ieee1212.c revision 1.9 1 1.9 perry /* $NetBSD: ieee1212.c,v 1.9 2005/02/27 00:27:49 perry Exp $ */
2 1.1 jmc
3 1.1 jmc /*
4 1.1 jmc * Copyright (c) 2000 The NetBSD Foundation, Inc.
5 1.1 jmc * All rights reserved.
6 1.1 jmc *
7 1.1 jmc * This code is derived from software contributed to The NetBSD Foundation
8 1.1 jmc * by James Chacon.
9 1.1 jmc *
10 1.1 jmc * Redistribution and use in source and binary forms, with or without
11 1.1 jmc * modification, are permitted provided that the following conditions
12 1.1 jmc * are met:
13 1.1 jmc * 1. Redistributions of source code must retain the above copyright
14 1.1 jmc * notice, this list of conditions and the following disclaimer.
15 1.1 jmc * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 jmc * notice, this list of conditions and the following disclaimer in the
17 1.1 jmc * documentation and/or other materials provided with the distribution.
18 1.1 jmc * 3. All advertising materials mentioning features or use of this software
19 1.1 jmc * must display the following acknowledgement:
20 1.1 jmc * This product includes software developed by the NetBSD
21 1.1 jmc * Foundation, Inc. and its contributors.
22 1.1 jmc * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 jmc * contributors may be used to endorse or promote products derived
24 1.1 jmc * from this software without specific prior written permission.
25 1.1 jmc *
26 1.1 jmc * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 jmc * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 jmc * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 jmc * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 jmc * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 jmc * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 jmc * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 jmc * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 jmc * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 jmc * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 jmc * POSSIBILITY OF SUCH DAMAGE.
37 1.1 jmc */
38 1.6 lukem
39 1.6 lukem #include <sys/cdefs.h>
40 1.9 perry __KERNEL_RCSID(0, "$NetBSD: ieee1212.c,v 1.9 2005/02/27 00:27:49 perry Exp $");
41 1.1 jmc
42 1.1 jmc #include <sys/param.h>
43 1.1 jmc #include <sys/systm.h>
44 1.1 jmc #include <sys/device.h>
45 1.1 jmc #include <sys/kernel.h>
46 1.1 jmc #include <sys/malloc.h>
47 1.1 jmc
48 1.1 jmc #include <dev/std/ieee1212reg.h>
49 1.1 jmc #include <dev/std/ieee1212var.h>
50 1.1 jmc
51 1.1 jmc static const char * const p1212_keytype_strings[] = P1212_KEYTYPE_STRINGS ;
52 1.9 perry static const char * const p1212_keyvalue_strings[] = P1212_KEYVALUE_STRINGS ;
53 1.1 jmc
54 1.1 jmc static u_int16_t p1212_calc_crc(u_int32_t, u_int32_t *, int, int);
55 1.1 jmc static int p1212_parse_directory(struct p1212_dir *, u_int32_t *, u_int32_t);
56 1.1 jmc static struct p1212_leafdata *p1212_parse_leaf(u_int32_t *);
57 1.1 jmc static int p1212_parse_textdir(struct p1212_com *, u_int32_t *);
58 1.1 jmc static struct p1212_textdata *p1212_parse_text_desc(u_int32_t *);
59 1.1 jmc static void p1212_print_node(struct p1212_key *, void *);
60 1.1 jmc static int p1212_validate_offset(u_int16_t, u_int32_t);
61 1.1 jmc static int p1212_validate_immed(u_int16_t, u_int32_t);
62 1.1 jmc static int p1212_validate_leaf(u_int16_t, u_int32_t);
63 1.1 jmc static int p1212_validate_dir(u_int16_t, u_int32_t);
64 1.1 jmc
65 1.1 jmc #ifdef P1212_DEBUG
66 1.1 jmc #define DPRINTF(x) if (p1212debug) printf x
67 1.1 jmc #define DPRINTFN(n,x) if (p1212debug>(n)) printf x
68 1.1 jmc int p1212debug = 1;
69 1.1 jmc #else
70 1.1 jmc #define DPRINTF(x)
71 1.1 jmc #define DPRINTFN(n,x)
72 1.1 jmc #endif
73 1.1 jmc
74 1.1 jmc /*
75 1.1 jmc * Routines to parse the ROM into a tree that's usable. Also verify integrity
76 1.1 jmc * vs. the P1212 standard
77 1.1 jmc */
78 1.1 jmc
79 1.1 jmc /*
80 1.1 jmc * A buffer of u_int32_t's and a size in quads gets passed in. The output will
81 1.1 jmc * return -1 on error, or 0 on success and possibly reset *size to a larger
82 1.1 jmc * value.
83 1.1 jmc *
84 1.5 wiz * NOTE: Rom's are guaranteed per the ISO spec to be contiguous but only the
85 1.1 jmc * first 1k is directly mapped. Anything past 1k is supposed to use a loop
86 1.1 jmc * around the indirect registers to read in the rom. This code only assumes the
87 1.1 jmc * buffer passed in represents a total rom regardless of end size. It is the
88 1.1 jmc * callers responsibility to treat a size > 1024 as a special case.
89 1.1 jmc */
90 1.1 jmc
91 1.1 jmc int
92 1.1 jmc p1212_iscomplete(u_int32_t *t, u_int32_t *size)
93 1.1 jmc {
94 1.9 perry u_int16_t infolen, crclen, len;
95 1.1 jmc u_int32_t newlen, offset, test;
96 1.1 jmc int complete, i, numdirs, type, val, *dirs;
97 1.1 jmc
98 1.1 jmc dirs = NULL;
99 1.1 jmc
100 1.1 jmc if (*size == 0) {
101 1.1 jmc DPRINTF(("Invalid size for ROM: %d\n", (unsigned int)*size));
102 1.1 jmc return -1;
103 1.1 jmc }
104 1.1 jmc
105 1.1 jmc infolen = P1212_ROMFMT_GET_INFOLEN((ntohl(t[0])));
106 1.1 jmc if (infolen <= 1) {
107 1.1 jmc DPRINTF(("ROM not initialized or minimal ROM: Info "
108 1.1 jmc "length: %d\n", infolen));
109 1.1 jmc return -1;
110 1.1 jmc }
111 1.1 jmc crclen = P1212_ROMFMT_GET_CRCLEN((ntohl(t[0])));
112 1.1 jmc if (crclen < infolen) {
113 1.1 jmc DPRINTF(("CRC len less than info len. CRC len: %d, "
114 1.1 jmc "Info len: %d\n", crclen, infolen));
115 1.1 jmc return -1;
116 1.1 jmc }
117 1.9 perry
118 1.1 jmc /*
119 1.1 jmc * Now loop through it to check if all the offsets referenced are
120 1.1 jmc * within the image stored so far. If not, get those as well.
121 1.1 jmc */
122 1.9 perry
123 1.1 jmc offset = P1212_ROMFMT_GET_INFOLEN((ntohl(t[0]))) + 1;
124 1.1 jmc
125 1.1 jmc /*
126 1.1 jmc * Make sure at least the bus info block is in memory + the root dir
127 1.1 jmc * header quad. Add 1 here since offset is an array offset and size is
128 1.1 jmc * the total array size we want. If this is getting the root dir
129 1.1 jmc * then add another since infolen doesn't end on the root dir entry but
130 1.1 jmc * right before it.
131 1.1 jmc */
132 1.9 perry
133 1.1 jmc if ((*size == 1) || (*size < (offset + 1))) {
134 1.1 jmc *size = (crclen > infolen) ? crclen : infolen;
135 1.1 jmc if (crclen == infolen)
136 1.1 jmc (*size)++;
137 1.1 jmc (*size)++;
138 1.1 jmc return 0;
139 1.1 jmc }
140 1.1 jmc
141 1.1 jmc complete = 0;
142 1.1 jmc numdirs = 0;
143 1.1 jmc newlen = 0;
144 1.9 perry
145 1.1 jmc while (!complete) {
146 1.9 perry
147 1.1 jmc /*
148 1.1 jmc * Make sure the whole directory is in memory. If not, bail now
149 1.1 jmc * and read it in.
150 1.1 jmc */
151 1.1 jmc
152 1.1 jmc newlen = P1212_DIRENT_GET_LEN((ntohl(t[offset])));
153 1.1 jmc if ((offset + newlen + 1) > *size) {
154 1.1 jmc newlen += offset + 1;
155 1.1 jmc break;
156 1.1 jmc }
157 1.9 perry
158 1.1 jmc if (newlen == 0) {
159 1.1 jmc DPRINTF(("Impossible directory length of 0!\n"));
160 1.1 jmc return -1;
161 1.1 jmc }
162 1.1 jmc
163 1.1 jmc /*
164 1.1 jmc * Starting with the first byte of the directory, read through
165 1.1 jmc * and check the values found. On offsets and directories read
166 1.1 jmc * them in if appropriate (always for offsets, if not in memory
167 1.1 jmc * for leaf/directories).
