firewire.h revision 1.5 1 1.5 kiyohara /* $NetBSD: firewire.h,v 1.5 2010/03/29 03:05:27 kiyohara Exp $ */
2 1.1 kiyohara /*-
3 1.1 kiyohara * Copyright (c) 2003 Hidetoshi Shimokawa
4 1.1 kiyohara * Copyright (c) 1998-2002 Katsushi Kobayashi and Hidetoshi Shimokawa
5 1.1 kiyohara * All rights reserved.
6 1.1 kiyohara *
7 1.1 kiyohara * Redistribution and use in source and binary forms, with or without
8 1.1 kiyohara * modification, are permitted provided that the following conditions
9 1.1 kiyohara * are met:
10 1.1 kiyohara * 1. Redistributions of source code must retain the above copyright
11 1.1 kiyohara * notice, this list of conditions and the following disclaimer.
12 1.1 kiyohara * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 kiyohara * notice, this list of conditions and the following disclaimer in the
14 1.1 kiyohara * documentation and/or other materials provided with the distribution.
15 1.1 kiyohara * 3. All advertising materials mentioning features or use of this software
16 1.1 kiyohara * must display the acknowledgement as bellow:
17 1.1 kiyohara *
18 1.1 kiyohara * This product includes software developed by K. Kobayashi and H. Shimokawa
19 1.1 kiyohara *
20 1.1 kiyohara * 4. The name of the author may not be used to endorse or promote products
21 1.1 kiyohara * derived from this software without specific prior written permission.
22 1.1 kiyohara *
23 1.1 kiyohara * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
24 1.1 kiyohara * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
25 1.1 kiyohara * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
26 1.1 kiyohara * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
27 1.1 kiyohara * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
28 1.1 kiyohara * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
29 1.1 kiyohara * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.1 kiyohara * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
31 1.1 kiyohara * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
32 1.1 kiyohara * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
33 1.1 kiyohara * POSSIBILITY OF SUCH DAMAGE.
34 1.5 kiyohara *
35 1.5 kiyohara * $FreeBSD: src/sys/dev/firewire/firewire.h,v 1.25 2009/02/17 19:37:04 sbruno Exp $
36 1.1 kiyohara *
37 1.1 kiyohara */
38 1.1 kiyohara
39 1.5 kiyohara #ifndef _FIREWIRE_H_
40 1.5 kiyohara #define _FIREWIRE_H_
41 1.1 kiyohara
42 1.1 kiyohara #define DEV_DEF 0
43 1.1 kiyohara #define DEV_DV 2
44 1.1 kiyohara
45 1.1 kiyohara struct fw_isochreq {
46 1.1 kiyohara unsigned char ch:6,
