fwohci.c revision 1.139 1 1.138 riastrad /* $NetBSD: fwohci.c,v 1.139 2016/11/20 22:47:39 riastradh Exp $ */
2 1.91 christos
3 1.1 matt /*-
4 1.89 kiyohara * Copyright (c) 2003 Hidetoshi Shimokawa
5 1.89 kiyohara * Copyright (c) 1998-2002 Katsushi Kobayashi and Hidetoshi Shimokawa
6 1.1 matt * All rights reserved.
7 1.1 matt *
8 1.1 matt * Redistribution and use in source and binary forms, with or without
9 1.1 matt * modification, are permitted provided that the following conditions
10 1.1 matt * are met:
11 1.1 matt * 1. Redistributions of source code must retain the above copyright
12 1.1 matt * notice, this list of conditions and the following disclaimer.
13 1.1 matt * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 matt * notice, this list of conditions and the following disclaimer in the
15 1.1 matt * documentation and/or other materials provided with the distribution.
16 1.1 matt * 3. All advertising materials mentioning features or use of this software
17 1.89 kiyohara * must display the acknowledgement as bellow:
18 1.89 kiyohara *
19 1.89 kiyohara * This product includes software developed by K. Kobayashi and H. Shimokawa
20 1.89 kiyohara *
21 1.89 kiyohara * 4. The name of the author may not be used to endorse or promote products
22 1.89 kiyohara * derived from this software without specific prior written permission.
23 1.1 matt *
24 1.89 kiyohara * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
25 1.89 kiyohara * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
26 1.89 kiyohara * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
27 1.89 kiyohara * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
28 1.89 kiyohara * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
29 1.89 kiyohara * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
30 1.89 kiyohara * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
31 1.89 kiyohara * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
32 1.89 kiyohara * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
33 1.89 kiyohara * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
34 1.1 matt * POSSIBILITY OF SUCH DAMAGE.
35 1.100 blymn *
36 1.121 kiyohara * $FreeBSD: src/sys/dev/firewire/fwohci.c,v 1.98 2009/02/13 17:44:07 sbruno Exp $
37 1.89 kiyohara *
38 1.1 matt */
39 1.112 kiyohara #include <sys/cdefs.h>
40 1.138 riastrad __KERNEL_RCSID(0, "$NetBSD: fwohci.c,v 1.139 2016/11/20 22:47:39 riastradh Exp $");
41 1.1 matt
42 1.89 kiyohara #include <sys/param.h>
43 1.121 kiyohara #include <sys/atomic.h>
44 1.89 kiyohara #include <sys/bus.h>
45 1.1 matt #include <sys/device.h>
46 1.89 kiyohara #include <sys/errno.h>
47 1.89 kiyohara #include <sys/conf.h>
48 1.7 onoe #include <sys/kernel.h>
49 1.128 christos #include <sys/malloc.h>
50 1.3 onoe #include <sys/mbuf.h>
51 1.89 kiyohara #include <sys/proc.h>
52 1.89 kiyohara #include <sys/reboot.h>
53 1.121 kiyohara #include <sys/select.h>
54 1.89 kiyohara #include <sys/sysctl.h>
55 1.89 kiyohara #include <sys/systm.h>
56 1.7 onoe
57 1.89 kiyohara #include <dev/ieee1394/firewire.h>
58 1.89 kiyohara #include <dev/ieee1394/firewirereg.h>
59 1.89 kiyohara #include <dev/ieee1394/fwdma.h>
60 1.1 matt #include <dev/ieee1394/fwohcireg.h>
61 1.1 matt #include <dev/ieee1394/fwohcivar.h>
62 1.89 kiyohara #include <dev/ieee1394/firewire_phy.h>
63 1.105 kiyohara
64 1.132 uebayasi #include "ioconf.h"
65 1.132 uebayasi
66 1.89 kiyohara #undef OHCI_DEBUG
67 1.5 matt
68 1.89 kiyohara static int nocyclemaster = 0;
69 1.110 kiyohara int firewire_phydma_enable = 1;
70 1.89 kiyohara /*
71 1.89 kiyohara * Setup sysctl(3) MIB, hw.fwohci.*
72 1.89 kiyohara *
73 1.115 ad * TBD condition CTLFLAG_PERMANENT on being a module or not
74 1.89 kiyohara */
75 1.89 kiyohara SYSCTL_SETUP(sysctl_fwohci, "sysctl fwohci(4) subtree setup")
76 1.89 kiyohara {
77 1.110 kiyohara int rc, fwohci_node_num;
78 1.89 kiyohara const struct sysctlnode *node;
79 1.89 kiyohara
80 1.89 kiyohara if ((rc = sysctl_createv(clog, 0, NULL, &node,
81 1.89 kiyohara CTLFLAG_PERMANENT, CTLTYPE_NODE, "fwohci",
82 1.89 kiyohara SYSCTL_DESCR("fwohci controls"),
83 1.89 kiyohara NULL, 0, NULL, 0, CTL_HW, CTL_CREATE, CTL_EOL)) != 0) {
84 1.89 kiyohara goto err;
85 1.89 kiyohara }
86 1.110 kiyohara fwohci_node_num = node->sysctl_num;
87 1.89 kiyohara
88 1.89 kiyohara /* fwohci no cyclemaster flag */
89 1.89 kiyohara if ((rc = sysctl_createv(clog, 0, NULL, &node,
90 1.100 blymn CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
91 1.89 kiyohara "nocyclemaster", SYSCTL_DESCR("Do not send cycle start packets"),
92 1.89 kiyohara NULL, 0, &nocyclemaster,
93 1.110 kiyohara 0, CTL_HW, fwohci_node_num, CTL_CREATE, CTL_EOL)) != 0) {
94 1.110 kiyohara goto err;
95 1.110 kiyohara }
96 1.110 kiyohara
97 1.110 kiyohara /* fwohci physical request DMA enable */
98 1.110 kiyohara if ((rc = sysctl_createv(clog, 0, NULL, &node,
99 1.110 kiyohara CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT, "phydma_enable",
100 1.110 kiyohara SYSCTL_DESCR("Allow physical request DMA from firewire"),
101 1.110 kiyohara NULL, 0, &firewire_phydma_enable,
102 1.110 kiyohara 0, CTL_HW, fwohci_node_num, CTL_CREATE, CTL_EOL)) != 0) {
103 1.89 kiyohara goto err;
104 1.89 kiyohara }
105 1.89 kiyohara return;
106 1.89 kiyohara
107 1.89 kiyohara err:
108 1.121 kiyohara aprint_error("%s: sysctl_createv failed (rc = %d)\n", __func__, rc);
109 1.89 kiyohara }
110 1.89 kiyohara
111 1.121 kiyohara static const char * const dbcode[16] = {
112 1.121 kiyohara "OUTM", "OUTL", "INPM", "INPL", "STOR", "LOAD", "NOP ", "STOP",
113 1.121 kiyohara "", "", "", "", "", "", "", ""
114 1.121 kiyohara };
115 1.121 kiyohara
116 1.121 kiyohara static const char * const dbkey[8] = {
117 1.121 kiyohara "ST0", "ST1", "ST2", "ST3", "UNDEF", "REG", "SYS", "DEV"
118 1.121 kiyohara };
119 1.89 kiyohara
120 1.121 kiyohara static const char * const dbcond[4] = { "NEV", "C=1", "C=0", "ALL" };
121 1.90 drochner static const char * const fwohcicode[32] = {
122 1.121 kiyohara "No stat", "Undef", "long", "miss Ack err",
123 1.121 kiyohara "FIFO underrun","FIFO overrun", "desc err", "data read err",
124 1.121 kiyohara "data write err","bus reset", "timeout", "tcode err",
125 1.121 kiyohara "Undef", "Undef", "unknown event","flushed",
126 1.121 kiyohara "Undef", "ack complete", "ack pend", "Undef",
127 1.121 kiyohara "ack busy_X", "ack busy_A", "ack busy_B", "Undef",
128 1.121 kiyohara "Undef", "Undef", "Undef", "ack tardy",
129 1.121 kiyohara "Undef", "ack data_err", "ack type_err", ""
130 1.121 kiyohara };
131 1.89 kiyohara
132 1.89 kiyohara #define MAX_SPEED 3
133 1.90 drochner extern const char *fw_linkspeed[];
134 1.121 kiyohara static uint32_t const tagbit[4] = { 1 << 28, 1 << 29, 1 << 30, 1 << 31 };
135 1.89 kiyohara
136 1.90 drochner static const struct tcode_info tinfo[] = {
137 1.121 kiyohara /* hdr_len block flag valid_response */
138 1.121 kiyohara /* 0 WREQQ */ { 16, FWTI_REQ | FWTI_TLABEL, FWTCODE_WRES },
139 1.121 kiyohara /* 1 WREQB */ { 16, FWTI_REQ | FWTI_TLABEL | FWTI_BLOCK_ASY, FWTCODE_WRES },
140 1.121 kiyohara /* 2 WRES */ { 12, FWTI_RES, 0xff },
141 1.121 kiyohara /* 3 XXX */ { 0, 0, 0xff },
142 1.121 kiyohara /* 4 RREQQ */ { 12, FWTI_REQ | FWTI_TLABEL, FWTCODE_RRESQ },
143 1.121 kiyohara /* 5 RREQB */ { 16, FWTI_REQ | FWTI_TLABEL, FWTCODE_RRESB },
144 1.121 kiyohara /* 6 RRESQ */ { 16, FWTI_RES, 0xff },
145 1.121 kiyohara /* 7 RRESB */ { 16, FWTI_RES | FWTI_BLOCK_ASY, 0xff },
146 1.121 kiyohara /* 8 CYCS */ { 0, 0, 0xff },
147 1.121 kiyohara /* 9 LREQ */ { 16, FWTI_REQ | FWTI_TLABEL | FWTI_BLOCK_ASY, FWTCODE_LRES },
148 1.121 kiyohara /* a STREAM */ { 4, FWTI_REQ | FWTI_BLOCK_STR, 0xff },
149 1.121 kiyohara /* b LRES */ { 16, FWTI_RES | FWTI_BLOCK_ASY, 0xff },
150 1.121 kiyohara /* c XXX */ { 0, 0, 0xff },
151 1.121 kiyohara /* d XXX */ { 0, 0, 0xff },
152 1.121 kiyohara /* e PHY */ { 12, FWTI_REQ, 0xff },
153 1.121 kiyohara /* f XXX */ { 0, 0, 0xff }
154 1.89 kiyohara };
155 1.8 onoe
156 1.89 kiyohara #define OHCI_WRITE_SIGMASK 0xffff0000
157 1.89 kiyohara #define OHCI_READ_SIGMASK 0xffff0000
158 1.62 haya
159 1.62 haya
160 1.121 kiyohara int fwohci_print(void *, const char *);
161 1.121 kiyohara
162 1.121 kiyohara static int fwohci_ioctl(dev_t, u_long, void *, int, struct lwp *);
163 1.121 kiyohara
164 1.121 kiyohara static uint32_t fwohci_cyctimer(struct firewire_comm *);
165 1.121 kiyohara static uint32_t fwohci_set_bus_manager(struct firewire_comm *, u_int);
166 1.121 kiyohara static void fwohci_ibr(struct firewire_comm *);
167 1.121 kiyohara static int fwohci_irx_enable(struct firewire_comm *, int);
168 1.121 kiyohara static int fwohci_irx_disable(struct firewire_comm *, int);
169 1.121 kiyohara static int fwohci_itxbuf_enable(struct firewire_comm *, int);
170 1.121 kiyohara static int fwohci_itx_disable(struct firewire_comm *, int);
171 1.121 kiyohara static void fwohci_timeout(struct firewire_comm *fc);
172 1.89 kiyohara #if BYTE_ORDER == BIG_ENDIAN
173 1.121 kiyohara static void fwohci_irx_post(struct firewire_comm *, uint32_t *);
174 1.89 kiyohara #endif
175 1.121 kiyohara static void fwohci_set_intr(struct firewire_comm *, int);
176 1.121 kiyohara
177 1.121 kiyohara static uint32_t fwphy_rddata(struct fwohci_softc *, uint32_t);
178 1.121 kiyohara static uint32_t fwphy_wrdata(struct fwohci_softc *, uint32_t, uint32_t);
179 1.121 kiyohara static int fwohci_probe_phy(struct fwohci_softc *);
180 1.121 kiyohara static void fwohci_reset(struct fwohci_softc *);
181 1.121 kiyohara static void fwohci_execute_db(struct fwohcidb_tr *, bus_dmamap_t);
182 1.121 kiyohara static void fwohci_start(struct fwohci_softc *, struct fwohci_dbch *);
183 1.121 kiyohara static void fwohci_start_atq(struct firewire_comm *);
184 1.121 kiyohara static void fwohci_start_ats(struct firewire_comm *);
185 1.121 kiyohara static void fwohci_txd(struct fwohci_softc *, struct fwohci_dbch *);
186 1.121 kiyohara static void fwohci_db_free(struct fwohci_softc *, struct fwohci_dbch *);
187 1.121 kiyohara static void fwohci_db_init(struct fwohci_softc *, struct fwohci_dbch *);
188 1.121 kiyohara static int fwohci_rx_enable(struct fwohci_softc *, struct fwohci_dbch *);
189 1.121 kiyohara static int fwohci_tx_enable(struct fwohci_softc *, struct fwohci_dbch *);
190 1.121 kiyohara static int fwohci_next_cycle(struct fwohci_softc *, int);
191 1.121 kiyohara #ifdef OHCI_DEBUG
192 1.121 kiyohara static void fwohci_dump_intr(struct fwohci_softc *, uint32_t);
193 1.5 matt #endif
194 1.121 kiyohara static void fwohci_intr_core(struct fwohci_softc *, uint32_t);
195 1.121 kiyohara static void fwohci_intr_dma(struct fwohci_softc *, uint32_t);
196 1.121 kiyohara static void fwohci_task_sid(struct fwohci_softc *);
197 1.121 kiyohara static void fwohci_task_dma(struct fwohci_softc *);
198 1.121 kiyohara static void fwohci_tbuf_update(struct fwohci_softc *, int);
199 1.121 kiyohara static void fwohci_rbuf_update(struct fwohci_softc *, int);
200 1.121 kiyohara static void dump_dma(struct fwohci_softc *, uint32_t);
201 1.121 kiyohara static void dump_db(struct fwohci_softc *, uint32_t);
202 1.121 kiyohara static void print_db(struct fwohcidb_tr *, struct fwohcidb *, uint32_t,
203 1.121 kiyohara uint32_t);
204 1.121 kiyohara static void fwohci_txbufdb(struct fwohci_softc *, int, struct fw_bulkxfer *);
205 1.121 kiyohara static int fwohci_add_tx_buf(struct fwohci_dbch *, struct fwohcidb_tr *, int);
206 1.121 kiyohara static int fwohci_add_rx_buf(struct fwohci_dbch *, struct fwohcidb_tr *, int,
207 1.121 kiyohara struct fwdma_alloc *);
208 1.121 kiyohara static int fwohci_arcv_swap(struct fw_pkt *, int);
209 1.121 kiyohara static int fwohci_get_plen(struct fwohci_softc *, struct fwohci_dbch *,
210 1.121 kiyohara struct fw_pkt *);
211 1.121 kiyohara static void fwohci_arcv_free_buf(struct fwohci_softc *, struct fwohci_dbch *,
212 1.121 kiyohara struct fwohcidb_tr *, int);
213 1.121 kiyohara static void fwohci_arcv(struct fwohci_softc *, struct fwohci_dbch *);
214 1.121 kiyohara
215 1.5 matt
216 1.89 kiyohara /*
217 1.89 kiyohara * memory allocated for DMA programs
218 1.89 kiyohara */
219 1.89 kiyohara #define DMA_PROG_ALLOC (8 * PAGE_SIZE)
220 1.1 matt
221 1.89 kiyohara #define NDB FWMAXQUEUE
222 1.89 kiyohara
223 1.121 kiyohara #define OHCI_VERSION 0x000
224 1.121 kiyohara #define OHCI_ATRETRY 0x008
225 1.121 kiyohara #define OHCI_CROMHDR 0x018
226 1.121 kiyohara #define OHCI_BUS_OPT 0x020
227 1.89 kiyohara #define OHCI_BUSIRMC (1 << 31)
228 1.89 kiyohara #define OHCI_BUSCMC (1 << 30)
229 1.89 kiyohara #define OHCI_BUSISC (1 << 29)
230 1.89 kiyohara #define OHCI_BUSBMC (1 << 28)
231 1.89 kiyohara #define OHCI_BUSPMC (1 << 27)
232 1.121 kiyohara #define OHCI_BUSFNC \
233 1.121 kiyohara (OHCI_BUSIRMC | OHCI_BUSCMC | OHCI_BUSISC | OHCI_BUSBMC | OHCI_BUSPMC)
234 1.89 kiyohara
235 1.121 kiyohara #define OHCI_EUID_HI 0x024
236 1.121 kiyohara #define OHCI_EUID_LO 0x028
237 1.89 kiyohara
238 1.121 kiyohara #define OHCI_CROMPTR 0x034
239 1.121 kiyohara #define OHCI_HCCCTL 0x050
240 1.121 kiyohara #define OHCI_HCCCTLCLR 0x054
241 1.89 kiyohara #define OHCI_AREQHI 0x100
242 1.89 kiyohara #define OHCI_AREQHICLR 0x104
243 1.89 kiyohara #define OHCI_AREQLO 0x108
244 1.89 kiyohara #define OHCI_AREQLOCLR 0x10c
245 1.89 kiyohara #define OHCI_PREQHI 0x110
246 1.89 kiyohara #define OHCI_PREQHICLR 0x114
247 1.89 kiyohara #define OHCI_PREQLO 0x118
248 1.89 kiyohara #define OHCI_PREQLOCLR 0x11c
249 1.89 kiyohara #define OHCI_PREQUPPER 0x120
250 1.89 kiyohara
251 1.121 kiyohara #define OHCI_SID_BUF 0x064
252 1.121 kiyohara #define OHCI_SID_CNT 0x068
253 1.89 kiyohara #define OHCI_SID_ERR (1 << 31)
254 1.89 kiyohara #define OHCI_SID_CNT_MASK 0xffc
255 1.89 kiyohara
256 1.121 kiyohara #define OHCI_IT_STAT 0x090
257 1.121 kiyohara #define OHCI_IT_STATCLR 0x094
258 1.121 kiyohara #define OHCI_IT_MASK 0x098
259 1.121 kiyohara #define OHCI_IT_MASKCLR 0x09c
260 1.121 kiyohara
261 1.121 kiyohara #define OHCI_IR_STAT 0x0a0
262 1.121 kiyohara #define OHCI_IR_STATCLR 0x0a4
263 1.121 kiyohara #define OHCI_IR_MASK 0x0a8
264 1.121 kiyohara #define OHCI_IR_MASKCLR 0x0ac
265 1.89 kiyohara
266 1.121 kiyohara #define OHCI_LNKCTL 0x0e0
267 1.121 kiyohara #define OHCI_LNKCTLCLR 0x0e4
268 1.89 kiyohara
269 1.121 kiyohara #define OHCI_PHYACCESS 0x0ec
270 1.121 kiyohara #define OHCI_CYCLETIMER 0x0f0
271 1.89 kiyohara
272 1.89 kiyohara #define OHCI_DMACTL(off) (off)
273 1.121 kiyohara #define OHCI_DMACTLCLR(off) (off + 0x04)
274 1.121 kiyohara #define OHCI_DMACMD(off) (off + 0x0c)
275 1.89 kiyohara #define OHCI_DMAMATCH(off) (off + 0x10)
276 1.89 kiyohara
277 1.89 kiyohara #define OHCI_ATQOFF 0x180
278 1.89 kiyohara #define OHCI_ATQCTL OHCI_ATQOFF
279 1.121 kiyohara #define OHCI_ATQCTLCLR (OHCI_ATQOFF + 0x04)
280 1.121 kiyohara #define OHCI_ATQCMD (OHCI_ATQOFF + 0x0c)
281 1.89 kiyohara #define OHCI_ATQMATCH (OHCI_ATQOFF + 0x10)
282 1.89 kiyohara
283 1.89 kiyohara #define OHCI_ATSOFF 0x1a0
284 1.89 kiyohara #define OHCI_ATSCTL OHCI_ATSOFF
285 1.121 kiyohara #define OHCI_ATSCTLCLR (OHCI_ATSOFF + 0x04)
286 1.121 kiyohara #define OHCI_ATSCMD (OHCI_ATSOFF + 0x0c)
287 1.89 kiyohara #define OHCI_ATSMATCH (OHCI_ATSOFF + 0x10)
288 1.89 kiyohara
289 1.89 kiyohara #define OHCI_ARQOFF 0x1c0
290 1.89 kiyohara #define OHCI_ARQCTL OHCI_ARQOFF
291 1.121 kiyohara #define OHCI_ARQCTLCLR (OHCI_ARQOFF + 0x04)
292 1.121 kiyohara #define OHCI_ARQCMD (OHCI_ARQOFF + 0x0c)
293 1.89 kiyohara #define OHCI_ARQMATCH (OHCI_ARQOFF + 0x10)
294 1.89 kiyohara
295 1.89 kiyohara #define OHCI_ARSOFF 0x1e0
296 1.89 kiyohara #define OHCI_ARSCTL OHCI_ARSOFF
297 1.121 kiyohara #define OHCI_ARSCTLCLR (OHCI_ARSOFF + 0x04)
298 1.121 kiyohara #define OHCI_ARSCMD (OHCI_ARSOFF + 0x0c)
299 1.89 kiyohara #define OHCI_ARSMATCH (OHCI_ARSOFF + 0x10)
300 1.89 kiyohara
301 1.89 kiyohara #define OHCI_ITOFF(CH) (0x200 + 0x10 * (CH))
302 1.89 kiyohara #define OHCI_ITCTL(CH) (OHCI_ITOFF(CH))
303 1.121 kiyohara #define OHCI_ITCTLCLR(CH) (OHCI_ITOFF(CH) + 0x04)
304 1.121 kiyohara #define OHCI_ITCMD(CH) (OHCI_ITOFF(CH) + 0x0c)
305 1.89 kiyohara
306 1.89 kiyohara #define OHCI_IROFF(CH) (0x400 + 0x20 * (CH))
307 1.89 kiyohara #define OHCI_IRCTL(CH) (OHCI_IROFF(CH))
308 1.121 kiyohara #define OHCI_IRCTLCLR(CH) (OHCI_IROFF(CH) + 0x04)
309 1.121 kiyohara #define OHCI_IRCMD(CH) (OHCI_IROFF(CH) + 0x0c)
310 1.89 kiyohara #define OHCI_IRMATCH(CH) (OHCI_IROFF(CH) + 0x10)
311 1.89 kiyohara
312 1.121 kiyohara #define ATRQ_CH 0
313 1.121 kiyohara #define ATRS_CH 1
314 1.121 kiyohara #define ARRQ_CH 2
315 1.121 kiyohara #define ARRS_CH 3
316 1.121 kiyohara #define ITX_CH 4
317 1.121 kiyohara #define IRX_CH 36
318 1.121 kiyohara
319 1.121 kiyohara
320 1.133 riastrad /*
321 1.133 riastrad * Call fwohci_init before fwohci_attach to initialize the kernel's
322 1.133 riastrad * data structures well enough that fwohci_detach won't crash, even if
323 1.133 riastrad * fwohci_attach fails.
