ofw_subr.c revision 1.55 1 1.55 thorpej /* $NetBSD: ofw_subr.c,v 1.55 2021/01/27 04:55:42 thorpej Exp $ */
2 1.1 cgd
3 1.1 cgd /*
4 1.1 cgd * Copyright 1998
5 1.1 cgd * Digital Equipment Corporation. All rights reserved.
6 1.1 cgd *
7 1.1 cgd * This software is furnished under license and may be used and
8 1.1 cgd * copied only in accordance with the following terms and conditions.
9 1.1 cgd * Subject to these conditions, you may download, copy, install,
10 1.1 cgd * use, modify and distribute this software in source and/or binary
11 1.1 cgd * form. No title or ownership is transferred hereby.
12 1.1 cgd *
13 1.1 cgd * 1) Any source code used, modified or distributed must reproduce
14 1.1 cgd * and retain this copyright notice and list of conditions as
15 1.1 cgd * they appear in the source file.
16 1.1 cgd *
17 1.1 cgd * 2) No right is granted to use any trade name, trademark, or logo of
18 1.1 cgd * Digital Equipment Corporation. Neither the "Digital Equipment
19 1.1 cgd * Corporation" name nor any trademark or logo of Digital Equipment
20 1.1 cgd * Corporation may be used to endorse or promote products derived
21 1.1 cgd * from this software without the prior written permission of
22 1.1 cgd * Digital Equipment Corporation.
23 1.1 cgd *
24 1.1 cgd * 3) This software is provided "AS-IS" and any express or implied
25 1.1 cgd * warranties, including but not limited to, any implied warranties
26 1.1 cgd * of merchantability, fitness for a particular purpose, or
27 1.1 cgd * non-infringement are disclaimed. In no event shall DIGITAL be
28 1.1 cgd * liable for any damages whatsoever, and in particular, DIGITAL
29 1.1 cgd * shall not be liable for special, indirect, consequential, or
30 1.1 cgd * incidental damages or damages for lost profits, loss of
31 1.1 cgd * revenue or loss of use, whether such damages arise in contract,
32 1.1 cgd * negligence, tort, under statute, in equity, at law or otherwise,
33 1.1 cgd * even if advised of the possibility of such damage.
34 1.1 cgd */
35 1.7 lukem
36 1.7 lukem #include <sys/cdefs.h>
37 1.55 thorpej __KERNEL_RCSID(0, "$NetBSD: ofw_subr.c,v 1.55 2021/01/27 04:55:42 thorpej Exp $");
38 1.1 cgd
39 1.2 cgd #include <sys/param.h>
40 1.42 thorpej #include <sys/device.h>
41 1.46 thorpej #include <sys/kmem.h>
42 1.2 cgd #include <sys/systm.h>
43 1.2 cgd #include <dev/ofw/openfirm.h>
44 1.49 jmcneill #include <dev/i2c/i2cvar.h>
45 1.2 cgd
46 1.3 cgd #define OFW_MAX_STACK_BUF_SIZE 256
47 1.3 cgd #define OFW_PATH_BUF_SIZE 512
48 1.3 cgd
49 1.1 cgd /*
50 1.3 cgd * int of_decode_int(p)
51 1.3 cgd *
52 1.3 cgd * This routine converts OFW encoded-int datums
53 1.3 cgd * into the integer format of the host machine.
54 1.1 cgd *
55 1.3 cgd * It is primarily used to convert integer properties
56 1.3 cgd * returned by the OF_getprop routine.
57 1.2 cgd *
58 1.2 cgd * Arguments:
59 1.2 cgd * p pointer to unsigned char array which is an
60 1.2 cgd * OFW-encoded integer.
61 1.2 cgd *
62 1.2 cgd * Return Value:
63 1.2 cgd * Decoded integer value of argument p.
64 1.3 cgd *
65 1.3 cgd * Side Effects:
66 1.3 cgd * None.
