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1 #ifndef _LINUX_OF_H
2 #define _LINUX_OF_H
3 /*
4 * Definitions for talking to the Open Firmware PROM on
5 * Power Macintosh and other computers.
6 *
7 * Copyright (C) 1996-2005 Paul Mackerras.
8 *
9 * Updates for PPC64 by Peter Bergner & David Engebretsen, IBM Corp.
10 * Updates for SPARC64 by David S. Miller
11 * Derived from PowerPC and Sparc prom.h files by Stephen Rothwell, IBM Corp.
12 *
13 * This program is free software; you can redistribute it and/or
14 * modify it under the terms of the GNU General Public License
15 * as published by the Free Software Foundation; either version
16 * 2 of the License, or (at your option) any later version.
17 */
18 #include <linux/types.h>
19 #include <linux/bitops.h>
20 #include <linux/errno.h>
21 #include <linux/kobject.h>
22 #include <linux/mod_devicetable.h>
23 #include <linux/spinlock.h>
24 #include <linux/topology.h>
25 #include <linux/notifier.h>
26 #include <linux/property.h>
27 #include <linux/list.h>
28
29 #include <asm/byteorder.h>
30 #include <asm/errno.h>
31
32 typedef u32 phandle;
33 typedef u32 ihandle;
34
35 struct property {
36 char *name;
37 int length;
38 void *value;
39 struct property *next;
40 unsigned long _flags;
41 unsigned int unique_id;
42 struct bin_attribute attr;
43 };
44
45 #if defined(CONFIG_SPARC)
46 struct of_irq_controller;
47 #endif
48
49 struct device_node {
50 const char *name;
51 const char *type;
52 phandle phandle;
53 const char *full_name;
54 struct fwnode_handle fwnode;
55
56 struct property *properties;
57 struct property *deadprops; /* removed properties */
58 struct device_node *parent;
59 struct device_node *child;
60 struct device_node *sibling;
61 struct kobject kobj;
62 unsigned long _flags;
63 void *data;
64 #if defined(CONFIG_SPARC)
65 const char *path_component_name;
66 unsigned int unique_id;
67 struct of_irq_controller *irq_trans;
68 #endif
69 };
70
71 #define MAX_PHANDLE_ARGS 16
72 struct of_phandle_args {
73 struct device_node *np;
74 int args_count;
75 uint32_t args[MAX_PHANDLE_ARGS];
76 };
77
78 struct of_phandle_iterator {
79 /* Common iterator information */
80 const char *cells_name;
81 int cell_count;
82 const struct device_node *parent;
83
84 /* List size information */
85 const __be32 *list_end;
86 const __be32 *phandle_end;
87
88 /* Current position state */
89 const __be32 *cur;
90 uint32_t cur_count;
91 phandle phandle;
92 struct device_node *node;
93 };
94
95 struct of_reconfig_data {
96 struct device_node *dn;
97 struct property *prop;
98 struct property *old_prop;
99 };
100
101 /* initialize a node */
102 extern struct kobj_type of_node_ktype;
103 extern const struct fwnode_operations of_fwnode_ops;
104 static inline void of_node_init(struct device_node *node)
105 {
106 kobject_init(&node->kobj, &of_node_ktype);
107 node->fwnode.ops = &of_fwnode_ops;
108 }
109
110 /* true when node is initialized */
111 static inline int of_node_is_initialized(struct device_node *node)
112 {
113 return node && node->kobj.state_initialized;
114 }
115
116 /* true when node is attached (i.e. present on sysfs) */
117 static inline int of_node_is_attached(struct device_node *node)
118 {
119 return node && node->kobj.state_in_sysfs;
120 }
121
122 #ifdef CONFIG_OF_DYNAMIC
123 extern struct device_node *of_node_get(struct device_node *node);
124 extern void of_node_put(struct device_node *node);
125 #else /* CONFIG_OF_DYNAMIC */
126 /* Dummy ref counting routines - to be implemented later */
127 static inline struct device_node *of_node_get(struct device_node *node)
128 {
129 return node;
130 }
131 static inline void of_node_put(struct device_node *node) { }
132 #endif /* !CONFIG_OF_DYNAMIC */
133
134 /* Pointer for first entry in chain of all nodes. */
135 extern struct device_node *of_root;
136 extern struct device_node *of_chosen;
137 extern struct device_node *of_aliases;
138 extern struct device_node *of_stdout;
139 extern raw_spinlock_t devtree_lock;
140
141 /* flag descriptions (need to be visible even when !CONFIG_OF) */
142 #define OF_DYNAMIC 1 /* node and properties were allocated via kmalloc */
143 #define OF_DETACHED 2 /* node has been detached from the device tree */
144 #define OF_POPULATED 3 /* device already created for the node */
145 #define OF_POPULATED_BUS 4 /* of_platform_populate recursed to children of this node */
146
147 #define OF_BAD_ADDR ((u64)-1)
148
149 #ifdef CONFIG_OF
150 void of_core_init(void);
151
152 static inline bool is_of_node(const struct fwnode_handle *fwnode)
153 {
154 return !IS_ERR_OR_NULL(fwnode) && fwnode->ops == &of_fwnode_ops;
155 }
156
157 #define to_of_node(__fwnode) \
158 ({ \
159 typeof(__fwnode) __to_of_node_fwnode = (__fwnode); \
160 \
161 is_of_node(__to_of_node_fwnode) ? \
162 container_of(__to_of_node_fwnode, \
163 struct device_node, fwnode) : \
164 NULL; \
165 })
166
167 #define of_fwnode_handle(node) \
168 ({ \
169 typeof(node) __of_fwnode_handle_node = (node); \
170 \
171 __of_fwnode_handle_node ? \
172 &__of_fwnode_handle_node->fwnode : NULL; \
173 })
174
175 static inline bool of_have_populated_dt(void)
176 {
177 return of_root != NULL;
178 }
179
180 static inline bool of_node_is_root(const struct device_node *node)
181 {
182 return node && (node->parent == NULL);
183 }
184
185 static inline int of_node_check_flag(struct device_node *n, unsigned long flag)
186 {
187 return test_bit(flag, &n->_flags);
188 }
189