324 1.133 riastrad */
325 1.133 riastrad
326 1.133 riastrad void
327 1.121 kiyohara fwohci_init(struct fwohci_softc *sc)
328 1.121 kiyohara {
329 1.121 kiyohara sc->fc.arq = &sc->arrq.xferq;
330 1.121 kiyohara sc->fc.ars = &sc->arrs.xferq;
331 1.121 kiyohara sc->fc.atq = &sc->atrq.xferq;
332 1.121 kiyohara sc->fc.ats = &sc->atrs.xferq;
333 1.121 kiyohara
334 1.121 kiyohara sc->arrq.xferq.psize = roundup2(FWPMAX_S400, PAGE_SIZE);
335 1.121 kiyohara sc->arrs.xferq.psize = roundup2(FWPMAX_S400, PAGE_SIZE);
336 1.121 kiyohara sc->atrq.xferq.psize = roundup2(FWPMAX_S400, PAGE_SIZE);
337 1.121 kiyohara sc->atrs.xferq.psize = roundup2(FWPMAX_S400, PAGE_SIZE);
338 1.121 kiyohara
339 1.121 kiyohara sc->arrq.xferq.start = NULL;
340 1.121 kiyohara sc->arrs.xferq.start = NULL;
341 1.121 kiyohara sc->atrq.xferq.start = fwohci_start_atq;
342 1.121 kiyohara sc->atrs.xferq.start = fwohci_start_ats;
343 1.121 kiyohara
344 1.121 kiyohara sc->arrq.xferq.buf = NULL;
345 1.121 kiyohara sc->arrs.xferq.buf = NULL;
346 1.121 kiyohara sc->atrq.xferq.buf = NULL;
347 1.121 kiyohara sc->atrs.xferq.buf = NULL;
348 1.121 kiyohara
349 1.121 kiyohara sc->arrq.xferq.dmach = -1;
350 1.121 kiyohara sc->arrs.xferq.dmach = -1;
351 1.121 kiyohara sc->atrq.xferq.dmach = -1;
352 1.121 kiyohara sc->atrs.xferq.dmach = -1;
353 1.121 kiyohara
354 1.121 kiyohara sc->arrq.ndesc = 1;
355 1.121 kiyohara sc->arrs.ndesc = 1;
356 1.121 kiyohara sc->atrq.ndesc = 8; /* equal to maximum of mbuf chains */
357 1.121 kiyohara sc->atrs.ndesc = 2;
358 1.121 kiyohara
359 1.121 kiyohara sc->arrq.ndb = NDB;
360 1.121 kiyohara sc->arrs.ndb = NDB / 2;
361 1.121 kiyohara sc->atrq.ndb = NDB;
362 1.121 kiyohara sc->atrs.ndb = NDB / 2;
363 1.121 kiyohara
364 1.121 kiyohara sc->arrq.off = OHCI_ARQOFF;
365 1.121 kiyohara sc->arrs.off = OHCI_ARSOFF;
366 1.121 kiyohara sc->atrq.off = OHCI_ATQOFF;
367 1.121 kiyohara sc->atrs.off = OHCI_ATSOFF;
368 1.121 kiyohara
369 1.133 riastrad sc->fc.tcode = tinfo;
370 1.133 riastrad
371 1.133 riastrad sc->fc.cyctimer = fwohci_cyctimer;
372 1.133 riastrad sc->fc.ibr = fwohci_ibr;
373 1.133 riastrad sc->fc.set_bmr = fwohci_set_bus_manager;
374 1.133 riastrad sc->fc.ioctl = fwohci_ioctl;
375 1.133 riastrad sc->fc.irx_enable = fwohci_irx_enable;
376 1.133 riastrad sc->fc.irx_disable = fwohci_irx_disable;
377 1.133 riastrad
378 1.133 riastrad sc->fc.itx_enable = fwohci_itxbuf_enable;
379 1.133 riastrad sc->fc.itx_disable = fwohci_itx_disable;
380 1.133 riastrad sc->fc.timeout = fwohci_timeout;
381 1.133 riastrad sc->fc.set_intr = fwohci_set_intr;
382 1.133 riastrad #if BYTE_ORDER == BIG_ENDIAN
383 1.133 riastrad sc->fc.irx_post = fwohci_irx_post;
384 1.133 riastrad #else
385 1.133 riastrad sc->fc.irx_post = NULL;
386 1.133 riastrad #endif
387 1.133 riastrad sc->fc.itx_post = NULL;
388 1.133 riastrad
389 1.133 riastrad sc->intmask = sc->irstat = sc->itstat = 0;
390 1.133 riastrad
391 1.133 riastrad fw_init(&sc->fc);
392 1.133 riastrad }
393 1.133 riastrad
394 1.133 riastrad /*
395 1.133 riastrad * Call fwohci_attach after fwohci_init to initialize the hardware and
396 1.133 riastrad * attach children.
397 1.133 riastrad */
398 1.133 riastrad
399 1.133 riastrad int
400 1.133 riastrad fwohci_attach(struct fwohci_softc *sc)
401 1.133 riastrad {
402 1.133 riastrad uint32_t reg;
403 1.133 riastrad uint8_t ui[8];
404 1.133 riastrad int i, mver;
405 1.133 riastrad
406 1.133 riastrad /* OHCI version */
407 1.133 riastrad reg = OREAD(sc, OHCI_VERSION);
408 1.133 riastrad mver = (reg >> 16) & 0xff;
409 1.133 riastrad aprint_normal_dev(sc->fc.dev, "OHCI version %x.%x (ROM=%d)\n",
410 1.133 riastrad mver, reg & 0xff, (reg >> 24) & 1);
411 1.133 riastrad if (mver < 1 || mver > 9) {
412 1.133 riastrad aprint_error_dev(sc->fc.dev, "invalid OHCI version\n");
413 1.133 riastrad return ENXIO;
414 1.133 riastrad }
415 1.133 riastrad
416 1.133 riastrad /* Available Isochronous DMA channel probe */
417 1.133 riastrad OWRITE(sc, OHCI_IT_MASK, 0xffffffff);
418 1.133 riastrad OWRITE(sc, OHCI_IR_MASK, 0xffffffff);
419 1.133 riastrad reg = OREAD(sc, OHCI_IT_MASK) & OREAD(sc, OHCI_IR_MASK);
420 1.133 riastrad OWRITE(sc, OHCI_IT_MASKCLR, 0xffffffff);
421 1.133 riastrad OWRITE(sc, OHCI_IR_MASKCLR, 0xffffffff);
422 1.133 riastrad for (i = 0; i < 0x20; i++)
423 1.133 riastrad if ((reg & (1 << i)) == 0)
424 1.133 riastrad break;
425 1.133 riastrad sc->fc.nisodma = i;
426 1.133 riastrad aprint_normal_dev(sc->fc.dev, "No. of Isochronous channels is %d.\n",
427 1.133 riastrad i);
428 1.133 riastrad if (i == 0)
429 1.133 riastrad return ENXIO;
430 1.133 riastrad
431 1.138 riastrad fw_init_isodma(&sc->fc);
432 1.138 riastrad
433 1.121 kiyohara for (i = 0; i < sc->fc.nisodma; i++) {
434 1.121 kiyohara sc->fc.it[i] = &sc->it[i].xferq;
435 1.121 kiyohara sc->fc.ir[i] = &sc->ir[i].xferq;
436 1.121 kiyohara sc->it[i].xferq.dmach = i;
437 1.121 kiyohara sc->ir[i].xferq.dmach = i;
438 1.121 kiyohara sc->it[i].ndb = 0;
439 1.121 kiyohara sc->ir[i].ndb = 0;
440 1.121 kiyohara sc->it[i].off = OHCI_ITOFF(i);
441 1.121 kiyohara sc->ir[i].off = OHCI_IROFF(i);
442 1.121 kiyohara }
443 1.121 kiyohara
444 1.121 kiyohara sc->fc.config_rom = fwdma_alloc_setup(sc->fc.dev, sc->fc.dmat,
445 1.121 kiyohara CROMSIZE, &sc->crom_dma, CROMSIZE, BUS_DMA_NOWAIT);
446 1.121 kiyohara if (sc->fc.config_rom == NULL) {
447 1.134 kiyohara aprint_error_dev(sc->fc.dev, "config_rom alloc failed.\n");
448 1.121 kiyohara return ENOMEM;
449 1.121 kiyohara }
450 1.121 kiyohara
451 1.121 kiyohara #if 0
452 1.121 kiyohara memset(sc->fc.config_rom, 0, CROMSIZE);
453 1.121 kiyohara sc->fc.config_rom[1] = 0x31333934;
454 1.121 kiyohara sc->fc.config_rom[2] = 0xf000a002;
455 1.121 kiyohara sc->fc.config_rom[3] = OREAD(sc, OHCI_EUID_HI);
456 1.121 kiyohara sc->fc.config_rom[4] = OREAD(sc, OHCI_EUID_LO);
457 1.121 kiyohara sc->fc.config_rom[5] = 0;
458 1.121 kiyohara sc->fc.config_rom[0] = (4 << 24) | (5 << 16);
459 1.121 kiyohara
460 1.121 kiyohara sc->fc.config_rom[0] |= fw_crc16(&sc->fc.config_rom[1], 5*4);
461 1.121 kiyohara #endif
462 1.121 kiyohara
463 1.128 christos /* SID recieve buffer must align 2^11 */
464 1.121 kiyohara #define OHCI_SIDSIZE (1 << 11)
465 1.121 kiyohara sc->sid_buf = fwdma_alloc_setup(sc->fc.dev, sc->fc.dmat, OHCI_SIDSIZE,
466 1.121 kiyohara &sc->sid_dma, OHCI_SIDSIZE, BUS_DMA_NOWAIT);
467 1.121 kiyohara if (sc->sid_buf == NULL) {
468 1.121 kiyohara aprint_error_dev(sc->fc.dev, "sid_buf alloc failed.");
469 1.121 kiyohara return ENOMEM;
470 1.121 kiyohara }
471 1.121 kiyohara
472 1.121 kiyohara fwdma_alloc_setup(sc->fc.dev, sc->fc.dmat, sizeof(uint32_t),
473 1.121 kiyohara &sc->dummy_dma, sizeof(uint32_t), BUS_DMA_NOWAIT);
474 1.121 kiyohara if (sc->dummy_dma.v_addr == NULL) {
475 1.121 kiyohara aprint_error_dev(sc->fc.dev, "dummy_dma alloc failed.");
476 1.121 kiyohara return ENOMEM;
477 1.121 kiyohara }
478 1.121 kiyohara
479 1.121 kiyohara fwohci_db_init(sc, &sc->arrq);
480 1.121 kiyohara if ((sc->arrq.flags & FWOHCI_DBCH_INIT) == 0)
481 1.121 kiyohara return ENOMEM;
482 1.121 kiyohara
483 1.121 kiyohara fwohci_db_init(sc, &sc->arrs);
484 1.121 kiyohara if ((sc->arrs.flags & FWOHCI_DBCH_INIT) == 0)
485 1.121 kiyohara return ENOMEM;
486 1.121 kiyohara
487 1.121 kiyohara fwohci_db_init(sc, &sc->atrq);
488 1.121 kiyohara if ((sc->atrq.flags & FWOHCI_DBCH_INIT) == 0)
489 1.121 kiyohara return ENOMEM;
490 1.121 kiyohara
491 1.121 kiyohara fwohci_db_init(sc, &sc->atrs);
492 1.121 kiyohara if ((sc->atrs.flags & FWOHCI_DBCH_INIT) == 0)
493 1.121 kiyohara return ENOMEM;
494 1.121 kiyohara
495 1.121 kiyohara sc->fc.eui.hi = OREAD(sc, FWOHCIGUID_H);
496 1.121 kiyohara sc->fc.eui.lo = OREAD(sc, FWOHCIGUID_L);
497 1.121 kiyohara for (i = 0; i < 8; i++)
498 1.121 kiyohara ui[i] = FW_EUI64_BYTE(&sc->fc.eui, i);
499 1.121 kiyohara aprint_normal_dev(sc->fc.dev,
500 1.121 kiyohara "EUI64 %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x\n",
501 1.121 kiyohara ui[0], ui[1], ui[2], ui[3], ui[4], ui[5], ui[6], ui[7]);
502 1.121 kiyohara
503 1.121 kiyohara fwohci_reset(sc);
504 1.89 kiyohara
505 1.121 kiyohara sc->fc.bdev =
506 1.121 kiyohara config_found(sc->fc.dev, __UNCONST("ieee1394if"), fwohci_print);
507 1.89 kiyohara
508 1.121 kiyohara return 0;
509 1.89 kiyohara }
510 1.89 kiyohara
511 1.121 kiyohara int
512 1.121 kiyohara fwohci_detach(struct fwohci_softc *sc, int flags)
513 1.89 kiyohara {
514 1.133 riastrad int i, rv;
515 1.89 kiyohara
516 1.133 riastrad if (sc->fc.bdev != NULL) {
517 1.133 riastrad rv = config_detach(sc->fc.bdev, flags);
518 1.133 riastrad if (rv)
519 1.133 riastrad return rv;
520 1.133 riastrad }
521 1.121 kiyohara if (sc->sid_buf != NULL)
522 1.121 kiyohara fwdma_free(sc->sid_dma.dma_tag, sc->sid_dma.dma_map,
523 1.121 kiyohara sc->sid_dma.v_addr);
524 1.121 kiyohara if (sc->fc.config_rom != NULL)
525 1.121 kiyohara fwdma_free(sc->crom_dma.dma_tag, sc->crom_dma.dma_map,
526 1.121 kiyohara sc->crom_dma.v_addr);
527 1.89 kiyohara
528 1.121 kiyohara fwohci_db_free(sc, &sc->arrq);
529 1.121 kiyohara fwohci_db_free(sc, &sc->arrs);
530 1.121 kiyohara fwohci_db_free(sc, &sc->atrq);
531 1.121 kiyohara fwohci_db_free(sc, &sc->atrs);
532 1.121 kiyohara for (i = 0; i < sc->fc.nisodma; i++) {
533 1.121 kiyohara fwohci_db_free(sc, &sc->it[i]);
534 1.121 kiyohara fwohci_db_free(sc, &sc->ir[i]);
535 1.121 kiyohara }
536 1.121 kiyohara
537 1.139 riastrad fw_destroy_isodma(&sc->fc);
538 1.133 riastrad fw_destroy(&sc->fc);
539 1.89 kiyohara
540 1.121 kiyohara return 0;
541 1.89 kiyohara }
542 1.89 kiyohara
543 1.121 kiyohara int
544 1.121 kiyohara fwohci_intr(void *arg)
545 1.89 kiyohara {
546 1.121 kiyohara struct fwohci_softc *sc = (struct fwohci_softc *)arg;
547 1.121 kiyohara uint32_t stat, irstat, itstat;
548 1.121 kiyohara
549 1.121 kiyohara if (!device_is_active(sc->fc.dev))
550 1.121 kiyohara return 0;
551 1.121 kiyohara
552 1.121 kiyohara if (!(sc->intmask & OHCI_INT_EN))
553 1.121 kiyohara /* polling mode? */
554 1.121 kiyohara return 0;
555 1.89 kiyohara
556 1.121 kiyohara stat = OREAD(sc, FWOHCI_INTSTAT);
557 1.121 kiyohara if (stat == 0xffffffff) {
558 1.121 kiyohara aprint_error_dev(sc->fc.dev, "device physically ejected?\n");
559 1.121 kiyohara return 0;
560 1.89 kiyohara }
561 1.121 kiyohara if (stat)
562 1.121 kiyohara OWRITE(sc, FWOHCI_INTSTATCLR, stat & ~OHCI_INT_PHY_BUS_R);
563 1.121 kiyohara
564 1.121 kiyohara stat &= sc->intmask;
565 1.121 kiyohara if (stat == 0)
566 1.121 kiyohara return 0;
567 1.121 kiyohara
568 1.121 kiyohara atomic_swap_32(&sc->intstat, stat);
569 1.121 kiyohara if (stat & OHCI_INT_DMA_IR) {
570 1.121 kiyohara irstat = OREAD(sc, OHCI_IR_STAT);
571 1.121 kiyohara OWRITE(sc, OHCI_IR_STATCLR, irstat);
572 1.121 kiyohara atomic_swap_32(&sc->irstat, irstat);
573 1.89 kiyohara }
574 1.121 kiyohara if (stat & OHCI_INT_DMA_IT) {
575 1.121 kiyohara itstat = OREAD(sc, OHCI_IT_STAT);
576 1.121 kiyohara OWRITE(sc, OHCI_IT_STATCLR, itstat);
577 1.121 kiyohara atomic_swap_32(&sc->itstat, itstat);
578 1.89 kiyohara }
579 1.121 kiyohara
580 1.121 kiyohara fwohci_intr_core(sc, stat);
581 1.121 kiyohara return 1;
582 1.89 kiyohara }
583 1.121 kiyohara
584 1.121 kiyohara int
585 1.121 kiyohara fwohci_resume(struct fwohci_softc *sc)
586 1.89 kiyohara {
587 1.121 kiyohara struct fw_xferq *ir;
588 1.121 kiyohara struct fw_bulkxfer *chunk;
589 1.121 kiyohara int i;
590 1.121 kiyohara extern int firewire_resume(struct firewire_comm *);
591 1.89 kiyohara
592 1.121 kiyohara fwohci_reset(sc);
593 1.121 kiyohara /* XXX resume isochronous receive automatically. (how about TX?) */
594 1.121 kiyohara for (i = 0; i < sc->fc.nisodma; i++) {
595 1.121 kiyohara ir = &sc->ir[i].xferq;
596 1.121 kiyohara if ((ir->flag & FWXFERQ_RUNNING) != 0) {
597 1.121 kiyohara aprint_normal_dev(sc->fc.dev,
598 1.121 kiyohara "resume iso receive ch: %d\n", i);
599 1.121 kiyohara ir->flag &= ~FWXFERQ_RUNNING;
600 1.121 kiyohara /* requeue stdma to stfree */
601 1.121 kiyohara while ((chunk = STAILQ_FIRST(&ir->stdma)) != NULL) {
602 1.121 kiyohara STAILQ_REMOVE_HEAD(&ir->stdma, link);
603 1.121 kiyohara STAILQ_INSERT_TAIL(&ir->stfree, chunk, link);
604 1.121 kiyohara }
605 1.121 kiyohara sc->fc.irx_enable(&sc->fc, i);
606 1.121 kiyohara }
607 1.121 kiyohara }
608 1.121 kiyohara
609 1.121 kiyohara firewire_resume(&sc->fc);
610 1.121 kiyohara sc->fc.ibr(&sc->fc);
611 1.121 kiyohara return 0;
612 1.121 kiyohara }
613 1.121 kiyohara
614 1.121 kiyohara int
615 1.121 kiyohara fwohci_stop(struct fwohci_softc *sc)
616 1.121 kiyohara {
617 1.121 kiyohara u_int i;
618 1.121 kiyohara
619 1.121 kiyohara fwohci_set_intr(&sc->fc, 0);
620 1.121 kiyohara
621 1.121 kiyohara /* Now stopping all DMA channel */
622 1.121 kiyohara OWRITE(sc, OHCI_ARQCTLCLR, OHCI_CNTL_DMA_RUN);
623 1.121 kiyohara OWRITE(sc, OHCI_ARSCTLCLR, OHCI_CNTL_DMA_RUN);
624 1.121 kiyohara OWRITE(sc, OHCI_ATQCTLCLR, OHCI_CNTL_DMA_RUN);
625 1.121 kiyohara OWRITE(sc, OHCI_ATSCTLCLR, OHCI_CNTL_DMA_RUN);
626 1.121 kiyohara
627 1.121 kiyohara for (i = 0; i < sc->fc.nisodma; i++) {
628 1.121 kiyohara OWRITE(sc, OHCI_IRCTLCLR(i), OHCI_CNTL_DMA_RUN);
629 1.121 kiyohara OWRITE(sc, OHCI_ITCTLCLR(i), OHCI_CNTL_DMA_RUN);
630 1.89 kiyohara }
631 1.121 kiyohara
632 1.121 kiyohara #if 0 /* Let dcons(4) be accessed */
633 1.121 kiyohara /* Stop interrupt */
634 1.121 kiyohara OWRITE(sc, FWOHCI_INTMASKCLR,
635 1.121 kiyohara OHCI_INT_EN |
636 1.121 kiyohara OHCI_INT_ERR |
637 1.121 kiyohara OHCI_INT_PHY_SID |
638 1.121 kiyohara OHCI_INT_PHY_INT |
639 1.121 kiyohara OHCI_INT_DMA_ATRQ |
640 1.121 kiyohara OHCI_INT_DMA_ATRS |
641 1.121 kiyohara OHCI_INT_DMA_PRRQ |
642 1.121 kiyohara OHCI_INT_DMA_PRRS |
643 1.121 kiyohara OHCI_INT_DMA_ARRQ |
644 1.121 kiyohara OHCI_INT_DMA_ARRS |
645 1.121 kiyohara OHCI_INT_PHY_BUS_R);
646 1.121 kiyohara
647 1.121 kiyohara /* FLUSH FIFO and reset Transmitter/Reciever */
648 1.121 kiyohara OWRITE(sc, OHCI_HCCCTL, OHCI_HCC_RESET);
649 1.121 kiyohara #endif
650 1.121 kiyohara
651 1.121 kiyohara /* XXX Link down? Bus reset? */
652 1.121 kiyohara return 0;
653 1.121 kiyohara }
654 1.121 kiyohara
655 1.121 kiyohara
656 1.121 kiyohara static int
657 1.121 kiyohara fwohci_ioctl(dev_t dev, u_long cmd, void *data, int flag, struct lwp *td)
658 1.121 kiyohara {
659 1.121 kiyohara struct fwohci_softc *sc;
660 1.121 kiyohara struct fw_reg_req_t *reg = (struct fw_reg_req_t *)data;
661 1.121 kiyohara uint32_t *dmach = (uint32_t *)data;
662 1.121 kiyohara int err = 0;
663 1.121 kiyohara
664 1.121 kiyohara sc = device_lookup_private(&fwohci_cd, DEV2UNIT(dev));
665 1.121 kiyohara if (sc == NULL)
666 1.121 kiyohara return ENXIO;
667 1.89 kiyohara
668 1.89 kiyohara if (!data)
669 1.121 kiyohara return EINVAL;
670 1.89 kiyohara
671 1.89 kiyohara switch (cmd) {
672 1.89 kiyohara case FWOHCI_WRREG:
673 1.89 kiyohara #define OHCI_MAX_REG 0x800
674 1.121 kiyohara if (reg->addr <= OHCI_MAX_REG) {
675 1.121 kiyohara OWRITE(sc, reg->addr, reg->data);
676 1.121 kiyohara reg->data = OREAD(sc, reg->addr);
677 1.121 kiyohara } else
678 1.89 kiyohara err = EINVAL;
679 1.89 kiyohara break;
680 1.121 kiyohara
681 1.89 kiyohara case FWOHCI_RDREG:
682 1.121 kiyohara if (reg->addr <= OHCI_MAX_REG)
683 1.121 kiyohara reg->data = OREAD(sc, reg->addr);
684 1.121 kiyohara else
685 1.89 kiyohara err = EINVAL;
686 1.89 kiyohara break;
687 1.121 kiyohara
688 1.89 kiyohara /* Read DMA descriptors for debug */
689 1.89 kiyohara case DUMPDMA:
690 1.121 kiyohara if (*dmach <= OHCI_MAX_DMA_CH) {
691 1.121 kiyohara dump_dma(sc, *dmach);
692 1.121 kiyohara dump_db(sc, *dmach);
693 1.121 kiyohara } else
694 1.89 kiyohara err = EINVAL;
695 1.89 kiyohara break;
696 1.121 kiyohara
697 1.89 kiyohara /* Read/Write Phy registers */
698 1.89 kiyohara #define OHCI_MAX_PHY_REG 0xf
699 1.89 kiyohara case FWOHCI_RDPHYREG:
700 1.89 kiyohara if (reg->addr <= OHCI_MAX_PHY_REG)
701 1.121 kiyohara reg->data = fwphy_rddata(sc, reg->addr);
702 1.89 kiyohara else
703 1.89 kiyohara err = EINVAL;
704 1.89 kiyohara break;
705 1.121 kiyohara
706 1.89 kiyohara case FWOHCI_WRPHYREG:
707 1.89 kiyohara if (reg->addr <= OHCI_MAX_PHY_REG)
708 1.121 kiyohara reg->data = fwphy_wrdata(sc, reg->addr, reg->data);
709 1.89 kiyohara else
710 1.89 kiyohara err = EINVAL;
711 1.89 kiyohara break;
712 1.121 kiyohara
713 1.89 kiyohara default:
714 1.89 kiyohara err = EINVAL;
715 1.89 kiyohara break;
716 1.3 onoe }
717 1.89 kiyohara return err;
718 1.89 kiyohara }
719 1.3 onoe
720 1.121 kiyohara int
721 1.121 kiyohara fwohci_print(void *aux, const char *pnp)
722 1.89 kiyohara {
723 1.121 kiyohara struct fw_attach_args *fwa = (struct fw_attach_args *)aux;
724 1.121 kiyohara
725 1.121 kiyohara if (pnp)
726 1.121 kiyohara aprint_normal("%s at %s", fwa->name, pnp);
727 1.107 kiyohara
728 1.121 kiyohara return UNCONF;
729 1.121 kiyohara }
730 1.89 kiyohara
731 1.1 matt
732 1.121 kiyohara static uint32_t
733 1.121 kiyohara fwohci_cyctimer(struct firewire_comm *fc)
734 1.121 kiyohara {
735 1.121 kiyohara struct fwohci_softc *sc = (struct fwohci_softc *)fc;
736 1.26 enami
737 1.121 kiyohara return OREAD(sc, OHCI_CYCLETIMER);
738 1.89 kiyohara }
739 1.1 matt
740 1.121 kiyohara static uint32_t
741 1.121 kiyohara fwohci_set_bus_manager(struct firewire_comm *fc, u_int node)
742 1.89 kiyohara {
743 1.121 kiyohara struct fwohci_softc *sc = (struct fwohci_softc *)fc;
744 1.121 kiyohara uint32_t bm;
745 1.121 kiyohara int i;
746 1.89 kiyohara
747 1.121 kiyohara #define OHCI_CSR_DATA 0x0c
748 1.121 kiyohara #define OHCI_CSR_COMP 0x10
749 1.121 kiyohara #define OHCI_CSR_CONT 0x14
750 1.121 kiyohara #define OHCI_BUS_MANAGER_ID 0
751 1.89 kiyohara
752 1.121 kiyohara OWRITE(sc, OHCI_CSR_DATA, node);
753 1.121 kiyohara OWRITE(sc, OHCI_CSR_COMP, 0x3f);
754 1.121 kiyohara OWRITE(sc, OHCI_CSR_CONT, OHCI_BUS_MANAGER_ID);
755 1.121 kiyohara for (i = 0; !(OREAD(sc, OHCI_CSR_CONT) & (1<<31)) && (i < 1000); i++)
756 1.121 kiyohara DELAY(10);
757 1.121 kiyohara bm = OREAD(sc, OHCI_CSR_DATA);
758 1.121 kiyohara if ((bm & 0x3f) == 0x3f)
759 1.121 kiyohara bm = node;
760 1.89 kiyohara if (firewire_debug)
761 1.121 kiyohara printf("fw_set_bus_manager: %d->%d (loop=%d)\n", bm, node, i);
762 1.89 kiyohara
763 1.121 kiyohara return bm;
764 1.121 kiyohara }
765 1.89 kiyohara
766 1.121 kiyohara static void
767 1.121 kiyohara fwohci_ibr(struct firewire_comm *fc)
768 1.121 kiyohara {
769 1.121 kiyohara struct fwohci_softc *sc = (struct fwohci_softc *)fc;
770 1.121 kiyohara uint32_t fun;
771 1.89 kiyohara
772 1.121 kiyohara aprint_normal_dev(fc->dev, "Initiate bus reset\n");
773 1.89 kiyohara
774 1.121 kiyohara /*
775 1.121 kiyohara * Make sure our cached values from the config rom are
776 1.121 kiyohara * initialised.
