ofctl.c revision 1.12 1 1.12 jmcneill /* $NetBSD: ofctl.c,v 1.12 2015/12/23 13:42:24 jmcneill Exp $ */
2 1.1 macallan
3 1.1 macallan /*-
4 1.7 jmmv * Copyright (c) 2006, 2007 The NetBSD Foundation, Inc.
5 1.1 macallan * All rights reserved.
6 1.1 macallan *
7 1.1 macallan * This code is derived from software contributed to The NetBSD Foundation
8 1.1 macallan * by Matt Thomas.
9 1.1 macallan *
10 1.1 macallan * Redistribution and use in source and binary forms, with or without
11 1.1 macallan * modification, are permitted provided that the following conditions
12 1.1 macallan * are met:
13 1.1 macallan * 1. Redistributions of source code must retain the above copyright
14 1.1 macallan * notice, this list of conditions and the following disclaimer.
15 1.1 macallan * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 macallan * notice, this list of conditions and the following disclaimer in the
17 1.1 macallan * documentation and/or other materials provided with the distribution.
18 1.1 macallan *
19 1.1 macallan * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 macallan * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 macallan * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 macallan * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 macallan * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 macallan * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 macallan * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 macallan * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 macallan * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 macallan * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 macallan * POSSIBILITY OF SUCH DAMAGE.
30 1.1 macallan */
31 1.1 macallan
32 1.7 jmmv #include <sys/cdefs.h>
33 1.7 jmmv
34 1.7 jmmv #ifndef lint
35 1.9 lukem __COPYRIGHT("@(#) Copyright (c) 2006, 2007\
36 1.9 lukem The NetBSD Foundation, Inc. All rights reserved.");
37 1.12 jmcneill __RCSID("$NetBSD: ofctl.c,v 1.12 2015/12/23 13:42:24 jmcneill Exp $");
38 1.7 jmmv #endif /* not lint */
39 1.7 jmmv
40 1.1 macallan #include <stdio.h>
41 1.1 macallan #include <stdlib.h>
42 1.1 macallan #include <unistd.h>
43 1.1 macallan #include <errno.h>
44 1.1 macallan #include <ctype.h>
45 1.1 macallan #include <string.h>
46 1.1 macallan #include <assert.h>
47 1.1 macallan #include <err.h>
48 1.1 macallan #include <sys/types.h>
49 1.1 macallan #include <sys/ioctl.h>
50 1.1 macallan #include <sys/file.h>
51 1.1 macallan #include <sys/queue.h>
52 1.1 macallan #include <dev/ofw/openfirmio.h>
53 1.1 macallan
54 1.4 matt #include <prop/proplib.h>
55 1.4 matt
56 1.1 macallan static void oflist(int, const char *, int, void *, size_t);
57 1.1 macallan static void ofprop(int);
58 1.10 lukem static void ofgetprop(int, const char *);
59 1.1 macallan #if 0
60 1.1 macallan static int isstrprint(const char *, size_t, int);
61 1.1 macallan #endif
62 1.1 macallan
63 1.1 macallan static int lflag;
64 1.1 macallan static int pflag;
65 1.1 macallan
66 1.1 macallan struct of_node {
67 1.1 macallan TAILQ_ENTRY(of_node) of_sibling;
68 1.1 macallan TAILQ_HEAD(,of_node) of_children;
69 1.1 macallan TAILQ_HEAD(,of_prop) of_properties;
70 1.1 macallan struct of_node *of_parent;
71 1.1 macallan struct of_prop *of_name;
72 1.1 macallan struct of_prop *of_device_type;
73 1.1 macallan struct of_prop *of_reg;
74 1.1 macallan int of_nodeid;
75 1.1 macallan };
76 1.1 macallan
77 1.1 macallan struct of_prop {
78 1.1 macallan TAILQ_ENTRY(of_prop) prop_sibling;
79 1.1 macallan char *prop_name;
80 1.1 macallan u_int8_t *prop_data;
81 1.1 macallan size_t prop_length;
82 1.1 macallan size_t prop_namelen;
83 1.1 macallan };
84 1.1 macallan
85 1.1 macallan struct of_node of_root;
86 1.1 macallan unsigned long of_node_count;
87 1.1 macallan unsigned long of_prop_count;
88 1.4 matt prop_dictionary_t of_proplib;
89 1.1 macallan
90 1.1 macallan int OF_parent(int);
91 1.1 macallan int OF_child(int);
92 1.1 macallan int OF_peer(int);
93 1.1 macallan int OF_finddevice(const char *);
94 1.10 lukem int OF_getproplen(int, const char *);
95 1.10 lukem int OF_getprop(int, const char *, void *, size_t);
96 1.10 lukem int OF_nextprop(int, const char *, void *);
97 1.1 macallan
98 1.10 lukem struct of_prop *of_tree_getprop(int, const char *);
99 1.1 macallan
100 1.12 jmcneill static int of_fd = -1;
101 1.12 jmcneill
102 1.1 macallan static void
103 1.4 matt of_tree_mkprop(struct of_node *node, prop_dictionary_t propdict,
104 1.4 matt prop_dictionary_keysym_t key)
105 1.1 macallan {
106 1.1 macallan struct of_prop *prop;
107 1.4 matt prop_data_t obj;
108 1.4 matt const char *name;
109 1.4 matt
110 1.4 matt name = prop_dictionary_keysym_cstring_nocopy(key);
111 1.4 matt obj = prop_dictionary_get_keysym(propdict, key);
112 1.1 macallan
113 1.1 macallan prop = malloc(sizeof(*prop) + strlen(name) + 1);
114 1.1 macallan if (prop == NULL)
115 1.4 matt err(1, "malloc(%zu)", sizeof(*prop) + strlen(name) + 1);
