1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3 * Copyright (c) 2017 Google, Inc
4 * Written by Simon Glass <sjg@chromium.org>
5 */
6
7 #include <common.h>
8 #include <dm.h>
9 #include <fdtdec.h>
10 #include <fdt_support.h>
11 #include <log.h>
12 #include <malloc.h>
13 #include <linux/libfdt.h>
14 #include <dm/of_access.h>
15 #include <dm/of_addr.h>
16 #include <dm/ofnode.h>
17 #include <linux/err.h>
18 #include <linux/ioport.h>
19 #include <asm/global_data.h>
20
ofnode_read_u32(ofnode node,const char * propname,u32 * outp)21 int ofnode_read_u32(ofnode node, const char *propname, u32 *outp)
22 {
23 return ofnode_read_u32_index(node, propname, 0, outp);
24 }
25
ofnode_read_u32_default(ofnode node,const char * propname,u32 def)26 u32 ofnode_read_u32_default(ofnode node, const char *propname, u32 def)
27 {
28 assert(ofnode_valid(node));
29 ofnode_read_u32_index(node, propname, 0, &def);
30
31 return def;
32 }
33
ofnode_read_u32_index(ofnode node,const char * propname,int index,u32 * outp)34 int ofnode_read_u32_index(ofnode node, const char *propname, int index,
35 u32 *outp)
36 {
37 const fdt32_t *cell;
38 int len;
39
40 assert(ofnode_valid(node));
41 debug("%s: %s: ", __func__, propname);
42
43 if (ofnode_is_np(node))
44 return of_read_u32_index(ofnode_to_np(node), propname, index,
45 outp);
46
47 cell = fdt_getprop(gd->fdt_blob, ofnode_to_offset(node), propname,
48 &len);
49 if (!cell) {
50 debug("(not found)\n");
51 return -EINVAL;
52 }
53
54 if (len < (sizeof(int) * (index + 1))) {
55 debug("(not large enough)\n");
56 return -EOVERFLOW;
57 }
58
59 *outp = fdt32_to_cpu(cell[index]);
60 debug("%#x (%d)\n", *outp, *outp);
61
62 return 0;
63 }
64
ofnode_read_u32_index_default(ofnode node,const char * propname,int index,u32 def)65 u32 ofnode_read_u32_index_default(ofnode node, const char *propname, int index,
66 u32 def)
67 {
68 assert(ofnode_valid(node));
69 ofnode_read_u32_index(node, propname, index, &def);
70
71 return def;
72 }
73
ofnode_read_s32_default(ofnode node,const char * propname,s32 def)74 int ofnode_read_s32_default(ofnode node, const char *propname, s32 def)
75 {
76 assert(ofnode_valid(node));
77 ofnode_read_u32(node, propname, (u32 *)&def);
78
79 return def;
80 }
81
ofnode_read_u64(ofnode node,const char * propname,u64 * outp)82 int ofnode_read_u64(ofnode node, const char *propname, u64 *outp)
83 {
84 const unaligned_fdt64_t *cell;
85 int len;
86
87 assert(ofnode_valid(node));
88 debug("%s: %s: ", __func__, propname);
89
90 if (ofnode_is_np(node))
91 return of_read_u64(ofnode_to_np(node), propname, outp);
92
93 cell = fdt_getprop(gd->fdt_blob, ofnode_to_offset(node), propname,
94 &len);
95 if (!cell || len < sizeof(*cell)) {
96 debug("(not found)\n");
97 return -EINVAL;
98 }
99 *outp = fdt64_to_cpu(cell[0]);
100 debug("%#llx (%lld)\n", (unsigned long long)*outp,
101 (unsigned long long)*outp);
102
103 return 0;
104 }
105
ofnode_read_u64_default(ofnode node,const char * propname,u64 def)106 u64 ofnode_read_u64_default(ofnode node, const char *propname, u64 def)
107 {
108 assert(ofnode_valid(node));
109 ofnode_read_u64(node, propname, &def);
110
111 return def;
112 }
113
ofnode_read_bool(ofnode node,const char * propname)114 bool ofnode_read_bool(ofnode node, const char *propname)
115 {
116 const void *prop;
117
118 assert(ofnode_valid(node));
119 debug("%s: %s: ", __func__, propname);
120
121 prop = ofnode_get_property(node, propname, NULL);
122
123 debug("%s\n", prop ? "true" : "false");
124
125 return prop ? true : false;
126 }
127
ofnode_read_prop(ofnode node,const char * propname,int * sizep)128 const void *ofnode_read_prop(ofnode node, const char *propname, int *sizep)
129 {
130 const char *val = NULL;
131 int len;
132
133 assert(ofnode_valid(node));
134 debug("%s: %s: ", __func__, propname);
135
