.1 tshiozak detach_all_mididevs(sc, flags);
464 1.1 tshiozak free_all_mididevs(sc);
465 1.1 tshiozak free_all_jacks(sc);
466 1.1 tshiozak free_all_endpoints(sc);
467 1.1 tshiozak
468 1.3 tshiozak usbd_add_drv_event(USB_EVENT_DRIVER_DETACH, sc->sc_udev,
469 1.42 dyoung sc->sc_dev);
470 1.1 tshiozak
471 1.45 jmcneill mutex_destroy(&sc->sc_lock);
472 1.65.12.1 martin cv_destroy(&sc->sc_detach_cv);
473 1.47 mrg cv_destroy(&sc->sc_cv);
474 1.45 jmcneill
475 1.1 tshiozak return 0;
476 1.1 tshiozak }
477 1.1 tshiozak
478 1.1 tshiozak
479 1.4 tshiozak /*
480 1.4 tshiozak * midi_if stuffs
481 1.4 tshiozak */
482 1.1 tshiozak int
483 1.1 tshiozak umidi_open(void *addr,
484 1.1 tshiozak int flags,
485 1.12 augustss void (*iintr)(void *, int),
486 1.12 augustss void (*ointr)(void *),
487 1.1 tshiozak void *arg)
488 1.1 tshiozak {
489 1.3 tshiozak struct umidi_mididev *mididev = addr;
490 1.3 tshiozak struct umidi_softc *sc = mididev->sc;
491 1.26 chap usbd_status err;
492 1.1 tshiozak
493 1.65.12.1 martin KASSERT(mutex_owned(&sc->sc_lock));
494 1.1 tshiozak DPRINTF(("umidi_open: sc=%p\n", sc));
495 1.1 tshiozak
496 1.1 tshiozak if (mididev->opened)
497 1.1 tshiozak return EBUSY;
498 1.4 tshiozak if (sc->sc_dying)
499 1.1 tshiozak return EIO;
500 1.1 tshiozak
501 1.4 tshiozak mididev->opened = 1;
502 1.1 tshiozak mididev->flags = flags;
503 1.26 chap if ((mididev->flags & FWRITE) && mididev->out_jack) {
504 1.26 chap err = open_out_jack(mididev->out_jack, arg, ointr);
505 1.65.12.1 martin if (err != USBD_NORMAL_COMPLETION)
506 1.26 chap goto bad;
507 1.26 chap }
508 1.3 tshiozak if ((mididev->flags & FREAD) && mididev->in_jack) {
509 1.26 chap err = open_in_jack(mididev->in_jack, arg, iintr);
510 1.65.12.1 martin KASSERT(mididev->opened);
511 1.65.12.1 martin if (err != USBD_NORMAL_COMPLETION &&
512 1.65.12.1 martin err != USBD_IN_PROGRESS) {
513 1.65.12.1 martin if (mididev->out_jack)
514 1.65.12.1 martin close_out_jack(mididev->out_jack);
515 1.26 chap goto bad;
516 1.65.12.1 martin }
517 1.3 tshiozak }
518 1.1 tshiozak
519 1.1 tshiozak return 0;
520 1.26 chap bad:
521 1.26 chap mididev->opened = 0;
522 1.26 chap DPRINTF(("umidi_open: usbd_status %d\n", err));
523 1.65.12.1 martin KASSERT(mutex_owned(&sc->sc_lock));
524 1.26 chap return USBD_IN_USE == err ? EBUSY : EIO;
525 1.1 tshiozak }
526 1.1 tshiozak
527 1.1 tshiozak void
528 1.1 tshiozak umidi_close(void *addr)
529 1.1 tshiozak {
530 1.3 tshiozak struct umidi_mididev *mididev = addr;
531 1.65.12.1 martin struct umidi_softc *sc = mididev->sc;
532 1.65.12.1 martin
533 1.65.12.1 martin KASSERT(mutex_owned(&sc->sc_lock));
534 1.65.12.1 martin
535 1.65.12.1 martin if (mididev->closing)
536 1.65.12.1 martin return;
537 1.1 tshiozak
538 1.59 mrg mididev->closing = 1;
539 1.59 mrg
540 1.65.12.1 martin sc->sc_refcnt++;
541 1.57 mrg
542 1.1 tshiozak if ((mididev->flags & FWRITE) && mididev->out_jack)
543 1.4 tshiozak close_out_jack(mididev->out_jack);
544 1.1 tshiozak if ((mididev->flags & FREAD) && mididev->in_jack)
545 1.4 tshiozak close_in_jack(mididev->in_jack);
546 1.57 mrg
547 1.65.12.1 martin if (--sc->sc_refcnt < 0)
548 1.65.12.1 martin usb_detach_broadcast(sc->sc_dev, &sc->sc_detach_cv);
549 1.59 mrg
550 1.59 mrg mididev->opened = 0;
551 1.65.12.1 martin mididev->closing = 0;
552 1.1 tshiozak }
553 1.1 tshiozak
554 1.1 tshiozak int
555 1.28 christos umidi_channelmsg(void *addr, int status, int channel, u_char *msg,
556 1.27 christos int len)
557 1.26 chap {
558 1.26 chap struct umidi_mididev *mididev = addr;
559 1.26 chap
560 1.65.12.1 martin KASSERT(mutex_owned(&mididev->sc->sc_lock));
561 1.65.12.1 martin
562 1.60 mrg if (!mididev->out_jack || !mididev->opened || mididev->closing)
563 1.26 chap return EIO;
564 1.55 jakllsch
565 1.26 chap return out_jack_output(mididev->out_jack, msg, len, (status>>4)&0xf);
566 1.26 chap }
567 1.26 chap
568 1.26 chap int
569 1.28 christos umidi_commonmsg(void *addr, int status, u_char *msg, int len)
570 1.1 tshiozak {
571 1.3 tshiozak struct umidi_mididev *mididev = addr;
572 1.26 chap int cin;
573 1.1 tshiozak
574 1.65.12.1 martin KASSERT(mutex_owned(&mididev->sc->sc_lock));
575 1.65.12.1 martin
576 1.60 mrg if (!mididev->out_jack || !mididev->opened || mididev->closing)
577 1.1 tshiozak return EIO;
578 1.1 tshiozak
579 1.26 chap switch ( len ) {
580 1.26 chap case 1: cin = 5; break;
581 1.26 chap case 2: cin = 2; break;
582 1.26 chap case 3: cin = 3; break;
583 1.26 chap default: return EIO; /* or gcc warns of cin uninitialized */
584 1.26 chap }
585 1.55 jakllsch
586 1.26 chap return out_jack_output(mididev->out_jack, msg, len, cin);
587 1.26 chap }
588 1.26 chap
589 1.26 chap int
590 1.26 chap umidi_sysex(void *addr, u_char *msg, int len)
591 1.26 chap {
592 1.26 chap struct umidi_mididev *mididev = addr;
593 1.26 chap int cin;
594 1.26 chap
595 1.65.12.1 martin KASSERT(mutex_owned(&mididev->sc->sc_lock));
596 1.65.12.1 martin
597 1.60 mrg if (!mididev->out_jack || !mididev->opened || mididev->closing)
598 1.26 chap return EIO;
599 1.26 chap
600 1.26 chap switch ( len ) {
601 1.26 chap case 1: cin = 5; break;
602 1.26 chap case 2: cin = 6; break;
603 1.26 chap case 3: cin = (msg[2] == 0xf7) ? 7 : 4; break;
604 1.26 chap default: return EIO; /* or gcc warns of cin uninitialized */
605 1.26 chap }
606 1.55 jakllsch
607 1.26 chap return out_jack_output(mididev->out_jack, msg, len, cin);
608 1.26 chap }
609 1.26 chap
610 1.26 chap int
611 1.26 chap umidi_rtmsg(void *addr, int d)
612 1.26 chap {
613 1.26 chap struct umidi_mididev *mididev = addr;
614 1.26 chap u_char msg = d;
615 1.26 chap
616 1.65.12.1 martin KASSERT(mutex_owned(&mididev->sc->sc_lock));
617 1.65.12.1 martin
618 1.60 mrg if (!mididev->out_jack || !mididev->opened || mididev->closing)
619 1.26 chap return EIO;
620 1.26 chap
621 1.26 chap return out_jack_output(mididev->out_jack, &msg, 1, 0xf);
622 1.1 tshiozak }
623 1.1 tshiozak
624 1.1 tshiozak void
625 1.1 tshiozak umidi_getinfo(void *addr, struct midi_info *mi)
626 1.1 tshiozak {
627 1.3 tshiozak struct umidi_mididev *mididev = addr;
628 1.26 chap struct umidi_softc *sc = mididev->sc;
629 1.26 chap int mm = UMQ_ISTYPE(sc, UMQ_TYPE_MIDIMAN_GARBLE);
630 1.1 tshiozak
631 1.65.12.1 martin KASSERT(mutex_owned(&sc->sc_lock));
632 1.65.12.1 martin
633 1.26 chap mi->name = mididev->label;
634 1.3 tshiozak mi->props = MIDI_PROP_OUT_INTR;
635 1.1 tshiozak if (mididev->in_jack)
636 1.1 tshiozak mi->props |= MIDI_PROP_CAN_INPUT;
637 1.26 chap midi_register_hw_if_ext(mm? &umidi_hw_if_mm : &umidi_hw_if_ext);
638 1.1 tshiozak }
639 1.1 tshiozak
640 1.45 jmcneill static void
641 1.47 mrg umidi_get_locks(void *addr, kmutex_t **thread, kmutex_t **intr)
642 1.45 jmcneill {
643 1.45 jmcneill struct umidi_mididev *mididev = addr;
644 1.45 jmcneill struct umidi_softc *sc = mididev->sc;
645 1.45 jmcneill
646 1.47 mrg *intr = NULL;
647 1.45 jmcneill *thread = &sc->sc_lock;
648 1.45 jmcneill }
649 1.1 tshiozak
650 1.4 tshiozak /*
651 1.4 tshiozak * each endpoint stuffs
652 1.4 tshiozak */
653 1.1 tshiozak
654 1.3 tshiozak /* alloc/free pipe */
655 1.1 tshiozak static usbd_status
656 1.3 tshiozak alloc_pipe(struct umidi_endpoint *ep)
657 1.1 tshiozak {
658 1.1 tshiozak struct umidi_softc *sc = ep->sc;
659 1.1 tshiozak usbd_status err;
660 1.26 chap usb_endpoint_descriptor_t *epd;
661 1.55 jakllsch
662 1.26 chap epd = usbd_get_endpoint_descriptor(sc->sc_iface, ep->addr);
663 1.26 chap /*
664 1.26 chap * For output, an improvement would be to have a buffer bigger than
665 1.26 chap * wMaxPacketSize by num_jacks-1 additional packet slots; that would
666 1.26 chap * allow out_solicit to fill the buffer to the full packet size in
667 1.26 chap * all cases. But to use usbd_alloc_buffer to get a slightly larger
668 1.26 chap * buffer would not be a good way to do that, because if the addition
669 1.26 chap * would make the buffer exceed USB_MEM_SMALL then a substantially
670 1.26 chap * larger block may be wastefully allocated. Some flavor of double
671 1.26 chap * buffering could serve the same purpose, but would increase the
672 1.26 chap * code complexity, so for now I will live with the current slight
673 1.26 chap * penalty of reducing max transfer size by (num_open-num_scheduled)
674 1.26 chap * packet slots.