777 1.121 kiyohara */
778 1.121 kiyohara OWRITE(sc, OHCI_CROMHDR, ntohl(sc->fc.config_rom[0]));
779 1.121 kiyohara OWRITE(sc, OHCI_BUS_OPT, ntohl(sc->fc.config_rom[2]));
780 1.89 kiyohara
781 1.121 kiyohara /*
782 1.121 kiyohara * Set root hold-off bit so that non cyclemaster capable node
783 1.121 kiyohara * shouldn't became the root node.
784 1.121 kiyohara */
785 1.121 kiyohara #if 1
786 1.121 kiyohara fun = fwphy_rddata(sc, FW_PHY_IBR_REG);
787 1.121 kiyohara fun |= FW_PHY_IBR | FW_PHY_RHB;
788 1.121 kiyohara fun = fwphy_wrdata(sc, FW_PHY_IBR_REG, fun);
789 1.121 kiyohara #else /* Short bus reset */
790 1.121 kiyohara fun = fwphy_rddata(sc, FW_PHY_ISBR_REG);
791 1.121 kiyohara fun |= FW_PHY_ISBR | FW_PHY_RHB;
792 1.121 kiyohara fun = fwphy_wrdata(sc, FW_PHY_ISBR_REG, fun);
793 1.121 kiyohara #endif
794 1.121 kiyohara }
795 1.89 kiyohara
796 1.121 kiyohara static int
797 1.121 kiyohara fwohci_irx_enable(struct firewire_comm *fc, int dmach)
798 1.121 kiyohara {
799 1.121 kiyohara struct fwohci_softc *sc = (struct fwohci_softc *)fc;
800 1.121 kiyohara struct fwohci_dbch *dbch;
801 1.121 kiyohara struct fwohcidb_tr *db_tr;
802 1.121 kiyohara struct fw_bulkxfer *first, *prev, *chunk, *txfer;
803 1.121 kiyohara struct fw_xferq *ir;
804 1.121 kiyohara uint32_t stat;
805 1.121 kiyohara unsigned short tag, ich;
806 1.121 kiyohara int err = 0, ldesc;
807 1.89 kiyohara
808 1.121 kiyohara dbch = &sc->ir[dmach];
809 1.121 kiyohara ir = &dbch->xferq;
810 1.89 kiyohara
811 1.121 kiyohara if ((ir->flag & FWXFERQ_RUNNING) == 0) {
812 1.121 kiyohara tag = (ir->flag >> 6) & 3;
813 1.121 kiyohara ich = ir->flag & 0x3f;
814 1.121 kiyohara OWRITE(sc, OHCI_IRMATCH(dmach), tagbit[tag] | ich);
815 1.89 kiyohara
816 1.121 kiyohara ir->queued = 0;
817 1.121 kiyohara dbch->ndb = ir->bnpacket * ir->bnchunk;
818 1.121 kiyohara dbch->ndesc = 2;
819 1.121 kiyohara fwohci_db_init(sc, dbch);
820 1.121 kiyohara if ((dbch->flags & FWOHCI_DBCH_INIT) == 0)
821 1.121 kiyohara return ENOMEM;
822 1.121 kiyohara err = fwohci_rx_enable(sc, dbch);
823 1.121 kiyohara if (err)
824 1.121 kiyohara return err;
825 1.89 kiyohara }
826 1.121 kiyohara
827 1.121 kiyohara first = STAILQ_FIRST(&ir->stfree);
828 1.121 kiyohara if (first == NULL) {
829 1.121 kiyohara aprint_error_dev(fc->dev, "IR DMA no free chunk\n");
830 1.121 kiyohara return 0;
831 1.89 kiyohara }
832 1.89 kiyohara
833 1.121 kiyohara ldesc = dbch->ndesc - 1;
834 1.121 kiyohara prev = NULL;
835 1.121 kiyohara STAILQ_FOREACH(txfer, &ir->stdma, link)
836 1.121 kiyohara prev = txfer;
837 1.121 kiyohara while ((chunk = STAILQ_FIRST(&ir->stfree)) != NULL) {
838 1.121 kiyohara struct fwohcidb *db;
839 1.89 kiyohara
840 1.121 kiyohara if (chunk->mbuf != NULL) {
841 1.121 kiyohara db_tr = (struct fwohcidb_tr *)(chunk->start);
842 1.121 kiyohara db_tr->dbcnt = 1;
843 1.121 kiyohara err = bus_dmamap_load_mbuf(fc->dmat, db_tr->dma_map,
844 1.121 kiyohara chunk->mbuf, BUS_DMA_NOWAIT);
845 1.121 kiyohara if (err == 0)
846 1.121 kiyohara fwohci_execute_db(db_tr, db_tr->dma_map);
847 1.121 kiyohara else
848 1.121 kiyohara aprint_error_dev(fc->dev,
849 1.121 kiyohara "mbuf load failed: %d\n", err);
850 1.121 kiyohara FWOHCI_DMA_SET(db_tr->db[1].db.desc.cmd,
851 1.121 kiyohara OHCI_UPDATE |
852 1.121 kiyohara OHCI_INPUT_LAST |
853 1.121 kiyohara OHCI_INTERRUPT_ALWAYS |
854 1.121 kiyohara OHCI_BRANCH_ALWAYS);
855 1.121 kiyohara }
856 1.121 kiyohara db = ((struct fwohcidb_tr *)(chunk->end))->db;
857 1.121 kiyohara FWOHCI_DMA_WRITE(db[ldesc].db.desc.res, 0);
858 1.121 kiyohara FWOHCI_DMA_CLEAR(db[ldesc].db.desc.depend, 0xf);
859 1.121 kiyohara if (prev != NULL) {
860 1.121 kiyohara db = ((struct fwohcidb_tr *)(prev->end))->db;
861 1.121 kiyohara FWOHCI_DMA_SET(db[ldesc].db.desc.depend, dbch->ndesc);
862 1.121 kiyohara }
863 1.121 kiyohara STAILQ_REMOVE_HEAD(&ir->stfree, link);
864 1.121 kiyohara STAILQ_INSERT_TAIL(&ir->stdma, chunk, link);
865 1.121 kiyohara prev = chunk;
866 1.121 kiyohara }
867 1.121 kiyohara fwdma_sync_multiseg_all(dbch->am,
868 1.121 kiyohara BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
869 1.121 kiyohara stat = OREAD(sc, OHCI_IRCTL(dmach));
870 1.121 kiyohara if (stat & OHCI_CNTL_DMA_ACTIVE)
871 1.121 kiyohara return 0;
872 1.121 kiyohara if (stat & OHCI_CNTL_DMA_RUN) {
873 1.121 kiyohara OWRITE(sc, OHCI_IRCTLCLR(dmach), OHCI_CNTL_DMA_RUN);
874 1.121 kiyohara aprint_error_dev(fc->dev, "IR DMA overrun (0x%08x)\n", stat);
875 1.121 kiyohara }
876 1.121 kiyohara
877 1.121 kiyohara if (firewire_debug)
878 1.121 kiyohara printf("start IR DMA 0x%x\n", stat);
879 1.121 kiyohara OWRITE(sc, OHCI_IR_MASKCLR, 1 << dmach);
880 1.121 kiyohara OWRITE(sc, OHCI_IR_STATCLR, 1 << dmach);
881 1.121 kiyohara OWRITE(sc, OHCI_IR_MASK, 1 << dmach);
882 1.121 kiyohara OWRITE(sc, OHCI_IRCTLCLR(dmach), 0xf0000000);
883 1.121 kiyohara OWRITE(sc, OHCI_IRCTL(dmach), OHCI_CNTL_ISOHDR);
884 1.121 kiyohara OWRITE(sc, OHCI_IRCMD(dmach),
885 1.121 kiyohara ((struct fwohcidb_tr *)(first->start))->bus_addr | dbch->ndesc);
886 1.121 kiyohara OWRITE(sc, OHCI_IRCTL(dmach), OHCI_CNTL_DMA_RUN);
887 1.121 kiyohara OWRITE(sc, FWOHCI_INTMASK, OHCI_INT_DMA_IR);
888 1.121 kiyohara #if 0
889 1.121 kiyohara dump_db(sc, IRX_CH + dmach);
890 1.121 kiyohara #endif
891 1.121 kiyohara return err;
892 1.89 kiyohara }
893 1.3 onoe
894 1.121 kiyohara static int
895 1.121 kiyohara fwohci_irx_disable(struct firewire_comm *fc, int dmach)
896 1.89 kiyohara {
897 1.121 kiyohara struct fwohci_softc *sc = (struct fwohci_softc *)fc;
898 1.89 kiyohara
899 1.121 kiyohara OWRITE(sc, OHCI_IRCTLCLR(dmach), OHCI_CNTL_DMA_RUN);
900 1.121 kiyohara OWRITE(sc, OHCI_IR_MASKCLR, 1 << dmach);
901 1.121 kiyohara OWRITE(sc, OHCI_IR_STATCLR, 1 << dmach);
902 1.121 kiyohara /* XXX we cannot free buffers until the DMA really stops */
903 1.130 cegger kpause("fwirxd", true, hz, NULL);
904 1.121 kiyohara fwohci_db_free(sc, &sc->ir[dmach]);
905 1.121 kiyohara sc->ir[dmach].xferq.flag &= ~FWXFERQ_RUNNING;
906 1.121 kiyohara return 0;
907 1.121 kiyohara }
908 1.89 kiyohara
909 1.89 kiyohara
910 1.121 kiyohara static int
911 1.121 kiyohara fwohci_itxbuf_enable(struct firewire_comm *fc, int dmach)
912 1.121 kiyohara {
913 1.121 kiyohara struct fwohci_softc *sc = (struct fwohci_softc *)fc;
914 1.121 kiyohara struct fwohci_dbch *dbch;
915 1.121 kiyohara struct fw_bulkxfer *first, *chunk, *prev, *txfer;
916 1.121 kiyohara struct fw_xferq *it;
917 1.121 kiyohara uint32_t stat;
918 1.121 kiyohara int cycle_match, cycle_now, ldesc, err = 0;
919 1.89 kiyohara
920 1.121 kiyohara dbch = &sc->it[dmach];
921 1.121 kiyohara it = &dbch->xferq;
922 1.89 kiyohara
923 1.121 kiyohara if ((dbch->flags & FWOHCI_DBCH_INIT) == 0) {
924 1.121 kiyohara dbch->ndb = it->bnpacket * it->bnchunk;
925 1.121 kiyohara dbch->ndesc = 3;
926 1.121 kiyohara fwohci_db_init(sc, dbch);
927 1.121 kiyohara if ((dbch->flags & FWOHCI_DBCH_INIT) == 0)
928 1.121 kiyohara return ENOMEM;
929 1.89 kiyohara
930 1.121 kiyohara err = fwohci_tx_enable(sc, dbch);
931 1.121 kiyohara if (err)
932 1.121 kiyohara return err;
933 1.121 kiyohara }
934 1.89 kiyohara
935 1.121 kiyohara ldesc = dbch->ndesc - 1;
936 1.121 kiyohara prev = NULL;
937 1.121 kiyohara STAILQ_FOREACH(txfer, &it->stdma, link)
938 1.121 kiyohara prev = txfer;
939 1.121 kiyohara while ((chunk = STAILQ_FIRST(&it->stvalid)) != NULL) {
940 1.121 kiyohara struct fwohcidb *db;
941 1.89 kiyohara
942 1.121 kiyohara fwdma_sync_multiseg(it->buf, chunk->poffset, it->bnpacket,
943 1.121 kiyohara BUS_DMASYNC_PREWRITE);
944 1.121 kiyohara fwohci_txbufdb(sc, dmach, chunk);
945 1.121 kiyohara if (prev != NULL) {
946 1.121 kiyohara db = ((struct fwohcidb_tr *)(prev->end))->db;
947 1.121 kiyohara #if 0 /* XXX necessary? */
948 1.121 kiyohara FWOHCI_DMA_SET(db[ldesc].db.desc.cmd,
949 1.121 kiyohara OHCI_BRANCH_ALWAYS);
950 1.121 kiyohara #endif
951 1.121 kiyohara #if 0 /* if bulkxfer->npacket changes */
952 1.121 kiyohara db[ldesc].db.desc.depend = db[0].db.desc.depend =
953 1.121 kiyohara ((struct fwohcidb_tr *)(chunk->start))->bus_addr |
954 1.121 kiyohara dbch->ndesc;
955 1.121 kiyohara #else
956 1.121 kiyohara FWOHCI_DMA_SET(db[0].db.desc.depend, dbch->ndesc);
957 1.121 kiyohara FWOHCI_DMA_SET(db[ldesc].db.desc.depend, dbch->ndesc);
958 1.121 kiyohara #endif
959 1.121 kiyohara }
960 1.121 kiyohara STAILQ_REMOVE_HEAD(&it->stvalid, link);
961 1.121 kiyohara STAILQ_INSERT_TAIL(&it->stdma, chunk, link);
962 1.121 kiyohara prev = chunk;
963 1.89 kiyohara }
964 1.121 kiyohara fwdma_sync_multiseg_all(dbch->am,
965 1.121 kiyohara BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
966 1.121 kiyohara stat = OREAD(sc, OHCI_ITCTL(dmach));
967 1.121 kiyohara if (firewire_debug && (stat & OHCI_CNTL_CYCMATCH_S))
968 1.121 kiyohara printf("stat 0x%x\n", stat);
969 1.89 kiyohara
970 1.121 kiyohara if (stat & (OHCI_CNTL_DMA_ACTIVE | OHCI_CNTL_CYCMATCH_S))
971 1.121 kiyohara return 0;
972 1.62 haya
973 1.89 kiyohara #if 0
974 1.121 kiyohara OWRITE(sc, OHCI_ITCTLCLR(dmach), OHCI_CNTL_DMA_RUN);
975 1.121 kiyohara #endif
976 1.121 kiyohara OWRITE(sc, OHCI_IT_MASKCLR, 1 << dmach);
977 1.121 kiyohara OWRITE(sc, OHCI_IT_STATCLR, 1 << dmach);
978 1.121 kiyohara OWRITE(sc, OHCI_IT_MASK, 1 << dmach);
979 1.121 kiyohara OWRITE(sc, FWOHCI_INTMASK, OHCI_INT_DMA_IT);
980 1.89 kiyohara
981 1.121 kiyohara first = STAILQ_FIRST(&it->stdma);
982 1.121 kiyohara OWRITE(sc, OHCI_ITCMD(dmach),
983 1.121 kiyohara ((struct fwohcidb_tr *)(first->start))->bus_addr | dbch->ndesc);
984 1.121 kiyohara if (firewire_debug > 1) {
985 1.121 kiyohara printf("fwohci_itxbuf_enable: kick 0x%08x\n", stat);
986 1.121 kiyohara #if 1
987 1.121 kiyohara dump_dma(sc, ITX_CH + dmach);
988 1.89 kiyohara #endif
989 1.89 kiyohara }
990 1.121 kiyohara if ((stat & OHCI_CNTL_DMA_RUN) == 0) {
991 1.121 kiyohara #if 1
992 1.121 kiyohara /* Don't start until all chunks are buffered */
993 1.121 kiyohara if (STAILQ_FIRST(&it->stfree) != NULL)
994 1.121 kiyohara goto out;
995 1.121 kiyohara #endif
996 1.121 kiyohara #if 1
997 1.121 kiyohara /* Clear cycle match counter bits */
998 1.121 kiyohara OWRITE(sc, OHCI_ITCTLCLR(dmach), 0xffff0000);
999 1.89 kiyohara
1000 1.121 kiyohara /* 2bit second + 13bit cycle */
1001 1.121 kiyohara cycle_now = (fc->cyctimer(fc) >> 12) & 0x7fff;
1002 1.121 kiyohara cycle_match = fwohci_next_cycle(sc, cycle_now);
1003 1.89 kiyohara
1004 1.121 kiyohara OWRITE(sc, OHCI_ITCTL(dmach),
1005 1.121 kiyohara OHCI_CNTL_CYCMATCH_S | (cycle_match << 16) |
1006 1.121 kiyohara OHCI_CNTL_DMA_RUN);
1007 1.89 kiyohara #else
1008 1.121 kiyohara OWRITE(sc, OHCI_ITCTL(dmach), OHCI_CNTL_DMA_RUN);
1009 1.5 matt #endif
1010 1.121 kiyohara if (firewire_debug > 1) {
1011 1.121 kiyohara printf("cycle_match: 0x%04x->0x%04x\n",
1012 1.121 kiyohara cycle_now, cycle_match);
1013 1.121 kiyohara dump_dma(sc, ITX_CH + dmach);
1014 1.121 kiyohara dump_db(sc, ITX_CH + dmach);
1015 1.121 kiyohara }
1016 1.121 kiyohara } else if ((stat & OHCI_CNTL_CYCMATCH_S) == 0) {
1017 1.121 kiyohara aprint_error_dev(fc->dev, "IT DMA underrun (0x%08x)\n", stat);
1018 1.121 kiyohara OWRITE(sc, OHCI_ITCTL(dmach), OHCI_CNTL_DMA_WAKE);
1019 1.121 kiyohara }
1020 1.121 kiyohara out:
1021 1.121 kiyohara return err;
1022 1.1 matt }
1023 1.1 matt
1024 1.121 kiyohara static int
1025 1.121 kiyohara fwohci_itx_disable(struct firewire_comm *fc, int dmach)
1026 1.40 haya {
1027 1.121 kiyohara struct fwohci_softc *sc = (struct fwohci_softc *)fc;
1028 1.40 haya
1029 1.121 kiyohara OWRITE(sc, OHCI_ITCTLCLR(dmach),
1030 1.121 kiyohara OHCI_CNTL_DMA_RUN | OHCI_CNTL_CYCMATCH_S);
1031 1.121 kiyohara OWRITE(sc, OHCI_IT_MASKCLR, 1 << dmach);
1032 1.121 kiyohara OWRITE(sc, OHCI_IT_STATCLR, 1 << dmach);
1033 1.121 kiyohara /* XXX we cannot free buffers until the DMA really stops */
1034 1.130 cegger kpause("fwitxd", true, hz, NULL);
1035 1.121 kiyohara fwohci_db_free(sc, &sc->it[dmach]);
1036 1.121 kiyohara sc->it[dmach].xferq.flag &= ~FWXFERQ_RUNNING;
1037 1.121 kiyohara return 0;
1038 1.89 kiyohara }
1039 1.40 haya
1040 1.121 kiyohara static void
1041 1.121 kiyohara fwohci_timeout(struct firewire_comm *fc)
1042 1.89 kiyohara {
1043 1.121 kiyohara #if 0
1044 1.89 kiyohara struct fwohci_softc *sc = (struct fwohci_softc *)fc;
1045 1.121 kiyohara #endif
1046 1.121 kiyohara /* nothing? */
1047 1.40 haya }
1048 1.40 haya
1049 1.121 kiyohara #if BYTE_ORDER == BIG_ENDIAN
1050 1.121 kiyohara static void
1051 1.121 kiyohara fwohci_irx_post (struct firewire_comm *fc, uint32_t *qld)
1052 1.121 kiyohara {
1053 1.121 kiyohara
1054 1.121 kiyohara qld[0] = FWOHCI_DMA_READ(qld[0]);
1055 1.121 kiyohara return;
1056 1.121 kiyohara }
1057 1.121 kiyohara #endif
1058 1.121 kiyohara
1059 1.121 kiyohara static void
1060 1.121 kiyohara fwohci_set_intr(struct firewire_comm *fc, int enable)
1061 1.121 kiyohara {
1062 1.121 kiyohara struct fwohci_softc *sc = (struct fwohci_softc *)fc;
1063 1.121 kiyohara
1064 1.121 kiyohara if (firewire_debug)
1065 1.121 kiyohara printf("fwohci_set_intr: %d\n", enable);
1066 1.121 kiyohara if (enable) {
1067 1.121 kiyohara sc->intmask |= OHCI_INT_EN;
1068 1.121 kiyohara OWRITE(sc, FWOHCI_INTMASK, OHCI_INT_EN);
1069 1.121 kiyohara } else {
1070 1.121 kiyohara sc->intmask &= ~OHCI_INT_EN;
1071 1.121 kiyohara OWRITE(sc, FWOHCI_INTMASKCLR, OHCI_INT_EN);
1072 1.121 kiyohara }
1073 1.121 kiyohara }
1074 1.121 kiyohara
1075 1.121 kiyohara /*
1076 1.121 kiyohara * Communication with PHY device
1077 1.121 kiyohara */
1078 1.121 kiyohara /* XXX need lock for phy access */
1079 1.121 kiyohara static uint32_t
1080 1.121 kiyohara fwphy_rddata(struct fwohci_softc *sc, u_int addr)
1081 1.121 kiyohara {
1082 1.121 kiyohara uint32_t fun, stat;
1083 1.121 kiyohara u_int i, retry = 0;
1084 1.121 kiyohara
1085 1.121 kiyohara addr &= 0xf;
1086 1.121 kiyohara #define MAX_RETRY 100
1087 1.121 kiyohara again:
1088 1.121 kiyohara OWRITE(sc, FWOHCI_INTSTATCLR, OHCI_INT_REG_FAIL);
1089 1.121 kiyohara fun = PHYDEV_RDCMD | (addr << PHYDEV_REGADDR);
1090 1.121 kiyohara OWRITE(sc, OHCI_PHYACCESS, fun);
1091 1.121 kiyohara for (i = 0; i < MAX_RETRY; i++) {
1092 1.121 kiyohara fun = OREAD(sc, OHCI_PHYACCESS);
1093 1.121 kiyohara if ((fun & PHYDEV_RDCMD) == 0 && (fun & PHYDEV_RDDONE) != 0)
1094 1.121 kiyohara break;
1095 1.121 kiyohara DELAY(100);
1096 1.121 kiyohara }
1097 1.121 kiyohara if (i >= MAX_RETRY) {
1098 1.121 kiyohara if (firewire_debug)
1099 1.121 kiyohara printf("phy read failed(1).\n");
1100 1.121 kiyohara if (++retry < MAX_RETRY) {
1101 1.121 kiyohara DELAY(100);
1102 1.121 kiyohara goto again;
1103 1.121 kiyohara }
1104 1.121 kiyohara }
1105 1.121 kiyohara /* Make sure that SCLK is started */
1106 1.121 kiyohara stat = OREAD(sc, FWOHCI_INTSTAT);
1107 1.121 kiyohara if ((stat & OHCI_INT_REG_FAIL) != 0 ||
1108 1.121 kiyohara ((fun >> PHYDEV_REGADDR) & 0xf) != addr) {
1109 1.121 kiyohara if (firewire_debug)
1110 1.121 kiyohara printf("phy read failed(2).\n");
1111 1.121 kiyohara if (++retry < MAX_RETRY) {
1112 1.121 kiyohara DELAY(100);
1113 1.121 kiyohara goto again;
1114 1.121 kiyohara }
1115 1.121 kiyohara }
1116 1.121 kiyohara if (firewire_debug || retry >= MAX_RETRY)
1117 1.121 kiyohara aprint_error_dev(sc->fc.dev,
1118 1.121 kiyohara "fwphy_rddata: 0x%x loop=%d, retry=%d\n",
1119 1.121 kiyohara addr, i, retry);
1120 1.121 kiyohara #undef MAX_RETRY
1121 1.121 kiyohara return (fun >> PHYDEV_RDDATA) & 0xff;
1122 1.121 kiyohara }
1123 1.121 kiyohara
1124 1.121 kiyohara static uint32_t
1125 1.121 kiyohara fwphy_wrdata(struct fwohci_softc *sc, uint32_t addr, uint32_t data)
1126 1.121 kiyohara {
1127 1.121 kiyohara uint32_t fun;
1128 1.121 kiyohara
1129 1.121 kiyohara addr &= 0xf;
1130 1.121 kiyohara data &= 0xff;
1131 1.121 kiyohara
1132 1.121 kiyohara fun =
1133 1.121 kiyohara (PHYDEV_WRCMD | (addr << PHYDEV_REGADDR) | (data << PHYDEV_WRDATA));
1134 1.121 kiyohara OWRITE(sc, OHCI_PHYACCESS, fun);
1135 1.121 kiyohara DELAY(100);
1136 1.121 kiyohara
1137 1.121 kiyohara return fwphy_rddata(sc, addr);
1138 1.121 kiyohara }
1139 1.121 kiyohara
1140 1.121 kiyohara static int
1141 1.121 kiyohara fwohci_probe_phy(struct fwohci_softc *sc)
1142 1.1 matt {
1143 1.121 kiyohara uint32_t reg, reg2;
1144 1.121 kiyohara int e1394a = 1;
1145 1.62 haya
1146 1.121 kiyohara /*
1147 1.121 kiyohara * probe PHY parameters
1148 1.121 kiyohara * 0. to prove PHY version, whether compliance of 1394a.
1149 1.121 kiyohara * 1. to probe maximum speed supported by the PHY and
1150 1.121 kiyohara * number of port supported by core-logic.
