firewire.c revision 1.37 1 1.37 cegger /* $NetBSD: firewire.c,v 1.37 2010/08/26 08:56:15 cegger Exp $ */
2 1.1 kiyohara /*-
3 1.1 kiyohara * Copyright (c) 2003 Hidetoshi Shimokawa
4 1.1 kiyohara * Copyright (c) 1998-2002 Katsushi Kobayashi and Hidetoshi Shimokawa
5 1.1 kiyohara * All rights reserved.
6 1.1 kiyohara *
7 1.1 kiyohara * Redistribution and use in source and binary forms, with or without
8 1.1 kiyohara * modification, are permitted provided that the following conditions
9 1.1 kiyohara * are met:
10 1.1 kiyohara * 1. Redistributions of source code must retain the above copyright
11 1.1 kiyohara * notice, this list of conditions and the following disclaimer.
12 1.1 kiyohara * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 kiyohara * notice, this list of conditions and the following disclaimer in the
14 1.1 kiyohara * documentation and/or other materials provided with the distribution.
15 1.1 kiyohara * 3. All advertising materials mentioning features or use of this software
16 1.1 kiyohara * must display the acknowledgement as bellow:
17 1.1 kiyohara *
18 1.1 kiyohara * This product includes software developed by K. Kobayashi and H. Shimokawa
19 1.1 kiyohara *
20 1.1 kiyohara * 4. The name of the author may not be used to endorse or promote products
21 1.1 kiyohara * derived from this software without specific prior written permission.
22 1.1 kiyohara *
23 1.1 kiyohara * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
24 1.1 kiyohara * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
25 1.1 kiyohara * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
26 1.1 kiyohara * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
27 1.1 kiyohara * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
28 1.1 kiyohara * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
29 1.1 kiyohara * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.1 kiyohara * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
31 1.1 kiyohara * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
32 1.1 kiyohara * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
33 1.1 kiyohara * POSSIBILITY OF SUCH DAMAGE.
34 1.27 kiyohara *
35 1.27 kiyohara * $FreeBSD: src/sys/dev/firewire/firewire.c,v 1.110 2009/04/07 02:33:46 sbruno Exp $
36 1.1 kiyohara *
37 1.1 kiyohara */
38 1.1 kiyohara
39 1.18 lukem #include <sys/cdefs.h>
40 1.37 cegger __KERNEL_RCSID(0, "$NetBSD: firewire.c,v 1.37 2010/08/26 08:56:15 cegger Exp $");
41 1.18 lukem
42 1.1 kiyohara #include <sys/param.h>
43 1.27 kiyohara #include <sys/bus.h>
44 1.27 kiyohara #include <sys/callout.h>
45 1.27 kiyohara #include <sys/condvar.h>
46 1.1 kiyohara #include <sys/conf.h>
47 1.1 kiyohara #include <sys/device.h>
48 1.1 kiyohara #include <sys/errno.h>
49 1.1 kiyohara #include <sys/kernel.h>
50 1.1 kiyohara #include <sys/kthread.h>
51 1.35 christos #include <sys/malloc.h>
52 1.1 kiyohara #include <sys/queue.h>
53 1.1 kiyohara #include <sys/sysctl.h>
54 1.1 kiyohara #include <sys/systm.h>
55 1.1 kiyohara
56 1.1 kiyohara #include <dev/ieee1394/firewire.h>
57 1.1 kiyohara #include <dev/ieee1394/firewirereg.h>
58 1.1 kiyohara #include <dev/ieee1394/fwmem.h>
59 1.1 kiyohara #include <dev/ieee1394/iec13213.h>
60 1.1 kiyohara #include <dev/ieee1394/iec68113.h>
61 1.1 kiyohara
62 1.1 kiyohara #include "locators.h"
63 1.1 kiyohara
64 1.1 kiyohara struct crom_src_buf {
65 1.1 kiyohara struct crom_src src;
66 1.1 kiyohara struct crom_chunk root;
67 1.1 kiyohara struct crom_chunk vendor;
68 1.1 kiyohara struct crom_chunk hw;
69 1.1 kiyohara };
70 1.1 kiyohara
71 1.27 kiyohara int firewire_debug = 0, try_bmr = 1, hold_count = 0;
72 1.1 kiyohara /*
73 1.1 kiyohara * Setup sysctl(3) MIB, hw.ieee1394if.*
74 1.1 kiyohara *
75 1.22 ad * TBD condition CTLFLAG_PERMANENT on being a module or not
76 1.1 kiyohara */
77 1.1 kiyohara SYSCTL_SETUP(sysctl_ieee1394if, "sysctl ieee1394if(4) subtree setup")
78 1.1 kiyohara {
79 1.1 kiyohara int rc, ieee1394if_node_num;
80 1.1 kiyohara const struct sysctlnode *node;
81 1.1 kiyohara
82 1.1 kiyohara if ((rc = sysctl_createv(clog, 0, NULL, NULL,
83 1.1 kiyohara CTLFLAG_PERMANENT, CTLTYPE_NODE, "hw", NULL,
84 1.1 kiyohara NULL, 0, NULL, 0, CTL_HW, CTL_EOL)) != 0) {
85 1.1 kiyohara goto err;
86 1.1 kiyohara }
87 1.1 kiyohara
88 1.1 kiyohara if ((rc = sysctl_createv(clog, 0, NULL, &node,
89 1.1 kiyohara CTLFLAG_PERMANENT, CTLTYPE_NODE, "ieee1394if",
90 1.1 kiyohara SYSCTL_DESCR("ieee1394if controls"),
91 1.1 kiyohara NULL, 0, NULL, 0, CTL_HW, CTL_CREATE, CTL_EOL)) != 0) {
92 1.1 kiyohara goto err;
93 1.1 kiyohara }
94 1.1 kiyohara ieee1394if_node_num = node->sysctl_num;
95 1.1 kiyohara
96 1.1 kiyohara /* ieee1394if try bus manager flag */
97 1.1 kiyohara if ((rc = sysctl_createv(clog, 0, NULL, &node,
98 1.1 kiyohara CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
99 1.1 kiyohara "try_bmr", SYSCTL_DESCR("Try to be a bus manager"),
100 1.1 kiyohara NULL, 0, &try_bmr,
101 1.1 kiyohara 0, CTL_HW, ieee1394if_node_num, CTL_CREATE, CTL_EOL)) != 0) {
102 1.1 kiyohara goto err;
103 1.1 kiyohara }
104 1.1 kiyohara
105 1.1 kiyohara /* ieee1394if hold count */
106 1.1 kiyohara if ((rc = sysctl_createv(clog, 0, NULL, &node,
107 1.1 kiyohara CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
108 1.1 kiyohara "hold_count", SYSCTL_DESCR("Number of count of "
109 1.1 kiyohara "bus resets for removing lost device information"),
110 1.1 kiyohara NULL, 0, &hold_count,
111 1.1 kiyohara 0, CTL_HW, ieee1394if_node_num, CTL_CREATE, CTL_EOL)) != 0) {
112 1.1 kiyohara goto err;
113 1.1 kiyohara }
114 1.1 kiyohara
115 1.1 kiyohara /* ieee1394if driver debug flag */
116 1.1 kiyohara if ((rc = sysctl_createv(clog, 0, NULL, &node,
117 1.1 kiyohara CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
118 1.1 kiyohara "ieee1394_debug", SYSCTL_DESCR("ieee1394if driver debug flag"),
119 1.1 kiyohara NULL, 0, &firewire_debug,
120 1.1 kiyohara 0, CTL_HW, ieee1394if_node_num, CTL_CREATE, CTL_EOL)) != 0) {
121 1.1 kiyohara goto err;
122 1.1 kiyohara }
123 1.1 kiyohara
124 1.1 kiyohara return;
125 1.1 kiyohara
126 1.1 kiyohara err:
127 1.27 kiyohara aprint_error("%s: sysctl_createv failed (rc = %d)\n", __func__, rc);
128 1.1 kiyohara }
129 1.1 kiyohara
130 1.1 kiyohara MALLOC_DEFINE(M_FW, "ieee1394", "IEEE1394");
131 1.1 kiyohara MALLOC_DEFINE(M_FWXFER, "fw_xfer", "XFER/IEEE1394");
132 1.1 kiyohara
133 1.1 kiyohara #define FW_MAXASYRTY 4
134 1.1 kiyohara
135 1.27 kiyohara #define FW_GENERATION_CHANGEABLE 2
136 1.27 kiyohara
137 1.27 kiyohara static int firewirematch (device_t, cfdata_t, void *);
138 1.27 kiyohara static void firewireattach (device_t, device_t, void *);
139 1.27 kiyohara static int firewiredetach (device_t, int);
140 1.27 kiyohara static int firewire_print (void *, const char *);
141 1.1 kiyohara
142 1.20 kiyohara int firewire_resume (struct firewire_comm *);
143 1.27 kiyohara
144 1.27 kiyohara static void fw_asystart(struct fw_xfer *);
145 1.27 kiyohara static void firewire_xfer_timeout(struct firewire_comm *);
146 1.27 kiyohara static void firewire_watchdog(void *);
147 1.27 kiyohara static void fw_xferq_drain(struct fw_xferq *);
148 1.27 kiyohara static void fw_reset_csr(struct firewire_comm *);
149 1.27 kiyohara static void fw_init_crom(struct firewire_comm *);
150 1.27 kiyohara static void fw_reset_crom(struct firewire_comm *);
151 1.27 kiyohara static void fw_dump_hdr(struct fw_pkt *, const char *);
152 1.27 kiyohara static void fw_tl_free(struct firewire_comm *, struct fw_xfer *);
153 1.27 kiyohara static struct fw_xfer *fw_tl2xfer(struct firewire_comm *, int, int, int);
154 1.27 kiyohara static void fw_phy_config(struct firewire_comm *, int, int);
155 1.27 kiyohara static void fw_print_sid(uint32_t);
156 1.27 kiyohara static void fw_bus_probe(struct firewire_comm *);
157 1.27 kiyohara static int fw_explore_read_quads(struct fw_device *, int, uint32_t *, int);
158 1.27 kiyohara static int fw_explore_csrblock(struct fw_device *, int, int);
159 1.27 kiyohara static int fw_explore_node(struct fw_device *);
160 1.27 kiyohara static union fw_self_id *fw_find_self_id(struct firewire_comm *, int);
161 1.27 kiyohara static void fw_explore(struct firewire_comm *);
162 1.1 kiyohara static void fw_bus_probe_thread(void *);
163 1.27 kiyohara static void fw_attach_dev(struct firewire_comm *);
164 1.27 kiyohara static int fw_get_tlabel(struct firewire_comm *, struct fw_xfer *);
165 1.27 kiyohara static void fw_rcv_copy(struct fw_rcv_buf *);
166 1.27 kiyohara static void fw_try_bmr_callback(struct fw_xfer *);
167 1.27 kiyohara static void fw_try_bmr(void *);
168 1.27 kiyohara static int fw_bmr(struct firewire_comm *);
169 1.1 kiyohara
170 1.1 kiyohara
171 1.20 kiyohara CFATTACH_DECL_NEW(ieee1394if, sizeof(struct firewire_softc),
172 1.1 kiyohara firewirematch, firewireattach, firewiredetach, NULL);
173 1.27 kiyohara
174 1.27 kiyohara
175 1.2 drochner const char *fw_linkspeed[] = {
176 1.1 kiyohara "S100", "S200", "S400", "S800",
177 1.1 kiyohara "S1600", "S3200", "undef", "undef"
178 1.1 kiyohara };
179 1.1 kiyohara
180 1.1 kiyohara static const char *tcode_str[] = {
181 1.1 kiyohara "WREQQ", "WREQB", "WRES", "undef",
182 1.1 kiyohara "RREQQ", "RREQB", "RRESQ", "RRESB",
183 1.1 kiyohara "CYCS", "LREQ", "STREAM", "LRES",
184 1.1 kiyohara "undef", "undef", "PHY", "undef"
185 1.1 kiyohara };
186 1.1 kiyohara
187 1.1 kiyohara /* IEEE-1394a Table C-2 Gap count as a function of hops*/
188 1.1 kiyohara #define MAX_GAPHOP 15
189 1.1 kiyohara u_int gap_cnt[] = { 5, 5, 7, 8, 10, 13, 16, 18,
190 1.1 kiyohara 21, 24, 26, 29, 32, 35, 37, 40};
191 1.1 kiyohara
192 1.27 kiyohara
193 1.27 kiyohara static int
194 1.27 kiyohara firewirematch(device_t parent, cfdata_t cf, void *aux)
195 1.27 kiyohara {
196 1.27 kiyohara
197 1.27 kiyohara return 1; /* always match */
198 1.27 kiyohara }
199 1.27 kiyohara
200 1.27 kiyohara static void
201 1.27 kiyohara firewireattach(device_t parent, device_t self, void *aux)
202 1.27 kiyohara {
203 1.27 kiyohara struct firewire_softc *sc = device_private(self);
204 1.27 kiyohara struct firewire_comm *fc = device_private(parent);
205 1.27 kiyohara struct fw_attach_args faa;
206 1.27 kiyohara struct firewire_dev_list *devlist;
207 1.27 kiyohara
208 1.27 kiyohara aprint_naive("\n");
209 1.27 kiyohara aprint_normal(": IEEE1394 bus\n");
210 1.27 kiyohara
211 1.27 kiyohara fc->bdev = sc->dev = self;
212 1.27 kiyohara sc->fc = fc;
213 1.27 kiyohara SLIST_INIT(&sc->devlist);
214 1.27 kiyohara
215 1.27 kiyohara fc->status = FWBUSNOTREADY;
216 1.27 kiyohara
217 1.27 kiyohara if (fc->nisodma > FWMAXNDMA)
218 1.27 kiyohara fc->nisodma = FWMAXNDMA;
219 1.27 kiyohara
220 1.35 christos fc->crom_src_buf =
221 1.35 christos (struct crom_src_buf *)malloc(sizeof(struct crom_src_buf),
222 1.35 christos M_FW, M_NOWAIT | M_ZERO);
223 1.27 kiyohara if (fc->crom_src_buf == NULL) {
224 1.35 christos aprint_error_dev(fc->bdev, "Malloc Failure crom src buff\n");
225 1.27 kiyohara return;
226 1.27 kiyohara }
227 1.27 kiyohara fc->topology_map =
228 1.35 christos (struct fw_topology_map *)malloc(sizeof(struct fw_topology_map),
229 1.35 christos M_FW, M_NOWAIT | M_ZERO);
230 1.27 kiyohara if (fc->topology_map == NULL) {
231 1.27 kiyohara aprint_error_dev(fc->dev, "Malloc Failure topology map\n");
232 1.35 christos free(fc->crom_src_buf, M_FW);
233 1.27 kiyohara return;
234 1.27 kiyohara }
235 1.35 christos fc->speed_map =
236 1.35 christos (struct fw_speed_map *)malloc(sizeof(struct fw_speed_map),
237 1.35 christos M_FW, M_NOWAIT | M_ZERO);
238 1.27 kiyohara if (fc->speed_map == NULL) {
239 1.27 kiyohara aprint_error_dev(fc->dev, "Malloc Failure speed map\n");
240 1.35 christos free(fc->crom_src_buf, M_FW);
241 1.35 christos free(fc->topology_map, M_FW);
242 1.27 kiyohara return;
243 1.27 kiyohara }
244 1.27 kiyohara
245 1.27 kiyohara mutex_init(&fc->tlabel_lock, MUTEX_DEFAULT, IPL_VM);
246 1.27 kiyohara mutex_init(&fc->fc_mtx, MUTEX_DEFAULT, IPL_VM);
247 1.27 kiyohara mutex_init(&fc->wait_lock, MUTEX_DEFAULT, IPL_VM);
248 1.27 kiyohara cv_init(&fc->fc_cv, "ieee1394");
249 1.27 kiyohara
250 1.27 kiyohara callout_init(&fc->timeout_callout, CALLOUT_MPSAFE);
251 1.27 kiyohara callout_setfunc(&fc->timeout_callout, firewire_watchdog, fc);
252 1.27 kiyohara callout_init(&fc->bmr_callout, CALLOUT_MPSAFE);
253 1.27 kiyohara callout_setfunc(&fc->bmr_callout, fw_try_bmr, fc);
254 1.27 kiyohara callout_init(&fc->busprobe_callout, CALLOUT_MPSAFE);
255 1.27 kiyohara callout_setfunc(&fc->busprobe_callout, (void *)fw_bus_probe, fc);
256 1.27 kiyohara
257 1.27 kiyohara callout_schedule(&fc->timeout_callout, hz);
258 1.27 kiyohara
259 1.27 kiyohara /* create thread */
260 1.27 kiyohara if (kthread_create(PRI_NONE, KTHREAD_MPSAFE, NULL, fw_bus_probe_thread,
261 1.27 kiyohara fc, &fc->probe_thread, "fw%dprobe", device_unit(fc->bdev)))
262 1.27 kiyohara aprint_error_dev(self, "kthread_create failed\n");
263 1.27 kiyohara config_pending_incr();
264 1.27 kiyohara
265 1.35 christos devlist = malloc(sizeof(struct firewire_dev_list), M_DEVBUF, M_NOWAIT);
266 1.27 kiyohara if (devlist == NULL) {
267 1.27 kiyohara aprint_error_dev(self, "device list allocation failed\n");
268 1.27 kiyohara return;
269 1.27 kiyohara }
270 1.27 kiyohara
271 1.27 kiyohara faa.name = "fwip";
272 1.27 kiyohara faa.fc = fc;
273 1.27 kiyohara faa.fwdev = NULL;
274 1.27 kiyohara devlist->dev = config_found(sc->dev, &faa, firewire_print);
275 1.27 kiyohara if (devlist->dev == NULL)
276 1.35 christos free(devlist, M_DEVBUF);
277 1.27 kiyohara else
278 1.27 kiyohara SLIST_INSERT_HEAD(&sc->devlist, devlist, link);
279 1.27 kiyohara
280 1.27 kiyohara /* bus_reset */
281 1.27 kiyohara fw_busreset(fc, FWBUSNOTREADY);
282 1.27 kiyohara fc->ibr(fc);
283 1.27 kiyohara
284 1.27 kiyohara if (!pmf_device_register(self, NULL, NULL))
285 1.27 kiyohara aprint_error_dev(self, "couldn't establish power handler\n");
286 1.27 kiyohara
287 1.27 kiyohara return;
288 1.27 kiyohara }
289 1.27 kiyohara
290 1.27 kiyohara static int
291 1.27 kiyohara firewiredetach(device_t self, int flags)
292 1.27 kiyohara {
293 1.27 kiyohara struct firewire_softc *sc = device_private(self);
294 1.27 kiyohara struct firewire_comm *fc;
295 1.27 kiyohara struct fw_device *fwdev, *fwdev_next;
296 1.27 kiyohara struct firewire_dev_list *devlist;
297 1.27 kiyohara int err;
298 1.27 kiyohara
299 1.27 kiyohara fc = sc->fc;
300 1.27 kiyohara mutex_enter(&fc->wait_lock);
301 1.27 kiyohara fc->status = FWBUSDETACH;
302 1.27 kiyohara cv_signal(&fc->fc_cv);
303 1.27 kiyohara while (fc->status != FWBUSDETACHOK) {
304 1.27 kiyohara err = cv_timedwait_sig(&fc->fc_cv, &fc->wait_lock, hz * 60);
305 1.27 kiyohara if (err == EWOULDBLOCK) {
306 1.27 kiyohara aprint_error_dev(self,
307 1.27 kiyohara "firewire probe thread didn't die\n");
308 1.27 kiyohara break;
309 1.27 kiyohara }
310 1.27 kiyohara }
311 1.27 kiyohara mutex_exit(&fc->wait_lock);
312 1.27 kiyohara
313 1.27 kiyohara
314 1.27 kiyohara while ((devlist = SLIST_FIRST(&sc->devlist)) != NULL) {
315 1.27 kiyohara if ((err = config_detach(devlist->dev, flags)) != 0)
316 1.27 kiyohara return err;
317 1.27 kiyohara SLIST_REMOVE(&sc->devlist, devlist, firewire_dev_list, link);
318 1.35 christos free(devlist, M_DEVBUF);
319 1.27 kiyohara }
320 1.27 kiyohara
321 1.27 kiyohara callout_stop(&fc->timeout_callout);
322 1.27 kiyohara callout_stop(&fc->bmr_callout);
323 1.27 kiyohara callout_stop(&fc->busprobe_callout);
324 1.27 kiyohara
325 1.27 kiyohara /* XXX xfer_free and untimeout on all xfers */
326 1.27 kiyohara for (fwdev = STAILQ_FIRST(&fc->devices); fwdev != NULL;
327 1.27 kiyohara fwdev = fwdev_next) {
328 1.27 kiyohara fwdev_next = STAILQ_NEXT(fwdev, link);
329 1.35 christos free(fwdev, M_FW);
330 1.27 kiyohara }
331 1.35 christos free(fc->topology_map, M_FW);
332 1.35 christos free(fc->speed_map, M_FW);
333 1.35 christos free(fc->crom_src_buf, M_FW);
334 1.27 kiyohara
335 1.27 kiyohara cv_destroy(&fc->fc_cv);
336 1.27 kiyohara mutex_destroy(&fc->wait_lock);
337 1.27 kiyohara mutex_destroy(&fc->fc_mtx);
338 1.27 kiyohara mutex_destroy(&fc->tlabel_lock);
339 1.27 kiyohara return 0;
340 1.27 kiyohara }
341 1.27 kiyohara
342 1.27 kiyohara static int
343 1.27 kiyohara firewire_print(void *aux, const char *pnp)
344 1.27 kiyohara {
345 1.27 kiyohara struct fw_attach_args *fwa = (struct fw_attach_args *)aux;
346 1.27 kiyohara
347 1.27 kiyohara if (pnp)
348 1.27 kiyohara aprint_normal("%s at %s", fwa->name, pnp);
349 1.27 kiyohara
350 1.27 kiyohara return UNCONF;
351 1.27 kiyohara }
352 1.27 kiyohara
353 1.27 kiyohara int
354 1.27 kiyohara firewire_resume(struct firewire_comm *fc)
355 1.27 kiyohara {
356 1.27 kiyohara
357 1.27 kiyohara fc->status = FWBUSNOTREADY;
358 1.27 kiyohara return 0;
359 1.27 kiyohara }
360 1.27 kiyohara
361 1.1 kiyohara
362 1.1 kiyohara /*
363 1.1 kiyohara * Lookup fwdev by node id.