675 1.26 chap */
676 1.26 chap ep->buffer_size = UGETW(epd->wMaxPacketSize);
677 1.26 chap ep->buffer_size -= ep->buffer_size % UMIDI_PACKET_SIZE;
678 1.26 chap
679 1.26 chap DPRINTF(("%s: alloc_pipe %p, buffer size %u\n",
680 1.42 dyoung device_xname(sc->sc_dev), ep, ep->buffer_size));
681 1.26 chap ep->num_scheduled = 0;
682 1.26 chap ep->this_schedule = 0;
683 1.26 chap ep->next_schedule = 0;
684 1.26 chap ep->soliciting = 0;
685 1.26 chap ep->armed = 0;
686 1.3 tshiozak ep->xfer = usbd_alloc_xfer(sc->sc_udev);
687 1.11 augustss if (ep->xfer == NULL) {
688 1.3 tshiozak err = USBD_NOMEM;
689 1.3 tshiozak goto quit;
690 1.3 tshiozak }
691 1.26 chap ep->buffer = usbd_alloc_buffer(ep->xfer, ep->buffer_size);
692 1.11 augustss if (ep->buffer == NULL) {
693 1.3 tshiozak usbd_free_xfer(ep->xfer);
694 1.3 tshiozak err = USBD_NOMEM;
695 1.3 tshiozak goto quit;
696 1.3 tshiozak }
697 1.26 chap ep->next_slot = ep->buffer;
698 1.64 jmcneill err = usbd_open_pipe(sc->sc_iface, ep->addr, USBD_MPSAFE, &ep->pipe);
699 1.3 tshiozak if (err)
700 1.3 tshiozak usbd_free_xfer(ep->xfer);
701 1.65 jmcneill ep->solicit_cookie = softint_establish(SOFTINT_CLOCK | SOFTINT_MPSAFE, out_solicit, ep);
702 1.1 tshiozak quit:
703 1.1 tshiozak return err;
704 1.1 tshiozak }
705 1.1 tshiozak
706 1.1 tshiozak static void
707 1.3 tshiozak free_pipe(struct umidi_endpoint *ep)
708 1.1 tshiozak {
709 1.42 dyoung DPRINTF(("%s: free_pipe %p\n", device_xname(ep->sc->sc_dev), ep));
710 1.3 tshiozak usbd_abort_pipe(ep->pipe);
711 1.3 tshiozak usbd_close_pipe(ep->pipe);
712 1.3 tshiozak usbd_free_xfer(ep->xfer);
713 1.32 ad softint_disestablish(ep->solicit_cookie);
714 1.1 tshiozak }
715 1.1 tshiozak
716 1.1 tshiozak
717 1.1 tshiozak /* alloc/free the array of endpoint structures */
718 1.1 tshiozak
719 1.1 tshiozak static usbd_status alloc_all_endpoints_fixed_ep(struct umidi_softc *);
720 1.1 tshiozak static usbd_status alloc_all_endpoints_yamaha(struct umidi_softc *);
721 1.1 tshiozak static usbd_status alloc_all_endpoints_genuine(struct umidi_softc *);
722 1.1 tshiozak
723 1.1 tshiozak static usbd_status
724 1.1 tshiozak alloc_all_endpoints(struct umidi_softc *sc)
725 1.1 tshiozak {
726 1.3 tshiozak usbd_status err;
727 1.3 tshiozak struct umidi_endpoint *ep;
728 1.3 tshiozak int i;
729 1.9 tshiozak
730 1.3 tshiozak if (UMQ_ISTYPE(sc, UMQ_TYPE_FIXED_EP)) {
731 1.3 tshiozak err = alloc_all_endpoints_fixed_ep(sc);
732 1.3 tshiozak } else if (UMQ_ISTYPE(sc, UMQ_TYPE_YAMAHA)) {
733 1.3 tshiozak err = alloc_all_endpoints_yamaha(sc);
734 1.1 tshiozak } else {
735 1.3 tshiozak err = alloc_all_endpoints_genuine(sc);
736 1.1 tshiozak }
737 1.46 mrg if (err != USBD_NORMAL_COMPLETION)
738 1.3 tshiozak return err;
739 1.3 tshiozak
740 1.3 tshiozak ep = sc->sc_endpoints;
741 1.52 mrg for (i = sc->sc_out_num_endpoints+sc->sc_in_num_endpoints; i > 0; i--) {
742 1.3 tshiozak err = alloc_pipe(ep++);
743 1.52 mrg if (err != USBD_NORMAL_COMPLETION) {
744 1.52 mrg for (; ep != sc->sc_endpoints; ep--)
745 1.3 tshiozak free_pipe(ep-1);
746 1.52 mrg kmem_free(sc->sc_endpoints, sc->sc_endpoints_len);
747 1.3 tshiozak sc->sc_endpoints = sc->sc_out_ep = sc->sc_in_ep = NULL;
748 1.3 tshiozak break;
749 1.3 tshiozak }
750 1.3 tshiozak }
751 1.3 tshiozak return err;
752 1.1 tshiozak }
753 1.1 tshiozak
754 1.1 tshiozak static void
755 1.1 tshiozak free_all_endpoints(struct umidi_softc *sc)
756 1.1 tshiozak {
757 1.3 tshiozak int i;
758 1.46 mrg
759 1.8 tshiozak for (i=0; i<sc->sc_in_num_endpoints+sc->sc_out_num_endpoints; i++)
760 1.46 mrg free_pipe(&sc->sc_endpoints[i]);
761 1.14 kent if (sc->sc_endpoints != NULL)
762 1.52 mrg kmem_free(sc->sc_endpoints, sc->sc_endpoints_len);
763 1.1 tshiozak sc->sc_endpoints = sc->sc_out_ep = sc->sc_in_ep = NULL;
764 1.1 tshiozak }
765 1.1 tshiozak
766 1.1 tshiozak static usbd_status
767 1.1 tshiozak alloc_all_endpoints_fixed_ep(struct umidi_softc *sc)
768 1.1 tshiozak {
769 1.3 tshiozak usbd_status err;
770 1.38 gmcgarry const struct umq_fixed_ep_desc *fp;
771 1.3 tshiozak struct umidi_endpoint *ep;
772 1.1 tshiozak usb_endpoint_descriptor_t *epd;
773 1.1 tshiozak int i;
774 1.1 tshiozak
775 1.1 tshiozak fp = umidi_get_quirk_data_from_type(sc->sc_quirk,
776 1.1 tshiozak UMQ_TYPE_FIXED_EP);
777 1.1 tshiozak sc->sc_out_num_jacks = 0;
778 1.1 tshiozak sc->sc_in_num_jacks = 0;
779 1.1 tshiozak sc->sc_out_num_endpoints = fp->num_out_ep;
780 1.1 tshiozak sc->sc_in_num_endpoints = fp->num_in_ep;
781 1.52 mrg sc->sc_endpoints_len = UMIDI_ENDPOINT_SIZE(sc);
782 1.52 mrg sc->sc_endpoints = kmem_zalloc(sc->sc_endpoints_len, KM_SLEEP);
783 1.52 mrg if (!sc->sc_endpoints)
784 1.1 tshiozak return USBD_NOMEM;
785 1.52 mrg
786 1.1 tshiozak sc->sc_out_ep = sc->sc_out_num_endpoints ? sc->sc_endpoints : NULL;
787 1.1 tshiozak sc->sc_in_ep =
788 1.1 tshiozak sc->sc_in_num_endpoints ?
789 1.1 tshiozak sc->sc_endpoints+sc->sc_out_num_endpoints : NULL;
790 1.3 tshiozak
791 1.3 tshiozak ep = &sc->sc_out_ep[0];
792 1.52 mrg for (i = 0; i < sc->sc_out_num_endpoints; i++) {
793 1.1 tshiozak epd = usbd_interface2endpoint_descriptor(
794 1.1 tshiozak sc->sc_iface,
795 1.1 tshiozak fp->out_ep[i].ep);
796 1.1 tshiozak if (!epd) {
797 1.37 cube aprint_error_dev(sc->sc_dev,
798 1.37 cube "cannot get endpoint descriptor(out:%d)\n",
799 1.37 cube fp->out_ep[i].ep);
800 1.3 tshiozak err = USBD_INVAL;
801 1.1 tshiozak goto error;
802 1.1 tshiozak }
803 1.1 tshiozak if (UE_GET_XFERTYPE(epd->bmAttributes)!=UE_BULK ||
804 1.1 tshiozak UE_GET_DIR(epd->bEndpointAddress)!=UE_DIR_OUT) {
805 1.37 cube aprint_error_dev(sc->sc_dev, "illegal endpoint(out:%d)\n",
806 1.37 cube fp->out_ep[i].ep);
807 1.3 tshiozak err = USBD_INVAL;
808 1.1 tshiozak goto error;
809 1.1 tshiozak }
810 1.3 tshiozak ep->sc = sc;
811 1.3 tshiozak ep->addr = epd->bEndpointAddress;
812 1.3 tshiozak ep->num_jacks = fp->out_ep[i].num_jacks;
813 1.1 tshiozak sc->sc_out_num_jacks += fp->out_ep[i].num_jacks;
814 1.3 tshiozak ep->num_open = 0;
815 1.3 tshiozak ep++;
816 1.1 tshiozak }
817 1.3 tshiozak ep = &sc->sc_in_ep[0];
818 1.52 mrg for (i = 0; i < sc->sc_in_num_endpoints; i++) {
819 1.1 tshiozak epd = usbd_interface2endpoint_descriptor(
820 1.1 tshiozak sc->sc_iface,
821 1.1 tshiozak fp->in_ep[i].ep);
822 1.1 tshiozak if (!epd) {
823 1.37 cube aprint_error_dev(sc->sc_dev,
824 1.37 cube "cannot get endpoint descriptor(in:%d)\n",
825 1.37 cube fp->in_ep[i].ep);
826 1.3 tshiozak err = USBD_INVAL;
827 1.1 tshiozak goto error;
828 1.1 tshiozak }
829 1.26 chap /*
830 1.26 chap * MIDISPORT_2X4 inputs on an interrupt rather than a bulk
831 1.26 chap * endpoint. The existing input logic in this driver seems
832 1.26 chap * to work successfully if we just stop treating an interrupt
833 1.26 chap * endpoint as illegal (or the in_progress status we get on
834 1.26 chap * the initial transfer). It does not seem necessary to
835 1.26 chap * actually use the interrupt flavor of alloc_pipe or make
836 1.26 chap * other serious rearrangements of logic. I like that.
