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e169cfbe
GL
1/*
2 * Functions for working with the Flattened Device Tree data format
3 *
4 * Copyright 2009 Benjamin Herrenschmidt, IBM Corp
5 * benh@kernel.crashing.org
6 *
7 * This program is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU General Public License
9 * version 2 as published by the Free Software Foundation.
10 */
11
bd0096d7 12#define pr_fmt(fmt) "OF: fdt: " fmt
606ad42a 13
08d53aa5 14#include <linux/crc32.h>
41f88009 15#include <linux/kernel.h>
f7b3a835 16#include <linux/initrd.h>
a1727da5 17#include <linux/memblock.h>
f8062386 18#include <linux/mutex.h>
e169cfbe
GL
19#include <linux/of.h>
20#include <linux/of_fdt.h>
3f0c8206 21#include <linux/of_reserved_mem.h>
e8d9d1f5 22#include <linux/sizes.h>
4ef7b373
JK
23#include <linux/string.h>
24#include <linux/errno.h>
fe140423 25#include <linux/slab.h>
e6a6928c 26#include <linux/libfdt.h>
b0a6fb36 27#include <linux/debugfs.h>
fb11ffe7 28#include <linux/serial_core.h>
08d53aa5 29#include <linux/sysfs.h>
51975db0 30
c89810ac 31#include <asm/setup.h> /* for COMMAND_LINE_SIZE */
4ef7b373
JK
32#include <asm/page.h>
33
704033ce
LA
34/*
35 * of_fdt_limit_memory - limit the number of regions in the /memory node
36 * @limit: maximum entries
37 *
38 * Adjust the flattened device tree to have at most 'limit' number of
39 * memory entries in the /memory node. This function may be called
40 * any time after initial_boot_param is set.
41 */
42void of_fdt_limit_memory(int limit)
43{
44 int memory;
45 int len;
46 const void *val;
47 int nr_address_cells = OF_ROOT_NODE_ADDR_CELLS_DEFAULT;
48 int nr_size_cells = OF_ROOT_NODE_SIZE_CELLS_DEFAULT;
49 const uint32_t *addr_prop;
50 const uint32_t *size_prop;
51 int root_offset;
52 int cell_size;
53
54 root_offset = fdt_path_offset(initial_boot_params, "/");
55 if (root_offset < 0)
56 return;
57
58 addr_prop = fdt_getprop(initial_boot_params, root_offset,
59 "#address-cells", NULL);
60 if (addr_prop)
61 nr_address_cells = fdt32_to_cpu(*addr_prop);
62
63 size_prop = fdt_getprop(initial_boot_params, root_offset,
64 "#size-cells", NULL);
65 if (size_prop)
66 nr_size_cells = fdt32_to_cpu(*size_prop);
67
68 cell_size = sizeof(uint32_t)*(nr_address_cells + nr_size_cells);
69
70 memory = fdt_path_offset(initial_boot_params, "/memory");
71 if (memory > 0) {
72 val = fdt_getprop(initial_boot_params, memory, "reg", &len);
73 if (len > limit*cell_size) {
74 len = limit*cell_size;
75 pr_debug("Limiting number of entries to %d\n", limit);
76 fdt_setprop(initial_boot_params, memory, "reg", val,
77 len);
78 }
79 }
80}
81
9706a36e
SN
82/**
83 * of_fdt_is_compatible - Return true if given node from the given blob has
84 * compat in its compatible list
85 * @blob: A device tree blob
86 * @node: node to test
87 * @compat: compatible string to compare with compatible list.
a4f740cf
GL
88 *
89 * On match, returns a non-zero value with smaller values returned for more
90 * specific compatible values.
9706a36e 91 */
c972de14 92int of_fdt_is_compatible(const void *blob,
9706a36e
SN
93 unsigned long node, const char *compat)
94{
95 const char *cp;
9d0c4dfe
RH
96 int cplen;
97 unsigned long l, score = 0;
9706a36e 98
e6a6928c 99 cp = fdt_getprop(blob, node, "compatible", &cplen);
9706a36e
SN
100 if (cp == NULL)
101 return 0;
102 while (cplen > 0) {
a4f740cf 103 score++;
9706a36e 104 if (of_compat_cmp(cp, compat, strlen(compat)) == 0)
a4f740cf 105 return score;
9706a36e
SN
106 l = strlen(cp) + 1;
107 cp += l;
108 cplen -= l;
109 }
110
111 return 0;
112}
113
cc783786
KC
114/**
115 * of_fdt_is_big_endian - Return true if given node needs BE MMIO accesses
116 * @blob: A device tree blob
117 * @node: node to test
118 *
119 * Returns true if the node has a "big-endian" property, or if the kernel
120 * was compiled for BE *and* the node has a "native-endian" property.
121 * Returns false otherwise.