1151 1.121 kiyohara * It is not actually available port on your PC .
1152 1.121 kiyohara */
1153 1.121 kiyohara OWRITE(sc, OHCI_HCCCTL, OHCI_HCC_LPS);
1154 1.121 kiyohara DELAY(500);
1155 1.40 haya
1156 1.121 kiyohara reg = fwphy_rddata(sc, FW_PHY_SPD_REG);
1157 1.62 haya
1158 1.121 kiyohara if ((reg >> 5) != 7) {
1159 1.121 kiyohara sc->fc.mode &= ~FWPHYASYST;
1160 1.121 kiyohara sc->fc.nport = reg & FW_PHY_NP;
1161 1.121 kiyohara sc->fc.speed = reg & FW_PHY_SPD >> 6;
1162 1.121 kiyohara if (sc->fc.speed > MAX_SPEED) {
1163 1.121 kiyohara aprint_error_dev(sc->fc.dev,
1164 1.121 kiyohara "invalid speed %d (fixed to %d).\n",
1165 1.121 kiyohara sc->fc.speed, MAX_SPEED);
1166 1.121 kiyohara sc->fc.speed = MAX_SPEED;
1167 1.121 kiyohara }
1168 1.121 kiyohara aprint_normal_dev(sc->fc.dev, "Phy 1394 only %s, %d ports.\n",
1169 1.121 kiyohara fw_linkspeed[sc->fc.speed], sc->fc.nport);
1170 1.121 kiyohara } else {
1171 1.121 kiyohara reg2 = fwphy_rddata(sc, FW_PHY_ESPD_REG);
1172 1.121 kiyohara sc->fc.mode |= FWPHYASYST;
1173 1.121 kiyohara sc->fc.nport = reg & FW_PHY_NP;
1174 1.121 kiyohara sc->fc.speed = (reg2 & FW_PHY_ESPD) >> 5;
1175 1.121 kiyohara if (sc->fc.speed > MAX_SPEED) {
1176 1.121 kiyohara aprint_error_dev(sc->fc.dev,
1177 1.121 kiyohara "invalid speed %d (fixed to %d).\n",
1178 1.121 kiyohara sc->fc.speed, MAX_SPEED);
1179 1.121 kiyohara sc->fc.speed = MAX_SPEED;
1180 1.121 kiyohara }
1181 1.121 kiyohara aprint_normal_dev(sc->fc.dev,
1182 1.121 kiyohara "Phy 1394a available %s, %d ports.\n",
1183 1.121 kiyohara fw_linkspeed[sc->fc.speed], sc->fc.nport);
1184 1.3 onoe
1185 1.121 kiyohara /* check programPhyEnable */
1186 1.121 kiyohara reg2 = fwphy_rddata(sc, 5);
1187 1.121 kiyohara #if 0
1188 1.121 kiyohara if (e1394a && (OREAD(sc, OHCI_HCCCTL) & OHCI_HCC_PRPHY)) {
1189 1.121 kiyohara #else /* XXX force to enable 1394a */
1190 1.121 kiyohara if (e1394a) {
1191 1.121 kiyohara #endif
1192 1.121 kiyohara if (firewire_debug)
1193 1.121 kiyohara printf("Enable 1394a Enhancements\n");
1194 1.121 kiyohara /* enable EAA EMC */
1195 1.121 kiyohara reg2 |= 0x03;
1196 1.121 kiyohara /* set aPhyEnhanceEnable */
1197 1.121 kiyohara OWRITE(sc, OHCI_HCCCTL, OHCI_HCC_PHYEN);
1198 1.121 kiyohara OWRITE(sc, OHCI_HCCCTLCLR, OHCI_HCC_PRPHY);
1199 1.121 kiyohara }
1200 1.121 kiyohara #if 0
1201 1.121 kiyohara else {
1202 1.121 kiyohara /* for safe */
1203 1.121 kiyohara reg2 &= ~0x83;
1204 1.121 kiyohara }
1205 1.121 kiyohara #endif
1206 1.121 kiyohara reg2 = fwphy_wrdata(sc, 5, reg2);
1207 1.1 matt }
1208 1.89 kiyohara
1209 1.121 kiyohara reg = fwphy_rddata(sc, FW_PHY_SPD_REG);
1210 1.121 kiyohara if ((reg >> 5) == 7) {
1211 1.121 kiyohara reg = fwphy_rddata(sc, 4);
1212 1.121 kiyohara reg |= 1 << 6;
1213 1.121 kiyohara fwphy_wrdata(sc, 4, reg);
1214 1.121 kiyohara reg = fwphy_rddata(sc, 4);
1215 1.121 kiyohara }
1216 1.89 kiyohara return 0;
1217 1.3 onoe }
1218 1.3 onoe
1219 1.121 kiyohara static void
1220 1.121 kiyohara fwohci_reset(struct fwohci_softc *sc)
1221 1.121 kiyohara {
1222 1.121 kiyohara struct fwohcidb_tr *db_tr;
1223 1.121 kiyohara uint32_t reg, reg2;
1224 1.121 kiyohara int i, max_rec, speed;
1225 1.121 kiyohara
1226 1.121 kiyohara /* Disable interrupts */
1227 1.121 kiyohara OWRITE(sc, FWOHCI_INTMASKCLR, ~0);
1228 1.121 kiyohara
1229 1.121 kiyohara /* Now stopping all DMA channels */
1230 1.121 kiyohara OWRITE(sc, OHCI_ARQCTLCLR, OHCI_CNTL_DMA_RUN);
1231 1.121 kiyohara OWRITE(sc, OHCI_ARSCTLCLR, OHCI_CNTL_DMA_RUN);
1232 1.121 kiyohara OWRITE(sc, OHCI_ATQCTLCLR, OHCI_CNTL_DMA_RUN);
1233 1.121 kiyohara OWRITE(sc, OHCI_ATSCTLCLR, OHCI_CNTL_DMA_RUN);
1234 1.121 kiyohara
1235 1.121 kiyohara OWRITE(sc, OHCI_IR_MASKCLR, ~0);
1236 1.121 kiyohara for (i = 0; i < sc->fc.nisodma; i++) {
1237 1.121 kiyohara OWRITE(sc, OHCI_IRCTLCLR(i), OHCI_CNTL_DMA_RUN);
1238 1.121 kiyohara OWRITE(sc, OHCI_ITCTLCLR(i), OHCI_CNTL_DMA_RUN);
1239 1.121 kiyohara }
1240 1.121 kiyohara
1241 1.121 kiyohara /* FLUSH FIFO and reset Transmitter/Reciever */
1242 1.121 kiyohara OWRITE(sc, OHCI_HCCCTL, OHCI_HCC_RESET);
1243 1.121 kiyohara if (firewire_debug)
1244 1.121 kiyohara printf("resetting OHCI...");
1245 1.121 kiyohara i = 0;
1246 1.121 kiyohara while (OREAD(sc, OHCI_HCCCTL) & OHCI_HCC_RESET) {
1247 1.121 kiyohara if (i++ > 100)
1248 1.121 kiyohara break;
1249 1.121 kiyohara DELAY(1000);
1250 1.121 kiyohara }
1251 1.121 kiyohara if (firewire_debug)
1252 1.121 kiyohara printf("done (loop=%d)\n", i);
1253 1.121 kiyohara
1254 1.121 kiyohara /* Probe phy */
1255 1.121 kiyohara fwohci_probe_phy(sc);
1256 1.121 kiyohara
1257 1.121 kiyohara /* Probe link */
1258 1.121 kiyohara reg = OREAD(sc, OHCI_BUS_OPT);
1259 1.121 kiyohara reg2 = reg | OHCI_BUSFNC;
1260 1.121 kiyohara max_rec = (reg & 0x0000f000) >> 12;
1261 1.121 kiyohara speed = (reg & 0x00000007);
1262 1.121 kiyohara aprint_normal_dev(sc->fc.dev, "Link %s, max_rec %d bytes.\n",
1263 1.121 kiyohara fw_linkspeed[speed], MAXREC(max_rec));
1264 1.121 kiyohara /* XXX fix max_rec */
1265 1.121 kiyohara sc->fc.maxrec = sc->fc.speed + 8;
1266 1.121 kiyohara if (max_rec != sc->fc.maxrec) {
1267 1.121 kiyohara reg2 = (reg2 & 0xffff0fff) | (sc->fc.maxrec << 12);
1268 1.121 kiyohara aprint_normal_dev(sc->fc.dev, "max_rec %d -> %d\n",
1269 1.121 kiyohara MAXREC(max_rec), MAXREC(sc->fc.maxrec));
1270 1.121 kiyohara }
1271 1.121 kiyohara if (firewire_debug)
1272 1.121 kiyohara printf("BUS_OPT 0x%x -> 0x%x\n", reg, reg2);
1273 1.121 kiyohara OWRITE(sc, OHCI_BUS_OPT, reg2);
1274 1.121 kiyohara
1275 1.121 kiyohara /* Initialize registers */
1276 1.121 kiyohara OWRITE(sc, OHCI_CROMHDR, sc->fc.config_rom[0]);
1277 1.121 kiyohara OWRITE(sc, OHCI_CROMPTR, sc->crom_dma.bus_addr);
1278 1.121 kiyohara OWRITE(sc, OHCI_HCCCTLCLR, OHCI_HCC_BIGEND);
1279 1.121 kiyohara OWRITE(sc, OHCI_HCCCTL, OHCI_HCC_POSTWR);
1280 1.121 kiyohara OWRITE(sc, OHCI_SID_BUF, sc->sid_dma.bus_addr);
1281 1.121 kiyohara OWRITE(sc, OHCI_LNKCTL, OHCI_CNTL_SID);
1282 1.121 kiyohara
1283 1.121 kiyohara /* Enable link */
1284 1.121 kiyohara OWRITE(sc, OHCI_HCCCTL, OHCI_HCC_LINKEN);
1285 1.121 kiyohara
1286 1.121 kiyohara /* Force to start async RX DMA */
1287 1.121 kiyohara sc->arrq.xferq.flag &= ~FWXFERQ_RUNNING;
1288 1.121 kiyohara sc->arrs.xferq.flag &= ~FWXFERQ_RUNNING;
1289 1.121 kiyohara fwohci_rx_enable(sc, &sc->arrq);
1290 1.121 kiyohara fwohci_rx_enable(sc, &sc->arrs);
1291 1.121 kiyohara
1292 1.121 kiyohara /* Initialize async TX */
1293 1.121 kiyohara OWRITE(sc, OHCI_ATQCTLCLR, OHCI_CNTL_DMA_RUN | OHCI_CNTL_DMA_DEAD);
1294 1.121 kiyohara OWRITE(sc, OHCI_ATSCTLCLR, OHCI_CNTL_DMA_RUN | OHCI_CNTL_DMA_DEAD);
1295 1.121 kiyohara
1296 1.121 kiyohara /* AT Retries */
1297 1.121 kiyohara OWRITE(sc, FWOHCI_RETRY,
1298 1.121 kiyohara /* CycleLimit PhyRespRetries ATRespRetries ATReqRetries */
1299 1.121 kiyohara (0xffff << 16) | (0x0f << 8) | (0x0f << 4) | 0x0f);
1300 1.121 kiyohara
1301 1.121 kiyohara sc->atrq.top = STAILQ_FIRST(&sc->atrq.db_trq);
1302 1.121 kiyohara sc->atrs.top = STAILQ_FIRST(&sc->atrs.db_trq);
1303 1.121 kiyohara sc->atrq.bottom = sc->atrq.top;
1304 1.121 kiyohara sc->atrs.bottom = sc->atrs.top;
1305 1.121 kiyohara
1306 1.121 kiyohara for (i = 0, db_tr = sc->atrq.top; i < sc->atrq.ndb;
1307 1.121 kiyohara i++, db_tr = STAILQ_NEXT(db_tr, link))
1308 1.121 kiyohara db_tr->xfer = NULL;
1309 1.121 kiyohara for (i = 0, db_tr = sc->atrs.top; i < sc->atrs.ndb;
1310 1.121 kiyohara i++, db_tr = STAILQ_NEXT(db_tr, link))
1311 1.121 kiyohara db_tr->xfer = NULL;
1312 1.121 kiyohara
1313 1.121 kiyohara
1314 1.121 kiyohara /* Enable interrupts */
1315 1.121 kiyohara sc->intmask = (OHCI_INT_ERR | OHCI_INT_PHY_SID
1316 1.121 kiyohara | OHCI_INT_DMA_ATRQ | OHCI_INT_DMA_ATRS
1317 1.121 kiyohara | OHCI_INT_DMA_PRRQ | OHCI_INT_DMA_PRRS
1318 1.121 kiyohara | OHCI_INT_PHY_BUS_R | OHCI_INT_PW_ERR);
1319 1.121 kiyohara sc->intmask |= OHCI_INT_DMA_IR | OHCI_INT_DMA_IT;
1320 1.121 kiyohara sc->intmask |= OHCI_INT_CYC_LOST | OHCI_INT_PHY_INT;
1321 1.121 kiyohara OWRITE(sc, FWOHCI_INTMASK, sc->intmask);
1322 1.121 kiyohara fwohci_set_intr(&sc->fc, 1);
1323 1.121 kiyohara }
1324 1.121 kiyohara
1325 1.121 kiyohara #define LAST_DB(dbtr) \
1326 1.121 kiyohara &dbtr->db[(dbtr->dbcnt > 2) ? (dbtr->dbcnt - 1) : 0];
1327 1.100 blymn
1328 1.24 jmc static void
1329 1.121 kiyohara fwohci_execute_db(struct fwohcidb_tr *db_tr, bus_dmamap_t dmamap)
1330 1.24 jmc {
1331 1.89 kiyohara struct fwohcidb *db;
1332 1.89 kiyohara bus_dma_segment_t *s;
1333 1.89 kiyohara int i;
1334 1.24 jmc
1335 1.89 kiyohara db = &db_tr->db[db_tr->dbcnt];
1336 1.121 kiyohara for (i = 0; i < dmamap->dm_nsegs; i++) {
1337 1.121 kiyohara s = &dmamap->dm_segs[i];
1338 1.89 kiyohara FWOHCI_DMA_WRITE(db->db.desc.addr, s->ds_addr);
1339 1.89 kiyohara FWOHCI_DMA_WRITE(db->db.desc.cmd, s->ds_len);
1340 1.89 kiyohara FWOHCI_DMA_WRITE(db->db.desc.res, 0);
1341 1.89 kiyohara db++;
1342 1.89 kiyohara db_tr->dbcnt++;
1343 1.26 enami }
1344 1.24 jmc }
1345 1.24 jmc
1346 1.24 jmc static void
1347 1.89 kiyohara fwohci_start(struct fwohci_softc *sc, struct fwohci_dbch *dbch)
1348 1.89 kiyohara {
1349 1.89 kiyohara struct fw_xfer *xfer;
1350 1.89 kiyohara struct fw_pkt *fp;
1351 1.89 kiyohara struct fwohci_txpkthdr *ohcifp;
1352 1.121 kiyohara struct fwohcidb_tr *db_tr, *kick;
1353 1.89 kiyohara struct fwohcidb *db;
1354 1.89 kiyohara uint32_t *ld;
1355 1.121 kiyohara int tcode, hdr_len, pl_off, fsegment = -1, i;
1356 1.90 drochner const struct tcode_info *info;
1357 1.121 kiyohara static int maxdesc = 0;
1358 1.89 kiyohara
1359 1.121 kiyohara KASSERT(mutex_owned(&dbch->xferq.q_mtx));
1360 1.110 kiyohara
1361 1.121 kiyohara #if DIAGNOSTIC
1362 1.121 kiyohara if (dbch->off != OHCI_ATQOFF &&
1363 1.121 kiyohara dbch->off != OHCI_ATSOFF)
1364 1.121 kiyohara panic("not async tx");
1365 1.121 kiyohara #endif
1366 1.24 jmc
1367 1.89 kiyohara if (dbch->flags & FWOHCI_DBCH_FULL)
1368 1.89 kiyohara return;
1369 1.24 jmc
1370 1.89 kiyohara db_tr = dbch->top;
1371 1.121 kiyohara kick = db_tr;
1372 1.121 kiyohara if (dbch->pdb_tr != NULL) {
1373 1.121 kiyohara kick = dbch->pdb_tr;
1374 1.121 kiyohara fwdma_sync_multiseg(dbch->am, kick->idx, kick->idx,
1375 1.121 kiyohara BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
1376 1.121 kiyohara }
1377 1.89 kiyohara txloop:
1378 1.89 kiyohara xfer = STAILQ_FIRST(&dbch->xferq.q);
1379 1.121 kiyohara if (xfer == NULL)
1380 1.89 kiyohara goto kick;
1381 1.110 kiyohara #if 0
1382 1.121 kiyohara if (dbch->xferq.queued == 0)
1383 1.121 kiyohara aprint_error_dev(sc->fc.dev, "TX queue empty\n");
1384 1.110 kiyohara #endif
1385 1.89 kiyohara STAILQ_REMOVE_HEAD(&dbch->xferq.q, link);
1386 1.89 kiyohara db_tr->xfer = xfer;
1387 1.110 kiyohara xfer->flag = FWXF_START;
1388 1.89 kiyohara
1389 1.89 kiyohara fp = &xfer->send.hdr;
1390 1.89 kiyohara tcode = fp->mode.common.tcode;
1391 1.89 kiyohara
1392 1.89 kiyohara ohcifp = (struct fwohci_txpkthdr *) db_tr->db[1].db.immed;
1393 1.89 kiyohara info = &tinfo[tcode];
1394 1.89 kiyohara hdr_len = pl_off = info->hdr_len;
1395 1.89 kiyohara
1396 1.121 kiyohara ld = ohcifp->mode.ld;
1397 1.89 kiyohara ld[0] = ld[1] = ld[2] = ld[3] = 0;
1398 1.121 kiyohara for (i = 0; i < pl_off / 4; i++)
1399 1.121 kiyohara ld[i] = fp->mode.ld[i];
1400 1.89 kiyohara
1401 1.89 kiyohara ohcifp->mode.common.spd = xfer->send.spd & 0x7;
1402 1.121 kiyohara if (tcode == FWTCODE_STREAM) {
1403 1.89 kiyohara hdr_len = 8;
1404 1.89 kiyohara ohcifp->mode.stream.len = fp->mode.stream.len;
1405 1.89 kiyohara } else if (tcode == FWTCODE_PHY) {
1406 1.89 kiyohara hdr_len = 12;
1407 1.89 kiyohara ld[1] = fp->mode.ld[1];
1408 1.89 kiyohara ld[2] = fp->mode.ld[2];
1409 1.89 kiyohara ohcifp->mode.common.spd = 0;
1410 1.89 kiyohara ohcifp->mode.common.tcode = FWOHCITCODE_PHY;
1411 1.89 kiyohara } else {
1412 1.89 kiyohara ohcifp->mode.asycomm.dst = fp->mode.hdr.dst;
1413 1.89 kiyohara ohcifp->mode.asycomm.srcbus = OHCI_ASYSRCBUS;
1414 1.89 kiyohara ohcifp->mode.asycomm.tlrt |= FWRETRY_X;
1415 1.89 kiyohara }
1416 1.121 kiyohara db = db_tr->db;
1417 1.89 kiyohara FWOHCI_DMA_WRITE(db->db.desc.cmd,
1418 1.121 kiyohara OHCI_OUTPUT_MORE | OHCI_KEY_ST2 | hdr_len);
1419 1.89 kiyohara FWOHCI_DMA_WRITE(db->db.desc.addr, 0);
1420 1.89 kiyohara FWOHCI_DMA_WRITE(db->db.desc.res, 0);
1421 1.89 kiyohara /* Specify bound timer of asy. responce */
1422 1.121 kiyohara if (dbch->off != OHCI_ATSOFF)
1423 1.89 kiyohara FWOHCI_DMA_WRITE(db->db.desc.res,
1424 1.121 kiyohara (OREAD(sc, OHCI_CYCLETIMER) >> 12) + (1 << 13));
1425 1.89 kiyohara #if BYTE_ORDER == BIG_ENDIAN
1426 1.89 kiyohara if (tcode == FWTCODE_WREQQ || tcode == FWTCODE_RRESQ)
1427 1.89 kiyohara hdr_len = 12;
1428 1.121 kiyohara for (i = 0; i < hdr_len / 4; i++)
1429 1.89 kiyohara FWOHCI_DMA_WRITE(ld[i], ld[i]);
1430 1.89 kiyohara #endif
1431 1.89 kiyohara
1432 1.89 kiyohara again:
1433 1.89 kiyohara db_tr->dbcnt = 2;
1434 1.89 kiyohara db = &db_tr->db[db_tr->dbcnt];
1435 1.89 kiyohara if (xfer->send.pay_len > 0) {
1436 1.89 kiyohara int err;
1437 1.89 kiyohara /* handle payload */
1438 1.121 kiyohara if (xfer->mbuf == NULL)
1439 1.121 kiyohara err = bus_dmamap_load(sc->fc.dmat, db_tr->dma_map,
1440 1.121 kiyohara xfer->send.payload, xfer->send.pay_len, NULL,
1441 1.121 kiyohara BUS_DMA_WAITOK);
1442 1.121 kiyohara else {
1443 1.89 kiyohara /* XXX we can handle only 6 (=8-2) mbuf chains */
1444 1.121 kiyohara err = bus_dmamap_load_mbuf(sc->fc.dmat, db_tr->dma_map,
1445 1.121 kiyohara xfer->mbuf, BUS_DMA_WAITOK);
1446 1.89 kiyohara if (err == EFBIG) {
1447 1.89 kiyohara struct mbuf *m0;
1448 1.89 kiyohara
1449 1.89 kiyohara if (firewire_debug)
1450 1.121 kiyohara printf("EFBIG.\n");
1451 1.89 kiyohara m0 = m_getcl(M_DONTWAIT, MT_DATA, M_PKTHDR);
1452 1.89 kiyohara if (m0 != NULL) {
1453 1.89 kiyohara m_copydata(xfer->mbuf, 0,
1454 1.121 kiyohara xfer->mbuf->m_pkthdr.len,
1455 1.121 kiyohara mtod(m0, void *));
1456 1.100 blymn m0->m_len = m0->m_pkthdr.len =
1457 1.121 kiyohara xfer->mbuf->m_pkthdr.len;
1458 1.89 kiyohara m_freem(xfer->mbuf);
1459 1.89 kiyohara xfer->mbuf = m0;
1460 1.89 kiyohara goto again;
1461 1.89 kiyohara }
1462 1.121 kiyohara aprint_error_dev(sc->fc.dev,
1463 1.121 kiyohara "m_getcl failed.\n");
1464 1.89 kiyohara }
1465 1.89 kiyohara }
1466 1.121 kiyohara if (!err)
1467 1.121 kiyohara fwohci_execute_db(db_tr, db_tr->dma_map);
1468 1.121 kiyohara else
1469 1.121 kiyohara aprint_error_dev(sc->fc.dev,
1470 1.121 kiyohara "dmamap_load: err=%d\n", err);
1471 1.121 kiyohara bus_dmamap_sync(sc->fc.dmat, db_tr->dma_map,
1472 1.121 kiyohara 0, db_tr->dma_map->dm_mapsize, BUS_DMASYNC_PREWRITE);
1473 1.89 kiyohara #if 0 /* OHCI_OUTPUT_MODE == 0 */
1474 1.89 kiyohara for (i = 2; i < db_tr->dbcnt; i++)
1475 1.89 kiyohara FWOHCI_DMA_SET(db_tr->db[i].db.desc.cmd,
1476 1.121 kiyohara OHCI_OUTPUT_MORE);
1477 1.89 kiyohara #endif
1478 1.89 kiyohara }
1479 1.89 kiyohara if (maxdesc < db_tr->dbcnt) {
1480 1.89 kiyohara maxdesc = db_tr->dbcnt;
1481 1.89 kiyohara if (firewire_debug)
1482 1.121 kiyohara printf("maxdesc: %d\n", maxdesc);
1483 1.89 kiyohara }
1484 1.89 kiyohara /* last db */
1485 1.121 kiyohara db = LAST_DB(db_tr);
1486 1.89 kiyohara FWOHCI_DMA_SET(db->db.desc.cmd,
1487 1.121 kiyohara OHCI_OUTPUT_LAST | OHCI_INTERRUPT_ALWAYS | OHCI_BRANCH_ALWAYS);
1488 1.89 kiyohara FWOHCI_DMA_WRITE(db->db.desc.depend,
1489 1.121 kiyohara STAILQ_NEXT(db_tr, link)->bus_addr);
1490 1.89 kiyohara
1491 1.121 kiyohara if (fsegment == -1)
1492 1.89 kiyohara fsegment = db_tr->dbcnt;
1493 1.89 kiyohara if (dbch->pdb_tr != NULL) {
1494 1.121 kiyohara db = LAST_DB(dbch->pdb_tr);
1495 1.89 kiyohara FWOHCI_DMA_SET(db->db.desc.depend, db_tr->dbcnt);
1496 1.89 kiyohara }
1497 1.121 kiyohara dbch->xferq.queued++;
1498 1.89 kiyohara dbch->pdb_tr = db_tr;
1499 1.89 kiyohara db_tr = STAILQ_NEXT(db_tr, link);
1500 1.121 kiyohara if (db_tr != dbch->bottom)
1501 1.89 kiyohara goto txloop;
1502 1.121 kiyohara else {
1503 1.121 kiyohara aprint_error_dev(sc->fc.dev, "fwohci_start: lack of db_trq\n");
1504 1.89 kiyohara dbch->flags |= FWOHCI_DBCH_FULL;
1505 1.89 kiyohara }
1506 1.89 kiyohara kick:
1507 1.89 kiyohara /* kick asy q */
1508 1.121 kiyohara fwdma_sync_multiseg(dbch->am, kick->idx, dbch->pdb_tr->idx,
1509 1.99 kiyohara BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
1510 1.99 kiyohara
1511 1.121 kiyohara if (dbch->xferq.flag & FWXFERQ_RUNNING)
1512 1.121 kiyohara OWRITE(sc, OHCI_DMACTL(dbch->off), OHCI_CNTL_DMA_WAKE);
1513 1.121 kiyohara else {