364 1.1 kiyohara */
365 1.1 kiyohara struct fw_device *
366 1.1 kiyohara fw_noderesolve_nodeid(struct firewire_comm *fc, int dst)
367 1.1 kiyohara {
368 1.1 kiyohara struct fw_device *fwdev;
369 1.1 kiyohara
370 1.27 kiyohara mutex_enter(&fc->fc_mtx);
371 1.1 kiyohara STAILQ_FOREACH(fwdev, &fc->devices, link)
372 1.1 kiyohara if (fwdev->dst == dst && fwdev->status != FWDEVINVAL)
373 1.1 kiyohara break;
374 1.27 kiyohara mutex_exit(&fc->fc_mtx);
375 1.1 kiyohara
376 1.1 kiyohara return fwdev;
377 1.1 kiyohara }
378 1.1 kiyohara
379 1.1 kiyohara /*
380 1.1 kiyohara * Lookup fwdev by EUI64.
381 1.1 kiyohara */
382 1.1 kiyohara struct fw_device *
383 1.1 kiyohara fw_noderesolve_eui64(struct firewire_comm *fc, struct fw_eui64 *eui)
384 1.1 kiyohara {
385 1.1 kiyohara struct fw_device *fwdev;
386 1.1 kiyohara
387 1.27 kiyohara mutex_enter(&fc->fc_mtx);
388 1.1 kiyohara STAILQ_FOREACH(fwdev, &fc->devices, link)
389 1.1 kiyohara if (FW_EUI64_EQUAL(fwdev->eui, *eui))
390 1.1 kiyohara break;
391 1.27 kiyohara mutex_exit(&fc->fc_mtx);
392 1.1 kiyohara
393 1.27 kiyohara if (fwdev == NULL)
394 1.27 kiyohara return NULL;
395 1.27 kiyohara if (fwdev->status == FWDEVINVAL)
396 1.27 kiyohara return NULL;
397 1.1 kiyohara return fwdev;
398 1.1 kiyohara }
399 1.1 kiyohara
400 1.1 kiyohara /*
401 1.1 kiyohara * Async. request procedure for userland application.
402 1.1 kiyohara */
403 1.1 kiyohara int
404 1.11 christos fw_asyreq(struct firewire_comm *fc, int sub, struct fw_xfer *xfer)
405 1.1 kiyohara {
406 1.1 kiyohara struct fw_xferq *xferq;
407 1.16 kiyohara int len;
408 1.1 kiyohara struct fw_pkt *fp;
409 1.1 kiyohara int tcode;
410 1.2 drochner const struct tcode_info *info;
411 1.1 kiyohara
412 1.27 kiyohara if (xfer == NULL)
413 1.27 kiyohara return EINVAL;
414 1.27 kiyohara if (xfer->hand == NULL) {
415 1.27 kiyohara aprint_error_dev(fc->bdev, "hand == NULL\n");
416 1.1 kiyohara return EINVAL;
417 1.1 kiyohara }
418 1.1 kiyohara fp = &xfer->send.hdr;
419 1.1 kiyohara
420 1.1 kiyohara tcode = fp->mode.common.tcode & 0xf;
421 1.1 kiyohara info = &fc->tcode[tcode];
422 1.1 kiyohara if (info->flag == 0) {
423 1.27 kiyohara aprint_error_dev(fc->bdev, "invalid tcode=%x\n", tcode);
424 1.1 kiyohara return EINVAL;
425 1.1 kiyohara }
426 1.16 kiyohara
427 1.16 kiyohara /* XXX allow bus explore packets only after bus rest */
428 1.16 kiyohara if ((fc->status < FWBUSEXPLORE) &&
429 1.16 kiyohara ((tcode != FWTCODE_RREQQ) || (fp->mode.rreqq.dest_hi != 0xffff) ||
430 1.27 kiyohara (fp->mode.rreqq.dest_lo < 0xf0000000) ||
431 1.16 kiyohara (fp->mode.rreqq.dest_lo >= 0xf0001000))) {
432 1.16 kiyohara xfer->resp = EAGAIN;
433 1.16 kiyohara xfer->flag = FWXF_BUSY;
434 1.27 kiyohara return EAGAIN;
435 1.16 kiyohara }
436 1.16 kiyohara
437 1.1 kiyohara if (info->flag & FWTI_REQ)
438 1.1 kiyohara xferq = fc->atq;
439 1.1 kiyohara else
440 1.1 kiyohara xferq = fc->ats;
441 1.1 kiyohara len = info->hdr_len;
442 1.1 kiyohara if (xfer->send.pay_len > MAXREC(fc->maxrec)) {
443 1.27 kiyohara aprint_error_dev(fc->bdev, "send.pay_len > maxrec\n");
444 1.1 kiyohara return EINVAL;
445 1.1 kiyohara }
446 1.1 kiyohara if (info->flag & FWTI_BLOCK_STR)
447 1.1 kiyohara len = fp->mode.stream.len;
448 1.1 kiyohara else if (info->flag & FWTI_BLOCK_ASY)
449 1.1 kiyohara len = fp->mode.rresb.len;
450 1.1 kiyohara else
451 1.1 kiyohara len = 0;
452 1.27 kiyohara if (len != xfer->send.pay_len) {
453 1.27 kiyohara aprint_error_dev(fc->bdev,
454 1.27 kiyohara "len(%d) != send.pay_len(%d) %s(%x)\n",
455 1.1 kiyohara len, xfer->send.pay_len, tcode_str[tcode], tcode);
456 1.27 kiyohara return EINVAL;
457 1.1 kiyohara }
458 1.1 kiyohara
459 1.27 kiyohara if (xferq->start == NULL) {
460 1.27 kiyohara aprint_error_dev(fc->bdev, "xferq->start == NULL\n");
461 1.1 kiyohara return EINVAL;
462 1.1 kiyohara }
463 1.27 kiyohara if (!(xferq->queued < xferq->maxq)) {
464 1.27 kiyohara aprint_error_dev(fc->bdev, "Discard a packet (queued=%d)\n",
465 1.1 kiyohara xferq->queued);
466 1.16 kiyohara return EAGAIN;
467 1.1 kiyohara }
468 1.1 kiyohara
469 1.16 kiyohara xfer->tl = -1;
470 1.27 kiyohara if (info->flag & FWTI_TLABEL)
471 1.16 kiyohara if (fw_get_tlabel(fc, xfer) < 0)
472 1.1 kiyohara return EAGAIN;
473 1.1 kiyohara
474 1.1 kiyohara xfer->resp = 0;
475 1.1 kiyohara xfer->fc = fc;
476 1.1 kiyohara xfer->q = xferq;
477 1.1 kiyohara
478 1.1 kiyohara fw_asystart(xfer);
479 1.27 kiyohara return 0;
480 1.1 kiyohara }
481 1.27 kiyohara
482 1.1 kiyohara /*
483 1.1 kiyohara * Wakeup blocked process.
484 1.1 kiyohara */
485 1.1 kiyohara void
486 1.16 kiyohara fw_xferwake(struct fw_xfer *xfer)
487 1.16 kiyohara {
488 1.16 kiyohara
489 1.27 kiyohara mutex_enter(&xfer->fc->wait_lock);
490 1.16 kiyohara xfer->flag |= FWXF_WAKE;
491 1.27 kiyohara cv_signal(&xfer->cv);
492 1.27 kiyohara mutex_exit(&xfer->fc->wait_lock);
493 1.16 kiyohara
494 1.1 kiyohara return;
495 1.1 kiyohara }
496 1.1 kiyohara
497 1.16 kiyohara int
498 1.16 kiyohara fw_xferwait(struct fw_xfer *xfer)
499 1.16 kiyohara {
500 1.27 kiyohara struct firewire_comm *fc = xfer->fc;
501 1.16 kiyohara int err = 0;
502 1.16 kiyohara
503 1.27 kiyohara mutex_enter(&fc->wait_lock);
504 1.27 kiyohara while (!(xfer->flag & FWXF_WAKE))
505 1.27 kiyohara err = cv_wait_sig(&xfer->cv, &fc->wait_lock);
506 1.27 kiyohara mutex_exit(&fc->wait_lock);
507 1.16 kiyohara
508 1.27 kiyohara return err;
509 1.16 kiyohara }
510 1.16 kiyohara
511 1.27 kiyohara void
512 1.27 kiyohara fw_drain_txq(struct firewire_comm *fc)
513 1.1 kiyohara {
514 1.27 kiyohara struct fw_xfer *xfer;
515 1.27 kiyohara STAILQ_HEAD(, fw_xfer) xfer_drain;
516 1.27 kiyohara int i;
517 1.1 kiyohara
518 1.27 kiyohara STAILQ_INIT(&xfer_drain);
519 1.1 kiyohara
520 1.27 kiyohara mutex_enter(&fc->atq->q_mtx);
521 1.27 kiyohara fw_xferq_drain(fc->atq);
522 1.27 kiyohara mutex_exit(&fc->atq->q_mtx);
523 1.27 kiyohara mutex_enter(&fc->ats->q_mtx);
524 1.27 kiyohara fw_xferq_drain(fc->ats);
525 1.27 kiyohara mutex_exit(&fc->ats->q_mtx);
526 1.27 kiyohara for (i = 0; i < fc->nisodma; i++)
527 1.27 kiyohara fw_xferq_drain(fc->it[i]);
528 1.1 kiyohara
529 1.27 kiyohara mutex_enter(&fc->tlabel_lock);
530 1.27 kiyohara for (i = 0; i < 0x40; i++)
531 1.1 kiyohara while ((xfer = STAILQ_FIRST(&fc->tlabels[i])) != NULL) {
532 1.27 kiyohara if (firewire_debug)
533 1.27 kiyohara printf("tl=%d flag=%d\n", i, xfer->flag);
534 1.27 kiyohara xfer->resp = EAGAIN;
535 1.16 kiyohara STAILQ_REMOVE_HEAD(&fc->tlabels[i], tlabel);
536 1.27 kiyohara STAILQ_INSERT_TAIL(&xfer_drain, xfer, tlabel);
537 1.1 kiyohara }
538 1.27 kiyohara mutex_exit(&fc->tlabel_lock);
539 1.16 kiyohara
540 1.27 kiyohara STAILQ_FOREACH(xfer, &xfer_drain, tlabel)
541 1.27 kiyohara xfer->hand(xfer);
542 1.1 kiyohara }
543 1.1 kiyohara
544 1.27 kiyohara /*
545 1.27 kiyohara * Called after bus reset.
546 1.27 kiyohara */
547 1.27 kiyohara void
548 1.27 kiyohara fw_busreset(struct firewire_comm *fc, uint32_t new_status)
549 1.1 kiyohara {
550 1.27 kiyohara struct firewire_softc *sc = device_private(fc->bdev);
551 1.27 kiyohara struct firewire_dev_list *devlist;
552 1.27 kiyohara struct firewire_dev_comm *fdc;
553 1.27 kiyohara struct crom_src *src;
554 1.35 christos uint32_t *newrom;
555 1.27 kiyohara
556 1.27 kiyohara if (fc->status == FWBUSMGRELECT)
557 1.27 kiyohara callout_stop(&fc->bmr_callout);
558 1.27 kiyohara
559 1.27 kiyohara fc->status = new_status;
560 1.27 kiyohara fw_reset_csr(fc);
561 1.27 kiyohara
562 1.27 kiyohara if (fc->status == FWBUSNOTREADY)
563 1.27 kiyohara fw_init_crom(fc);
564 1.27 kiyohara
565 1.27 kiyohara fw_reset_crom(fc);
566 1.1 kiyohara
567 1.27 kiyohara /* How many safe this access? */
568 1.27 kiyohara SLIST_FOREACH(devlist, &sc->devlist, link) {
569 1.27 kiyohara fdc = device_private(devlist->dev);
570 1.27 kiyohara if (fdc->post_busreset != NULL)
571 1.27 kiyohara fdc->post_busreset(fdc);
572 1.27 kiyohara }
573 1.1 kiyohara
574 1.1 kiyohara /*
575 1.27 kiyohara * If the old config rom needs to be overwritten,
576 1.27 kiyohara * bump the businfo.generation indicator to
577 1.27 kiyohara * indicate that we need to be reprobed
578 1.27 kiyohara * See 1394a-2000 8.3.2.5.4 for more details.
579 1.27 kiyohara * generation starts at 2 and rolls over at 0xF
580 1.27 kiyohara * back to 2.
581 1.27 kiyohara *
582 1.27 kiyohara * A generation of 0 indicates a device
583 1.27 kiyohara * that is not 1394a-2000 compliant.