122 */
123bool of_fdt_is_big_endian(const void *blob, unsigned long node)
124{
125 if (fdt_getprop(blob, node, "big-endian", NULL))
126 return true;
127 if (IS_ENABLED(CONFIG_CPU_BIG_ENDIAN) &&
128 fdt_getprop(blob, node, "native-endian", NULL))
129 return true;
130 return false;
131}
132
a4f740cf
GL
133/**
134 * of_fdt_match - Return true if node matches a list of compatible values
135 */
c972de14 136int of_fdt_match(const void *blob, unsigned long node,
7b482c83 137 const char *const *compat)
a4f740cf
GL
138{
139 unsigned int tmp, score = 0;
140
141 if (!compat)
142 return 0;
143
144 while (*compat) {
145 tmp = of_fdt_is_compatible(blob, node, *compat);
146 if (tmp && (score == 0 || (tmp < score)))
147 score = tmp;
148 compat++;
149 }
150
151 return score;
152}
153
44856819 154static void *unflatten_dt_alloc(void **mem, unsigned long size,
bbd33931
GL
155 unsigned long align)
156{
157 void *res;
158
44856819
GL
159 *mem = PTR_ALIGN(*mem, align);
160 res = *mem;
bbd33931
GL
161 *mem += size;
162
163 return res;
164}
165
dfbd4c6e
GS
166static void populate_properties(const void *blob,
167 int offset,
168 void **mem,
169 struct device_node *np,
170 const char *nodename,
5063e25a 171 bool dryrun)
bbd33931 172{
dfbd4c6e
GS
173 struct property *pp, **pprev = NULL;
174 int cur;
175 bool has_name = false;
176
177 pprev = &np->properties;
178 for (cur = fdt_first_property_offset(blob, offset);
179 cur >= 0;
180 cur = fdt_next_property_offset(blob, cur)) {
181 const __be32 *val;
182 const char *pname;
183 u32 sz;
184
185 val = fdt_getprop_by_offset(blob, cur, &pname, &sz);
186 if (!val) {
606ad42a 187 pr_warn("Cannot locate property at 0x%x\n", cur);
dfbd4c6e
GS
188 continue;
189 }
190
191 if (!pname) {
606ad42a 192 pr_warn("Cannot find property name at 0x%x\n", cur);
dfbd4c6e
GS
193 continue;
194 }
195
196 if (!strcmp(pname, "name"))
197 has_name = true;
198
199 pp = unflatten_dt_alloc(mem, sizeof(struct property),
200 __alignof__(struct property));
201 if (dryrun)
202 continue;
203
204 /* We accept flattened tree phandles either in
205 * ePAPR-style "phandle" properties, or the
206 * legacy "linux,phandle" properties. If both
207 * appear and have different values, things
208 * will get weird. Don't do that.
209 */
210 if (!strcmp(pname, "phandle") ||
211 !strcmp(pname, "linux,phandle")) {
212 if (!np->phandle)
213 np->phandle = be32_to_cpup(val);
214 }
215
216 /* And we process the "ibm,phandle" property
217 * used in pSeries dynamic device tree
218 * stuff
219 */
220 if (!strcmp(pname, "ibm,phandle"))
221 np->phandle = be32_to_cpup(val);
222
223 pp->name = (char *)pname;
224 pp->length = sz;
225 pp->value = (__be32 *)val;
226 *pprev = pp;
227 pprev = &pp->next;
228 }
229
230 /* With version 0x10 we may not have the name property,
231 * recreate it here from the unit name if absent
232 */
233 if (!has_name) {
234 const char *p = nodename, *ps = p, *pa = NULL;
235 int len;
236
237 while (*p) {
238 if ((*p) == '@')
239 pa = p;
240 else if ((*p) == '/')
241 ps = p + 1;
242 p++;
243 }
244
245 if (pa < ps)
246 pa = p;
247 len = (pa - ps) + 1;
248 pp = unflatten_dt_alloc(mem, sizeof(struct property) + len,
249 __alignof__(struct property));
250 if (!dryrun) {
251 pp->name = "name";
252 pp->length = len;
253 pp->value = pp + 1;
254 *pprev = pp;
255 pprev = &pp->next;
256 memcpy(pp->value, ps, len - 1);
257 ((char *)pp->value)[len - 1] = 0;
258 pr_debug("fixed up name for %s -> %s\n",
259 nodename, (char *)pp->value);
260 }
261 }
262
263 if (!dryrun)
264 *pprev = NULL;
265}
266
dddc33e5
GS
267static unsigned int populate_node(const void *blob,
268 int offset,
269 void **mem,
270 struct device_node *dad,
271 unsigned int fpsize,
272 struct device_node **pnp,
273 bool dryrun)
dfbd4c6e 274{
bbd33931 275 struct device_node *np;
e6a6928c 276 const char *pathp;
bbd33931 277 unsigned int l, allocl;
bbd33931
GL
278 int new_format = 0;
279
dfbd4c6e
GS
280 pathp = fdt_get_name(blob, offset, &l);
281 if (!pathp) {
282 *pnp = NULL;
283 return 0;
284 }
e6a6928c 285
05f4647b 286 allocl = ++l;
bbd33931
GL
287
288 /* version 0x10 has a more compact unit name here instead of the full
289 * path. we accumulate the full path size using "fpsize", we'll rebuild
290 * it later. We detect this because the first character of the name is
291 * not '/'.