837 1.26 chap */
838 1.26 chap switch ( UE_GET_XFERTYPE(epd->bmAttributes) ) {
839 1.26 chap case UE_BULK:
840 1.26 chap case UE_INTERRUPT:
841 1.65.12.1 martin if (UE_DIR_IN == UE_GET_DIR(epd->bEndpointAddress))
842 1.26 chap break;
843 1.26 chap /*FALLTHROUGH*/
844 1.26 chap default:
845 1.37 cube aprint_error_dev(sc->sc_dev,
846 1.37 cube "illegal endpoint(in:%d)\n", fp->in_ep[i].ep);
847 1.3 tshiozak err = USBD_INVAL;
848 1.1 tshiozak goto error;
849 1.1 tshiozak }
850 1.26 chap
851 1.3 tshiozak ep->sc = sc;
852 1.3 tshiozak ep->addr = epd->bEndpointAddress;
853 1.3 tshiozak ep->num_jacks = fp->in_ep[i].num_jacks;
854 1.1 tshiozak sc->sc_in_num_jacks += fp->in_ep[i].num_jacks;
855 1.3 tshiozak ep->num_open = 0;
856 1.3 tshiozak ep++;
857 1.1 tshiozak }
858 1.1 tshiozak
859 1.1 tshiozak return USBD_NORMAL_COMPLETION;
860 1.1 tshiozak error:
861 1.52 mrg kmem_free(sc->sc_endpoints, UMIDI_ENDPOINT_SIZE(sc));
862 1.1 tshiozak sc->sc_endpoints = NULL;
863 1.3 tshiozak return err;
864 1.1 tshiozak }
865 1.1 tshiozak
866 1.1 tshiozak static usbd_status
867 1.1 tshiozak alloc_all_endpoints_yamaha(struct umidi_softc *sc)
868 1.1 tshiozak {
869 1.1 tshiozak /* This driver currently supports max 1in/1out bulk endpoints */
870 1.1 tshiozak usb_descriptor_t *desc;
871 1.29 drochner umidi_cs_descriptor_t *udesc;
872 1.8 tshiozak usb_endpoint_descriptor_t *epd;
873 1.8 tshiozak int out_addr, in_addr, i;
874 1.8 tshiozak int dir;
875 1.1 tshiozak size_t remain, descsize;
876 1.1 tshiozak
877 1.8 tshiozak sc->sc_out_num_jacks = sc->sc_in_num_jacks = 0;
878 1.8 tshiozak out_addr = in_addr = 0;
879 1.8 tshiozak
880 1.8 tshiozak /* detect endpoints */
881 1.1 tshiozak desc = TO_D(usbd_get_interface_descriptor(sc->sc_iface));
882 1.8 tshiozak for (i=(int)TO_IFD(desc)->bNumEndpoints-1; i>=0; i--) {
883 1.8 tshiozak epd = usbd_interface2endpoint_descriptor(sc->sc_iface, i);
884 1.25 christos KASSERT(epd != NULL);
885 1.8 tshiozak if (UE_GET_XFERTYPE(epd->bmAttributes) == UE_BULK) {
886 1.8 tshiozak dir = UE_GET_DIR(epd->bEndpointAddress);
887 1.8 tshiozak if (dir==UE_DIR_OUT && !out_addr)
888 1.8 tshiozak out_addr = epd->bEndpointAddress;
889 1.8 tshiozak else if (dir==UE_DIR_IN && !in_addr)
890 1.8 tshiozak in_addr = epd->bEndpointAddress;
891 1.8 tshiozak }
892 1.8 tshiozak }
893 1.29 drochner udesc = (umidi_cs_descriptor_t *)NEXT_D(desc);
894 1.1 tshiozak
895 1.8 tshiozak /* count jacks */
896 1.29 drochner if (!(udesc->bDescriptorType==UDESC_CS_INTERFACE &&
897 1.29 drochner udesc->bDescriptorSubtype==UMIDI_MS_HEADER))
898 1.8 tshiozak return USBD_INVAL;
899 1.29 drochner remain = (size_t)UGETW(TO_CSIFD(udesc)->wTotalLength) -
900 1.29 drochner (size_t)udesc->bLength;
901 1.29 drochner udesc = (umidi_cs_descriptor_t *)NEXT_D(udesc);
902 1.1 tshiozak
903 1.52 mrg while (remain >= sizeof(usb_descriptor_t)) {
904 1.29 drochner descsize = udesc->bLength;
905 1.1 tshiozak if (descsize>remain || descsize==0)
906 1.1 tshiozak break;
907 1.52 mrg if (udesc->bDescriptorType == UDESC_CS_INTERFACE &&
908 1.52 mrg remain >= UMIDI_JACK_DESCRIPTOR_SIZE) {
909 1.52 mrg if (udesc->bDescriptorSubtype == UMIDI_OUT_JACK)
910 1.1 tshiozak sc->sc_out_num_jacks++;
911 1.52 mrg else if (udesc->bDescriptorSubtype == UMIDI_IN_JACK)
912 1.1 tshiozak sc->sc_in_num_jacks++;
913 1.1 tshiozak }
914 1.29 drochner udesc = (umidi_cs_descriptor_t *)NEXT_D(udesc);
915 1.52 mrg remain -= descsize;
916 1.1 tshiozak }
917 1.1 tshiozak
918 1.8 tshiozak /* validate some parameters */
919 1.1 tshiozak if (sc->sc_out_num_jacks>UMIDI_MAX_EPJACKS)
920 1.1 tshiozak sc->sc_out_num_jacks = UMIDI_MAX_EPJACKS;
921 1.1 tshiozak if (sc->sc_in_num_jacks>UMIDI_MAX_EPJACKS)
922 1.1 tshiozak sc->sc_in_num_jacks = UMIDI_MAX_EPJACKS;
923 1.8 tshiozak if (sc->sc_out_num_jacks && out_addr) {
924 1.1 tshiozak sc->sc_out_num_endpoints = 1;
925 1.1 tshiozak } else {
926 1.1 tshiozak sc->sc_out_num_endpoints = 0;
927 1.1 tshiozak sc->sc_out_num_jacks = 0;
928 1.1 tshiozak }
929 1.8 tshiozak if (sc->sc_in_num_jacks && in_addr) {
930 1.1 tshiozak sc->sc_in_num_endpoints = 1;
931 1.1 tshiozak } else {
932 1.1 tshiozak sc->sc_in_num_endpoints = 0;
933 1.1 tshiozak sc->sc_in_num_jacks = 0;
934 1.1 tshiozak }
935 1.52 mrg sc->sc_endpoints_len = UMIDI_ENDPOINT_SIZE(sc);
936 1.52 mrg sc->sc_endpoints = kmem_zalloc(sc->sc_endpoints_len, KM_SLEEP);
937 1.1 tshiozak if (!sc->sc_endpoints)
938 1.1 tshiozak return USBD_NOMEM;
939 1.1 tshiozak if (sc->sc_out_num_endpoints) {
940 1.1 tshiozak sc->sc_out_ep = sc->sc_endpoints;
941 1.1 tshiozak sc->sc_out_ep->sc = sc;
942 1.1 tshiozak sc->sc_out_ep->addr = out_addr;
943 1.1 tshiozak sc->sc_out_ep->num_jacks = sc->sc_out_num_jacks;
944 1.1 tshiozak sc->sc_out_ep->num_open = 0;
945 1.1 tshiozak } else
946 1.1 tshiozak sc->sc_out_ep = NULL;
947 1.1 tshiozak
948 1.1 tshiozak if (sc->sc_in_num_endpoints) {
949 1.1 tshiozak sc->sc_in_ep = sc->sc_endpoints+sc->sc_out_num_endpoints;
950 1.1 tshiozak sc->sc_in_ep->sc = sc;
951 1.1 tshiozak sc->sc_in_ep->addr = in_addr;
952 1.1 tshiozak sc->sc_in_ep->num_jacks = sc->sc_in_num_jacks;
953 1.1 tshiozak sc->sc_in_ep->num_open = 0;
954 1.1 tshiozak } else
955 1.1 tshiozak sc->sc_in_ep = NULL;
956 1.1 tshiozak
957 1.1 tshiozak return USBD_NORMAL_COMPLETION;
958 1.1 tshiozak }
959 1.1 tshiozak
960 1.1 tshiozak static usbd_status
961 1.1 tshiozak alloc_all_endpoints_genuine(struct umidi_softc *sc)
962 1.1 tshiozak {
963 1.20 gson usb_interface_descriptor_t *interface_desc;
964 1.20 gson usb_config_descriptor_t *config_desc;
965 1.1 tshiozak usb_descriptor_t *desc;
966 1.7 tshiozak int num_ep;
967 1.1 tshiozak size_t remain, descsize;
968 1.1 tshiozak struct umidi_endpoint *p, *q, *lowest, *endep, tmpep;
969 1.1 tshiozak int epaddr;
970 1.1 tshiozak
971 1.20 gson interface_desc = usbd_get_interface_descriptor(sc->sc_iface);
972 1.20 gson num_ep = interface_desc->bNumEndpoints;
973 1.52 mrg sc->sc_endpoints_len = sizeof(struct umidi_endpoint) * num_ep;
974 1.52 mrg sc->sc_endpoints = p = kmem_zalloc(sc->sc_endpoints_len, KM_SLEEP);
975 1.1 tshiozak if (!p)
976 1.1 tshiozak return USBD_NOMEM;
977 1.1 tshiozak
978 1.1 tshiozak sc->sc_out_num_jacks = sc->sc_in_num_jacks = 0;
979 1.1 tshiozak sc->sc_out_num_endpoints = sc->sc_in_num_endpoints = 0;
980 1.1 tshiozak epaddr = -1;
981 1.1 tshiozak
982 1.1 tshiozak /* get the list of endpoints for midi stream */
983 1.20 gson config_desc = usbd_get_config_descriptor(sc->sc_udev);
984 1.20 gson desc = (usb_descriptor_t *) config_desc;
985 1.20 gson remain = (size_t)UGETW(config_desc->wTotalLength);
986 1.1 tshiozak while (remain>=sizeof(usb_descriptor_t)) {
987 1.1 tshiozak descsize = desc->bLength;
988 1.1 tshiozak if (descsize>remain || descsize==0)
989 1.1 tshiozak break;
990 1.1 tshiozak if (desc->bDescriptorType==UDESC_ENDPOINT &&
991 1.1 tshiozak remain>=USB_ENDPOINT_DESCRIPTOR_SIZE &&
992 1.1 tshiozak UE_GET_XFERTYPE(TO_EPD(desc)->bmAttributes) == UE_BULK) {
993 1.1 tshiozak epaddr = TO_EPD(desc)->bEndpointAddress;
994 1.1 tshiozak } else if (desc->bDescriptorType==UDESC_CS_ENDPOINT &&
995 1.1 tshiozak remain>=UMIDI_CS_ENDPOINT_DESCRIPTOR_SIZE &&
996 1.1 tshiozak epaddr!=-1) {
997 1.1 tshiozak if (num_ep>0) {
998 1.9 tshiozak num_ep--;
999 1.1 tshiozak p->sc = sc;
1000 1.1 tshiozak p->addr = epaddr;
1001 1.1 tshiozak p->num_jacks = TO_CSEPD(desc)->bNumEmbMIDIJack;
1002 1.1 tshiozak if (UE_GET_DIR(epaddr)==UE_DIR_OUT) {
1003 1.1 tshiozak sc->sc_out_num_endpoints++;
1004 1.1 tshiozak sc->sc_out_num_jacks += p->num_jacks;
1005 1.1 tshiozak } else {
1006 1.1 tshiozak sc->sc_in_num_endpoints++;
1007 1.1 tshiozak sc->sc_in_num_jacks += p->num_jacks;
1008 1.1 tshiozak }
1009 1.1 tshiozak p++;
1010 1.1 tshiozak }
1011 1.1 tshiozak } else
1012 1.1 tshiozak epaddr = -1;
1013 1.1 tshiozak desc = NEXT_D(desc);
1014 1.1 tshiozak remain-=descsize;
1015 1.1 tshiozak }
1016 1.1 tshiozak
1017 1.1 tshiozak /* sort endpoints */
1018 1.1 tshiozak num_ep = sc->sc_out_num_endpoints + sc->sc_in_num_endpoints;
1019 1.1 tshiozak p = sc->sc_endpoints;
1020 1.1 tshiozak endep = p + num_ep;
1021 1.1 tshiozak while (p<endep) {
1022 1.1 tshiozak lowest = p;
1023 1.1 tshiozak for (q=p+1; q<endep; q++) {
1024 1.1 tshiozak if ((UE_GET_DIR(lowest->addr)==UE_DIR_IN &&
1025 1.1 tshiozak UE_GET_DIR(q->addr)==UE_DIR_OUT) ||
1026 1.1 tshiozak ((UE_GET_DIR(lowest->addr)==
1027 1.1 tshiozak UE_GET_DIR(q->addr)) &&
1028 1.1 tshiozak (UE_GET_ADDR(lowest->addr)>
1029 1.1 tshiozak UE_GET_ADDR(q->addr))))
1030 1.1 tshiozak lowest = q;
1031 1.1 tshiozak }
1032 1.1 tshiozak if (lowest != p) {
1033 1.1 tshiozak memcpy((void *)&tmpep, (void *)p, sizeof(tmpep));
1034 1.1 tshiozak memcpy((void *)p, (void *)lowest, sizeof(tmpep));
1035 1.1 tshiozak memcpy((void *)lowest, (void *)&tmpep, sizeof(tmpep));
1036 1.1 tshiozak }
1037 1.7 tshiozak p->num_open = 0;
1038 1.7 tshiozak p++;
1039 1.1 tshiozak }
1040 1.16 augustss
1041 1.1 tshiozak sc->sc_out_ep = sc->sc_out_num_endpoints ? sc->sc_endpoints : NULL;
1042 1.1 tshiozak sc->sc_in_ep =
1043 1.1 tshiozak sc->sc_in_num_endpoints ?