47 1.1 kiyohara tag:2;
48 1.1 kiyohara };
49 1.1 kiyohara
50 1.1 kiyohara struct fw_isobufreq {
51 1.1 kiyohara struct fw_bufspec {
52 1.1 kiyohara unsigned int nchunk;
53 1.1 kiyohara unsigned int npacket;
54 1.1 kiyohara unsigned int psize;
55 1.1 kiyohara } tx, rx;
56 1.1 kiyohara };
57 1.1 kiyohara
58 1.1 kiyohara struct fw_addr {
59 1.1 kiyohara uint32_t hi;
60 1.1 kiyohara uint32_t lo;
61 1.1 kiyohara };
62 1.1 kiyohara
63 1.1 kiyohara struct fw_asybindreq {
64 1.1 kiyohara struct fw_addr start;
65 1.1 kiyohara unsigned long len;
66 1.1 kiyohara };
67 1.1 kiyohara
68 1.1 kiyohara struct fw_reg_req_t {
69 1.1 kiyohara uint32_t addr;
70 1.1 kiyohara uint32_t data;
71 1.1 kiyohara };
72 1.1 kiyohara
73 1.1 kiyohara #define MAXREC(x) (2 << (x))
74 1.1 kiyohara #define FWPMAX_S400 (2048 + 20) /* MAXREC plus space for control data */
75 1.1 kiyohara #define FWMAXQUEUE 256
76 1.1 kiyohara
77 1.1 kiyohara #define FWLOCALBUS 0xffc0
78 1.1 kiyohara
79 1.1 kiyohara #define FWTCODE_WREQQ 0
80 1.1 kiyohara #define FWTCODE_WREQB 1
81 1.1 kiyohara #define FWTCODE_WRES 2
82 1.1 kiyohara #define FWTCODE_RREQQ 4
83 1.1 kiyohara #define FWTCODE_RREQB 5
84 1.1 kiyohara #define FWTCODE_RRESQ 6
85 1.1 kiyohara #define FWTCODE_RRESB 7
86 1.1 kiyohara #define FWTCODE_CYCS 8
87 1.1 kiyohara #define FWTCODE_LREQ 9
88 1.1 kiyohara #define FWTCODE_STREAM 0xa
89 1.1 kiyohara #define FWTCODE_LRES 0xb
90 1.1 kiyohara #define FWTCODE_PHY 0xe
91 1.1 kiyohara
92 1.1 kiyohara #define FWRETRY_1 0
93 1.1 kiyohara #define FWRETRY_X 1
94 1.1 kiyohara #define FWRETRY_A 2
95 1.1 kiyohara #define FWRETRY_B 3
96 1.1 kiyohara
97 1.1 kiyohara #define FWRCODE_COMPLETE 0
98 1.1 kiyohara #define FWRCODE_ER_CONFL 4
99 1.1 kiyohara #define FWRCODE_ER_DATA 5
100 1.1 kiyohara #define FWRCODE_ER_TYPE 6
101 1.1 kiyohara #define FWRCODE_ER_ADDR 7
102 1.1 kiyohara
103 1.5 kiyohara /*
104 1.5 kiyohara * Defined 1394a-2000
105 1.5 kiyohara * Table 5B-1
106 1.5 kiyohara */
107 1.1 kiyohara #define FWSPD_S100 0
108 1.1 kiyohara #define FWSPD_S200 1
109 1.1 kiyohara #define FWSPD_S400 2
110 1.5 kiyohara #define FWSPD_S800 3
111 1.5 kiyohara #define FWSPD_S1600 4
112 1.5 kiyohara #define FWSPD_S3200 5
113 1.1 kiyohara
114 1.1 kiyohara #define FWP_TL_VALID (1 << 7)
115 1.1 kiyohara
116 1.1 kiyohara struct fw_isohdr {
117 1.1 kiyohara uint32_t hdr[1];
118 1.1 kiyohara };
119 1.1 kiyohara
120 1.1 kiyohara struct fw_asyhdr {
121 1.1 kiyohara uint32_t hdr[4];
122 1.1 kiyohara };
123 1.1 kiyohara
124 1.1 kiyohara #if BYTE_ORDER == BIG_ENDIAN