116 1.1 macallan
117 1.1 macallan memset(prop, 0, sizeof(*prop));
118 1.1 macallan prop->prop_name = (char *) (prop + 1);
119 1.1 macallan prop->prop_namelen = strlen(name);
120 1.1 macallan memcpy(prop->prop_name, name, prop->prop_namelen+1);
121 1.1 macallan TAILQ_INSERT_TAIL(&node->of_properties, prop, prop_sibling);
122 1.1 macallan
123 1.1 macallan if (!strcmp(name, "name"))
124 1.1 macallan node->of_name = prop;
125 1.1 macallan else if (!strcmp(name, "device_type"))
126 1.1 macallan node->of_device_type = prop;
127 1.1 macallan else if (!strcmp(name, "reg"))
128 1.1 macallan node->of_reg = prop;
129 1.1 macallan
130 1.1 macallan of_prop_count++;
131 1.1 macallan
132 1.4 matt prop->prop_length = prop_data_size(obj);
133 1.4 matt if (prop->prop_length)
134 1.4 matt prop->prop_data = prop_data_data(obj);
135 1.1 macallan }
136 1.1 macallan
137 1.1 macallan static struct of_node *
138 1.4 matt of_tree_mknode(struct of_node *parent)
139 1.1 macallan {
140 1.1 macallan struct of_node *newnode;
141 1.1 macallan newnode = malloc(sizeof(*newnode));
142 1.1 macallan if (newnode == NULL)
143 1.4 matt err(1, "malloc(%zu)", sizeof(*newnode));
144 1.1 macallan
145 1.1 macallan of_node_count++;
146 1.1 macallan
147 1.1 macallan memset(newnode, 0, sizeof(*newnode));
148 1.1 macallan TAILQ_INIT(&newnode->of_children);
149 1.1 macallan TAILQ_INIT(&newnode->of_properties);
150 1.1 macallan newnode->of_parent = parent;
151 1.1 macallan
152 1.1 macallan TAILQ_INSERT_TAIL(&parent->of_children, newnode, of_sibling);
153 1.1 macallan
154 1.1 macallan return newnode;
155 1.1 macallan }
156 1.1 macallan
157 1.1 macallan static void
158 1.4 matt of_tree_fill(prop_dictionary_t dict, struct of_node *node)
159 1.4 matt {
160 1.4 matt prop_dictionary_t propdict;
161 1.4 matt prop_array_t propkeys;
162 1.4 matt prop_array_t children;
163 1.4 matt unsigned int i, count;
164 1.4 matt
165 1.4 matt node->of_nodeid = prop_number_unsigned_integer_value(
166 1.4 matt prop_dictionary_get(dict, "node"));
167 1.4 matt
168 1.4 matt propdict = prop_dictionary_get(dict, "properties");
169 1.4 matt propkeys = prop_dictionary_all_keys(propdict);
170 1.4 matt count = prop_array_count(propkeys);
171 1.4 matt
172 1.4 matt for (i = 0; i < count; i++)
173 1.4 matt of_tree_mkprop(node, propdict, prop_array_get(propkeys, i));
174 1.4 matt
175 1.4 matt children = prop_dictionary_get(dict, "children");
176 1.4 matt if (children) {
177 1.4 matt count = prop_array_count(children);
178 1.4 matt
179 1.4 matt for (i = 0; i < count; i++) {
180 1.4 matt of_tree_fill(
181 1.4 matt prop_array_get(children, i),
182 1.4 matt of_tree_mknode(node));
183 1.4 matt }
184 1.4 matt }
185 1.4 matt }
186 1.4 matt
187 1.4 matt static void
188 1.4 matt of_tree_init(prop_dictionary_t dict)
189 1.4 matt {
190 1.4 matt /*
191 1.4 matt * Initialize the root node of the OFW tree.
192 1.4 matt */
193 1.4 matt TAILQ_INIT(&of_root.of_children);
194 1.4 matt TAILQ_INIT(&of_root.of_properties);
195 1.4 matt
196 1.4 matt of_tree_fill(dict, &of_root);
197 1.4 matt }
198 1.4 matt
199 1.4 matt static prop_object_t
200 1.4 matt of_proplib_mkprop(int fd, int nodeid, char *name)
201 1.1 macallan {
202 1.4 matt struct ofiocdesc ofio;
203 1.4 matt prop_object_t obj;
204 1.4 matt
205 1.4 matt ofio.of_nodeid = nodeid;
206 1.4 matt ofio.of_name = name;
207 1.4 matt ofio.of_namelen = strlen(name);
208 1.4 matt ofio.of_buf = NULL;
209 1.4 matt ofio.of_buflen = 32;
210 1.4 matt
211 1.4 matt again:
212 1.4 matt if (ofio.of_buf != NULL)
213 1.4 matt free(ofio.of_buf);
214 1.4 matt ofio.of_buf = malloc(ofio.of_buflen);
215 1.4 matt if (ofio.of_buf == NULL)
216 1.5 rjs err(1, "malloc(%d)", ofio.of_buflen);
217 1.4 matt if (ioctl(fd, OFIOCGET, &ofio) < 0) {
218 1.4 matt if (errno == ENOMEM) {
219 1.4 matt ofio.of_buflen *= 2;
220 1.4 matt goto again;
221 1.4 matt }
222 1.4 matt warn("OFIOCGET(%d, \"%s\")", fd, name);
223 1.4 matt free(ofio.of_buf);
224 1.4 matt return NULL;
225 1.4 matt }
226 1.4 matt obj = prop_data_create_data(ofio.of_buf, ofio.of_buflen);
227 1.4 matt free(ofio.of_buf);
228 1.4 matt return obj;
229 1.4 matt }
230 1.4 matt
231 1.4 matt static prop_dictionary_t
232 1.4 matt of_proplib_tree_fill(int fd, int nodeid)
233 1.4 matt {
234 1.4 matt int childid = nodeid;
235 1.1 macallan struct ofiocdesc ofio;
236 1.1 macallan char namebuf[33];
237 1.1 macallan char newnamebuf[33];
238 1.4 matt prop_array_t children;
239 1.4 matt prop_dictionary_t dict, propdict;
240 1.4 matt prop_object_t obj;
241 1.1 macallan
242 1.4 matt ofio.of_nodeid = nodeid;
243 1.1 macallan ofio.of_name = namebuf;
244 1.1 macallan ofio.of_namelen = 1;
245 1.1 macallan ofio.of_buf = newnamebuf;
246 1.1 macallan
247 1.1 macallan namebuf[0] = '\0';
248 1.1 macallan
249 1.4 matt dict = prop_dictionary_create();
250 1.4 matt prop_dictionary_set(dict, "node",
251 1.4 matt prop_number_create_unsigned_integer(nodeid));
252 1.4 matt