168 1.1 jmc */
169 1.1 jmc
170 1.1 jmc offset++;
171 1.1 jmc len = newlen;
172 1.1 jmc newlen = 0;
173 1.1 jmc for (i = 0; i < len; i++) {
174 1.2 jmc type = P1212_DIRENT_GET_KEYTYPE((ntohl(t[offset+i])));
175 1.2 jmc val = P1212_DIRENT_GET_VALUE((ntohl(t[offset+i])));
176 1.1 jmc switch (type) {
177 1.1 jmc case P1212_KEYTYPE_Immediate:
178 1.1 jmc case P1212_KEYTYPE_Offset:
179 1.1 jmc break;
180 1.1 jmc case P1212_KEYTYPE_Leaf:
181 1.9 perry
182 1.1 jmc /*
183 1.1 jmc * If a leaf is found, and it's beyond the
184 1.1 jmc * current rom length and it's beyond the
185 1.1 jmc * current newlen setting,
186 1.1 jmc * then set newlen accordingly.
187 1.1 jmc */
188 1.9 perry
189 1.1 jmc test = offset + i + val + 1;
190 1.1 jmc if ((test > *size) && (test > newlen)) {
191 1.1 jmc newlen = test;
192 1.1 jmc break;
193 1.1 jmc }
194 1.9 perry
195 1.1 jmc /*
196 1.1 jmc * For leaf nodes just make sure the whole leaf
197 1.1 jmc * length is in the buffer. There's no data
198 1.1 jmc * inside of them that can refer to outside
199 1.1 jmc * nodes. (Uless it's vendor specific and then
200 1.1 jmc * you're on your own anyways).
201 1.1 jmc */
202 1.1 jmc
203 1.1 jmc test--;
204 1.9 perry infolen =
205 1.2 jmc P1212_DIRENT_GET_LEN((ntohl(t[test])));
206 1.1 jmc test++;
207 1.1 jmc test += infolen;
208 1.1 jmc if ((test > *size) && (test > newlen)) {
209 1.1 jmc newlen = test;
210 1.1 jmc }
211 1.1 jmc break;
212 1.9 perry
213 1.1 jmc case P1212_KEYTYPE_Directory:
214 1.9 perry
215 1.1 jmc /* Make sure the first quad is in memory. */
216 1.9 perry
217 1.1 jmc test = offset + i + val + 1;
218 1.1 jmc if ((test > *size) && (test > newlen)) {
219 1.1 jmc newlen = test;
220 1.1 jmc break;
221 1.1 jmc }
222 1.9 perry
223 1.1 jmc /*
224 1.9 perry * Can't just walk the ROM looking at type
225 1.9 perry * codes since these are only valid on
226 1.2 jmc * directory entries. So save any directories
227 1.1 jmc * we find into a queue and the bottom of the
228 1.9 perry * while loop will pop the last one off and
229 1.2 jmc * walk that directory.
230 1.1 jmc */
231 1.9 perry
232 1.1 jmc test--;
233 1.1 jmc dirs = realloc(dirs,
234 1.1 jmc sizeof(int) * (numdirs + 1), M_DEVBUF,
235 1.1 jmc M_WAITOK);
236 1.1 jmc dirs[numdirs++] = test;
237 1.1 jmc break;
238 1.1 jmc default:
239 1.1 jmc panic("Impossible type code: 0x%04hx",
240 1.1 jmc (unsigned short)type);
241 1.1 jmc break;
242 1.1 jmc }
243 1.1 jmc }
244 1.9 perry
245 1.1 jmc if (newlen) {
246 1.1 jmc /* Cleanup. */
247 1.9 perry if (dirs)
248 1.1 jmc free(dirs, M_DEVBUF);
249 1.1 jmc break;
250 1.1 jmc }
251 1.1 jmc if (dirs) {
252 1.1 jmc offset = dirs[--numdirs];
253 1.1 jmc dirs = realloc(dirs, sizeof(int) * numdirs, M_DEVBUF,
254 1.1 jmc M_WAITOK);
255 1.1 jmc } else
256 1.1 jmc complete = 1;
257 1.1 jmc }
258 1.9 perry
259 1.1 jmc if (newlen)
260 1.1 jmc *size = newlen;
261 1.1 jmc return 0;
262 1.9 perry
263 1.1 jmc }
264 1.1 jmc
265 1.1 jmc struct p1212_rom *
266 1.1 jmc p1212_parse(u_int32_t *t, u_int32_t size, u_int32_t mask)
267 1.1 jmc {
268 1.1 jmc
269 1.1 jmc u_int16_t crc, romcrc, crc1;
270 1.1 jmc u_int32_t next, check;
271 1.1 jmc struct p1212_rom *rom;
272 1.1 jmc int i;
273 1.9 perry
274 1.1 jmc check = size;
275 1.1 jmc
276 1.1 jmc if (p1212_iscomplete(t, &check) == -1) {
277 1.1 jmc DPRINTF(("ROM is not complete\n"));
278 1.1 jmc return NULL;
279 1.1 jmc }
280 1.1 jmc if (check != size) {
281 1.1 jmc DPRINTF(("ROM is not complete (check != size)\n"));
282 1.1 jmc return NULL;
283 1.1 jmc }
284 1.1 jmc
285 1.1 jmc /* Calculate both a good and known bad crc. */
286 1.9 perry
287 1.1 jmc /* CRC's are calculated from everything except the first quad. */
288 1.9 perry
289 1.9 perry crc = p1212_calc_crc(0, &t[1], P1212_ROMFMT_GET_CRCLEN((ntohl(t[0]))),
290 1.1 jmc 0);
291 1.9 perry
292 1.1 jmc romcrc = P1212_ROMFMT_GET_CRC((ntohl(t[0])));
293 1.1 jmc if (crc != romcrc) {
294 1.1 jmc crc1 = p1212_calc_crc(0, &t[1],
295 1.1 jmc P1212_ROMFMT_GET_CRCLEN((ntohl(t[0]))), 1);
296 1.1 jmc if (crc1 != romcrc) {
297 1.1 jmc DPRINTF(("Invalid ROM: CRC: 0x%04hx, Calculated "
298 1.1 jmc "CRC: 0x%04hx, CRC1: 0x%04hx\n",
299 1.1 jmc (unsigned short)romcrc, (unsigned short)crc,
300 1.1 jmc (unsigned short)crc1));
301 1.1 jmc return NULL;
302 1.1 jmc }
303 1.1 jmc }
304 1.1 jmc
305 1.1 jmc /* Now, walk the ROM. */
306 1.9 perry
307 1.1 jmc /* Get the initial offset for the root dir. */
308 1.9 perry
309 1.9 perry rom = malloc(sizeof(struct p1212_rom), M_DEVBUF, M_WAITOK);
310 1.1 jmc rom->len = P1212_ROMFMT_GET_INFOLEN((ntohl(t[0])));
311 1.1 jmc next = rom->len + 1;
312 1.1 jmc
313 1.1 jmc if ((rom->len < 1) || (rom->len > size)) {
314 1.1 jmc DPRINTF(("Invalid ROM info length: %d\n", rom->len));
315 1.1 jmc free(rom, M_DEVBUF);
316 1.1 jmc return NULL;
317 1.1 jmc }
318 1.9 perry
319 1.1 jmc /* Exclude the quad which covers the bus name. */
320 1.1 jmc rom->len--;
321 1.1 jmc
322 1.1 jmc if (rom->len) {
323 1.1 jmc rom->data = malloc(sizeof(u_int32_t) * rom->len, M_DEVBUF,
324 1.1 jmc M_WAITOK);
325 1.2 jmc /* Add 2 to account for info/crc and bus name skipped. */
326 1.1 jmc for (i = 0; i < rom->len; i++)
327 1.1 jmc rom->data[i] = t[i + 2];
328 1.1 jmc }
329 1.1 jmc
330 1.1 jmc /* The name field is always 4 bytes and always the 2nd field. */
331 1.1 jmc strncpy(rom->name, (char *)&t[1], 4);
332 1.1 jmc rom->name[4] = 0;
333 1.9 perry
334 1.1 jmc /*
335 1.1 jmc * Fill out the root directory. All these values are hardcoded so the
336 1.1 jmc * parse/print/match routines have a standard layout to work against.