1044 1.1 tshiozak sc->sc_endpoints+sc->sc_out_num_endpoints : NULL;
1045 1.1 tshiozak
1046 1.1 tshiozak return USBD_NORMAL_COMPLETION;
1047 1.1 tshiozak }
1048 1.1 tshiozak
1049 1.1 tshiozak
1050 1.4 tshiozak /*
1051 1.4 tshiozak * jack stuffs
1052 1.4 tshiozak */
1053 1.4 tshiozak
1054 1.1 tshiozak static usbd_status
1055 1.1 tshiozak alloc_all_jacks(struct umidi_softc *sc)
1056 1.1 tshiozak {
1057 1.1 tshiozak int i, j;
1058 1.1 tshiozak struct umidi_endpoint *ep;
1059 1.26 chap struct umidi_jack *jack;
1060 1.38 gmcgarry const unsigned char *cn_spec;
1061 1.55 jakllsch
1062 1.26 chap if (UMQ_ISTYPE(sc, UMQ_TYPE_CN_SEQ_PER_EP))
1063 1.26 chap sc->cblnums_global = 0;
1064 1.26 chap else if (UMQ_ISTYPE(sc, UMQ_TYPE_CN_SEQ_GLOBAL))
1065 1.26 chap sc->cblnums_global = 1;
1066 1.26 chap else {
1067 1.26 chap /*
1068 1.26 chap * I don't think this default is correct, but it preserves
1069 1.26 chap * the prior behavior of the code. That's why I defined two
1070 1.26 chap * complementary quirks. Any device for which the default
1071 1.26 chap * behavior is wrong can be made to work by giving it an
1072 1.26 chap * explicit quirk, and if a pattern ever develops (as I suspect
1073 1.26 chap * it will) that a lot of otherwise standard USB MIDI devices
1074 1.26 chap * need the CN_SEQ_PER_EP "quirk," then this default can be
1075 1.26 chap * changed to 0, and the only devices that will break are those
1076 1.26 chap * listing neither quirk, and they'll easily be fixed by giving
1077 1.26 chap * them the CN_SEQ_GLOBAL quirk.
1078 1.26 chap */
1079 1.26 chap sc->cblnums_global = 1;
1080 1.26 chap }
1081 1.55 jakllsch
1082 1.26 chap if (UMQ_ISTYPE(sc, UMQ_TYPE_CN_FIXED))
1083 1.26 chap cn_spec = umidi_get_quirk_data_from_type(sc->sc_quirk,
1084 1.26 chap UMQ_TYPE_CN_FIXED);
1085 1.26 chap else
1086 1.26 chap cn_spec = NULL;
1087 1.1 tshiozak
1088 1.1 tshiozak /* allocate/initialize structures */
1089 1.52 mrg sc->sc_jacks = kmem_zalloc(sizeof(*sc->sc_out_jacks)*(sc->sc_in_num_jacks+
1090 1.52 mrg sc->sc_out_num_jacks), KM_SLEEP);
1091 1.1 tshiozak if (!sc->sc_jacks)
1092 1.1 tshiozak return USBD_NOMEM;
1093 1.1 tshiozak sc->sc_out_jacks =
1094 1.1 tshiozak sc->sc_out_num_jacks ? sc->sc_jacks : NULL;
1095 1.1 tshiozak sc->sc_in_jacks =
1096 1.1 tshiozak sc->sc_in_num_jacks ? sc->sc_jacks+sc->sc_out_num_jacks : NULL;
1097 1.1 tshiozak
1098 1.1 tshiozak jack = &sc->sc_out_jacks[0];
1099 1.47 mrg for (i = 0; i < sc->sc_out_num_jacks; i++) {
1100 1.4 tshiozak jack->opened = 0;
1101 1.65.12.1 martin jack->bound = 0;
1102 1.4 tshiozak jack->arg = NULL;
1103 1.4 tshiozak jack->u.out.intr = NULL;
1104 1.26 chap jack->midiman_ppkt = NULL;
1105 1.47 mrg if (sc->cblnums_global)
1106 1.26 chap jack->cable_number = i;
1107 1.1 tshiozak jack++;
1108 1.1 tshiozak }
1109 1.1 tshiozak jack = &sc->sc_in_jacks[0];
1110 1.47 mrg for (i = 0; i < sc->sc_in_num_jacks; i++) {
1111 1.4 tshiozak jack->opened = 0;
1112 1.65.12.1 martin jack->bound = 0;
1113 1.4 tshiozak jack->arg = NULL;
1114 1.4 tshiozak jack->u.in.intr = NULL;
1115 1.47 mrg if (sc->cblnums_global)
1116 1.26 chap jack->cable_number = i;
1117 1.1 tshiozak jack++;
1118 1.1 tshiozak }
1119 1.1 tshiozak
1120 1.1 tshiozak /* assign each jacks to each endpoints */
1121 1.1 tshiozak jack = &sc->sc_out_jacks[0];
1122 1.1 tshiozak ep = &sc->sc_out_ep[0];
1123 1.47 mrg for (i = 0; i < sc->sc_out_num_endpoints; i++) {
1124 1.47 mrg for (j = 0; j < ep->num_jacks; j++) {
1125 1.1 tshiozak jack->endpoint = ep;
1126 1.47 mrg if (cn_spec != NULL)
1127 1.26 chap jack->cable_number = *cn_spec++;
1128 1.47 mrg else if (!sc->cblnums_global)
1129 1.26 chap jack->cable_number = j;
1130 1.26 chap ep->jacks[jack->cable_number] = jack;
1131 1.1 tshiozak jack++;
1132 1.1 tshiozak }
1133 1.1 tshiozak ep++;
1134 1.1 tshiozak }
1135 1.1 tshiozak jack = &sc->sc_in_jacks[0];
1136 1.1 tshiozak ep = &sc->sc_in_ep[0];
1137 1.47 mrg for (i = 0; i < sc->sc_in_num_endpoints; i++) {
1138 1.47 mrg for (j = 0; j < ep->num_jacks; j++) {
1139 1.1 tshiozak jack->endpoint = ep;
1140 1.47 mrg if (cn_spec != NULL)
1141 1.26 chap jack->cable_number = *cn_spec++;
1142 1.47 mrg else if (!sc->cblnums_global)
1143 1.26 chap jack->cable_number = j;
1144 1.26 chap ep->jacks[jack->cable_number] = jack;
1145 1.1 tshiozak jack++;
1146 1.1 tshiozak }
1147 1.1 tshiozak ep++;
1148 1.1 tshiozak }
1149 1.1 tshiozak
1150 1.1 tshiozak return USBD_NORMAL_COMPLETION;
1151 1.1 tshiozak }
1152 1.1 tshiozak
1153 1.1 tshiozak static void
1154 1.1 tshiozak free_all_jacks(struct umidi_softc *sc)
1155 1.1 tshiozak {
1156 1.47 mrg struct umidi_jack *jacks;
1157 1.58 mrg size_t len;
1158 1.47 mrg
1159 1.47 mrg mutex_enter(&sc->sc_lock);
1160 1.58 mrg jacks = sc->sc_jacks;
1161 1.58 mrg len = sizeof(*sc->sc_out_jacks)*(sc->sc_in_num_jacks+sc->sc_out_num_jacks);
1162 1.47 mrg sc->sc_jacks = sc->sc_in_jacks = sc->sc_out_jacks = NULL;
1163 1.47 mrg mutex_exit(&sc->sc_lock);
1164 1.1 tshiozak
1165 1.47 mrg if (jacks)
1166 1.58 mrg kmem_free(jacks, len);
1167 1.1 tshiozak }
1168 1.1 tshiozak
1169 1.1 tshiozak static usbd_status
1170 1.28 christos bind_jacks_to_mididev(struct umidi_softc *sc,
1171 1.1 tshiozak struct umidi_jack *out_jack,
1172 1.1 tshiozak struct umidi_jack *in_jack,
1173 1.1 tshiozak struct umidi_mididev *mididev)
1174 1.1 tshiozak {
1175 1.65.12.1 martin if ((out_jack && out_jack->bound) || (in_jack && in_jack->bound))
1176 1.4 tshiozak return USBD_IN_USE;
1177 1.4 tshiozak if (mididev->out_jack || mididev->in_jack)
1178 1.1 tshiozak return USBD_IN_USE;
1179 1.1 tshiozak
1180 1.4 tshiozak if (out_jack)
1181 1.65.12.1 martin out_jack->bound = 1;
1182 1.4 tshiozak if (in_jack)
1183 1.65.12.1 martin in_jack->bound = 1;
1184 1.1 tshiozak mididev->in_jack = in_jack;
1185 1.1 tshiozak mididev->out_jack = out_jack;
1186 1.1 tshiozak
1187 1.65.12.1 martin mididev->closing = 0;
1188 1.65.12.1 martin
1189 1.1 tshiozak return USBD_NORMAL_COMPLETION;
1190 1.1 tshiozak }
1191 1.1 tshiozak
1192 1.4 tshiozak static void
1193 1.1 tshiozak unbind_jacks_from_mididev(struct umidi_mididev *mididev)
1194 1.1 tshiozak {
1195 1.65.12.1 martin KASSERT(mutex_owned(&mididev->sc->sc_lock));
1196 1.65.12.1 martin
1197 1.65.12.1 martin mididev->closing = 1;
1198 1.57 mrg
1199 1.15 tshiozak if ((mididev->flags & FWRITE) && mididev->out_jack)
1200 1.4 tshiozak close_out_jack(mididev->out_jack);
1201 1.15 tshiozak if ((mididev->flags & FREAD) && mididev->in_jack)
1202 1.4 tshiozak close_in_jack(mididev->in_jack);
1203 1.1 tshiozak
1204 1.65.12.1 martin if (mididev->out_jack) {
1205 1.65.12.1 martin mididev->out_jack->bound = 0;
1206 1.65.12.1 martin mididev->out_jack = NULL;
1207 1.65.12.1 martin }
1208 1.65.12.1 martin if (mididev->in_jack) {
1209 1.65.12.1 martin mididev->in_jack->bound = 0;
1210 1.65.12.1 martin mididev->in_jack = NULL;
1211 1.65.12.1 martin }
1212 1.1 tshiozak }
1213 1.1 tshiozak