67 1.1 cgd */
68 1.1 cgd int
69 1.14 dsl of_decode_int(const unsigned char *p)
70 1.1 cgd {
71 1.1 cgd unsigned int i = *p++ << 8;
72 1.1 cgd i = (i + *p++) << 8;
73 1.1 cgd i = (i + *p++) << 8;
74 1.1 cgd return (i + *p);
75 1.2 cgd }
76 1.2 cgd
77 1.2 cgd /*
78 1.3 cgd * int of_compatible(phandle, strings)
79 1.3 cgd *
80 1.2 cgd * This routine checks an OFW node's "compatible" entry to see if
81 1.2 cgd * it matches any of the provided strings.
82 1.2 cgd *
83 1.54 thorpej * of_compatible_match() is the preferred way to perform driver
84 1.52 thorpej * compatibility match. However, this routine that deals with
85 1.52 thorpej * only strings is useful in some situations and is provided for
86 1.52 thorpej * convenience.
87 1.2 cgd *
88 1.2 cgd * Arguments:
89 1.2 cgd * phandle OFW phandle of device to be checked for
90 1.2 cgd * compatibility.
91 1.2 cgd * strings Array of containing expected "compatibility"
92 1.2 cgd * property values, presence of any of which
93 1.2 cgd * indicates compatibility.
94 1.2 cgd *
95 1.2 cgd * Return Value:
96 1.52 thorpej * 0 if none of the strings are found in phandle's "compatibility"
97 1.24 jmcneill * property, or the reverse index of the matching string in the
98 1.52 thorpej * phandle's "compatibility" property plus 1.
99 1.3 cgd *
100 1.3 cgd * Side Effects:
101 1.3 cgd * None.
102 1.2 cgd */
103 1.2 cgd int
104 1.12 garbled of_compatible(int phandle, const char * const *strings)
105 1.2 cgd {
106 1.47 thorpej char *prop, propbuf[OFW_MAX_STACK_BUF_SIZE];
107 1.47 thorpej const char *cp;
108 1.52 thorpej int proplen, match = 0;
109 1.24 jmcneill
110 1.47 thorpej proplen = OF_getproplen(phandle, "compatible");
111 1.47 thorpej if (proplen <= 0) {
112 1.52 thorpej return 0;
113 1.38 rin }
114 1.2 cgd
115 1.47 thorpej prop = kmem_tmpbuf_alloc(proplen, propbuf, sizeof(propbuf), KM_SLEEP);
116 1.47 thorpej
117 1.47 thorpej if (OF_getprop(phandle, "compatible", prop, proplen) != proplen) {
118 1.2 cgd goto out;
119 1.2 cgd }
120 1.2 cgd
121 1.47 thorpej for (; (cp = *strings) != NULL; strings++) {
122 1.47 thorpej if ((match = strlist_match(prop, proplen, cp)) != 0) {
123 1.47 thorpej break;
124 1.47 thorpej }
125 1.47 thorpej }
126 1.47 thorpej
127 1.47 thorpej out:
128 1.47 thorpej kmem_tmpbuf_free(prop, proplen, propbuf);
129 1.52 thorpej return match;
130 1.24 jmcneill }
131 1.10 perry
132 1.24 jmcneill /*
133 1.54 thorpej * int of_compatible_match(phandle, compat_data)
134 1.30 jmcneill *
135 1.51 thorpej * This routine searches an array of device_compatible_entry structures
136 1.51 thorpej * for a matching "compatible" entry matching the supplied OFW node,
137 1.51 thorpej * and returns a weighted match value corresponding to which string
138 1.51 thorpej * from the "compatible" property was matched, which more weight given
139 1.51 thorpej * to the first string than the last.
140 1.30 jmcneill *
141 1.30 jmcneill * It should be used when determining whether a driver can drive
142 1.30 jmcneill * a particular device.
143 1.30 jmcneill *
144 1.30 jmcneill * Arguments:
145 1.30 jmcneill * phandle OFW phandle of device to be checked for
146 1.30 jmcneill * compatibility.