125 1.1 kiyohara #define BIT4x2(x,y) uint8_t x:4, y:4
126 1.1 kiyohara #define BIT16x2(x,y) uint32_t x:16, y:16
127 1.1 kiyohara #else
128 1.1 kiyohara #define BIT4x2(x,y) uint8_t y:4, x:4
129 1.1 kiyohara #define BIT16x2(x,y) uint32_t y:16, x:16
130 1.1 kiyohara #endif
131 1.1 kiyohara
132 1.1 kiyohara
133 1.1 kiyohara #if BYTE_ORDER == BIG_ENDIAN
134 1.1 kiyohara #define COMMON_HDR(a,b,c,d) uint32_t a:16,b:8,c:4,d:4
135 1.1 kiyohara #define COMMON_RES(a,b,c,d) uint32_t a:16,b:4,c:4,d:8
136 1.1 kiyohara #else
137 1.1 kiyohara #define COMMON_HDR(a,b,c,d) uint32_t d:4,c:4,b:8,a:16
138 1.1 kiyohara #define COMMON_RES(a,b,c,d) uint32_t d:8,c:4,b:4,a:16
139 1.1 kiyohara #endif
140 1.1 kiyohara
141 1.1 kiyohara struct fw_pkt {
142 1.1 kiyohara union {
143 1.1 kiyohara uint32_t ld[0];
144 1.1 kiyohara struct {
145 1.1 kiyohara COMMON_HDR(, , tcode, );
146 1.1 kiyohara } common;
147 1.1 kiyohara struct {
148 1.1 kiyohara COMMON_HDR(len, chtag, tcode, sy);
149 1.1 kiyohara uint32_t payload[0];
150 1.1 kiyohara } stream;
151 1.1 kiyohara struct {
152 1.1 kiyohara COMMON_HDR(dst, tlrt, tcode, pri);
153 1.1 kiyohara BIT16x2(src, );
154 1.1 kiyohara } hdr;
155 1.1 kiyohara struct {
156 1.1 kiyohara COMMON_HDR(dst, tlrt, tcode, pri);
157 1.1 kiyohara BIT16x2(src, dest_hi);
158 1.1 kiyohara uint32_t dest_lo;
159 1.1 kiyohara } rreqq;
160 1.1 kiyohara struct {
161 1.1 kiyohara COMMON_HDR(dst, tlrt, tcode, pri);
162 1.1 kiyohara COMMON_RES(src, rtcode, , );
163 1.1 kiyohara uint32_t :32;
164 1.1 kiyohara } wres;
165 1.1 kiyohara struct {
166 1.1 kiyohara COMMON_HDR(dst, tlrt, tcode, pri);
167 1.1 kiyohara BIT16x2(src, dest_hi);
168 1.1 kiyohara uint32_t dest_lo;
169 1.1 kiyohara BIT16x2(len, extcode);
170 1.1 kiyohara } rreqb;
171 1.1 kiyohara struct {
172 1.1 kiyohara COMMON_HDR(dst, tlrt, tcode, pri);
173 1.1 kiyohara BIT16x2(src, dest_hi);
174 1.1 kiyohara uint32_t dest_lo;
175 1.1 kiyohara uint32_t data;
176 1.1 kiyohara } wreqq;
177 1.1 kiyohara struct {
178 1.1 kiyohara COMMON_HDR(dst, tlrt, tcode, pri);
179 1.1 kiyohara BIT16x2(src, dest_hi);
180 1.1 kiyohara uint32_t dest_lo;
181 1.1 kiyohara uint32_t data;
182 1.1 kiyohara } cyc;
183 1.1 kiyohara struct {
184 1.1 kiyohara COMMON_HDR(dst, tlrt, tcode, pri);
185 1.1 kiyohara COMMON_RES(src, rtcode, , );
186 1.1 kiyohara uint32_t :32;
187 1.1 kiyohara uint32_t data;
188 1.1 kiyohara } rresq;
189 1.1 kiyohara struct {
190 1.1 kiyohara COMMON_HDR(dst, tlrt, tcode, pri);
191 1.1 kiyohara BIT16x2(src, dest_hi);
192 1.1 kiyohara uint32_t dest_lo;
193 1.1 kiyohara BIT16x2(len, extcode);