253 1.4 matt propdict = prop_dictionary_create();
254 1.1 macallan for (;;) {
255 1.1 macallan ofio.of_buflen = sizeof(newnamebuf);
256 1.1 macallan
257 1.1 macallan if (ioctl(fd, OFIOCNEXTPROP, &ofio) < 0) {
258 1.1 macallan if (errno == ENOENT)
259 1.1 macallan break;
260 1.1 macallan err(1, "OFIOCNEXTPROP(%d, %#x, \"%s\")", fd,
261 1.1 macallan ofio.of_nodeid, ofio.of_name);
262 1.1 macallan }
263 1.1 macallan
264 1.1 macallan ofio.of_namelen = ofio.of_buflen;
265 1.1 macallan if (ofio.of_namelen == 0)
266 1.1 macallan break;
267 1.1 macallan newnamebuf[ofio.of_buflen] = '\0';
268 1.1 macallan strcpy(namebuf, newnamebuf);
269 1.4 matt obj = of_proplib_mkprop(fd, nodeid, namebuf);
270 1.4 matt if (obj)
271 1.4 matt prop_dictionary_set(propdict, namebuf, obj);
272 1.1 macallan }
273 1.4 matt prop_dictionary_set(dict, "properties", propdict);
274 1.1 macallan
275 1.1 macallan if (ioctl(fd, OFIOCGETCHILD, &childid) < 0)
276 1.1 macallan err(1, "OFIOCGETCHILD(%d, %#x)", fd, childid);
277 1.1 macallan
278 1.4 matt children = NULL;
279 1.1 macallan while (childid != 0) {
280 1.4 matt if (children == NULL)
281 1.4 matt children = prop_array_create();
282 1.4 matt prop_array_add(children, of_proplib_tree_fill(fd, childid));
283 1.1 macallan if (ioctl(fd, OFIOCGETNEXT, &childid) < 0)
284 1.1 macallan err(1, "OFIOCGETNEXT(%d, %#x)", fd, childid);
285 1.1 macallan }
286 1.4 matt if (children != NULL) {
287 1.4 matt prop_array_make_immutable(children);
288 1.4 matt prop_dictionary_set(dict, "children", children);
289 1.4 matt }
290 1.1 macallan
291 1.4 matt return dict;
292 1.1 macallan }
293 1.1 macallan
294 1.4 matt static prop_dictionary_t
295 1.4 matt of_proplib_init(const char *file)
296 1.1 macallan {
297 1.4 matt prop_dictionary_t dict;
298 1.1 macallan int rootid = 0;
299 1.4 matt int fd;
300 1.4 matt
301 1.4 matt fd = open(file, O_RDONLY);
302 1.4 matt if (fd < 0)
303 1.4 matt err(1, "%s", file);
304 1.1 macallan
305 1.1 macallan if (ioctl(fd, OFIOCGETNEXT, &rootid) < 0)
306 1.1 macallan err(1, "OFIOCGETNEXT(%d, %#x)", fd, rootid);
307 1.1 macallan
308 1.4 matt dict = of_proplib_tree_fill(fd, rootid);
309 1.12 jmcneill
310 1.12 jmcneill /* keep the device open for the benefit of OF_finddevice */
311 1.12 jmcneill of_fd = fd;
312 1.12 jmcneill
313 1.4 matt return dict;
314 1.1 macallan }
315 1.1 macallan
316 1.1 macallan static struct of_node *
317 1.1 macallan of_tree_walk(struct of_node *node,
318 1.1 macallan struct of_node *(*fn)(struct of_node *, const void *),
319 1.1 macallan const void *ctx)
320 1.1 macallan {
321 1.1 macallan struct of_node *child, *match;
322 1.1 macallan
323 1.1 macallan if ((match = (*fn)(node, ctx)) != NULL)
324 1.1 macallan return match;
325 1.1 macallan
326 1.1 macallan TAILQ_FOREACH(child, &node->of_children, of_sibling) {
327 1.1 macallan if ((match = of_tree_walk(child, fn, ctx)) != NULL)
328 1.1 macallan return match;
329 1.1 macallan }
330 1.1 macallan return NULL;
331 1.1 macallan }
332 1.1 macallan
333 1.1 macallan static struct of_node *
334 1.1 macallan of_match_by_nodeid(struct of_node *node, const void *ctx)
335 1.1 macallan {
336 1.1 macallan return (node->of_nodeid == *(const int *) ctx) ? node : NULL;
337 1.1 macallan }
338 1.1 macallan
339 1.1 macallan static struct of_node *
340 1.1 macallan of_match_by_parentid(struct of_node *node, const void *ctx)
341 1.1 macallan {
342 1.1 macallan if (node->of_parent == NULL)
343 1.1 macallan return NULL;
344 1.1 macallan return (node->of_parent->of_nodeid == *(const int *) ctx) ? node : NULL;
345 1.1 macallan }
346 1.1 macallan
347 1.1 macallan int
348 1.1 macallan OF_parent(int childid)
349 1.1 macallan {
350 1.1 macallan struct of_node *child;
351 1.1 macallan
352 1.1 macallan if (childid == 0)
353 1.1 macallan return 0;
354 1.1 macallan
355 1.1 macallan child = of_tree_walk(&of_root, of_match_by_nodeid, &childid);
356 1.1 macallan if (child == NULL || child->of_parent == NULL)
357 1.1 macallan return 0;
358 1.1 macallan return child->of_parent->of_nodeid;
359 1.1 macallan }
360 1.1 macallan
361 1.1 macallan int
362 1.1 macallan OF_child(int parentid)
363 1.1 macallan {
364 1.1 macallan struct of_node *child;
365 1.1 macallan
366 1.1 macallan child = of_tree_walk(&of_root, of_match_by_parentid, &parentid);
367 1.1 macallan if (child == NULL)
368 1.1 macallan return 0;
369 1.1 macallan return child->of_nodeid;
370 1.1 macallan }
371 1.1 macallan
372 1.1 macallan int
373 1.1 macallan OF_peer(int peerid)
374 1.1 macallan {
375 1.1 macallan struct of_node *node, *match;
376 1.1 macallan
377 1.1 macallan if (peerid == 0)
378 1.1 macallan return of_root.of_nodeid;
379 1.1 macallan
380 1.1 macallan node = of_tree_walk(&of_root, of_match_by_nodeid, &peerid);
381 1.1 macallan if (node == NULL || node->of_parent == NULL)
382 1.1 macallan return 0;
383 1.1 macallan
384 1.1 macallan /*
385 1.1 macallan * The peer should be our next sibling (if one exists).