147 1.30 jmcneill * compat_data Array of possible compat entry strings and
148 1.30 jmcneill * associated metadata. The last entry in the
149 1.30 jmcneill * list should have a "compat" of NULL to terminate
150 1.30 jmcneill * the list.
151 1.30 jmcneill *
152 1.30 jmcneill * Return Value:
153 1.30 jmcneill * 0 if none of the strings are found in phandle's "compatibility"
154 1.30 jmcneill * property, or a positive number based on the reverse index of the
155 1.30 jmcneill * matching string in the phandle's "compatibility" property, plus 1.
156 1.30 jmcneill *
157 1.30 jmcneill * Side Effects:
158 1.30 jmcneill * None.
159 1.30 jmcneill */
160 1.30 jmcneill int
161 1.54 thorpej of_compatible_match(int phandle,
162 1.42 thorpej const struct device_compatible_entry *compat_data)
163 1.30 jmcneill {
164 1.46 thorpej char *prop, propbuf[OFW_MAX_STACK_BUF_SIZE];
165 1.46 thorpej int proplen, match = 0;
166 1.46 thorpej
167 1.46 thorpej proplen = OF_getproplen(phandle, "compatible");
168 1.46 thorpej if (proplen <= 0) {
169 1.46 thorpej return 0;
170 1.46 thorpej }
171 1.46 thorpej
172 1.46 thorpej prop = kmem_tmpbuf_alloc(proplen, propbuf, sizeof(propbuf), KM_SLEEP);
173 1.46 thorpej
174 1.46 thorpej if (OF_getprop(phandle, "compatible", prop, proplen) != proplen) {
175 1.46 thorpej goto out;
176 1.30 jmcneill }
177 1.46 thorpej
178 1.46 thorpej match = device_compatible_match_strlist(prop, proplen, compat_data);
179 1.46 thorpej
180 1.46 thorpej out:
181 1.46 thorpej kmem_tmpbuf_free(prop, proplen, propbuf);
182 1.46 thorpej return match;
183 1.30 jmcneill }
184 1.30 jmcneill
185 1.30 jmcneill /*
186 1.54 thorpej * const struct device_compatible_entry *of_compatible_lookup(phandle,
187 1.43 jmcneill * compat_data)
188 1.29 jmcneill *
189 1.51 thorpej * This routine searches an array of device_compatible_entry structures
190 1.51 thorpej * for a "compatible" entry matching the supplied OFW node.
191 1.29 jmcneill *
192 1.29 jmcneill * Arguments:
193 1.29 jmcneill * phandle OFW phandle of device to be checked for
194 1.29 jmcneill * compatibility.
195 1.29 jmcneill * compat_data Array of possible compat entry strings and
196 1.29 jmcneill * associated metadata. The last entry in the
197 1.29 jmcneill * list should have a "compat" of NULL to terminate
198 1.29 jmcneill * the list.
199 1.29 jmcneill *
200 1.29 jmcneill * Return Value:
201 1.29 jmcneill * The first matching compat_data entry in the array. If no matches
202 1.46 thorpej * are found, NULL is returned.
203 1.29 jmcneill *
204 1.29 jmcneill * Side Effects:
205 1.29 jmcneill * None.
206 1.29 jmcneill */
207 1.42 thorpej const struct device_compatible_entry *
208 1.54 thorpej of_compatible_lookup(int phandle,
209 1.42 thorpej const struct device_compatible_entry *compat_data)
210 1.29 jmcneill {
211 1.46 thorpej char *prop, propbuf[OFW_MAX_STACK_BUF_SIZE];
212 1.46 thorpej const struct device_compatible_entry *match = NULL;
213 1.46 thorpej int proplen;
214 1.46 thorpej
215 1.46 thorpej proplen = OF_getproplen(phandle, "compatible");
216 1.46 thorpej if (proplen <= 0) {
217 1.46 thorpej return 0;
218 1.29 jmcneill }
219 1.46 thorpej
220 1.46 thorpej prop = kmem_tmpbuf_alloc(proplen, propbuf, sizeof(propbuf), KM_SLEEP);
221 1.46 thorpej
222 1.46 thorpej if (OF_getprop(phandle, "compatible", prop, proplen) != proplen) {
223 1.46 thorpej goto out;
224 1.46 thorpej }
225 1.46 thorpej
226 1.46 thorpej match = device_compatible_lookup_strlist(prop, proplen, compat_data);
227 1.46 thorpej
228 1.46 thorpej out:
229 1.46 thorpej kmem_tmpbuf_free(prop, proplen, propbuf);
230 1.46 thorpej return match;
231 1.29 jmcneill }
232 1.29 jmcneill
233 1.29 jmcneill /*
234 1.4 cgd * int of_packagename(phandle, buf, bufsize)
235 1.3 cgd *
236 1.3 cgd * This routine places the last component of an OFW node's name
237 1.3 cgd * into a user-provided buffer.