190 static inline int of_node_test_and_set_flag(struct device_node *n,
191 unsigned long flag)
192 {
193 return test_and_set_bit(flag, &n->_flags);
194 }
195
196 static inline void of_node_set_flag(struct device_node *n, unsigned long flag)
197 {
198 set_bit(flag, &n->_flags);
199 }
200
201 static inline void of_node_clear_flag(struct device_node *n, unsigned long flag)
202 {
203 clear_bit(flag, &n->_flags);
204 }
205
206 static inline int of_property_check_flag(struct property *p, unsigned long flag)
207 {
208 return test_bit(flag, &p->_flags);
209 }
210
211 static inline void of_property_set_flag(struct property *p, unsigned long flag)
212 {
213 set_bit(flag, &p->_flags);
214 }
215
216 static inline void of_property_clear_flag(struct property *p, unsigned long flag)
217 {
218 clear_bit(flag, &p->_flags);
219 }
220
221 extern struct device_node *__of_find_all_nodes(struct device_node *prev);
222 extern struct device_node *of_find_all_nodes(struct device_node *prev);
223
224 /*
225 * OF address retrieval & translation
226 */
227
228 /* Helper to read a big number; size is in cells (not bytes) */
229 static inline u64 of_read_number(const __be32 *cell, int size)
230 {
231 u64 r = 0;
232 while (size--)
233 r = (r << 32) | be32_to_cpu(*(cell++));
234 return r;
235 }
236
237 /* Like of_read_number, but we want an unsigned long result */
238 static inline unsigned long of_read_ulong(const __be32 *cell, int size)
239 {
240 /* toss away upper bits if unsigned long is smaller than u64 */
241 return of_read_number(cell, size);
242 }
243
244 #if defined(CONFIG_SPARC)
245 #include <asm/prom.h>
246 #endif
247
248 /* Default #address and #size cells. Allow arch asm/prom.h to override */
249 #if !defined(OF_ROOT_NODE_ADDR_CELLS_DEFAULT)
250 #define OF_ROOT_NODE_ADDR_CELLS_DEFAULT 1
251 #define OF_ROOT_NODE_SIZE_CELLS_DEFAULT 1
252 #endif
253
254 #define OF_IS_DYNAMIC(x) test_bit(OF_DYNAMIC, &x->_flags)
255 #define OF_MARK_DYNAMIC(x) set_bit(OF_DYNAMIC, &x->_flags)
256
257 static inline const char *of_node_full_name(const struct device_node *np)
258 {
259 return np ? np->full_name : "<no-node>";
260 }
261
262 #define for_each_of_allnodes_from(from, dn) \
263 for (dn = __of_find_all_nodes(from); dn; dn = __of_find_all_nodes(dn))
264 #define for_each_of_allnodes(dn) for_each_of_allnodes_from(NULL, dn)
265 extern struct device_node *of_find_node_by_name(struct device_node *from,
266 const char *name);
267 extern struct device_node *of_find_node_by_type(struct device_node *from,
268 const char *type);
269 extern struct device_node *of_find_compatible_node(struct device_node *from,
270 const char *type, const char *compat);
271 extern struct device_node *of_find_matching_node_and_match(
272 struct device_node *from,
273 const struct of_device_id *matches,
274 const struct of_device_id **match);
275
276 extern struct device_node *of_find_node_opts_by_path(const char *path,
277 const char **opts);
278 static inline struct device_node *of_find_node_by_path(const char *path)
279 {
280 return of_find_node_opts_by_path(path, NULL);
281 }
282
283 extern struct device_node *of_find_node_by_phandle(phandle handle);
284 extern struct device_node *of_get_parent(const struct device_node *node);
285 extern struct device_node *of_get_next_parent(struct device_node *node);
286 extern struct device_node *of_get_next_child(const struct device_node *node,
287 struct device_node *prev);
288 extern struct device_node *of_get_next_available_child(
289 const struct device_node *node, struct device_node *prev);
290
291 extern struct device_node *of_get_child_by_name(const struct device_node *node,
292 const char *name);
293
294 /* cache lookup */
295 extern struct device_node *of_find_next_cache_node(const struct device_node *);
296 extern int of_find_last_cache_level(unsigned int cpu);
297 extern struct device_node *of_find_node_with_property(
298 struct device_node *from, const char *prop_name);
299
300 extern struct property *of_find_property(const struct device_node *np,
301 const char *name,
302 int *lenp);
303 extern int of_property_count_elems_of_size(const struct device_node *np,
304 const char *propname, int elem_size);
305 extern int of_property_read_u32_index(const struct device_node *np,
306 const char *propname,
307 u32 index, u32 *out_value);
308 extern int of_property_read_u64_index(const struct device_node *np,
309 const char *propname,
310 u32 index, u64 *out_value);
311 extern int of_property_read_variable_u8_array(const struct device_node *np,
312 const char *propname, u8 *out_values,
313 size_t sz_min, size_t sz_max);
314 extern int of_property_read_variable_u16_array(const struct device_node *np,
315 const char *propname, u16 *out_values,
316 size_t sz_min, size_t sz_max);
317 extern int of_property_read_variable_u32_array(const struct device_node *np,
318 const char *propname,
319 u32 *out_values,
320 size_t sz_min,
321 size_t sz_max);
322 extern int of_property_read_u64(const struct device_node *np,
323 const char *propname, u64 *out_value);
324 extern int of_property_read_variable_u64_array(const struct device_node *np,
325 const char *propname,
326 u64 *out_values,
327 size_t sz_min,
328 size_t sz_max);
329
330 extern int of_property_read_string(const struct device_node *np,
331 const char *propname,
332 const char **out_string);
333 extern int of_property_match_string(const struct device_node *np,
334 const char *propname,
335 const char *string);