1214 1.4 tshiozak static void
1215 1.1 tshiozak unbind_all_jacks(struct umidi_softc *sc)
1216 1.1 tshiozak {
1217 1.1 tshiozak int i;
1218 1.1 tshiozak
1219 1.65.12.1 martin mutex_spin_enter(&sc->sc_lock);
1220 1.1 tshiozak if (sc->sc_mididevs)
1221 1.47 mrg for (i = 0; i < sc->sc_num_mididevs; i++)
1222 1.4 tshiozak unbind_jacks_from_mididev(&sc->sc_mididevs[i]);
1223 1.65.12.1 martin mutex_spin_exit(&sc->sc_lock);
1224 1.1 tshiozak }
1225 1.1 tshiozak
1226 1.1 tshiozak static usbd_status
1227 1.1 tshiozak assign_all_jacks_automatically(struct umidi_softc *sc)
1228 1.1 tshiozak {
1229 1.1 tshiozak usbd_status err;
1230 1.1 tshiozak int i;
1231 1.1 tshiozak struct umidi_jack *out, *in;
1232 1.38 gmcgarry const signed char *asg_spec;
1233 1.1 tshiozak
1234 1.1 tshiozak err =
1235 1.1 tshiozak alloc_all_mididevs(sc,
1236 1.1 tshiozak max(sc->sc_out_num_jacks, sc->sc_in_num_jacks));
1237 1.1 tshiozak if (err!=USBD_NORMAL_COMPLETION)
1238 1.1 tshiozak return err;
1239 1.1 tshiozak
1240 1.65.12.1 martin if (UMQ_ISTYPE(sc, UMQ_TYPE_MD_FIXED))
1241 1.26 chap asg_spec = umidi_get_quirk_data_from_type(sc->sc_quirk,
1242 1.26 chap UMQ_TYPE_MD_FIXED);
1243 1.26 chap else
1244 1.26 chap asg_spec = NULL;
1245 1.26 chap
1246 1.47 mrg for (i = 0; i < sc->sc_num_mididevs; i++) {
1247 1.47 mrg if (asg_spec != NULL) {
1248 1.47 mrg if (*asg_spec == -1)
1249 1.26 chap out = NULL;
1250 1.26 chap else
1251 1.26 chap out = &sc->sc_out_jacks[*asg_spec];
1252 1.26 chap ++ asg_spec;
1253 1.47 mrg if (*asg_spec == -1)
1254 1.26 chap in = NULL;
1255 1.26 chap else
1256 1.26 chap in = &sc->sc_in_jacks[*asg_spec];
1257 1.26 chap ++ asg_spec;
1258 1.26 chap } else {
1259 1.26 chap out = (i<sc->sc_out_num_jacks) ? &sc->sc_out_jacks[i]
1260 1.26 chap : NULL;
1261 1.26 chap in = (i<sc->sc_in_num_jacks) ? &sc->sc_in_jacks[i]
1262 1.26 chap : NULL;
1263 1.26 chap }
1264 1.1 tshiozak err = bind_jacks_to_mididev(sc, out, in, &sc->sc_mididevs[i]);
1265 1.65.12.1 martin if (err != USBD_NORMAL_COMPLETION) {
1266 1.1 tshiozak free_all_mididevs(sc);
1267 1.1 tshiozak return err;
1268 1.1 tshiozak }
1269 1.1 tshiozak }
1270 1.1 tshiozak
1271 1.1 tshiozak return USBD_NORMAL_COMPLETION;
1272 1.1 tshiozak }
1273 1.1 tshiozak
1274 1.1 tshiozak static usbd_status
1275 1.4 tshiozak open_out_jack(struct umidi_jack *jack, void *arg, void (*intr)(void *))
1276 1.4 tshiozak {
1277 1.4 tshiozak struct umidi_endpoint *ep = jack->endpoint;
1278 1.46 mrg struct umidi_softc *sc = ep->sc;
1279 1.26 chap umidi_packet_bufp end;
1280 1.26 chap int err;
1281 1.4 tshiozak
1282 1.47 mrg KASSERT(mutex_owned(&sc->sc_lock));
1283 1.47 mrg
1284 1.4 tshiozak if (jack->opened)
1285 1.4 tshiozak return USBD_IN_USE;
1286 1.4 tshiozak
1287 1.4 tshiozak jack->arg = arg;
1288 1.4 tshiozak jack->u.out.intr = intr;
1289 1.26 chap jack->midiman_ppkt = NULL;
1290 1.26 chap end = ep->buffer + ep->buffer_size / sizeof *ep->buffer;
1291 1.4 tshiozak jack->opened = 1;
1292 1.4 tshiozak ep->num_open++;
1293 1.26 chap /*
1294 1.26 chap * out_solicit maintains an invariant that there will always be
1295 1.26 chap * (num_open - num_scheduled) slots free in the buffer. as we have
1296 1.26 chap * just incremented num_open, the buffer may be too full to satisfy
1297 1.26 chap * the invariant until a transfer completes, for which we must wait.
1298 1.26 chap */
1299 1.47 mrg while (end - ep->next_slot < ep->num_open - ep->num_scheduled) {
1300 1.47 mrg err = cv_timedwait_sig(&sc->sc_cv, &sc->sc_lock,
1301 1.47 mrg mstohz(10));
1302 1.47 mrg if (err) {
1303 1.26 chap ep->num_open--;
1304 1.26 chap jack->opened = 0;
1305 1.26 chap return USBD_IOERROR;
1306 1.26 chap }
1307 1.26 chap }
1308 1.4 tshiozak
1309 1.4 tshiozak return USBD_NORMAL_COMPLETION;
1310 1.4 tshiozak }
1311 1.4 tshiozak
1312 1.4 tshiozak static usbd_status
1313 1.4 tshiozak open_in_jack(struct umidi_jack *jack, void *arg, void (*intr)(void *, int))
1314 1.1 tshiozak {
1315 1.3 tshiozak usbd_status err = USBD_NORMAL_COMPLETION;
1316 1.3 tshiozak struct umidi_endpoint *ep = jack->endpoint;
1317 1.47 mrg
1318 1.49 skrll KASSERT(mutex_owned(&ep->sc->sc_lock));
1319 1.3 tshiozak
1320 1.4 tshiozak if (jack->opened)
1321 1.4 tshiozak return USBD_IN_USE;
1322 1.4 tshiozak
1323 1.4 tshiozak jack->arg = arg;
1324 1.4 tshiozak jack->u.in.intr = intr;
1325 1.4 tshiozak jack->opened = 1;
1326 1.47 mrg if (ep->num_open++ == 0 && UE_GET_DIR(ep->addr)==UE_DIR_IN) {
1327 1.65.12.1 martin /*
1328 1.65.12.1 martin * Can't hold the interrupt lock while calling into USB,
1329 1.65.12.1 martin * but we can safely drop it here.
1330 1.65.12.1 martin */
1331 1.65.12.1 martin mutex_exit(&ep->sc->sc_lock);
1332 1.3 tshiozak err = start_input_transfer(ep);
1333 1.18 gson if (err != USBD_NORMAL_COMPLETION &&
1334 1.18 gson err != USBD_IN_PROGRESS) {
1335 1.3 tshiozak ep->num_open--;
1336 1.3 tshiozak }
1337 1.65.12.1 martin mutex_enter(&ep->sc->sc_lock);
1338 1.3 tshiozak }
1339 1.3 tshiozak
1340 1.3 tshiozak return err;
1341 1.1 tshiozak }
1342 1.1 tshiozak
1343 1.1 tshiozak static void
1344 1.4 tshiozak close_out_jack(struct umidi_jack *jack)
1345 1.1 tshiozak {
1346 1.26 chap struct umidi_endpoint *ep;
1347 1.46 mrg struct umidi_softc *sc;
1348 1.26 chap u_int16_t mask;
1349 1.26 chap int err;
1350 1.4 tshiozak
1351 1.4 tshiozak if (jack->opened) {
1352 1.26 chap ep = jack->endpoint;
1353 1.46 mrg sc = ep->sc;
1354 1.65.12.1 martin
1355 1.65.12.1 martin KASSERT(mutex_owned(&sc->sc_lock));
1356 1.26 chap mask = 1 << (jack->cable_number);
1357 1.47 mrg while (mask & (ep->this_schedule | ep->next_schedule)) {
1358 1.47 mrg err = cv_timedwait_sig(&sc->sc_cv, &sc->sc_lock,
1359 1.47 mrg mstohz(10));
1360 1.47 mrg if (err)
1361 1.15 tshiozak break;
1362 1.3 tshiozak }
1363 1.59 mrg /*
1364 1.59 mrg * We can re-enter this function from both close() and
1365 1.59 mrg * detach(). Make sure only one of them does this part.
1366 1.59 mrg */
1367 1.59 mrg if (jack->opened) {
1368 1.59 mrg jack->opened = 0;
1369 1.59 mrg jack->endpoint->num_open--;
1370 1.59 mrg ep->this_schedule &= ~mask;
1371 1.59 mrg ep->next_schedule &= ~mask;
1372 1.59 mrg }
1373 1.3 tshiozak }
1374 1.1 tshiozak }
1375 1.1 tshiozak
1376 1.4 tshiozak static void
1377 1.4 tshiozak close_in_jack(struct umidi_jack *jack)
1378 1.4 tshiozak {
1379 1.4 tshiozak if (jack->opened) {
1380 1.65.12.1 martin struct umidi_softc *sc = jack->endpoint->sc;
1381 1.65.12.1 martin
1382 1.65.12.1 martin KASSERT(mutex_owned(&sc->sc_lock));
1383 1.65.12.1 martin
1384 1.4 tshiozak jack->opened = 0;
1385 1.19 gson if (--jack->endpoint->num_open == 0) {
1386 1.65.12.1 martin /*
1387 1.65.12.1 martin * We have to drop the (interrupt) lock so that
1388 1.65.12.1 martin * the USB thread lock can be safely taken by
1389 1.65.12.1 martin * the abort operation. This is safe as this
1390 1.65.12.1 martin * either closing or dying will be set proerly.