136 if (ofnode_is_np(node)) {
137 struct property *prop = of_find_property(
138 ofnode_to_np(node), propname, &len);
139
140 if (prop) {
141 val = prop->value;
142 len = prop->length;
143 }
144 } else {
145 val = fdt_getprop(gd->fdt_blob, ofnode_to_offset(node),
146 propname, &len);
147 }
148 if (!val) {
149 debug("<not found>\n");
150 if (sizep)
151 *sizep = -FDT_ERR_NOTFOUND;
152 return NULL;
153 }
154 if (sizep)
155 *sizep = len;
156
157 return val;
158 }
159
ofnode_read_string(ofnode node,const char * propname)160 const char *ofnode_read_string(ofnode node, const char *propname)
161 {
162 const char *str;
163 int len;
164
165 str = ofnode_read_prop(node, propname, &len);
166 if (!str)
167 return NULL;
168
169 if (strnlen(str, len) >= len) {
170 debug("<invalid>\n");
171 return NULL;
172 }
173 debug("%s\n", str);
174
175 return str;
176 }
177
ofnode_read_size(ofnode node,const char * propname)178 int ofnode_read_size(ofnode node, const char *propname)
179 {
180 int len;
181
182 if (!ofnode_read_prop(node, propname, &len))
183 return -EINVAL;
184
185 return len;
186 }
187
ofnode_find_subnode(ofnode node,const char * subnode_name)188 ofnode ofnode_find_subnode(ofnode node, const char *subnode_name)
189 {
190 ofnode subnode;
191
192 assert(ofnode_valid(node));
193 debug("%s: %s: ", __func__, subnode_name);
194
195 if (ofnode_is_np(node)) {
196 const struct device_node *np = ofnode_to_np(node);
197
198 for (np = np->child; np; np = np->sibling) {
199 if (!strcmp(subnode_name, np->name))
200 break;
201 }
202 subnode = np_to_ofnode(np);
203 } else {
204 int ooffset = fdt_subnode_offset(gd->fdt_blob,
205 ofnode_to_offset(node), subnode_name);
206 subnode = offset_to_ofnode(ooffset);
207 }
208 debug("%s\n", ofnode_valid(subnode) ?
209 ofnode_get_name(subnode) : "<none>");
210
211 return subnode;
212 }
213
ofnode_read_u32_array(ofnode node,const char * propname,u32 * out_values,size_t sz)214 int ofnode_read_u32_array(ofnode node, const char *propname,
215 u32 *out_values, size_t sz)
216 {
217 assert(ofnode_valid(node));
218 debug("%s: %s: ", __func__, propname);
219
220 if (ofnode_is_np(node)) {
221 return of_read_u32_array(ofnode_to_np(node), propname,
222 out_values, sz);
223 } else {
224 return fdtdec_get_int_array(gd->fdt_blob,
225 ofnode_to_offset(node), propname,
226 out_values, sz);
227 }
228 }
229
230 #if !CONFIG_IS_ENABLED(DM_INLINE_OFNODE)
ofnode_is_enabled(ofnode node)231 bool ofnode_is_enabled(ofnode node)
232 {
233 if (ofnode_is_np(node)) {
234 return of_device_is_available(ofnode_to_np(node));
235 } else {
236 return fdtdec_get_is_enabled(gd->fdt_blob,
237 ofnode_to_offset(node));
238 }
239 }
240
ofnode_first_subnode(ofnode node)241 ofnode ofnode_first_subnode(ofnode node)
242 {
243 assert(ofnode_valid(node));
244 if (ofnode_is_np(node))
245 return np_to_ofnode(node.np->child);
246
247 return offset_to_ofnode(
248 fdt_first_subnode(gd->fdt_blob, ofnode_to_offset(node)));
249 }
250
ofnode_next_subnode(ofnode node)251 ofnode ofnode_next_subnode(ofnode node)
252 {
253 assert(ofnode_valid(node));
254 if (ofnode_is_np(node))
255 return np_to_ofnode(node.np->sibling);
256
257 return offset_to_ofnode(
258 fdt_next_subnode(gd->fdt_blob, ofnode_to_offset(node)));
259 }
260 #endif /* !DM_INLINE_OFNODE */
261
ofnode_get_parent(ofnode node)262 ofnode ofnode_get_parent(ofnode node)
263 {
264 ofnode parent;
265
266 assert(ofnode_valid(node));
267 if (ofnode_is_np(node))
268 parent = np_to_ofnode(of_get_parent(ofnode_to_np(node)));
269 else
270 parent.of_offset = fdt_parent_offset(gd->fdt_blob,
271 ofnode_to_offset(node));
272
273 return parent;
274 }
275
ofnode_get_name(ofnode node)276 const char *ofnode_get_name(ofnode node)
277 {
278 if (!ofnode_valid(node)) {
279 debug("%s node not valid\n", __func__);
280 return NULL;