336 extern int of_property_read_string_helper(const struct device_node *np,
337 const char *propname,
338 const char **out_strs, size_t sz, int index);
339 extern int of_device_is_compatible(const struct device_node *device,
340 const char *);
341 extern int of_device_compatible_match(struct device_node *device,
342 const char *const *compat);
343 extern bool of_device_is_available(const struct device_node *device);
344 extern bool of_device_is_big_endian(const struct device_node *device);
345 extern const void *of_get_property(const struct device_node *node,
346 const char *name,
347 int *lenp);
348 extern struct device_node *of_get_cpu_node(int cpu, unsigned int *thread);
349 #define for_each_property_of_node(dn, pp) \
350 for (pp = dn->properties; pp != NULL; pp = pp->next)
351
352 extern int of_n_addr_cells(struct device_node *np);
353 extern int of_n_size_cells(struct device_node *np);
354 extern const struct of_device_id *of_match_node(
355 const struct of_device_id *matches, const struct device_node *node);
356 extern int of_modalias_node(struct device_node *node, char *modalias, int len);
357 extern void of_print_phandle_args(const char *msg, const struct of_phandle_args *args);
358 extern struct device_node *of_parse_phandle(const struct device_node *np,
359 const char *phandle_name,
360 int index);
361 extern int of_parse_phandle_with_args(const struct device_node *np,
362 const char *list_name, const char *cells_name, int index,
363 struct of_phandle_args *out_args);
364 extern int of_parse_phandle_with_fixed_args(const struct device_node *np,
365 const char *list_name, int cells_count, int index,
366 struct of_phandle_args *out_args);
367 extern int of_count_phandle_with_args(const struct device_node *np,
368 const char *list_name, const char *cells_name);
369
370 /* phandle iterator functions */
371 extern int of_phandle_iterator_init(struct of_phandle_iterator *it,
372 const struct device_node *np,
373 const char *list_name,
374 const char *cells_name,
375 int cell_count);
376
377 extern int of_phandle_iterator_next(struct of_phandle_iterator *it);
378 extern int of_phandle_iterator_args(struct of_phandle_iterator *it,
379 uint32_t *args,
380 int size);
381
382 extern void of_alias_scan(void * (*dt_alloc)(u64 size, u64 align));
383 extern int of_alias_get_id(struct device_node *np, const char *stem);
384 extern int of_alias_get_highest_id(const char *stem);
385
386 extern int of_machine_is_compatible(const char *compat);
387
388 extern int of_add_property(struct device_node *np, struct property *prop);
389 extern int of_remove_property(struct device_node *np, struct property *prop);
390 extern int of_update_property(struct device_node *np, struct property *newprop);
391
392 /* For updating the device tree at runtime */
393 #define OF_RECONFIG_ATTACH_NODE 0x0001
394 #define OF_RECONFIG_DETACH_NODE 0x0002
395 #define OF_RECONFIG_ADD_PROPERTY 0x0003
396 #define OF_RECONFIG_REMOVE_PROPERTY 0x0004
397 #define OF_RECONFIG_UPDATE_PROPERTY 0x0005
398
399 extern int of_attach_node(struct device_node *);
400 extern int of_detach_node(struct device_node *);
401
402 #define of_match_ptr(_ptr) (_ptr)
403
404 /**
405 * of_property_read_u8_array - Find and read an array of u8 from a property.
406 *
407 * @np: device node from which the property value is to be read.
408 * @propname: name of the property to be searched.
409 * @out_values: pointer to return value, modified only if return value is 0.
410 * @sz: number of array elements to read
411 *
412 * Search for a property in a device node and read 8-bit value(s) from
413 * it. Returns 0 on success, -EINVAL if the property does not exist,
414 * -ENODATA if property does not have a value, and -EOVERFLOW if the
415 * property data isn't large enough.
416 *
417 * dts entry of array should be like:
418 * property = /bits/ 8 <0x50 0x60 0x70>;
419 *
420 * The out_values is modified only if a valid u8 value can be decoded.
421 */
422 static inline int of_property_read_u8_array(const struct device_node *np,
423 const char *propname,
424 u8 *out_values, size_t sz)
425 {
426 int ret = of_property_read_variable_u8_array(np, propname, out_values,
427 sz, 0);
428 if (ret >= 0)
429 return 0;
430 else
431 return ret;
432 }
433
434 /**
435 * of_property_read_u16_array - Find and read an array of u16 from a property.
436 *
437 * @np: device node from which the property value is to be read.
438 * @propname: name of the property to be searched.
439 * @out_values: pointer to return value, modified only if return value is 0.
440 * @sz: number of array elements to read
441 *
442 * Search for a property in a device node and read 16-bit value(s) from
443 * it. Returns 0 on success, -EINVAL if the property does not exist,
444 * -ENODATA if property does not have a value, and -EOVERFLOW if the
445 * property data isn't large enough.
446 *
447 * dts entry of array should be like:
448 * property = /bits/ 16 <0x5000 0x6000 0x7000>;
449 *
450 * The out_values is modified only if a valid u16 value can be decoded.
451 */
452 static inline int of_property_read_u16_array(const struct device_node *np,
453 const char *propname,
454 u16 *out_values, size_t sz)
455 {
456 int ret = of_property_read_variable_u16_array(np, propname, out_values,
457 sz, 0);
458 if (ret >= 0)
459 return 0;
460 else
461 return ret;
462 }
463
464 /**
465 * of_property_read_u32_array - Find and read an array of 32 bit integers
466 * from a property.