194 1.1 kiyohara uint32_t payload[0];
195 1.1 kiyohara } wreqb;
196 1.1 kiyohara struct {
197 1.1 kiyohara COMMON_HDR(dst, tlrt, tcode, pri);
198 1.1 kiyohara BIT16x2(src, dest_hi);
199 1.1 kiyohara uint32_t dest_lo;
200 1.1 kiyohara BIT16x2(len, extcode);
201 1.1 kiyohara uint32_t payload[0];
202 1.1 kiyohara } lreq;
203 1.1 kiyohara struct {
204 1.1 kiyohara COMMON_HDR(dst, tlrt, tcode, pri);
205 1.1 kiyohara COMMON_RES(src, rtcode, , );
206 1.1 kiyohara uint32_t :32;
207 1.1 kiyohara BIT16x2(len, extcode);
208 1.1 kiyohara uint32_t payload[0];
209 1.1 kiyohara } rresb;
210 1.1 kiyohara struct {
211 1.1 kiyohara COMMON_HDR(dst, tlrt, tcode, pri);
212 1.1 kiyohara COMMON_RES(src, rtcode, , );
213 1.1 kiyohara uint32_t :32;
214 1.1 kiyohara BIT16x2(len, extcode);
215 1.1 kiyohara uint32_t payload[0];
216 1.1 kiyohara } lres;
217 1.1 kiyohara } mode;
218 1.1 kiyohara };
219 1.1 kiyohara
220 1.1 kiyohara /*
221 1.1 kiyohara * Response code (rtcode)
222 1.1 kiyohara */
223 1.1 kiyohara /* The node has successfully completed the command. */
224 1.1 kiyohara #define RESP_CMP 0
225 1.1 kiyohara /* A resource conflict was detected. The request may be retried. */
226 1.1 kiyohara #define RESP_CONFLICT_ERROR 4
227 1.1 kiyohara /* Hardware error, data is unavailable. */
228 1.1 kiyohara #define RESP_DATA_ERROR 5
229 1.1 kiyohara /* A field in the request packet header was set to an unsupported or incorrect
230 1.1 kiyohara * value, or an invalid transaction was attempted (e.g., a write to a read-only
231 1.1 kiyohara * address). */
232 1.1 kiyohara #define RESP_TYPE_ERROR 6
233 1.1 kiyohara /* The destination offset field in the request was set to an address not
234 1.1 kiyohara * accessible in the destination node. */
235 1.1 kiyohara #define RESP_ADDRESS_ERROR 7
236 1.1 kiyohara
237 1.1 kiyohara /*
238 1.1 kiyohara * Extended transaction code (extcode)
239 1.1 kiyohara */
240 1.1 kiyohara #define EXTCODE_MASK_SWAP 1
241 1.1 kiyohara #define EXTCODE_CMP_SWAP 2
242 1.1 kiyohara #define EXTCODE_FETCH_ADD 3
243 1.1 kiyohara #define EXTCODE_LITTLE_ADD 4
244 1.1 kiyohara #define EXTCODE_BOUNDED_ADD 5
245 1.1 kiyohara #define EXTCODE_WRAP_ADD 6
246 1.1 kiyohara
247 1.1 kiyohara struct fw_eui64 {
248 1.1 kiyohara uint32_t hi, lo;
249 1.1 kiyohara };
250 1.1 kiyohara #define FW_EUI64_BYTE(eui, x) \
251 1.1 kiyohara ((((x)<4)? \
252 1.1 kiyohara ((eui)->hi >> (8*(3-(x)))): \
253 1.1 kiyohara ((eui)->lo >> (8*(7-(x)))) \
254 1.1 kiyohara ) & 0xff)
255 1.1 kiyohara #define FW_EUI64_EQUAL(x, y) \
256 1.1 kiyohara ((x).hi == (y).hi && (x).lo == (y).lo)