292 */
293 if ((*pathp) != '/') {
294 new_format = 1;
295 if (fpsize == 0) {
296 /* root node: special case. fpsize accounts for path
297 * plus terminating zero. root node only has '/', so
298 * fpsize should be 2, but we want to avoid the first
299 * level nodes to have two '/' so we use fpsize 1 here
300 */
301 fpsize = 1;
302 allocl = 2;
0fca5dea 303 l = 1;
e6a6928c 304 pathp = "";
bbd33931
GL
305 } else {
306 /* account for '/' and path size minus terminal 0
307 * already in 'l'
308 */
309 fpsize += l;
310 allocl = fpsize;
311 }
312 }
313
dfbd4c6e 314 np = unflatten_dt_alloc(mem, sizeof(struct device_node) + allocl,
bbd33931 315 __alignof__(struct device_node));
5063e25a 316 if (!dryrun) {
c22618a1 317 char *fn;
0829f6d1 318 of_node_init(np);
c22618a1 319 np->full_name = fn = ((char *)np) + sizeof(*np);
bbd33931 320 if (new_format) {
bbd33931
GL
321 /* rebuild full path for new format */
322 if (dad && dad->parent) {
323 strcpy(fn, dad->full_name);
324#ifdef DEBUG
325 if ((strlen(fn) + l + 1) != allocl) {
326 pr_debug("%s: p: %d, l: %d, a: %d\n",
327 pathp, (int)strlen(fn),
328 l, allocl);
329 }
330#endif
331 fn += strlen(fn);
332 }
333 *(fn++) = '/';
c22618a1
GL
334 }
335 memcpy(fn, pathp, l);
336
bbd33931
GL
337 if (dad != NULL) {
338 np->parent = dad;
70161ff3
GL
339 np->sibling = dad->child;
340 dad->child = np;
bbd33931 341 }
bbd33931 342 }
e6a6928c 343
dfbd4c6e 344 populate_properties(blob, offset, mem, np, pathp, dryrun);
5063e25a 345 if (!dryrun) {
bbd33931
GL
346 np->name = of_get_property(np, "name", NULL);
347 np->type = of_get_property(np, "device_type", NULL);
348
349 if (!np->name)
350 np->name = "<NULL>";
351 if (!np->type)
352 np->type = "<NULL>";
353 }
e6a6928c 354
dfbd4c6e
GS
355 *pnp = np;
356 return fpsize;
357}
358
50800082
GS
359static void reverse_nodes(struct device_node *parent)
360{
361 struct device_node *child, *next;
362
363 /* In-depth first */
364 child = parent->child;
365 while (child) {
366 reverse_nodes(child);
367
368 child = child->sibling;
369 }
370
371 /* Reverse the nodes in the child list */
372 child = parent->child;
373 parent->child = NULL;
374 while (child) {
375 next = child->sibling;
376
377 child->sibling = parent->child;
378 parent->child = child;
379 child = next;
380 }
381}
382
dfbd4c6e 383/**
947c82cb 384 * unflatten_dt_nodes - Alloc and populate a device_node from the flat tree
dfbd4c6e
GS
385 * @blob: The parent device tree blob
386 * @mem: Memory chunk to use for allocating device nodes and properties
dfbd4c6e
GS
387 * @dad: Parent struct device_node
388 * @nodepp: The device_node tree created by the call
50800082
GS
389 *
390 * It returns the size of unflattened device tree or error code
dfbd4c6e 391 */
947c82cb
GS
392static int unflatten_dt_nodes(const void *blob,
393 void *mem,
394 struct device_node *dad,
395 struct device_node **nodepp)
dfbd4c6e 396{
50800082 397 struct device_node *root;
8c237cd0 398 int offset = 0, depth = 0, initial_depth = 0;
50800082 399#define FDT_MAX_DEPTH 64
dddc33e5 400 unsigned int fpsizes[FDT_MAX_DEPTH];
50800082
GS
401 struct device_node *nps[FDT_MAX_DEPTH];
402 void *base = mem;
403 bool dryrun = !base;
dfbd4c6e 404
50800082
GS
405 if (nodepp)
406 *nodepp = NULL;
407
8c237cd0
GS
408 /*
409 * We're unflattening device sub-tree if @dad is valid. There are
410 * possibly multiple nodes in the first level of depth. We need
411 * set @depth to 1 to make fdt_next_node() happy as it bails
412 * immediately when negative @depth is found. Otherwise, the device
413 * nodes except the first one won't be unflattened successfully.
414 */
415 if (dad)
416 depth = initial_depth = 1;
417
50800082
GS
418 root = dad;
419 fpsizes[depth] = dad ? strlen(of_node_full_name(dad)) : 0;
78c44d91 420 nps[depth] = dad;
8c237cd0 421
50800082 422 for (offset = 0;
8c237cd0 423 offset >= 0 && depth >= initial_depth;
50800082
GS
424 offset = fdt_next_node(blob, offset, &depth)) {
425 if (WARN_ON_ONCE(depth >= FDT_MAX_DEPTH))
426 continue;
dfbd4c6e 427
78c44d91
RK
428 fpsizes[depth+1] = populate_node(blob, offset, &mem,
429 nps[depth],
430 fpsizes[depth],
431 &nps[depth+1], dryrun);
432 if (!fpsizes[depth+1])
50800082
GS
433 return mem - base;
434
435 if (!dryrun && nodepp && !*nodepp)
78c44d91 436 *nodepp = nps[depth+1];
50800082 437 if (!dryrun && !root)
78c44d91 438 root = nps[depth+1];
50800082 439 }
e6a6928c 440
50800082 441 if (offset < 0 && offset != -FDT_ERR_NOTFOUND) {
606ad42a 442 pr_err("Error %d processing FDT\n", offset);
50800082
GS
443 return -EINVAL;
444 }
e6a6928c 445
70161ff3
GL
446 /*
447 * Reverse the child list. Some drivers assumes node order matches .dts
448 * node order
449 */
50800082
GS
450 if (!dryrun)
451 reverse_nodes(root);
e6a6928c 452
50800082 453 return mem - base;
bbd33931 454}
41f88009 455
fe140423
SN
456/**
457 * __unflatten_device_tree - create tree of device_nodes from flat blob
458 *
459 * unflattens a device-tree, creating the
460 * tree of struct device_node. It also fills the "name" and "type"
461 * pointers of the nodes so the normal device-tree walking functions
462 * can be used.