467 *
468 * @np: device node from which the property value is to be read.
469 * @propname: name of the property to be searched.
470 * @out_values: pointer to return value, modified only if return value is 0.
471 * @sz: number of array elements to read
472 *
473 * Search for a property in a device node and read 32-bit value(s) from
474 * it. Returns 0 on success, -EINVAL if the property does not exist,
475 * -ENODATA if property does not have a value, and -EOVERFLOW if the
476 * property data isn't large enough.
477 *
478 * The out_values is modified only if a valid u32 value can be decoded.
479 */
480 static inline int of_property_read_u32_array(const struct device_node *np,
481 const char *propname,
482 u32 *out_values, size_t sz)
483 {
484 int ret = of_property_read_variable_u32_array(np, propname, out_values,
485 sz, 0);
486 if (ret >= 0)
487 return 0;
488 else
489 return ret;
490 }
491
492 /**
493 * of_property_read_u64_array - Find and read an array of 64 bit integers
494 * from a property.
495 *
496 * @np: device node from which the property value is to be read.
497 * @propname: name of the property to be searched.
498 * @out_values: pointer to return value, modified only if return value is 0.
499 * @sz: number of array elements to read
500 *
501 * Search for a property in a device node and read 64-bit value(s) from
502 * it. Returns 0 on success, -EINVAL if the property does not exist,
503 * -ENODATA if property does not have a value, and -EOVERFLOW if the
504 * property data isn't large enough.
505 *
506 * The out_values is modified only if a valid u64 value can be decoded.
507 */
508 static inline int of_property_read_u64_array(const struct device_node *np,
509 const char *propname,
510 u64 *out_values, size_t sz)
511 {
512 int ret = of_property_read_variable_u64_array(np, propname, out_values,
513 sz, 0);
514 if (ret >= 0)
515 return 0;
516 else
517 return ret;
518 }
519
520 /*
521 * struct property *prop;
522 * const __be32 *p;
523 * u32 u;
524 *
525 * of_property_for_each_u32(np, "propname", prop, p, u)
526 * printk("U32 value: %x\n", u);
527 */
528 const __be32 *of_prop_next_u32(struct property *prop, const __be32 *cur,
529 u32 *pu);
530 /*
531 * struct property *prop;
532 * const char *s;
533 *
534 * of_property_for_each_string(np, "propname", prop, s)
535 * printk("String value: %s\n", s);
536 */
537 const char *of_prop_next_string(struct property *prop, const char *cur);
538
539 bool of_console_check(struct device_node *dn, char *name, int index);
540
541 #else /* CONFIG_OF */
542
543 static inline void of_core_init(void)
544 {
545 }
546
547 static inline bool is_of_node(const struct fwnode_handle *fwnode)
548 {
549 return false;
550 }
551
552 static inline struct device_node *to_of_node(const struct fwnode_handle *fwnode)
553 {
554 return NULL;
555 }
556
557 static inline const char* of_node_full_name(const struct device_node *np)
558 {
559 return "<no-node>";
560 }
561
562 static inline struct device_node *of_find_node_by_name(struct device_node *from,
563 const char *name)
564 {
565 return NULL;
566 }
567
568 static inline struct device_node *of_find_node_by_type(struct device_node *from,
569 const char *type)
570 {
571 return NULL;
572 }
573
574 static inline struct device_node *of_find_matching_node_and_match(
575 struct device_node *from,
576 const struct of_device_id *matches,
577 const struct of_device_id **match)
578 {
579 return NULL;
580 }
581
582 static inline struct device_node *of_find_node_by_path(const char *path)
583 {
584 return NULL;
585 }
586
587 static inline struct device_node *of_find_node_opts_by_path(const char *path,
588 const char **opts)
589 {
590 return NULL;
591 }
592
593 static inline struct device_node *of_find_node_by_phandle(phandle handle)
594 {
595 return NULL;
596 }
597
598 static inline struct device_node *of_get_parent(const struct device_node *node)
599 {
600 return NULL;
601 }
602
603 static inline struct device_node *of_get_next_child(
604 const struct device_node *node, struct device_node *prev)
605 {
606 return NULL;
607 }
608
609 static inline struct device_node *of_get_next_available_child(
610 const struct device_node *node, struct device_node *prev)
611 {
612 return NULL;
613 }
614
615 static inline struct device_node *of_find_node_with_property(
616 struct device_node *from, const char *prop_name)
617 {
618 return NULL;
619 }
620
621 #define of_fwnode_handle(node) NULL
622
623 static inline bool of_have_populated_dt(void)
624 {
625 return false;
626 }
627
628 static inline struct device_node *of_get_child_by_name(
629 const struct device_node *node,
630 const char *name)
631 {
632 return NULL;
633 }
634
635 static inline int of_device_is_compatible(const struct device_node *device,
636 const char *name)
637 {
638 return 0;
639 }
640
641 static inline int of_device_compatible_match(struct device_node *device,
642 const char *const *compat)
643 {
644 return 0;
645 }
646
647 static inline bool of_device_is_available(const struct device_node *device)
648 {
649 return false;
650 }
651
652 static inline bool of_device_is_big_endian(const struct device_node *device)
653 {
654 return false;
655 }
656
657 static inline struct property *of_find_property(const struct device_node *np,
658 const char *name,
659 int *lenp)
660 {
661 return NULL;
662 }
663
664 static inline struct device_node *of_find_compatible_node(
665 struct device_node *from,
666 const char *type,
667 const char *compat)
668 {
669 return NULL;
670 }
671
672 static inline int of_property_count_elems_of_size(const struct device_node *np,
673 const char *propname, int elem_size)
674 {
675 return -ENOSYS;
676 }
677