337 1.1 jmc */
338 1.9 perry
339 1.2 jmc rom->root = malloc(sizeof(*rom->root), M_DEVBUF, M_WAITOK|M_ZERO);
340 1.1 jmc rom->root->com.key.key_type = P1212_KEYTYPE_Directory;
341 1.1 jmc rom->root->com.key.key_value = 0;
342 1.1 jmc rom->root->com.key.key = (u_int8_t)P1212_KEYTYPE_Directory;
343 1.1 jmc rom->root->com.key.val = 0;
344 1.1 jmc TAILQ_INIT(&rom->root->data_root);
345 1.1 jmc TAILQ_INIT(&rom->root->subdir_root);
346 1.9 perry
347 1.1 jmc if (p1212_parse_directory(rom->root, &t[next], mask)) {
348 1.1 jmc DPRINTF(("Parse error in ROM. Bailing\n"));
349 1.1 jmc p1212_free(rom);
350 1.1 jmc return NULL;
351 1.1 jmc }
352 1.1 jmc return rom;
353 1.1 jmc }
354 1.1 jmc
355 1.1 jmc static int
356 1.1 jmc p1212_parse_directory(struct p1212_dir *root, u_int32_t *addr, u_int32_t mask)
357 1.1 jmc {
358 1.1 jmc struct p1212_dir *dir, *sdir;
359 1.1 jmc struct p1212_data *data;
360 1.1 jmc struct p1212_com *com;
361 1.1 jmc u_int32_t *t, desc;
362 1.1 jmc u_int16_t crclen, crc, crc1, romcrc;
363 1.1 jmc u_int8_t type, val;
364 1.1 jmc unsigned long size;
365 1.1 jmc int i, module_vendor_flag, module_sw_flag, node_sw_flag, unit_sw_flag;
366 1.1 jmc int node_capabilities_flag, offset, unit_location_flag, unitdir_cnt;
367 1.1 jmc int leafoff;
368 1.9 perry
369 1.1 jmc t = addr;
370 1.1 jmc dir = root;
371 1.1 jmc
372 1.1 jmc module_vendor_flag = 0;
373 1.1 jmc module_sw_flag = 0;
374 1.1 jmc node_sw_flag = 0;
375 1.1 jmc node_capabilities_flag = 0;
376 1.1 jmc unitdir_cnt = 0;
377 1.1 jmc offset = 0;
378 1.1 jmc
379 1.9 perry while (dir) {
380 1.1 jmc dir->match = 0;
381 1.1 jmc crclen = P1212_DIRENT_GET_LEN((ntohl(t[offset])));
382 1.1 jmc romcrc = P1212_DIRENT_GET_CRC((ntohl(t[offset])));
383 1.9 perry
384 1.1 jmc crc = p1212_calc_crc(0, &t[offset + 1], crclen, 0);
385 1.1 jmc if (crc != romcrc) {
386 1.1 jmc crc1 = p1212_calc_crc(0, &t[offset + 1], crclen, 1);
387 1.1 jmc if (crc1 != romcrc) {
388 1.1 jmc DPRINTF(("Invalid ROM: CRC: 0x%04hx, "
389 1.1 jmc "Calculated CRC: "
390 1.1 jmc "0x%04hx, CRC1: 0x%04hx\n",
391 1.1 jmc (unsigned short)romcrc,
392 1.1 jmc (unsigned short)crc,
393 1.1 jmc (unsigned short)crc1));
394 1.1 jmc return 1;
395 1.1 jmc }
396 1.1 jmc }
397 1.1 jmc com = NULL;
398 1.1 jmc unit_sw_flag = 0;
399 1.1 jmc unit_location_flag = 0;
400 1.1 jmc offset++;
401 1.9 perry
402 1.1 jmc if ((dir->parent == NULL) && dir->com.key.val) {
403 1.1 jmc DPRINTF(("Invalid root dir. key.val is 0x%0x and not"
404 1.1 jmc " 0x0\n", dir->com.key.val));
405 1.1 jmc return 1;
406 1.1 jmc }
407 1.1 jmc
408 1.1 jmc for (i = offset; i < (offset + crclen); i++) {
409 1.1 jmc desc = ntohl(t[i]);
410 1.1 jmc type = P1212_DIRENT_GET_KEYTYPE(desc);
411 1.1 jmc val = P1212_DIRENT_GET_KEYVALUE(desc);
412 1.9 perry
413 1.1 jmc /*
414 1.1 jmc * Sanity check for valid types/locations/etc.
415 1.1 jmc *
416 1.1 jmc * See pages 79-100 of
417 1.2 jmc * ISO/IEC 13213:1194(ANSI/IEEE Std 1212, 1994 edition)
418 1.1 jmc * for specifics.
419 1.1 jmc *
420 1.9 perry * XXX: These all really should be broken out into
421 1.1 jmc * subroutines as it's grown large and complicated
422 1.1 jmc * in certain cases.
423 1.1 jmc */
424 1.1 jmc
425 1.1 jmc switch (val) {
426 1.1 jmc case P1212_KEYVALUE_Unit_Spec_Id:
427 1.1 jmc case P1212_KEYVALUE_Unit_Sw_Version:
428 1.1 jmc case P1212_KEYVALUE_Unit_Dependent_Info:
429 1.1 jmc case P1212_KEYVALUE_Unit_Location:
430 1.1 jmc case P1212_KEYVALUE_Unit_Poll_Mask:
431 1.1 jmc if (dir->parent == NULL) {
432 1.1 jmc DPRINTF(("Invalid ROM: %s is not "
433 1.1 jmc "valid in the root directory.\n",
434 1.1 jmc p1212_keyvalue_strings[val]));
435 1.1 jmc return 1;
436 1.1 jmc }
437 1.1 jmc break;
438 1.1 jmc default:
439 1.1 jmc if (dir->com.key.val ==
440 1.1 jmc P1212_KEYVALUE_Unit_Directory) {
441 1.1 jmc DPRINTF(("Invalid ROM: %s is "
442 1.1 jmc "not valid in a unit directory.\n",
443 1.1 jmc p1212_keyvalue_strings[val]));
444 1.1 jmc return 1;
445 1.1 jmc }
446 1.1 jmc break;
447 1.1 jmc }
448 1.9 perry
449 1.1 jmc switch (type) {
450 1.1 jmc case P1212_KEYTYPE_Immediate:
451 1.1 jmc if (p1212_validate_immed(val, mask)) {
452 1.1 jmc DPRINTF(("Invalid ROM: Can't have an "
453 1.2 jmc "immediate type with %s value. Key"
454 1.2 jmc " used at location 0x%0x in ROM\n",
455 1.1 jmc p1212_keyvalue_strings[val],
456 1.1 jmc (unsigned int)(&t[i]-&addr[0])));
457 1.1 jmc return 1;
458 1.1 jmc }
459 1.1 jmc break;
460 1.1 jmc case P1212_KEYTYPE_Offset:
461 1.1 jmc if (p1212_validate_offset(val, mask)) {
462 1.1 jmc DPRINTF(("Invalid ROM: Can't have "
463 1.1 jmc "an offset type with key %s."
464 1.1 jmc " Used at location 0x%0x in ROM\n",
465 1.1 jmc p1212_keyvalue_strings[val],
466 1.1 jmc (unsigned int)(&t[i]-&addr[0])));
467 1.1 jmc return 1;
468 1.1 jmc }
469 1.1 jmc break;
470 1.1 jmc case P1212_KEYTYPE_Leaf:
471 1.1 jmc if (p1212_validate_leaf(val, mask)) {
472 1.1 jmc DPRINTF(("Invalid ROM: Can't have a "
473 1.1 jmc "leaf type with %s value. Key "
474 1.1 jmc "used at location 0x%0x in ROM\n",
475 1.1 jmc p1212_keyvalue_strings[val],
476 1.1 jmc (unsigned int)(&t[i]-&addr[0])));
477 1.1 jmc return 1;
478 1.1 jmc }
479 1.1 jmc break;
480 1.1 jmc case P1212_KEYTYPE_Directory:
481 1.1 jmc if (p1212_validate_dir(val, mask)) {
482 1.1 jmc DPRINTF(("Invalid ROM: Can't have a "
483 1.2 jmc "directory type with %s value. Key"
484 1.2 jmc " used at location 0x%0x in ROM\n",
485 1.1 jmc p1212_keyvalue_strings[val],
486 1.1 jmc (unsigned int)(&t[i]-&addr[0])));
487 1.1 jmc return 1;
488 1.1 jmc }
489 1.1 jmc break;
490 1.1 jmc default:
491 1.1 jmc panic("Impossible type code: 0x%04hx",
492 1.1 jmc (unsigned short)type);
493 1.1 jmc break;
494 1.1 jmc }
495 1.9 perry
496 1.1 jmc /* Note flags for required fields. */
497 1.1 jmc
498 1.1 jmc if (val == P1212_KEYVALUE_Module_Vendor_Id) {
499 1.1 jmc module_vendor_flag = 1;
500 1.1 jmc }
501 1.1 jmc
502 1.1 jmc if (val == P1212_KEYVALUE_Node_Capabilities) {
503 1.1 jmc node_capabilities_flag = 1;
504 1.1 jmc }
505 1.9 perry
506 1.1 jmc if (val == P1212_KEYVALUE_Unit_Sw_Version)
507 1.1 jmc unit_sw_flag = 1;
508 1.1 jmc
509 1.1 jmc if (val == P1212_KEYVALUE_Unit_Location)
510 1.1 jmc unit_location_flag = 1;
511 1.9 perry
512 1.1 jmc /*
513 1.1 jmc * This is just easier to spell out. You can't have
514 1.1 jmc * a module sw version if you include a node sw version
515 1.1 jmc * and vice-versa. Both aren't allowed if you have unit
516 1.1 jmc * dirs.