1391 1.65.12.1 martin */
1392 1.65.12.1 martin mutex_spin_exit(&sc->sc_lock);
1393 1.59 mrg usbd_abort_pipe(jack->endpoint->pipe);
1394 1.65.12.1 martin mutex_spin_enter(&sc->sc_lock);
1395 1.19 gson }
1396 1.4 tshiozak }
1397 1.4 tshiozak }
1398 1.1 tshiozak
1399 1.1 tshiozak static usbd_status
1400 1.1 tshiozak attach_mididev(struct umidi_softc *sc, struct umidi_mididev *mididev)
1401 1.1 tshiozak {
1402 1.1 tshiozak if (mididev->sc)
1403 1.1 tshiozak return USBD_IN_USE;
1404 1.1 tshiozak
1405 1.1 tshiozak mididev->sc = sc;
1406 1.55 jakllsch
1407 1.52 mrg describe_mididev(mididev);
1408 1.1 tshiozak
1409 1.37 cube mididev->mdev = midi_attach_mi(&umidi_hw_if, mididev, sc->sc_dev);
1410 1.1 tshiozak
1411 1.1 tshiozak return USBD_NORMAL_COMPLETION;
1412 1.1 tshiozak }
1413 1.1 tshiozak
1414 1.1 tshiozak static usbd_status
1415 1.1 tshiozak detach_mididev(struct umidi_mididev *mididev, int flags)
1416 1.1 tshiozak {
1417 1.65.12.1 martin struct umidi_softc *sc = mididev->sc;
1418 1.65.12.1 martin
1419 1.65.12.1 martin if (!sc)
1420 1.1 tshiozak return USBD_NO_ADDR;
1421 1.1 tshiozak
1422 1.65.12.1 martin mutex_spin_enter(&sc->sc_lock);
1423 1.1 tshiozak if (mididev->opened) {
1424 1.1 tshiozak umidi_close(mididev);
1425 1.1 tshiozak }
1426 1.4 tshiozak unbind_jacks_from_mididev(mididev);
1427 1.65.12.1 martin mutex_spin_exit(&sc->sc_lock);
1428 1.1 tshiozak
1429 1.34 dyoung if (mididev->mdev != NULL)
1430 1.1 tshiozak config_detach(mididev->mdev, flags);
1431 1.55 jakllsch
1432 1.26 chap if (NULL != mididev->label) {
1433 1.52 mrg kmem_free(mididev->label, mididev->label_len);
1434 1.26 chap mididev->label = NULL;
1435 1.26 chap }
1436 1.1 tshiozak
1437 1.1 tshiozak mididev->sc = NULL;
1438 1.1 tshiozak
1439 1.1 tshiozak return USBD_NORMAL_COMPLETION;
1440 1.1 tshiozak }
1441 1.1 tshiozak
1442 1.40 dyoung static void
1443 1.1 tshiozak deactivate_mididev(struct umidi_mididev *mididev)
1444 1.1 tshiozak {
1445 1.4 tshiozak if (mididev->out_jack)
1446 1.65.12.1 martin mididev->out_jack->bound = 0;
1447 1.4 tshiozak if (mididev->in_jack)
1448 1.65.12.1 martin mididev->in_jack->bound = 0;
1449 1.1 tshiozak }
1450 1.1 tshiozak
1451 1.1 tshiozak static usbd_status
1452 1.1 tshiozak alloc_all_mididevs(struct umidi_softc *sc, int nmidi)
1453 1.1 tshiozak {
1454 1.1 tshiozak sc->sc_num_mididevs = nmidi;
1455 1.52 mrg sc->sc_mididevs = kmem_zalloc(sizeof(*sc->sc_mididevs)*nmidi, KM_SLEEP);
1456 1.1 tshiozak if (!sc->sc_mididevs)
1457 1.1 tshiozak return USBD_NOMEM;
1458 1.1 tshiozak
1459 1.1 tshiozak return USBD_NORMAL_COMPLETION;
1460 1.1 tshiozak }
1461 1.1 tshiozak
1462 1.1 tshiozak static void
1463 1.1 tshiozak free_all_mididevs(struct umidi_softc *sc)
1464 1.1 tshiozak {
1465 1.65.12.1 martin struct umidi_mididev *mididevs;
1466 1.65.12.1 martin size_t len;
1467 1.65.12.1 martin
1468 1.65.12.1 martin mutex_enter(&sc->sc_lock);
1469 1.65.12.1 martin mididevs = sc->sc_mididevs;
1470 1.65.12.1 martin if (mididevs)
1471 1.65.12.1 martin len = sizeof(*sc->sc_mididevs )* sc->sc_num_mididevs;
1472 1.65.12.1 martin sc->sc_mididevs = NULL;
1473 1.1 tshiozak sc->sc_num_mididevs = 0;
1474 1.65.12.1 martin mutex_exit(&sc->sc_lock);
1475 1.65.12.1 martin
1476 1.65.12.1 martin if (mididevs)
1477 1.65.12.1 martin kmem_free(mididevs, len);
1478 1.1 tshiozak }
1479 1.1 tshiozak
1480 1.1 tshiozak static usbd_status
1481 1.1 tshiozak attach_all_mididevs(struct umidi_softc *sc)
1482 1.1 tshiozak {
1483 1.1 tshiozak usbd_status err;
1484 1.1 tshiozak int i;
1485 1.1 tshiozak
1486 1.1 tshiozak if (sc->sc_mididevs)
1487 1.47 mrg for (i = 0; i < sc->sc_num_mididevs; i++) {
1488 1.1 tshiozak err = attach_mididev(sc, &sc->sc_mididevs[i]);
1489 1.47 mrg if (err != USBD_NORMAL_COMPLETION)
1490 1.1 tshiozak return err;
1491 1.1 tshiozak }
1492 1.1 tshiozak
1493 1.1 tshiozak return USBD_NORMAL_COMPLETION;
1494 1.1 tshiozak }
1495 1.1 tshiozak
1496 1.1 tshiozak static usbd_status
1497 1.1 tshiozak detach_all_mididevs(struct umidi_softc *sc, int flags)
1498 1.1 tshiozak {
1499 1.1 tshiozak usbd_status err;
1500 1.1 tshiozak int i;
1501 1.1 tshiozak
1502 1.1 tshiozak if (sc->sc_mididevs)
1503 1.47 mrg for (i = 0; i < sc->sc_num_mididevs; i++) {
1504 1.1 tshiozak err = detach_mididev(&sc->sc_mididevs[i], flags);
1505 1.47 mrg if (err != USBD_NORMAL_COMPLETION)
1506 1.1 tshiozak return err;
1507 1.1 tshiozak }
1508 1.1 tshiozak
1509 1.1 tshiozak return USBD_NORMAL_COMPLETION;
1510 1.1 tshiozak }
1511 1.1 tshiozak
1512 1.40 dyoung static void
1513 1.1 tshiozak deactivate_all_mididevs(struct umidi_softc *sc)
1514 1.1 tshiozak {
1515 1.1 tshiozak int i;
1516 1.1 tshiozak
1517 1.40 dyoung if (sc->sc_mididevs) {
1518 1.47 mrg for (i = 0; i < sc->sc_num_mididevs; i++)
1519 1.40 dyoung deactivate_mididev(&sc->sc_mididevs[i]);
1520 1.40 dyoung }
1521 1.1 tshiozak }
1522 1.1 tshiozak
1523 1.26 chap /*
1524 1.26 chap * TODO: the 0-based cable numbers will often not match the labeling of the
1525 1.26 chap * equipment. Ideally:
1526 1.26 chap * For class-compliant devices: get the iJack string from the jack descriptor.
1527 1.26 chap * Otherwise:
1528 1.26 chap * - support a DISPLAY_BASE_CN quirk (add the value to each internal cable
1529 1.26 chap * number for display)
1530 1.26 chap * - support an array quirk explictly giving a char * for each jack.
1531 1.26 chap * For now, you get 0-based cable numbers. If there are multiple endpoints and
1532 1.26 chap * the CNs are not globally unique, each is shown with its associated endpoint
1533 1.26 chap * address in hex also. That should not be necessary when using iJack values
1534 1.26 chap * or a quirk array.
1535 1.26 chap */
1536 1.52 mrg void
1537 1.26 chap describe_mididev(struct umidi_mididev *md)
1538 1.26 chap {
1539 1.26 chap char in_label[16];
1540 1.26 chap char out_label[16];
1541 1.35 cegger const char *unit_label;
1542 1.26 chap char *final_label;
1543 1.26 chap struct umidi_softc *sc;
1544 1.26 chap int show_ep_in;
1545 1.26 chap int show_ep_out;
1546 1.26 chap size_t len;
1547 1.55 jakllsch
1548 1.26 chap sc = md->sc;
1549 1.26 chap show_ep_in = sc-> sc_in_num_endpoints > 1 && !sc->cblnums_global;
1550 1.26 chap show_ep_out = sc->sc_out_num_endpoints > 1 && !sc->cblnums_global;
1551 1.55 jakllsch
1552 1.65.12.1 martin if (NULL == md->in_jack)
1553 1.43 joerg in_label[0] = '\0';
1554 1.65.12.1 martin else if (show_ep_in)
1555 1.43 joerg snprintf(in_label, sizeof in_label, "<%d(%x) ",
1556 1.43 joerg md->in_jack->cable_number, md->in_jack->endpoint->addr);
1557 1.26 chap else
1558 1.43 joerg snprintf(in_label, sizeof in_label, "<%d ",
1559 1.43 joerg md->in_jack->cable_number);
1560 1.55 jakllsch
1561 1.65.12.1 martin if (NULL == md->out_jack)
1562 1.43 joerg out_label[0] = '\0';
1563 1.65.12.1 martin else if (show_ep_out)
1564 1.43 joerg snprintf(out_label, sizeof out_label, ">%d(%x) ",
1565 1.43 joerg md->out_jack->cable_number, md->out_jack->endpoint->addr);
1566 1.26 chap else
1567 1.43 joerg snprintf(out_label, sizeof out_label, ">%d ",
1568 1.43 joerg md->out_jack->cable_number);
1569 1.26 chap
1570 1.42 dyoung unit_label = device_xname(sc->sc_dev);
1571 1.55 jakllsch
1572 1.26 chap len = strlen(in_label) + strlen(out_label) + strlen(unit_label) + 4;
1573 1.55 jakllsch
1574 1.52 mrg final_label = kmem_alloc(len, KM_SLEEP);
1575 1.55 jakllsch
1576 1.26 chap snprintf(final_label, len, "%s%son %s",
1577 1.26 chap in_label, out_label, unit_label);
1578 1.26 chap
1579 1.52 mrg md->label = final_label;
1580 1.52 mrg md->label_len = len;
1581 1.26 chap }
1582 1.26 chap
1583 1.1 tshiozak #ifdef UMIDI_DEBUG
1584 1.1 tshiozak static void
1585 1.1 tshiozak dump_sc(struct umidi_softc *sc)
1586 1.1 tshiozak {
1587 1.1 tshiozak int i;
1588 1.1 tshiozak
1589 1.42 dyoung DPRINTFN(10, ("%s: dump_sc\n", device_xname(sc->sc_dev)));
1590 1.1 tshiozak for (i=0; i<sc->sc_out_num_endpoints; i++) {
1591 1.1 tshiozak DPRINTFN(10, ("\tout_ep(%p):\n", &sc->sc_out_ep[i]));
1592 1.1 tshiozak dump_ep(&sc->sc_out_ep[i]);
1593 1.1 tshiozak }
1594 1.1 tshiozak for (i=0; i<sc->sc_in_num_endpoints; i++) {
1595 1.1 tshiozak DPRINTFN(10, ("\tin_ep(%p):\n", &sc->sc_in_ep[i]));
1596 1.1 tshiozak dump_ep(&sc->sc_in_ep[i]);
1597 1.1 tshiozak }
1598 1.1 tshiozak }
1599 1.1 tshiozak
1600 1.1 tshiozak static void
1601 1.1 tshiozak dump_ep(struct umidi_endpoint *ep)
1602 1.1 tshiozak {
1603 1.1 tshiozak int i;
1604 1.26 chap for (i=0; i<UMIDI_MAX_EPJACKS; i++) {
1605 1.26 chap if (NULL==ep->jacks[i])
1606 1.26 chap continue;
1607 1.26 chap DPRINTFN(10, ("\t\tjack[%d]:%p:\n", i, ep->jacks[i]));
1608 1.1 tshiozak dump_jack(ep->jacks[i]);
1609 1.1 tshiozak }
1610 1.1 tshiozak }
1611 1.1 tshiozak static void
1612 1.1 tshiozak dump_jack(struct umidi_jack *jack)
1613 1.1 tshiozak {
1614 1.15 tshiozak DPRINTFN(10, ("\t\t\tep=%p\n",
1615 1.15 tshiozak jack->endpoint));
1616 1.1 tshiozak }
1617 1.1 tshiozak
1618 1.1 tshiozak #endif /* UMIDI_DEBUG */
1619 1.1 tshiozak
1620 1.1 tshiozak
1621 1.1 tshiozak
1622 1.1 tshiozak /*
1623 1.1 tshiozak * MUX MIDI PACKET
1624 1.1 tshiozak */
1625 1.1 tshiozak
1626 1.5 jdolecek static const int packet_length[16] = {
1627 1.1 tshiozak /*0*/ -1,
1628 1.1 tshiozak /*1*/ -1,
1629 1.1 tshiozak /*2*/ 2,
1630 1.1 tshiozak /*3*/ 3,
1631 1.1 tshiozak /*4*/ 3,
1632 1.1 tshiozak /*5*/ 1,
1633 1.1 tshiozak /*6*/ 2,
1634 1.1 tshiozak /*7*/ 3,
1635 1.1 tshiozak /*8*/ 3,
1636 1.1 tshiozak /*9*/ 3,
1637 1.1 tshiozak /*A*/ 3,
1638 1.1 tshiozak /*B*/ 3,
1639 1.1 tshiozak /*C*/ 2,
1640 1.1 tshiozak /*D*/ 2,
1641 1.1 tshiozak /*E*/ 3,
1642 1.1 tshiozak /*F*/ 1,
1643 1.1 tshiozak };
1644 1.1 tshiozak
1645 1.1 tshiozak #define GET_CN(p) (((unsigned char)(p)>>4)&0x0F)
1646 1.1 tshiozak #define GET_CIN(p) ((unsigned char)(p)&0x0F)
1647 1.1 tshiozak #define MIX_CN_CIN(cn, cin) \
1648 1.1 tshiozak ((unsigned char)((((unsigned char)(cn)&0x0F)<<4)| \
1649 1.3 tshiozak ((unsigned char)(cin)&0x0F)))
1650 1.1 tshiozak
1651 1.1 tshiozak static usbd_status
1652 1.1 tshiozak start_input_transfer(struct umidi_endpoint *ep)
1653 1.1 tshiozak {
1654 1.1 tshiozak usbd_setup_xfer(ep->xfer, ep->pipe,
1655 1.1 tshiozak (usbd_private_handle)ep,
1656 1.26 chap ep->buffer, ep->buffer_size,
1657 1.26 chap USBD_SHORT_XFER_OK | USBD_NO_COPY,
1658 1.26 chap USBD_NO_TIMEOUT, in_intr);
1659 1.1 tshiozak return usbd_transfer(ep->xfer);
1660 1.1 tshiozak }
1661 1.1 tshiozak
1662 1.1 tshiozak static usbd_status
1663 1.1 tshiozak start_output_transfer(struct umidi_endpoint *ep)
1664 1.1 tshiozak {
1665 1.26 chap usbd_status rv;
1666 1.26 chap u_int32_t length;
1667 1.26 chap int i;
1668 1.55 jakllsch
1669 1.26 chap length = (ep->next_slot - ep->buffer) * sizeof *ep->buffer;
1670 1.26 chap DPRINTFN(200,("umidi out transfer: start %p end %p length %u\n",
1671 1.26 chap ep->buffer, ep->next_slot, length));
1672 1.1 tshiozak usbd_setup_xfer(ep->xfer, ep->pipe,
1673 1.1 tshiozak (usbd_private_handle)ep,
1674 1.26 chap ep->buffer, length,
1675 1.11 augustss USBD_NO_COPY, USBD_NO_TIMEOUT, out_intr);
1676 1.26 chap rv = usbd_transfer(ep->xfer);
1677 1.55 jakllsch
1678 1.26 chap /*
1679 1.26 chap * Once the transfer is scheduled, no more adding to partial
1680 1.26 chap * packets within it.