678 static inline int of_property_read_u32_index(const struct device_node *np,
679 const char *propname, u32 index, u32 *out_value)
680 {
681 return -ENOSYS;
682 }
683
684 static inline int of_property_read_u8_array(const struct device_node *np,
685 const char *propname, u8 *out_values, size_t sz)
686 {
687 return -ENOSYS;
688 }
689
690 static inline int of_property_read_u16_array(const struct device_node *np,
691 const char *propname, u16 *out_values, size_t sz)
692 {
693 return -ENOSYS;
694 }
695
696 static inline int of_property_read_u32_array(const struct device_node *np,
697 const char *propname,
698 u32 *out_values, size_t sz)
699 {
700 return -ENOSYS;
701 }
702
703 static inline int of_property_read_u64_array(const struct device_node *np,
704 const char *propname,
705 u64 *out_values, size_t sz)
706 {
707 return -ENOSYS;
708 }
709
710 static inline int of_property_read_string(const struct device_node *np,
711 const char *propname,
712 const char **out_string)
713 {
714 return -ENOSYS;
715 }
716
717 static inline int of_property_read_string_helper(const struct device_node *np,
718 const char *propname,
719 const char **out_strs, size_t sz, int index)
720 {
721 return -ENOSYS;
722 }
723
724 static inline const void *of_get_property(const struct device_node *node,
725 const char *name,
726 int *lenp)
727 {
728 return NULL;
729 }
730
731 static inline struct device_node *of_get_cpu_node(int cpu,
732 unsigned int *thread)
733 {
734 return NULL;
735 }
736
737 static inline int of_property_read_u64(const struct device_node *np,
738 const char *propname, u64 *out_value)
739 {
740 return -ENOSYS;
741 }
742
743 static inline int of_property_match_string(const struct device_node *np,
744 const char *propname,
745 const char *string)
746 {
747 return -ENOSYS;
748 }
749
750 static inline struct device_node *of_parse_phandle(const struct device_node *np,
751 const char *phandle_name,
752 int index)
753 {
754 return NULL;
755 }
756
757 static inline int of_parse_phandle_with_args(const struct device_node *np,
758 const char *list_name,
759 const char *cells_name,
760 int index,
761 struct of_phandle_args *out_args)
762 {
763 return -ENOSYS;
764 }
765
766 static inline int of_parse_phandle_with_fixed_args(const struct device_node *np,
767 const char *list_name, int cells_count, int index,
768 struct of_phandle_args *out_args)
769 {
770 return -ENOSYS;
771 }
772
773 static inline int of_count_phandle_with_args(struct device_node *np,
774 const char *list_name,
775 const char *cells_name)
776 {
777 return -ENOSYS;
778 }
779
780 static inline int of_phandle_iterator_init(struct of_phandle_iterator *it,
781 const struct device_node *np,
782 const char *list_name,
783 const char *cells_name,
784 int cell_count)
785 {
786 return -ENOSYS;
787 }
788
789 static inline int of_phandle_iterator_next(struct of_phandle_iterator *it)
790 {
791 return -ENOSYS;
792 }
793
794 static inline int of_phandle_iterator_args(struct of_phandle_iterator *it,
795 uint32_t *args,
796 int size)
797 {
798 return 0;
799 }
800
801 static inline int of_alias_get_id(struct device_node *np, const char *stem)
802 {
803 return -ENOSYS;
804 }
805
806 static inline int of_alias_get_highest_id(const char *stem)
807 {
808 return -ENOSYS;
809 }
810
811 static inline int of_machine_is_compatible(const char *compat)
812 {
813 return 0;
814 }
815
816 static inline bool of_console_check(const struct device_node *dn, const char *name, int index)
817 {
818 return false;
819 }
820
821 static inline const __be32 *of_prop_next_u32(struct property *prop,
822 const __be32 *cur, u32 *pu)
823 {
824 return NULL;
825 }
826
827 static inline const char *of_prop_next_string(struct property *prop,
828 const char *cur)
829 {
830 return NULL;
831 }
832
833 static inline int of_node_check_flag(struct device_node *n, unsigned long flag)
834 {
835 return 0;
836 }
837
838 static inline int of_node_test_and_set_flag(struct device_node *n,
839 unsigned long flag)
840 {
841 return 0;
842 }
843
844 static inline void of_node_set_flag(struct device_node *n, unsigned long flag)
845 {
846 }
847
848 static inline void of_node_clear_flag(struct device_node *n, unsigned long flag)
849 {
850 }
851
852 static inline int of_property_check_flag(struct property *p, unsigned long flag)
853 {
854 return 0;
855 }
856
857 static inline void of_property_set_flag(struct property *p, unsigned long flag)
858 {
859 }
860
861 static inline void of_property_clear_flag(struct property *p, unsigned long flag)
862 {
863 }
864
865 #define of_match_ptr(_ptr) NULL
866 #define of_match_node(_matches, _node) NULL
867 #endif /* CONFIG_OF */
868
869 /* Default string compare functions, Allow arch asm/prom.h to override */
870 #if !defined(of_compat_cmp)
871 #define of_compat_cmp(s1, s2, l) strcasecmp((s1), (s2))
872 #define of_prop_cmp(s1, s2) strcmp((s1), (s2))
873 #define of_node_cmp(s1, s2) strcasecmp((s1), (s2))
874 #endif
875
876 #if defined(CONFIG_OF) && defined(CONFIG_NUMA)
877 extern int of_node_to_nid(struct device_node *np);
878 #else
879 static inline int of_node_to_nid(struct device_node *device)
880 {
881 return NUMA_NO_NODE;
882 }
883 #endif
884
885 #ifdef CONFIG_OF_NUMA
886 extern int of_numa_init(void);
887 #else
888 static inline int of_numa_init(void)
889 {
890 return -ENOSYS;
891 }
892 #endif
893
894 static inline struct device_node *of_find_matching_node(
895 struct device_node *from,
896 const struct of_device_id *matches)
897 {
898 return of_find_matching_node_and_match(from, matches, NULL);
899 }
900
901 /**
902 * of_property_count_u8_elems - Count the number of u8 elements in a property
903 *
904 * @np: device node from which the property value is to be read.