517 1.1 jmc */
518 1.1 jmc
519 1.1 jmc if (val == P1212_KEYVALUE_Module_Sw_Version) {
520 1.1 jmc if (node_sw_flag) {
521 1.2 jmc DPRINTF(("Can't have a module software"
522 1.2 jmc " version along with a node "
523 1.1 jmc "software version entry\n"));
524 1.1 jmc return 1;
525 1.1 jmc }
526 1.1 jmc if (unitdir_cnt) {
527 1.1 jmc DPRINTF(("Can't have unit directories "
528 1.1 jmc "with module software version "
529 1.1 jmc "defined.\n"));
530 1.1 jmc return 1;
531 1.1 jmc }
532 1.1 jmc module_sw_flag = 1;
533 1.1 jmc }
534 1.1 jmc
535 1.1 jmc if (val == P1212_KEYVALUE_Node_Sw_Version) {
536 1.1 jmc if (module_sw_flag) {
537 1.1 jmc DPRINTF(("Can't have a node software "
538 1.1 jmc "version along with a module "
539 1.1 jmc "software version entry\n"));
540 1.1 jmc return 1;
541 1.1 jmc }
542 1.1 jmc if (unitdir_cnt) {
543 1.1 jmc DPRINTF(("Can't have unit directories "
544 1.1 jmc "with node software version "
545 1.1 jmc "defined.\n"));
546 1.1 jmc return 1;
547 1.1 jmc }
548 1.1 jmc node_sw_flag = 1;
549 1.1 jmc }
550 1.9 perry
551 1.1 jmc if (val == P1212_KEYVALUE_Unit_Directory) {
552 1.1 jmc if (module_sw_flag || node_sw_flag) {
553 1.1 jmc DPRINTF(("Can't have unit directories "
554 1.1 jmc "with either module or node "
555 1.1 jmc "software version defined.\n"));
556 1.1 jmc return 1;
557 1.1 jmc }
558 1.1 jmc unitdir_cnt++;
559 1.1 jmc }
560 1.9 perry
561 1.1 jmc /*
562 1.1 jmc * Text descriptors are special. They describe the
563 1.1 jmc * last entry they follow. So they need to be included
564 1.1 jmc * with it's struct and there's nothing in the spec
565 1.1 jmc * preventing one from putting text descriptors after
566 1.1 jmc * directory descriptors. Also they can be a single
567 1.1 jmc * value or a list of them in a directory format so
568 1.9 perry * account for either. Finally if they're in a
569 1.9 perry * directory those can be the only types in a
570 1.2 jmc * directory.
571 1.1 jmc */
572 1.1 jmc
573 1.1 jmc if (val == P1212_KEYVALUE_Textual_Descriptor) {
574 1.1 jmc
575 1.1 jmc size = sizeof(struct p1212_textdata *);
576 1.1 jmc leafoff = P1212_DIRENT_GET_VALUE(desc);
577 1.1 jmc leafoff += i;
578 1.1 jmc
579 1.1 jmc if (com == NULL) {
580 1.2 jmc DPRINTF(("Can't have a text descriptor"
581 1.2 jmc " as the first entry in a "
582 1.1 jmc "directory\n"));
583 1.1 jmc return 1;
584 1.1 jmc }
585 1.1 jmc
586 1.1 jmc if (com->textcnt != 0) {
587 1.1 jmc DPRINTF(("Text descriptors can't "
588 1.1 jmc "follow each other in a "
589 1.1 jmc "directory\n"));
590 1.1 jmc return 1;
591 1.1 jmc }
592 1.1 jmc
593 1.1 jmc if (type == P1212_KEYTYPE_Leaf) {
594 1.1 jmc com->text =
595 1.1 jmc malloc(size, M_DEVBUF, M_WAITOK);
596 1.1 jmc com->text[0] =
597 1.1 jmc p1212_parse_text_desc(&t[leafoff]);
598 1.1 jmc if (com->text[0] == NULL) {
599 1.2 jmc DPRINTF(("Got an error parsing"
600 1.2 jmc " text descriptor at "
601 1.2 jmc "offset 0x%0x\n",
602 1.1 jmc &t[leafoff]-&addr[0]));
603 1.1 jmc free(com->text, M_DEVBUF);
604 1.1 jmc return 1;
605 1.1 jmc }
606 1.1 jmc com->textcnt = 1;
607 1.1 jmc } else {
608 1.9 perry i = p1212_parse_textdir(com,
609 1.1 jmc &t[leafoff]);
610 1.1 jmc if (i)
611 1.1 jmc return 1;
612 1.1 jmc }
613 1.1 jmc }
614 1.1 jmc
615 1.1 jmc if ((type != P1212_KEYTYPE_Directory) &&
616 1.1 jmc (val != P1212_KEYVALUE_Textual_Descriptor)) {
617 1.1 jmc data = malloc(sizeof(struct p1212_data),
618 1.1 jmc M_DEVBUF, M_WAITOK|M_ZERO);
619 1.1 jmc data->com.key.key_type = type;
620 1.1 jmc data->com.key.key_value = val;
621 1.1 jmc data->com.key.key =
622 1.1 jmc P1212_DIRENT_GET_KEY((ntohl(t[i])));
623 1.1 jmc data->com.key.val =
624 1.1 jmc P1212_DIRENT_GET_VALUE((ntohl(t[i])));
625 1.1 jmc com = &data->com;
626 1.1 jmc
627 1.9 perry /*
628 1.1 jmc * Don't try and read the offset. It may be
629 1.1 jmc * a register or something special. Generally
630 1.1 jmc * these are node specific so let the upper
631 1.1 jmc * level code figure it out.
632 1.1 jmc */
633 1.1 jmc
634 1.1 jmc if ((type == P1212_KEYTYPE_Immediate) ||
635 1.9 perry (type == P1212_KEYTYPE_Offset))
636 1.1 jmc data->val = data->com.key.val;
637 1.9 perry
638 1.1 jmc data->leafdata = NULL;
639 1.1 jmc TAILQ_INSERT_TAIL(&dir->data_root, data, data);
640 1.9 perry
641 1.1 jmc if (type == P1212_KEYTYPE_Leaf) {
642 1.1 jmc leafoff = i + data->com.key.val;
643 1.1 jmc data->leafdata =
644 1.1 jmc p1212_parse_leaf(&t[leafoff]);
645 1.1 jmc if (data->leafdata == NULL) {
646 1.1 jmc DPRINTF(("Error parsing leaf\n"));
647 1.1 jmc return 1;
648 1.1 jmc }
649 1.1 jmc }
650 1.9 perry }
651 1.1 jmc if (type == P1212_KEYTYPE_Directory) {
652 1.9 perry
653 1.9 perry sdir = malloc(sizeof(struct p1212_dir),
654 1.1 jmc M_DEVBUF, M_WAITOK|M_ZERO);
655 1.1 jmc sdir->parent = dir;
656 1.1 jmc sdir->com.key.key_type = type;
657 1.1 jmc sdir->com.key.key_value = val;
658 1.1 jmc sdir->com.key.key =
659 1.1 jmc P1212_DIRENT_GET_KEY((ntohl(t[i])));
660 1.1 jmc sdir->com.key.val =
661 1.1 jmc P1212_DIRENT_GET_VALUE((ntohl(t[i])));
662 1.1 jmc com = &sdir->com;
663 1.1 jmc sdir->match = sdir->com.key.val + i;
664 1.1 jmc TAILQ_INIT(&sdir->data_root);
665 1.1 jmc TAILQ_INIT(&sdir->subdir_root);
666 1.2 jmc TAILQ_INSERT_TAIL(&dir->subdir_root, sdir,dir);
667 1.1 jmc }
668 1.1 jmc }
669 1.1 jmc
670 1.1 jmc /* More validity checks. */
671 1.1 jmc
672 1.1 jmc if (dir->parent == NULL) {
673 1.1 jmc if (module_vendor_flag == 0) {
674 1.1 jmc DPRINTF(("Missing module vendor entry in root "
675 1.1 jmc "directory.\n"));
676 1.1 jmc return 1;
677 1.1 jmc }
678 1.1 jmc if (node_capabilities_flag == 0) {
679 1.1 jmc DPRINTF(("Missing node capabilities entry in "
680 1.1 jmc "root directory.\n"));
681 1.1 jmc return 1;
682 1.1 jmc }
683 1.1 jmc } else {
684 1.1 jmc if ((unitdir_cnt > 1) && (unit_location_flag == 0)) {
685 1.1 jmc DPRINTF(("Must have a unit location in each "
686 1.1 jmc "unit directory when more than one unit "
687 1.1 jmc "directory exists.\n"));
688 1.1 jmc return 1;
689 1.1 jmc }
690 1.1 jmc }
691 1.1 jmc
692 1.1 jmc /*
693 1.1 jmc * Ok, done with this directory and it's sanity checked. Now
694 1.1 jmc * loop through and either find an unparsed subdir or one
695 1.1 jmc * farther back up the chain.