584 1.27 kiyohara * A generation of 1 indicates a device that
585 1.27 kiyohara * does not change it's Bus Info Block or
586 1.27 kiyohara * Configuration ROM.
587 1.1 kiyohara */
588 1.27 kiyohara #define FW_MAX_GENERATION 0xF
589 1.35 christos newrom = malloc(CROMSIZE, M_FW, M_NOWAIT | M_ZERO);
590 1.27 kiyohara src = &fc->crom_src_buf->src;
591 1.35 christos crom_load(src, newrom, CROMSIZE);
592 1.35 christos if (memcmp(newrom, fc->config_rom, CROMSIZE) != 0) {
593 1.27 kiyohara if (src->businfo.generation++ > FW_MAX_GENERATION)
594 1.27 kiyohara src->businfo.generation = FW_GENERATION_CHANGEABLE;
595 1.35 christos memcpy((void *)fc->config_rom, newrom, CROMSIZE);
596 1.27 kiyohara }
597 1.35 christos free(newrom, M_FW);
598 1.1 kiyohara }
599 1.1 kiyohara
600 1.27 kiyohara /* Call once after reboot */
601 1.27 kiyohara void
602 1.27 kiyohara fw_init(struct firewire_comm *fc)
603 1.1 kiyohara {
604 1.27 kiyohara int i;
605 1.1 kiyohara
606 1.27 kiyohara fc->arq->queued = 0;
607 1.27 kiyohara fc->ars->queued = 0;
608 1.27 kiyohara fc->atq->queued = 0;
609 1.27 kiyohara fc->ats->queued = 0;
610 1.26 mrg
611 1.27 kiyohara fc->arq->buf = NULL;
612 1.27 kiyohara fc->ars->buf = NULL;
613 1.27 kiyohara fc->atq->buf = NULL;
614 1.27 kiyohara fc->ats->buf = NULL;
615 1.1 kiyohara
616 1.27 kiyohara fc->arq->flag = 0;
617 1.27 kiyohara fc->ars->flag = 0;
618 1.27 kiyohara fc->atq->flag = 0;
619 1.27 kiyohara fc->ats->flag = 0;
620 1.1 kiyohara
621 1.27 kiyohara STAILQ_INIT(&fc->atq->q);
622 1.27 kiyohara STAILQ_INIT(&fc->ats->q);
623 1.27 kiyohara mutex_init(&fc->arq->q_mtx, MUTEX_DEFAULT, IPL_VM);
624 1.27 kiyohara mutex_init(&fc->ars->q_mtx, MUTEX_DEFAULT, IPL_VM);
625 1.27 kiyohara mutex_init(&fc->atq->q_mtx, MUTEX_DEFAULT, IPL_VM);
626 1.27 kiyohara mutex_init(&fc->ats->q_mtx, MUTEX_DEFAULT, IPL_VM);
627 1.1 kiyohara
628 1.27 kiyohara for (i = 0; i < fc->nisodma; i++) {
629 1.27 kiyohara fc->it[i]->queued = 0;
630 1.27 kiyohara fc->ir[i]->queued = 0;
631 1.27 kiyohara
632 1.27 kiyohara fc->it[i]->start = NULL;
633 1.27 kiyohara fc->ir[i]->start = NULL;
634 1.27 kiyohara
635 1.27 kiyohara fc->it[i]->buf = NULL;
636 1.27 kiyohara fc->ir[i]->buf = NULL;
637 1.27 kiyohara
638 1.27 kiyohara fc->it[i]->flag = FWXFERQ_STREAM;
639 1.27 kiyohara fc->ir[i]->flag = FWXFERQ_STREAM;
640 1.27 kiyohara
641 1.27 kiyohara STAILQ_INIT(&fc->it[i]->q);
642 1.27 kiyohara STAILQ_INIT(&fc->ir[i]->q);
643 1.27 kiyohara }
644 1.27 kiyohara
645 1.27 kiyohara fc->arq->maxq = FWMAXQUEUE;
646 1.27 kiyohara fc->ars->maxq = FWMAXQUEUE;
647 1.27 kiyohara fc->atq->maxq = FWMAXQUEUE;
648 1.27 kiyohara fc->ats->maxq = FWMAXQUEUE;
649 1.27 kiyohara
650 1.27 kiyohara for (i = 0; i < fc->nisodma; i++) {
651 1.27 kiyohara fc->ir[i]->maxq = FWMAXQUEUE;
652 1.27 kiyohara fc->it[i]->maxq = FWMAXQUEUE;
653 1.27 kiyohara }
654 1.1 kiyohara
655 1.27 kiyohara CSRARC(fc, TOPO_MAP) = 0x3f1 << 16;
656 1.27 kiyohara CSRARC(fc, TOPO_MAP + 4) = 1;
657 1.27 kiyohara CSRARC(fc, SPED_MAP) = 0x3f1 << 16;
658 1.27 kiyohara CSRARC(fc, SPED_MAP + 4) = 1;
659 1.1 kiyohara
660 1.27 kiyohara STAILQ_INIT(&fc->devices);
661 1.1 kiyohara
662 1.27 kiyohara /* Initialize Async handlers */
663 1.27 kiyohara STAILQ_INIT(&fc->binds);
664 1.27 kiyohara for (i = 0; i < 0x40; i++)
665 1.27 kiyohara STAILQ_INIT(&fc->tlabels[i]);
666 1.1 kiyohara
667 1.27 kiyohara /* DV depend CSRs see blue book */
668 1.27 kiyohara #if 0
669 1.27 kiyohara CSRARC(fc, oMPR) = 0x3fff0001; /* # output channel = 1 */
670 1.27 kiyohara CSRARC(fc, oPCR) = 0x8000007a;
671 1.27 kiyohara for (i = 4; i < 0x7c/4; i+=4)
672 1.27 kiyohara CSRARC(fc, i + oPCR) = 0x8000007a;
673 1.1 kiyohara
674 1.27 kiyohara CSRARC(fc, iMPR) = 0x00ff0001; /* # input channel = 1 */
675 1.27 kiyohara CSRARC(fc, iPCR) = 0x803f0000;
676 1.27 kiyohara for (i = 4; i < 0x7c/4; i+=4)
677 1.27 kiyohara CSRARC(fc, i + iPCR) = 0x0;
678 1.17 jmcneill #endif
679 1.17 jmcneill
680 1.27 kiyohara fc->crom_src_buf = NULL;
681 1.27 kiyohara }
682 1.27 kiyohara
683 1.27 kiyohara #define BIND_CMP(addr, fwb) \
684 1.27 kiyohara (((addr) < (fwb)->start) ? -1 : ((fwb)->end < (addr)) ? 1 : 0)
685 1.27 kiyohara
686 1.27 kiyohara /*
687 1.27 kiyohara * To lookup bound process from IEEE1394 address.
688 1.27 kiyohara */
689 1.27 kiyohara struct fw_bind *
690 1.27 kiyohara fw_bindlookup(struct firewire_comm *fc, uint16_t dest_hi, uint32_t dest_lo)
691 1.27 kiyohara {
692 1.27 kiyohara u_int64_t addr;
693 1.27 kiyohara struct fw_bind *tfw, *r = NULL;
694 1.27 kiyohara
695 1.27 kiyohara addr = ((u_int64_t)dest_hi << 32) | dest_lo;
696 1.27 kiyohara mutex_enter(&fc->fc_mtx);
697 1.27 kiyohara STAILQ_FOREACH(tfw, &fc->binds, fclist)
698 1.27 kiyohara if (BIND_CMP(addr, tfw) == 0) {
699 1.27 kiyohara r = tfw;
700 1.27 kiyohara break;
701 1.27 kiyohara }
702 1.27 kiyohara mutex_exit(&fc->fc_mtx);
703 1.27 kiyohara return r;
704 1.27 kiyohara }
705 1.27 kiyohara
706 1.27 kiyohara /*
707 1.27 kiyohara * To bind IEEE1394 address block to process.
708 1.27 kiyohara */
709 1.27 kiyohara int
710 1.27 kiyohara fw_bindadd(struct firewire_comm *fc, struct fw_bind *fwb)
711 1.27 kiyohara {
712 1.27 kiyohara struct fw_bind *tfw, *prev = NULL;
713 1.27 kiyohara int r = 0;
714 1.27 kiyohara
715 1.27 kiyohara if (fwb->start > fwb->end) {
716 1.27 kiyohara aprint_error_dev(fc->bdev, "invalid range\n");
717 1.27 kiyohara return EINVAL;
718 1.27 kiyohara }
719 1.27 kiyohara
720 1.27 kiyohara mutex_enter(&fc->fc_mtx);
721 1.27 kiyohara STAILQ_FOREACH(tfw, &fc->binds, fclist) {
722 1.27 kiyohara if (fwb->end < tfw->start)
723 1.27 kiyohara break;
724 1.27 kiyohara prev = tfw;
725 1.27 kiyohara }
726 1.27 kiyohara if (prev == NULL)
727 1.27 kiyohara STAILQ_INSERT_HEAD(&fc->binds, fwb, fclist);
728 1.27 kiyohara else if (prev->end < fwb->start)
729 1.27 kiyohara STAILQ_INSERT_AFTER(&fc->binds, prev, fwb, fclist);
730 1.27 kiyohara else {
731 1.27 kiyohara aprint_error_dev(fc->bdev, "bind failed\n");
732 1.27 kiyohara r = EBUSY;
733 1.27 kiyohara }
734 1.27 kiyohara mutex_exit(&fc->fc_mtx);
735 1.27 kiyohara return r;
736 1.1 kiyohara }
737 1.1 kiyohara
738 1.1 kiyohara /*
739 1.27 kiyohara * To free IEEE1394 address block.
740 1.1 kiyohara */
741 1.27 kiyohara int
742 1.27 kiyohara fw_bindremove(struct firewire_comm *fc, struct fw_bind *fwb)
743 1.27 kiyohara {
744 1.27 kiyohara #if 0
745 1.27 kiyohara struct fw_xfer *xfer, *next;
746 1.27 kiyohara #endif
747 1.27 kiyohara struct fw_bind *tfw;
748 1.27 kiyohara
749 1.27 kiyohara mutex_enter(&fc->fc_mtx);
750 1.27 kiyohara STAILQ_FOREACH(tfw, &fc->binds, fclist)
751 1.27 kiyohara if (tfw == fwb) {
752 1.27 kiyohara STAILQ_REMOVE(&fc->binds, fwb, fw_bind, fclist);
753 1.27 kiyohara mutex_exit(&fc->fc_mtx);
754 1.27 kiyohara goto found;
755 1.27 kiyohara }
756 1.27 kiyohara
757 1.27 kiyohara mutex_exit(&fc->fc_mtx);
758 1.27 kiyohara aprint_error_dev(fc->bdev, "no such binding\n");
759 1.27 kiyohara return 1;
760 1.27 kiyohara found:
761 1.27 kiyohara #if 0
762 1.27 kiyohara /* shall we do this? */
763 1.27 kiyohara for (xfer = STAILQ_FIRST(&fwb->xferlist); xfer != NULL; xfer = next) {
764 1.27 kiyohara next = STAILQ_NEXT(xfer, link);
765 1.27 kiyohara fw_xfer_free(xfer);
766 1.27 kiyohara }
767 1.27 kiyohara STAILQ_INIT(&fwb->xferlist);
768 1.27 kiyohara #endif
769 1.27 kiyohara
770 1.27 kiyohara return 0;
771 1.27 kiyohara }
772 1.27 kiyohara
773 1.27 kiyohara int
774 1.27 kiyohara fw_xferlist_add(struct fw_xferlist *q, struct malloc_type *type, int slen,
775 1.27 kiyohara int rlen, int n, struct firewire_comm *fc, void *sc,
776 1.27 kiyohara void (*hand)(struct fw_xfer *))
777 1.27 kiyohara {
778 1.27 kiyohara struct fw_xfer *xfer;
779 1.27 kiyohara int i;
780 1.27 kiyohara
781 1.27 kiyohara for (i = 0; i < n; i++) {
782 1.27 kiyohara xfer = fw_xfer_alloc_buf(type, slen, rlen);
783 1.27 kiyohara if (xfer == NULL)
784 1.27 kiyohara return n;
785 1.27 kiyohara xfer->fc = fc;
786 1.27 kiyohara xfer->sc = sc;
787 1.27 kiyohara xfer->hand = hand;
788 1.27 kiyohara STAILQ_INSERT_TAIL(q, xfer, link);
789 1.27 kiyohara }
790 1.27 kiyohara return n;
791 1.27 kiyohara }
792 1.27 kiyohara
793 1.27 kiyohara void
794 1.27 kiyohara fw_xferlist_remove(struct fw_xferlist *q)
795 1.1 kiyohara {
796 1.27 kiyohara struct fw_xfer *xfer, *next;
797 1.1 kiyohara
798 1.27 kiyohara for (xfer = STAILQ_FIRST(q); xfer != NULL; xfer = next) {
799 1.27 kiyohara next = STAILQ_NEXT(xfer, link);
800 1.27 kiyohara fw_xfer_free_buf(xfer);
801 1.1 kiyohara }
802 1.27 kiyohara STAILQ_INIT(q);
803 1.27 kiyohara }
804 1.27 kiyohara
805 1.27 kiyohara /*
806 1.27 kiyohara * To allocate IEEE1394 XFER structure.
807 1.27 kiyohara */
808 1.27 kiyohara struct fw_xfer *
809 1.27 kiyohara fw_xfer_alloc(struct malloc_type *type)
810 1.27 kiyohara {
811 1.27 kiyohara struct fw_xfer *xfer;
812 1.27 kiyohara
813 1.35 christos xfer = malloc(sizeof(struct fw_xfer), type, M_NOWAIT | M_ZERO);
814 1.27 kiyohara if (xfer == NULL)
815 1.27 kiyohara return xfer;
816 1.27 kiyohara
817 1.27 kiyohara xfer->malloc = type;
818 1.27 kiyohara cv_init(&xfer->cv, "fwxfer");
819 1.27 kiyohara
820 1.27 kiyohara return xfer;
821 1.27 kiyohara }
822 1.27 kiyohara
823 1.27 kiyohara struct fw_xfer *
824 1.27 kiyohara fw_xfer_alloc_buf(struct malloc_type *type, int send_len, int recv_len)
825 1.27 kiyohara {
826 1.27 kiyohara struct fw_xfer *xfer;
827 1.1 kiyohara
828 1.27 kiyohara xfer = fw_xfer_alloc(type);
829 1.27 kiyohara if (xfer == NULL)
830 1.27 kiyohara return NULL;
831 1.27 kiyohara xfer->send.pay_len = send_len;
832 1.27 kiyohara xfer->recv.pay_len = recv_len;
833 1.27 kiyohara if (send_len > 0) {
834 1.35 christos xfer->send.payload = malloc(send_len, type, M_NOWAIT | M_ZERO);
835 1.27 kiyohara if (xfer->send.payload == NULL) {
836 1.27 kiyohara fw_xfer_free(xfer);
837 1.27 kiyohara return NULL;
838 1.27 kiyohara }
839 1.27 kiyohara }
840 1.27 kiyohara if (recv_len > 0) {
841 1.35 christos xfer->recv.payload = malloc(recv_len, type, M_NOWAIT);
842 1.27 kiyohara if (xfer->recv.payload == NULL) {
843 1.27 kiyohara if (xfer->send.payload != NULL)
844 1.35 christos free(xfer->send.payload, type);
845 1.27 kiyohara fw_xfer_free(xfer);
846 1.27 kiyohara return NULL;
847 1.27 kiyohara }
848 1.27 kiyohara }
849 1.27 kiyohara return xfer;
850 1.1 kiyohara }
851 1.1 kiyohara
852 1.27 kiyohara /*
853 1.27 kiyohara * IEEE1394 XFER post process.
854 1.27 kiyohara */
855 1.27 kiyohara void
856 1.27 kiyohara fw_xfer_done(struct fw_xfer *xfer)
857 1.1 kiyohara {
858 1.1 kiyohara
859 1.27 kiyohara if (xfer->hand == NULL) {
860 1.27 kiyohara aprint_error_dev(xfer->fc->bdev, "hand == NULL\n");
861 1.27 kiyohara return;
862 1.27 kiyohara }
863 1.27 kiyohara
864 1.27 kiyohara if (xfer->fc == NULL)
865 1.27 kiyohara panic("fw_xfer_done: why xfer->fc is NULL?");
866 1.1 kiyohara
867 1.27 kiyohara fw_tl_free(xfer->fc, xfer);
868 1.27 kiyohara xfer->hand(xfer);
869 1.1 kiyohara }
870 1.27 kiyohara
871 1.27 kiyohara void
872 1.27 kiyohara fw_xfer_unload(struct fw_xfer* xfer)
873 1.27 kiyohara {
874 1.27 kiyohara
875 1.27 kiyohara if (xfer == NULL)
876 1.27 kiyohara return;
877 1.27 kiyohara if (xfer->flag & FWXF_INQ) {
878 1.27 kiyohara aprint_error_dev(xfer->fc->bdev, "fw_xfer_free FWXF_INQ\n");
879 1.27 kiyohara mutex_enter(&xfer->q->q_mtx);
880 1.27 kiyohara STAILQ_REMOVE(&xfer->q->q, xfer, fw_xfer, link);
881 1.27 kiyohara #if 0
882 1.27 kiyohara xfer->q->queued--;
883 1.27 kiyohara #endif
884 1.27 kiyohara mutex_exit(&xfer->q->q_mtx);
885 1.27 kiyohara }
886 1.27 kiyohara if (xfer->fc != NULL) {
887 1.27 kiyohara #if 1
888 1.27 kiyohara if (xfer->flag == FWXF_START)
889 1.27 kiyohara /*
890 1.27 kiyohara * This could happen if:
891 1.27 kiyohara * 1. We call fwohci_arcv() before fwohci_txd().