257 1.1 kiyohara
258 1.1 kiyohara struct fw_asyreq {
259 1.1 kiyohara struct fw_asyreq_t{
260 1.1 kiyohara unsigned char sped;
261 1.1 kiyohara unsigned int type;
262 1.1 kiyohara #define FWASREQNODE 0
263 1.1 kiyohara #define FWASREQEUI 1
264 1.1 kiyohara #define FWASRESTL 2
265 1.1 kiyohara #define FWASREQSTREAM 3
266 1.1 kiyohara unsigned short len;
267 1.1 kiyohara union {
268 1.1 kiyohara struct fw_eui64 eui;
269 1.1 kiyohara }dst;
270 1.1 kiyohara }req;
271 1.1 kiyohara struct fw_pkt pkt;
272 1.1 kiyohara uint32_t data[512];
273 1.1 kiyohara };
274 1.1 kiyohara
275 1.1 kiyohara struct fw_devinfo {
276 1.1 kiyohara struct fw_eui64 eui;
277 1.1 kiyohara uint16_t dst;
278 1.1 kiyohara uint16_t status;
279 1.1 kiyohara };
280 1.1 kiyohara
281 1.1 kiyohara #define FW_MAX_DEVLST 70
282 1.1 kiyohara struct fw_devlstreq {
283 1.1 kiyohara uint16_t n;
284 1.1 kiyohara uint16_t info_len;
285 1.1 kiyohara struct fw_devinfo dev[FW_MAX_DEVLST];
286 1.1 kiyohara };
287 1.1 kiyohara
288 1.5 kiyohara /*
289 1.5 kiyohara * Defined in IEEE 1394a-2000
290 1.5 kiyohara * 4.3.4.1
291 1.5 kiyohara */
292 1.1 kiyohara #define FW_SELF_ID_PORT_CONNECTED_TO_CHILD 3
293 1.1 kiyohara #define FW_SELF_ID_PORT_CONNECTED_TO_PARENT 2
294 1.1 kiyohara #define FW_SELF_ID_PORT_NOT_CONNECTED 1
295 1.1 kiyohara #define FW_SELF_ID_PORT_NOT_EXISTS 0
296 1.5 kiyohara
297 1.5 kiyohara #define FW_SELF_ID_PAGE0 0
298 1.5 kiyohara #define FW_SELF_ID_PAGE1 1
299 1.5 kiyohara
300 1.1 kiyohara #if BYTE_ORDER == BIG_ENDIAN
301 1.1 kiyohara union fw_self_id {
302 1.1 kiyohara struct {
303 1.1 kiyohara uint32_t id:2,
304 1.1 kiyohara phy_id:6,
305 1.1 kiyohara sequel:1,
306 1.1 kiyohara link_active:1,
307 1.1 kiyohara gap_count:6,
308 1.1 kiyohara phy_speed:2,
309 1.5 kiyohara reserved:2,
310 1.1 kiyohara contender:1,
311 1.1 kiyohara power_class:3,
312 1.1 kiyohara port0:2,
313 1.1 kiyohara port1:2,
314 1.1 kiyohara port2:2,
315 1.1 kiyohara initiated_reset:1,
316 1.1 kiyohara more_packets:1;
317 1.1 kiyohara } p0;
318 1.1 kiyohara struct {
319 1.1 kiyohara uint32_t
320 1.1 kiyohara id:2,
321 1.1 kiyohara phy_id:6,
322 1.1 kiyohara sequel:1,
323 1.1 kiyohara sequence_num:3,
324 1.5 kiyohara reserved2:2,
325 1.5 kiyohara port3:2,
326 1.5 kiyohara port4:2,
327 1.5 kiyohara port5:2,
328 1.5 kiyohara port6:2,
329 1.5 kiyohara port7:2,
330 1.5 kiyohara port8:2,
331 1.5 kiyohara port9:2,
332 1.5 kiyohara port10:2,
333 1.5 kiyohara reserved1:1,
334 1.1 kiyohara more_packets:1;
335 1.1 kiyohara } p1;
336 1.5 kiyohara struct {
337 1.5 kiyohara uint32_t