696 1.1 jmc */
697 1.1 jmc
698 1.1 jmc if (!TAILQ_EMPTY(&dir->subdir_root)) {
699 1.1 jmc sdir = TAILQ_FIRST(&dir->subdir_root);
700 1.1 jmc } else {
701 1.1 jmc do {
702 1.1 jmc sdir = TAILQ_NEXT(dir, dir);
703 1.1 jmc if (sdir == NULL) {
704 1.1 jmc dir = dir->parent;
705 1.1 jmc }
706 1.1 jmc } while ((sdir == NULL) && (dir != NULL));
707 1.1 jmc }
708 1.1 jmc if (dir) {
709 1.1 jmc dir = sdir;
710 1.1 jmc if (!dir->match) {
711 1.1 jmc DPRINTF(("Invalid subdir..Has no offset\n"));
712 1.1 jmc return 1;
713 1.1 jmc }
714 1.1 jmc offset = dir->match;
715 1.1 jmc }
716 1.1 jmc }
717 1.1 jmc return 0;
718 1.1 jmc }
719 1.1 jmc
720 1.1 jmc static struct p1212_leafdata *
721 1.1 jmc p1212_parse_leaf(u_int32_t *t)
722 1.1 jmc {
723 1.1 jmc u_int16_t crclen, crc, crc1, romcrc;
724 1.1 jmc struct p1212_leafdata *leafdata;
725 1.1 jmc int i;
726 1.1 jmc
727 1.1 jmc crclen = P1212_DIRENT_GET_LEN((ntohl(t[0])));
728 1.1 jmc romcrc = P1212_DIRENT_GET_CRC((ntohl(t[0])));
729 1.1 jmc crc = p1212_calc_crc(0, &t[1], crclen, 0);
730 1.1 jmc crc1 = p1212_calc_crc(0,&t[1], crclen, 1);
731 1.1 jmc if ((crc != romcrc) && (crc1 != romcrc)) {
732 1.1 jmc DPRINTF(("Invalid ROM: CRC: 0x%04hx, Calculated CRC: "
733 1.1 jmc "0x%04hx, CRC1: 0x%04hx\n", (unsigned short)romcrc,
734 1.1 jmc (unsigned short)crc, (unsigned short)crc1));
735 1.1 jmc return NULL;
736 1.1 jmc }
737 1.1 jmc t++;
738 1.9 perry
739 1.1 jmc /*
740 1.1 jmc * Most of these are vendor specific so don't bother trying to map them
741 1.1 jmc * out. Anything which needs them later on can extract them.
742 1.1 jmc */
743 1.1 jmc
744 1.1 jmc leafdata = malloc(sizeof(struct p1212_leafdata), M_DEVBUF, M_WAITOK);
745 1.1 jmc leafdata->data = malloc((sizeof(u_int32_t) * crclen), M_DEVBUF,
746 1.1 jmc M_WAITOK);
747 1.1 jmc leafdata->len = crclen;
748 1.1 jmc for (i = 0; i < crclen; i++)
749 1.2 jmc leafdata->data[i] = ntohl(t[i]);
750 1.1 jmc return leafdata;
751 1.1 jmc }
752 1.1 jmc
753 1.1 jmc static int
754 1.1 jmc p1212_parse_textdir(struct p1212_com *com, u_int32_t *addr)
755 1.1 jmc {
756 1.1 jmc u_int32_t *t, entry, new;
757 1.1 jmc u_int16_t crclen, crc, crc1, romcrc;
758 1.1 jmc u_int8_t type, val;
759 1.1 jmc int i, size;
760 1.1 jmc
761 1.1 jmc /*
762 1.1 jmc * A bit more complicated. A directory for a text descriptor can
763 1.1 jmc * contain text descriptor leaf nodes only.
764 1.1 jmc */
765 1.9 perry
766 1.1 jmc com->text = NULL;
767 1.1 jmc size = sizeof(struct p1212_text *);
768 1.7 fvdl t = addr;
769 1.9 perry
770 1.1 jmc crclen = P1212_DIRENT_GET_LEN((ntohl(t[0])));
771 1.1 jmc romcrc = P1212_DIRENT_GET_CRC((ntohl(t[0])));
772 1.1 jmc crc = p1212_calc_crc(0, &t[1], crclen, 0);
773 1.1 jmc crc1 = p1212_calc_crc(0,&t[1], crclen, 1);
774 1.1 jmc if ((crc != romcrc) && (crc1 != romcrc)) {
775 1.1 jmc DPRINTF(("Invalid ROM: CRC: 0x%04hx, Calculated CRC: "
776 1.1 jmc "0x%04hx, CRC1: 0x%04hx\n", (unsigned short)romcrc,
777 1.1 jmc (unsigned short)crc, (unsigned short)crc1));
778 1.1 jmc return 1;
779 1.1 jmc }
780 1.1 jmc t++;
781 1.1 jmc for (i = 0; i < crclen; i++) {
782 1.1 jmc entry = ntohl(t[i]);
783 1.9 perry
784 1.1 jmc type = P1212_DIRENT_GET_KEYTYPE(entry);
785 1.1 jmc val = P1212_DIRENT_GET_KEYVALUE(entry);
786 1.1 jmc if ((type != P1212_KEYTYPE_Leaf) ||
787 1.1 jmc (val != P1212_KEYVALUE_Textual_Descriptor)) {
788 1.1 jmc DPRINTF(("Text descriptor directories can only "
789 1.1 jmc "contain text descriptors. Type: %s, value: %s "
790 1.1 jmc "isn't valid at offset 0x%0x\n",
791 1.1 jmc p1212_keytype_strings[type],
792 1.1 jmc p1212_keyvalue_strings[val], &t[i]-&addr[0]));
793 1.1 jmc return 1;
794 1.1 jmc }
795 1.9 perry
796 1.1 jmc new = P1212_DIRENT_GET_VALUE(entry);
797 1.1 jmc com->text = realloc(com->text, size * (com->textcnt + 1),
798 1.1 jmc M_DEVBUF, M_WAITOK);
799 1.1 jmc if ((com->text[i] = p1212_parse_text_desc(&t[i+new])) == NULL) {
800 1.1 jmc DPRINTF(("Got an error parsing text descriptor.\n"));
801 1.1 jmc if (com->textcnt == 0)
802 1.1 jmc free(com->text, M_DEVBUF);
803 1.1 jmc return 1;
804 1.1 jmc }
805 1.1 jmc com->textcnt++;
806 1.1 jmc }
807 1.1 jmc return 0;
808 1.1 jmc }
809 1.1 jmc
810 1.1 jmc static struct p1212_textdata *
811 1.1 jmc p1212_parse_text_desc(u_int32_t *addr)
812 1.1 jmc {
813 1.1 jmc u_int32_t *t;
814 1.1 jmc u_int16_t crclen, crc, crc1, romcrc;
815 1.1 jmc struct p1212_textdata *text;
816 1.1 jmc int size;
817 1.9 perry
818 1.1 jmc t = addr;
819 1.9 perry
820 1.1 jmc crclen = P1212_DIRENT_GET_LEN((ntohl(t[0])));
821 1.1 jmc romcrc = P1212_DIRENT_GET_CRC((ntohl(t[0])));
822 1.9 perry
823 1.1 jmc if (crclen < P1212_TEXT_Min_Leaf_Length) {
824 1.1 jmc DPRINTF(("Invalid ROM: text descriptor too short\n"));
825 1.1 jmc return NULL;
826 1.1 jmc }
827 1.1 jmc
828 1.1 jmc crc = p1212_calc_crc(0, &t[1], crclen, 0);
829 1.1 jmc if (crc != romcrc) {
830 1.1 jmc crc1 = p1212_calc_crc(0, &t[1], crclen, 1);
831 1.1 jmc if (crc1 != romcrc) {
832 1.1 jmc DPRINTF(("Invalid ROM: CRC: 0x%04hx, Calculated CRC: "
833 1.1 jmc "0x%04hx, CRC1: 0x%04hx\n", (unsigned short)romcrc,
834 1.1 jmc (unsigned short)crc, (unsigned short)crc1));
835 1.1 jmc return NULL;