463 * @blob: The blob to expand
c4263233 464 * @dad: Parent device node
fe140423
SN
465 * @mynodes: The device_node tree created by the call
466 * @dt_alloc: An allocator that provides a virtual address to memory
467 * for the resulting tree
83262418
GS
468 *
469 * Returns NULL on failure or the memory chunk containing the unflattened
470 * device tree on success.
fe140423 471 */
83262418
GS
472static void *__unflatten_device_tree(const void *blob,
473 struct device_node *dad,
474 struct device_node **mynodes,
1d1bde55
MS
475 void *(*dt_alloc)(u64 size, u64 align),
476 bool detached)
fe140423 477{
50800082 478 int size;
e6a6928c 479 void *mem;
fe140423
SN
480
481 pr_debug(" -> unflatten_device_tree()\n");
482
483 if (!blob) {
484 pr_debug("No device tree pointer\n");
83262418 485 return NULL;
fe140423
SN
486 }
487
488 pr_debug("Unflattening device tree:\n");
c972de14
RH
489 pr_debug("magic: %08x\n", fdt_magic(blob));
490 pr_debug("size: %08x\n", fdt_totalsize(blob));
491 pr_debug("version: %08x\n", fdt_version(blob));
fe140423 492
c972de14 493 if (fdt_check_header(blob)) {
fe140423 494 pr_err("Invalid device tree blob header\n");
83262418 495 return NULL;
fe140423
SN
496 }
497
498 /* First pass, scan for size */
c4263233 499 size = unflatten_dt_nodes(blob, NULL, dad, NULL);
50800082 500 if (size < 0)
83262418 501 return NULL;
fe140423 502
50800082
GS
503 size = ALIGN(size, 4);
504 pr_debug(" size is %d, allocating...\n", size);
fe140423
SN
505
506 /* Allocate memory for the expanded device tree */
44856819
GL
507 mem = dt_alloc(size + 4, __alignof__(struct device_node));
508 memset(mem, 0, size);
fe140423 509
44856819 510 *(__be32 *)(mem + size) = cpu_to_be32(0xdeadbeef);
9e401275 511
44856819 512 pr_debug(" unflattening %p...\n", mem);
fe140423
SN
513
514 /* Second pass, do actual unflattening */
c4263233 515 unflatten_dt_nodes(blob, mem, dad, mynodes);
44856819 516 if (be32_to_cpup(mem + size) != 0xdeadbeef)
fe140423 517 pr_warning("End of tree marker overwritten: %08x\n",
44856819 518 be32_to_cpup(mem + size));
fe140423 519
89c67752 520 if (detached && mynodes) {
1d1bde55
MS
521 of_node_set_flag(*mynodes, OF_DETACHED);
522 pr_debug("unflattened tree is detached\n");
523 }
524
fe140423 525 pr_debug(" <- unflatten_device_tree()\n");
83262418 526 return mem;
fe140423
SN
527}
528
529static void *kernel_tree_alloc(u64 size, u64 align)
530{
531 return kzalloc(size, GFP_KERNEL);
532}
533
f8062386
GR
534static DEFINE_MUTEX(of_fdt_unflatten_mutex);
535
fe140423
SN
536/**
537 * of_fdt_unflatten_tree - create tree of device_nodes from flat blob
c4263233
GS
538 * @blob: Flat device tree blob
539 * @dad: Parent device node
540 * @mynodes: The device tree created by the call
fe140423
SN
541 *
542 * unflattens the device-tree passed by the firmware, creating the
543 * tree of struct device_node. It also fills the "name" and "type"
544 * pointers of the nodes so the normal device-tree walking functions
545 * can be used.
83262418
GS
546 *
547 * Returns NULL on failure or the memory chunk containing the unflattened
548 * device tree on success.
fe140423 549 */
83262418
GS
550void *of_fdt_unflatten_tree(const unsigned long *blob,
551 struct device_node *dad,
552 struct device_node **mynodes)
fe140423 553{
83262418
GS
554 void *mem;
555
f8062386 556 mutex_lock(&of_fdt_unflatten_mutex);
1d1bde55
MS
557 mem = __unflatten_device_tree(blob, dad, mynodes, &kernel_tree_alloc,
558 true);
f8062386 559 mutex_unlock(&of_fdt_unflatten_mutex);
83262418
GS
560
561 return mem;
fe140423
SN
562}
563EXPORT_SYMBOL_GPL(of_fdt_unflatten_tree);
564
57d00ecf
SN
565/* Everything below here references initial_boot_params directly. */
566int __initdata dt_root_addr_cells;
567int __initdata dt_root_size_cells;
568
1daa0c4c 569void *initial_boot_params;
57d00ecf
SN
570
571#ifdef CONFIG_OF_EARLY_FLATTREE
572
08d53aa5
AB
573static u32 of_fdt_crc32;
574
e8d9d1f5
MS
575/**
576 * res_mem_reserve_reg() - reserve all memory described in 'reg' property
577 */
578static int __init __reserved_mem_reserve_reg(unsigned long node,
579 const char *uname)
580{
581 int t_len = (dt_root_addr_cells + dt_root_size_cells) * sizeof(__be32);
582 phys_addr_t base, size;
9d0c4dfe
RH
583 int len;
584 const __be32 *prop;
3f0c8206 585 int nomap, first = 1;