905 * @propname: name of the property to be searched.
906 *
907 * Search for a property in a device node and count the number of u8 elements
908 * in it. Returns number of elements on sucess, -EINVAL if the property does
909 * not exist or its length does not match a multiple of u8 and -ENODATA if the
910 * property does not have a value.
911 */
912 static inline int of_property_count_u8_elems(const struct device_node *np,
913 const char *propname)
914 {
915 return of_property_count_elems_of_size(np, propname, sizeof(u8));
916 }
917
918 /**
919 * of_property_count_u16_elems - Count the number of u16 elements in a property
920 *
921 * @np: device node from which the property value is to be read.
922 * @propname: name of the property to be searched.
923 *
924 * Search for a property in a device node and count the number of u16 elements
925 * in it. Returns number of elements on sucess, -EINVAL if the property does
926 * not exist or its length does not match a multiple of u16 and -ENODATA if the
927 * property does not have a value.
928 */
929 static inline int of_property_count_u16_elems(const struct device_node *np,
930 const char *propname)
931 {
932 return of_property_count_elems_of_size(np, propname, sizeof(u16));
933 }
934
935 /**
936 * of_property_count_u32_elems - Count the number of u32 elements in a property
937 *
938 * @np: device node from which the property value is to be read.
939 * @propname: name of the property to be searched.
940 *
941 * Search for a property in a device node and count the number of u32 elements
942 * in it. Returns number of elements on sucess, -EINVAL if the property does
943 * not exist or its length does not match a multiple of u32 and -ENODATA if the
944 * property does not have a value.
945 */
946 static inline int of_property_count_u32_elems(const struct device_node *np,
947 const char *propname)
948 {
949 return of_property_count_elems_of_size(np, propname, sizeof(u32));
950 }
951
952 /**
953 * of_property_count_u64_elems - Count the number of u64 elements in a property
954 *
955 * @np: device node from which the property value is to be read.
956 * @propname: name of the property to be searched.
957 *
958 * Search for a property in a device node and count the number of u64 elements
959 * in it. Returns number of elements on sucess, -EINVAL if the property does
960 * not exist or its length does not match a multiple of u64 and -ENODATA if the
961 * property does not have a value.
962 */
963 static inline int of_property_count_u64_elems(const struct device_node *np,
964 const char *propname)
965 {
966 return of_property_count_elems_of_size(np, propname, sizeof(u64));
967 }
968
969 /**
970 * of_property_read_string_array() - Read an array of strings from a multiple
971 * strings property.
972 * @np: device node from which the property value is to be read.
973 * @propname: name of the property to be searched.
974 * @out_strs: output array of string pointers.
975 * @sz: number of array elements to read.
976 *
977 * Search for a property in a device tree node and retrieve a list of
978 * terminated string values (pointer to data, not a copy) in that property.
979 *
980 * If @out_strs is NULL, the number of strings in the property is returned.
981 */
982 static inline int of_property_read_string_array(const struct device_node *np,
983 const char *propname, const char **out_strs,
984 size_t sz)
985 {
986 return of_property_read_string_helper(np, propname, out_strs, sz, 0);
987 }
988
989 /**
990 * of_property_count_strings() - Find and return the number of strings from a
991 * multiple strings property.
992 * @np: device node from which the property value is to be read.
993 * @propname: name of the property to be searched.
994 *
995 * Search for a property in a device tree node and retrieve the number of null
996 * terminated string contain in it. Returns the number of strings on
997 * success, -EINVAL if the property does not exist, -ENODATA if property
998 * does not have a value, and -EILSEQ if the string is not null-terminated
999 * within the length of the property data.
1000 */
1001 static inline int of_property_count_strings(const struct device_node *np,
1002 const char *propname)
1003 {
1004 return of_property_read_string_helper(np, propname, NULL, 0, 0);
1005 }
1006
1007 /**
1008 * of_property_read_string_index() - Find and read a string from a multiple
1009 * strings property.
1010 * @np: device node from which the property value is to be read.
1011 * @propname: name of the property to be searched.
1012 * @index: index of the string in the list of strings
1013 * @out_string: pointer to null terminated return string, modified only if
1014 * return value is 0.
1015 *
1016 * Search for a property in a device tree node and retrieve a null
1017 * terminated string value (pointer to data, not a copy) in the list of strings
1018 * contained in that property.
1019 * Returns 0 on success, -EINVAL if the property does not exist, -ENODATA if
1020 * property does not have a value, and -EILSEQ if the string is not
1021 * null-terminated within the length of the property data.
1022 *
1023 * The out_string pointer is modified only if a valid string can be decoded.
1024 */
1025 static inline int of_property_read_string_index(const struct device_node *np,
1026 const char *propname,
1027 int index, const char **output)
1028 {
1029 int rc = of_property_read_string_helper(np, propname, output, 1, index);
1030 return rc < 0 ? rc : 0;
1031 }
1032
1033 /**
1034 * of_property_read_bool - Findfrom a property
1035 * @np: device node from which the property value is to be read.
1036 * @propname: name of the property to be searched.
1037 *
1038 * Search for a property in a device node.
1039 * Returns true if the property exists false otherwise.