836 1.1 jmc }
837 1.1 jmc }
838 1.1 jmc
839 1.1 jmc t++;
840 1.1 jmc text = malloc(sizeof(struct p1212_textdata), M_DEVBUF, M_WAITOK);
841 1.1 jmc text->spec_type = P1212_TEXT_GET_Spec_Type((ntohl(t[0])));
842 1.1 jmc text->spec_id = P1212_TEXT_GET_Spec_Id((ntohl(t[0])));
843 1.1 jmc text->lang_id = ntohl(t[1]);
844 1.1 jmc
845 1.1 jmc t++;
846 1.1 jmc t++;
847 1.1 jmc crclen -= 2;
848 1.2 jmc size = (crclen * sizeof(u_int32_t));
849 1.1 jmc
850 1.2 jmc text->text = malloc(size + 1, M_DEVBUF, M_WAITOK|M_ZERO);
851 1.1 jmc
852 1.1 jmc memcpy(text->text, &t[0], size);
853 1.1 jmc
854 1.1 jmc return text;
855 1.1 jmc }
856 1.1 jmc
857 1.1 jmc struct p1212_key **
858 1.1 jmc p1212_find(struct p1212_dir *root, int type, int value, int flags)
859 1.1 jmc {
860 1.1 jmc struct p1212_key **retkeys;
861 1.1 jmc struct p1212_dir *dir, *sdir, *parent;
862 1.1 jmc struct p1212_data *data;
863 1.1 jmc int numkeys;
864 1.1 jmc
865 1.1 jmc numkeys = 0;
866 1.1 jmc retkeys = NULL;
867 1.9 perry
868 1.1 jmc if ((type < P1212_KEYTYPE_Immediate) ||
869 1.1 jmc (type > P1212_KEYTYPE_Directory)) {
870 1.1 jmc #ifdef DIAGNOSTIC
871 1.1 jmc printf("p1212_find: invalid type - %d\n", type);
872 1.1 jmc #endif
873 1.1 jmc return NULL;
874 1.1 jmc }
875 1.1 jmc
876 1.1 jmc if ((value < -1) ||
877 1.1 jmc (value > (sizeof(p1212_keyvalue_strings) / sizeof(char *)))) {
878 1.1 jmc #ifdef DIAGNOSTIC
879 1.1 jmc printf("p1212_find: invalid value - %d\n", value);
880 1.1 jmc #endif
881 1.1 jmc return NULL;
882 1.1 jmc }
883 1.9 perry
884 1.1 jmc if (flags & ~(P1212_FIND_SEARCHALL | P1212_FIND_RETURNALL)) {
885 1.1 jmc #ifdef DIAGNOSTIC
886 1.1 jmc printf("p1212_find: invalid flags - %d\n", flags);
887 1.1 jmc #endif
888 1.1 jmc return NULL;
889 1.1 jmc }
890 1.1 jmc
891 1.1 jmc /*
892 1.1 jmc * Part of this is copied from p1212_walk to do depth first traversal
893 1.1 jmc * without using recursion. Using the walk API would have made things
894 1.1 jmc * more complicated in trying to build up the return struct otherwise.
895 1.1 jmc */
896 1.9 perry
897 1.1 jmc dir = root;
898 1.1 jmc sdir = NULL;
899 1.1 jmc
900 1.1 jmc parent = root->parent;
901 1.1 jmc root->parent = NULL;
902 1.1 jmc
903 1.1 jmc while (dir) {
904 1.1 jmc if (type == P1212_KEYTYPE_Directory) {
905 1.1 jmc TAILQ_FOREACH(sdir, &dir->subdir_root, dir) {
906 1.1 jmc if ((sdir->com.key.key_value == value) ||
907 1.1 jmc (value == -1)) {
908 1.1 jmc numkeys++;
909 1.1 jmc retkeys = realloc(retkeys,
910 1.1 jmc sizeof(struct p1212_key *) *
911 1.4 ichiro (numkeys + 1), M_DEVBUF, M_WAITOK);
912 1.1 jmc retkeys[numkeys - 1] = &sdir->com.key;
913 1.1 jmc retkeys[numkeys] = NULL;
914 1.1 jmc if ((flags & P1212_FIND_RETURNALL)
915 1.1 jmc == 0) {
916 1.1 jmc root->parent = parent;
917 1.1 jmc return retkeys;
918 1.1 jmc }
919 1.1 jmc }
920 1.1 jmc }
921 1.1 jmc } else {
922 1.1 jmc TAILQ_FOREACH(data, &dir->data_root, data) {
923 1.1 jmc if (((data->com.key.key_type == type) &&
924 1.1 jmc (data->com.key.key_value == value)) ||
925 1.1 jmc ((data->com.key.key_type == type) &&
926 1.1 jmc (value == -1))) {
927 1.1 jmc numkeys++;
928 1.1 jmc retkeys = realloc(retkeys,
929 1.1 jmc sizeof(struct p1212_key *) *
930 1.4 ichiro (numkeys + 1), M_DEVBUF, M_WAITOK);
931 1.1 jmc retkeys[numkeys - 1] = &data->com.key;
932 1.1 jmc retkeys[numkeys] = NULL;
933 1.1 jmc if ((flags & P1212_FIND_RETURNALL)
934 1.1 jmc == 0) {
935 1.1 jmc root->parent = parent;
936 1.1 jmc return retkeys;
937 1.1 jmc }
938 1.1 jmc }
939 1.1 jmc }
940 1.1 jmc }
941 1.1 jmc if (flags & P1212_FIND_SEARCHALL) {
942 1.1 jmc do {
943 1.1 jmc sdir = TAILQ_NEXT(dir, dir);
944 1.1 jmc if (sdir == NULL) {
945 1.1 jmc dir = dir->parent;
946 1.1 jmc }
947 1.1 jmc } while ((sdir == NULL) && (dir != NULL));
948 1.1 jmc dir = sdir;
949 1.1 jmc } else
950 1.1 jmc dir = NULL;
951 1.1 jmc }
952 1.1 jmc root->parent = parent;
953 1.1 jmc return retkeys;
954 1.1 jmc }
955 1.1 jmc
956 1.9 perry void
957 1.1 jmc p1212_walk(struct p1212_dir *root, void *arg,
958 1.1 jmc void (*func)(struct p1212_key *, void *))
959 1.1 jmc {
960 1.1 jmc struct p1212_data *data;
961 1.1 jmc struct p1212_dir *sdir, *dir, *parent;
962 1.1 jmc
963 1.1 jmc dir = root;
964 1.1 jmc sdir = NULL;
965 1.1 jmc
966 1.1 jmc if (func == NULL) {
967 1.1 jmc #ifdef DIAGNOSTIC
968 1.1 jmc printf("p1212_walk: Passed in NULL function\n");
969 1.1 jmc #endif
970 1.1 jmc return;
971 1.1 jmc }
972 1.1 jmc if (root == NULL) {
973 1.1 jmc #ifdef DIAGNOSTIC
974 1.1 jmc printf("p1212_walk: Called with NULL root\n");
975 1.1 jmc #endif
976 1.1 jmc return;
977 1.1 jmc }
978 1.9 perry
979 1.1 jmc /* Allow walking from any point. Just mark the starting point. */
980 1.1 jmc parent = root->parent;
981 1.1 jmc root->parent = NULL;
982 1.9 perry
983 1.1 jmc /*
984 1.1 jmc * Depth first traversal that doesn't use recursion.
985 1.1 jmc *
986 1.1 jmc * Call the function first for the directory node and then loop through
987 1.1 jmc * all the data nodes and call the function for them.
988 1.1 jmc *
989 1.1 jmc * Finally, figure out the next possible directory node if one is
990 1.1 jmc * available or bail out.