e8d9d1f5
MS
586
587 prop = of_get_flat_dt_prop(node, "reg", &len);
588 if (!prop)
589 return -ENOENT;
590
591 if (len && len % t_len != 0) {
592 pr_err("Reserved memory: invalid reg property in '%s', skipping node.\n",
593 uname);
594 return -EINVAL;
595 }
596
597 nomap = of_get_flat_dt_prop(node, "no-map", NULL) != NULL;
598
599 while (len >= t_len) {
600 base = dt_mem_next_cell(dt_root_addr_cells, &prop);
601 size = dt_mem_next_cell(dt_root_size_cells, &prop);
602
b5f2a8c0 603 if (size &&
e8d9d1f5
MS
604 early_init_dt_reserve_memory_arch(base, size, nomap) == 0)
605 pr_debug("Reserved memory: reserved region for node '%s': base %pa, size %ld MiB\n",
606 uname, &base, (unsigned long)size / SZ_1M);
607 else
608 pr_info("Reserved memory: failed to reserve memory for node '%s': base %pa, size %ld MiB\n",
609 uname, &base, (unsigned long)size / SZ_1M);
610
611 len -= t_len;
3f0c8206
MS
612 if (first) {
613 fdt_reserved_mem_save_node(node, uname, base, size);
614 first = 0;
615 }
e8d9d1f5
MS
616 }
617 return 0;
618}
619
620/**
621 * __reserved_mem_check_root() - check if #size-cells, #address-cells provided
622 * in /reserved-memory matches the values supported by the current implementation,
623 * also check if ranges property has been provided
624 */
5b624118 625static int __init __reserved_mem_check_root(unsigned long node)
e8d9d1f5 626{
9d0c4dfe 627 const __be32 *prop;
e8d9d1f5
MS
628
629 prop = of_get_flat_dt_prop(node, "#size-cells", NULL);
630 if (!prop || be32_to_cpup(prop) != dt_root_size_cells)
631 return -EINVAL;
632
633 prop = of_get_flat_dt_prop(node, "#address-cells", NULL);
634 if (!prop || be32_to_cpup(prop) != dt_root_addr_cells)
635 return -EINVAL;
636
637 prop = of_get_flat_dt_prop(node, "ranges", NULL);
638 if (!prop)
639 return -EINVAL;
640 return 0;
641}
642
643/**
644 * fdt_scan_reserved_mem() - scan a single FDT node for reserved memory
645 */
646static int __init __fdt_scan_reserved_mem(unsigned long node, const char *uname,
647 int depth, void *data)
648{
649 static int found;
650 const char *status;
3f0c8206 651 int err;
e8d9d1f5
MS
652
653 if (!found && depth == 1 && strcmp(uname, "reserved-memory") == 0) {
654 if (__reserved_mem_check_root(node) != 0) {
655 pr_err("Reserved memory: unsupported node format, ignoring\n");
656 /* break scan */
657 return 1;
658 }
659 found = 1;
660 /* scan next node */
661 return 0;
662 } else if (!found) {
663 /* scan next node */
664 return 0;
665 } else if (found && depth < 2) {
666 /* scanning of /reserved-memory has been finished */
667 return 1;
668 }
669
670 status = of_get_flat_dt_prop(node, "status", NULL);
671 if (status && strcmp(status, "okay") != 0 && strcmp(status, "ok") != 0)
672 return 0;
673
3f0c8206
MS
674 err = __reserved_mem_reserve_reg(node, uname);
675 if (err == -ENOENT && of_get_flat_dt_prop(node, "size", NULL))
676 fdt_reserved_mem_save_node(node, uname, 0, 0);
e8d9d1f5
MS
677
678 /* scan next node */
679 return 0;
680}
681
682/**
683 * early_init_fdt_scan_reserved_mem() - create reserved memory regions
684 *
685 * This function grabs memory from early allocator for device exclusive use
686 * defined in device tree structures. It should be called by arch specific code
687 * once the early allocator (i.e. memblock) has been fully activated.
688 */
689void __init early_init_fdt_scan_reserved_mem(void)
690{
d1552ce4
RH
691 int n;
692 u64 base, size;
693
2040b527
JC
694 if (!initial_boot_params)
695 return;
696
d1552ce4
RH
697 /* Process header /memreserve/ fields */
698 for (n = 0; ; n++) {
699 fdt_get_mem_rsv(initial_boot_params, n, &base, &size);
700 if (!size)
701 break;
702 early_init_dt_reserve_memory_arch(base, size, 0);
703 }
704
e8d9d1f5 705 of_scan_flat_dt(__fdt_scan_reserved_mem, NULL);
3f0c8206 706 fdt_init_reserved_mem();
e8d9d1f5
MS
707}
708
24bbd929
AB
709/**
710 * early_init_fdt_reserve_self() - reserve the memory used by the FDT blob
711 */
712void __init early_init_fdt_reserve_self(void)
713{
714 if (!initial_boot_params)
715 return;
716
717 /* Reserve the dtb region */
718 early_init_dt_reserve_memory_arch(__pa(initial_boot_params),
719 fdt_totalsize(initial_boot_params),
720 0);
721}
722
57d00ecf
SN
723/**
724 * of_scan_flat_dt - scan flattened tree blob and call callback on each.