386 1.1 macallan */
387 1.1 macallan match = TAILQ_NEXT(node, of_sibling);
388 1.1 macallan return (match != NULL) ? match->of_nodeid : 0;
389 1.1 macallan }
390 1.1 macallan
391 1.1 macallan int
392 1.1 macallan OF_finddevice(const char *name)
393 1.1 macallan {
394 1.1 macallan struct ofiocdesc ofio;
395 1.1 macallan
396 1.1 macallan ofio.of_nodeid = 0;
397 1.12 jmcneill ofio.of_name = __UNCONST(name);
398 1.12 jmcneill ofio.of_namelen = strlen(name);
399 1.1 macallan ofio.of_buf = NULL;
400 1.1 macallan ofio.of_buflen = 0;
401 1.12 jmcneill if (ioctl(of_fd, OFIOCFINDDEVICE, &ofio) < 0) {
402 1.12 jmcneill if (errno == ENOENT) {
403 1.12 jmcneill err(1, "OF node '%s' not found", name);
404 1.12 jmcneill } else {
405 1.12 jmcneill err(1, "OFIOCFINDDEVICE(%d, \"%s\")", of_fd, name);
406 1.12 jmcneill }
407 1.12 jmcneill }
408 1.12 jmcneill
409 1.12 jmcneill return ofio.of_nodeid;
410 1.1 macallan }
411 1.1 macallan
412 1.1 macallan struct of_prop *
413 1.10 lukem of_tree_getprop(int nodeid, const char *name)
414 1.1 macallan {
415 1.1 macallan struct of_node *node;
416 1.1 macallan struct of_prop *prop;
417 1.1 macallan
418 1.1 macallan if (nodeid == 0)
419 1.1 macallan return 0;
420 1.1 macallan
421 1.1 macallan node = of_tree_walk(&of_root, of_match_by_nodeid, &nodeid);
422 1.1 macallan if (node == NULL)
423 1.1 macallan return NULL;
424 1.1 macallan
425 1.1 macallan if (name[0] == '\0')
426 1.1 macallan return TAILQ_FIRST(&node->of_properties);
427 1.1 macallan
428 1.1 macallan if (!strcmp(name, "name"))
429 1.1 macallan return node->of_name;
430 1.1 macallan if (!strcmp(name, "device_type"))
431 1.1 macallan return node->of_device_type;
432 1.1 macallan if (!strcmp(name, "reg"))
433 1.1 macallan return node->of_reg;
434 1.1 macallan
435 1.1 macallan TAILQ_FOREACH(prop, &node->of_properties, prop_sibling) {
436 1.1 macallan if (!strcmp(name, prop->prop_name))
437 1.1 macallan break;
438 1.1 macallan }
439 1.1 macallan return prop;
440 1.1 macallan }
441 1.1 macallan
442 1.1 macallan int
443 1.10 lukem OF_getproplen(int nodeid, const char *name)
444 1.1 macallan {
445 1.1 macallan struct of_prop *prop = of_tree_getprop(nodeid, name);
446 1.10 lukem return (prop != NULL) ? (int)prop->prop_length : -1;
447 1.1 macallan }
448 1.1 macallan
449 1.1 macallan int
450 1.10 lukem OF_getprop(int nodeid, const char *name, void *buf, size_t len)
451 1.1 macallan {
452 1.1 macallan struct of_prop *prop = of_tree_getprop(nodeid, name);
453 1.1 macallan if (prop == NULL)
454 1.1 macallan return -1;
455 1.1 macallan if (len > prop->prop_length)
456 1.1 macallan len = prop->prop_length;
457 1.1 macallan memcpy(buf, prop->prop_data, len);
458 1.1 macallan return len;
459 1.1 macallan }
460 1.1 macallan
461 1.1 macallan int
462 1.10 lukem OF_nextprop(int nodeid, const char *name, void *nextname)
463 1.1 macallan {
464 1.1 macallan struct of_prop *prop = of_tree_getprop(nodeid, name);
465 1.1 macallan if (prop == NULL)
466 1.1 macallan return -1;
467 1.1 macallan if (name[0] != '\0') {
468 1.1 macallan prop = TAILQ_NEXT(prop, prop_sibling);
469 1.1 macallan if (prop == NULL)
470 1.1 macallan return -1;
471 1.1 macallan }
472 1.1 macallan strcpy(nextname, prop->prop_name);
473 1.1 macallan return strlen(prop->prop_name);
474 1.1 macallan }
475 1.1 macallan
476 1.1 macallan static u_int32_t
477 1.1 macallan of_decode_int(const u_int8_t *p)
478 1.1 macallan {
479 1.1 macallan return (p[0] << 24) | (p[1] << 16) | (p[2] << 8) | p[3];
480 1.1 macallan }
481 1.1 macallan
482 1.1 macallan /*
483 1.1 macallan * Now we start the real program
484 1.1 macallan */
485 1.1 macallan
486 1.1 macallan int
487 1.1 macallan main(int argc, char **argv)
488 1.1 macallan {
489 1.1 macallan u_long of_buf[256];
490 1.1 macallan char device_type[33];
491 1.1 macallan int phandle;
492 1.1 macallan int errflag = 0;
493 1.1 macallan int c;
494 1.1 macallan int len;
495 1.1 macallan #if defined(__sparc__) || defined(__sparc64__)
496 1.1 macallan const char *file = "/dev/openprom";
497 1.1 macallan #else
498 1.1 macallan const char *file = "/dev/openfirm";
499 1.1 macallan #endif
500 1.4 matt const char *propfilein = NULL;
501 1.4 matt const char *propfileout = NULL;
502 1.1 macallan
503 1.4 matt while ((c = getopt(argc, argv, "f:lpr:w:")) != EOF) {
504 1.1 macallan switch (c) {
505 1.1 macallan case 'l': lflag++; break;
506 1.1 macallan case 'p': pflag++; break;
507 1.1 macallan case 'f': file = optarg; break;
508 1.4 matt case 'r': propfilein = optarg; break;