1681 1.26 chap */
1682 1.26 chap if (UMQ_ISTYPE(ep->sc, UMQ_TYPE_MIDIMAN_GARBLE)) {
1683 1.26 chap for (i=0; i<UMIDI_MAX_EPJACKS; ++i)
1684 1.26 chap if (NULL != ep->jacks[i])
1685 1.26 chap ep->jacks[i]->midiman_ppkt = NULL;
1686 1.26 chap }
1687 1.55 jakllsch
1688 1.26 chap return rv;
1689 1.1 tshiozak }
1690 1.1 tshiozak
1691 1.4 tshiozak #ifdef UMIDI_DEBUG
1692 1.4 tshiozak #define DPR_PACKET(dir, sc, p) \
1693 1.26 chap if ((unsigned char)(p)[1]!=0xFE) \
1694 1.4 tshiozak DPRINTFN(500, \
1695 1.4 tshiozak ("%s: umidi packet(" #dir "): %02X %02X %02X %02X\n", \
1696 1.42 dyoung device_xname(sc->sc_dev), \
1697 1.26 chap (unsigned char)(p)[0], \
1698 1.26 chap (unsigned char)(p)[1], \
1699 1.26 chap (unsigned char)(p)[2], \
1700 1.26 chap (unsigned char)(p)[3]));
1701 1.4 tshiozak #else
1702 1.4 tshiozak #define DPR_PACKET(dir, sc, p)
1703 1.4 tshiozak #endif
1704 1.4 tshiozak
1705 1.26 chap /*
1706 1.26 chap * A 4-byte Midiman packet superficially resembles a 4-byte USB MIDI packet
1707 1.26 chap * with the cable number and length in the last byte instead of the first,
1708 1.26 chap * but there the resemblance ends. Where a USB MIDI packet is a semantic
1709 1.26 chap * unit, a Midiman packet is just a wrapper for 1 to 3 bytes of raw MIDI
1710 1.26 chap * with a cable nybble and a length nybble (which, unlike the CIN of a
1711 1.26 chap * real USB MIDI packet, has no semantics at all besides the length).
1712 1.26 chap * A packet received from a Midiman may contain part of a MIDI message,
1713 1.26 chap * more than one MIDI message, or parts of more than one MIDI message. A
1714 1.26 chap * three-byte MIDI message may arrive in three packets of data length 1, and
1715 1.26 chap * running status may be used. Happily, the midi(4) driver above us will put
1716 1.26 chap * it all back together, so the only cost is in USB bandwidth. The device
1717 1.26 chap * has an easier time with what it receives from us: we'll pack messages in
1718 1.26 chap * and across packets, but filling the packets whenever possible and,
1719 1.26 chap * as midi(4) hands us a complete message at a time, we'll never send one
1720 1.26 chap * in a dribble of short packets.
1721 1.26 chap */
1722 1.26 chap
1723 1.4 tshiozak static int
1724 1.26 chap out_jack_output(struct umidi_jack *out_jack, u_char *src, int len, int cin)
1725 1.4 tshiozak {
1726 1.4 tshiozak struct umidi_endpoint *ep = out_jack->endpoint;
1727 1.4 tshiozak struct umidi_softc *sc = ep->sc;
1728 1.26 chap unsigned char *packet;
1729 1.26 chap int plen;
1730 1.26 chap int poff;
1731 1.4 tshiozak
1732 1.65.12.1 martin KASSERT(mutex_owned(&sc->sc_lock));
1733 1.65.12.1 martin
1734 1.4 tshiozak if (sc->sc_dying)
1735 1.4 tshiozak return EIO;
1736 1.4 tshiozak
1737 1.26 chap if (!out_jack->opened)
1738 1.26 chap return ENODEV; /* XXX as it was, is this the right errno? */
1739 1.4 tshiozak
1740 1.65.12.1 martin sc->sc_refcnt++;
1741 1.65.12.1 martin
1742 1.26 chap #ifdef UMIDI_DEBUG
1743 1.65.12.1 martin if (umididebug >= 100)
1744 1.26 chap microtime(&umidi_tv);
1745 1.26 chap #endif
1746 1.39 cegger DPRINTFN(100, ("umidi out: %"PRIu64".%06"PRIu64"s ep=%p cn=%d len=%d cin=%#x\n",
1747 1.39 cegger umidi_tv.tv_sec%100, (uint64_t)umidi_tv.tv_usec,
1748 1.26 chap ep, out_jack->cable_number, len, cin));
1749 1.55 jakllsch
1750 1.26 chap packet = *ep->next_slot++;
1751 1.26 chap KASSERT(ep->buffer_size >=
1752 1.26 chap (ep->next_slot - ep->buffer) * sizeof *ep->buffer);
1753 1.26 chap memset(packet, 0, UMIDI_PACKET_SIZE);
1754 1.26 chap if (UMQ_ISTYPE(sc, UMQ_TYPE_MIDIMAN_GARBLE)) {
1755 1.26 chap if (NULL != out_jack->midiman_ppkt) { /* fill out a prev pkt */
1756 1.26 chap poff = 0x0f & (out_jack->midiman_ppkt[3]);
1757 1.26 chap plen = 3 - poff;
1758 1.26 chap if (plen > len)
1759 1.26 chap plen = len;
1760 1.26 chap memcpy(out_jack->midiman_ppkt+poff, src, plen);
1761 1.26 chap src += plen;
1762 1.26 chap len -= plen;
1763 1.26 chap plen += poff;
1764 1.26 chap out_jack->midiman_ppkt[3] =
1765 1.26 chap MIX_CN_CIN(out_jack->cable_number, plen);
1766 1.26 chap DPR_PACKET(out+, sc, out_jack->midiman_ppkt);
1767 1.26 chap if (3 == plen)
1768 1.26 chap out_jack->midiman_ppkt = NULL; /* no more */
1769 1.26 chap }
1770 1.26 chap if (0 == len)
1771 1.26 chap ep->next_slot--; /* won't be needed, nevermind */
1772 1.26 chap else {
1773 1.26 chap memcpy(packet, src, len);
1774 1.26 chap packet[3] = MIX_CN_CIN(out_jack->cable_number, len);
1775 1.26 chap DPR_PACKET(out, sc, packet);
1776 1.26 chap if (len < 3)
1777 1.26 chap out_jack->midiman_ppkt = packet;
1778 1.26 chap }
1779 1.26 chap } else { /* the nice simple USB class-compliant case */
1780 1.26 chap packet[0] = MIX_CN_CIN(out_jack->cable_number, cin);
1781 1.26 chap memcpy(packet+1, src, len);
1782 1.26 chap DPR_PACKET(out, sc, packet);
1783 1.26 chap }
1784 1.26 chap ep->next_schedule |= 1<<(out_jack->cable_number);
1785 1.26 chap ++ ep->num_scheduled;
1786 1.65.12.1 martin if (!ep->armed && !ep->soliciting) {
1787 1.26 chap /*
1788 1.26 chap * It would be bad to call out_solicit directly here (the
1789 1.26 chap * caller need not be reentrant) but a soft interrupt allows
1790 1.26 chap * solicit to run immediately the caller exits its critical
1791 1.26 chap * section, and if the caller has more to write we can get it
1792 1.26 chap * before starting the USB transfer, and send a longer one.