238 1.3 cgd *
239 1.3 cgd * It can be used during autoconfiguration to make printing of
240 1.3 cgd * device names more informative.
241 1.3 cgd *
242 1.3 cgd * Arguments:
243 1.3 cgd * phandle OFW phandle of device whose name name is
244 1.3 cgd * desired.
245 1.3 cgd * buf Buffer to contain device name, provided by
246 1.3 cgd * caller. (For now, must be at least 4
247 1.3 cgd * bytes long.)
248 1.3 cgd * bufsize Length of buffer referenced by 'buf', in
249 1.3 cgd * bytes.
250 1.3 cgd *
251 1.3 cgd * Return Value:
252 1.3 cgd * -1 if the device path name could not be obtained or would
253 1.3 cgd * not fit in the allocated temporary buffer, or zero otherwise
254 1.6 soren * (meaning that the leaf node name was successfully extracted).
255 1.3 cgd *
256 1.3 cgd * Side Effects:
257 1.3 cgd * If the leaf node name was successfully extracted, 'buf' is
258 1.3 cgd * filled in with at most 'bufsize' bytes of the leaf node
259 1.3 cgd * name. If the leaf node was not successfully extracted, a
260 1.3 cgd * somewhat meaningful string is placed in the buffer. In
261 1.3 cgd * either case, the contents of 'buf' will be NUL-terminated.
262 1.3 cgd */
263 1.3 cgd int
264 1.12 garbled of_packagename(int phandle, char *buf, int bufsize)
265 1.3 cgd {
266 1.3 cgd char *pbuf;
267 1.3 cgd const char *lastslash;
268 1.3 cgd int l, rv;
269 1.3 cgd
270 1.48 thorpej pbuf = kmem_alloc(OFW_PATH_BUF_SIZE, KM_SLEEP);
271 1.3 cgd l = OF_package_to_path(phandle, pbuf, OFW_PATH_BUF_SIZE);
272 1.3 cgd
273 1.3 cgd /* check that we could get the name, and that it's not too long. */
274 1.3 cgd if (l < 0 ||
275 1.3 cgd (l == OFW_PATH_BUF_SIZE && pbuf[OFW_PATH_BUF_SIZE - 1] != '\0')) {
276 1.3 cgd if (bufsize >= 25)
277 1.9 itojun snprintf(buf, bufsize, "??? (phandle 0x%x)", phandle);
278 1.3 cgd else if (bufsize >= 4)
279 1.9 itojun strlcpy(buf, "???", bufsize);
280 1.3 cgd else
281 1.4 cgd panic("of_packagename: bufsize = %d is silly",
282 1.4 cgd bufsize);
283 1.3 cgd rv = -1;
284 1.3 cgd } else {
285 1.5 mycroft pbuf[l] = '\0';
286 1.3 cgd lastslash = strrchr(pbuf, '/');
287 1.9 itojun strlcpy(buf, (lastslash == NULL) ? pbuf : (lastslash + 1),
288 1.3 cgd bufsize);
289 1.3 cgd rv = 0;
290 1.3 cgd }
291 1.3 cgd
292 1.48 thorpej kmem_free(pbuf, OFW_PATH_BUF_SIZE);
293 1.3 cgd return (rv);
294 1.1 cgd }
295 1.12 garbled
296 1.12 garbled /*
297 1.13 garbled * Find the first child of a given node that matches name. Does not recurse.