991 1.1 jmc */
992 1.1 jmc
993 1.1 jmc while (dir) {
994 1.1 jmc func((struct p1212_key *) dir, arg);
995 1.9 perry TAILQ_FOREACH(data, &dir->data_root, data)
996 1.1 jmc func((struct p1212_key *) data, arg);
997 1.1 jmc if (!TAILQ_EMPTY(&dir->subdir_root)) {
998 1.1 jmc sdir = TAILQ_FIRST(&dir->subdir_root);
999 1.1 jmc } else {
1000 1.1 jmc do {
1001 1.1 jmc sdir = TAILQ_NEXT(dir, dir);
1002 1.1 jmc if (sdir == NULL) {
1003 1.1 jmc dir = dir->parent;
1004 1.1 jmc }
1005 1.1 jmc } while ((sdir == NULL) && dir);
1006 1.1 jmc }
1007 1.1 jmc dir = sdir;
1008 1.9 perry }
1009 1.1 jmc
1010 1.1 jmc root->parent = parent;
1011 1.1 jmc }
1012 1.1 jmc
1013 1.1 jmc void
1014 1.1 jmc p1212_print(struct p1212_dir *dir)
1015 1.1 jmc {
1016 1.1 jmc int indent;
1017 1.9 perry
1018 1.1 jmc indent = 0;
1019 1.9 perry
1020 1.1 jmc p1212_walk(dir, &indent, p1212_print_node);
1021 1.1 jmc printf("\n");
1022 1.1 jmc }
1023 1.9 perry
1024 1.1 jmc static void
1025 1.1 jmc p1212_print_node(struct p1212_key *key, void *arg)
1026 1.1 jmc {
1027 1.9 perry
1028 1.1 jmc struct p1212_data *data;
1029 1.1 jmc struct p1212_dir *sdir, *dir;
1030 1.1 jmc int i, j, *indent;
1031 1.1 jmc
1032 1.1 jmc indent = arg;
1033 1.1 jmc
1034 1.1 jmc if (key->key_type == P1212_KEYTYPE_Directory) {
1035 1.1 jmc dir = (struct p1212_dir *) key;
1036 1.1 jmc data = NULL;
1037 1.1 jmc } else {
1038 1.1 jmc data = (struct p1212_data *) key;
1039 1.1 jmc dir = NULL;
1040 1.1 jmc }
1041 1.1 jmc
1042 1.1 jmc /* Recompute the indent level on each directory. */
1043 1.1 jmc if (dir) {
1044 1.1 jmc *indent = 0;
1045 1.1 jmc sdir = dir->parent;
1046 1.1 jmc while (sdir != NULL) {
1047 1.1 jmc (*indent)++;
1048 1.1 jmc sdir = sdir->parent;
1049 1.1 jmc }
1050 1.1 jmc }
1051 1.1 jmc
1052 1.1 jmc if (dir && dir->parent)
1053 1.1 jmc printf("\n");
1054 1.1 jmc
1055 1.1 jmc /* Set the indent string up. 4 spaces per level. */
1056 1.1 jmc for (i = 0; i < (*indent * 4); i++)
1057 1.1 jmc printf(" ");
1058 1.9 perry
1059 1.1 jmc if (dir) {
1060 1.1 jmc printf("Directory: ");
1061 1.1 jmc if (dir->print)
1062 1.1 jmc dir->print(dir);
1063 1.1 jmc else {
1064 1.1 jmc if (key->key_value >=
1065 1.9 perry (sizeof(p1212_keyvalue_strings) / sizeof(char *)))
1066 1.1 jmc printf("Unknown type 0x%04hx\n",
1067 1.1 jmc (unsigned short)key->key_value);
1068 1.1 jmc else
1069 1.1 jmc printf("%s\n",
1070 1.1 jmc p1212_keyvalue_strings[key->key_value]);
1071 1.1 jmc }
1072 1.1 jmc if (dir->com.textcnt) {
1073 1.1 jmc for (i = 0; i < dir->com.textcnt; i++) {
1074 1.1 jmc for (j = 0; j < (*indent * 4); j++)
1075 1.1 jmc printf(" ");
1076 1.1 jmc printf("Text descriptor: %s\n",
1077 1.1 jmc dir->com.text[i]->text);
1078 1.1 jmc }
1079 1.1 jmc }
1080 1.1 jmc printf("\n");
1081 1.1 jmc } else {
1082 1.1 jmc if (data->print)
1083 1.1 jmc data->print(data);
1084 1.1 jmc else {
1085 1.1 jmc if (key->key_value >=
1086 1.9 perry (sizeof(p1212_keyvalue_strings) / sizeof(char *)))
1087 1.1 jmc printf("Unknown type 0x%04hx: ",
1088 1.1 jmc (unsigned short)key->key_value);
1089 1.1 jmc else
1090 1.1 jmc printf("%s: ",
1091 1.1 jmc p1212_keyvalue_strings[key->key_value]);
1092 1.1 jmc
1093 1.1 jmc printf("0x%08x\n", key->val);
1094 1.1 jmc #ifdef DIAGNOSTIC
1095 1.1 jmc if ((data->com.key.key_type == P1212_KEYTYPE_Leaf) &&
1096 1.9 perry (data->leafdata == NULL))
1097 1.1 jmc panic("Invalid data node in configrom tree");
1098 1.1 jmc #endif
1099 1.9 perry
1100 1.1 jmc if (data->leafdata) {
1101 1.1 jmc for (i = 0; i < data->leafdata->len; i++) {
1102 1.1 jmc for (j = 0; j < (*indent * 4); j++)
1103 1.1 jmc printf(" ");
1104 1.1 jmc printf ("Leaf data: 0x%08x\n",
1105 1.1 jmc data->leafdata->data[i]);
1106 1.1 jmc }
1107 1.1 jmc }
1108 1.9 perry if (data->com.textcnt)
1109 1.1 jmc for (i = 0; i < data->com.textcnt; i++) {
1110 1.1 jmc for (j = 0; j < (*indent * 4); j++)
1111 1.1 jmc printf(" ");
1112 1.1 jmc printf("Text descriptor: %s\n",
1113 1.1 jmc data->com.text[i]->text);
1114 1.1 jmc }
1115 1.9 perry
1116 1.1 jmc }
1117 1.1 jmc }
1118 1.1 jmc }
1119 1.1 jmc
1120 1.1 jmc
1121 1.1 jmc void
1122 1.1 jmc p1212_free(struct p1212_rom *rom)
1123 1.1 jmc {
1124 1.1 jmc struct p1212_dir *sdir, *dir;
1125 1.1 jmc struct p1212_data *data;
1126 1.1 jmc int i;
1127 1.1 jmc
1128 1.1 jmc dir = rom->root;
1129 1.9 perry
1130 1.1 jmc /* Avoid recursing. Find the bottom most node and work back. */
1131 1.1 jmc while (dir) {
1132 1.1 jmc if (!TAILQ_EMPTY(&dir->subdir_root)) {
1133 1.1 jmc sdir = TAILQ_FIRST(&dir->subdir_root);
1134 1.1 jmc if (TAILQ_EMPTY(&sdir->subdir_root)) {
1135 1.1 jmc TAILQ_REMOVE(&dir->subdir_root, sdir, dir);
1136 1.1 jmc dir = sdir;
1137 1.1 jmc }
1138 1.1 jmc else {
1139 1.1 jmc dir = sdir;
1140 1.1 jmc continue;
1141 1.1 jmc }
1142 1.1 jmc } else {
1143 1.1 jmc if (dir->parent)
1144 1.1 jmc TAILQ_REMOVE(&dir->parent->subdir_root, dir,
1145 1.1 jmc dir);
1146 1.1 jmc }
1147 1.9 perry
1148 1.1 jmc while ((data = TAILQ_FIRST(&dir->data_root))) {
1149 1.1 jmc if (data->leafdata) {
1150 1.1 jmc if (data->leafdata->data)
1151 1.1 jmc free(data->leafdata->data, M_DEVBUF);
1152 1.1 jmc free(data->leafdata, M_DEVBUF);
1153 1.1 jmc }
1154 1.1 jmc TAILQ_REMOVE(&dir->data_root, data, data);
1155 1.1 jmc if (data->com.textcnt) {
1156 1.1 jmc for (i = 0; i < data->com.textcnt; i++)
1157 1.1 jmc free(data->com.text[i], M_DEVBUF);
1158 1.1 jmc free(data->com.text, M_DEVBUF);
1159 1.1 jmc }
1160 1.1 jmc free(data, M_DEVBUF);
1161 1.1 jmc }
1162 1.1 jmc sdir = dir;
1163 1.9 perry if (dir->parent)
1164 1.1 jmc dir = dir->parent;
1165 1.1 jmc else
1166 1.1 jmc dir = NULL;
1167 1.1 jmc if (sdir->com.textcnt) {
1168 1.1 jmc for (i = 0; i < sdir->com.textcnt; i++)
1169 1.1 jmc free(sdir->com.text[i], M_DEVBUF);
1170 1.1 jmc free(sdir->com.text, M_DEVBUF);
1171 1.1 jmc }
1172 1.1 jmc free(sdir, M_DEVBUF);
1173 1.1 jmc }
1174 1.1 jmc if (rom->len)
1175 1.1 jmc free(rom->data, M_DEVBUF);
1176 1.1 jmc free(rom, M_DEVBUF);
1177 1.1 jmc }
1178 1.1 jmc
1179 1.1 jmc /*
1180 1.1 jmc * A fairly well published reference implementation of the CRC routine had
1181 1.1 jmc * a typo in it and some devices may be using it rather than the correct one
1182 1.1 jmc * in calculating their ROM CRC's. To compensate an interface for generating
1183 1.1 jmc * either is provided.
1184 1.1 jmc *
1185 1.1 jmc * len is the number of u_int32_t entries, not bytes.