509 1.4 matt case 'w': propfileout = optarg; break;
510 1.1 macallan default: errflag++; break;
511 1.1 macallan }
512 1.1 macallan }
513 1.1 macallan if (errflag)
514 1.6 jmmv errx(1, "usage: ofctl [-pl] [-f file] [-r propfile] [-w propfile] [node...]");
515 1.4 matt
516 1.4 matt if (propfilein != NULL) {
517 1.4 matt of_proplib = prop_dictionary_internalize_from_file(propfilein);
518 1.4 matt } else {
519 1.4 matt of_proplib = of_proplib_init(file);
520 1.4 matt }
521 1.4 matt
522 1.4 matt if (propfileout)
523 1.4 matt prop_dictionary_externalize_to_file(of_proplib, propfileout);
524 1.1 macallan
525 1.4 matt of_tree_init(of_proplib);
526 1.1 macallan printf("[Caching %lu nodes and %lu properties]\n",
527 1.1 macallan of_node_count, of_prop_count);
528 1.1 macallan
529 1.1 macallan if (argc == optind) {
530 1.1 macallan phandle = OF_peer(0);
531 1.1 macallan device_type[0] = '\0';
532 1.1 macallan len = OF_getprop(phandle, "device_type", device_type,
533 1.1 macallan sizeof(device_type));
534 1.1 macallan if (len <= 0)
535 1.1 macallan len = OF_getprop(phandle, "name", device_type,
536 1.1 macallan sizeof(device_type));
537 1.1 macallan if (len >= 0)
538 1.1 macallan device_type[len] = '\0';
539 1.1 macallan oflist(phandle, device_type, 0, of_buf, sizeof(of_buf));
540 1.1 macallan } else {
541 1.12 jmcneill phandle = OF_finddevice(argv[optind++]);
542 1.12 jmcneill device_type[0] = '\0';
543 1.12 jmcneill len = OF_getprop(phandle, "device_type", device_type,
544 1.12 jmcneill sizeof(device_type));
545 1.12 jmcneill if (len <= 0)
546 1.12 jmcneill len = OF_getprop(phandle, "name", device_type,
547 1.12 jmcneill sizeof(device_type));
548 1.12 jmcneill if (len >= 0)
549 1.12 jmcneill device_type[len] = '\0';
550 1.1 macallan
551 1.1 macallan if (argc == optind) {
552 1.1 macallan if (lflag)
553 1.12 jmcneill oflist(phandle, device_type, 0, of_buf, sizeof(of_buf));
554 1.1 macallan else
555 1.1 macallan ofprop(phandle);
556 1.1 macallan } else {
557 1.1 macallan for (; optind < argc; optind++) {
558 1.1 macallan ofgetprop(phandle, argv[optind]);
559 1.1 macallan }
560 1.1 macallan }
561 1.1 macallan }
562 1.1 macallan exit(0);
563 1.1 macallan }
564 1.1 macallan
565 1.1 macallan static size_t
566 1.1 macallan ofname(int node, char *buf, size_t buflen)
567 1.1 macallan {
568 1.1 macallan u_int8_t address_cells_buf[4];
569 1.1 macallan u_int8_t reg_buf[4096];
570 1.1 macallan char name[33];
571 1.1 macallan char device_type[33];
572 1.1 macallan size_t off = 0;
573 1.1 macallan int parent = OF_parent(node);
574 1.1 macallan int reglen;
575 1.1 macallan int reg[sizeof(reg_buf)/sizeof(int)];
576 1.1 macallan int address_cells;
577 1.1 macallan int len;
578 1.1 macallan
579 1.1 macallan len = OF_getprop(node, "name", name, sizeof(name));
580 1.11 mrg if (len <= 0)
581 1.11 mrg name[0] = '\0';
582 1.1 macallan off += snprintf(buf + off, buflen - off, "/%s", name);
583 1.1 macallan
584 1.1 macallan reglen = OF_getprop(node, "reg", reg_buf, sizeof(reg_buf));
585 1.1 macallan if (reglen <= 0)
586 1.1 macallan return off;
587 1.1 macallan
588 1.1 macallan len = OF_getprop(parent, "device_type",
589 1.1 macallan device_type, sizeof(device_type));
590 1.1 macallan if (len <= 0)
591 1.1 macallan len = OF_getprop(parent, "name",
592 1.1 macallan device_type, sizeof(device_type));
593 1.1 macallan device_type[len] = '\0';
594 1.1 macallan
595 1.1 macallan for (;;) {
596 1.1 macallan len = OF_getprop(parent, "#address-cells",
597 1.1 macallan address_cells_buf, sizeof(address_cells_buf));
598 1.1 macallan if (len >= 0) {
599 1.1 macallan assert(len == 4);
600 1.1 macallan break;
601 1.1 macallan }
602 1.1 macallan parent = OF_parent(parent);
603 1.1 macallan if (parent == 0)
604 1.1 macallan break;
605 1.1 macallan }
606 1.1 macallan
607 1.1 macallan if (parent == 0) {
608 1.1 macallan
609 1.1 macallan parent = OF_parent(node);
610 1.3 macallan
611 1.1 macallan for (;;) {
612 1.1 macallan len = OF_getprop(parent, "#size-cells",
613 1.1 macallan address_cells_buf, sizeof(address_cells_buf));
614 1.1 macallan if (len >= 0) {
615 1.1 macallan assert(len == 4);
616 1.1 macallan break;
617 1.1 macallan }
618 1.1 macallan parent = OF_parent(parent);
619 1.1 macallan if (parent == 0)
620 1.1 macallan break;
621 1.1 macallan }
622 1.3 macallan /* no #size-cells */
623 1.3 macallan len = 0;
624 1.3 macallan }
625 1.3 macallan
626 1.3 macallan if (len == 0) {
627 1.3 macallan /* looks like we're on an OBP2 system */
628 1.3 macallan if (reglen > 12)
629 1.3 macallan return off;