725 * @it: callback function
726 * @data: context data pointer
727 *
728 * This function is used to scan the flattened device-tree, it is
729 * used to extract the memory information at boot before we can
730 * unflatten the tree
731 */
732int __init of_scan_flat_dt(int (*it)(unsigned long node,
733 const char *uname, int depth,
734 void *data),
735 void *data)
736{
e6a6928c
RH
737 const void *blob = initial_boot_params;
738 const char *pathp;
739 int offset, rc = 0, depth = -1;
740
3ec75441
TW
741 if (!blob)
742 return 0;
743
744 for (offset = fdt_next_node(blob, -1, &depth);
745 offset >= 0 && depth >= 0 && !rc;
746 offset = fdt_next_node(blob, offset, &depth)) {
e6a6928c
RH
747
748 pathp = fdt_get_name(blob, offset, NULL);
375da3a7
AS
749 if (*pathp == '/')
750 pathp = kbasename(pathp);
e6a6928c
RH
751 rc = it(offset, pathp, depth, data);
752 }
57d00ecf
SN
753 return rc;
754}
755
9c609868
SZ
756/**
757 * of_get_flat_dt_subnode_by_name - get the subnode by given name
758 *
759 * @node: the parent node
760 * @uname: the name of subnode
761 * @return offset of the subnode, or -FDT_ERR_NOTFOUND if there is none
762 */
763
764int of_get_flat_dt_subnode_by_name(unsigned long node, const char *uname)
765{
766 return fdt_subnode_offset(initial_boot_params, node, uname);
767}
768
57d00ecf
SN
769/**
770 * of_get_flat_dt_root - find the root node in the flat blob
771 */
772unsigned long __init of_get_flat_dt_root(void)
773{
e6a6928c 774 return 0;
57d00ecf
SN
775}
776
c0556d3f
RH
777/**
778 * of_get_flat_dt_size - Return the total size of the FDT
779 */
780int __init of_get_flat_dt_size(void)
781{
782 return fdt_totalsize(initial_boot_params);
783}
784
57d00ecf
SN
785/**
786 * of_get_flat_dt_prop - Given a node in the flat blob, return the property ptr
787 *
788 * This function can be used within scan_flattened_dt callback to get
789 * access to properties
790 */
9d0c4dfe
RH
791const void *__init of_get_flat_dt_prop(unsigned long node, const char *name,
792 int *size)
57d00ecf 793{
e6a6928c 794 return fdt_getprop(initial_boot_params, node, name, size);
57d00ecf
SN
795}
796
797/**
798 * of_flat_dt_is_compatible - Return true if given node has compat in compatible list
799 * @node: node to test
800 * @compat: compatible string to compare with compatible list.
801 */
802int __init of_flat_dt_is_compatible(unsigned long node, const char *compat)
803{
804 return of_fdt_is_compatible(initial_boot_params, node, compat);
805}
806
a4f740cf
GL
807/**
808 * of_flat_dt_match - Return true if node matches a list of compatible values
809 */
7b482c83 810int __init of_flat_dt_match(unsigned long node, const char *const *compat)
a4f740cf
GL
811{
812 return of_fdt_match(initial_boot_params, node, compat);
813}
814
57d74bcf
MS
815struct fdt_scan_status {
816 const char *name;
817 int namelen;
818 int depth;
819 int found;
820 int (*iterator)(unsigned long node, const char *uname, int depth, void *data);
821 void *data;
822};
823
6a903a25
RH
824const char * __init of_flat_dt_get_machine_name(void)
825{
826 const char *name;
827 unsigned long dt_root = of_get_flat_dt_root();
828
829 name = of_get_flat_dt_prop(dt_root, "model", NULL);
830 if (!name)
831 name = of_get_flat_dt_prop(dt_root, "compatible", NULL);
832 return name;
833}
834
835/**
836 * of_flat_dt_match_machine - Iterate match tables to find matching machine.
837 *
838 * @default_match: A machine specific ptr to return in case of no match.
839 * @get_next_compat: callback function to return next compatible match table.
840 *
841 * Iterate through machine match tables to find the best match for the machine
842 * compatible string in the FDT.
843 */
844const void * __init of_flat_dt_match_machine(const void *default_match,
845 const void * (*get_next_compat)(const char * const**))
846{
847 const void *data = NULL;
848 const void *best_data = default_match;
849 const char *const *compat;
850 unsigned long dt_root;
851 unsigned int best_score = ~1, score = 0;
852
853 dt_root = of_get_flat_dt_root();
854 while ((data = get_next_compat(&compat))) {
855 score = of_flat_dt_match(dt_root, compat);
856 if (score > 0 && score < best_score) {
857 best_data = data;
858 best_score = score;
859 }
860 }
861 if (!best_data) {
862 const char *prop;
9d0c4dfe 863 int size;
6a903a25
RH
864
865 pr_err("\n unrecognized device tree list:\n[ ");
866
867 prop = of_get_flat_dt_prop(dt_root, "compatible", &size);
868 if (prop) {
869 while (size > 0) {
870 printk("'%s' ", prop);
871 size -= strlen(prop) + 1;
872 prop += strlen(prop) + 1;
873 }
874 }
875 printk("]\n\n");
876 return NULL;
877 }
878