1514 1.89 kiyohara if (firewire_debug)
1515 1.121 kiyohara printf("start AT DMA status=%x\n",
1516 1.121 kiyohara OREAD(sc, OHCI_DMACTL(dbch->off)));
1517 1.121 kiyohara OWRITE(sc, OHCI_DMACMD(dbch->off),
1518 1.121 kiyohara dbch->top->bus_addr | fsegment);
1519 1.121 kiyohara OWRITE(sc, OHCI_DMACTL(dbch->off), OHCI_CNTL_DMA_RUN);
1520 1.89 kiyohara dbch->xferq.flag |= FWXFERQ_RUNNING;
1521 1.62 haya }
1522 1.24 jmc
1523 1.89 kiyohara dbch->top = db_tr;
1524 1.89 kiyohara return;
1525 1.89 kiyohara }
1526 1.24 jmc
1527 1.89 kiyohara static void
1528 1.89 kiyohara fwohci_start_atq(struct firewire_comm *fc)
1529 1.89 kiyohara {
1530 1.89 kiyohara struct fwohci_softc *sc = (struct fwohci_softc *)fc;
1531 1.121 kiyohara struct fwohci_dbch *dbch = &sc->atrq;
1532 1.121 kiyohara
1533 1.121 kiyohara mutex_enter(&dbch->xferq.q_mtx);
1534 1.121 kiyohara fwohci_start(sc, dbch);
1535 1.121 kiyohara mutex_exit(&dbch->xferq.q_mtx);
1536 1.89 kiyohara return;
1537 1.89 kiyohara }
1538 1.24 jmc
1539 1.89 kiyohara static void
1540 1.89 kiyohara fwohci_start_ats(struct firewire_comm *fc)
1541 1.89 kiyohara {
1542 1.89 kiyohara struct fwohci_softc *sc = (struct fwohci_softc *)fc;
1543 1.121 kiyohara struct fwohci_dbch *dbch = &sc->atrs;
1544 1.121 kiyohara
1545 1.121 kiyohara mutex_enter(&dbch->xferq.q_mtx);
1546 1.121 kiyohara fwohci_start(sc, dbch);
1547 1.121 kiyohara mutex_exit(&dbch->xferq.q_mtx);
1548 1.89 kiyohara return;
1549 1.89 kiyohara }
1550 1.62 haya
1551 1.121 kiyohara static void
1552 1.89 kiyohara fwohci_txd(struct fwohci_softc *sc, struct fwohci_dbch *dbch)
1553 1.89 kiyohara {
1554 1.121 kiyohara struct firewire_comm *fc = &sc->fc;
1555 1.89 kiyohara struct fwohcidb_tr *tr;
1556 1.89 kiyohara struct fwohcidb *db;
1557 1.89 kiyohara struct fw_xfer *xfer;
1558 1.89 kiyohara u_int stat, status;
1559 1.121 kiyohara int packets = 0, ch, err = 0;
1560 1.89 kiyohara
1561 1.121 kiyohara #if DIAGNOSTIC
1562 1.121 kiyohara if (dbch->off != OHCI_ATQOFF &&
1563 1.121 kiyohara dbch->off != OHCI_ATSOFF)
1564 1.121 kiyohara panic("not async tx");
1565 1.121 kiyohara #endif
1566 1.121 kiyohara if (dbch->off == OHCI_ATQOFF)
1567 1.89 kiyohara ch = ATRQ_CH;
1568 1.121 kiyohara else /* OHCI_ATSOFF */
1569 1.89 kiyohara ch = ATRS_CH;
1570 1.121 kiyohara
1571 1.121 kiyohara mutex_enter(&dbch->xferq.q_mtx);
1572 1.89 kiyohara tr = dbch->bottom;
1573 1.121 kiyohara while (dbch->xferq.queued > 0) {
1574 1.121 kiyohara fwdma_sync_multiseg(dbch->am, tr->idx, tr->idx,
1575 1.121 kiyohara BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
1576 1.121 kiyohara db = LAST_DB(tr);
1577 1.89 kiyohara status = FWOHCI_DMA_READ(db->db.desc.res) >> OHCI_STATUS_SHIFT;
1578 1.121 kiyohara if (!(status & OHCI_CNTL_DMA_ACTIVE))
1579 1.121 kiyohara if (fc->status != FWBUSINIT)
1580 1.89 kiyohara goto out;
1581 1.89 kiyohara if (tr->xfer->send.pay_len > 0) {
1582 1.121 kiyohara bus_dmamap_sync(fc->dmat, tr->dma_map,
1583 1.121 kiyohara 0, tr->dma_map->dm_mapsize, BUS_DMASYNC_POSTWRITE);
1584 1.121 kiyohara bus_dmamap_unload(fc->dmat, tr->dma_map);
1585 1.89 kiyohara }
1586 1.89 kiyohara #if 1
1587 1.89 kiyohara if (firewire_debug > 1)
1588 1.89 kiyohara dump_db(sc, ch);
1589 1.89 kiyohara #endif
1590 1.121 kiyohara if (status & OHCI_CNTL_DMA_DEAD) {
1591 1.89 kiyohara /* Stop DMA */
1592 1.121 kiyohara OWRITE(sc, OHCI_DMACTLCLR(dbch->off),
1593 1.121 kiyohara OHCI_CNTL_DMA_RUN);
1594 1.121 kiyohara aprint_error_dev(fc->dev, "force reset AT FIFO\n");
1595 1.89 kiyohara OWRITE(sc, OHCI_HCCCTLCLR, OHCI_HCC_LINKEN);
1596 1.89 kiyohara OWRITE(sc, OHCI_HCCCTL, OHCI_HCC_LPS | OHCI_HCC_LINKEN);
1597 1.121 kiyohara OWRITE(sc, OHCI_DMACTLCLR(dbch->off),
1598 1.121 kiyohara OHCI_CNTL_DMA_RUN);
1599 1.89 kiyohara }
1600 1.89 kiyohara stat = status & FWOHCIEV_MASK;
1601 1.121 kiyohara switch(stat) {
1602 1.89 kiyohara case FWOHCIEV_ACKPEND:
1603 1.121 kiyohara
1604 1.121 kiyohara /* FALLTHROUGH */
1605 1.121 kiyohara
1606 1.89 kiyohara case FWOHCIEV_ACKCOMPL:
1607 1.89 kiyohara err = 0;
1608 1.89 kiyohara break;
1609 1.121 kiyohara
1610 1.89 kiyohara case FWOHCIEV_ACKBSA:
1611 1.89 kiyohara case FWOHCIEV_ACKBSB:
1612 1.89 kiyohara case FWOHCIEV_ACKBSX:
1613 1.121 kiyohara aprint_error_dev(fc->dev, "txd err=%2x %s\n", stat,
1614 1.110 kiyohara fwohcicode[stat]);
1615 1.89 kiyohara err = EBUSY;
1616 1.89 kiyohara break;
1617 1.121 kiyohara
1618 1.89 kiyohara case FWOHCIEV_FLUSHED:
1619 1.89 kiyohara case FWOHCIEV_ACKTARD:
1620 1.121 kiyohara aprint_error_dev(fc->dev, "txd err=%2x %s\n", stat,
1621 1.110 kiyohara fwohcicode[stat]);
1622 1.89 kiyohara err = EAGAIN;
1623 1.89 kiyohara break;
1624 1.121 kiyohara
1625 1.89 kiyohara case FWOHCIEV_MISSACK:
1626 1.89 kiyohara case FWOHCIEV_UNDRRUN:
1627 1.89 kiyohara case FWOHCIEV_OVRRUN:
1628 1.89 kiyohara case FWOHCIEV_DESCERR:
1629 1.89 kiyohara case FWOHCIEV_DTRDERR:
1630 1.89 kiyohara case FWOHCIEV_TIMEOUT:
1631 1.89 kiyohara case FWOHCIEV_TCODERR:
1632 1.89 kiyohara case FWOHCIEV_UNKNOWN:
1633 1.89 kiyohara case FWOHCIEV_ACKDERR:
1634 1.89 kiyohara case FWOHCIEV_ACKTERR:
1635 1.89 kiyohara default:
1636 1.121 kiyohara aprint_error_dev(fc->dev, "txd err=%2x %s\n", stat,
1637 1.121 kiyohara fwohcicode[stat]);
1638 1.89 kiyohara err = EINVAL;
1639 1.89 kiyohara break;
1640 1.89 kiyohara }
1641 1.121 kiyohara dbch->xferq.queued--;
1642 1.121 kiyohara dbch->bottom = STAILQ_NEXT(tr, link);
1643 1.89 kiyohara if (tr->xfer != NULL) {
1644 1.89 kiyohara xfer = tr->xfer;
1645 1.121 kiyohara tr->xfer = NULL;
1646 1.121 kiyohara mutex_exit(&dbch->xferq.q_mtx);
1647 1.110 kiyohara if (xfer->flag & FWXF_RCVD) {
1648 1.62 haya #if 0
1649 1.89 kiyohara if (firewire_debug)
1650 1.89 kiyohara printf("already rcvd\n");
1651 1.62 haya #endif
1652 1.89 kiyohara fw_xfer_done(xfer);
1653 1.89 kiyohara } else {
1654 1.110 kiyohara microtime(&xfer->tv);
1655 1.110 kiyohara xfer->flag = FWXF_SENT;
1656 1.110 kiyohara if (err == EBUSY) {
1657 1.110 kiyohara xfer->flag = FWXF_BUSY;
1658 1.89 kiyohara xfer->resp = err;
1659 1.89 kiyohara xfer->recv.pay_len = 0;
1660 1.89 kiyohara fw_xfer_done(xfer);
1661 1.89 kiyohara } else if (stat != FWOHCIEV_ACKPEND) {
1662 1.89 kiyohara if (stat != FWOHCIEV_ACKCOMPL)
1663 1.110 kiyohara xfer->flag = FWXF_SENTERR;
1664 1.89 kiyohara xfer->resp = err;
1665 1.89 kiyohara xfer->recv.pay_len = 0;
1666 1.89 kiyohara fw_xfer_done(xfer);
1667 1.89 kiyohara }
1668 1.89 kiyohara }
1669 1.121 kiyohara mutex_enter(&dbch->xferq.q_mtx);
1670 1.89 kiyohara /*
1671 1.89 kiyohara * The watchdog timer takes care of split
1672 1.89 kiyohara * transcation timeout for ACKPEND case.
1673 1.89 kiyohara */
1674 1.121 kiyohara } else
1675 1.121 kiyohara aprint_error_dev(fc->dev, "this shouldn't happen\n");
1676 1.121 kiyohara packets++;
1677 1.89 kiyohara if (dbch->bottom == dbch->top) {
1678 1.89 kiyohara /* we reaches the end of context program */
1679 1.89 kiyohara if (firewire_debug && dbch->xferq.queued > 0)
1680 1.89 kiyohara printf("queued > 0\n");
1681 1.89 kiyohara break;
1682 1.89 kiyohara }
1683 1.121 kiyohara tr = dbch->bottom;
1684 1.89 kiyohara }
1685 1.89 kiyohara out:
1686 1.121 kiyohara if (dbch->xferq.queued > 0 || packets > 0)
1687 1.121 kiyohara fwdma_sync_multiseg(dbch->am, tr->idx, tr->idx,
1688 1.121 kiyohara BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
1689 1.89 kiyohara if ((dbch->flags & FWOHCI_DBCH_FULL) && packets > 0) {
1690 1.121 kiyohara aprint_normal_dev(fc->dev, "make free slot\n");
1691 1.89 kiyohara dbch->flags &= ~FWOHCI_DBCH_FULL;
1692 1.89 kiyohara fwohci_start(sc, dbch);
1693 1.89 kiyohara }
1694 1.121 kiyohara mutex_exit(&dbch->xferq.q_mtx);
1695 1.24 jmc }
1696 1.24 jmc
1697 1.24 jmc static void
1698 1.121 kiyohara fwohci_db_free(struct fwohci_softc *sc, struct fwohci_dbch *dbch)
1699 1.24 jmc {
1700 1.124 kiyohara struct fwohcidb_tr *db_tr, *last;
1701 1.26 enami
1702 1.89 kiyohara if ((dbch->flags & FWOHCI_DBCH_INIT) == 0)
1703 1.89 kiyohara return;
1704 1.26 enami
1705 1.124 kiyohara for (last = db_tr = STAILQ_FIRST(&dbch->db_trq); db_tr != last;
1706 1.121 kiyohara db_tr = STAILQ_NEXT(db_tr, link)) {
1707 1.121 kiyohara bus_dmamap_destroy(sc->fc.dmat, db_tr->dma_map);
1708 1.89 kiyohara if ((dbch->xferq.flag & FWXFERQ_EXTBUF) == 0 &&
1709 1.121 kiyohara db_tr->buf != NULL) {
1710 1.121 kiyohara fwdma_free(sc->fc.dmat, db_tr->dma_map, db_tr->buf);
1711 1.89 kiyohara db_tr->buf = NULL;
1712 1.121 kiyohara }
1713 1.89 kiyohara }
1714 1.128 christos dbch->ndb = 0;
1715 1.89 kiyohara db_tr = STAILQ_FIRST(&dbch->db_trq);
1716 1.89 kiyohara fwdma_free_multiseg(dbch->am);
1717 1.128 christos free(db_tr, M_FW);
1718 1.89 kiyohara STAILQ_INIT(&dbch->db_trq);
1719 1.89 kiyohara dbch->flags &= ~FWOHCI_DBCH_INIT;
1720 1.108 ad seldestroy(&dbch->xferq.rsel);
1721 1.89 kiyohara }
1722 1.26 enami
1723 1.89 kiyohara static void
1724 1.89 kiyohara fwohci_db_init(struct fwohci_softc *sc, struct fwohci_dbch *dbch)
1725 1.89 kiyohara {
1726 1.121 kiyohara struct firewire_comm *fc = &sc->fc;
1727 1.121 kiyohara struct fwohcidb_tr *db_tr, *lastq, *tmpq;
1728 1.121 kiyohara int idb;
1729 1.121 kiyohara const int db_tr_sz = sizeof(struct fwohcidb_tr) * dbch->ndb;
1730 1.89 kiyohara
1731 1.89 kiyohara if ((dbch->flags & FWOHCI_DBCH_INIT) != 0)
1732 1.89 kiyohara goto out;
1733 1.89 kiyohara
1734 1.89 kiyohara /* allocate DB entries and attach one to each DMA channels */
1735 1.89 kiyohara /* DB entry must start at 16 bytes bounary. */
1736 1.89 kiyohara STAILQ_INIT(&dbch->db_trq);
1737 1.128 christos db_tr = (struct fwohcidb_tr *)malloc(db_tr_sz, M_FW, M_WAITOK | M_ZERO);
1738 1.121 kiyohara if (db_tr == NULL) {
1739 1.128 christos aprint_error_dev(fc->dev, "malloc(1) failed\n");
1740 1.89 kiyohara return;
1741 1.89 kiyohara }
1742 1.26 enami
1743 1.89 kiyohara #define DB_SIZE(x) (sizeof(struct fwohcidb) * (x)->ndesc)
1744 1.121 kiyohara dbch->am = fwdma_malloc_multiseg(fc, DB_SIZE(dbch), DB_SIZE(dbch),
1745 1.121 kiyohara #if 0
1746 1.121 kiyohara dbch->ndb, BUS_DMA_WAITOK);
1747 1.121 kiyohara #else /* Ooops, debugging now... */
1748 1.121 kiyohara dbch->ndb, BUS_DMA_WAITOK |
1749 1.121 kiyohara (dbch->off == OHCI_ARQOFF || dbch->off == OHCI_ARSOFF) ?
1750 1.121 kiyohara BUS_DMA_COHERENT : 0);
1751 1.121 kiyohara #endif
1752 1.89 kiyohara if (dbch->am == NULL) {
1753 1.121 kiyohara aprint_error_dev(fc->dev, "fwdma_malloc_multiseg failed\n");
1754 1.128 christos free(db_tr, M_FW);
1755 1.89 kiyohara return;
1756 1.89 kiyohara }
1757 1.89 kiyohara /* Attach DB to DMA ch. */
1758 1.121 kiyohara for (idb = 0; idb < dbch->ndb; idb++) {
1759 1.121 kiyohara db_tr->idx = idb;
1760 1.89 kiyohara db_tr->dbcnt = 0;
1761 1.89 kiyohara db_tr->db = (struct fwohcidb *)fwdma_v_addr(dbch->am, idb);
1762 1.89 kiyohara db_tr->bus_addr = fwdma_bus_addr(dbch->am, idb);
1763 1.89 kiyohara /* create dmamap for buffers */
1764 1.121 kiyohara #define MAX_REQCOUNT 0xffff
1765 1.121 kiyohara if (bus_dmamap_create(fc->dmat, dbch->xferq.psize,
1766 1.121 kiyohara dbch->ndesc > 3 ? dbch->ndesc - 2 : 1, MAX_REQCOUNT, 0,
1767 1.121 kiyohara 0, &db_tr->dma_map) != 0) {
1768 1.121 kiyohara aprint_error_dev(fc->dev, "bus_dmamap_create failed\n");
1769 1.89 kiyohara dbch->flags = FWOHCI_DBCH_INIT; /* XXX fake */
1770 1.121 kiyohara fwohci_db_free(sc, dbch);
1771 1.89 kiyohara return;
1772 1.35 onoe }
1773 1.121 kiyohara if (dbch->off == OHCI_ARQOFF ||
1774 1.121 kiyohara dbch->off == OHCI_ARSOFF) {
1775 1.121 kiyohara db_tr->buf = fwdma_malloc(fc->dev, fc->dmat,
1776 1.121 kiyohara &db_tr->dma_map, dbch->xferq.psize, 1,
1777 1.121 kiyohara BUS_DMA_NOWAIT);
1778 1.121 kiyohara if (db_tr->buf == NULL) {
1779 1.121 kiyohara aprint_error_dev(fc->dev,
1780 1.121 kiyohara "fwdma_malloc failed\n");
1781 1.121 kiyohara dbch->flags = FWOHCI_DBCH_INIT; /* XXX fake */
1782 1.121 kiyohara fwohci_db_free(sc, dbch);
1783 1.121 kiyohara return;
1784 1.121 kiyohara }
1785 1.121 kiyohara }
1786 1.89 kiyohara STAILQ_INSERT_TAIL(&dbch->db_trq, db_tr, link);
1787 1.89 kiyohara if (dbch->xferq.flag & FWXFERQ_EXTBUF) {
1788 1.121 kiyohara struct fw_bulkxfer *bulkxfer =
1789 1.121 kiyohara &dbch->xferq.bulkxfer[idb / dbch->xferq.bnpacket];
1790 1.121 kiyohara
1791 1.89 kiyohara if (idb % dbch->xferq.bnpacket == 0)
1792 1.121 kiyohara bulkxfer->start = (void *)db_tr;
1793 1.89 kiyohara if ((idb + 1) % dbch->xferq.bnpacket == 0)
1794 1.121 kiyohara bulkxfer->end = (void *)db_tr;
1795 1.26 enami }
1796 1.89 kiyohara db_tr++;
1797 1.26 enami }
1798 1.121 kiyohara lastq = NULL;
1799 1.121 kiyohara STAILQ_FOREACH(tmpq, &dbch->db_trq, link)
1800 1.121 kiyohara lastq = tmpq;
1801 1.121 kiyohara lastq->link.stqe_next = STAILQ_FIRST(&dbch->db_trq);
1802 1.89 kiyohara out:
1803 1.89 kiyohara dbch->xferq.queued = 0;
1804 1.89 kiyohara dbch->pdb_tr = NULL;
1805 1.89 kiyohara dbch->top = STAILQ_FIRST(&dbch->db_trq);
1806 1.89 kiyohara dbch->bottom = dbch->top;
1807 1.89 kiyohara dbch->flags = FWOHCI_DBCH_INIT;
1808 1.108 ad selinit(&dbch->xferq.rsel);
1809 1.24 jmc }
1810 1.24 jmc
1811 1.5 matt static int
1812 1.89 kiyohara fwohci_tx_enable(struct fwohci_softc *sc, struct fwohci_dbch *dbch)
1813 1.7 onoe {
1814 1.89 kiyohara int err = 0;
1815 1.89 kiyohara int idb, z, i, dmach = 0, ldesc;
1816 1.89 kiyohara struct fwohcidb_tr *db_tr;
1817 1.89 kiyohara struct fwohcidb *db;
1818 1.7 onoe
1819 1.121 kiyohara if (!(dbch->xferq.flag & FWXFERQ_EXTBUF)) {
1820 1.89 kiyohara err = EINVAL;
1821 1.89 kiyohara return err;
1822 1.89 kiyohara }
1823 1.89 kiyohara z = dbch->ndesc;
1824 1.121 kiyohara for (dmach = 0; dmach < sc->fc.nisodma; dmach++)
1825 1.121 kiyohara if (dbch->off == sc->it[dmach].off)
1826 1.7 onoe break;
1827 1.121 kiyohara if (dmach == sc->fc.nisodma) {
1828 1.89 kiyohara err = EINVAL;
1829 1.89 kiyohara return err;
1830 1.89 kiyohara }
1831 1.121 kiyohara if (dbch->xferq.flag & FWXFERQ_RUNNING)
1832 1.89 kiyohara return err;
1833 1.89 kiyohara dbch->xferq.flag |= FWXFERQ_RUNNING;
1834 1.121 kiyohara for (i = 0, dbch->bottom = dbch->top; i < dbch->ndb - 1; i++)
1835 1.89 kiyohara dbch->bottom = STAILQ_NEXT(dbch->bottom, link);
1836 1.89 kiyohara db_tr = dbch->top;
1837 1.121 kiyohara for (idb = 0; idb < dbch->ndb; idb++) {
1838 1.89 kiyohara fwohci_add_tx_buf(dbch, db_tr, idb);
1839 1.121 kiyohara if (STAILQ_NEXT(db_tr, link) == NULL)
1840 1.89 kiyohara break;
1841 1.89 kiyohara db = db_tr->db;
1842 1.89 kiyohara ldesc = db_tr->dbcnt - 1;
1843 1.89 kiyohara FWOHCI_DMA_WRITE(db[0].db.desc.depend,
1844 1.121 kiyohara STAILQ_NEXT(db_tr, link)->bus_addr | z);
1845 1.89 kiyohara db[ldesc].db.desc.depend = db[0].db.desc.depend;
1846 1.121 kiyohara if (dbch->xferq.flag & FWXFERQ_EXTBUF) {
1847 1.121 kiyohara if (((idb + 1) % dbch->xferq.bnpacket) == 0) {
1848 1.121 kiyohara FWOHCI_DMA_SET(db[ldesc].db.desc.cmd,
1849 1.121 kiyohara OHCI_INTERRUPT_ALWAYS);
1850 1.89 kiyohara /* OHCI 1.1 and above */
1851 1.121 kiyohara FWOHCI_DMA_SET(db[0].db.desc.cmd,
1852 1.121 kiyohara OHCI_INTERRUPT_ALWAYS);
1853 1.89 kiyohara }
1854 1.89 kiyohara }
1855 1.89 kiyohara db_tr = STAILQ_NEXT(db_tr, link);
1856 1.89 kiyohara }
1857 1.89 kiyohara FWOHCI_DMA_CLEAR(
1858 1.121 kiyohara dbch->bottom->db[dbch->bottom->dbcnt - 1].db.desc.depend, 0xf);
1859 1.89 kiyohara return err;
1860 1.89 kiyohara }
1861 1.7 onoe
1862 1.89 kiyohara static int
1863 1.89 kiyohara fwohci_rx_enable(struct fwohci_softc *sc, struct fwohci_dbch *dbch)
1864 1.89 kiyohara {
1865 1.89 kiyohara struct fwohcidb_tr *db_tr;
1866 1.89 kiyohara struct fwohcidb *db;
1867 1.121 kiyohara int idb, z, i, ldesc, err = 0;
1868 1.89 kiyohara
1869 1.89 kiyohara z = dbch->ndesc;
1870 1.121 kiyohara if (dbch->xferq.flag & FWXFERQ_STREAM) {
1871 1.121 kiyohara if (dbch->xferq.flag & FWXFERQ_RUNNING)
1872 1.89 kiyohara return err;
1873 1.121 kiyohara } else
1874 1.121 kiyohara if (dbch->xferq.flag & FWXFERQ_RUNNING) {
1875 1.89 kiyohara err = EBUSY;
1876 1.89 kiyohara return err;
1877 1.89 kiyohara }
1878 1.89 kiyohara dbch->xferq.flag |= FWXFERQ_RUNNING;
1879 1.89 kiyohara dbch->top = STAILQ_FIRST(&dbch->db_trq);
1880 1.121 kiyohara for (i = 0, dbch->bottom = dbch->top; i < dbch->ndb - 1; i++)
1881 1.89 kiyohara dbch->bottom = STAILQ_NEXT(dbch->bottom, link);
1882 1.89 kiyohara db_tr = dbch->top;
1883 1.110 kiyohara if (db_tr->dbcnt != 0)
1884 1.110 kiyohara goto run;
1885 1.121 kiyohara for (idb = 0; idb < dbch->ndb; idb++) {
1886 1.121 kiyohara if (dbch->off == OHCI_ARQOFF ||
1887 1.121 kiyohara dbch->off == OHCI_ARSOFF)