281 }
282
283 if (ofnode_is_np(node))
284 return strrchr(node.np->full_name, '/') + 1;
285
286 return fdt_get_name(gd->fdt_blob, ofnode_to_offset(node), NULL);
287 }
288
ofnode_get_by_phandle(uint phandle)289 ofnode ofnode_get_by_phandle(uint phandle)
290 {
291 ofnode node;
292
293 if (of_live_active())
294 node = np_to_ofnode(of_find_node_by_phandle(phandle));
295 else
296 node.of_offset = fdt_node_offset_by_phandle(gd->fdt_blob,
297 phandle);
298
299 return node;
300 }
301
ofnode_get_addr_size_index(ofnode node,int index,fdt_size_t * size)302 fdt_addr_t ofnode_get_addr_size_index(ofnode node, int index, fdt_size_t *size)
303 {
304 int na, ns;
305
306 if (ofnode_is_np(node)) {
307 const __be32 *prop_val;
308 u64 size64;
309 uint flags;
310
311 prop_val = of_get_address(ofnode_to_np(node), index, &size64,
312 &flags);
313 if (!prop_val)
314 return FDT_ADDR_T_NONE;
315 if (size)
316 *size = size64;
317
318 ns = of_n_size_cells(ofnode_to_np(node));
319
320 if (IS_ENABLED(CONFIG_OF_TRANSLATE) &&
321 (ns > 0 || gd_size_cells_0())) {
322 return of_translate_address(ofnode_to_np(node), prop_val);
323 } else {
324 na = of_n_addr_cells(ofnode_to_np(node));
325 return of_read_number(prop_val, na);
326 }
327 } else {
328 na = ofnode_read_simple_addr_cells(ofnode_get_parent(node));
329 ns = ofnode_read_simple_size_cells(ofnode_get_parent(node));
330 return fdtdec_get_addr_size_fixed(gd->fdt_blob,
331 ofnode_to_offset(node), "reg",
332 index, na, ns, size, true);
333 }
334
335 return FDT_ADDR_T_NONE;
336 }
337
ofnode_get_addr_index(ofnode node,int index)338 fdt_addr_t ofnode_get_addr_index(ofnode node, int index)
339 {
340 fdt_size_t size;
341
342 return ofnode_get_addr_size_index(node, index, &size);
343 }
344
ofnode_get_addr(ofnode node)345 fdt_addr_t ofnode_get_addr(ofnode node)
346 {
347 return ofnode_get_addr_index(node, 0);
348 }
349
ofnode_stringlist_search(ofnode node,const char * property,const char * string)350 int ofnode_stringlist_search(ofnode node, const char *property,
351 const char *string)
352 {
353 if (ofnode_is_np(node)) {
354 return of_property_match_string(ofnode_to_np(node),
355 property, string);
356 } else {
357 int ret;
358
359 ret = fdt_stringlist_search(gd->fdt_blob,
360 ofnode_to_offset(node), property,
361 string);
362 if (ret == -FDT_ERR_NOTFOUND)
363 return -ENODATA;
364 else if (ret < 0)
365 return -EINVAL;
366
367 return ret;
368 }
369 }
370
ofnode_read_string_index(ofnode node,const char * property,int index,const char ** outp)371 int ofnode_read_string_index(ofnode node, const char *property, int index,
372 const char **outp)
373 {
374 if (ofnode_is_np(node)) {
375 return of_property_read_string_index(ofnode_to_np(node),
376 property, index, outp);
377 } else {
378 int len;
379
380 *outp = fdt_stringlist_get(gd->fdt_blob, ofnode_to_offset(node),
381 property, index, &len);
382 if (len < 0)
383 return -EINVAL;
384 return 0;
385 }
386 }
387
ofnode_read_string_count(ofnode node,const char * property)388 int ofnode_read_string_count(ofnode node, const char *property)
389 {
390 if (ofnode_is_np(node)) {
391 return of_property_count_strings(ofnode_to_np(node), property);
392 } else {
393 return fdt_stringlist_count(gd->fdt_blob,
394 ofnode_to_offset(node), property);
395 }
396 }
397
ofnode_from_fdtdec_phandle_args(struct fdtdec_phandle_args * in,struct ofnode_phandle_args * out)398 static void ofnode_from_fdtdec_phandle_args(struct fdtdec_phandle_args *in,
399 struct ofnode_phandle_args *out)
400 {
401 assert(OF_MAX_PHANDLE_ARGS == MAX_PHANDLE_ARGS);
402 out->node = offset_to_ofnode(in->node);
403 out->args_count = in->args_count;
404 memcpy(out->args, in->args, sizeof(out->args));
405 }
406
ofnode_from_of_phandle_args(struct of_phandle_args * in,struct ofnode_phandle_args * out)407 static void ofnode_from_of_phandle_args(struct of_phandle_args *in,