892 1.27 kiyohara * 2. firewire_watch() is called.
893 1.27 kiyohara */
894 1.27 kiyohara aprint_error_dev(xfer->fc->bdev,
895 1.27 kiyohara "fw_xfer_free FWXF_START\n");
896 1.1 kiyohara #endif
897 1.27 kiyohara }
898 1.27 kiyohara xfer->flag = FWXF_INIT;
899 1.27 kiyohara xfer->resp = 0;
900 1.27 kiyohara }
901 1.1 kiyohara
902 1.1 kiyohara /*
903 1.27 kiyohara * To free IEEE1394 XFER structure.
904 1.1 kiyohara */
905 1.27 kiyohara void
906 1.27 kiyohara fw_xfer_free(struct fw_xfer* xfer)
907 1.1 kiyohara {
908 1.1 kiyohara
909 1.27 kiyohara if (xfer == NULL) {
910 1.36 jym aprint_error("fw_xfer_free: xfer == NULL\n");
911 1.27 kiyohara return;
912 1.27 kiyohara }
913 1.27 kiyohara fw_xfer_unload(xfer);
914 1.27 kiyohara cv_destroy(&xfer->cv);
915 1.35 christos free(xfer, xfer->malloc);
916 1.27 kiyohara }
917 1.27 kiyohara
918 1.27 kiyohara void
919 1.27 kiyohara fw_xfer_free_buf(struct fw_xfer* xfer)
920 1.27 kiyohara {
921 1.1 kiyohara
922 1.27 kiyohara if (xfer == NULL) {
923 1.36 jym aprint_error("fw_xfer_free_buf: xfer == NULL\n");
924 1.27 kiyohara return;
925 1.27 kiyohara }
926 1.27 kiyohara fw_xfer_unload(xfer);
927 1.35 christos if (xfer->send.payload != NULL) {
928 1.35 christos free(xfer->send.payload, xfer->malloc);
929 1.35 christos }
930 1.35 christos if (xfer->recv.payload != NULL) {
931 1.35 christos free(xfer->recv.payload, xfer->malloc);
932 1.35 christos }
933 1.27 kiyohara cv_destroy(&xfer->cv);
934 1.35 christos free(xfer, xfer->malloc);
935 1.27 kiyohara }
936 1.27 kiyohara
937 1.27 kiyohara void
938 1.27 kiyohara fw_asy_callback_free(struct fw_xfer *xfer)
939 1.27 kiyohara {
940 1.27 kiyohara
941 1.27 kiyohara #if 0
942 1.27 kiyohara printf("asyreq done flag=%d resp=%d\n", xfer->flag, xfer->resp);
943 1.27 kiyohara #endif
944 1.27 kiyohara fw_xfer_free(xfer);
945 1.27 kiyohara }
946 1.27 kiyohara
947 1.27 kiyohara /*
948 1.27 kiyohara * To receive self ID.
949 1.27 kiyohara */
950 1.27 kiyohara void
951 1.27 kiyohara fw_sidrcv(struct firewire_comm* fc, uint32_t *sid, u_int len)
952 1.27 kiyohara {
953 1.27 kiyohara uint32_t *p;
954 1.27 kiyohara union fw_self_id *self_id;
955 1.27 kiyohara u_int i, j, node, c_port = 0, i_branch = 0;
956 1.27 kiyohara
957 1.27 kiyohara fc->sid_cnt = len / (sizeof(uint32_t) * 2);
958 1.27 kiyohara fc->max_node = fc->nodeid & 0x3f;
959 1.27 kiyohara CSRARC(fc, NODE_IDS) = ((uint32_t)fc->nodeid) << 16;
960 1.27 kiyohara fc->status = FWBUSCYMELECT;
961 1.27 kiyohara fc->topology_map->crc_len = 2;
962 1.27 kiyohara fc->topology_map->generation++;
963 1.27 kiyohara fc->topology_map->self_id_count = 0;
964 1.27 kiyohara fc->topology_map->node_count = 0;
965 1.27 kiyohara fc->speed_map->generation++;
966 1.27 kiyohara fc->speed_map->crc_len = 1 + (64*64 + 3) / 4;
967 1.27 kiyohara self_id = fc->topology_map->self_id;
968 1.27 kiyohara for (i = 0; i < fc->sid_cnt; i++) {
969 1.27 kiyohara if (sid[1] != ~sid[0]) {
970 1.27 kiyohara aprint_error_dev(fc->bdev,
971 1.27 kiyohara "ERROR invalid self-id packet\n");
972 1.27 kiyohara sid += 2;
973 1.27 kiyohara continue;
974 1.27 kiyohara }
975 1.27 kiyohara *self_id = *((union fw_self_id *)sid);
976 1.27 kiyohara fc->topology_map->crc_len++;
977 1.27 kiyohara if (self_id->p0.sequel == 0) {
978 1.27 kiyohara fc->topology_map->node_count++;
979 1.27 kiyohara c_port = 0;
980 1.27 kiyohara if (firewire_debug)
981 1.27 kiyohara fw_print_sid(sid[0]);
982 1.27 kiyohara node = self_id->p0.phy_id;
983 1.27 kiyohara if (fc->max_node < node)
984 1.27 kiyohara fc->max_node = self_id->p0.phy_id;
985 1.27 kiyohara /* XXX I'm not sure this is the right speed_map */
986 1.27 kiyohara fc->speed_map->speed[node][node] =
987 1.27 kiyohara self_id->p0.phy_speed;
988 1.27 kiyohara for (j = 0; j < node; j++)
989 1.27 kiyohara fc->speed_map->speed[j][node] =
990 1.27 kiyohara fc->speed_map->speed[node][j] =
991 1.27 kiyohara min(fc->speed_map->speed[j][j],
992 1.27 kiyohara self_id->p0.phy_speed);
993 1.27 kiyohara if ((fc->irm == -1 || self_id->p0.phy_id > fc->irm) &&
994 1.27 kiyohara (self_id->p0.link_active && self_id->p0.contender))
995 1.27 kiyohara fc->irm = self_id->p0.phy_id;
996 1.27 kiyohara if (self_id->p0.port0 >= 0x2)
997 1.27 kiyohara c_port++;
998 1.27 kiyohara if (self_id->p0.port1 >= 0x2)
999 1.27 kiyohara c_port++;
1000 1.27 kiyohara if (self_id->p0.port2 >= 0x2)
1001 1.27 kiyohara c_port++;
1002 1.27 kiyohara }
1003 1.27 kiyohara if (c_port > 2)
1004 1.27 kiyohara i_branch += (c_port - 2);
1005 1.27 kiyohara sid += 2;
1006 1.27 kiyohara self_id++;
1007 1.27 kiyohara fc->topology_map->self_id_count++;
1008 1.27 kiyohara }
1009 1.27 kiyohara /* CRC */
1010 1.27 kiyohara fc->topology_map->crc =
1011 1.27 kiyohara fw_crc16((uint32_t *)&fc->topology_map->generation,
1012 1.27 kiyohara fc->topology_map->crc_len * 4);
1013 1.27 kiyohara fc->speed_map->crc = fw_crc16((uint32_t *)&fc->speed_map->generation,
1014 1.27 kiyohara fc->speed_map->crc_len * 4);
1015 1.27 kiyohara /* byteswap and copy to CSR */
1016 1.27 kiyohara p = (uint32_t *)fc->topology_map;
1017 1.27 kiyohara for (i = 0; i <= fc->topology_map->crc_len; i++)
1018 1.27 kiyohara CSRARC(fc, TOPO_MAP + i * 4) = htonl(*p++);
1019 1.27 kiyohara p = (uint32_t *)fc->speed_map;
1020 1.27 kiyohara CSRARC(fc, SPED_MAP) = htonl(*p++);
1021 1.27 kiyohara CSRARC(fc, SPED_MAP + 4) = htonl(*p++);
1022 1.27 kiyohara /* don't byte-swap uint8_t array */
1023 1.27 kiyohara memcpy(&CSRARC(fc, SPED_MAP + 8), p, (fc->speed_map->crc_len - 1) * 4);
1024 1.27 kiyohara
1025 1.27 kiyohara fc->max_hop = fc->max_node - i_branch;
1026 1.27 kiyohara aprint_normal_dev(fc->bdev, "%d nodes, maxhop <= %d %s irm(%d)%s\n",
1027 1.27 kiyohara fc->max_node + 1, fc->max_hop,
1028 1.27 kiyohara (fc->irm == -1) ? "Not IRM capable" : "cable IRM",
1029 1.27 kiyohara fc->irm,
1030 1.27 kiyohara (fc->irm == fc->nodeid) ? " (me)" : "");
1031 1.27 kiyohara
1032 1.27 kiyohara if (try_bmr && (fc->irm != -1) && (CSRARC(fc, BUS_MGR_ID) == 0x3f)) {
1033 1.27 kiyohara if (fc->irm == fc->nodeid) {
1034 1.27 kiyohara fc->status = FWBUSMGRDONE;
1035 1.27 kiyohara CSRARC(fc, BUS_MGR_ID) = fc->set_bmr(fc, fc->irm);
1036 1.27 kiyohara fw_bmr(fc);
1037 1.27 kiyohara } else {
1038 1.27 kiyohara fc->status = FWBUSMGRELECT;
1039 1.27 kiyohara callout_schedule(&fc->bmr_callout, hz/8);
1040 1.27 kiyohara }
1041 1.27 kiyohara } else
1042 1.27 kiyohara fc->status = FWBUSMGRDONE;
1043 1.27 kiyohara
1044 1.27 kiyohara callout_schedule(&fc->busprobe_callout, hz/4);
1045 1.27 kiyohara }
1046 1.27 kiyohara
1047 1.27 kiyohara /*
1048 1.27 kiyohara * Generic packet receiving process.
1049 1.27 kiyohara */
1050 1.27 kiyohara void
1051 1.27 kiyohara fw_rcv(struct fw_rcv_buf *rb)
1052 1.27 kiyohara {
1053 1.27 kiyohara struct fw_pkt *fp, *resfp;
1054 1.27 kiyohara struct fw_bind *bind;
1055 1.27 kiyohara int tcode;
1056 1.27 kiyohara int i, len, oldstate;
1057 1.27 kiyohara #if 0
1058 1.27 kiyohara {
1059 1.27 kiyohara uint32_t *qld;
1060 1.27 kiyohara int i;
1061 1.27 kiyohara qld = (uint32_t *)buf;
1062 1.27 kiyohara printf("spd %d len:%d\n", spd, len);
1063 1.27 kiyohara for (i = 0; i <= len && i < 32; i+= 4) {
1064 1.27 kiyohara printf("0x%08x ", ntohl(qld[i/4]));
1065 1.27 kiyohara if ((i % 16) == 15) printf("\n");
1066 1.27 kiyohara }
1067 1.27 kiyohara if ((i % 16) != 15) printf("\n");
1068 1.27 kiyohara }
1069 1.27 kiyohara #endif
1070 1.27 kiyohara fp = (struct fw_pkt *)rb->vec[0].iov_base;
1071 1.27 kiyohara tcode = fp->mode.common.tcode;
1072 1.27 kiyohara switch (tcode) {
1073 1.27 kiyohara case FWTCODE_WRES:
1074 1.27 kiyohara case FWTCODE_RRESQ:
1075 1.27 kiyohara case FWTCODE_RRESB:
1076 1.27 kiyohara case FWTCODE_LRES:
1077 1.27 kiyohara rb->xfer = fw_tl2xfer(rb->fc, fp->mode.hdr.src,
1078 1.27 kiyohara fp->mode.hdr.tlrt >> 2, tcode);
1079 1.27 kiyohara if (rb->xfer == NULL) {
1080 1.27 kiyohara aprint_error_dev(rb->fc->bdev, "unknown response"
1081 1.27 kiyohara " %s(%x) src=0x%x tl=0x%x rt=%d data=0x%x\n",
1082 1.27 kiyohara tcode_str[tcode], tcode,
1083 1.27 kiyohara fp->mode.hdr.src,
1084 1.27 kiyohara fp->mode.hdr.tlrt >> 2,
1085 1.27 kiyohara fp->mode.hdr.tlrt & 3,
1086 1.27 kiyohara fp->mode.rresq.data);
1087 1.27 kiyohara #if 0
1088 1.27 kiyohara printf("try ad-hoc work around!!\n");
1089 1.27 kiyohara rb->xfer = fw_tl2xfer(rb->fc, fp->mode.hdr.src,
1090 1.27 kiyohara (fp->mode.hdr.tlrt >> 2) ^ 3);
1091 1.27 kiyohara if (rb->xfer == NULL) {
1092 1.27 kiyohara printf("no use...\n");
1093 1.27 kiyohara return;
1094 1.27 kiyohara }
1095 1.27 kiyohara #else
1096 1.27 kiyohara return;
1097 1.27 kiyohara #endif
1098 1.27 kiyohara }
1099 1.27 kiyohara fw_rcv_copy(rb);
1100 1.27 kiyohara if (rb->xfer->recv.hdr.mode.wres.rtcode != RESP_CMP)
1101 1.27 kiyohara rb->xfer->resp = EIO;
1102 1.27 kiyohara else
1103 1.27 kiyohara rb->xfer->resp = 0;
1104 1.27 kiyohara /* make sure the packet is drained in AT queue */
1105 1.27 kiyohara oldstate = rb->xfer->flag;
1106 1.27 kiyohara rb->xfer->flag = FWXF_RCVD;
1107 1.27 kiyohara switch (oldstate) {
1108 1.27 kiyohara case FWXF_SENT:
1109 1.27 kiyohara fw_xfer_done(rb->xfer);
1110 1.27 kiyohara break;
1111 1.27 kiyohara case FWXF_START:
1112 1.27 kiyohara #if 0
1113 1.27 kiyohara if (firewire_debug)
1114 1.27 kiyohara printf("not sent yet tl=%x\n", rb->xfer->tl);
1115 1.27 kiyohara #endif
1116 1.27 kiyohara break;
1117 1.27 kiyohara default:
1118 1.27 kiyohara aprint_error_dev(rb->fc->bdev,
1119 1.27 kiyohara "unexpected flag 0x%02x\n", rb->xfer->flag);
1120 1.27 kiyohara }
1121 1.27 kiyohara return;
1122 1.27 kiyohara case FWTCODE_WREQQ:
1123 1.27 kiyohara case FWTCODE_WREQB:
1124 1.27 kiyohara case FWTCODE_RREQQ:
1125 1.27 kiyohara case FWTCODE_RREQB:
1126 1.27 kiyohara case FWTCODE_LREQ:
1127 1.27 kiyohara bind = fw_bindlookup(rb->fc, fp->mode.rreqq.dest_hi,
1128 1.27 kiyohara fp->mode.rreqq.dest_lo);
1129 1.27 kiyohara if (bind == NULL) {
1130 1.27 kiyohara #if 1
1131 1.27 kiyohara aprint_error_dev(rb->fc->bdev, "Unknown service addr"
1132 1.27 kiyohara " 0x%04x:0x%08x %s(%x) src=0x%x data=%x\n",
1133 1.27 kiyohara fp->mode.wreqq.dest_hi, fp->mode.wreqq.dest_lo,
1134 1.27 kiyohara tcode_str[tcode], tcode,
1135 1.27 kiyohara fp->mode.hdr.src, ntohl(fp->mode.wreqq.data));
1136 1.27 kiyohara #endif
1137 1.27 kiyohara if (rb->fc->status == FWBUSINIT) {
1138 1.27 kiyohara aprint_error_dev(rb->fc->bdev,
1139 1.27 kiyohara "cannot respond(bus reset)!\n");
1140 1.27 kiyohara return;
1141 1.27 kiyohara }
1142 1.27 kiyohara rb->xfer = fw_xfer_alloc(M_FWXFER);
1143 1.27 kiyohara if (rb->xfer == NULL)
1144 1.27 kiyohara return;
1145 1.27 kiyohara rb->xfer->send.spd = rb->spd;
1146 1.27 kiyohara rb->xfer->send.pay_len = 0;
1147 1.27 kiyohara resfp = &rb->xfer->send.hdr;
1148 1.27 kiyohara switch (tcode) {
1149 1.27 kiyohara case FWTCODE_WREQQ:
1150 1.27 kiyohara case FWTCODE_WREQB:
1151 1.27 kiyohara resfp->mode.hdr.tcode = FWTCODE_WRES;
1152 1.27 kiyohara break;
1153 1.27 kiyohara case FWTCODE_RREQQ:
1154 1.27 kiyohara resfp->mode.hdr.tcode = FWTCODE_RRESQ;
1155 1.27 kiyohara break;
1156 1.27 kiyohara case FWTCODE_RREQB:
1157 1.27 kiyohara resfp->mode.hdr.tcode = FWTCODE_RRESB;
1158 1.27 kiyohara break;
1159 1.27 kiyohara case FWTCODE_LREQ:
1160 1.27 kiyohara resfp->mode.hdr.tcode = FWTCODE_LRES;
1161 1.27 kiyohara break;
1162 1.27 kiyohara }
1163 1.27 kiyohara resfp->mode.hdr.dst = fp->mode.hdr.src;
1164 1.27 kiyohara resfp->mode.hdr.tlrt = fp->mode.hdr.tlrt;
1165 1.27 kiyohara resfp->mode.hdr.pri = fp->mode.hdr.pri;
1166 1.27 kiyohara resfp->mode.rresb.rtcode = RESP_ADDRESS_ERROR;
1167 1.27 kiyohara resfp->mode.rresb.extcode = 0;
1168 1.27 kiyohara resfp->mode.rresb.len = 0;
1169 1.27 kiyohara /*
1170 1.27 kiyohara rb->xfer->hand = fw_xferwake;
1171 1.27 kiyohara */
1172 1.27 kiyohara rb->xfer->hand = fw_xfer_free;
1173 1.27 kiyohara if (fw_asyreq(rb->fc, -1, rb->xfer)) {
1174 1.27 kiyohara fw_xfer_free(rb->xfer);
1175 1.27 kiyohara return;
1176 1.27 kiyohara }
1177 1.27 kiyohara return;
1178 1.27 kiyohara }
1179 1.27 kiyohara len = 0;
1180 1.27 kiyohara for (i = 0; i < rb->nvec; i++)
1181 1.27 kiyohara len += rb->vec[i].iov_len;
1182 1.27 kiyohara mutex_enter(&bind->fwb_mtx);
1183 1.27 kiyohara rb->xfer = STAILQ_FIRST(&bind->xferlist);
1184 1.27 kiyohara if (rb->xfer == NULL) {
1185 1.27 kiyohara mutex_exit(&bind->fwb_mtx);
1186 1.27 kiyohara #if 1
1187 1.27 kiyohara aprint_error_dev(rb->fc->bdev,
1188 1.27 kiyohara "Discard a packet for this bind.\n");
1189 1.27 kiyohara #endif
1190 1.27 kiyohara return;
1191 1.27 kiyohara }
1192 1.27 kiyohara STAILQ_REMOVE_HEAD(&bind->xferlist, link);
1193 1.27 kiyohara mutex_exit(&bind->fwb_mtx);
1194 1.27 kiyohara fw_rcv_copy(rb);
1195 1.27 kiyohara rb->xfer->hand(rb->xfer);
1196 1.27 kiyohara return;
1197 1.27 kiyohara
1198 1.27 kiyohara default:
1199 1.27 kiyohara aprint_error_dev(rb->fc->bdev, "unknow tcode %d\n", tcode);
1200 1.27 kiyohara break;
1201 1.27 kiyohara }
1202 1.27 kiyohara }
1203 1.27 kiyohara
1204 1.27 kiyohara /*
1205 1.27 kiyohara * CRC16 check-sum for IEEE1394 register blocks.