1186 1.1 jmc */
1187 1.1 jmc
1188 1.1 jmc static u_int16_t
1189 1.1 jmc p1212_calc_crc(u_int32_t crc, u_int32_t *data, int len, int broke)
1190 1.1 jmc {
1191 1.1 jmc int shift;
1192 1.1 jmc u_int32_t sum;
1193 1.1 jmc int i;
1194 1.9 perry
1195 1.1 jmc for (i = 0; i < len; i++) {
1196 1.1 jmc for (shift = 28; shift > 0; shift -= 4) {
1197 1.1 jmc sum = ((crc >> 12) ^ (ntohl(data[i]) >> shift)) &
1198 1.1 jmc 0x0000000f;
1199 1.1 jmc crc = (crc << 4) ^ (sum << 12) ^ (sum << 5) ^ sum;
1200 1.1 jmc }
1201 1.9 perry
1202 1.9 perry
1203 1.1 jmc /* The broken implementation doesn't do the last shift. */
1204 1.1 jmc if (!broke) {
1205 1.1 jmc sum = ((crc >> 12) ^ ntohl(data[i])) & 0x0000000f;
1206 1.1 jmc crc = (crc << 4) ^ (sum << 12) ^ (sum << 5) ^ sum;
1207 1.1 jmc }
1208 1.1 jmc }
1209 1.1 jmc return (u_int16_t)crc;
1210 1.1 jmc }
1211 1.1 jmc
1212 1.1 jmc /*
1213 1.1 jmc * This is almost identical to the standard autoconf *match idea except it
1214 1.1 jmc * can match and attach multiple children in one pass.
1215 1.1 jmc */
1216 1.1 jmc
1217 1.1 jmc struct device **
1218 1.1 jmc p1212_match_units(struct device *sc, struct p1212_dir *dir,
1219 1.1 jmc int (*print)(void *, const char *))
1220 1.1 jmc {
1221 1.1 jmc struct p1212_dir **udirs;
1222 1.1 jmc struct device **devret, *dev;
1223 1.1 jmc int numdev;
1224 1.9 perry
1225 1.1 jmc /*
1226 1.1 jmc * Setup typical return val. Always allocate one extra pointer for a
1227 1.1 jmc * NULL guard end pointer.
1228 1.1 jmc */
1229 1.1 jmc
1230 1.1 jmc numdev = 0;
1231 1.1 jmc devret = malloc(sizeof(struct device *) * 2, M_DEVBUF, M_WAITOK);
1232 1.1 jmc devret[1] = NULL;
1233 1.1 jmc
1234 1.1 jmc udirs = (struct p1212_dir **)p1212_find(dir, P1212_KEYTYPE_Directory,
1235 1.9 perry P1212_KEYVALUE_Unit_Directory,
1236 1.1 jmc P1212_FIND_SEARCHALL|P1212_FIND_RETURNALL);
1237 1.9 perry
1238 1.1 jmc if (udirs) {
1239 1.3 jmc do {
1240 1.8 drochner dev = config_found_ia(sc, "fwnode", udirs, print);
1241 1.1 jmc if (dev && numdev) {
1242 1.1 jmc devret = realloc(devret,
1243 1.1 jmc sizeof(struct device *) *
1244 1.1 jmc (numdev + 2), M_DEVBUF, M_WAITOK);
1245 1.1 jmc devret[numdev++] = dev;
1246 1.1 jmc devret[numdev] = NULL;
1247 1.1 jmc } else if (dev) {
1248 1.1 jmc devret[0] = dev;
1249 1.1 jmc numdev++;
1250 1.1 jmc }
1251 1.3 jmc udirs++;
1252 1.3 jmc } while (*udirs);
1253 1.1 jmc }
1254 1.1 jmc if (numdev == 0) {
1255 1.1 jmc free(devret, M_DEVBUF);
1256 1.1 jmc return NULL;
1257 1.1 jmc }
1258 1.1 jmc return devret;
1259 1.1 jmc }
1260 1.1 jmc
1261 1.9 perry /*
1262 1.1 jmc * Make these their own functions as they have slightly complicated rules.
1263 1.1 jmc *
1264 1.1 jmc * For example:
1265 1.1 jmc *
1266 1.1 jmc * Under normal circumstances only the 2 extent types can be offset
1267 1.1 jmc * types. However some spec's which use p1212 like SBP2 for
1268 1.9 perry * firewire/1394 will define a dependent info type as an offset value.
1269 1.9 perry * Allow the upper level code to flag this and pass it down during
1270 1.1 jmc * parsing. The same thing applies to immediate types.
1271 1.1 jmc */
1272 1.1 jmc
1273 1.1 jmc static int
1274 1.1 jmc p1212_validate_offset(u_int16_t val, u_int32_t mask)
1275 1.1 jmc {
1276 1.1 jmc if ((val == P1212_KEYVALUE_Node_Units_Extent) ||
1277 1.1 jmc (val == P1212_KEYVALUE_Node_Memory_Extent) ||
1278 1.1 jmc ((mask & P1212_ALLOW_DEPENDENT_INFO_OFFSET_TYPE) &&
1279 1.9 perry ((val == P1212_KEYVALUE_Unit_Dependent_Info) ||
1280 1.9 perry (val == P1212_KEYVALUE_Node_Dependent_Info) ||
1281 1.1 jmc (val == P1212_KEYVALUE_Module_Dependent_Info))))
1282 1.1 jmc return 0;
1283 1.1 jmc return 1;
1284 1.1 jmc }
1285 1.1 jmc
1286 1.9 perry static int
1287 1.1 jmc p1212_validate_immed(u_int16_t val, u_int32_t mask)
1288 1.1 jmc {
1289 1.1 jmc switch (val) {
1290 1.1 jmc case P1212_KEYVALUE_Textual_Descriptor:
1291 1.1 jmc case P1212_KEYVALUE_Bus_Dependent_Info:
1292 1.1 jmc case P1212_KEYVALUE_Module_Dependent_Info:
1293 1.1 jmc case P1212_KEYVALUE_Node_Unique_Id:
1294 1.1 jmc case P1212_KEYVALUE_Node_Dependent_Info:
1295 1.1 jmc case P1212_KEYVALUE_Unit_Directory:
1296 1.1 jmc case P1212_KEYVALUE_Unit_Dependent_Info:
1297 1.1 jmc case P1212_KEYVALUE_Unit_Location:
1298 1.1 jmc if ((mask & P1212_ALLOW_DEPENDENT_INFO_IMMED_TYPE) &&
1299 1.1 jmc ((val == P1212_KEYVALUE_Module_Dependent_Info) ||
1300 1.1 jmc (val == P1212_KEYVALUE_Node_Dependent_Info) ||
1301 1.1 jmc (val == P1212_KEYVALUE_Unit_Dependent_Info)))
1302 1.1 jmc break;
1303 1.1 jmc return 1;
1304 1.1 jmc break;
1305 1.1 jmc default:
1306 1.1 jmc break;
1307 1.1 jmc }
1308 1.1 jmc return 0;
1309 1.1 jmc }
1310 1.1 jmc
1311 1.1 jmc static int
1312 1.1 jmc p1212_validate_leaf(u_int16_t val, u_int32_t mask)
1313 1.1 jmc {
1314 1.1 jmc switch(val) {
1315 1.1 jmc case P1212_KEYVALUE_Textual_Descriptor:
1316 1.1 jmc case P1212_KEYVALUE_Bus_Dependent_Info:
1317 1.1 jmc case P1212_KEYVALUE_Module_Dependent_Info:
1318 1.1 jmc case P1212_KEYVALUE_Node_Unique_Id:
1319 1.1 jmc case P1212_KEYVALUE_Node_Dependent_Info:
1320 1.1 jmc case P1212_KEYVALUE_Unit_Dependent_Info:
1321 1.1 jmc case P1212_KEYVALUE_Unit_Location:
1322 1.1 jmc break;
1323 1.1 jmc default:
1324 1.1 jmc return 1;
1325 1.1 jmc break;
1326 1.1 jmc }
1327 1.1 jmc return 0;
1328 1.1 jmc }
1329 1.1 jmc
1330 1.1 jmc static int
1331 1.1 jmc p1212_validate_dir(u_int16_t val, u_int32_t mask)
1332 1.1 jmc {
1333 1.1 jmc switch(val) {
1334 1.1 jmc case P1212_KEYVALUE_Textual_Descriptor:
1335 1.1 jmc case P1212_KEYVALUE_Bus_Dependent_Info:
1336 1.1 jmc case P1212_KEYVALUE_Module_Dependent_Info:
1337 1.1 jmc case P1212_KEYVALUE_Node_Dependent_Info:
1338 1.1 jmc case P1212_KEYVALUE_Unit_Directory:
1339 1.1 jmc case P1212_KEYVALUE_Unit_Dependent_Info:
1340 1.1 jmc break;
1341 1.1 jmc default:
1342 1.2 jmc if ((mask & P1212_ALLOW_VENDOR_DIRECTORY_TYPE) &&
1343 1.2 jmc (val == P1212_KEYVALUE_Module_Vendor_Id))
1344 1.2 jmc break;
1345 1.1 jmc return 1;
1346 1.1 jmc break;
1347 1.1 jmc }
1348 1.1 jmc return 0;
1349 1.1 jmc }
1350