630 1.3 macallan off += snprintf(buf + off, buflen - off, "@");
631 1.3 macallan memcpy(reg, reg_buf, 8);
632 1.3 macallan off += snprintf(buf + off, buflen - off, "%x,%x", reg[0],
633 1.3 macallan reg[1]);
634 1.3 macallan return off;
635 1.1 macallan }
636 1.1 macallan
637 1.1 macallan off += snprintf(buf + off, buflen - off, "@");
638 1.1 macallan address_cells = of_decode_int(address_cells_buf);
639 1.1 macallan for (len = 0; len < address_cells; len ++)
640 1.1 macallan reg[len] = of_decode_int(®_buf[len * 4]);
641 1.1 macallan
642 1.1 macallan if (!strcmp(device_type,"pci")) {
643 1.1 macallan off += snprintf(buf + off, buflen - off,
644 1.1 macallan "%x", (reg[0] >> 11) & 31);
645 1.1 macallan if (reg[0] & 0x700)
646 1.1 macallan off += snprintf(buf + off, buflen - off,
647 1.1 macallan ",%x", (reg[0] >> 8) & 7);
648 1.1 macallan } else if (!strcmp(device_type,"upa")) {
649 1.1 macallan off += snprintf(buf + off, buflen - off,
650 1.1 macallan "%x", (reg[0] >> 4) & 63);
651 1.1 macallan for (len = 1; len < address_cells; len++)
652 1.1 macallan off += snprintf(buf + off, buflen - off,
653 1.1 macallan ",%x", reg[len]);
654 1.1 macallan #if !defined(__sparc__) && !defined(__sparc64__)
655 1.1 macallan } else if (!strcmp(device_type,"isa")) {
656 1.1 macallan #endif
657 1.1 macallan } else {
658 1.1 macallan off += snprintf(buf + off, buflen - off, "%x", reg[0]);
659 1.1 macallan for (len = 1; len < address_cells; len++)
660 1.1 macallan off += snprintf(buf + off, buflen - off,
661 1.1 macallan ",%x", reg[len]);
662 1.1 macallan }
663 1.1 macallan return off;
664 1.1 macallan }
665 1.1 macallan
666 1.1 macallan static size_t
667 1.1 macallan offullname2(int node, char *buf, size_t len)
668 1.1 macallan {
669 1.1 macallan size_t off;
670 1.1 macallan int parent = OF_parent(node);
671 1.1 macallan if (parent == 0)
672 1.1 macallan return 0;
673 1.1 macallan
674 1.1 macallan off = offullname2(parent, buf, len);
675 1.1 macallan off += ofname(node, buf + off, len - off);
676 1.1 macallan return off;
677 1.1 macallan }
678 1.1 macallan
679 1.1 macallan static size_t
680 1.1 macallan offullname(int node, char *buf, size_t len)
681 1.1 macallan {
682 1.1 macallan if (node == OF_peer(0)) {
683 1.1 macallan size_t off = snprintf(buf, len, "/");
684 1.1 macallan off += OF_getprop(node, "name", buf + off, len - off);
685 1.1 macallan return off;
686 1.1 macallan }
687 1.1 macallan return offullname2(node, buf, len);
688 1.1 macallan }
689 1.1 macallan
690 1.1 macallan static void
691 1.1 macallan oflist(int node, const char *parent_device_type, int depth,
692 1.1 macallan void *of_buf, size_t of_buflen)
693 1.1 macallan {
694 1.1 macallan int len;
695 1.1 macallan while (node != 0) {
696 1.1 macallan int child;
697 1.1 macallan if (pflag == 0) {
698 1.1 macallan len = ofname(node, of_buf, of_buflen-1);
699 1.1 macallan printf("%08x: %*s%s", node, depth * 2, "",
700 1.1 macallan (char *) of_buf);
701 1.1 macallan } else {
702 1.1 macallan len = offullname(node, of_buf, of_buflen-1);
703 1.1 macallan printf("%08x: %s", node, (char *) of_buf);
704 1.1 macallan }
705 1.1 macallan putchar('\n');
706 1.1 macallan if (pflag) {
707 1.1 macallan putchar('\n');
708 1.1 macallan ofprop(node);
709 1.1 macallan puts("\n----------------------------------------"
710 1.1 macallan "----------------------------------------\n\n");
711 1.1 macallan }
712 1.1 macallan child = OF_child(node);
713 1.1 macallan if (child != -1 && child != 0) {
714 1.1 macallan char device_type[33];
715 1.1 macallan len = OF_getprop(node, "device_type",
716 1.1 macallan device_type, sizeof(device_type));
717 1.1 macallan if (len <= 0)
718 1.1 macallan len = OF_getprop(node, "name",
719 1.1 macallan device_type, sizeof(device_type));
720 1.1 macallan if (len >= 0)
721 1.1 macallan device_type[len] = '\0';
722 1.1 macallan depth++;
723 1.1 macallan oflist(child, device_type, depth, of_buf, of_buflen);
724 1.1 macallan depth--;
725 1.1 macallan }
726 1.1 macallan if (depth == 0)
727 1.1 macallan break;
728 1.1 macallan node = OF_peer(node);
729 1.1 macallan }
730 1.1 macallan }
731 1.1 macallan
732 1.1 macallan static void
733 1.1 macallan print_line(const u_int8_t *buf, size_t off, size_t len)
734 1.1 macallan {
735 1.1 macallan if (len - off > 16)
736 1.1 macallan len = off + 16;
737 1.1 macallan
738 1.1 macallan for (; off < ((len + 15) & ~15); off++) {
739 1.1 macallan if (off > 0) {
740 1.1 macallan if ((off & 15) == 0)
741 1.1 macallan printf("%12s%04lx:%7s", "",