1206 1.27 kiyohara */
1207 1.27 kiyohara uint16_t
1208 1.27 kiyohara fw_crc16(uint32_t *ptr, uint32_t len)
1209 1.27 kiyohara {
1210 1.27 kiyohara uint32_t i, sum, crc = 0;
1211 1.27 kiyohara int shift;
1212 1.27 kiyohara
1213 1.27 kiyohara len = (len + 3) & ~3;
1214 1.27 kiyohara for (i = 0; i < len; i+= 4) {
1215 1.27 kiyohara for (shift = 28; shift >= 0; shift -= 4) {
1216 1.27 kiyohara sum = ((crc >> 12) ^ (ptr[i/4] >> shift)) & 0xf;
1217 1.27 kiyohara crc = (crc << 4) ^ (sum << 12) ^ (sum << 5) ^ sum;
1218 1.27 kiyohara }
1219 1.27 kiyohara crc &= 0xffff;
1220 1.27 kiyohara }
1221 1.27 kiyohara return (uint16_t)crc;
1222 1.27 kiyohara }
1223 1.27 kiyohara
1224 1.27 kiyohara int
1225 1.27 kiyohara fw_open_isodma(struct firewire_comm *fc, int tx)
1226 1.27 kiyohara {
1227 1.27 kiyohara struct fw_xferq **xferqa;
1228 1.27 kiyohara struct fw_xferq *xferq;
1229 1.27 kiyohara int i;
1230 1.27 kiyohara
1231 1.27 kiyohara if (tx)
1232 1.27 kiyohara xferqa = fc->it;
1233 1.27 kiyohara else
1234 1.27 kiyohara xferqa = fc->ir;
1235 1.27 kiyohara
1236 1.27 kiyohara mutex_enter(&fc->fc_mtx);
1237 1.27 kiyohara for (i = 0; i < fc->nisodma; i++) {
1238 1.27 kiyohara xferq = xferqa[i];
1239 1.27 kiyohara if (!(xferq->flag & FWXFERQ_OPEN)) {
1240 1.27 kiyohara xferq->flag |= FWXFERQ_OPEN;
1241 1.27 kiyohara break;
1242 1.27 kiyohara }
1243 1.27 kiyohara }
1244 1.27 kiyohara if (i == fc->nisodma) {
1245 1.27 kiyohara aprint_error_dev(fc->bdev, "no free dma channel (tx=%d)\n", tx);
1246 1.27 kiyohara i = -1;
1247 1.27 kiyohara }
1248 1.27 kiyohara mutex_exit(&fc->fc_mtx);
1249 1.27 kiyohara return i;
1250 1.27 kiyohara }
1251 1.27 kiyohara
1252 1.27 kiyohara /*
1253 1.27 kiyohara * Async. request with given xfer structure.
1254 1.27 kiyohara */
1255 1.27 kiyohara static void
1256 1.27 kiyohara fw_asystart(struct fw_xfer *xfer)
1257 1.27 kiyohara {
1258 1.27 kiyohara struct firewire_comm *fc = xfer->fc;
1259 1.27 kiyohara
1260 1.27 kiyohara /* Protect from interrupt/timeout */
1261 1.27 kiyohara mutex_enter(&xfer->q->q_mtx);
1262 1.27 kiyohara xfer->flag = FWXF_INQ;
1263 1.27 kiyohara STAILQ_INSERT_TAIL(&xfer->q->q, xfer, link);
1264 1.27 kiyohara #if 0
1265 1.27 kiyohara xfer->q->queued++;
1266 1.27 kiyohara #endif
1267 1.27 kiyohara mutex_exit(&xfer->q->q_mtx);
1268 1.27 kiyohara /* XXX just queue for mbuf */
1269 1.27 kiyohara if (xfer->mbuf == NULL)
1270 1.27 kiyohara xfer->q->start(fc);
1271 1.27 kiyohara return;
1272 1.27 kiyohara }
1273 1.27 kiyohara
1274 1.27 kiyohara static void
1275 1.27 kiyohara firewire_xfer_timeout(struct firewire_comm *fc)
1276 1.27 kiyohara {
1277 1.27 kiyohara struct fw_xfer *xfer;
1278 1.27 kiyohara struct timeval tv;
1279 1.27 kiyohara struct timeval split_timeout;
1280 1.27 kiyohara STAILQ_HEAD(, fw_xfer) xfer_timeout;
1281 1.27 kiyohara int i;
1282 1.27 kiyohara
1283 1.27 kiyohara split_timeout.tv_sec = 0;
1284 1.27 kiyohara split_timeout.tv_usec = 200 * 1000; /* 200 msec */
1285 1.27 kiyohara
1286 1.27 kiyohara microtime(&tv);
1287 1.27 kiyohara timersub(&tv, &split_timeout, &tv);
1288 1.27 kiyohara STAILQ_INIT(&xfer_timeout);
1289 1.27 kiyohara
1290 1.27 kiyohara mutex_enter(&fc->tlabel_lock);
1291 1.27 kiyohara for (i = 0; i < 0x40; i++) {
1292 1.27 kiyohara while ((xfer = STAILQ_FIRST(&fc->tlabels[i])) != NULL) {
1293 1.27 kiyohara if ((xfer->flag & FWXF_SENT) == 0)
1294 1.27 kiyohara /* not sent yet */
1295 1.27 kiyohara break;
1296 1.27 kiyohara if (timercmp(&xfer->tv, &tv, >))
1297 1.27 kiyohara /* the rests are newer than this */
1298 1.27 kiyohara break;
1299 1.27 kiyohara aprint_error_dev(fc->bdev,
1300 1.27 kiyohara "split transaction timeout: tl=0x%x flag=0x%02x\n",
1301 1.27 kiyohara i, xfer->flag);
1302 1.27 kiyohara fw_dump_hdr(&xfer->send.hdr, "send");
1303 1.27 kiyohara xfer->resp = ETIMEDOUT;
1304 1.27 kiyohara STAILQ_REMOVE_HEAD(&fc->tlabels[i], tlabel);
1305 1.27 kiyohara STAILQ_INSERT_TAIL(&xfer_timeout, xfer, tlabel);
1306 1.27 kiyohara }
1307 1.27 kiyohara }
1308 1.27 kiyohara mutex_exit(&fc->tlabel_lock);
1309 1.27 kiyohara fc->timeout(fc);
1310 1.1 kiyohara
1311 1.27 kiyohara STAILQ_FOREACH(xfer, &xfer_timeout, tlabel)
1312 1.27 kiyohara xfer->hand(xfer);
1313 1.1 kiyohara }
1314 1.27 kiyohara
1315 1.27 kiyohara #define WATCHDOG_HZ 10
1316 1.27 kiyohara static void
1317 1.27 kiyohara firewire_watchdog(void *arg)
1318 1.1 kiyohara {
1319 1.27 kiyohara struct firewire_comm *fc;
1320 1.27 kiyohara static int watchdog_clock = 0;
1321 1.1 kiyohara
1322 1.27 kiyohara fc = (struct firewire_comm *)arg;
1323 1.1 kiyohara
1324 1.27 kiyohara /*
1325 1.27 kiyohara * At boot stage, the device interrupt is disabled and
1326 1.27 kiyohara * We encounter a timeout easily. To avoid this,
1327 1.27 kiyohara * ignore clock interrupt for a while.
1328 1.27 kiyohara */
1329 1.27 kiyohara if (watchdog_clock > WATCHDOG_HZ * 15)
1330 1.27 kiyohara firewire_xfer_timeout(fc);
1331 1.27 kiyohara else
1332 1.27 kiyohara watchdog_clock++;
1333 1.16 kiyohara
1334 1.27 kiyohara callout_schedule(&fc->timeout_callout, hz / WATCHDOG_HZ);
1335 1.16 kiyohara }
1336 1.1 kiyohara
1337 1.1 kiyohara static void
1338 1.1 kiyohara fw_xferq_drain(struct fw_xferq *xferq)
1339 1.1 kiyohara {
1340 1.1 kiyohara struct fw_xfer *xfer;
1341 1.1 kiyohara
1342 1.1 kiyohara while ((xfer = STAILQ_FIRST(&xferq->q)) != NULL) {
1343 1.1 kiyohara STAILQ_REMOVE_HEAD(&xferq->q, link);
1344 1.16 kiyohara #if 0
1345 1.27 kiyohara xferq->queued--;
1346 1.16 kiyohara #endif
1347 1.1 kiyohara xfer->resp = EAGAIN;
1348 1.16 kiyohara xfer->flag = FWXF_SENTERR;
1349 1.1 kiyohara fw_xfer_done(xfer);
1350 1.1 kiyohara }
1351 1.1 kiyohara }
1352 1.1 kiyohara
1353 1.1 kiyohara static void
1354 1.1 kiyohara fw_reset_csr(struct firewire_comm *fc)
1355 1.1 kiyohara {
1356 1.1 kiyohara int i;
1357 1.1 kiyohara
1358 1.27 kiyohara CSRARC(fc, STATE_CLEAR) =
1359 1.27 kiyohara 1 << 23 | 0 << 17 | 1 << 16 | 1 << 15 | 1 << 14;
1360 1.1 kiyohara CSRARC(fc, STATE_SET) = CSRARC(fc, STATE_CLEAR);
1361 1.1 kiyohara CSRARC(fc, NODE_IDS) = 0x3f;
1362 1.1 kiyohara
1363 1.1 kiyohara CSRARC(fc, TOPO_MAP + 8) = 0;
1364 1.1 kiyohara fc->irm = -1;
1365 1.1 kiyohara
1366 1.1 kiyohara fc->max_node = -1;
1367 1.1 kiyohara
1368 1.27 kiyohara for (i = 2; i < 0x100/4 - 2; i++)
1369 1.1 kiyohara CSRARC(fc, SPED_MAP + i * 4) = 0;
1370 1.27 kiyohara CSRARC(fc, STATE_CLEAR) =
1371 1.27 kiyohara 1 << 23 | 0 << 17 | 1 << 16 | 1 << 15 | 1 << 14;
1372 1.1 kiyohara CSRARC(fc, STATE_SET) = CSRARC(fc, STATE_CLEAR);
1373 1.1 kiyohara CSRARC(fc, RESET_START) = 0;
1374 1.1 kiyohara CSRARC(fc, SPLIT_TIMEOUT_HI) = 0;
1375 1.1 kiyohara CSRARC(fc, SPLIT_TIMEOUT_LO) = 800 << 19;
1376 1.1 kiyohara CSRARC(fc, CYCLE_TIME) = 0x0;
1377 1.1 kiyohara CSRARC(fc, BUS_TIME) = 0x0;
1378 1.1 kiyohara CSRARC(fc, BUS_MGR_ID) = 0x3f;
1379 1.1 kiyohara CSRARC(fc, BANDWIDTH_AV) = 4915;
1380 1.1 kiyohara CSRARC(fc, CHANNELS_AV_HI) = 0xffffffff;
1381 1.1 kiyohara CSRARC(fc, CHANNELS_AV_LO) = 0xffffffff;
1382 1.1 kiyohara CSRARC(fc, IP_CHANNELS) = (1 << 31);
1383 1.1 kiyohara
1384 1.1 kiyohara CSRARC(fc, CONF_ROM) = 0x04 << 24;
1385 1.1 kiyohara CSRARC(fc, CONF_ROM + 4) = 0x31333934; /* means strings 1394 */
1386 1.27 kiyohara CSRARC(fc, CONF_ROM + 8) =
1387 1.27 kiyohara 1 << 31 | 1 << 30 | 1 << 29 | 1 << 28 | 0xff << 16 | 0x09 << 8;
1388 1.1 kiyohara CSRARC(fc, CONF_ROM + 0xc) = 0;
1389 1.1 kiyohara
1390 1.1 kiyohara /* DV depend CSRs see blue book */
1391 1.27 kiyohara CSRARC(fc, oPCR) &= ~DV_BROADCAST_ON;
1392 1.27 kiyohara CSRARC(fc, iPCR) &= ~DV_BROADCAST_ON;
1393 1.1 kiyohara
1394 1.27 kiyohara CSRARC(fc, STATE_CLEAR) &= ~(1 << 23 | 1 << 15 | 1 << 14);
1395 1.1 kiyohara CSRARC(fc, STATE_SET) = CSRARC(fc, STATE_CLEAR);
1396 1.1 kiyohara }
1397 1.1 kiyohara
1398 1.1 kiyohara static void
1399 1.1 kiyohara fw_init_crom(struct firewire_comm *fc)
1400 1.1 kiyohara {
1401 1.1 kiyohara struct crom_src *src;
1402 1.1 kiyohara
1403 1.1 kiyohara src = &fc->crom_src_buf->src;
1404 1.24 cegger memset(src, 0, sizeof(struct crom_src));
1405 1.1 kiyohara
1406 1.1 kiyohara /* BUS info sample */
1407 1.1 kiyohara src->hdr.info_len = 4;
1408 1.1 kiyohara
1409 1.1 kiyohara src->businfo.bus_name = CSR_BUS_NAME_IEEE1394;
1410 1.1 kiyohara
1411 1.1 kiyohara src->businfo.irmc = 1;
1412 1.1 kiyohara src->businfo.cmc = 1;
1413 1.1 kiyohara src->businfo.isc = 1;
1414 1.1 kiyohara src->businfo.bmc = 1;
1415 1.1 kiyohara src->businfo.pmc = 0;
1416 1.1 kiyohara src->businfo.cyc_clk_acc = 100;
1417 1.1 kiyohara src->businfo.max_rec = fc->maxrec;
1418 1.1 kiyohara src->businfo.max_rom = MAXROM_4;
1419 1.27 kiyohara src->businfo.generation = FW_GENERATION_CHANGEABLE;
1420 1.1 kiyohara src->businfo.link_spd = fc->speed;
1421 1.1 kiyohara
1422 1.1 kiyohara src->businfo.eui64.hi = fc->eui.hi;
1423 1.1 kiyohara src->businfo.eui64.lo = fc->eui.lo;
1424 1.1 kiyohara
1425 1.27 kiyohara STAILQ_INIT(&src->chunk_list);
1426 1.1 kiyohara
1427 1.27 kiyohara fc->crom_src = src;
1428 1.27 kiyohara fc->crom_root = &fc->crom_src_buf->root;
1429 1.1 kiyohara }
1430 1.1 kiyohara
1431 1.27 kiyohara static void
1432 1.27 kiyohara fw_reset_crom(struct firewire_comm *fc)
1433 1.1 kiyohara {
1434 1.27 kiyohara struct crom_src_buf *buf;
1435 1.27 kiyohara struct crom_src *src;
1436 1.27 kiyohara struct crom_chunk *root;
1437 1.1 kiyohara
1438 1.27 kiyohara buf = fc->crom_src_buf;
1439 1.27 kiyohara src = fc->crom_src;
1440 1.27 kiyohara root = fc->crom_root;
1441 1.1 kiyohara
1442 1.27 kiyohara STAILQ_INIT(&src->chunk_list);
1443 1.1 kiyohara
1444 1.27 kiyohara memset(root, 0, sizeof(struct crom_chunk));
1445 1.27 kiyohara crom_add_chunk(src, NULL, root, 0);
1446 1.27 kiyohara crom_add_entry(root, CSRKEY_NCAP, 0x0083c0); /* XXX */
1447 1.27 kiyohara /* private company_id */
1448 1.27 kiyohara crom_add_entry(root, CSRKEY_VENDOR, CSRVAL_VENDOR_PRIVATE);
1449 1.27 kiyohara crom_add_simple_text(src, root, &buf->vendor, PROJECT_STR);
1450 1.27 kiyohara crom_add_entry(root, CSRKEY_HW, __NetBSD_Version__);
1451 1.27 kiyohara crom_add_simple_text(src, root, &buf->hw, hostname);
1452 1.1 kiyohara }
1453 1.1 kiyohara
1454 1.1 kiyohara /*
1455 1.16 kiyohara * dump packet header
1456 1.16 kiyohara */
1457 1.16 kiyohara static void
1458 1.16 kiyohara fw_dump_hdr(struct fw_pkt *fp, const char *prefix)
1459 1.16 kiyohara {
1460 1.27 kiyohara
1461 1.16 kiyohara printf("%s: dst=0x%02x tl=0x%02x rt=%d tcode=0x%x pri=0x%x "
1462 1.16 kiyohara "src=0x%03x\n", prefix,
1463 1.16 kiyohara fp->mode.hdr.dst & 0x3f,
1464 1.16 kiyohara fp->mode.hdr.tlrt >> 2, fp->mode.hdr.tlrt & 3,
1465 1.16 kiyohara fp->mode.hdr.tcode, fp->mode.hdr.pri,
1466 1.16 kiyohara fp->mode.hdr.src);
1467 1.16 kiyohara }
1468 1.16 kiyohara
1469 1.16 kiyohara /*
1470 1.1 kiyohara * To free transaction label.