879 pr_info("Machine model: %s\n", of_flat_dt_get_machine_name());
880
881 return best_data;
882}
883
f7b3a835 884#ifdef CONFIG_BLK_DEV_INITRD
369bc9ab
AB
885#ifndef __early_init_dt_declare_initrd
886static void __early_init_dt_declare_initrd(unsigned long start,
887 unsigned long end)
888{
889 initrd_start = (unsigned long)__va(start);
890 initrd_end = (unsigned long)__va(end);
891 initrd_below_start_ok = 1;
892}
893#endif
894
f7b3a835
GL
895/**
896 * early_init_dt_check_for_initrd - Decode initrd location from flat tree
897 * @node: reference to node containing initrd location ('chosen')
898 */
29eb45a9 899static void __init early_init_dt_check_for_initrd(unsigned long node)
f7b3a835 900{
374d5c99 901 u64 start, end;
9d0c4dfe
RH
902 int len;
903 const __be32 *prop;
f7b3a835
GL
904
905 pr_debug("Looking for initrd properties... ");
906
907 prop = of_get_flat_dt_prop(node, "linux,initrd-start", &len);
1406bc2f
JK
908 if (!prop)
909 return;
374d5c99 910 start = of_read_number(prop, len/4);
1406bc2f
JK
911
912 prop = of_get_flat_dt_prop(node, "linux,initrd-end", &len);
913 if (!prop)
914 return;
374d5c99 915 end = of_read_number(prop, len/4);
f7b3a835 916
369bc9ab 917 __early_init_dt_declare_initrd(start, end);
29eb45a9 918
374d5c99
SS
919 pr_debug("initrd_start=0x%llx initrd_end=0x%llx\n",
920 (unsigned long long)start, (unsigned long long)end);
f7b3a835
GL
921}
922#else
29eb45a9 923static inline void early_init_dt_check_for_initrd(unsigned long node)
f7b3a835
GL
924{
925}
926#endif /* CONFIG_BLK_DEV_INITRD */
927
fb11ffe7 928#ifdef CONFIG_SERIAL_EARLYCON
fb11ffe7 929
d503187b 930int __init early_init_dt_scan_chosen_stdout(void)
fb11ffe7
RH
931{
932 int offset;
4d118c9a 933 const char *p, *q, *options = NULL;
fb11ffe7 934 int l;
2eaa7909 935 const struct earlycon_id *match;
fb11ffe7
RH
936 const void *fdt = initial_boot_params;
937
938 offset = fdt_path_offset(fdt, "/chosen");
939 if (offset < 0)
940 offset = fdt_path_offset(fdt, "/chosen@0");
941 if (offset < 0)
942 return -ENOENT;
943
944 p = fdt_getprop(fdt, offset, "stdout-path", &l);
945 if (!p)
946 p = fdt_getprop(fdt, offset, "linux,stdout-path", &l);
947 if (!p || !l)
948 return -ENOENT;
949
4d118c9a
PH
950 q = strchrnul(p, ':');
951 if (*q != '\0')
952 options = q + 1;
0fcc286f 953 l = q - p;
6296ad9e 954
fb11ffe7 955 /* Get the node specified by stdout-path */
0fcc286f
PH
956 offset = fdt_path_offset_namelen(fdt, p, l);
957 if (offset < 0) {
958 pr_warn("earlycon: stdout-path %.*s not found\n", l, p);
959 return 0;
960 }
fb11ffe7 961
2eaa7909 962 for (match = __earlycon_table; match < __earlycon_table_end; match++) {
2eaa7909
PH
963 if (!match->compatible[0])
964 continue;
965
966 if (fdt_node_check_compatible(fdt, offset, match->compatible))
fb11ffe7 967 continue;
fb11ffe7 968
c90fe9c0 969 of_setup_earlycon(match, offset, options);
fb11ffe7
RH
970 return 0;
971 }
972 return -ENODEV;
973}
fb11ffe7
RH
974#endif
975
f00abd94
GL
976/**
977 * early_init_dt_scan_root - fetch the top level address and size cells
978 */
979int __init early_init_dt_scan_root(unsigned long node, const char *uname,
980 int depth, void *data)
981{
9d0c4dfe 982 const __be32 *prop;
f00abd94
GL
983
984 if (depth != 0)
985 return 0;
986
33714881
JK
987 dt_root_size_cells = OF_ROOT_NODE_SIZE_CELLS_DEFAULT;
988 dt_root_addr_cells = OF_ROOT_NODE_ADDR_CELLS_DEFAULT;
989
f00abd94 990 prop = of_get_flat_dt_prop(node, "#size-cells", NULL);
33714881
JK
991 if (prop)
992 dt_root_size_cells = be32_to_cpup(prop);
f00abd94
GL
993 pr_debug("dt_root_size_cells = %x\n", dt_root_size_cells);
994
995 prop = of_get_flat_dt_prop(node, "#address-cells", NULL);
33714881
JK
996 if (prop)
997 dt_root_addr_cells = be32_to_cpup(prop);
f00abd94
GL
998 pr_debug("dt_root_addr_cells = %x\n", dt_root_addr_cells);
999
1000 /* break now */
1001 return 1;
1002}
1003
9d0c4dfe 1004u64 __init dt_mem_next_cell(int s, const __be32 **cellp)
83f7a06e 1005{
9d0c4dfe 1006 const __be32 *p = *cellp;
83f7a06e
GL
1007
1008 *cellp = p + s;
1009 return of_read_number(p, s);
1010}
1011
51975db0
GL
1012/**
1013 * early_init_dt_scan_memory - Look for an parse memory nodes
1014 */
1015int __init early_init_dt_scan_memory(unsigned long node, const char *uname,
1016 int depth, void *data)
1017{
9d0c4dfe
RH
1018 const char *type = of_get_flat_dt_prop(node, "device_type", NULL);
1019 const __be32 *reg, *endp;
1020 int l;
41a9ada3 1021 bool hotpluggable;
51975db0
GL
1022
1023 /* We are scanning "memory" nodes only */
1024 if (type == NULL) {
1025 /*
1026 * The longtrail doesn't have a device_type on the
1027 * /memory node, so look for the node called /memory@0.