338 1.5 kiyohara id:2,
339 1.5 kiyohara phy_id:6,
340 1.5 kiyohara sequel:1,
341 1.5 kiyohara sequence_num:3,
342 1.5 kiyohara :2,
343 1.5 kiyohara port11:2,
344 1.5 kiyohara port12:2,
345 1.5 kiyohara port13:2,
346 1.5 kiyohara port14:2,
347 1.5 kiyohara port15:2,
348 1.5 kiyohara :8;
349 1.5 kiyohara } p2;
350 1.1 kiyohara };
351 1.1 kiyohara #else
352 1.1 kiyohara union fw_self_id {
353 1.1 kiyohara struct {
354 1.1 kiyohara uint32_t more_packets:1,
355 1.1 kiyohara initiated_reset:1,
356 1.1 kiyohara port2:2,
357 1.1 kiyohara port1:2,
358 1.1 kiyohara port0:2,
359 1.1 kiyohara power_class:3,
360 1.1 kiyohara contender:1,
361 1.5 kiyohara reserved:2,
362 1.1 kiyohara phy_speed:2,
363 1.1 kiyohara gap_count:6,
364 1.1 kiyohara link_active:1,
365 1.1 kiyohara sequel:1,
366 1.1 kiyohara phy_id:6,
367 1.1 kiyohara id:2;
368 1.1 kiyohara } p0;
369 1.1 kiyohara struct {
370 1.1 kiyohara uint32_t more_packets:1,
371 1.1 kiyohara reserved1:1,
372 1.5 kiyohara port10:2,
373 1.5 kiyohara port9:2,
374 1.5 kiyohara port8:2,
375 1.5 kiyohara port7:2,
376 1.5 kiyohara port6:2,
377 1.5 kiyohara port5:2,
378 1.5 kiyohara port4:2,
379 1.5 kiyohara port3:2,
380 1.1 kiyohara reserved2:2,
381 1.1 kiyohara sequence_num:3,
382 1.1 kiyohara sequel:1,
383 1.1 kiyohara phy_id:6,
384 1.1 kiyohara id:2;
385 1.1 kiyohara } p1;
386 1.5 kiyohara struct {
387 1.5 kiyohara uint32_t
388 1.5 kiyohara reserved3:8,
389 1.5 kiyohara port15:2,
390 1.5 kiyohara port14:2,
391 1.5 kiyohara port13:2,
392 1.5 kiyohara port12:2,
393 1.5 kiyohara port11:2,
394 1.5 kiyohara reserved4:2,
395 1.5 kiyohara sequence_num:3,
396 1.5 kiyohara sequel:1,
397 1.5 kiyohara phy_id:6,
398 1.5 kiyohara id:2;
399 1.5 kiyohara } p2;
400 1.1 kiyohara };
401 1.1 kiyohara #endif
402 1.1 kiyohara
403 1.1 kiyohara
404 1.1 kiyohara struct fw_topology_map {
405 1.1 kiyohara uint32_t crc:16,
406 1.1 kiyohara crc_len:16;
407 1.1 kiyohara uint32_t generation;
408 1.1 kiyohara uint32_t self_id_count:16,
409 1.1 kiyohara node_count:16;
410 1.1 kiyohara union fw_self_id self_id[4*64];
411 1.1 kiyohara };
412 1.1 kiyohara
413 1.1 kiyohara struct fw_speed_map {
414 1.1 kiyohara uint32_t crc:16,
415 1.1 kiyohara crc_len:16;
416 1.1 kiyohara uint32_t generation;
417 1.1 kiyohara uint8_t speed[64][64];
418 1.1 kiyohara };
419 1.1 kiyohara
420 1.1 kiyohara struct fw_crom_buf {
421 1.1 kiyohara struct fw_eui64 eui;
422 1.3 jdolecek uint32_t len;
423 1.1 kiyohara void *ptr;
424 1.1 kiyohara };
425 1.1 kiyohara
426 1.1 kiyohara /*
427 1.1 kiyohara * FireWire specific system requests.