1471 1.1 kiyohara */
1472 1.1 kiyohara static void
1473 1.1 kiyohara fw_tl_free(struct firewire_comm *fc, struct fw_xfer *xfer)
1474 1.1 kiyohara {
1475 1.1 kiyohara struct fw_xfer *txfer;
1476 1.1 kiyohara
1477 1.1 kiyohara if (xfer->tl < 0)
1478 1.1 kiyohara return;
1479 1.1 kiyohara
1480 1.27 kiyohara mutex_enter(&fc->tlabel_lock);
1481 1.1 kiyohara #if 1 /* make sure the label is allocated */
1482 1.1 kiyohara STAILQ_FOREACH(txfer, &fc->tlabels[xfer->tl], tlabel)
1483 1.27 kiyohara if (txfer == xfer)
1484 1.1 kiyohara break;
1485 1.1 kiyohara if (txfer == NULL) {
1486 1.27 kiyohara mutex_exit(&fc->tlabel_lock);
1487 1.27 kiyohara aprint_error_dev(fc->bdev,
1488 1.27 kiyohara "the xfer is not in the queue (tlabel=%d, flag=0x%x)\n",
1489 1.27 kiyohara xfer->tl, xfer->flag);
1490 1.16 kiyohara fw_dump_hdr(&xfer->send.hdr, "send");
1491 1.16 kiyohara fw_dump_hdr(&xfer->recv.hdr, "recv");
1492 1.30 reinoud KASSERT(FALSE);
1493 1.1 kiyohara return;
1494 1.1 kiyohara }
1495 1.1 kiyohara #endif
1496 1.1 kiyohara
1497 1.1 kiyohara STAILQ_REMOVE(&fc->tlabels[xfer->tl], xfer, fw_xfer, tlabel);
1498 1.27 kiyohara mutex_exit(&fc->tlabel_lock);
1499 1.1 kiyohara return;
1500 1.1 kiyohara }
1501 1.1 kiyohara
1502 1.1 kiyohara /*
1503 1.1 kiyohara * To obtain XFER structure by transaction label.
1504 1.1 kiyohara */
1505 1.1 kiyohara static struct fw_xfer *
1506 1.16 kiyohara fw_tl2xfer(struct firewire_comm *fc, int node, int tlabel, int tcode)
1507 1.1 kiyohara {
1508 1.1 kiyohara struct fw_xfer *xfer;
1509 1.16 kiyohara int req;
1510 1.1 kiyohara
1511 1.27 kiyohara mutex_enter(&fc->tlabel_lock);
1512 1.1 kiyohara STAILQ_FOREACH(xfer, &fc->tlabels[tlabel], tlabel)
1513 1.27 kiyohara if (xfer->send.hdr.mode.hdr.dst == node) {
1514 1.27 kiyohara mutex_exit(&fc->tlabel_lock);
1515 1.27 kiyohara KASSERT(xfer->tl == tlabel);
1516 1.16 kiyohara /* extra sanity check */
1517 1.16 kiyohara req = xfer->send.hdr.mode.hdr.tcode;
1518 1.16 kiyohara if (xfer->fc->tcode[req].valid_res != tcode) {
1519 1.27 kiyohara aprint_error_dev(fc->bdev,
1520 1.27 kiyohara "invalid response tcode (0x%x for 0x%x)\n",
1521 1.16 kiyohara tcode, req);
1522 1.27 kiyohara return NULL;
1523 1.16 kiyohara }
1524 1.16 kiyohara
1525 1.1 kiyohara if (firewire_debug > 2)
1526 1.1 kiyohara printf("fw_tl2xfer: found tl=%d\n", tlabel);
1527 1.27 kiyohara return xfer;
1528 1.1 kiyohara }
1529 1.27 kiyohara mutex_exit(&fc->tlabel_lock);
1530 1.1 kiyohara if (firewire_debug > 1)
1531 1.1 kiyohara printf("fw_tl2xfer: not found tl=%d\n", tlabel);
1532 1.27 kiyohara return NULL;
1533 1.1 kiyohara }
1534 1.1 kiyohara
1535 1.1 kiyohara /*
1536 1.27 kiyohara * To configure PHY.
1537 1.1 kiyohara */
1538 1.1 kiyohara static void
1539 1.1 kiyohara fw_phy_config(struct firewire_comm *fc, int root_node, int gap_count)
1540 1.1 kiyohara {
1541 1.1 kiyohara struct fw_xfer *xfer;
1542 1.1 kiyohara struct fw_pkt *fp;
1543 1.1 kiyohara
1544 1.1 kiyohara fc->status = FWBUSPHYCONF;
1545 1.1 kiyohara
1546 1.1 kiyohara xfer = fw_xfer_alloc(M_FWXFER);
1547 1.1 kiyohara if (xfer == NULL)
1548 1.1 kiyohara return;
1549 1.1 kiyohara xfer->fc = fc;
1550 1.1 kiyohara xfer->hand = fw_asy_callback_free;
1551 1.1 kiyohara
1552 1.1 kiyohara fp = &xfer->send.hdr;
1553 1.1 kiyohara fp->mode.ld[1] = 0;
1554 1.1 kiyohara if (root_node >= 0)
1555 1.1 kiyohara fp->mode.ld[1] |= (root_node & 0x3f) << 24 | 1 << 23;
1556 1.1 kiyohara if (gap_count >= 0)
1557 1.1 kiyohara fp->mode.ld[1] |= 1 << 22 | (gap_count & 0x3f) << 16;
1558 1.1 kiyohara fp->mode.ld[2] = ~fp->mode.ld[1];
1559 1.1 kiyohara /* XXX Dangerous, how to pass PHY packet to device driver */
1560 1.1 kiyohara fp->mode.common.tcode |= FWTCODE_PHY;
1561 1.1 kiyohara
1562 1.1 kiyohara if (firewire_debug)
1563 1.27 kiyohara printf("root_node=%d gap_count=%d\n", root_node, gap_count);
1564 1.1 kiyohara fw_asyreq(fc, -1, xfer);
1565 1.1 kiyohara }
1566 1.1 kiyohara
1567 1.1 kiyohara /*
1568 1.27 kiyohara * Dump self ID.
1569 1.1 kiyohara */
1570 1.1 kiyohara static void
1571 1.1 kiyohara fw_print_sid(uint32_t sid)
1572 1.1 kiyohara {
1573 1.1 kiyohara union fw_self_id *s;
1574 1.27 kiyohara
1575 1.1 kiyohara s = (union fw_self_id *) &sid;
1576 1.27 kiyohara if (s->p0.sequel) {
1577 1.27 kiyohara if (s->p1.sequence_num == FW_SELF_ID_PAGE0)
1578 1.27 kiyohara printf("node:%d p3:%d p4:%d p5:%d p6:%d p7:%d"
1579 1.27 kiyohara "p8:%d p9:%d p10:%d\n",
1580 1.27 kiyohara s->p1.phy_id, s->p1.port3, s->p1.port4,
1581 1.27 kiyohara s->p1.port5, s->p1.port6, s->p1.port7,
1582 1.27 kiyohara s->p1.port8, s->p1.port9, s->p1.port10);
1583 1.27 kiyohara else if (s->p2.sequence_num == FW_SELF_ID_PAGE1)
1584 1.27 kiyohara printf("node:%d p11:%d p12:%d p13:%d p14:%d p15:%d\n",
1585 1.27 kiyohara s->p2.phy_id, s->p2.port11, s->p2.port12,
1586 1.27 kiyohara s->p2.port13, s->p2.port14, s->p2.port15);
1587 1.27 kiyohara else
1588 1.27 kiyohara printf("node:%d Unknown Self ID Page number %d\n",
1589 1.27 kiyohara s->p1.phy_id, s->p1.sequence_num);
1590 1.1 kiyohara } else
1591 1.27 kiyohara printf("node:%d link:%d gap:%d spd:%d con:%d pwr:%d"
1592 1.27 kiyohara " p0:%d p1:%d p2:%d i:%d m:%d\n",
1593 1.27 kiyohara s->p0.phy_id, s->p0.link_active, s->p0.gap_count,
1594 1.27 kiyohara s->p0.phy_speed, s->p0.contender,
1595 1.27 kiyohara s->p0.power_class, s->p0.port0, s->p0.port1,
1596 1.27 kiyohara s->p0.port2, s->p0.initiated_reset, s->p0.more_packets);
1597 1.1 kiyohara }
1598 1.1 kiyohara
1599 1.1 kiyohara /*
1600 1.27 kiyohara * To probe devices on the IEEE1394 bus.
1601 1.1 kiyohara */
1602 1.1 kiyohara static void
1603 1.1 kiyohara fw_bus_probe(struct firewire_comm *fc)
1604 1.1 kiyohara {
1605 1.1 kiyohara struct fw_device *fwdev;
1606 1.1 kiyohara
1607 1.27 kiyohara mutex_enter(&fc->wait_lock);
1608 1.1 kiyohara fc->status = FWBUSEXPLORE;
1609 1.1 kiyohara
1610 1.1 kiyohara /* Invalidate all devices, just after bus reset. */
1611 1.27 kiyohara if (firewire_debug)
1612 1.27 kiyohara printf("iterate and invalidate all nodes\n");
1613 1.27 kiyohara mutex_enter(&fc->fc_mtx);
1614 1.1 kiyohara STAILQ_FOREACH(fwdev, &fc->devices, link)
1615 1.1 kiyohara if (fwdev->status != FWDEVINVAL) {
1616 1.1 kiyohara fwdev->status = FWDEVINVAL;
1617 1.1 kiyohara fwdev->rcnt = 0;
1618 1.27 kiyohara if (firewire_debug)
1619 1.27 kiyohara printf("Invalidate Dev ID: %08x%08x\n",
1620 1.27 kiyohara fwdev->eui.hi, fwdev->eui.lo);
1621 1.27 kiyohara } else
1622 1.27 kiyohara if (firewire_debug)
1623 1.27 kiyohara printf("Dev ID: %08x%08x already invalid\n",
1624 1.27 kiyohara fwdev->eui.hi, fwdev->eui.lo);
1625 1.27 kiyohara mutex_exit(&fc->fc_mtx);
1626 1.1 kiyohara
1627 1.27 kiyohara cv_signal(&fc->fc_cv);
1628 1.27 kiyohara mutex_exit(&fc->wait_lock);
1629 1.1 kiyohara }
1630 1.1 kiyohara
1631 1.1 kiyohara static int
1632 1.27 kiyohara fw_explore_read_quads(struct fw_device *fwdev, int offset, uint32_t *quad,
1633 1.27 kiyohara int length)
1634 1.1 kiyohara {
1635 1.1 kiyohara struct fw_xfer *xfer;
1636 1.1 kiyohara uint32_t tmp;
1637 1.1 kiyohara int i, error;
1638 1.1 kiyohara
1639 1.27 kiyohara for (i = 0; i < length; i++, offset += sizeof(uint32_t)) {
1640 1.27 kiyohara xfer = fwmem_read_quad(fwdev, NULL, -1, 0xffff,
1641 1.27 kiyohara 0xf0000000 | offset, (void *)&tmp, fw_xferwake);
1642 1.1 kiyohara if (xfer == NULL)
1643 1.27 kiyohara return -1;
1644 1.16 kiyohara fw_xferwait(xfer);
1645 1.1 kiyohara
1646 1.1 kiyohara if (xfer->resp == 0)
1647 1.1 kiyohara quad[i] = ntohl(tmp);
1648 1.1 kiyohara
1649 1.1 kiyohara error = xfer->resp;
1650 1.1 kiyohara fw_xfer_free(xfer);
1651 1.1 kiyohara if (error)
1652 1.27 kiyohara return error;
1653 1.1 kiyohara }
1654 1.27 kiyohara return 0;
1655 1.1 kiyohara }
1656 1.1 kiyohara
1657 1.1 kiyohara
1658 1.1 kiyohara static int
1659 1.1 kiyohara fw_explore_csrblock(struct fw_device *fwdev, int offset, int recur)
1660 1.1 kiyohara {
1661 1.1 kiyohara int err, i, off;
1662 1.1 kiyohara struct csrdirectory *dir;
1663 1.1 kiyohara struct csrreg *reg;
1664 1.1 kiyohara
1665 1.1 kiyohara
1666 1.1 kiyohara dir = (struct csrdirectory *)&fwdev->csrrom[offset/sizeof(uint32_t)];
1667 1.27 kiyohara err = fw_explore_read_quads(fwdev, CSRROMOFF + offset, (uint32_t *)dir,
1668 1.27 kiyohara 1);
1669 1.1 kiyohara if (err)
1670 1.27 kiyohara return -1;
1671 1.1 kiyohara
1672 1.1 kiyohara offset += sizeof(uint32_t);
1673 1.27 kiyohara reg = (struct csrreg *)&fwdev->csrrom[offset / sizeof(uint32_t)];
1674 1.27 kiyohara err = fw_explore_read_quads(fwdev, CSRROMOFF + offset, (uint32_t *)reg,
1675 1.27 kiyohara dir->crc_len);
1676 1.1 kiyohara if (err)
1677 1.27 kiyohara return -1;
1678 1.1 kiyohara
1679 1.1 kiyohara /* XXX check CRC */
1680 1.1 kiyohara
1681 1.1 kiyohara off = CSRROMOFF + offset + sizeof(uint32_t) * (dir->crc_len - 1);
1682 1.1 kiyohara if (fwdev->rommax < off)
1683 1.1 kiyohara fwdev->rommax = off;
1684 1.1 kiyohara
1685 1.1 kiyohara if (recur == 0)
1686 1.27 kiyohara return 0;
1687 1.1 kiyohara
1688 1.27 kiyohara for (i = 0; i < dir->crc_len; i++, offset += sizeof(uint32_t)) {
1689 1.16 kiyohara if ((reg[i].key & CSRTYPE_MASK) == CSRTYPE_D)
1690 1.1 kiyohara recur = 1;
1691 1.16 kiyohara else if ((reg[i].key & CSRTYPE_MASK) == CSRTYPE_L)
1692 1.1 kiyohara recur = 0;
1693 1.1 kiyohara else
1694 1.1 kiyohara continue;
1695 1.1 kiyohara
1696 1.1 kiyohara off = offset + reg[i].val * sizeof(uint32_t);
1697 1.1 kiyohara if (off > CROMSIZE) {
1698 1.27 kiyohara aprint_error_dev(fwdev->fc->bdev, "invalid offset %d\n",
1699 1.27 kiyohara off);
1700 1.27 kiyohara return -1;
1701 1.1 kiyohara }
1702 1.1 kiyohara err = fw_explore_csrblock(fwdev, off, recur);
1703 1.1 kiyohara if (err)
1704 1.27 kiyohara return -1;
1705 1.1 kiyohara }
1706 1.27 kiyohara return 0;
1707 1.1 kiyohara }
1708 1.1 kiyohara
1709 1.1 kiyohara static int
1710 1.1 kiyohara fw_explore_node(struct fw_device *dfwdev)
1711 1.1 kiyohara {
1712 1.1 kiyohara struct firewire_comm *fc;
1713 1.1 kiyohara struct fw_device *fwdev, *pfwdev, *tfwdev;
1714 1.1 kiyohara struct csrhdr *hdr;
1715 1.1 kiyohara struct bus_info *binfo;
1716 1.27 kiyohara uint32_t *csr, speed_test = 0;
1717 1.27 kiyohara int err, node;
1718 1.1 kiyohara
1719 1.1 kiyohara fc = dfwdev->fc;
1720 1.1 kiyohara csr = dfwdev->csrrom;
1721 1.1 kiyohara node = dfwdev->dst;
1722 1.1 kiyohara
1723 1.1 kiyohara /* First quad */
1724 1.27 kiyohara err = fw_explore_read_quads(dfwdev, CSRROMOFF, csr, 1);
1725 1.27 kiyohara if (err) {
1726 1.27 kiyohara aprint_error_dev(fc->bdev,
1727 1.27 kiyohara "node%d: explore_read_quads failure\n", node);
1728 1.27 kiyohara dfwdev->status = FWDEVINVAL;
1729 1.27 kiyohara return -1;
1730 1.27 kiyohara }
1731 1.27 kiyohara hdr = (struct csrhdr *)csr;
1732 1.1 kiyohara if (hdr->info_len != 4) {
1733 1.1 kiyohara if (firewire_debug)
1734 1.1 kiyohara printf("node%d: wrong bus info len(%d)\n",
1735 1.1 kiyohara node, hdr->info_len);
1736 1.27 kiyohara dfwdev->status = FWDEVINVAL;
1737 1.27 kiyohara return -1;
1738 1.1 kiyohara }
1739 1.1 kiyohara
1740 1.1 kiyohara /* bus info */
1741 1.1 kiyohara err = fw_explore_read_quads(dfwdev, CSRROMOFF + 0x04, &csr[1], 4);
1742 1.27 kiyohara if (err) {
1743 1.27 kiyohara aprint_error_dev(fc->bdev, "node%d: error reading 0x04\n",
1744 1.27 kiyohara node);
1745 1.27 kiyohara dfwdev->status = FWDEVINVAL;
1746 1.27 kiyohara return -1;
1747 1.27 kiyohara }
1748 1.1 kiyohara binfo = (struct bus_info *)&csr[1];
1749 1.1 kiyohara if (binfo->bus_name != CSR_BUS_NAME_IEEE1394) {
1750 1.27 kiyohara aprint_error_dev(fc->bdev, "node%d: invalid bus name 0x%08x\n",
1751 1.27 kiyohara node, binfo->bus_name);
1752 1.27 kiyohara dfwdev->status = FWDEVINVAL;
1753 1.27 kiyohara return -1;
1754 1.1 kiyohara }
1755 1.27 kiyohara if (firewire_debug)
1756 1.27 kiyohara printf("node(%d) BUS INFO BLOCK:\n"
1757 1.27 kiyohara "irmc(%d) cmc(%d) isc(%d) bmc(%d) pmc(%d) "
1758 1.27 kiyohara "cyc_clk_acc(%d) max_rec(%d) max_rom(%d) "
1759 1.27 kiyohara "generation(%d) link_spd(%d)\n",
1760 1.27 kiyohara node, binfo->irmc, binfo->cmc, binfo->isc,
1761 1.27 kiyohara binfo->bmc, binfo->pmc, binfo->cyc_clk_acc,
1762 1.27 kiyohara binfo->max_rec, binfo->max_rom,
1763 1.27 kiyohara binfo->generation, binfo->link_spd);
1764 1.27 kiyohara
1765 1.27 kiyohara mutex_enter(&fc->fc_mtx);
1766 1.1 kiyohara STAILQ_FOREACH(fwdev, &fc->devices, link)
1767 1.1 kiyohara if (FW_EUI64_EQUAL(fwdev->eui, binfo->eui64))
1768 1.1 kiyohara break;
1769 1.27 kiyohara mutex_exit(&fc->fc_mtx);
1770 1.1 kiyohara if (fwdev == NULL) {
1771 1.1 kiyohara /* new device */
1772 1.35 christos fwdev =
1773 1.35 christos malloc(sizeof(struct fw_device), M_FW, M_NOWAIT | M_ZERO);
1774 1.1 kiyohara if (fwdev == NULL) {
1775 1.1 kiyohara if (firewire_debug)
1776 1.1 kiyohara printf("node%d: no memory\n", node);
1777 1.27 kiyohara return -1;
1778 1.1 kiyohara }
1779 1.1 kiyohara fwdev->fc = fc;
1780 1.1 kiyohara fwdev->eui = binfo->eui64;
1781 1.27 kiyohara fwdev->dst = dfwdev->dst;
1782 1.27 kiyohara fwdev->maxrec = dfwdev->maxrec;
1783 1.1 kiyohara fwdev->status = FWDEVNEW;
1784 1.27 kiyohara /*
1785 1.27 kiyohara * Pre-1394a-2000 didn't have link_spd in
1786 1.27 kiyohara * the Bus Info block, so try and use the
1787 1.27 kiyohara * speed map value.