298 1.12 garbled */
299 1.12 garbled int
300 1.12 garbled of_find_firstchild_byname(int node, const char *name)
301 1.12 garbled {
302 1.12 garbled char namex[32];
303 1.12 garbled int nn;
304 1.12 garbled
305 1.12 garbled for (nn = OF_child(node); nn; nn = OF_peer(nn)) {
306 1.12 garbled memset(namex, 0, sizeof(namex));
307 1.12 garbled if (OF_getprop(nn, "name", namex, sizeof(namex)) == -1)
308 1.12 garbled continue;
309 1.12 garbled if (strcmp(name, namex) == 0)
310 1.12 garbled return nn;
311 1.12 garbled }
312 1.12 garbled return -1;
313 1.12 garbled }
314 1.13 garbled
315 1.13 garbled /*
316 1.40 jmcneill * Find a child node that is compatible with str. Recurses, starting at node.
317 1.40 jmcneill */
318 1.40 jmcneill int
319 1.40 jmcneill of_find_bycompat(int node, const char *str)
320 1.40 jmcneill {
321 1.40 jmcneill const char * compatible[] = { str, NULL };
322 1.40 jmcneill int child, ret;
323 1.40 jmcneill
324 1.40 jmcneill for (child = OF_child(node); child; child = OF_peer(child)) {
325 1.53 thorpej if (of_compatible(child, compatible))
326 1.40 jmcneill return child;
327 1.40 jmcneill ret = of_find_bycompat(child, str);
328 1.40 jmcneill if (ret != -1)
329 1.40 jmcneill return ret;
330 1.40 jmcneill }
331 1.40 jmcneill
332 1.40 jmcneill return -1;
333 1.40 jmcneill }
334 1.40 jmcneill
335 1.40 jmcneill /*
336 1.13 garbled * Find a give node by name. Recurses, and seems to walk upwards too.
337 1.13 garbled */
338 1.13 garbled
339 1.13 garbled int
340 1.13 garbled of_getnode_byname(int start, const char *target)
341 1.13 garbled {
342 1.13 garbled int node, next;
343 1.13 garbled char name[64];
344 1.13 garbled
345 1.13 garbled if (start == 0)
346 1.13 garbled start = OF_peer(0);
347 1.13 garbled
348 1.13 garbled for (node = start; node; node = next) {
349 1.13 garbled memset(name, 0, sizeof name);
350 1.13 garbled OF_getprop(node, "name", name, sizeof name - 1);
351 1.13 garbled if (strcmp(name, target) == 0)
352 1.13 garbled break;
353 1.13 garbled
354 1.13 garbled if ((next = OF_child(node)) != 0)
355 1.13 garbled continue;
356 1.13 garbled
357 1.13 garbled while (node) {
358 1.13 garbled if ((next = OF_peer(node)) != 0)
359 1.13 garbled break;
360 1.13 garbled node = OF_parent(node);
361 1.13 garbled }
362 1.13 garbled }
363 1.13 garbled
364 1.13 garbled /* XXX is this correct? */
365 1.13 garbled return node;
366 1.13 garbled }
367 1.13 garbled
368 1.13 garbled /*
369 1.13 garbled * Create a uint32_t integer property from an OFW node property.
370 1.13 garbled */
371 1.13 garbled
372 1.50 mrg bool
373 1.13 garbled of_to_uint32_prop(prop_dictionary_t dict, int node, const char *ofname,
374 1.13 garbled const char *propname)
375 1.13 garbled {
376 1.13 garbled uint32_t prop;
377 1.13 garbled
378 1.13 garbled if (OF_getprop(node, ofname, &prop, sizeof(prop)) != sizeof(prop))
379 1.13 garbled return FALSE;
380 1.13 garbled
381 1.13 garbled return(prop_dictionary_set_uint32(dict, propname, prop));
382 1.13 garbled }
383 1.13 garbled
384 1.13 garbled /*
385 1.13 garbled * Create a data property from an OFW node property. Max size of 256bytes.