408 struct ofnode_phandle_args *out)
409 {
410 assert(OF_MAX_PHANDLE_ARGS == MAX_PHANDLE_ARGS);
411 out->node = np_to_ofnode(in->np);
412 out->args_count = in->args_count;
413 memcpy(out->args, in->args, sizeof(out->args));
414 }
415
ofnode_parse_phandle_with_args(ofnode node,const char * list_name,const char * cells_name,int cell_count,int index,struct ofnode_phandle_args * out_args)416 int ofnode_parse_phandle_with_args(ofnode node, const char *list_name,
417 const char *cells_name, int cell_count,
418 int index,
419 struct ofnode_phandle_args *out_args)
420 {
421 if (ofnode_is_np(node)) {
422 struct of_phandle_args args;
423 int ret;
424
425 ret = of_parse_phandle_with_args(ofnode_to_np(node),
426 list_name, cells_name,
427 cell_count, index,
428 &args);
429 if (ret)
430 return ret;
431 ofnode_from_of_phandle_args(&args, out_args);
432 } else {
433 struct fdtdec_phandle_args args;
434 int ret;
435
436 ret = fdtdec_parse_phandle_with_args(gd->fdt_blob,
437 ofnode_to_offset(node),
438 list_name, cells_name,
439 cell_count, index, &args);
440 if (ret)
441 return ret;
442 ofnode_from_fdtdec_phandle_args(&args, out_args);
443 }
444
445 return 0;
446 }
447
ofnode_count_phandle_with_args(ofnode node,const char * list_name,const char * cells_name,int cell_count)448 int ofnode_count_phandle_with_args(ofnode node, const char *list_name,
449 const char *cells_name, int cell_count)
450 {
451 if (ofnode_is_np(node))
452 return of_count_phandle_with_args(ofnode_to_np(node),
453 list_name, cells_name, cell_count);
454 else
455 return fdtdec_parse_phandle_with_args(gd->fdt_blob,
456 ofnode_to_offset(node), list_name, cells_name,
457 cell_count, -1, NULL);
458 }
459
ofnode_path(const char * path)460 ofnode ofnode_path(const char *path)
461 {
462 if (of_live_active())
463 return np_to_ofnode(of_find_node_by_path(path));
464 else
465 return offset_to_ofnode(fdt_path_offset(gd->fdt_blob, path));
466 }
467
ofnode_read_chosen_prop(const char * propname,int * sizep)468 const void *ofnode_read_chosen_prop(const char *propname, int *sizep)
469 {
470 ofnode chosen_node;
471
472 chosen_node = ofnode_path("/chosen");
473
474 return ofnode_read_prop(chosen_node, propname, sizep);
475 }
476
ofnode_read_chosen_string(const char * propname)477 const char *ofnode_read_chosen_string(const char *propname)
478 {
479 return ofnode_read_chosen_prop(propname, NULL);
480 }
481
ofnode_get_chosen_node(const char * name)482 ofnode ofnode_get_chosen_node(const char *name)
483 {
484 const char *prop;
485
486 prop = ofnode_read_chosen_prop(name, NULL);
487 if (!prop)
488 return ofnode_null();
489
490 return ofnode_path(prop);
491 }
492
ofnode_read_aliases_prop(const char * propname,int * sizep)493 const void *ofnode_read_aliases_prop(const char *propname, int *sizep)
494 {
495 ofnode node;
496
497 node = ofnode_path("/aliases");
498
499 return ofnode_read_prop(node, propname, sizep);
500 }
501
ofnode_get_aliases_node(const char * name)502 ofnode ofnode_get_aliases_node(const char *name)
503 {
504 const char *prop;
505
506 prop = ofnode_read_aliases_prop(name, NULL);
507 if (!prop)
508 return ofnode_null();
509
510 debug("%s: node_path: %s\n", __func__, prop);
511
512 return ofnode_path(prop);
513 }
514
ofnode_get_child_count(ofnode parent)515 int ofnode_get_child_count(ofnode parent)
516 {
517 ofnode child;
518 int num = 0;
519
520 ofnode_for_each_subnode(child, parent)
521 num++;
522
523 return num;
524 }
525
decode_timing_property(ofnode node,const char * name,struct timing_entry * result)526 static int decode_timing_property(ofnode node, const char *name,
527 struct timing_entry *result)
528 {
529 int length, ret = 0;
530
531 length = ofnode_read_size(node, name);
532 if (length < 0) {
533 debug("%s: could not find property %s\n",