742 1.1 macallan (unsigned long int) off, "");
743 1.1 macallan else if ((off & 3) == 0)
744 1.1 macallan putchar(' ');
745 1.1 macallan }
746 1.1 macallan if (off < len)
747 1.1 macallan printf("%02x", buf[off]);
748 1.1 macallan #if 0
749 1.1 macallan else if (off >= ((len + 3) & ~3))
750 1.1 macallan printf(" ");
751 1.1 macallan #endif
752 1.1 macallan else
753 1.1 macallan printf("..");
754 1.1 macallan }
755 1.1 macallan }
756 1.1 macallan
757 1.1 macallan static void
758 1.1 macallan default_format(int node, const u_int8_t *buf, size_t len)
759 1.1 macallan {
760 1.1 macallan size_t off = 0;
761 1.1 macallan while (off < len) {
762 1.1 macallan size_t end;
763 1.1 macallan print_line(buf, off, len);
764 1.1 macallan printf(" "); /* 24 + 32 + 3 = 59, so +3 makes 62 */
765 1.1 macallan end = len;
766 1.1 macallan if (end > off + 16)
767 1.1 macallan end = off + 16;
768 1.1 macallan for (; off < end; off++) {
769 1.1 macallan char ch = buf[off];
770 1.1 macallan if (isascii(ch) &&
771 1.1 macallan (isalnum((int)ch) || ispunct((int)ch) || ch == ' '))
772 1.1 macallan putchar(ch);
773 1.1 macallan else
774 1.1 macallan putchar('.');
775 1.1 macallan }
776 1.1 macallan putchar('\n');
777 1.1 macallan }
778 1.1 macallan }
779 1.1 macallan
780 1.1 macallan static void
781 1.1 macallan reg_format(int node, const u_int8_t *buf, size_t len)
782 1.1 macallan {
783 1.1 macallan /* parent = OF_parent(node); */
784 1.1 macallan default_format(node, buf, len);
785 1.1 macallan }
786 1.1 macallan
787 1.1 macallan static void
788 1.1 macallan frequency_format(int node, const u_int8_t *buf, size_t len)
789 1.1 macallan {
790 1.1 macallan if (len == 4) {
791 1.1 macallan u_int32_t freq = of_decode_int(buf);
792 1.1 macallan u_int32_t divisor, whole, frac;
793 1.1 macallan const char *units = "";
794 1.1 macallan print_line(buf, 0, len);
795 1.1 macallan for (divisor = 1000000000; divisor > 1; divisor /= 1000) {
796 1.1 macallan if (freq >= divisor)
797 1.1 macallan break;
798 1.1 macallan }
799 1.1 macallan whole = freq / divisor;
800 1.1 macallan if (divisor == 1)
801 1.1 macallan frac = 0;
802 1.1 macallan else
803 1.1 macallan frac = (freq / (divisor / 1000)) % 1000;
804 1.1 macallan
805 1.1 macallan switch (divisor) {
806 1.1 macallan case 1000000000: units = "GHz"; break;
807 1.1 macallan case 1000000: units = "MHz"; break;
808 1.1 macallan case 1000: units = "KHz"; break;
809 1.1 macallan case 1: units = "Hz"; break;
810 1.1 macallan }
811 1.1 macallan if (frac > 0)
812 1.1 macallan printf(" %u.%03u%s\n", whole, frac, units);
813 1.1 macallan else
814 1.1 macallan printf(" %u%s\n", whole, units);
815 1.1 macallan } else
816 1.1 macallan default_format(node, buf, len);
817 1.1 macallan }
818 1.1 macallan
819 1.1 macallan static void
820 1.1 macallan size_format(int node, const u_int8_t *buf, size_t len)
821 1.1 macallan {
822 1.1 macallan if (len == 4) {
823 1.1 macallan u_int32_t freq = of_decode_int(buf);
824 1.1 macallan u_int32_t divisor, whole, frac;
825 1.1 macallan const char *units = "";
826 1.1 macallan print_line(buf, 0, len);
827 1.1 macallan for (divisor = 0x40000000; divisor > 1; divisor >>= 10) {
828 1.1 macallan if (freq >= divisor)
829 1.1 macallan break;
830 1.1 macallan }
831 1.1 macallan whole = freq / divisor;
832 1.1 macallan if (divisor == 1)
833 1.1 macallan frac = 0;
834 1.1 macallan else
835 1.1 macallan frac = (freq / (divisor >> 10)) & 1023;
836 1.1 macallan
837 1.1 macallan switch (divisor) {
838 1.1 macallan case 0x40000000: units = "G"; break;
839 1.1 macallan case 0x100000: units = "M"; break;
840 1.1 macallan case 0x400: units = "K"; break;
841 1.1 macallan case 1: units = ""; break;
842 1.1 macallan }
843 1.1 macallan if (frac > 0)
844 1.1 macallan printf(" %3u.%03u%s\n", whole, frac, units);
845 1.1 macallan else
846 1.1 macallan printf(" %3u%s\n", whole, units);
847 1.1 macallan } else
848 1.1 macallan default_format(node, buf, len);
849 1.1 macallan }
850 1.1 macallan
851 1.1 macallan static void
852 1.1 macallan string_format(int node, const u_int8_t *buf, size_t len)
853 1.1 macallan {
854 1.1 macallan size_t off = 0;
855 1.1 macallan int first_line = 1;
856 1.1 macallan while (off < len) {
857 1.1 macallan size_t string_len = 0;
858 1.1 macallan int leading = 1;
859 1.1 macallan for (; off + string_len < len; string_len++) {
860 1.1 macallan if (buf[off+string_len] == '\0') {
861 1.1 macallan string_len++;
862 1.1 macallan break;
863 1.1 macallan }
864 1.1 macallan }
865 1.1 macallan while (string_len > 0) {