1793 1.26 chap */
1794 1.26 chap ep->soliciting = 1;
1795 1.32 ad softint_schedule(ep->solicit_cookie);
1796 1.26 chap }
1797 1.65.12.1 martin
1798 1.65.12.1 martin if (--sc->sc_refcnt < 0)
1799 1.65.12.1 martin usb_detach_broadcast(sc->sc_dev, &sc->sc_detach_cv);
1800 1.55 jakllsch
1801 1.26 chap return 0;
1802 1.4 tshiozak }
1803 1.4 tshiozak
1804 1.1 tshiozak static void
1805 1.27 christos in_intr(usbd_xfer_handle xfer, usbd_private_handle priv,
1806 1.28 christos usbd_status status)
1807 1.1 tshiozak {
1808 1.4 tshiozak int cn, len, i;
1809 1.1 tshiozak struct umidi_endpoint *ep = (struct umidi_endpoint *)priv;
1810 1.45 jmcneill struct umidi_softc *sc = ep->sc;
1811 1.4 tshiozak struct umidi_jack *jack;
1812 1.26 chap unsigned char *packet;
1813 1.26 chap umidi_packet_bufp slot;
1814 1.26 chap umidi_packet_bufp end;
1815 1.26 chap unsigned char *data;
1816 1.26 chap u_int32_t count;
1817 1.1 tshiozak
1818 1.3 tshiozak if (ep->sc->sc_dying || !ep->num_open)
1819 1.1 tshiozak return;
1820 1.1 tshiozak
1821 1.47 mrg mutex_enter(&sc->sc_lock);
1822 1.26 chap usbd_get_xfer_status(xfer, NULL, NULL, &count, NULL);
1823 1.47 mrg if (0 == count % UMIDI_PACKET_SIZE) {
1824 1.26 chap DPRINTFN(200,("%s: input endpoint %p transfer length %u\n",
1825 1.42 dyoung device_xname(ep->sc->sc_dev), ep, count));
1826 1.26 chap } else {
1827 1.26 chap DPRINTF(("%s: input endpoint %p odd transfer length %u\n",
1828 1.42 dyoung device_xname(ep->sc->sc_dev), ep, count));
1829 1.26 chap }
1830 1.55 jakllsch
1831 1.26 chap slot = ep->buffer;
1832 1.26 chap end = slot + count / sizeof *slot;
1833 1.26 chap
1834 1.47 mrg for (packet = *slot; slot < end; packet = *++slot) {
1835 1.55 jakllsch
1836 1.47 mrg if (UMQ_ISTYPE(ep->sc, UMQ_TYPE_MIDIMAN_GARBLE)) {
1837 1.26 chap cn = (0xf0&(packet[3]))>>4;
1838 1.26 chap len = 0x0f&(packet[3]);
1839 1.26 chap data = packet;
1840 1.26 chap } else {
1841 1.26 chap cn = GET_CN(packet[0]);
1842 1.26 chap len = packet_length[GET_CIN(packet[0])];
1843 1.26 chap data = packet + 1;
1844 1.26 chap }
1845 1.26 chap /* 0 <= cn <= 15 by inspection of above code */
1846 1.26 chap if (!(jack = ep->jacks[cn]) || cn != jack->cable_number) {
1847 1.26 chap DPRINTF(("%s: stray input endpoint %p cable %d len %d: "
1848 1.26 chap "%02X %02X %02X (try CN_SEQ quirk?)\n",
1849 1.42 dyoung device_xname(ep->sc->sc_dev), ep, cn, len,
1850 1.26 chap (unsigned)data[0],
1851 1.26 chap (unsigned)data[1],
1852 1.26 chap (unsigned)data[2]));
1853 1.47 mrg mutex_exit(&sc->sc_lock);
1854 1.26 chap return;
1855 1.26 chap }
1856 1.26 chap
1857 1.65.12.1 martin if (!jack->bound || !jack->opened)
1858 1.26 chap continue;
1859 1.26 chap
1860 1.26 chap DPRINTFN(500,("%s: input endpoint %p cable %d len %d: "
1861 1.26 chap "%02X %02X %02X\n",
1862 1.42 dyoung device_xname(ep->sc->sc_dev), ep, cn, len,
1863 1.26 chap (unsigned)data[0],
1864 1.26 chap (unsigned)data[1],
1865 1.26 chap (unsigned)data[2]));
1866 1.26 chap
1867 1.26 chap if (jack->u.in.intr) {
1868 1.47 mrg for (i = 0; i < len; i++) {
1869 1.26 chap (*jack->u.in.intr)(jack->arg, data[i]);
1870 1.26 chap }
1871 1.4 tshiozak }
1872 1.26 chap
1873 1.4 tshiozak }
1874 1.1 tshiozak
1875 1.1 tshiozak (void)start_input_transfer(ep);
1876 1.47 mrg mutex_exit(&sc->sc_lock);
1877 1.1 tshiozak }
1878 1.1 tshiozak
1879 1.1 tshiozak static void
1880 1.27 christos out_intr(usbd_xfer_handle xfer, usbd_private_handle priv,
1881 1.28 christos usbd_status status)
1882 1.1 tshiozak {
1883 1.1 tshiozak struct umidi_endpoint *ep = (struct umidi_endpoint *)priv;
1884 1.1 tshiozak struct umidi_softc *sc = ep->sc;
1885 1.26 chap u_int32_t count;
1886 1.1 tshiozak
1887 1.26 chap if (sc->sc_dying)
1888 1.1 tshiozak return;
1889 1.1 tshiozak
1890 1.47 mrg mutex_enter(&sc->sc_lock);
1891 1.26 chap #ifdef UMIDI_DEBUG
1892 1.65.12.1 martin if (umididebug >= 200)
1893 1.26 chap microtime(&umidi_tv);
1894 1.26 chap #endif
1895 1.26 chap usbd_get_xfer_status(xfer, NULL, NULL, &count, NULL);
1896 1.65.12.1 martin if (0 == count % UMIDI_PACKET_SIZE) {
1897 1.39 cegger DPRINTFN(200,("%s: %"PRIu64".%06"PRIu64"s out ep %p xfer length %u\n",
1898 1.42 dyoung device_xname(ep->sc->sc_dev),
1899 1.39 cegger umidi_tv.tv_sec%100, (uint64_t)umidi_tv.tv_usec, ep, count));
1900 1.26 chap } else {
1901 1.26 chap DPRINTF(("%s: output endpoint %p odd transfer length %u\n",
1902 1.42 dyoung device_xname(ep->sc->sc_dev), ep, count));
1903 1.26 chap }
1904 1.26 chap count /= UMIDI_PACKET_SIZE;
1905 1.55 jakllsch
1906 1.26 chap /*
1907 1.26 chap * If while the transfer was pending we buffered any new messages,
1908 1.26 chap * move them to the start of the buffer.
1909 1.26 chap */
1910 1.26 chap ep->next_slot -= count;
1911 1.47 mrg if (ep->buffer < ep->next_slot) {
1912 1.26 chap memcpy(ep->buffer, ep->buffer + count,
1913 1.26 chap (char *)ep->next_slot - (char *)ep->buffer);
1914 1.26 chap }
1915 1.47 mrg cv_broadcast(&sc->sc_cv);
1916 1.26 chap /*
1917 1.26 chap * Do not want anyone else to see armed <- 0 before soliciting <- 1.
1918 1.46 mrg * Running at IPL_USB so the following should happen to be safe.
1919 1.26 chap */
1920 1.26 chap ep->armed = 0;
1921 1.47 mrg if (!ep->soliciting) {
1922 1.26 chap ep->soliciting = 1;
1923 1.47 mrg out_solicit_locked(ep);
1924 1.1 tshiozak }
1925 1.47 mrg mutex_exit(&sc->sc_lock);
1926 1.1 tshiozak }
1927 1.1 tshiozak
1928 1.26 chap /*
1929 1.26 chap * A jack on which we have received a packet must be called back on its
1930 1.26 chap * out.intr handler before it will send us another; it is considered
1931 1.26 chap * 'scheduled'. It is nice and predictable - as long as it is scheduled,
1932 1.26 chap * we need no extra buffer space for it.
1933 1.26 chap *
1934 1.26 chap * In contrast, a jack that is open but not scheduled may supply us a packet
1935 1.26 chap * at any time, driven by the top half, and we must be able to accept it, no
1936 1.26 chap * excuses. So we must ensure that at any point in time there are at least
1937 1.26 chap * (num_open - num_scheduled) slots free.
1938 1.26 chap *
1939 1.26 chap * As long as there are more slots free than that minimum, we can loop calling
1940 1.26 chap * scheduled jacks back on their "interrupt" handlers, soliciting more
1941 1.26 chap * packets, starting the USB transfer only when the buffer space is down to
1942 1.26 chap * the minimum or no jack has any more to send.
1943 1.26 chap */
1944 1.47 mrg
1945 1.1 tshiozak static void
1946 1.47 mrg out_solicit_locked(void *arg)
1947 1.1 tshiozak {
1948 1.26 chap struct umidi_endpoint *ep = arg;
1949 1.26 chap umidi_packet_bufp end;
1950 1.26 chap u_int16_t which;
1951 1.26 chap struct umidi_jack *jack;
1952 1.47 mrg
1953 1.48 jmcneill KASSERT(mutex_owned(&ep->sc->sc_lock));
1954 1.55 jakllsch
1955 1.26 chap end = ep->buffer + ep->buffer_size / sizeof *ep->buffer;
1956 1.55 jakllsch
1957 1.26 chap for ( ;; ) {
1958 1.47 mrg if (end - ep->next_slot <= ep->num_open - ep->num_scheduled)
1959 1.46 mrg break; /* at IPL_USB */
1960 1.47 mrg if (ep->this_schedule == 0) {
1961 1.47 mrg if (ep->next_schedule == 0)
1962 1.46 mrg break; /* at IPL_USB */
1963 1.26 chap ep->this_schedule = ep->next_schedule;
1964 1.26 chap ep->next_schedule = 0;
1965 1.26 chap }
1966 1.26 chap /*
1967 1.26 chap * At least one jack is scheduled. Find and mask off the least
1968 1.26 chap * set bit in this_schedule and decrement num_scheduled.
1969 1.26 chap * Convert mask to bit index to find the corresponding jack,
1970 1.26 chap * and call its intr handler. If it has a message, it will call
1971 1.26 chap * back one of the output methods, which will set its bit in
1972 1.26 chap * next_schedule (not copied into this_schedule until the
1973 1.26 chap * latter is empty). In this way we round-robin the jacks that
1974 1.26 chap * have messages to send, until the buffer is as full as we
1975 1.26 chap * dare, and then start a transfer.
1976 1.26 chap */
1977 1.26 chap which = ep->this_schedule;
1978 1.26 chap which &= (~which)+1; /* now mask of least set bit */
1979 1.26 chap ep->this_schedule &= ~which;
1980 1.47 mrg --ep->num_scheduled;
1981 1.1 tshiozak
1982 1.47 mrg --which; /* now 1s below mask - count 1s to get index */
1983 1.26 chap which -= ((which >> 1) & 0x5555);/* SWAR credit aggregate.org */
1984 1.26 chap which = (((which >> 2) & 0x3333) + (which & 0x3333));
1985 1.26 chap which = (((which >> 4) + which) & 0x0f0f);
1986 1.26 chap which += (which >> 8);
1987 1.26 chap which &= 0x1f; /* the bit index a/k/a jack number */
1988 1.55 jakllsch
1989 1.26 chap jack = ep->jacks[which];
1990 1.26 chap if (jack->u.out.intr)
1991 1.26 chap (*jack->u.out.intr)(jack->arg);
1992 1.1 tshiozak }
1993 1.46 mrg /* intr lock held at loop exit */
1994 1.65.12.1 martin if (!ep->armed && ep->next_slot > ep->buffer) {
1995 1.65.12.1 martin /*
1996 1.65.12.1 martin * Can't hold the interrupt lock while calling into USB,
1997 1.65.12.1 martin * but we can safely drop it here.
1998 1.65.12.1 martin */
1999 1.65.12.1 martin mutex_exit(&ep->sc->sc_lock);
2000 1.26 chap ep->armed = (USBD_IN_PROGRESS == start_output_transfer(ep));
2001 1.65.12.1 martin mutex_enter(&ep->sc->sc_lock);
2002 1.65.12.1 martin }
2003 1.26 chap ep->soliciting = 0;
2004 1.47 mrg }
2005 1.47 mrg
2006 1.47 mrg /* Entry point for the softintr. */
2007 1.47 mrg static void
2008 1.47 mrg out_solicit(void *arg)
2009 1.47 mrg {
2010 1.47 mrg struct umidi_endpoint *ep = arg;
2011 1.47 mrg struct umidi_softc *sc = ep->sc;
2012 1.47 mrg
2013 1.47 mrg mutex_enter(&sc->sc_lock);
2014 1.47 mrg out_solicit_locked(arg);
2015 1.47 mrg mutex_exit(&sc->sc_lock);
2016 1.1 tshiozak }
2017