534 ofnode_get_name(node), name);
535 return length;
536 }
537
538 if (length == sizeof(u32)) {
539 result->typ = ofnode_read_u32_default(node, name, 0);
540 result->min = result->typ;
541 result->max = result->typ;
542 } else {
543 ret = ofnode_read_u32_array(node, name, &result->min, 3);
544 }
545
546 return ret;
547 }
548
ofnode_decode_display_timing(ofnode parent,int index,struct display_timing * dt)549 int ofnode_decode_display_timing(ofnode parent, int index,
550 struct display_timing *dt)
551 {
552 int i;
553 ofnode timings, node;
554 u32 val = 0;
555 int ret = 0;
556
557 timings = ofnode_find_subnode(parent, "display-timings");
558 if (!ofnode_valid(timings))
559 return -EINVAL;
560
561 i = 0;
562 ofnode_for_each_subnode(node, timings) {
563 if (i++ == index)
564 break;
565 }
566
567 if (!ofnode_valid(node))
568 return -EINVAL;
569
570 memset(dt, 0, sizeof(*dt));
571
572 ret |= decode_timing_property(node, "hback-porch", &dt->hback_porch);
573 ret |= decode_timing_property(node, "hfront-porch", &dt->hfront_porch);
574 ret |= decode_timing_property(node, "hactive", &dt->hactive);
575 ret |= decode_timing_property(node, "hsync-len", &dt->hsync_len);
576 ret |= decode_timing_property(node, "vback-porch", &dt->vback_porch);
577 ret |= decode_timing_property(node, "vfront-porch", &dt->vfront_porch);
578 ret |= decode_timing_property(node, "vactive", &dt->vactive);
579 ret |= decode_timing_property(node, "vsync-len", &dt->vsync_len);
580 ret |= decode_timing_property(node, "clock-frequency", &dt->pixelclock);
581
582 dt->flags = 0;
583 val = ofnode_read_u32_default(node, "vsync-active", -1);
584 if (val != -1) {
585 dt->flags |= val ? DISPLAY_FLAGS_VSYNC_HIGH :
586 DISPLAY_FLAGS_VSYNC_LOW;
587 }
588 val = ofnode_read_u32_default(node, "hsync-active", -1);
589 if (val != -1) {
590 dt->flags |= val ? DISPLAY_FLAGS_HSYNC_HIGH :
591 DISPLAY_FLAGS_HSYNC_LOW;
592 }
593 val = ofnode_read_u32_default(node, "de-active", -1);
594 if (val != -1) {
595 dt->flags |= val ? DISPLAY_FLAGS_DE_HIGH :
596 DISPLAY_FLAGS_DE_LOW;
597 }
598 val = ofnode_read_u32_default(node, "pixelclk-active", -1);
599 if (val != -1) {
600 dt->flags |= val ? DISPLAY_FLAGS_PIXDATA_POSEDGE :
601 DISPLAY_FLAGS_PIXDATA_NEGEDGE;
602 }
603
604 if (ofnode_read_bool(node, "interlaced"))
605 dt->flags |= DISPLAY_FLAGS_INTERLACED;
606 if (ofnode_read_bool(node, "doublescan"))
607 dt->flags |= DISPLAY_FLAGS_DOUBLESCAN;
608 if (ofnode_read_bool(node, "doubleclk"))
609 dt->flags |= DISPLAY_FLAGS_DOUBLECLK;
610
611 return ret;
612 }
613
ofnode_get_property(ofnode node,const char * propname,int * lenp)614 const void *ofnode_get_property(ofnode node, const char *propname, int *lenp)
615 {
616 if (ofnode_is_np(node))
617 return of_get_property(ofnode_to_np(node), propname, lenp);
618 else
619 return fdt_getprop(gd->fdt_blob, ofnode_to_offset(node),
620 propname, lenp);
621 }
622
ofnode_get_first_property(ofnode node,struct ofprop * prop)623 int ofnode_get_first_property(ofnode node, struct ofprop *prop)
624 {
625 prop->node = node;
626
627 if (ofnode_is_np(node)) {
628 prop->prop = of_get_first_property(ofnode_to_np(prop->node));
629 if (!prop->prop)
630 return -FDT_ERR_NOTFOUND;
631 } else {
632 prop->offset =
633 fdt_first_property_offset(gd->fdt_blob,
634 ofnode_to_offset(prop->node));
635 if (prop->offset < 0)
636 return prop->offset;
637 }
638
639 return 0;
640 }
641
ofnode_get_next_property(struct ofprop * prop)642 int ofnode_get_next_property(struct ofprop *prop)
643 {
644 if (ofnode_is_np(prop->node)) {
645 prop->prop = of_get_next_property(ofnode_to_np(prop->node),
646 prop->prop);
647 if (!prop->prop)
648 return -FDT_ERR_NOTFOUND;
649 } else {
650 prop->offset = fdt_next_property_offset(gd->fdt_blob,
651 prop->offset);
652 if (prop->offset < 0)