386 1.13 garbled */
387 1.13 garbled
388 1.50 mrg bool
389 1.13 garbled of_to_dataprop(prop_dictionary_t dict, int node, const char *ofname,
390 1.13 garbled const char *propname)
391 1.13 garbled {
392 1.13 garbled int len;
393 1.13 garbled uint8_t prop[256];
394 1.13 garbled
395 1.13 garbled len = OF_getprop(node, ofname, prop, 256);
396 1.13 garbled if (len < 1)
397 1.13 garbled return FALSE;
398 1.13 garbled
399 1.36 thorpej return prop_dictionary_set_data(dict, propname, prop, len);
400 1.13 garbled }
401 1.15 macallan
402 1.15 macallan /*
403 1.15 macallan * look at output-device, see if there's a Sun-typical video mode specifier as
404 1.15 macallan * in screen:r1024x768x60 attached. If found copy it into *buffer, otherwise
405 1.15 macallan * return NULL
406 1.15 macallan */
407 1.15 macallan
408 1.15 macallan char *
409 1.15 macallan of_get_mode_string(char *buffer, int len)
410 1.15 macallan {
411 1.15 macallan int options;
412 1.15 macallan char *pos, output_device[256];
413 1.15 macallan
414 1.15 macallan /*
415 1.15 macallan * finally, let's see if there's a video mode specified in
416 1.15 macallan * output-device and pass it on so there's at least some way
417 1.15 macallan * to program video modes
418 1.15 macallan */
419 1.15 macallan options = OF_finddevice("/options");
420 1.15 macallan if ((options == 0) || (options == -1))
421 1.15 macallan return NULL;
422 1.15 macallan if (OF_getprop(options, "output-device", output_device, 256) == 0)
423 1.15 macallan return NULL;
424 1.15 macallan
425 1.15 macallan /* find the mode string if there is one */
426 1.15 macallan pos = strstr(output_device, ":r");
427 1.15 macallan if (pos == NULL)
428 1.15 macallan return NULL;
429 1.15 macallan strncpy(buffer, pos + 2, len);
430 1.15 macallan return buffer;
431 1.15 macallan }
432 1.17 martin
433 1.17 martin /*
434 1.17 martin * Iterate over the subtree of a i2c controller node.
435 1.17 martin * Add all sub-devices into an array as part of the controller's
436 1.17 martin * device properties.
437 1.17 martin * This is used by the i2c bus attach code to do direct configuration.
438 1.17 martin */
439 1.17 martin void
440 1.26 jmcneill of_enter_i2c_devs(prop_dictionary_t props, int ofnode, size_t cell_size,
441 1.26 jmcneill int addr_shift)
442 1.17 martin {
443 1.17 martin int node, len;
444 1.31 thorpej char name[32];
445 1.18 martin uint64_t reg64;
446 1.18 martin uint32_t reg32;
447 1.18 martin uint64_t addr;
448 1.19 jdc prop_array_t array = NULL;
449 1.17 martin prop_dictionary_t dev;
450 1.17 martin
451 1.17 martin for (node = OF_child(ofnode); node; node = OF_peer(node)) {
452 1.17 martin if (OF_getprop(node, "name", name, sizeof(name)) <= 0)
453 1.17 martin continue;
454 1.17 martin len = OF_getproplen(node, "reg");
455 1.18 martin addr = 0;
456 1.18 martin if (cell_size == 8 && len >= sizeof(reg64)) {
457 1.18 martin if (OF_getprop(node, "reg", ®64, sizeof(reg64))
458 1.18 martin < sizeof(reg64))
459 1.17 martin continue;
460 1.25 jmcneill addr = be64toh(reg64);
461 1.20 jdc /*
462 1.20 jdc * The i2c bus number (0 or 1) is encoded in bit 33
463 1.20 jdc * of the register, but we encode it in bit 8 of
464 1.20 jdc * i2c_addr_t.