428 1.1 kiyohara */
429 1.1 kiyohara #define FW_SSTBUF _IOWR('S', 86, struct fw_isobufreq)
430 1.1 kiyohara #define FW_GSTBUF _IOWR('S', 87, struct fw_isobufreq)
431 1.1 kiyohara #define FW_SRSTREAM _IOWR('S', 88, struct fw_isochreq)
432 1.1 kiyohara #define FW_GRSTREAM _IOWR('S', 89, struct fw_isochreq)
433 1.1 kiyohara #define FW_STSTREAM _IOWR('S', 90, struct fw_isochreq)
434 1.1 kiyohara #define FW_GTSTREAM _IOWR('S', 91, struct fw_isochreq)
435 1.1 kiyohara
436 1.1 kiyohara #define FW_ASYREQ _IOWR('S', 92, struct fw_asyreq)
437 1.1 kiyohara #define FW_IBUSRST _IOR('S', 1, unsigned int)
438 1.1 kiyohara #define FW_GDEVLST _IOWR('S', 2, struct fw_devlstreq)
439 1.1 kiyohara #define FW_SBINDADDR _IOWR('S', 3, struct fw_asybindreq)
440 1.1 kiyohara #define FW_CBINDADDR _IOWR('S', 4, struct fw_asybindreq)
441 1.1 kiyohara #define FW_GTPMAP _IOR('S', 5, struct fw_topology_map)
442 1.1 kiyohara #define FW_GCROM _IOWR('S', 7, struct fw_crom_buf)
443 1.1 kiyohara
444 1.1 kiyohara #define FW_SDEUI64 _IOW('S', 20, struct fw_eui64)
445 1.1 kiyohara #define FW_GDEUI64 _IOR('S', 21, struct fw_eui64)
446 1.1 kiyohara
447 1.1 kiyohara #define FWOHCI_RDREG _IOWR('S', 80, struct fw_reg_req_t)
448 1.1 kiyohara #define FWOHCI_WRREG _IOWR('S', 81, struct fw_reg_req_t)
449 1.1 kiyohara #define FWOHCI_RDPHYREG _IOWR('S', 82, struct fw_reg_req_t)
450 1.1 kiyohara #define FWOHCI_WRPHYREG _IOWR('S', 83, struct fw_reg_req_t)
451 1.1 kiyohara
452 1.1 kiyohara #define DUMPDMA _IOWR('S', 82, uint32_t)
453 1.1 kiyohara
454 1.1 kiyohara #ifdef _KERNEL
455 1.1 kiyohara
456 1.1 kiyohara #define FWMAXNDMA 0x100 /* 8 bits DMA channel id. in device No. */
457 1.1 kiyohara
458 1.5 kiyohara #define unit2minor(x) (((x) & 0xff) | (((x) << 12) & ~0xfffff))
459 1.5 kiyohara #define MAKEMINOR(f, u, s) ((f) | (((u) & 0xff) << 8) | ((s) & 0xff))
460 1.5 kiyohara #define DEV2UNIT(x) ((minor(x) & 0xff00) >> 8)
461 1.5 kiyohara #define DEV2SUB(x) (minor(x) & 0xff)
462 1.1 kiyohara #define FW_UNITMASK MAKEMINOR(0, -1, 0)
463 1.1 kiyohara #define FW_UNIT(unit) MAKEMINOR(0, unit, 0)
464 1.1 kiyohara
465 1.1 kiyohara #define FWMEM_FLAG 0x10000
466 1.5 kiyohara #define DEV_FWMEM(x) (minor(x) & FWMEM_FLAG)
467 1.1 kiyohara
468 1.1 kiyohara struct fw_attach_args {
469 1.1 kiyohara const char *name;
470 1.1 kiyohara struct firewire_comm *fc;
471 1.1 kiyohara struct fw_device *fwdev;
472 1.1 kiyohara };
473 1.1 kiyohara
474 1.1 kiyohara #endif
475 1.5 kiyohara #endif /* _FIREWIRE_H_ */
476