653 return prop->offset;
654 }
655
656 return 0;
657 }
658
ofnode_get_property_by_prop(const struct ofprop * prop,const char ** propname,int * lenp)659 const void *ofnode_get_property_by_prop(const struct ofprop *prop,
660 const char **propname, int *lenp)
661 {
662 if (ofnode_is_np(prop->node))
663 return of_get_property_by_prop(ofnode_to_np(prop->node),
664 prop->prop, propname, lenp);
665 else
666 return fdt_getprop_by_offset(gd->fdt_blob,
667 prop->offset,
668 propname, lenp);
669 }
670
ofnode_is_available(ofnode node)671 bool ofnode_is_available(ofnode node)
672 {
673 if (ofnode_is_np(node))
674 return of_device_is_available(ofnode_to_np(node));
675 else
676 return fdtdec_get_is_enabled(gd->fdt_blob,
677 ofnode_to_offset(node));
678 }
679
ofnode_get_addr_size(ofnode node,const char * property,fdt_size_t * sizep)680 fdt_addr_t ofnode_get_addr_size(ofnode node, const char *property,
681 fdt_size_t *sizep)
682 {
683 if (ofnode_is_np(node)) {
684 int na, ns;
685 int psize;
686 const struct device_node *np = ofnode_to_np(node);
687 const __be32 *prop = of_get_property(np, property, &psize);
688
689 if (!prop)
690 return FDT_ADDR_T_NONE;
691 na = of_n_addr_cells(np);
692 ns = of_n_size_cells(np);
693 *sizep = of_read_number(prop + na, ns);
694
695 if (CONFIG_IS_ENABLED(OF_TRANSLATE) &&
696 (ns > 0 || gd_size_cells_0())) {
697 return of_translate_address(np, prop);
698 }
699 else
700 return of_read_number(prop, na);
701 } else {
702 return fdtdec_get_addr_size(gd->fdt_blob,
703 ofnode_to_offset(node), property,
704 sizep);
705 }
706 }
707
ofnode_read_u8_array_ptr(ofnode node,const char * propname,size_t sz)708 const uint8_t *ofnode_read_u8_array_ptr(ofnode node, const char *propname,
709 size_t sz)
710 {
711 if (ofnode_is_np(node)) {
712 const struct device_node *np = ofnode_to_np(node);
713 int psize;
714 const __be32 *prop = of_get_property(np, propname, &psize);
715
716 if (!prop || sz != psize)
717 return NULL;
718 return (uint8_t *)prop;
719
720 } else {
721 return fdtdec_locate_byte_array(gd->fdt_blob,
722 ofnode_to_offset(node), propname, sz);
723 }
724 }
725
ofnode_read_pci_addr(ofnode node,enum fdt_pci_space type,const char * propname,struct fdt_pci_addr * addr)726 int ofnode_read_pci_addr(ofnode node, enum fdt_pci_space type,
727 const char *propname, struct fdt_pci_addr *addr)
728 {
729 const fdt32_t *cell;
730 int len;
731 int ret = -ENOENT;
732
733 debug("%s: %s: ", __func__, propname);
734
735 /*
736 * If we follow the pci bus bindings strictly, we should check
737 * the value of the node's parent node's #address-cells and
738 * #size-cells. They need to be 3 and 2 accordingly. However,
739 * for simplicity we skip the check here.
740 */
741 cell = ofnode_get_property(node, propname, &len);
742 if (!cell)
743 goto fail;
744
745 if ((len % FDT_PCI_REG_SIZE) == 0) {
746 int num = len / FDT_PCI_REG_SIZE;
747 int i;
748
749 for (i = 0; i < num; i++) {
750 debug("pci address #%d: %08lx %08lx %08lx\n", i,
751 (ulong)fdt32_to_cpu(cell[0]),
752 (ulong)fdt32_to_cpu(cell[1]),
753 (ulong)fdt32_to_cpu(cell[2]));
754 if ((fdt32_to_cpu(*cell) & type) == type) {
755 addr->phys_hi = fdt32_to_cpu(cell[0]);
756 addr->phys_mid = fdt32_to_cpu(cell[1]);
757 addr->phys_lo = fdt32_to_cpu(cell[2]);
758 break;
759 }
760
761 cell += (FDT_PCI_ADDR_CELLS +
762 FDT_PCI_SIZE_CELLS);
763 }
764
765 if (i == num) {
766 ret = -ENXIO;
767 goto fail;
768 }
769
770 return 0;
771 }
772
773 ret = -EINVAL;
774
775 fail:
776 debug("(not found)\n");
777 return ret;
778 }
779
ofnode_read_pci_vendev(ofnode node,u16 * vendor,u16 * device)780 int ofnode_read_pci_vendev(ofnode node, u16 *vendor, u16 *device)
781 {
782 const char *list, *end;
783 int len;
784
785 list = ofnode_get_property(node, "compatible", &len);
786 if (!list)
787 return -ENOENT;
788