1788 1.27 kiyohara * 1394a-2000 compliant devices only use
1789 1.27 kiyohara * the Bus Info Block link spd value, so
1790 1.27 kiyohara * ignore the speed map alltogether. SWB
1791 1.27 kiyohara */
1792 1.27 kiyohara if (binfo->link_spd == FWSPD_S100 /* 0 */) {
1793 1.27 kiyohara aprint_normal_dev(fc->bdev,
1794 1.27 kiyohara "Pre 1394a-2000 detected\n");
1795 1.27 kiyohara fwdev->speed = fc->speed_map->speed[fc->nodeid][node];
1796 1.27 kiyohara } else
1797 1.27 kiyohara fwdev->speed = binfo->link_spd;
1798 1.27 kiyohara /*
1799 1.27 kiyohara * Test this speed with a read to the CSRROM.
1800 1.27 kiyohara * If it fails, slow down the speed and retry.
1801 1.27 kiyohara */
1802 1.27 kiyohara while (fwdev->speed > FWSPD_S100 /* 0 */) {
1803 1.27 kiyohara err = fw_explore_read_quads(fwdev, CSRROMOFF,
1804 1.27 kiyohara &speed_test, 1);
1805 1.27 kiyohara if (err) {
1806 1.27 kiyohara aprint_error_dev(fc->bdev, "fwdev->speed(%s)"
1807 1.27 kiyohara " decremented due to negotiation\n",
1808 1.27 kiyohara fw_linkspeed[fwdev->speed]);
1809 1.27 kiyohara fwdev->speed--;
1810 1.27 kiyohara } else
1811 1.27 kiyohara break;
1812 1.27 kiyohara }
1813 1.27 kiyohara /*
1814 1.27 kiyohara * If the fwdev is not found in the
1815 1.27 kiyohara * fc->devices TAILQ, then we will add it.
1816 1.27 kiyohara */
1817 1.1 kiyohara pfwdev = NULL;
1818 1.27 kiyohara mutex_enter(&fc->fc_mtx);
1819 1.1 kiyohara STAILQ_FOREACH(tfwdev, &fc->devices, link) {
1820 1.1 kiyohara if (tfwdev->eui.hi > fwdev->eui.hi ||
1821 1.27 kiyohara (tfwdev->eui.hi == fwdev->eui.hi &&
1822 1.27 kiyohara tfwdev->eui.lo > fwdev->eui.lo))
1823 1.1 kiyohara break;
1824 1.1 kiyohara pfwdev = tfwdev;
1825 1.1 kiyohara }
1826 1.1 kiyohara if (pfwdev == NULL)
1827 1.1 kiyohara STAILQ_INSERT_HEAD(&fc->devices, fwdev, link);
1828 1.1 kiyohara else
1829 1.1 kiyohara STAILQ_INSERT_AFTER(&fc->devices, pfwdev, fwdev, link);
1830 1.27 kiyohara mutex_exit(&fc->fc_mtx);
1831 1.1 kiyohara
1832 1.27 kiyohara aprint_normal_dev(fc->bdev, "New %s device ID:%08x%08x\n",
1833 1.27 kiyohara fw_linkspeed[fwdev->speed], fwdev->eui.hi, fwdev->eui.lo);
1834 1.27 kiyohara } else {
1835 1.27 kiyohara fwdev->dst = node;
1836 1.1 kiyohara fwdev->status = FWDEVINIT;
1837 1.27 kiyohara /* unchanged ? */
1838 1.27 kiyohara if (memcmp(csr, fwdev->csrrom, sizeof(uint32_t) * 5) == 0) {
1839 1.27 kiyohara if (firewire_debug)
1840 1.27 kiyohara printf("node%d: crom unchanged\n", node);
1841 1.27 kiyohara return 0;
1842 1.27 kiyohara }
1843 1.1 kiyohara }
1844 1.1 kiyohara
1845 1.27 kiyohara memset(fwdev->csrrom, 0, CROMSIZE);
1846 1.1 kiyohara
1847 1.1 kiyohara /* copy first quad and bus info block */
1848 1.27 kiyohara memcpy(fwdev->csrrom, csr, sizeof(uint32_t) * 5);
1849 1.1 kiyohara fwdev->rommax = CSRROMOFF + sizeof(uint32_t) * 4;
1850 1.1 kiyohara
1851 1.1 kiyohara err = fw_explore_csrblock(fwdev, 0x14, 1); /* root directory */
1852 1.1 kiyohara
1853 1.1 kiyohara if (err) {
1854 1.27 kiyohara if (firewire_debug)
1855 1.27 kiyohara printf("explore csrblock failed err(%d)\n", err);
1856 1.1 kiyohara fwdev->status = FWDEVINVAL;
1857 1.1 kiyohara fwdev->csrrom[0] = 0;
1858 1.1 kiyohara }
1859 1.27 kiyohara return err;
1860 1.1 kiyohara }
1861 1.1 kiyohara
1862 1.1 kiyohara /*
1863 1.1 kiyohara * Find the self_id packet for a node, ignoring sequels.
1864 1.1 kiyohara */
1865 1.1 kiyohara static union fw_self_id *
1866 1.1 kiyohara fw_find_self_id(struct firewire_comm *fc, int node)
1867 1.1 kiyohara {
1868 1.1 kiyohara uint32_t i;
1869 1.1 kiyohara union fw_self_id *s;
1870 1.27 kiyohara
1871 1.1 kiyohara for (i = 0; i < fc->topology_map->self_id_count; i++) {
1872 1.1 kiyohara s = &fc->topology_map->self_id[i];
1873 1.1 kiyohara if (s->p0.sequel)
1874 1.1 kiyohara continue;
1875 1.1 kiyohara if (s->p0.phy_id == node)
1876 1.1 kiyohara return s;
1877 1.1 kiyohara }
1878 1.1 kiyohara return 0;
1879 1.1 kiyohara }
1880 1.1 kiyohara
1881 1.1 kiyohara static void
1882 1.1 kiyohara fw_explore(struct firewire_comm *fc)
1883 1.1 kiyohara {
1884 1.8 christos struct fw_device *dfwdev;
1885 1.16 kiyohara union fw_self_id *fwsid;
1886 1.27 kiyohara int node, err, i, todo, todo2, trys;
1887 1.27 kiyohara char nodes[63];
1888 1.1 kiyohara
1889 1.1 kiyohara todo = 0;
1890 1.35 christos dfwdev = malloc(sizeof(*dfwdev), M_TEMP, M_NOWAIT);
1891 1.8 christos if (dfwdev == NULL)
1892 1.8 christos return;
1893 1.1 kiyohara /* setup dummy fwdev */
1894 1.8 christos dfwdev->fc = fc;
1895 1.8 christos dfwdev->speed = 0;
1896 1.8 christos dfwdev->maxrec = 8; /* 512 */
1897 1.8 christos dfwdev->status = FWDEVINIT;
1898 1.1 kiyohara
1899 1.27 kiyohara for (node = 0; node <= fc->max_node; node++) {
1900 1.1 kiyohara /* We don't probe myself and linkdown nodes */
1901 1.27 kiyohara if (node == fc->nodeid) {
1902 1.27 kiyohara if (firewire_debug)
1903 1.27 kiyohara printf("found myself node(%d) fc->nodeid(%d)"
1904 1.27 kiyohara " fc->max_node(%d)\n",
1905 1.27 kiyohara node, fc->nodeid, fc->max_node);
1906 1.1 kiyohara continue;
1907 1.27 kiyohara } else if (firewire_debug)
1908 1.27 kiyohara printf("node(%d) fc->max_node(%d) found\n",
1909 1.27 kiyohara node, fc->max_node);
1910 1.16 kiyohara fwsid = fw_find_self_id(fc, node);
1911 1.16 kiyohara if (!fwsid || !fwsid->p0.link_active) {
1912 1.1 kiyohara if (firewire_debug)
1913 1.1 kiyohara printf("node%d: link down\n", node);
1914 1.1 kiyohara continue;
1915 1.1 kiyohara }
1916 1.1 kiyohara nodes[todo++] = node;
1917 1.1 kiyohara }
1918 1.1 kiyohara
1919 1.27 kiyohara for (trys = 0; todo > 0 && trys < 3; trys++) {
1920 1.1 kiyohara todo2 = 0;
1921 1.27 kiyohara for (i = 0; i < todo; i++) {
1922 1.8 christos dfwdev->dst = nodes[i];
1923 1.8 christos err = fw_explore_node(dfwdev);
1924 1.1 kiyohara if (err)
1925 1.1 kiyohara nodes[todo2++] = nodes[i];
1926 1.1 kiyohara if (firewire_debug)
1927 1.27 kiyohara printf("node %d, err = %d\n", nodes[i], err);
1928 1.1 kiyohara }
1929 1.1 kiyohara todo = todo2;
1930 1.1 kiyohara }
1931 1.35 christos free(dfwdev, M_TEMP);
1932 1.1 kiyohara }
1933 1.1 kiyohara
1934 1.1 kiyohara static void
1935 1.1 kiyohara fw_bus_probe_thread(void *arg)
1936 1.1 kiyohara {
1937 1.27 kiyohara struct firewire_comm *fc = (struct firewire_comm *)arg;
1938 1.1 kiyohara
1939 1.27 kiyohara config_pending_decr();
1940 1.1 kiyohara
1941 1.27 kiyohara mutex_enter(&fc->wait_lock);
1942 1.16 kiyohara while (fc->status != FWBUSDETACH) {
1943 1.1 kiyohara if (fc->status == FWBUSEXPLORE) {
1944 1.27 kiyohara mutex_exit(&fc->wait_lock);
1945 1.1 kiyohara fw_explore(fc);
1946 1.1 kiyohara fc->status = FWBUSEXPDONE;
1947 1.1 kiyohara if (firewire_debug)
1948 1.1 kiyohara printf("bus_explore done\n");
1949 1.1 kiyohara fw_attach_dev(fc);
1950 1.27 kiyohara mutex_enter(&fc->wait_lock);
1951 1.16 kiyohara }
1952 1.27 kiyohara cv_wait_sig(&fc->fc_cv, &fc->wait_lock);
1953 1.1 kiyohara }
1954 1.27 kiyohara fc->status = FWBUSDETACHOK;
1955 1.27 kiyohara cv_signal(&fc->fc_cv);
1956 1.27 kiyohara mutex_exit(&fc->wait_lock);
1957 1.27 kiyohara kthread_exit(0);
1958 1.27 kiyohara
1959 1.27 kiyohara /* NOTREACHED */
1960 1.1 kiyohara }
1961 1.1 kiyohara
1962 1.1 kiyohara
1963 1.1 kiyohara /*
1964 1.1 kiyohara * To attach sub-devices layer onto IEEE1394 bus.
1965 1.1 kiyohara */
1966 1.1 kiyohara static void
1967 1.1 kiyohara fw_attach_dev(struct firewire_comm *fc)
1968 1.1 kiyohara {
1969 1.27 kiyohara struct firewire_softc *sc = device_private(fc->bdev);
1970 1.27 kiyohara struct firewire_dev_list *devlist, *elm;
1971 1.1 kiyohara struct fw_device *fwdev, *next;
1972 1.1 kiyohara struct firewire_dev_comm *fdc;
1973 1.1 kiyohara struct fw_attach_args fwa;
1974 1.27 kiyohara int locs[IEEE1394IFCF_NLOCS];
1975 1.1 kiyohara
1976 1.1 kiyohara fwa.name = "sbp";
1977 1.1 kiyohara fwa.fc = fc;
1978 1.1 kiyohara
1979 1.27 kiyohara mutex_enter(&fc->fc_mtx);
1980 1.1 kiyohara for (fwdev = STAILQ_FIRST(&fc->devices); fwdev != NULL; fwdev = next) {
1981 1.1 kiyohara next = STAILQ_NEXT(fwdev, link);
1982 1.27 kiyohara mutex_exit(&fc->fc_mtx);
1983 1.1 kiyohara switch (fwdev->status) {
1984 1.1 kiyohara case FWDEVNEW:
1985 1.35 christos devlist = malloc(sizeof(struct firewire_dev_list),
1986 1.35 christos M_DEVBUF, M_NOWAIT);
1987 1.27 kiyohara if (devlist == NULL) {
1988 1.27 kiyohara aprint_error_dev(fc->bdev,
1989 1.27 kiyohara "memory allocation failed\n");
1990 1.27 kiyohara break;
1991 1.27 kiyohara }
1992 1.27 kiyohara
1993 1.27 kiyohara locs[IEEE1394IFCF_EUIHI] = fwdev->eui.hi;
1994 1.27 kiyohara locs[IEEE1394IFCF_EUILO] = fwdev->eui.lo;
1995 1.27 kiyohara
1996 1.27 kiyohara fwa.fwdev = fwdev;
1997 1.27 kiyohara fwdev->sbp = config_found_sm_loc(sc->dev, "ieee1394if",
1998 1.27 kiyohara locs, &fwa, firewire_print, config_stdsubmatch);
1999 1.27 kiyohara if (fwdev->sbp == NULL) {
2000 1.35 christos free(devlist, M_DEVBUF);
2001 1.27 kiyohara break;
2002 1.27 kiyohara }
2003 1.27 kiyohara
2004 1.27 kiyohara devlist->fwdev = fwdev;
2005 1.27 kiyohara devlist->dev = fwdev->sbp;
2006 1.27 kiyohara
2007 1.27 kiyohara mutex_enter(&fc->fc_mtx);
2008 1.27 kiyohara if (SLIST_EMPTY(&sc->devlist))
2009 1.27 kiyohara SLIST_INSERT_HEAD(&sc->devlist, devlist, link);
2010 1.27 kiyohara else {
2011 1.27 kiyohara for (elm = SLIST_FIRST(&sc->devlist);
2012 1.27 kiyohara SLIST_NEXT(elm, link) != NULL;
2013 1.27 kiyohara elm = SLIST_NEXT(elm, link));
2014 1.27 kiyohara SLIST_INSERT_AFTER(elm, devlist, link);
2015 1.27 kiyohara }
2016 1.27 kiyohara mutex_exit(&fc->fc_mtx);
2017 1.27 kiyohara
2018 1.27 kiyohara /* FALLTHROUGH */
2019 1.1 kiyohara
2020 1.1 kiyohara case FWDEVINIT:
2021 1.1 kiyohara case FWDEVATTACHED:
2022 1.1 kiyohara fwdev->status = FWDEVATTACHED;
2023 1.1 kiyohara break;
2024 1.1 kiyohara
2025 1.1 kiyohara case FWDEVINVAL:
2026 1.27 kiyohara fwdev->rcnt++;
2027 1.27 kiyohara if (firewire_debug)
2028 1.27 kiyohara printf("fwdev->rcnt(%d), hold_count(%d)\n",
2029 1.27 kiyohara fwdev->rcnt, hold_count);
2030 1.1 kiyohara break;
2031 1.1 kiyohara
2032 1.1 kiyohara default:
2033 1.1 kiyohara /* XXX */
2034 1.1 kiyohara break;
2035 1.1 kiyohara }
2036 1.27 kiyohara mutex_enter(&fc->fc_mtx);
2037 1.1 kiyohara }
2038 1.27 kiyohara mutex_exit(&fc->fc_mtx);
2039 1.1 kiyohara
2040 1.27 kiyohara SLIST_FOREACH(devlist, &sc->devlist, link) {
2041 1.27 kiyohara fdc = device_private(devlist->dev);
2042 1.27 kiyohara if (fdc->post_explore != NULL)
2043 1.27 kiyohara fdc->post_explore(fdc);
2044 1.27 kiyohara }
2045 1.1 kiyohara
2046 1.1 kiyohara for (fwdev = STAILQ_FIRST(&fc->devices); fwdev != NULL; fwdev = next) {
2047 1.1 kiyohara next = STAILQ_NEXT(fwdev, link);
2048 1.1 kiyohara if (fwdev->rcnt > 0 && fwdev->rcnt > hold_count) {
2049 1.1 kiyohara /*
2050 1.1 kiyohara * Remove devices which have not been seen
2051 1.1 kiyohara * for a while.