866 1.1 macallan size_t line_len = string_len;
867 1.1 macallan if (line_len > 16)
868 1.1 macallan line_len = 16;
869 1.1 macallan if (!first_line)
870 1.1 macallan printf("%12s%04lx:%7s", "",
871 1.1 macallan (unsigned long int) off, "");
872 1.1 macallan print_line(buf + off, 0, line_len);
873 1.1 macallan printf(" ");
874 1.1 macallan if (leading)
875 1.1 macallan putchar('"');
876 1.1 macallan first_line = 0;
877 1.1 macallan leading = 0;
878 1.1 macallan string_len -= line_len;
879 1.1 macallan for (; line_len > 0; line_len--, off++) {
880 1.1 macallan if (buf[off] != '\0')
881 1.1 macallan putchar(buf[off]);
882 1.1 macallan }
883 1.1 macallan if (string_len == 0)
884 1.1 macallan putchar('"');
885 1.1 macallan putchar('\n');
886 1.1 macallan }
887 1.1 macallan }
888 1.1 macallan }
889 1.1 macallan
890 1.1 macallan static const struct {
891 1.1 macallan const char *prop_name;
892 1.1 macallan void (*prop_format)(int, const u_int8_t *, size_t);
893 1.1 macallan } formatters[] = {
894 1.1 macallan { "reg", reg_format },
895 1.1 macallan #if 0
896 1.1 macallan { "assigned-addresses", assigned_addresses_format },
897 1.1 macallan { "ranges", ranges_format },
898 1.1 macallan { "interrupt-map", interrup_map_format },
899 1.1 macallan { "interrupt", interrupt_format },
900 1.1 macallan #endif
901 1.1 macallan { "model", string_format },
902 1.1 macallan { "name", string_format },
903 1.1 macallan { "device_type", string_format },
904 1.1 macallan { "compatible", string_format },
905 1.1 macallan { "*frequency", frequency_format },
906 1.1 macallan { "*-size", size_format },
907 1.1 macallan { "*-cells", size_format },
908 1.1 macallan { "*-entries", size_format },
909 1.1 macallan { "*-associativity", size_format },
910 1.1 macallan { NULL, default_format }
911 1.1 macallan };
912 1.1 macallan
913 1.1 macallan static void
914 1.10 lukem ofgetprop(int node, const char *name)
915 1.1 macallan {
916 1.1 macallan u_int8_t of_buf[4097];
917 1.1 macallan int len;
918 1.1 macallan int i;
919 1.1 macallan
920 1.1 macallan len = OF_getprop(node, name, of_buf, sizeof(of_buf) - 1);
921 1.1 macallan if (len < 0)
922 1.1 macallan return;
923 1.1 macallan of_buf[len] = '\0';
924 1.1 macallan printf("%-24s", name);
925 1.1 macallan if (len == 0) {
926 1.1 macallan putchar('\n');
927 1.1 macallan return;
928 1.1 macallan }
929 1.1 macallan if (strlen(name) >= 24)
930 1.1 macallan printf("\n%24s", "");
931 1.1 macallan
932 1.1 macallan for (i = 0; formatters[i].prop_name != NULL; i++) {
933 1.1 macallan if (formatters[i].prop_name[0] == '*') {
934 1.1 macallan if (strstr(name, &formatters[i].prop_name[1]) != NULL) {
935 1.1 macallan (*formatters[i].prop_format)(node, of_buf, len);
936 1.1 macallan return;
937 1.1 macallan }
938 1.1 macallan continue;
939 1.1 macallan }
940 1.1 macallan if (strcmp(name, formatters[i].prop_name) == 0) {
941 1.1 macallan (*formatters[i].prop_format)(node, of_buf, len);
942 1.1 macallan return;
943 1.1 macallan }
944 1.1 macallan }
945 1.1 macallan (*formatters[i].prop_format)(node, of_buf, len);
946 1.1 macallan }
947 1.1 macallan
948 1.1 macallan static void
949 1.1 macallan ofprop(int node)
950 1.1 macallan {
951 1.1 macallan char namebuf[33];
952 1.1 macallan char newnamebuf[33];
953 1.1 macallan int len;
954 1.1 macallan
955 1.1 macallan namebuf[0] = '\0';
956 1.1 macallan
957 1.1 macallan for (;;) {
958 1.1 macallan len = OF_nextprop(node, namebuf, newnamebuf);
959 1.1 macallan if (len <= 0)
960 1.1 macallan break;
961 1.1 macallan
962 1.1 macallan newnamebuf[len] = '\0';
963 1.1 macallan strcpy(namebuf, newnamebuf);
964 1.1 macallan ofgetprop(node, newnamebuf);
965 1.1 macallan }
966 1.1 macallan }
967 1.1 macallan #if 0
968 1.1 macallan static int
969 1.1 macallan isstrprint(const char *str, size_t len, int ignorenulls)
970 1.1 macallan {
971 1.1 macallan if (*str == '\0')
972 1.1 macallan return 0;
973 1.1 macallan for (; len-- > 0; str++) {
974 1.1 macallan if (*str == '\0' && len > 0 && str[1] == '\0')
975 1.1 macallan return 0;
976 1.1 macallan if (len == 0 && *str == '\0')
977 1.1 macallan return 1;
978 1.1 macallan if (ignorenulls) {
979 1.1 macallan if (*str == '\0')
980 1.1 macallan continue;
981 1.1 macallan if (isalnum(*str) || ispunct(*str) || *str == ' ')
982 1.1 macallan continue;
983 1.1 macallan return 0;
984 1.1 macallan }
985 1.1 macallan if (!isprint(*str))
986 1.1 macallan return 0;
987 1.1 macallan }
988 1.1 macallan return 1;
989 1.1 macallan }
990 1.1 macallan #endif
991