789 end = list + len;
790 while (list < end) {
791 len = strlen(list);
792 if (len >= strlen("pciVVVV,DDDD")) {
793 char *s = strstr(list, "pci");
794
795 /*
796 * check if the string is something like pciVVVV,DDDD.RR
797 * or just pciVVVV,DDDD
798 */
799 if (s && s[7] == ',' &&
800 (s[12] == '.' || s[12] == 0)) {
801 s += 3;
802 *vendor = simple_strtol(s, NULL, 16);
803
804 s += 5;
805 *device = simple_strtol(s, NULL, 16);
806
807 return 0;
808 }
809 }
810 list += (len + 1);
811 }
812
813 return -ENOENT;
814 }
815
ofnode_read_addr_cells(ofnode node)816 int ofnode_read_addr_cells(ofnode node)
817 {
818 if (ofnode_is_np(node)) {
819 return of_n_addr_cells(ofnode_to_np(node));
820 } else {
821 int parent = fdt_parent_offset(gd->fdt_blob,
822 ofnode_to_offset(node));
823
824 return fdt_address_cells(gd->fdt_blob, parent);
825 }
826 }
827
ofnode_read_size_cells(ofnode node)828 int ofnode_read_size_cells(ofnode node)
829 {
830 if (ofnode_is_np(node)) {
831 return of_n_size_cells(ofnode_to_np(node));
832 } else {
833 int parent = fdt_parent_offset(gd->fdt_blob,
834 ofnode_to_offset(node));
835
836 return fdt_size_cells(gd->fdt_blob, parent);
837 }
838 }
839
ofnode_read_simple_addr_cells(ofnode node)840 int ofnode_read_simple_addr_cells(ofnode node)
841 {
842 if (ofnode_is_np(node))
843 return of_simple_addr_cells(ofnode_to_np(node));
844 else
845 return fdt_address_cells(gd->fdt_blob, ofnode_to_offset(node));
846 }
847
ofnode_read_simple_size_cells(ofnode node)848 int ofnode_read_simple_size_cells(ofnode node)
849 {
850 if (ofnode_is_np(node))
851 return of_simple_size_cells(ofnode_to_np(node));
852 else
853 return fdt_size_cells(gd->fdt_blob, ofnode_to_offset(node));
854 }
855
ofnode_pre_reloc(ofnode node)856 bool ofnode_pre_reloc(ofnode node)
857 {
858 #if defined(CONFIG_SPL_BUILD) || defined(CONFIG_TPL_BUILD)
859 /* for SPL and TPL the remaining nodes after the fdtgrep 1st pass
860 * had property dm-pre-reloc or u-boot,dm-spl/tpl.
861 * They are removed in final dtb (fdtgrep 2nd pass)
862 */
863 return true;
864 #else
865 if (ofnode_read_bool(node, "u-boot,dm-pre-reloc"))
866 return true;
867 if (ofnode_read_bool(node, "u-boot,dm-pre-proper"))
868 return true;
869
870 /*
871 * In regular builds individual spl and tpl handling both
872 * count as handled pre-relocation for later second init.
873 */
874 if (ofnode_read_bool(node, "u-boot,dm-spl") ||
875 ofnode_read_bool(node, "u-boot,dm-tpl"))
876 return true;
877
878 return false;
879 #endif
880 }
881
ofnode_read_resource(ofnode node,uint index,struct resource * res)882 int ofnode_read_resource(ofnode node, uint index, struct resource *res)
883 {
884 if (ofnode_is_np(node)) {
885 return of_address_to_resource(ofnode_to_np(node), index, res);
886 } else {
887 struct fdt_resource fres;
888 int ret;
889
890 ret = fdt_get_resource(gd->fdt_blob, ofnode_to_offset(node),
891 "reg", index, &fres);
892 if (ret < 0)
893 return -EINVAL;
894 memset(res, '\0', sizeof(*res));
895 res->start = fres.start;
896 res->end = fres.end;
897
898 return 0;
899 }
900 }
901
ofnode_read_resource_byname(ofnode node,const char * name,struct resource * res)902 int ofnode_read_resource_byname(ofnode node, const char *name,
903 struct resource *res)
904 {
905 int index;
906
907 index = ofnode_stringlist_search(node, "reg-names", name);
908 if (index < 0)
909 return index;
910
911 return ofnode_read_resource(node, index, res);
912 }
913
ofnode_translate_address(ofnode node,const fdt32_t * in_addr)914 u64 ofnode_translate_address(ofnode node, const fdt32_t *in_addr)
915 {
916 if (ofnode_is_np(node))
917 return of_translate_address(ofnode_to_np(node), in_addr);
918 else
919 return fdt_translate_address(gd->fdt_blob, ofnode_to_offset(node), in_addr);
920 }
921