1888 1.121 kiyohara bus_dmamap_sync(sc->fc.dmat, db_tr->dma_map,
1889 1.121 kiyohara 0, db_tr->dma_map->dm_mapsize, BUS_DMASYNC_PREREAD);
1890 1.89 kiyohara fwohci_add_rx_buf(dbch, db_tr, idb, &sc->dummy_dma);
1891 1.89 kiyohara if (STAILQ_NEXT(db_tr, link) == NULL)
1892 1.89 kiyohara break;
1893 1.89 kiyohara db = db_tr->db;
1894 1.89 kiyohara ldesc = db_tr->dbcnt - 1;
1895 1.89 kiyohara FWOHCI_DMA_WRITE(db[ldesc].db.desc.depend,
1896 1.121 kiyohara STAILQ_NEXT(db_tr, link)->bus_addr | z);
1897 1.121 kiyohara if (dbch->xferq.flag & FWXFERQ_EXTBUF) {
1898 1.121 kiyohara if (((idb + 1) % dbch->xferq.bnpacket) == 0) {
1899 1.121 kiyohara FWOHCI_DMA_SET(db[ldesc].db.desc.cmd,
1900 1.121 kiyohara OHCI_INTERRUPT_ALWAYS);
1901 1.121 kiyohara FWOHCI_DMA_CLEAR(db[ldesc].db.desc.depend, 0xf);
1902 1.89 kiyohara }
1903 1.89 kiyohara }
1904 1.121 kiyohara db_tr = STAILQ_NEXT(db_tr, link);
1905 1.121 kiyohara }
1906 1.121 kiyohara FWOHCI_DMA_CLEAR(dbch->bottom->db[db_tr->dbcnt - 1].db.desc.depend,
1907 1.121 kiyohara 0xf);
1908 1.121 kiyohara dbch->buf_offset = 0;
1909 1.121 kiyohara run:
1910 1.121 kiyohara fwdma_sync_multiseg_all(dbch->am,
1911 1.121 kiyohara BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
1912 1.121 kiyohara if (!(dbch->xferq.flag & FWXFERQ_STREAM)) {
1913 1.121 kiyohara OWRITE(sc, OHCI_DMACMD(dbch->off), dbch->top->bus_addr | z);
1914 1.121 kiyohara OWRITE(sc, OHCI_DMACTL(dbch->off), OHCI_CNTL_DMA_RUN);
1915 1.89 kiyohara }
1916 1.121 kiyohara return err;
1917 1.121 kiyohara }
1918 1.89 kiyohara
1919 1.121 kiyohara static int
1920 1.121 kiyohara fwohci_next_cycle(struct fwohci_softc *sc, int cycle_now)
1921 1.121 kiyohara {
1922 1.121 kiyohara int sec, cycle, cycle_match;
1923 1.121 kiyohara
1924 1.121 kiyohara cycle = cycle_now & 0x1fff;
1925 1.121 kiyohara sec = cycle_now >> 13;
1926 1.121 kiyohara #define CYCLE_MOD 0x10
1927 1.121 kiyohara #if 1
1928 1.121 kiyohara #define CYCLE_DELAY 8 /* min delay to start DMA */
1929 1.121 kiyohara #else
1930 1.121 kiyohara #define CYCLE_DELAY 7000 /* min delay to start DMA */
1931 1.121 kiyohara #endif
1932 1.121 kiyohara cycle = cycle + CYCLE_DELAY;
1933 1.121 kiyohara if (cycle >= 8000) {
1934 1.121 kiyohara sec++;
1935 1.121 kiyohara cycle -= 8000;
1936 1.121 kiyohara }
1937 1.121 kiyohara cycle = roundup2(cycle, CYCLE_MOD);
1938 1.121 kiyohara if (cycle >= 8000) {
1939 1.121 kiyohara sec++;
1940 1.121 kiyohara if (cycle == 8000)
1941 1.121 kiyohara cycle = 0;
1942 1.121 kiyohara else
1943 1.121 kiyohara cycle = CYCLE_MOD;
1944 1.110 kiyohara }
1945 1.121 kiyohara cycle_match = ((sec << 13) | cycle) & 0x7ffff;
1946 1.121 kiyohara
1947 1.121 kiyohara return cycle_match;
1948 1.89 kiyohara }
1949 1.89 kiyohara
1950 1.110 kiyohara #ifdef OHCI_DEBUG
1951 1.89 kiyohara static void
1952 1.110 kiyohara fwohci_dump_intr(struct fwohci_softc *sc, uint32_t stat)
1953 1.89 kiyohara {
1954 1.121 kiyohara
1955 1.121 kiyohara if (stat & OREAD(sc, FWOHCI_INTMASK))
1956 1.121 kiyohara print("%s: INTERRUPT"
1957 1.121 kiyohara " < %s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s>"
1958 1.121 kiyohara " 0x%08x, 0x%08x\n",
1959 1.121 kiyohara device_xname(fc->dev),
1960 1.121 kiyohara stat & OHCI_INT_EN ? "DMA_EN ":"",
1961 1.121 kiyohara stat & OHCI_INT_PHY_REG ? "PHY_REG ":"",
1962 1.121 kiyohara stat & OHCI_INT_CYC_LONG ? "CYC_LONG ":"",
1963 1.121 kiyohara stat & OHCI_INT_ERR ? "INT_ERR ":"",
1964 1.121 kiyohara stat & OHCI_INT_CYC_ERR ? "CYC_ERR ":"",
1965 1.121 kiyohara stat & OHCI_INT_CYC_LOST ? "CYC_LOST ":"",
1966 1.121 kiyohara stat & OHCI_INT_CYC_64SECOND ? "CYC_64SECOND ":"",
1967 1.121 kiyohara stat & OHCI_INT_CYC_START ? "CYC_START ":"",
1968 1.121 kiyohara stat & OHCI_INT_PHY_INT ? "PHY_INT ":"",
1969 1.121 kiyohara stat & OHCI_INT_PHY_BUS_R ? "BUS_RESET ":"",
1970 1.121 kiyohara stat & OHCI_INT_PHY_SID ? "SID ":"",
1971 1.121 kiyohara stat & OHCI_INT_LR_ERR ? "DMA_LR_ERR ":"",
1972 1.121 kiyohara stat & OHCI_INT_PW_ERR ? "DMA_PW_ERR ":"",
1973 1.121 kiyohara stat & OHCI_INT_DMA_IR ? "DMA_IR ":"",
1974 1.121 kiyohara stat & OHCI_INT_DMA_IT ? "DMA_IT " :"",
1975 1.121 kiyohara stat & OHCI_INT_DMA_PRRS ? "DMA_PRRS " :"",
1976 1.121 kiyohara stat & OHCI_INT_DMA_PRRQ ? "DMA_PRRQ " :"",
1977 1.121 kiyohara stat & OHCI_INT_DMA_ARRS ? "DMA_ARRS " :"",
1978 1.121 kiyohara stat & OHCI_INT_DMA_ARRQ ? "DMA_ARRQ " :"",
1979 1.121 kiyohara stat & OHCI_INT_DMA_ATRS ? "DMA_ATRS " :"",
1980 1.121 kiyohara stat & OHCI_INT_DMA_ATRQ ? "DMA_ATRQ " :"",
1981 1.121 kiyohara stat, OREAD(sc, FWOHCI_INTMASK)
1982 1.89 kiyohara );
1983 1.110 kiyohara }
1984 1.89 kiyohara #endif
1985 1.121 kiyohara
1986 1.110 kiyohara static void
1987 1.121 kiyohara fwohci_intr_core(struct fwohci_softc *sc, uint32_t stat)
1988 1.110 kiyohara {
1989 1.121 kiyohara struct firewire_comm *fc = &sc->fc;
1990 1.110 kiyohara uint32_t node_id, plen;
1991 1.110 kiyohara
1992 1.110 kiyohara if ((stat & OHCI_INT_PHY_BUS_R) && (fc->status != FWBUSRESET)) {
1993 1.110 kiyohara fc->status = FWBUSRESET;
1994 1.89 kiyohara /* Disable bus reset interrupt until sid recv. */
1995 1.121 kiyohara OWRITE(sc, FWOHCI_INTMASKCLR, OHCI_INT_PHY_BUS_R);
1996 1.100 blymn
1997 1.121 kiyohara aprint_normal_dev(fc->dev, "BUS reset\n");
1998 1.121 kiyohara OWRITE(sc, FWOHCI_INTMASKCLR, OHCI_INT_CYC_LOST);
1999 1.89 kiyohara OWRITE(sc, OHCI_LNKCTLCLR, OHCI_CNTL_CYCSRC);
2000 1.89 kiyohara
2001 1.121 kiyohara OWRITE(sc, OHCI_ATQCTLCLR, OHCI_CNTL_DMA_RUN);
2002 1.89 kiyohara sc->atrq.xferq.flag &= ~FWXFERQ_RUNNING;
2003 1.121 kiyohara OWRITE(sc, OHCI_ATSCTLCLR, OHCI_CNTL_DMA_RUN);
2004 1.89 kiyohara sc->atrs.xferq.flag &= ~FWXFERQ_RUNNING;
2005 1.89 kiyohara
2006 1.121 kiyohara fw_busreset(&sc->fc, FWBUSRESET);
2007 1.121 kiyohara OWRITE(sc, OHCI_CROMHDR, ntohl(sc->fc.config_rom[0]));
2008 1.121 kiyohara OWRITE(sc, OHCI_BUS_OPT, ntohl(sc->fc.config_rom[2]));
2009 1.110 kiyohara }
2010 1.110 kiyohara if (stat & OHCI_INT_PHY_SID) {
2011 1.110 kiyohara /* Enable bus reset interrupt */
2012 1.89 kiyohara OWRITE(sc, FWOHCI_INTSTATCLR, OHCI_INT_PHY_BUS_R);
2013 1.110 kiyohara OWRITE(sc, FWOHCI_INTMASK, OHCI_INT_PHY_BUS_R);
2014 1.110 kiyohara
2015 1.110 kiyohara /* Allow async. request to us */
2016 1.110 kiyohara OWRITE(sc, OHCI_AREQHI, 1 << 31);
2017 1.110 kiyohara if (firewire_phydma_enable) {
2018 1.110 kiyohara /* allow from all nodes */
2019 1.110 kiyohara OWRITE(sc, OHCI_PREQHI, 0x7fffffff);
2020 1.110 kiyohara OWRITE(sc, OHCI_PREQLO, 0xffffffff);
2021 1.125 kiyohara /* 0 to 4GB region */
2022 1.110 kiyohara OWRITE(sc, OHCI_PREQUPPER, 0x10000);
2023 1.110 kiyohara }
2024 1.110 kiyohara /* Set ATRetries register */
2025 1.110 kiyohara OWRITE(sc, OHCI_ATRETRY, 1<<(13+16) | 0xfff);
2026 1.110 kiyohara
2027 1.110 kiyohara /*
2028 1.110 kiyohara * Checking whether the node is root or not. If root, turn on
2029 1.110 kiyohara * cycle master.
2030 1.110 kiyohara */
2031 1.110 kiyohara node_id = OREAD(sc, FWOHCI_NODEID);
2032 1.110 kiyohara plen = OREAD(sc, OHCI_SID_CNT);
2033 1.110 kiyohara
2034 1.110 kiyohara fc->nodeid = node_id & 0x3f;
2035 1.121 kiyohara aprint_normal_dev(fc->dev, "node_id=0x%08x, gen=%d, ",
2036 1.110 kiyohara node_id, (plen >> 16) & 0xff);
2037 1.110 kiyohara if (!(node_id & OHCI_NODE_VALID)) {
2038 1.125 kiyohara aprint_error_dev(fc->dev, "Bus reset failure\n");
2039 1.110 kiyohara goto sidout;
2040 1.110 kiyohara }
2041 1.110 kiyohara
2042 1.110 kiyohara /* cycle timer */
2043 1.110 kiyohara sc->cycle_lost = 0;
2044 1.121 kiyohara OWRITE(sc, FWOHCI_INTMASK, OHCI_INT_CYC_LOST);
2045 1.110 kiyohara if ((node_id & OHCI_NODE_ROOT) && !nocyclemaster) {
2046 1.114 jmcneill aprint_normal("CYCLEMASTER mode\n");
2047 1.110 kiyohara OWRITE(sc, OHCI_LNKCTL,
2048 1.110 kiyohara OHCI_CNTL_CYCMTR | OHCI_CNTL_CYCTIMER);
2049 1.110 kiyohara } else {
2050 1.114 jmcneill aprint_normal("non CYCLEMASTER mode\n");
2051 1.110 kiyohara OWRITE(sc, OHCI_LNKCTLCLR, OHCI_CNTL_CYCMTR);
2052 1.110 kiyohara OWRITE(sc, OHCI_LNKCTL, OHCI_CNTL_CYCTIMER);
2053 1.110 kiyohara }
2054 1.110 kiyohara
2055 1.110 kiyohara fc->status = FWBUSINIT;
2056 1.110 kiyohara
2057 1.121 kiyohara fwohci_task_sid(sc);
2058 1.110 kiyohara }
2059 1.110 kiyohara sidout:
2060 1.121 kiyohara if ((stat & ~(OHCI_INT_PHY_BUS_R | OHCI_INT_PHY_SID)))
2061 1.121 kiyohara fwohci_task_dma(sc);
2062 1.110 kiyohara }
2063 1.110 kiyohara
2064 1.110 kiyohara static void
2065 1.121 kiyohara fwohci_intr_dma(struct fwohci_softc *sc, uint32_t stat)
2066 1.110 kiyohara {
2067 1.121 kiyohara struct firewire_comm *fc = &sc->fc;
2068 1.110 kiyohara uint32_t irstat, itstat;
2069 1.110 kiyohara u_int i;
2070 1.110 kiyohara
2071 1.110 kiyohara if (stat & OHCI_INT_DMA_IR) {
2072 1.121 kiyohara irstat = atomic_swap_32(&sc->irstat, 0);
2073 1.121 kiyohara for (i = 0; i < fc->nisodma; i++)
2074 1.121 kiyohara if ((irstat & (1 << i)) != 0) {
2075 1.121 kiyohara struct fwohci_dbch *dbch = &sc->ir[i];
2076 1.7 onoe
2077 1.89 kiyohara if ((dbch->xferq.flag & FWXFERQ_OPEN) == 0) {
2078 1.121 kiyohara aprint_error_dev(fc->dev,
2079 1.121 kiyohara "dma(%d) not active\n", i);
2080 1.89 kiyohara continue;
2081 1.89 kiyohara }
2082 1.89 kiyohara fwohci_rbuf_update(sc, i);
2083 1.89 kiyohara }
2084 1.89 kiyohara }
2085 1.110 kiyohara if (stat & OHCI_INT_DMA_IT) {
2086 1.121 kiyohara itstat = atomic_swap_32(&sc->itstat, 0);
2087 1.121 kiyohara for (i = 0; i < fc->nisodma; i++)
2088 1.121 kiyohara if ((itstat & (1 << i)) != 0)
2089 1.89 kiyohara fwohci_tbuf_update(sc, i);
2090 1.89 kiyohara }
2091 1.110 kiyohara if (stat & OHCI_INT_DMA_PRRS) {
2092 1.89 kiyohara #if 0
2093 1.89 kiyohara dump_dma(sc, ARRS_CH);
2094 1.89 kiyohara dump_db(sc, ARRS_CH);
2095 1.89 kiyohara #endif
2096 1.121 kiyohara fwohci_arcv(sc, &sc->arrs);
2097 1.89 kiyohara }
2098 1.110 kiyohara if (stat & OHCI_INT_DMA_PRRQ) {
2099 1.89 kiyohara #if 0
2100 1.89 kiyohara dump_dma(sc, ARRQ_CH);
2101 1.89 kiyohara dump_db(sc, ARRQ_CH);
2102 1.89 kiyohara #endif
2103 1.121 kiyohara fwohci_arcv(sc, &sc->arrq);
2104 1.89 kiyohara }
2105 1.89 kiyohara if (stat & OHCI_INT_CYC_LOST) {
2106 1.89 kiyohara if (sc->cycle_lost >= 0)
2107 1.121 kiyohara sc->cycle_lost++;
2108 1.89 kiyohara if (sc->cycle_lost > 10) {
2109 1.89 kiyohara sc->cycle_lost = -1;
2110 1.89 kiyohara #if 0
2111 1.89 kiyohara OWRITE(sc, OHCI_LNKCTLCLR, OHCI_CNTL_CYCTIMER);
2112 1.89 kiyohara #endif
2113 1.121 kiyohara OWRITE(sc, FWOHCI_INTMASKCLR, OHCI_INT_CYC_LOST);
2114 1.121 kiyohara aprint_error_dev(fc->dev, "too many cycle lost, "
2115 1.129 cegger "no cycle master present?\n");
2116 1.89 kiyohara }
2117 1.89 kiyohara }
2118 1.121 kiyohara if (stat & OHCI_INT_DMA_ATRQ)
2119 1.110 kiyohara fwohci_txd(sc, &(sc->atrq));
2120 1.121 kiyohara if (stat & OHCI_INT_DMA_ATRS)
2121 1.110 kiyohara fwohci_txd(sc, &(sc->atrs));
2122 1.121 kiyohara if (stat & OHCI_INT_PW_ERR)
2123 1.121 kiyohara aprint_error_dev(fc->dev, "posted write error\n");
2124 1.121 kiyohara if (stat & OHCI_INT_ERR)
2125 1.121 kiyohara aprint_error_dev(fc->dev, "unrecoverable error\n");
2126 1.121 kiyohara if (stat & OHCI_INT_PHY_INT)
2127 1.121 kiyohara aprint_normal_dev(fc->dev, "phy int\n");
2128 1.110 kiyohara
2129 1.110 kiyohara return;
2130 1.110 kiyohara }
2131 1.89 kiyohara
2132 1.110 kiyohara static void
2133 1.121 kiyohara fwohci_task_sid(struct fwohci_softc *sc)
2134 1.110 kiyohara {
2135 1.110 kiyohara struct firewire_comm *fc = &sc->fc;
2136 1.110 kiyohara uint32_t *buf;
2137 1.110 kiyohara int i, plen;
2138 1.3 onoe
2139 1.110 kiyohara plen = OREAD(sc, OHCI_SID_CNT);
2140 1.3 onoe
2141 1.110 kiyohara if (plen & OHCI_SID_ERR) {
2142 1.121 kiyohara aprint_error_dev(fc->dev, "SID Error\n");
2143 1.110 kiyohara return;
2144 1.89 kiyohara }
2145 1.110 kiyohara plen &= OHCI_SID_CNT_MASK;
2146 1.110 kiyohara if (plen < 4 || plen > OHCI_SIDSIZE) {
2147 1.121 kiyohara aprint_error_dev(fc->dev, "invalid SID len = %d\n", plen);
2148 1.110 kiyohara return;
2149 1.89 kiyohara }
2150 1.110 kiyohara plen -= 4; /* chop control info */
2151 1.128 christos buf = (uint32_t *)malloc(OHCI_SIDSIZE, M_FW, M_NOWAIT);
2152 1.128 christos if (buf == NULL) {
2153 1.128 christos aprint_error_dev(fc->dev, "malloc failed\n");
2154 1.128 christos return;
2155 1.128 christos }
2156 1.121 kiyohara for (i = 0; i < plen / 4; i++)
2157 1.121 kiyohara buf[i] = FWOHCI_DMA_READ(sc->sid_buf[i + 1]);
2158 1.110 kiyohara #if 1 /* XXX needed?? */
2159 1.110 kiyohara /* pending all pre-bus_reset packets */
2160 1.110 kiyohara fwohci_txd(sc, &sc->atrq);
2161 1.110 kiyohara fwohci_txd(sc, &sc->atrs);
2162 1.121 kiyohara fwohci_arcv(sc, &sc->arrs);
2163 1.121 kiyohara fwohci_arcv(sc, &sc->arrq);
2164 1.110 kiyohara fw_drain_txq(fc);
2165 1.89 kiyohara #endif
2166 1.110 kiyohara fw_sidrcv(fc, buf, plen);
2167 1.128 christos free(buf, M_FW);
2168 1.3 onoe }
2169 1.3 onoe
2170 1.7 onoe static void
2171 1.121 kiyohara fwohci_task_dma(struct fwohci_softc *sc)
2172 1.7 onoe {
2173 1.89 kiyohara uint32_t stat;
2174 1.7 onoe
2175 1.89 kiyohara again:
2176 1.121 kiyohara stat = atomic_swap_32(&sc->intstat, 0);
2177 1.110 kiyohara if (stat)
2178 1.121 kiyohara fwohci_intr_dma(sc, stat);
2179 1.110 kiyohara else
2180 1.89 kiyohara return;
2181 1.89 kiyohara goto again;
2182 1.7 onoe }
2183 1.7 onoe
2184 1.9 onoe static void
2185 1.89 kiyohara fwohci_tbuf_update(struct fwohci_softc *sc, int dmach)
2186 1.89 kiyohara {
2187 1.89 kiyohara struct firewire_comm *fc = &sc->fc;
2188 1.89 kiyohara struct fwohcidb *db;
2189 1.89 kiyohara struct fw_bulkxfer *chunk;
2190 1.89 kiyohara struct fw_xferq *it;
2191 1.135 martin uint32_t stat;
2192 1.135 martin #if 0
2193 1.135 martin uint32_t count;
2194 1.135 martin #endif
2195 1.121 kiyohara int w = 0, ldesc;
2196 1.89 kiyohara
2197 1.89 kiyohara it = fc->it[dmach];
2198 1.89 kiyohara ldesc = sc->it[dmach].ndesc - 1;
2199 1.121 kiyohara mutex_enter(&fc->fc_mtx);
2200 1.99 kiyohara fwdma_sync_multiseg_all(sc->it[dmach].am, BUS_DMASYNC_POSTREAD);
2201 1.89 kiyohara if (firewire_debug)
2202 1.89 kiyohara dump_db(sc, ITX_CH + dmach);
2203 1.89 kiyohara while ((chunk = STAILQ_FIRST(&it->stdma)) != NULL) {
2204 1.89 kiyohara db = ((struct fwohcidb_tr *)(chunk->end))->db;
2205 1.121 kiyohara stat =
2206 1.121 kiyohara FWOHCI_DMA_READ(db[ldesc].db.desc.res) >> OHCI_STATUS_SHIFT;
2207 1.89 kiyohara db = ((struct fwohcidb_tr *)(chunk->start))->db;
2208 1.89 kiyohara /* timestamp */
2209 1.135 martin #if 0
2210 1.121 kiyohara count =
2211 1.121 kiyohara FWOHCI_DMA_READ(db[ldesc].db.desc.res) & OHCI_COUNT_MASK;
2212 1.135 martin #else
2213 1.135 martin (void)FWOHCI_DMA_READ(db[ldesc].db.desc.res);
2214 1.135 martin #endif
2215 1.89 kiyohara if (stat == 0)
2216 1.89 kiyohara break;
2217 1.89 kiyohara STAILQ_REMOVE_HEAD(&it->stdma, link);
2218 1.121 kiyohara switch (stat & FWOHCIEV_MASK) {
2219 1.89 kiyohara case FWOHCIEV_ACKCOMPL:
2220 1.89 kiyohara #if 0
2221 1.121 kiyohara printf("0x%08x\n", count);
2222 1.89 kiyohara #endif
2223 1.89 kiyohara break;
2224 1.89 kiyohara default:
2225 1.121 kiyohara aprint_error_dev(fc->dev,
2226 1.121 kiyohara "Isochronous transmit err %02x(%s)\n",
2227 1.121 kiyohara stat, fwohcicode[stat & 0x1f]);
2228 1.89 kiyohara }
2229 1.89 kiyohara STAILQ_INSERT_TAIL(&it->stfree, chunk, link);
2230 1.89 kiyohara w++;
2231 1.9 onoe }
2232 1.139 riastrad if (w)
2233 1.139 riastrad cv_broadcast(&it->cv);
2234 1.121 kiyohara mutex_exit(&fc->fc_mtx);
2235 1.3 onoe }
2236 1.3 onoe
2237 1.89 kiyohara static void
2238 1.89 kiyohara fwohci_rbuf_update(struct fwohci_softc *sc, int dmach)
2239 1.3 onoe {
2240 1.89 kiyohara struct firewire_comm *fc = &sc->fc;
2241 1.89 kiyohara struct fwohcidb_tr *db_tr;
2242 1.89 kiyohara struct fw_bulkxfer *chunk;
2243 1.89 kiyohara struct fw_xferq *ir;
2244 1.89 kiyohara uint32_t stat;
2245 1.121 kiyohara int w = 0, ldesc;
2246 1.3 onoe
2247 1.89 kiyohara ir = fc->ir[dmach];
2248 1.89 kiyohara ldesc = sc->ir[dmach].ndesc - 1;
2249 1.110 kiyohara
2250 1.89 kiyohara #if 0
2251 1.89 kiyohara dump_db(sc, dmach);
2252 1.89 kiyohara #endif
2253 1.110 kiyohara if ((ir->flag & FWXFERQ_HANDLER) == 0)
2254 1.121 kiyohara mutex_enter(&fc->fc_mtx);
2255 1.99 kiyohara fwdma_sync_multiseg_all(sc->ir[dmach].am, BUS_DMASYNC_POSTREAD);
2256 1.89 kiyohara while ((chunk = STAILQ_FIRST(&ir->stdma)) != NULL) {
2257 1.89 kiyohara db_tr = (struct fwohcidb_tr *)chunk->end;
2258 1.121 kiyohara stat = FWOHCI_DMA_READ(db_tr->db[ldesc].db.desc.res) >>
2259 1.121 kiyohara OHCI_STATUS_SHIFT;
2260 1.89 kiyohara if (stat == 0)
2261 1.89 kiyohara break;