1040 */
1041 static inline bool of_property_read_bool(const struct device_node *np,
1042 const char *propname)
1043 {
1044 struct property *prop = of_find_property(np, propname, NULL);
1045
1046 return prop ? true : false;
1047 }
1048
1049 static inline int of_property_read_u8(const struct device_node *np,
1050 const char *propname,
1051 u8 *out_value)
1052 {
1053 return of_property_read_u8_array(np, propname, out_value, 1);
1054 }
1055
1056 static inline int of_property_read_u16(const struct device_node *np,
1057 const char *propname,
1058 u16 *out_value)
1059 {
1060 return of_property_read_u16_array(np, propname, out_value, 1);
1061 }
1062
1063 static inline int of_property_read_u32(const struct device_node *np,
1064 const char *propname,
1065 u32 *out_value)
1066 {
1067 return of_property_read_u32_array(np, propname, out_value, 1);
1068 }
1069
1070 static inline int of_property_read_s32(const struct device_node *np,
1071 const char *propname,
1072 s32 *out_value)
1073 {
1074 return of_property_read_u32(np, propname, (u32*) out_value);
1075 }
1076
1077 #define of_for_each_phandle(it, err, np, ln, cn, cc) \
1078 for (of_phandle_iterator_init((it), (np), (ln), (cn), (cc)), \
1079 err = of_phandle_iterator_next(it); \
1080 err == 0; \
1081 err = of_phandle_iterator_next(it))
1082
1083 #define of_property_for_each_u32(np, propname, prop, p, u) \
1084 for (prop = of_find_property(np, propname, NULL), \
1085 p = of_prop_next_u32(prop, NULL, &u); \
1086 p; \
1087 p = of_prop_next_u32(prop, p, &u))
1088
1089 #define of_property_for_each_string(np, propname, prop, s) \
1090 for (prop = of_find_property(np, propname, NULL), \
1091 s = of_prop_next_string(prop, NULL); \
1092 s; \
1093 s = of_prop_next_string(prop, s))
1094
1095 #define for_each_node_by_name(dn, name) \
1096 for (dn = of_find_node_by_name(NULL, name); dn; \
1097 dn = of_find_node_by_name(dn, name))
1098 #define for_each_node_by_type(dn, type) \
1099 for (dn = of_find_node_by_type(NULL, type); dn; \
1100 dn = of_find_node_by_type(dn, type))
1101 #define for_each_compatible_node(dn, type, compatible) \
1102 for (dn = of_find_compatible_node(NULL, type, compatible); dn; \
1103 dn = of_find_compatible_node(dn, type, compatible))
1104 #define for_each_matching_node(dn, matches) \
1105 for (dn = of_find_matching_node(NULL, matches); dn; \
1106 dn = of_find_matching_node(dn, matches))
1107 #define for_each_matching_node_and_match(dn, matches, match) \
1108 for (dn = of_find_matching_node_and_match(NULL, matches, match); \
1109 dn; dn = of_find_matching_node_and_match(dn, matches, match))
1110
1111 #define for_each_child_of_node(parent, child) \
1112 for (child = of_get_next_child(parent, NULL); child != NULL; \
1113 child = of_get_next_child(parent, child))
1114 #define for_each_available_child_of_node(parent, child) \
1115 for (child = of_get_next_available_child(parent, NULL); child != NULL; \
1116 child = of_get_next_available_child(parent, child))
1117
1118 #define for_each_node_with_property(dn, prop_name) \
1119 for (dn = of_find_node_with_property(NULL, prop_name); dn; \
1120 dn = of_find_node_with_property(dn, prop_name))
1121
1122 static inline int of_get_child_count(const struct device_node *np)
1123 {
1124 struct device_node *child;
1125 int num = 0;
1126
1127 for_each_child_of_node(np, child)
1128 num++;
1129
1130 return num;
1131 }
1132
1133 static inline int of_get_available_child_count(const struct device_node *np)
1134 {
1135 struct device_node *child;
1136 int num = 0;
1137
1138 for_each_available_child_of_node(np, child)
1139 num++;
1140
1141 return num;
1142 }
1143
1144 #if defined(CONFIG_OF) && !defined(MODULE)
1145 #define _OF_DECLARE(table, name, compat, fn, fn_type) \
1146 static const struct of_device_id __of_table_##name \
1147 __used __section(__##table##_of_table) \
1148 = { .compatible = compat, \
1149 .data = (fn == (fn_type)NULL) ? fn : fn }
1150 #else
1151 #define _OF_DECLARE(table, name, compat, fn, fn_type) \
1152 static const struct of_device_id __of_table_##name \
1153 __attribute__((unused)) \
1154 = { .compatible = compat, \
1155 .data = (fn == (fn_type)NULL) ? fn : fn }
1156 #endif
1157
1158 typedef int (*of_init_fn_2)(struct device_node *, struct device_node *);
1159 typedef int (*of_init_fn_1_ret)(struct device_node *);
1160 typedef void (*of_init_fn_1)(struct device_node *);
1161
1162 #define OF_DECLARE_1(table, name, compat, fn) \
1163 _OF_DECLARE(table, name, compat, fn, of_init_fn_1)
1164 #define OF_DECLARE_1_RET(table, name, compat, fn) \
1165 _OF_DECLARE(table, name, compat, fn, of_init_fn_1_ret)
1166 #define OF_DECLARE_2(table, name, compat, fn) \
1167 _OF_DECLARE(table, name, compat, fn, of_init_fn_2)
1168
1169 /**
1170 * struct of_changeset_entry - Holds a changeset entry
1171 *
1172 * @node: list_head for the log list
1173 * @action: notifier action
1174 * @np: pointer to the device node affected
1175 * @prop: pointer to the property affected
1176 * @old_prop: hold a pointer to the original property
1177 *
1178 * Every modification of the device tree during a changeset
1179 * is held in a list of of_changeset_entry structures.