ofnode_translate_dma_address(ofnode node,const fdt32_t * in_addr)922 u64 ofnode_translate_dma_address(ofnode node, const fdt32_t *in_addr)
923 {
924 if (ofnode_is_np(node))
925 return of_translate_dma_address(ofnode_to_np(node), in_addr);
926 else
927 return fdt_translate_dma_address(gd->fdt_blob, ofnode_to_offset(node), in_addr);
928 }
929
ofnode_get_dma_range(ofnode node,phys_addr_t * cpu,dma_addr_t * bus,u64 * size)930 int ofnode_get_dma_range(ofnode node, phys_addr_t *cpu, dma_addr_t *bus, u64 *size)
931 {
932 if (ofnode_is_np(node))
933 return of_get_dma_range(ofnode_to_np(node), cpu, bus, size);
934 else
935 return fdt_get_dma_range(gd->fdt_blob, ofnode_to_offset(node),
936 cpu, bus, size);
937 }
938
ofnode_device_is_compatible(ofnode node,const char * compat)939 int ofnode_device_is_compatible(ofnode node, const char *compat)
940 {
941 if (ofnode_is_np(node))
942 return of_device_is_compatible(ofnode_to_np(node), compat,
943 NULL, NULL);
944 else
945 return !fdt_node_check_compatible(gd->fdt_blob,
946 ofnode_to_offset(node),
947 compat);
948 }
949
ofnode_by_compatible(ofnode from,const char * compat)950 ofnode ofnode_by_compatible(ofnode from, const char *compat)
951 {
952 if (of_live_active()) {
953 return np_to_ofnode(of_find_compatible_node(
954 (struct device_node *)ofnode_to_np(from), NULL,
955 compat));
956 } else {
957 return offset_to_ofnode(fdt_node_offset_by_compatible(
958 gd->fdt_blob, ofnode_to_offset(from), compat));
959 }
960 }
961
ofnode_by_prop_value(ofnode from,const char * propname,const void * propval,int proplen)962 ofnode ofnode_by_prop_value(ofnode from, const char *propname,
963 const void *propval, int proplen)
964 {
965 if (of_live_active()) {
966 return np_to_ofnode(of_find_node_by_prop_value(
967 (struct device_node *)ofnode_to_np(from), propname,
968 propval, proplen));
969 } else {
970 return offset_to_ofnode(fdt_node_offset_by_prop_value(
971 gd->fdt_blob, ofnode_to_offset(from),
972 propname, propval, proplen));
973 }
974 }
975
ofnode_write_prop(ofnode node,const char * propname,int len,const void * value)976 int ofnode_write_prop(ofnode node, const char *propname, int len,
977 const void *value)
978 {
979 const struct device_node *np = ofnode_to_np(node);
980 struct property *pp;
981 struct property *pp_last = NULL;
982 struct property *new;
983
984 if (!of_live_active())
985 return -ENOSYS;
986
987 if (!np)
988 return -EINVAL;
989
990 for (pp = np->properties; pp; pp = pp->next) {
991 if (strcmp(pp->name, propname) == 0) {
992 /* Property exists -> change value */
993 pp->value = (void *)value;
994 pp->length = len;
995 return 0;
996 }
997 pp_last = pp;
998 }
999
1000 if (!pp_last)
1001 return -ENOENT;
1002
1003 /* Property does not exist -> append new property */
1004 new = malloc(sizeof(struct property));
1005 if (!new)
1006 return -ENOMEM;
1007
1008 new->name = strdup(propname);
1009 if (!new->name) {
1010 free(new);
1011 return -ENOMEM;
1012 }
1013
1014 new->value = (void *)value;
1015 new->length = len;
1016 new->next = NULL;
1017
1018 pp_last->next = new;
1019
1020 return 0;
1021 }
1022
ofnode_write_string(ofnode node,const char * propname,const char * value)1023 int ofnode_write_string(ofnode node, const char *propname, const char *value)
1024 {
1025 if (!of_live_active())
1026 return -ENOSYS;
1027
1028 assert(ofnode_valid(node));
1029
1030 debug("%s: %s = %s", __func__, propname, value);
1031
1032 return ofnode_write_prop(node, propname, strlen(value) + 1, value);
1033 }
1034
ofnode_set_enabled(ofnode node,bool value)1035 int ofnode_set_enabled(ofnode node, bool value)
1036 {
1037 if (!of_live_active())
1038 return -ENOSYS;
1039
1040 assert(ofnode_valid(node));
1041
1042 if (value)
1043 return ofnode_write_string(node, "status", "okay");
1044 else
1045 return ofnode_write_string(node, "status", "disabled");
1046 }
1047