2262 1.3 onoe
2263 1.89 kiyohara if (chunk->mbuf != NULL) {
2264 1.121 kiyohara bus_dmamap_sync(fc->dmat, db_tr->dma_map, 0,
2265 1.121 kiyohara db_tr->dma_map->dm_mapsize, BUS_DMASYNC_POSTREAD);
2266 1.121 kiyohara bus_dmamap_unload(fc->dmat, db_tr->dma_map);
2267 1.121 kiyohara } else if (ir->buf != NULL)
2268 1.89 kiyohara fwdma_sync_multiseg(ir->buf, chunk->poffset,
2269 1.121 kiyohara ir->bnpacket, BUS_DMASYNC_POSTREAD);
2270 1.121 kiyohara else
2271 1.89 kiyohara /* XXX */
2272 1.121 kiyohara aprint_error_dev(fc->dev,
2273 1.121 kiyohara "fwohci_rbuf_update: this shouldn't happend\n");
2274 1.3 onoe
2275 1.89 kiyohara STAILQ_REMOVE_HEAD(&ir->stdma, link);
2276 1.89 kiyohara STAILQ_INSERT_TAIL(&ir->stvalid, chunk, link);
2277 1.89 kiyohara switch (stat & FWOHCIEV_MASK) {
2278 1.89 kiyohara case FWOHCIEV_ACKCOMPL:
2279 1.89 kiyohara chunk->resp = 0;
2280 1.89 kiyohara break;
2281 1.89 kiyohara default:
2282 1.89 kiyohara chunk->resp = EINVAL;
2283 1.121 kiyohara aprint_error_dev(fc->dev,
2284 1.121 kiyohara "Isochronous receive err %02x(%s)\n",
2285 1.121 kiyohara stat, fwohcicode[stat & 0x1f]);
2286 1.89 kiyohara }
2287 1.89 kiyohara w++;
2288 1.89 kiyohara }
2289 1.139 riastrad if ((ir->flag & FWXFERQ_HANDLER) == 0) {
2290 1.139 riastrad if (w)
2291 1.139 riastrad cv_broadcast(&ir->cv);
2292 1.121 kiyohara mutex_exit(&fc->fc_mtx);
2293 1.139 riastrad }
2294 1.110 kiyohara if (w == 0)
2295 1.110 kiyohara return;
2296 1.110 kiyohara if (ir->flag & FWXFERQ_HANDLER)
2297 1.110 kiyohara ir->hand(ir);
2298 1.3 onoe }
2299 1.3 onoe
2300 1.121 kiyohara static void
2301 1.89 kiyohara dump_dma(struct fwohci_softc *sc, uint32_t ch)
2302 1.3 onoe {
2303 1.121 kiyohara struct fwohci_dbch *dbch;
2304 1.121 kiyohara uint32_t cntl, stat, cmd, match;
2305 1.3 onoe
2306 1.121 kiyohara if (ch == ATRQ_CH)
2307 1.121 kiyohara dbch = &sc->atrq;
2308 1.121 kiyohara else if (ch == ATRS_CH)
2309 1.121 kiyohara dbch = &sc->atrs;
2310 1.121 kiyohara else if (ch == ARRQ_CH)
2311 1.121 kiyohara dbch = &sc->arrq;
2312 1.121 kiyohara else if (ch == ARRS_CH)
2313 1.121 kiyohara dbch = &sc->arrs;
2314 1.121 kiyohara else if (ch < IRX_CH)
2315 1.121 kiyohara dbch = &sc->it[ch - ITX_CH];
2316 1.121 kiyohara else
2317 1.121 kiyohara dbch = &sc->ir[ch - IRX_CH];
2318 1.121 kiyohara cntl = stat = OREAD(sc, dbch->off);
2319 1.121 kiyohara cmd = OREAD(sc, dbch->off + 0xc);
2320 1.121 kiyohara match = OREAD(sc, dbch->off + 0x10);
2321 1.121 kiyohara
2322 1.121 kiyohara aprint_normal_dev(sc->fc.dev,
2323 1.121 kiyohara "ch %1x cntl:0x%08x cmd:0x%08x match:0x%08x\n",
2324 1.121 kiyohara ch,
2325 1.121 kiyohara cntl,
2326 1.121 kiyohara cmd,
2327 1.121 kiyohara match);
2328 1.121 kiyohara stat &= 0xffff;
2329 1.121 kiyohara if (stat)
2330 1.121 kiyohara aprint_normal_dev(sc->fc.dev, "dma %d ch:%s%s%s%s%s%s %s(%x)\n",
2331 1.121 kiyohara ch,
2332 1.121 kiyohara stat & OHCI_CNTL_DMA_RUN ? "RUN," : "",
2333 1.121 kiyohara stat & OHCI_CNTL_DMA_WAKE ? "WAKE," : "",
2334 1.121 kiyohara stat & OHCI_CNTL_DMA_DEAD ? "DEAD," : "",
2335 1.121 kiyohara stat & OHCI_CNTL_DMA_ACTIVE ? "ACTIVE," : "",
2336 1.121 kiyohara stat & OHCI_CNTL_DMA_BT ? "BRANCH," : "",
2337 1.121 kiyohara stat & OHCI_CNTL_DMA_BAD ? "BADDMA," : "",
2338 1.121 kiyohara fwohcicode[stat & 0x1f],
2339 1.121 kiyohara stat & 0x1f
2340 1.89 kiyohara );
2341 1.121 kiyohara else
2342 1.121 kiyohara aprint_normal_dev(sc->fc.dev, "dma %d ch: Nostat\n", ch);
2343 1.3 onoe }
2344 1.3 onoe
2345 1.121 kiyohara static void
2346 1.89 kiyohara dump_db(struct fwohci_softc *sc, uint32_t ch)
2347 1.3 onoe {
2348 1.89 kiyohara struct fwohci_dbch *dbch;
2349 1.135 martin struct fwohcidb_tr *cp = NULL, *pp;
2350 1.135 martin struct fwohcidb *curr = NULL;
2351 1.135 martin #if 0
2352 1.135 martin struct fwohcidb_tr *np = NULL;
2353 1.135 martin struct fwohcidb *prev, *next = NULL;
2354 1.135 martin #endif
2355 1.89 kiyohara int idb, jdb;
2356 1.121 kiyohara uint32_t cmd;
2357 1.121 kiyohara
2358 1.121 kiyohara if (ch == ATRQ_CH)
2359 1.89 kiyohara dbch = &sc->atrq;
2360 1.121 kiyohara else if (ch == ATRS_CH)
2361 1.89 kiyohara dbch = &sc->atrs;
2362 1.121 kiyohara else if (ch == ARRQ_CH)
2363 1.89 kiyohara dbch = &sc->arrq;
2364 1.121 kiyohara else if (ch == ARRS_CH)
2365 1.89 kiyohara dbch = &sc->arrs;
2366 1.121 kiyohara else if (ch < IRX_CH)
2367 1.89 kiyohara dbch = &sc->it[ch - ITX_CH];
2368 1.121 kiyohara else
2369 1.89 kiyohara dbch = &sc->ir[ch - IRX_CH];
2370 1.121 kiyohara cmd = OREAD(sc, dbch->off + 0xc);
2371 1.3 onoe
2372 1.121 kiyohara if (dbch->ndb == 0) {
2373 1.121 kiyohara aprint_error_dev(sc->fc.dev, "No DB is attached ch=%d\n", ch);
2374 1.89 kiyohara return;
2375 1.89 kiyohara }
2376 1.89 kiyohara pp = dbch->top;
2377 1.135 martin #if 0
2378 1.89 kiyohara prev = pp->db;
2379 1.135 martin #endif
2380 1.121 kiyohara for (idb = 0; idb < dbch->ndb; idb++) {
2381 1.89 kiyohara cp = STAILQ_NEXT(pp, link);
2382 1.121 kiyohara if (cp == NULL) {
2383 1.89 kiyohara curr = NULL;
2384 1.89 kiyohara goto outdb;
2385 1.89 kiyohara }
2386 1.135 martin #if 0
2387 1.89 kiyohara np = STAILQ_NEXT(cp, link);
2388 1.135 martin #endif
2389 1.121 kiyohara for (jdb = 0; jdb < dbch->ndesc; jdb++)
2390 1.121 kiyohara if ((cmd & 0xfffffff0) == cp->bus_addr) {
2391 1.89 kiyohara curr = cp->db;
2392 1.135 martin #if 0
2393 1.121 kiyohara if (np != NULL)
2394 1.89 kiyohara next = np->db;
2395 1.121 kiyohara else
2396 1.89 kiyohara next = NULL;
2397 1.135 martin #endif
2398 1.89 kiyohara goto outdb;
2399 1.89 kiyohara }
2400 1.89 kiyohara pp = STAILQ_NEXT(pp, link);
2401 1.121 kiyohara if (pp == NULL) {
2402 1.89 kiyohara curr = NULL;
2403 1.89 kiyohara goto outdb;
2404 1.62 haya }
2405 1.135 martin #if 0
2406 1.89 kiyohara prev = pp->db;
2407 1.135 martin #endif
2408 1.89 kiyohara }
2409 1.89 kiyohara outdb:
2410 1.121 kiyohara if (curr != NULL) {
2411 1.89 kiyohara #if 0
2412 1.121 kiyohara aprint_normal("Prev DB %d\n", ch);
2413 1.89 kiyohara print_db(pp, prev, ch, dbch->ndesc);
2414 1.89 kiyohara #endif
2415 1.121 kiyohara aprint_normal("Current DB %d\n", ch);
2416 1.89 kiyohara print_db(cp, curr, ch, dbch->ndesc);
2417 1.89 kiyohara #if 0
2418 1.121 kiyohara aprint_normal("Next DB %d\n", ch);
2419 1.89 kiyohara print_db(np, next, ch, dbch->ndesc);
2420 1.89 kiyohara #endif
2421 1.121 kiyohara } else
2422 1.121 kiyohara aprint_error("dbdump err ch = %d cmd = 0x%08x\n", ch, cmd);
2423 1.89 kiyohara return;
2424 1.7 onoe }
2425 1.7 onoe
2426 1.121 kiyohara static void
2427 1.121 kiyohara print_db(struct fwohcidb_tr *db_tr, struct fwohcidb *db, uint32_t ch,
2428 1.121 kiyohara uint32_t hogemax)
2429 1.7 onoe {
2430 1.89 kiyohara fwohcireg_t stat;
2431 1.89 kiyohara int i, key;
2432 1.89 kiyohara uint32_t cmd, res;
2433 1.89 kiyohara
2434 1.121 kiyohara if (db == NULL) {
2435 1.121 kiyohara aprint_error("No Descriptor is found\n");
2436 1.89 kiyohara return;
2437 1.89 kiyohara }
2438 1.7 onoe
2439 1.121 kiyohara aprint_normal("ch = %d\n%8s %s %s %s %s %4s %8s %8s %4s:%4s\n",
2440 1.121 kiyohara ch,
2441 1.121 kiyohara "Current",
2442 1.121 kiyohara "OP ",
2443 1.121 kiyohara "KEY",
2444 1.121 kiyohara "INT",
2445 1.121 kiyohara "BR ",
2446 1.121 kiyohara "len",
2447 1.121 kiyohara "Addr",
2448 1.121 kiyohara "Depend",
2449 1.121 kiyohara "Stat",
2450 1.121 kiyohara "Cnt");
2451 1.121 kiyohara for (i = 0; i <= hogemax; i++) {
2452 1.89 kiyohara cmd = FWOHCI_DMA_READ(db[i].db.desc.cmd);
2453 1.89 kiyohara res = FWOHCI_DMA_READ(db[i].db.desc.res);
2454 1.89 kiyohara key = cmd & OHCI_KEY_MASK;
2455 1.89 kiyohara stat = res >> OHCI_STATUS_SHIFT;
2456 1.121 kiyohara aprint_normal("%08jx %s %s %s %s %5d %08x %08x %04x:%04x",
2457 1.121 kiyohara (uintmax_t)db_tr->bus_addr,
2458 1.121 kiyohara dbcode[(cmd >> 28) & 0xf],
2459 1.121 kiyohara dbkey[(cmd >> 24) & 0x7],
2460 1.121 kiyohara dbcond[(cmd >> 20) & 0x3],
2461 1.121 kiyohara dbcond[(cmd >> 18) & 0x3],
2462 1.121 kiyohara cmd & OHCI_COUNT_MASK,
2463 1.121 kiyohara FWOHCI_DMA_READ(db[i].db.desc.addr),
2464 1.121 kiyohara FWOHCI_DMA_READ(db[i].db.desc.depend),
2465 1.121 kiyohara stat,
2466 1.121 kiyohara res & OHCI_COUNT_MASK);
2467 1.121 kiyohara if (stat & 0xff00)
2468 1.121 kiyohara aprint_normal(" %s%s%s%s%s%s %s(%x)\n",
2469 1.121 kiyohara stat & OHCI_CNTL_DMA_RUN ? "RUN," : "",
2470 1.121 kiyohara stat & OHCI_CNTL_DMA_WAKE ? "WAKE," : "",
2471 1.121 kiyohara stat & OHCI_CNTL_DMA_DEAD ? "DEAD," : "",
2472 1.121 kiyohara stat & OHCI_CNTL_DMA_ACTIVE ? "ACTIVE," : "",
2473 1.121 kiyohara stat & OHCI_CNTL_DMA_BT ? "BRANCH," : "",
2474 1.121 kiyohara stat & OHCI_CNTL_DMA_BAD ? "BADDMA," : "",
2475 1.121 kiyohara fwohcicode[stat & 0x1f],
2476 1.121 kiyohara stat & 0x1f
2477 1.89 kiyohara );
2478 1.121 kiyohara else
2479 1.121 kiyohara aprint_normal(" Nostat\n");
2480 1.121 kiyohara if (key == OHCI_KEY_ST2)
2481 1.121 kiyohara aprint_normal("0x%08x 0x%08x 0x%08x 0x%08x\n",
2482 1.121 kiyohara FWOHCI_DMA_READ(db[i+1].db.immed[0]),
2483 1.121 kiyohara FWOHCI_DMA_READ(db[i+1].db.immed[1]),
2484 1.121 kiyohara FWOHCI_DMA_READ(db[i+1].db.immed[2]),
2485 1.121 kiyohara FWOHCI_DMA_READ(db[i+1].db.immed[3]));
2486 1.121 kiyohara if (key == OHCI_KEY_DEVICE)
2487 1.89 kiyohara return;
2488 1.121 kiyohara if ((cmd & OHCI_BRANCH_MASK) == OHCI_BRANCH_ALWAYS)
2489 1.89 kiyohara return;
2490 1.121 kiyohara if ((cmd & OHCI_CMD_MASK) == OHCI_OUTPUT_LAST)
2491 1.89 kiyohara return;
2492 1.121 kiyohara if ((cmd & OHCI_CMD_MASK) == OHCI_INPUT_LAST)
2493 1.89 kiyohara return;
2494 1.121 kiyohara if (key == OHCI_KEY_ST2)
2495 1.89 kiyohara i++;
2496 1.3 onoe }
2497 1.89 kiyohara return;
2498 1.3 onoe }
2499 1.3 onoe
2500 1.121 kiyohara static void
2501 1.89 kiyohara fwohci_txbufdb(struct fwohci_softc *sc, int dmach, struct fw_bulkxfer *bulkxfer)
2502 1.36 onoe {
2503 1.135 martin struct fwohcidb_tr *db_tr /*, *fdb_tr */;
2504 1.89 kiyohara struct fwohci_dbch *dbch;
2505 1.89 kiyohara struct fwohcidb *db;
2506 1.89 kiyohara struct fw_pkt *fp;
2507 1.89 kiyohara struct fwohci_txpkthdr *ohcifp;
2508 1.89 kiyohara unsigned short chtag;
2509 1.89 kiyohara int idb;
2510 1.89 kiyohara
2511 1.121 kiyohara KASSERT(mutex_owner(&sc->fc.fc_mtx));
2512 1.110 kiyohara
2513 1.89 kiyohara dbch = &sc->it[dmach];
2514 1.89 kiyohara chtag = sc->it[dmach].xferq.flag & 0xff;
2515 1.89 kiyohara
2516 1.89 kiyohara db_tr = (struct fwohcidb_tr *)(bulkxfer->start);
2517 1.135 martin /*
2518 1.89 kiyohara fdb_tr = (struct fwohcidb_tr *)(bulkxfer->end);
2519 1.121 kiyohara aprint_normal(sc->fc.dev, "DB %08x %08x %08x\n", bulkxfer, db_tr->bus_addr, fdb_tr->bus_addr);
2520 1.89 kiyohara */
2521 1.121 kiyohara for (idb = 0; idb < dbch->xferq.bnpacket; idb++) {
2522 1.89 kiyohara db = db_tr->db;
2523 1.89 kiyohara fp = (struct fw_pkt *)db_tr->buf;
2524 1.89 kiyohara ohcifp = (struct fwohci_txpkthdr *) db[1].db.immed;
2525 1.89 kiyohara ohcifp->mode.ld[0] = fp->mode.ld[0];
2526 1.89 kiyohara ohcifp->mode.common.spd = 0 & 0x7;
2527 1.89 kiyohara ohcifp->mode.stream.len = fp->mode.stream.len;
2528 1.89 kiyohara ohcifp->mode.stream.chtag = chtag;
2529 1.89 kiyohara ohcifp->mode.stream.tcode = 0xa;
2530 1.89 kiyohara #if BYTE_ORDER == BIG_ENDIAN
2531 1.100 blymn FWOHCI_DMA_WRITE(db[1].db.immed[0], db[1].db.immed[0]);
2532 1.100 blymn FWOHCI_DMA_WRITE(db[1].db.immed[1], db[1].db.immed[1]);
2533 1.89 kiyohara #endif
2534 1.36 onoe
2535 1.89 kiyohara FWOHCI_DMA_CLEAR(db[2].db.desc.cmd, OHCI_COUNT_MASK);
2536 1.89 kiyohara FWOHCI_DMA_SET(db[2].db.desc.cmd, fp->mode.stream.len);
2537 1.89 kiyohara FWOHCI_DMA_WRITE(db[2].db.desc.res, 0);
2538 1.89 kiyohara #if 0 /* if bulkxfer->npackets changes */
2539 1.121 kiyohara db[2].db.desc.cmd =
2540 1.121 kiyohara OHCI_OUTPUT_LAST | OHCI_UPDATE | OHCI_BRANCH_ALWAYS;
2541 1.121 kiyohara db[0].db.desc.depend = db[dbch->ndesc - 1].db.desc.depend =
2542 1.121 kiyohara STAILQ_NEXT(db_tr, link)->bus_addr | dbch->ndesc;
2543 1.89 kiyohara #else
2544 1.89 kiyohara FWOHCI_DMA_SET(db[0].db.desc.depend, dbch->ndesc);
2545 1.89 kiyohara FWOHCI_DMA_SET(db[dbch->ndesc - 1].db.desc.depend, dbch->ndesc);
2546 1.89 kiyohara #endif
2547 1.106 christos bulkxfer->end = (void *)db_tr;
2548 1.89 kiyohara db_tr = STAILQ_NEXT(db_tr, link);
2549 1.36 onoe }
2550 1.89 kiyohara db = ((struct fwohcidb_tr *)bulkxfer->end)->db;
2551 1.89 kiyohara FWOHCI_DMA_CLEAR(db[0].db.desc.depend, 0xf);
2552 1.89 kiyohara FWOHCI_DMA_CLEAR(db[dbch->ndesc - 1].db.desc.depend, 0xf);
2553 1.89 kiyohara #if 0 /* if bulkxfer->npackets changes */
2554 1.89 kiyohara db[dbch->ndesc - 1].db.desc.control |= OHCI_INTERRUPT_ALWAYS;
2555 1.89 kiyohara /* OHCI 1.1 and above */
2556 1.89 kiyohara db[0].db.desc.control |= OHCI_INTERRUPT_ALWAYS;
2557 1.89 kiyohara #endif
2558 1.89 kiyohara /*
2559 1.89 kiyohara db_tr = (struct fwohcidb_tr *)bulkxfer->start;
2560 1.89 kiyohara fdb_tr = (struct fwohcidb_tr *)bulkxfer->end;
2561 1.121 kiyohara aprint_normal(sc->fc.dev, "DB %08x %3d %08x %08x\n", bulkxfer, bulkxfer->npacket, db_tr->bus_addr, fdb_tr->bus_addr);
2562 1.89 kiyohara */
2563 1.89 kiyohara return;
2564 1.7 onoe }
2565 1.7 onoe
2566 1.89 kiyohara static int
2567 1.89 kiyohara fwohci_add_tx_buf(struct fwohci_dbch *dbch, struct fwohcidb_tr *db_tr,
2568 1.121 kiyohara int poffset)
2569 1.3 onoe {
2570 1.89 kiyohara struct fwohcidb *db = db_tr->db;
2571 1.89 kiyohara struct fw_xferq *it;
2572 1.89 kiyohara int err = 0;
2573 1.3 onoe
2574 1.89 kiyohara it = &dbch->xferq;
2575 1.121 kiyohara if (it->buf == 0) {
2576 1.89 kiyohara err = EINVAL;
2577 1.89 kiyohara return err;
2578 1.89 kiyohara }
2579 1.89 kiyohara db_tr->buf = fwdma_v_addr(it->buf, poffset);
2580 1.89 kiyohara db_tr->dbcnt = 3;
2581 1.40 haya
2582 1.89 kiyohara FWOHCI_DMA_WRITE(db[0].db.desc.cmd,
2583 1.121 kiyohara OHCI_OUTPUT_MORE | OHCI_KEY_ST2 | 8);
2584 1.89 kiyohara FWOHCI_DMA_WRITE(db[0].db.desc.addr, 0);
2585 1.121 kiyohara memset((void *)db[1].db.immed, 0, sizeof(db[1].db.immed));
2586 1.89 kiyohara FWOHCI_DMA_WRITE(db[2].db.desc.addr,
2587 1.95 kiyohara fwdma_bus_addr(it->buf, poffset) + sizeof(uint32_t));
2588 1.62 haya
2589 1.89 kiyohara FWOHCI_DMA_WRITE(db[2].db.desc.cmd,
2590 1.121 kiyohara OHCI_OUTPUT_LAST | OHCI_UPDATE | OHCI_BRANCH_ALWAYS);
2591 1.62 haya #if 1
2592 1.89 kiyohara FWOHCI_DMA_WRITE(db[0].db.desc.res, 0);
2593 1.89 kiyohara FWOHCI_DMA_WRITE(db[2].db.desc.res, 0);
2594 1.62 haya #endif
2595 1.89 kiyohara return 0;
2596 1.62 haya }
2597 1.62 haya
2598 1.62 haya int
2599 1.89 kiyohara fwohci_add_rx_buf(struct fwohci_dbch *dbch, struct fwohcidb_tr *db_tr,
2600 1.121 kiyohara int poffset, struct fwdma_alloc *dummy_dma)
2601 1.62 haya {
2602 1.89 kiyohara struct fwohcidb *db = db_tr->db;
2603 1.121 kiyohara struct fw_xferq *rq;
2604 1.89 kiyohara int i, ldesc;
2605 1.89 kiyohara bus_addr_t dbuf[2];
2606 1.89 kiyohara int dsiz[2];
2607 1.62 haya
2608 1.121 kiyohara rq = &dbch->xferq;
2609 1.121 kiyohara if (rq->buf == NULL && (dbch->xferq.flag & FWXFERQ_EXTBUF) == 0) {
2610 1.121 kiyohara /* async */
2611 1.89 kiyohara db_tr->dbcnt = 1;
2612 1.121 kiyohara dsiz[0] = rq->psize;
2613 1.121 kiyohara dbuf[0] = db_tr->dma_map->dm_segs[0].ds_addr;
2614 1.62 haya } else {
2615 1.121 kiyohara /* isoc */
2616 1.89 kiyohara db_tr->dbcnt = 0;
2617 1.121 kiyohara dsiz[db_tr->dbcnt] = sizeof(uint32_t);
2618 1.121 kiyohara dbuf[db_tr->dbcnt++] = dummy_dma->bus_addr;
2619 1.121 kiyohara dsiz[db_tr->dbcnt] = rq->psize;
2620 1.121 kiyohara if (rq->buf != NULL) {
2621 1.121 kiyohara db_tr->buf = fwdma_v_addr(rq->buf, poffset);
2622 1.121 kiyohara dbuf[db_tr->dbcnt] = fwdma_bus_addr(rq->buf, poffset);
2623 1.62 haya }
2624 1.89 kiyohara db_tr->dbcnt++;
2625 1.62 haya }
2626 1.121 kiyohara for (i = 0; i < db_tr->dbcnt; i++) {
2627 1.89 kiyohara FWOHCI_DMA_WRITE(db[i].db.desc.addr, dbuf[i]);
2628 1.89 kiyohara FWOHCI_DMA_WRITE(db[i].db.desc.cmd, OHCI_INPUT_MORE | dsiz[i]);
2629 1.121 kiyohara if (rq->flag & FWXFERQ_STREAM)
2630 1.89 kiyohara FWOHCI_DMA_SET(db[i].db.desc.cmd, OHCI_UPDATE);
2631 1.89 kiyohara FWOHCI_DMA_WRITE(db[i].db.desc.res, dsiz[i]);
2632 1.62 haya }
2633 1.89 kiyohara ldesc = db_tr->dbcnt - 1;
2634 1.121 kiyohara if (rq->flag & FWXFERQ_STREAM)
2635 1.89 kiyohara FWOHCI_DMA_SET(db[ldesc].db.desc.cmd, OHCI_INPUT_LAST);
2636 1.89 kiyohara FWOHCI_DMA_SET(db[ldesc].db.desc.cmd, OHCI_BRANCH_ALWAYS);
2637 1.89 kiyohara return 0;
2638 1.62 haya }
2639 1.62 haya
2640 1.62 haya
2641 1.89 kiyohara static int
2642 1.89 kiyohara fwohci_arcv_swap(struct fw_pkt *fp, int len)
2643 1.89 kiyohara {