1180 * That way we can recover from a partial application, or we can
1181 * revert the changeset
1182 */
1183 struct of_changeset_entry {
1184 struct list_head node;
1185 unsigned long action;
1186 struct device_node *np;
1187 struct property *prop;
1188 struct property *old_prop;
1189 };
1190
1191 /**
1192 * struct of_changeset - changeset tracker structure
1193 *
1194 * @entries: list_head for the changeset entries
1195 *
1196 * changesets are a convenient way to apply bulk changes to the
1197 * live tree. In case of an error, changes are rolled-back.
1198 * changesets live on after initial application, and if not
1199 * destroyed after use, they can be reverted in one single call.
1200 */
1201 struct of_changeset {
1202 struct list_head entries;
1203 };
1204
1205 enum of_reconfig_change {
1206 OF_RECONFIG_NO_CHANGE = 0,
1207 OF_RECONFIG_CHANGE_ADD,
1208 OF_RECONFIG_CHANGE_REMOVE,
1209 };
1210
1211 #ifdef CONFIG_OF_DYNAMIC
1212 extern int of_reconfig_notifier_register(struct notifier_block *);
1213 extern int of_reconfig_notifier_unregister(struct notifier_block *);
1214 extern int of_reconfig_notify(unsigned long, struct of_reconfig_data *rd);
1215 extern int of_reconfig_get_state_change(unsigned long action,
1216 struct of_reconfig_data *arg);
1217
1218 extern void of_changeset_init(struct of_changeset *ocs);
1219 extern void of_changeset_destroy(struct of_changeset *ocs);
1220 extern int of_changeset_apply(struct of_changeset *ocs);
1221 extern int of_changeset_revert(struct of_changeset *ocs);
1222 extern int of_changeset_action(struct of_changeset *ocs,
1223 unsigned long action, struct device_node *np,
1224 struct property *prop);
1225
1226 static inline int of_changeset_attach_node(struct of_changeset *ocs,
1227 struct device_node *np)
1228 {
1229 return of_changeset_action(ocs, OF_RECONFIG_ATTACH_NODE, np, NULL);
1230 }
1231
1232 static inline int of_changeset_detach_node(struct of_changeset *ocs,
1233 struct device_node *np)
1234 {
1235 return of_changeset_action(ocs, OF_RECONFIG_DETACH_NODE, np, NULL);
1236 }
1237
1238 static inline int of_changeset_add_property(struct of_changeset *ocs,
1239 struct device_node *np, struct property *prop)
1240 {
1241 return of_changeset_action(ocs, OF_RECONFIG_ADD_PROPERTY, np, prop);
1242 }
1243
1244 static inline int of_changeset_remove_property(struct of_changeset *ocs,
1245 struct device_node *np, struct property *prop)
1246 {
1247 return of_changeset_action(ocs, OF_RECONFIG_REMOVE_PROPERTY, np, prop);
1248 }
1249
1250 static inline int of_changeset_update_property(struct of_changeset *ocs,
1251 struct device_node *np, struct property *prop)
1252 {
1253 return of_changeset_action(ocs, OF_RECONFIG_UPDATE_PROPERTY, np, prop);
1254 }
1255 #else /* CONFIG_OF_DYNAMIC */
1256 static inline int of_reconfig_notifier_register(struct notifier_block *nb)
1257 {
1258 return -EINVAL;
1259 }
1260 static inline int of_reconfig_notifier_unregister(struct notifier_block *nb)
1261 {
1262 return -EINVAL;
1263 }
1264 static inline int of_reconfig_notify(unsigned long action,
1265 struct of_reconfig_data *arg)
1266 {
1267 return -EINVAL;
1268 }
1269 static inline int of_reconfig_get_state_change(unsigned long action,
1270 struct of_reconfig_data *arg)
1271 {
1272 return -EINVAL;
1273 }
1274 #endif /* CONFIG_OF_DYNAMIC */
1275
1276 /* CONFIG_OF_RESOLVE api */
1277 extern int of_resolve_phandles(struct device_node *tree);
1278
1279 /**
1280 * of_device_is_system_power_controller - Tells if system-power-controller is found for device_node
1281 * @np: Pointer to the given device_node
1282 *
1283 * return true if present false otherwise
1284 */
1285 static inline bool of_device_is_system_power_controller(const struct device_node *np)
1286 {
1287 return of_property_read_bool(np, "system-power-controller");
1288 }
1289
1290 /**
1291 * Overlay support
1292 */
1293
1294 enum of_overlay_notify_action {
1295 OF_OVERLAY_PRE_APPLY,
1296 OF_OVERLAY_POST_APPLY,
1297 OF_OVERLAY_PRE_REMOVE,
1298 OF_OVERLAY_POST_REMOVE,
1299 };
1300
1301 struct of_overlay_notify_data {
1302 struct device_node *overlay;
1303 struct device_node *target;
1304 };
1305
1306 #ifdef CONFIG_OF_OVERLAY
1307
1308 /* ID based overlays; the API for external users */
1309 int of_overlay_create(struct device_node *tree);
1310 int of_overlay_destroy(int id);
1311 int of_overlay_destroy_all(void);
1312
1313 int of_overlay_notifier_register(struct notifier_block *nb);
1314 int of_overlay_notifier_unregister(struct notifier_block *nb);
1315
1316 #else
1317
1318 static inline int of_overlay_create(struct device_node *tree)
1319 {
1320 return -ENOTSUPP;
1321 }
1322
1323 static inline int of_overlay_destroy(int id)
1324 {
1325 return -ENOTSUPP;
1326 }
1327
1328 static inline int of_overlay_destroy_all(void)
1329 {
1330 return -ENOTSUPP;
1331 }
1332
1333 static inline int of_overlay_notifier_register(struct notifier_block *nb)
1334 {
1335 return 0;
1336 }
1337
1338 static inline int of_overlay_notifier_unregister(struct notifier_block *nb)
1339 {
1340 return 0;
1341 }
1342
1343 #endif
1344
1345 #endif /* _LINUX_OF_H */