2052 1.1 kiyohara */
2053 1.27 kiyohara SLIST_FOREACH(devlist, &sc->devlist, link)
2054 1.27 kiyohara if (devlist->fwdev == fwdev)
2055 1.27 kiyohara break;
2056 1.37 cegger
2057 1.37 cegger if (devlist == NULL)
2058 1.37 cegger continue;
2059 1.37 cegger
2060 1.27 kiyohara if (devlist->fwdev != fwdev)
2061 1.27 kiyohara panic("already detached");
2062 1.27 kiyohara
2063 1.27 kiyohara SLIST_REMOVE(&sc->devlist, devlist, firewire_dev_list,
2064 1.27 kiyohara link);
2065 1.35 christos free(devlist, M_DEVBUF);
2066 1.27 kiyohara
2067 1.27 kiyohara if (config_detach(fwdev->sbp, DETACH_FORCE) != 0)
2068 1.27 kiyohara return;
2069 1.27 kiyohara
2070 1.1 kiyohara STAILQ_REMOVE(&fc->devices, fwdev, fw_device, link);
2071 1.35 christos free(fwdev, M_FW);
2072 1.1 kiyohara }
2073 1.1 kiyohara }
2074 1.1 kiyohara
2075 1.1 kiyohara return;
2076 1.1 kiyohara }
2077 1.1 kiyohara
2078 1.1 kiyohara /*
2079 1.1 kiyohara * To allocate unique transaction label.
2080 1.1 kiyohara */
2081 1.1 kiyohara static int
2082 1.1 kiyohara fw_get_tlabel(struct firewire_comm *fc, struct fw_xfer *xfer)
2083 1.1 kiyohara {
2084 1.16 kiyohara u_int dst, new_tlabel;
2085 1.1 kiyohara struct fw_xfer *txfer;
2086 1.1 kiyohara
2087 1.16 kiyohara dst = xfer->send.hdr.mode.hdr.dst & 0x3f;
2088 1.27 kiyohara mutex_enter(&fc->tlabel_lock);
2089 1.16 kiyohara new_tlabel = (fc->last_tlabel[dst] + 1) & 0x3f;
2090 1.16 kiyohara STAILQ_FOREACH(txfer, &fc->tlabels[new_tlabel], tlabel)
2091 1.16 kiyohara if ((txfer->send.hdr.mode.hdr.dst & 0x3f) == dst)
2092 1.16 kiyohara break;
2093 1.27 kiyohara if (txfer == NULL) {
2094 1.16 kiyohara fc->last_tlabel[dst] = new_tlabel;
2095 1.16 kiyohara STAILQ_INSERT_TAIL(&fc->tlabels[new_tlabel], xfer, tlabel);
2096 1.27 kiyohara mutex_exit(&fc->tlabel_lock);
2097 1.16 kiyohara xfer->tl = new_tlabel;
2098 1.16 kiyohara xfer->send.hdr.mode.hdr.tlrt = new_tlabel << 2;
2099 1.16 kiyohara if (firewire_debug > 1)
2100 1.27 kiyohara printf("fw_get_tlabel: dst=%d tl=%d\n",
2101 1.27 kiyohara dst, new_tlabel);
2102 1.27 kiyohara return new_tlabel;
2103 1.1 kiyohara }
2104 1.27 kiyohara mutex_exit(&fc->tlabel_lock);
2105 1.1 kiyohara
2106 1.1 kiyohara if (firewire_debug > 1)
2107 1.1 kiyohara printf("fw_get_tlabel: no free tlabel\n");
2108 1.27 kiyohara return -1;
2109 1.1 kiyohara }
2110 1.1 kiyohara
2111 1.1 kiyohara static void
2112 1.1 kiyohara fw_rcv_copy(struct fw_rcv_buf *rb)
2113 1.1 kiyohara {
2114 1.1 kiyohara struct fw_pkt *pkt;
2115 1.1 kiyohara u_char *p;
2116 1.2 drochner const struct tcode_info *tinfo;
2117 1.1 kiyohara u_int res, i, len, plen;
2118 1.1 kiyohara
2119 1.1 kiyohara rb->xfer->recv.spd = rb->spd;
2120 1.1 kiyohara
2121 1.1 kiyohara pkt = (struct fw_pkt *)rb->vec->iov_base;
2122 1.1 kiyohara tinfo = &rb->fc->tcode[pkt->mode.hdr.tcode];
2123 1.1 kiyohara
2124 1.27 kiyohara /* Copy header */
2125 1.1 kiyohara p = (u_char *)&rb->xfer->recv.hdr;
2126 1.27 kiyohara memcpy(p, rb->vec->iov_base, tinfo->hdr_len);
2127 1.1 kiyohara rb->vec->iov_base = (u_char *)rb->vec->iov_base + tinfo->hdr_len;
2128 1.1 kiyohara rb->vec->iov_len -= tinfo->hdr_len;
2129 1.1 kiyohara
2130 1.1 kiyohara /* Copy payload */
2131 1.1 kiyohara p = (u_char *)rb->xfer->recv.payload;
2132 1.1 kiyohara res = rb->xfer->recv.pay_len;
2133 1.1 kiyohara
2134 1.1 kiyohara /* special handling for RRESQ */
2135 1.1 kiyohara if (pkt->mode.hdr.tcode == FWTCODE_RRESQ &&
2136 1.1 kiyohara p != NULL && res >= sizeof(uint32_t)) {
2137 1.1 kiyohara *(uint32_t *)p = pkt->mode.rresq.data;
2138 1.1 kiyohara rb->xfer->recv.pay_len = sizeof(uint32_t);
2139 1.1 kiyohara return;
2140 1.1 kiyohara }
2141 1.1 kiyohara
2142 1.1 kiyohara if ((tinfo->flag & FWTI_BLOCK_ASY) == 0)
2143 1.1 kiyohara return;
2144 1.1 kiyohara
2145 1.1 kiyohara plen = pkt->mode.rresb.len;
2146 1.1 kiyohara
2147 1.1 kiyohara for (i = 0; i < rb->nvec; i++, rb->vec++) {
2148 1.1 kiyohara len = MIN(rb->vec->iov_len, plen);
2149 1.1 kiyohara if (res < len) {
2150 1.27 kiyohara aprint_error_dev(rb->fc->bdev,
2151 1.27 kiyohara "rcv buffer(%d) is %d bytes short.\n",
2152 1.1 kiyohara rb->xfer->recv.pay_len, len - res);
2153 1.1 kiyohara len = res;
2154 1.1 kiyohara }
2155 1.7 christos if (p) {
2156 1.27 kiyohara memcpy(p, rb->vec->iov_base, len);
2157 1.7 christos p += len;
2158 1.7 christos }
2159 1.1 kiyohara res -= len;
2160 1.1 kiyohara plen -= len;
2161 1.1 kiyohara if (res == 0 || plen == 0)
2162 1.1 kiyohara break;
2163 1.1 kiyohara }
2164 1.1 kiyohara rb->xfer->recv.pay_len -= res;
2165 1.1 kiyohara
2166 1.1 kiyohara }
2167 1.1 kiyohara
2168 1.1 kiyohara /*
2169 1.1 kiyohara * Post process for Bus Manager election process.
2170 1.1 kiyohara */
2171 1.1 kiyohara static void
2172 1.1 kiyohara fw_try_bmr_callback(struct fw_xfer *xfer)
2173 1.1 kiyohara {
2174 1.1 kiyohara struct firewire_comm *fc;
2175 1.1 kiyohara int bmr;
2176 1.1 kiyohara
2177 1.1 kiyohara if (xfer == NULL)
2178 1.1 kiyohara return;
2179 1.1 kiyohara fc = xfer->fc;
2180 1.1 kiyohara if (xfer->resp != 0)
2181 1.1 kiyohara goto error;
2182 1.1 kiyohara if (xfer->recv.payload == NULL)
2183 1.1 kiyohara goto error;
2184 1.1 kiyohara if (xfer->recv.hdr.mode.lres.rtcode != FWRCODE_COMPLETE)
2185 1.1 kiyohara goto error;
2186 1.1 kiyohara
2187 1.1 kiyohara bmr = ntohl(xfer->recv.payload[0]);
2188 1.1 kiyohara if (bmr == 0x3f)
2189 1.1 kiyohara bmr = fc->nodeid;
2190 1.1 kiyohara
2191 1.1 kiyohara CSRARC(fc, BUS_MGR_ID) = fc->set_bmr(fc, bmr & 0x3f);
2192 1.1 kiyohara fw_xfer_free_buf(xfer);
2193 1.1 kiyohara fw_bmr(fc);
2194 1.1 kiyohara return;
2195 1.1 kiyohara
2196 1.1 kiyohara error:
2197 1.27 kiyohara aprint_error_dev(fc->bdev, "bus manager election failed\n");
2198 1.1 kiyohara fw_xfer_free_buf(xfer);
2199 1.1 kiyohara }
2200 1.1 kiyohara
2201 1.1 kiyohara
2202 1.1 kiyohara /*
2203 1.1 kiyohara * To candidate Bus Manager election process.
2204 1.1 kiyohara */
2205 1.1 kiyohara static void
2206 1.1 kiyohara fw_try_bmr(void *arg)
2207 1.1 kiyohara {
2208 1.1 kiyohara struct fw_xfer *xfer;
2209 1.1 kiyohara struct firewire_comm *fc = (struct firewire_comm *)arg;
2210 1.1 kiyohara struct fw_pkt *fp;
2211 1.1 kiyohara int err = 0;
2212 1.1 kiyohara
2213 1.1 kiyohara xfer = fw_xfer_alloc_buf(M_FWXFER, 8, 4);
2214 1.27 kiyohara if (xfer == NULL)
2215 1.1 kiyohara return;
2216 1.1 kiyohara xfer->send.spd = 0;
2217 1.1 kiyohara fc->status = FWBUSMGRELECT;
2218 1.1 kiyohara
2219 1.1 kiyohara fp = &xfer->send.hdr;
2220 1.1 kiyohara fp->mode.lreq.dest_hi = 0xffff;
2221 1.1 kiyohara fp->mode.lreq.tlrt = 0;
2222 1.1 kiyohara fp->mode.lreq.tcode = FWTCODE_LREQ;
2223 1.1 kiyohara fp->mode.lreq.pri = 0;
2224 1.1 kiyohara fp->mode.lreq.src = 0;
2225 1.1 kiyohara fp->mode.lreq.len = 8;
2226 1.1 kiyohara fp->mode.lreq.extcode = EXTCODE_CMP_SWAP;
2227 1.1 kiyohara fp->mode.lreq.dst = FWLOCALBUS | fc->irm;
2228 1.1 kiyohara fp->mode.lreq.dest_lo = 0xf0000000 | BUS_MGR_ID;
2229 1.1 kiyohara xfer->send.payload[0] = htonl(0x3f);
2230 1.1 kiyohara xfer->send.payload[1] = htonl(fc->nodeid);
2231 1.1 kiyohara xfer->hand = fw_try_bmr_callback;
2232 1.1 kiyohara
2233 1.1 kiyohara err = fw_asyreq(fc, -1, xfer);
2234 1.27 kiyohara if (err) {
2235 1.1 kiyohara fw_xfer_free_buf(xfer);
2236 1.1 kiyohara return;
2237 1.1 kiyohara }
2238 1.1 kiyohara return;
2239 1.1 kiyohara }
2240 1.1 kiyohara
2241 1.1 kiyohara /*
2242 1.27 kiyohara * Find the root node, if it is not
2243 1.27 kiyohara * Cycle Master Capable, then we should
2244 1.27 kiyohara * override this and become the Cycle
2245 1.27 kiyohara * Master
2246 1.1 kiyohara */
2247 1.1 kiyohara static int
2248 1.1 kiyohara fw_bmr(struct firewire_comm *fc)
2249 1.1 kiyohara {
2250 1.1 kiyohara struct fw_device fwdev;
2251 1.1 kiyohara union fw_self_id *self_id;
2252 1.1 kiyohara int cmstr;
2253 1.1 kiyohara uint32_t quad;
2254 1.1 kiyohara
2255 1.1 kiyohara /* Check to see if the current root node is cycle master capable */
2256 1.1 kiyohara self_id = fw_find_self_id(fc, fc->max_node);
2257 1.1 kiyohara if (fc->max_node > 0) {
2258 1.1 kiyohara /* XXX check cmc bit of businfo block rather than contender */
2259 1.1 kiyohara if (self_id->p0.link_active && self_id->p0.contender)
2260 1.1 kiyohara cmstr = fc->max_node;
2261 1.1 kiyohara else {
2262 1.27 kiyohara aprint_normal_dev(fc->bdev,
2263 1.1 kiyohara "root node is not cycle master capable\n");
2264 1.1 kiyohara /* XXX shall we be the cycle master? */
2265 1.1 kiyohara cmstr = fc->nodeid;
2266 1.1 kiyohara /* XXX need bus reset */
2267 1.1 kiyohara }
2268 1.1 kiyohara } else
2269 1.1 kiyohara cmstr = -1;
2270 1.1 kiyohara
2271 1.27 kiyohara aprint_normal_dev(fc->bdev, "bus manager %d%s\n",
2272 1.27 kiyohara CSRARC(fc, BUS_MGR_ID),
2273 1.27 kiyohara (CSRARC(fc, BUS_MGR_ID) != fc->nodeid) ? " (me)" : "");
2274 1.27 kiyohara if (CSRARC(fc, BUS_MGR_ID) != fc->nodeid)
2275 1.1 kiyohara /* We are not the bus manager */
2276 1.27 kiyohara return 0;
2277 1.1 kiyohara
2278 1.1 kiyohara /* Optimize gapcount */
2279 1.27 kiyohara if (fc->max_hop <= MAX_GAPHOP)
2280 1.1 kiyohara fw_phy_config(fc, cmstr, gap_cnt[fc->max_hop]);
2281 1.1 kiyohara /* If we are the cycle master, nothing to do */
2282 1.1 kiyohara if (cmstr == fc->nodeid || cmstr == -1)
2283 1.1 kiyohara return 0;
2284 1.1 kiyohara /* Bus probe has not finished, make dummy fwdev for cmstr */
2285 1.24 cegger memset(&fwdev, 0, sizeof(fwdev));
2286 1.1 kiyohara fwdev.fc = fc;
2287 1.1 kiyohara fwdev.dst = cmstr;
2288 1.1 kiyohara fwdev.speed = 0;
2289 1.1 kiyohara fwdev.maxrec = 8; /* 512 */
2290 1.1 kiyohara fwdev.status = FWDEVINIT;
2291 1.1 kiyohara /* Set cmstr bit on the cycle master */
2292 1.1 kiyohara quad = htonl(1 << 8);
2293 1.27 kiyohara fwmem_write_quad(&fwdev, NULL, 0/*spd*/, 0xffff, 0xf0000000 | STATE_SET,
2294 1.27 kiyohara &quad, fw_asy_callback_free);
2295 1.1 kiyohara
2296 1.1 kiyohara return 0;
2297 1.1 kiyohara }
2298