2644 1.89 kiyohara struct fw_pkt *fp0;
2645 1.89 kiyohara uint32_t ld0;
2646 1.136 christos int hlen;
2647 1.89 kiyohara #if BYTE_ORDER == BIG_ENDIAN
2648 1.136 christos int slen, i;
2649 1.89 kiyohara #endif
2650 1.62 haya
2651 1.89 kiyohara ld0 = FWOHCI_DMA_READ(fp->mode.ld[0]);
2652 1.62 haya #if 0
2653 1.89 kiyohara printf("ld0: x%08x\n", ld0);
2654 1.62 haya #endif
2655 1.89 kiyohara fp0 = (struct fw_pkt *)&ld0;
2656 1.89 kiyohara /* determine length to swap */
2657 1.89 kiyohara switch (fp0->mode.common.tcode) {
2658 1.89 kiyohara case FWTCODE_WRES:
2659 1.89 kiyohara case FWTCODE_RREQQ:
2660 1.89 kiyohara case FWTCODE_WREQQ:
2661 1.89 kiyohara case FWTCODE_RRESQ:
2662 1.89 kiyohara case FWOHCITCODE_PHY:
2663 1.136 christos #if BYTE_ORDER == BIG_ENDIAN
2664 1.89 kiyohara slen = 12;
2665 1.136 christos #endif
2666 1.89 kiyohara break;
2667 1.121 kiyohara
2668 1.89 kiyohara case FWTCODE_RREQB:
2669 1.89 kiyohara case FWTCODE_WREQB:
2670 1.89 kiyohara case FWTCODE_LREQ:
2671 1.89 kiyohara case FWTCODE_RRESB:
2672 1.89 kiyohara case FWTCODE_LRES:
2673 1.136 christos #if BYTE_ORDER == BIG_ENDIAN
2674 1.89 kiyohara slen = 16;
2675 1.136 christos #endif
2676 1.89 kiyohara break;
2677 1.121 kiyohara
2678 1.89 kiyohara default:
2679 1.121 kiyohara aprint_error("Unknown tcode %d\n", fp0->mode.common.tcode);
2680 1.121 kiyohara return 0;
2681 1.62 haya }
2682 1.89 kiyohara hlen = tinfo[fp0->mode.common.tcode].hdr_len;
2683 1.89 kiyohara if (hlen > len) {
2684 1.89 kiyohara if (firewire_debug)
2685 1.89 kiyohara printf("splitted header\n");
2686 1.121 kiyohara return len - hlen;
2687 1.62 haya }
2688 1.89 kiyohara #if BYTE_ORDER == BIG_ENDIAN
2689 1.121 kiyohara for (i = 0; i < slen / 4; i++)
2690 1.89 kiyohara fp->mode.ld[i] = FWOHCI_DMA_READ(fp->mode.ld[i]);
2691 1.62 haya #endif
2692 1.121 kiyohara return hlen;
2693 1.62 haya }
2694 1.62 haya
2695 1.62 haya static int
2696 1.121 kiyohara fwohci_get_plen(struct fwohci_softc *sc, struct fwohci_dbch *dbch,
2697 1.121 kiyohara struct fw_pkt *fp)
2698 1.62 haya {
2699 1.90 drochner const struct tcode_info *info;
2700 1.89 kiyohara int r;
2701 1.62 haya
2702 1.89 kiyohara info = &tinfo[fp->mode.common.tcode];
2703 1.89 kiyohara r = info->hdr_len + sizeof(uint32_t);
2704 1.121 kiyohara if (info->flag & FWTI_BLOCK_ASY)
2705 1.89 kiyohara r += roundup2(fp->mode.wreqb.len, sizeof(uint32_t));
2706 1.62 haya
2707 1.89 kiyohara if (r == sizeof(uint32_t)) {
2708 1.89 kiyohara /* XXX */
2709 1.121 kiyohara aprint_error_dev(sc->fc.dev, "Unknown tcode %d\n",
2710 1.121 kiyohara fp->mode.common.tcode);
2711 1.121 kiyohara return -1;
2712 1.62 haya }
2713 1.62 haya
2714 1.89 kiyohara if (r > dbch->xferq.psize) {
2715 1.121 kiyohara aprint_error_dev(sc->fc.dev, "Invalid packet length %d\n", r);
2716 1.121 kiyohara return -1;
2717 1.89 kiyohara /* panic ? */
2718 1.62 haya }
2719 1.62 haya
2720 1.89 kiyohara return r;
2721 1.62 haya }
2722 1.62 haya
2723 1.62 haya static void
2724 1.89 kiyohara fwohci_arcv_free_buf(struct fwohci_softc *sc, struct fwohci_dbch *dbch,
2725 1.121 kiyohara struct fwohcidb_tr *db_tr, int wake)
2726 1.62 haya {
2727 1.121 kiyohara struct fwohcidb *db = db_tr->db;
2728 1.121 kiyohara struct fwohcidb_tr *bdb_tr = dbch->bottom;
2729 1.62 haya
2730 1.89 kiyohara FWOHCI_DMA_CLEAR(db->db.desc.depend, 0xf);
2731 1.89 kiyohara FWOHCI_DMA_WRITE(db->db.desc.res, dbch->xferq.psize);
2732 1.121 kiyohara
2733 1.121 kiyohara fwdma_sync_multiseg(dbch->am, bdb_tr->idx, bdb_tr->idx,
2734 1.121 kiyohara BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
2735 1.121 kiyohara FWOHCI_DMA_SET(bdb_tr->db[0].db.desc.depend, dbch->ndesc);
2736 1.121 kiyohara
2737 1.121 kiyohara fwdma_sync_multiseg(dbch->am, bdb_tr->idx, db_tr->idx,
2738 1.99 kiyohara BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
2739 1.89 kiyohara dbch->bottom = db_tr;
2740 1.62 haya
2741 1.89 kiyohara if (wake)
2742 1.121 kiyohara OWRITE(sc, OHCI_DMACTL(dbch->off), OHCI_CNTL_DMA_WAKE);
2743 1.62 haya }
2744 1.62 haya
2745 1.89 kiyohara static void
2746 1.121 kiyohara fwohci_arcv(struct fwohci_softc *sc, struct fwohci_dbch *dbch)
2747 1.62 haya {
2748 1.89 kiyohara struct fwohcidb_tr *db_tr;
2749 1.121 kiyohara struct fw_pkt pktbuf, *fp;
2750 1.89 kiyohara struct iovec vec[2];
2751 1.121 kiyohara bus_addr_t m;
2752 1.121 kiyohara bus_size_t n;
2753 1.121 kiyohara u_int spd;
2754 1.121 kiyohara uint32_t stat, status, event;
2755 1.89 kiyohara uint8_t *ld;
2756 1.121 kiyohara int nvec, resCount, len, plen, hlen, offset;
2757 1.121 kiyohara const int psize = dbch->xferq.psize;
2758 1.121 kiyohara
2759 1.121 kiyohara #if DIAGNOSTIC
2760 1.121 kiyohara if (dbch->off != OHCI_ARQOFF &&
2761 1.121 kiyohara dbch->off != OHCI_ARSOFF)
2762 1.121 kiyohara panic("not async rx");
2763 1.121 kiyohara #endif
2764 1.62 haya
2765 1.121 kiyohara mutex_enter(&dbch->xferq.q_mtx);
2766 1.89 kiyohara db_tr = dbch->top;
2767 1.89 kiyohara /* XXX we cannot handle a packet which lies in more than two buf */
2768 1.121 kiyohara fwdma_sync_multiseg(dbch->am, db_tr->idx, db_tr->idx,
2769 1.99 kiyohara BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
2770 1.89 kiyohara status = FWOHCI_DMA_READ(db_tr->db[0].db.desc.res) >> OHCI_STATUS_SHIFT;
2771 1.89 kiyohara resCount = FWOHCI_DMA_READ(db_tr->db[0].db.desc.res) & OHCI_COUNT_MASK;
2772 1.89 kiyohara while (status & OHCI_CNTL_DMA_ACTIVE) {
2773 1.89 kiyohara #if 0
2774 1.121 kiyohara if (dbch->off == OHCI_ARQOFF)
2775 1.121 kiyohara aprint_normal_dev(sc->fc.dev,
2776 1.121 kiyohara "buf 0x%08x, status 0x%04x, resCount 0x%04x\n",
2777 1.89 kiyohara db_tr->bus_addr, status, resCount);
2778 1.89 kiyohara #endif
2779 1.121 kiyohara n = 0;
2780 1.121 kiyohara len = psize - resCount;
2781 1.89 kiyohara ld = (uint8_t *)db_tr->buf;
2782 1.89 kiyohara if (dbch->pdb_tr == NULL) {
2783 1.89 kiyohara len -= dbch->buf_offset;
2784 1.89 kiyohara ld += dbch->buf_offset;
2785 1.121 kiyohara m = dbch->buf_offset;
2786 1.121 kiyohara } else
2787 1.121 kiyohara m = 0;
2788 1.89 kiyohara if (len > 0)
2789 1.121 kiyohara bus_dmamap_sync(sc->fc.dmat, db_tr->dma_map,
2790 1.121 kiyohara m, len, BUS_DMASYNC_POSTREAD);
2791 1.121 kiyohara while (len > 0) {
2792 1.121 kiyohara if (dbch->pdb_tr != NULL) {
2793 1.89 kiyohara /* we have a fragment in previous buffer */
2794 1.121 kiyohara int rlen = 0;
2795 1.121 kiyohara void *buf;
2796 1.89 kiyohara
2797 1.89 kiyohara if (dbch->buf_offset < 0) {
2798 1.89 kiyohara /* splitted in header, pull up */
2799 1.89 kiyohara char *p;
2800 1.89 kiyohara
2801 1.121 kiyohara rlen -= dbch->buf_offset;
2802 1.121 kiyohara buf = (char *)dbch->pdb_tr->buf +
2803 1.121 kiyohara psize - rlen;
2804 1.121 kiyohara
2805 1.121 kiyohara KASSERT(rlen <= sizeof(pktbuf));
2806 1.121 kiyohara
2807 1.89 kiyohara p = (char *)&pktbuf;
2808 1.120 tsutsui memcpy(p, buf, rlen);
2809 1.89 kiyohara p += rlen;
2810 1.89 kiyohara /* this must be too long but harmless */
2811 1.89 kiyohara rlen = sizeof(pktbuf) - rlen;
2812 1.120 tsutsui memcpy(p, db_tr->buf, rlen);
2813 1.89 kiyohara ld += rlen;
2814 1.89 kiyohara len -= rlen;
2815 1.121 kiyohara hlen = fwohci_arcv_swap(&pktbuf,
2816 1.121 kiyohara sizeof(pktbuf));
2817 1.89 kiyohara if (hlen <= 0) {
2818 1.121 kiyohara aprint_error_dev(sc->fc.dev,
2819 1.121 kiyohara "hlen should be positive.");
2820 1.89 kiyohara goto err;
2821 1.89 kiyohara }
2822 1.89 kiyohara offset = sizeof(pktbuf);
2823 1.89 kiyohara vec[0].iov_base = (char *)&pktbuf;
2824 1.89 kiyohara vec[0].iov_len = offset;
2825 1.89 kiyohara } else {
2826 1.89 kiyohara /* splitted in payload */
2827 1.121 kiyohara buf = (char *)dbch->pdb_tr->buf +
2828 1.121 kiyohara dbch->buf_offset;
2829 1.121 kiyohara rlen = psize - dbch->buf_offset;
2830 1.121 kiyohara if (firewire_debug)
2831 1.121 kiyohara printf("rlen=%d, offset=%d\n",
2832 1.121 kiyohara rlen, dbch->buf_offset);
2833 1.89 kiyohara offset = rlen;
2834 1.89 kiyohara vec[0].iov_base = buf;
2835 1.89 kiyohara vec[0].iov_len = rlen;
2836 1.89 kiyohara }
2837 1.121 kiyohara fp = (struct fw_pkt *)vec[0].iov_base;
2838 1.89 kiyohara nvec = 1;
2839 1.89 kiyohara } else {
2840 1.89 kiyohara /* no fragment in previous buffer */
2841 1.121 kiyohara fp = (struct fw_pkt *)ld;
2842 1.89 kiyohara hlen = fwohci_arcv_swap(fp, len);
2843 1.89 kiyohara if (hlen == 0)
2844 1.89 kiyohara goto err;
2845 1.89 kiyohara if (hlen < 0) {
2846 1.89 kiyohara dbch->pdb_tr = db_tr;
2847 1.121 kiyohara dbch->buf_offset -= psize;
2848 1.89 kiyohara /* sanity check */
2849 1.89 kiyohara if (resCount != 0) {
2850 1.121 kiyohara aprint_error_dev(sc->fc.dev,
2851 1.121 kiyohara "resCount=%d hlen=%d\n",
2852 1.89 kiyohara resCount, hlen);
2853 1.89 kiyohara goto err;
2854 1.89 kiyohara }
2855 1.89 kiyohara goto out;
2856 1.89 kiyohara }
2857 1.89 kiyohara offset = 0;
2858 1.89 kiyohara nvec = 0;
2859 1.89 kiyohara }
2860 1.89 kiyohara plen = fwohci_get_plen(sc, dbch, fp) - offset;
2861 1.89 kiyohara if (plen < 0) {
2862 1.121 kiyohara /*
2863 1.121 kiyohara * minimum header size + trailer =
2864 1.121 kiyohara * sizeof(fw_pkt) so this shouldn't happens
2865 1.121 kiyohara */
2866 1.121 kiyohara aprint_error_dev(sc->fc.dev,
2867 1.121 kiyohara "plen(%d) is negative! offset=%d\n",
2868 1.89 kiyohara plen, offset);
2869 1.89 kiyohara goto err;
2870 1.89 kiyohara }
2871 1.89 kiyohara if (plen > 0) {
2872 1.89 kiyohara len -= plen;
2873 1.89 kiyohara if (len < 0) {
2874 1.89 kiyohara dbch->pdb_tr = db_tr;
2875 1.89 kiyohara if (firewire_debug)
2876 1.89 kiyohara printf("splitted payload\n");
2877 1.89 kiyohara /* sanity check */
2878 1.121 kiyohara if (resCount != 0) {
2879 1.121 kiyohara aprint_error_dev(sc->fc.dev,
2880 1.121 kiyohara "resCount=%d plen=%d"
2881 1.89 kiyohara " len=%d\n",
2882 1.89 kiyohara resCount, plen, len);
2883 1.89 kiyohara goto err;
2884 1.89 kiyohara }
2885 1.89 kiyohara goto out;
2886 1.89 kiyohara }
2887 1.89 kiyohara vec[nvec].iov_base = ld;
2888 1.89 kiyohara vec[nvec].iov_len = plen;
2889 1.121 kiyohara nvec++;
2890 1.89 kiyohara ld += plen;
2891 1.89 kiyohara }
2892 1.89 kiyohara if (nvec == 0)
2893 1.121 kiyohara aprint_error_dev(sc->fc.dev, "nvec == 0\n");
2894 1.62 haya
2895 1.89 kiyohara /* DMA result-code will be written at the tail of packet */
2896 1.121 kiyohara stat = FWOHCI_DMA_READ(*(uint32_t *)(ld -
2897 1.121 kiyohara sizeof(struct fwohci_trailer)));
2898 1.89 kiyohara #if 0
2899 1.121 kiyohara aprint_normal("plen: %d, stat %x\n", plen, stat);
2900 1.89 kiyohara #endif
2901 1.89 kiyohara spd = (stat >> 21) & 0x3;
2902 1.89 kiyohara event = (stat >> 16) & 0x1f;
2903 1.89 kiyohara switch (event) {
2904 1.89 kiyohara case FWOHCIEV_ACKPEND:
2905 1.89 kiyohara #if 0
2906 1.121 kiyohara aprint_normal(sc->fc.dev,
2907 1.121 kiyohara "ack pending tcode=0x%x..\n",
2908 1.121 kiyohara fp->mode.common.tcode);
2909 1.89 kiyohara #endif
2910 1.89 kiyohara /* fall through */
2911 1.89 kiyohara case FWOHCIEV_ACKCOMPL:
2912 1.89 kiyohara {
2913 1.89 kiyohara struct fw_rcv_buf rb;
2914 1.89 kiyohara
2915 1.121 kiyohara vec[nvec - 1].iov_len -=
2916 1.121 kiyohara sizeof(struct fwohci_trailer);
2917 1.121 kiyohara if (vec[nvec - 1].iov_len == 0)
2918 1.100 blymn nvec--;
2919 1.89 kiyohara rb.fc = &sc->fc;
2920 1.89 kiyohara rb.vec = vec;
2921 1.89 kiyohara rb.nvec = nvec;
2922 1.89 kiyohara rb.spd = spd;
2923 1.89 kiyohara fw_rcv(&rb);
2924 1.62 haya break;
2925 1.89 kiyohara }
2926 1.89 kiyohara case FWOHCIEV_BUSRST:
2927 1.110 kiyohara if ((sc->fc.status != FWBUSRESET) &&
2928 1.110 kiyohara (sc->fc.status != FWBUSINIT))
2929 1.121 kiyohara aprint_error_dev(sc->fc.dev,
2930 1.121 kiyohara "got BUSRST packet!?\n");
2931 1.62 haya break;
2932 1.62 haya default:
2933 1.121 kiyohara aprint_error_dev(sc->fc.dev,
2934 1.89 kiyohara "Async DMA Receive error err=%02x %s"
2935 1.89 kiyohara " plen=%d offset=%d len=%d status=0x%08x"
2936 1.89 kiyohara " tcode=0x%x, stat=0x%08x\n",
2937 1.89 kiyohara event, fwohcicode[event], plen,
2938 1.121 kiyohara (int)(ld - (uint8_t *)db_tr->buf - plen),
2939 1.121 kiyohara len, OREAD(sc, OHCI_DMACTL(dbch->off)),
2940 1.89 kiyohara fp->mode.common.tcode, stat);
2941 1.89 kiyohara #if 1 /* XXX */
2942 1.89 kiyohara goto err;
2943 1.89 kiyohara #endif
2944 1.62 haya break;
2945 1.62 haya }
2946 1.89 kiyohara if (dbch->pdb_tr != NULL) {
2947 1.121 kiyohara if (dbch->buf_offset < 0)
2948 1.121 kiyohara bus_dmamap_sync(sc->fc.dmat,
2949 1.121 kiyohara dbch->pdb_tr->dma_map,
2950 1.121 kiyohara psize + dbch->buf_offset,
2951 1.121 kiyohara 0 - dbch->buf_offset,
2952 1.121 kiyohara BUS_DMASYNC_PREREAD);
2953 1.121 kiyohara else
2954 1.121 kiyohara bus_dmamap_sync(sc->fc.dmat,
2955 1.121 kiyohara dbch->pdb_tr->dma_map,
2956 1.121 kiyohara dbch->buf_offset,
2957 1.121 kiyohara psize - dbch->buf_offset,
2958 1.121 kiyohara BUS_DMASYNC_PREREAD);
2959 1.121 kiyohara fwohci_arcv_free_buf(sc, dbch, dbch->pdb_tr, 1);
2960 1.89 kiyohara dbch->pdb_tr = NULL;
2961 1.89 kiyohara }
2962 1.121 kiyohara dbch->buf_offset = ld - (uint8_t *)db_tr->buf;
2963 1.121 kiyohara n += (plen + offset);
2964 1.62 haya }
2965 1.89 kiyohara out:
2966 1.121 kiyohara if (n > 0)
2967 1.121 kiyohara bus_dmamap_sync(sc->fc.dmat, db_tr->dma_map, m, n,
2968 1.121 kiyohara BUS_DMASYNC_PREREAD);
2969 1.121 kiyohara
2970 1.121 kiyohara if (resCount != 0) {
2971 1.121 kiyohara dbch->buf_offset = psize - resCount;
2972 1.62 haya break;
2973 1.62 haya }
2974 1.121 kiyohara
2975 1.121 kiyohara /* done on this buffer */
2976 1.121 kiyohara
2977 1.121 kiyohara if (dbch->pdb_tr == NULL) {
2978 1.121 kiyohara fwohci_arcv_free_buf(sc, dbch, db_tr, 1);
2979 1.121 kiyohara dbch->buf_offset = 0;
2980 1.121 kiyohara } else
2981 1.121 kiyohara if (dbch->pdb_tr != db_tr)
2982 1.121 kiyohara aprint_error_dev(sc->fc.dev,
2983 1.121 kiyohara "pdb_tr != db_tr\n");
2984 1.121 kiyohara dbch->top = STAILQ_NEXT(db_tr, link);
2985 1.121 kiyohara
2986 1.121 kiyohara db_tr = dbch->top;
2987 1.121 kiyohara fwdma_sync_multiseg(dbch->am, db_tr->idx, db_tr->idx,
2988 1.121 kiyohara BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
2989 1.121 kiyohara status = FWOHCI_DMA_READ(db_tr->db[0].db.desc.res) >>
2990 1.121 kiyohara OHCI_STATUS_SHIFT;
2991 1.121 kiyohara resCount = FWOHCI_DMA_READ(db_tr->db[0].db.desc.res)
2992 1.121 kiyohara & OHCI_COUNT_MASK;
2993 1.121 kiyohara
2994 1.121 kiyohara /* XXX check buffer overrun */
2995 1.121 kiyohara
2996 1.89 kiyohara /* XXX make sure DMA is not dead */
2997 1.62 haya }
2998 1.121 kiyohara fwdma_sync_multiseg(dbch->am, db_tr->idx, db_tr->idx,
2999 1.121 kiyohara BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
3000 1.121 kiyohara mutex_exit(&dbch->xferq.q_mtx);
3001 1.89 kiyohara return;
3002 1.62 haya
3003 1.89 kiyohara err:
3004 1.121 kiyohara aprint_error_dev(sc->fc.dev, "AR DMA status=%x, ",
3005 1.121 kiyohara OREAD(sc, OHCI_DMACTL(dbch->off)));
3006 1.121 kiyohara if (dbch->pdb_tr != NULL) {
3007 1.121 kiyohara if (dbch->buf_offset < 0)
3008 1.121 kiyohara bus_dmamap_sync(sc->fc.dmat, dbch->pdb_tr->dma_map,
3009 1.121 kiyohara psize + dbch->buf_offset, 0 - dbch->buf_offset,
3010 1.121 kiyohara BUS_DMASYNC_PREREAD);
3011 1.121 kiyohara else
3012 1.121 kiyohara bus_dmamap_sync(sc->fc.dmat, dbch->pdb_tr->dma_map,
3013 1.121 kiyohara dbch->buf_offset, psize - dbch->buf_offset,
3014 1.121 kiyohara BUS_DMASYNC_PREREAD);
3015 1.121 kiyohara fwohci_arcv_free_buf(sc, dbch, dbch->pdb_tr, 1);
3016 1.121 kiyohara dbch->pdb_tr = NULL;
3017 1.121 kiyohara }
3018 1.89 kiyohara /* skip until resCount != 0 */
3019 1.121 kiyohara aprint_error(" skip buffer");
3020 1.89 kiyohara while (resCount == 0) {
3021 1.121 kiyohara aprint_error(" #");
3022 1.121 kiyohara fwohci_arcv_free_buf(sc, dbch, db_tr, 0);
3023 1.89 kiyohara db_tr = STAILQ_NEXT(db_tr, link);
3024 1.89 kiyohara resCount = FWOHCI_DMA_READ(db_tr->db[0].db.desc.res)
3025 1.121 kiyohara & OHCI_COUNT_MASK;
3026 1.89 kiyohara }
3027 1.121 kiyohara aprint_error(" done\n");
3028 1.89 kiyohara dbch->top = db_tr;
3029 1.121 kiyohara dbch->buf_offset = psize - resCount;
3030 1.121 kiyohara OWRITE(sc, OHCI_DMACTL(dbch->off), OHCI_CNTL_DMA_WAKE);
3031 1.121 kiyohara fwdma_sync_multiseg(dbch->am, db_tr->idx, db_tr->idx,
3032 1.121 kiyohara BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
3033 1.121 kiyohara bus_dmamap_sync(sc->fc.dmat, db_tr->dma_map,
3034 1.121 kiyohara 0, db_tr->dma_map->dm_mapsize, BUS_DMASYNC_PREREAD);
3035 1.121 kiyohara mutex_exit(&dbch->xferq.q_mtx);
3036 1.62 haya }
3037