465 1.20 jdc */
466 1.20 jdc if (addr & 0x100000000)
467 1.20 jdc addr = (addr & 0xff) | 0x100;
468 1.18 martin } else if (cell_size == 4 && len >= sizeof(reg32)) {
469 1.18 martin if (OF_getprop(node, "reg", ®32, sizeof(reg32))
470 1.18 martin < sizeof(reg32))
471 1.17 martin continue;
472 1.25 jmcneill addr = be32toh(reg32);
473 1.17 martin } else {
474 1.18 martin continue;
475 1.17 martin }
476 1.26 jmcneill addr >>= addr_shift;
477 1.18 martin if (addr == 0) continue;
478 1.17 martin
479 1.19 jdc if (array == NULL)
480 1.19 jdc array = prop_array_create();
481 1.19 jdc
482 1.17 martin dev = prop_dictionary_create();
483 1.35 thorpej prop_dictionary_set_string(dev, "name", name);
484 1.18 martin prop_dictionary_set_uint32(dev, "addr", addr);
485 1.17 martin prop_dictionary_set_uint64(dev, "cookie", node);
486 1.49 jmcneill prop_dictionary_set_uint32(dev, "cookietype", I2C_COOKIE_OF);
487 1.17 martin of_to_dataprop(dev, node, "compatible", "compatible");
488 1.17 martin prop_array_add(array, dev);
489 1.17 martin prop_object_release(dev);
490 1.17 martin }
491 1.17 martin
492 1.19 jdc if (array != NULL) {
493 1.19 jdc prop_dictionary_set(props, "i2c-child-devices", array);
494 1.19 jdc prop_object_release(array);
495 1.19 jdc }
496 1.17 martin }
497 1.27 jmcneill
498 1.34 tnn void
499 1.34 tnn of_enter_spi_devs(prop_dictionary_t props, int ofnode, size_t cell_size)
500 1.34 tnn {
501 1.34 tnn int node, len;
502 1.34 tnn char name[32];
503 1.34 tnn uint64_t reg64;
504 1.34 tnn uint32_t reg32;
505 1.34 tnn uint32_t slave;
506 1.34 tnn u_int32_t maxfreq;
507 1.34 tnn prop_array_t array = NULL;
508 1.34 tnn prop_dictionary_t dev;
509 1.34 tnn int mode;
510 1.34 tnn
511 1.34 tnn for (node = OF_child(ofnode); node; node = OF_peer(node)) {
512 1.34 tnn if (OF_getprop(node, "name", name, sizeof(name)) <= 0)
513 1.34 tnn continue;
514 1.34 tnn len = OF_getproplen(node, "reg");
515 1.34 tnn slave = 0;
516 1.34 tnn if (cell_size == 8 && len >= sizeof(reg64)) {
517 1.34 tnn if (OF_getprop(node, "reg", ®64, sizeof(reg64))
518 1.34 tnn < sizeof(reg64))
519 1.34 tnn continue;
520 1.34 tnn slave = be64toh(reg64);
521 1.34 tnn } else if (cell_size == 4 && len >= sizeof(reg32)) {
522 1.34 tnn if (OF_getprop(node, "reg", ®32, sizeof(reg32))
523 1.34 tnn < sizeof(reg32))
524 1.34 tnn continue;
525 1.34 tnn slave = be32toh(reg32);
526 1.34 tnn } else {
527 1.34 tnn continue;
528 1.34 tnn }
529 1.34 tnn if (of_getprop_uint32(node, "spi-max-frequency", &maxfreq)) {
530 1.34 tnn maxfreq = 0;
531 1.34 tnn }
532 1.34 tnn mode = ((int)of_hasprop(node, "cpol") << 1) | (int)of_hasprop(node, "cpha");
533 1.34 tnn
534 1.34 tnn if (array == NULL)
535 1.34 tnn array = prop_array_create();
536 1.34 tnn
537 1.34 tnn dev = prop_dictionary_create();
538 1.35 thorpej prop_dictionary_set_string(dev, "name", name);
539 1.34 tnn prop_dictionary_set_uint32(dev, "slave", slave);
540 1.34 tnn prop_dictionary_set_uint32(dev, "mode", mode);
541 1.34 tnn if (maxfreq > 0)
542 1.34 tnn prop_dictionary_set_uint32(dev, "spi-max-frequency", maxfreq);
543 1.34 tnn prop_dictionary_set_uint64(dev, "cookie", node);
544 1.34 tnn of_to_dataprop(dev, node, "compatible", "compatible");
545 1.34 tnn prop_array_add(array, dev);
546 1.34 tnn prop_object_release(dev);
547 1.34 tnn }
548 1.34 tnn
549 1.34 tnn if (array != NULL) {
550 1.34 tnn prop_dictionary_set(props, "spi-child-devices", array);
551 1.34 tnn prop_object_release(array);
552 1.34 tnn }
553 1.34 tnn }
554 1.34 tnn
555 1.34 tnn
556 1.27 jmcneill /*
557 1.28 jmcneill * Returns true if the specified property is present.
558 1.27 jmcneill */
559 1.27 jmcneill bool
560 1.28 jmcneill of_hasprop(int node, const char *prop)
561 1.27 jmcneill {
562 1.27 jmcneill return OF_getproplen(node, prop) >= 0;
563 1.27 jmcneill }
564 1.27 jmcneill
565 1.27 jmcneill /*
566 1.27 jmcneill * Get the value of a uint32 property, compensating for host byte order.
567 1.27 jmcneill * Returns 0 on success, non-zero on failure.
568 1.27 jmcneill */
569 1.27 jmcneill int
570 1.27 jmcneill of_getprop_uint32(int node, const char *prop, uint32_t *val)
571 1.27 jmcneill {
572 1.27 jmcneill uint32_t v;
573 1.27 jmcneill int len;
574 1.27 jmcneill
575 1.27 jmcneill len = OF_getprop(node, prop, &v, sizeof(v));
576 1.27 jmcneill if (len != sizeof(v))
577 1.27 jmcneill return -1;
578 1.27 jmcneill
579 1.27 jmcneill *val = be32toh(v);
580 1.27 jmcneill return 0;
581 1.27 jmcneill }
582 1.32 jmcneill
583 1.41 ryo int
584 1.41 ryo of_getprop_uint32_array(int node, const char *prop, uint32_t *array, int n)
585 1.41 ryo {
586 1.41 ryo uint32_t *v = array;
587 1.41 ryo int len;
588 1.41 ryo
589 1.41 ryo len = OF_getprop(node, prop, array, n * sizeof(*v));
590 1.41 ryo if (len < (int)(n * sizeof(*v)))
591 1.41 ryo return -1;
592 1.41 ryo
593 1.41 ryo for (; n > 0; n--) {
594 1.41 ryo BE32TOH(*v);
595 1.41 ryo v++;
596 1.41 ryo }
597 1.41 ryo
598 1.41 ryo return 0;
599 1.41 ryo }
600 1.32 jmcneill /*
601 1.32 jmcneill * Get the value of a uint64 property, compensating for host byte order.
602 1.32 jmcneill * Returns 0 on success, non-zero on failure.
603 1.32 jmcneill */
604 1.32 jmcneill int
605 1.32 jmcneill of_getprop_uint64(int node, const char *prop, uint64_t *val)
606 1.32 jmcneill {
607 1.32 jmcneill uint64_t v;
608 1.32 jmcneill int len;
609 1.32 jmcneill
610 1.32 jmcneill len = OF_getprop(node, prop, &v, sizeof(v));
611 1.32 jmcneill if (len != sizeof(v))
612 1.32 jmcneill return -1;
613 1.32 jmcneill
614 1.32 jmcneill *val = be64toh(v);
615 1.32 jmcneill return 0;
616 1.32 jmcneill }
617