1028 */
b44aa25d 1029 if (!IS_ENABLED(CONFIG_PPC32) || depth != 1 || strcmp(uname, "memory@0") != 0)
51975db0
GL
1030 return 0;
1031 } else if (strcmp(type, "memory") != 0)
1032 return 0;
1033
1034 reg = of_get_flat_dt_prop(node, "linux,usable-memory", &l);
1035 if (reg == NULL)
1036 reg = of_get_flat_dt_prop(node, "reg", &l);
1037 if (reg == NULL)
1038 return 0;
1039
1040 endp = reg + (l / sizeof(__be32));
41a9ada3 1041 hotpluggable = of_get_flat_dt_prop(node, "hotpluggable", NULL);
51975db0 1042
c954b36e 1043 pr_debug("memory scan node %s, reg size %d,\n", uname, l);
51975db0
GL
1044
1045 while ((endp - reg) >= (dt_root_addr_cells + dt_root_size_cells)) {
1046 u64 base, size;
1047
1048 base = dt_mem_next_cell(dt_root_addr_cells, &reg);
1049 size = dt_mem_next_cell(dt_root_size_cells, &reg);
1050
1051 if (size == 0)
1052 continue;
1053 pr_debug(" - %llx , %llx\n", (unsigned long long)base,
1054 (unsigned long long)size);
1055
1056 early_init_dt_add_memory_arch(base, size);
41a9ada3
RA
1057
1058 if (!hotpluggable)
1059 continue;
1060
1061 if (early_init_dt_mark_hotplug_memory_arch(base, size))
1062 pr_warn("failed to mark hotplug range 0x%llx - 0x%llx\n",
1063 base, base + size);
51975db0
GL
1064 }
1065
1066 return 0;
1067}
1068
86e03221
GL
1069int __init early_init_dt_scan_chosen(unsigned long node, const char *uname,
1070 int depth, void *data)
1071{
9d0c4dfe
RH
1072 int l;
1073 const char *p;
86e03221
GL
1074
1075 pr_debug("search \"chosen\", depth: %d, uname: %s\n", depth, uname);
1076
85f60ae4 1077 if (depth != 1 || !data ||
86e03221
GL
1078 (strcmp(uname, "chosen") != 0 && strcmp(uname, "chosen@0") != 0))
1079 return 0;
1080
1081 early_init_dt_check_for_initrd(node);
1082
25985edc 1083 /* Retrieve command line */
86e03221
GL
1084 p = of_get_flat_dt_prop(node, "bootargs", &l);
1085 if (p != NULL && l > 0)
85f60ae4 1086 strlcpy(data, p, min((int)l, COMMAND_LINE_SIZE));
86e03221 1087
78b782cb
BH
1088 /*
1089 * CONFIG_CMDLINE is meant to be a default in case nothing else
1090 * managed to set the command line, unless CONFIG_CMDLINE_FORCE
1091 * is set in which case we override whatever was found earlier.
1092 */
86e03221 1093#ifdef CONFIG_CMDLINE
34b82026
MU
1094#if defined(CONFIG_CMDLINE_EXTEND)
1095 strlcat(data, " ", COMMAND_LINE_SIZE);
1096 strlcat(data, CONFIG_CMDLINE, COMMAND_LINE_SIZE);
1097#elif defined(CONFIG_CMDLINE_FORCE)
1098 strlcpy(data, CONFIG_CMDLINE, COMMAND_LINE_SIZE);
1099#else
1100 /* No arguments from boot loader, use kernel's cmdl*/
78b782cb 1101 if (!((char *)data)[0])
85f60ae4 1102 strlcpy(data, CONFIG_CMDLINE, COMMAND_LINE_SIZE);
34b82026 1103#endif
86e03221
GL
1104#endif /* CONFIG_CMDLINE */
1105
85f60ae4 1106 pr_debug("Command line is: %s\n", (char*)data);
86e03221
GL
1107
1108 /* break now */
1109 return 1;
1110}
1111
a1727da5 1112#ifdef CONFIG_HAVE_MEMBLOCK
270522a0
AB
1113#ifndef MIN_MEMBLOCK_ADDR
1114#define MIN_MEMBLOCK_ADDR __pa(PAGE_OFFSET)
1115#endif
8eafeb48
AB
1116#ifndef MAX_MEMBLOCK_ADDR
1117#define MAX_MEMBLOCK_ADDR ((phys_addr_t)~0)
1118#endif
3069f0c0 1119
068f6310
RH
1120void __init __weak early_init_dt_add_memory_arch(u64 base, u64 size)
1121{
270522a0 1122 const u64 phys_offset = MIN_MEMBLOCK_ADDR;
8f73d4b7
GU
1123
1124 if (!PAGE_ALIGNED(base)) {
8cccffc5
AB
1125 if (size < PAGE_SIZE - (base & ~PAGE_MASK)) {
1126 pr_warn("Ignoring memory block 0x%llx - 0x%llx\n",
1127 base, base + size);
1128 return;
1129 }
8f73d4b7
GU
1130 size -= PAGE_SIZE - (base & ~PAGE_MASK);
1131 base = PAGE_ALIGN(base);
1132 }
068f6310 1133 size &= PAGE_MASK;
a67a6ed1 1134
8eafeb48 1135 if (base > MAX_MEMBLOCK_ADDR) {
3069f0c0
LA
1136 pr_warning("Ignoring memory block 0x%llx - 0x%llx\n",
1137 base, base + size);
1138 return;
1139 }
a67a6ed1 1140
8eafeb48 1141 if (base + size - 1 > MAX_MEMBLOCK_ADDR) {
9aacd602 1142 pr_warning("Ignoring memory range 0x%llx - 0x%llx\n",
8eafeb48
AB
1143 ((u64)MAX_MEMBLOCK_ADDR) + 1, base + size);
1144 size = MAX_MEMBLOCK_ADDR - base + 1;
a67a6ed1
LA
1145 }
1146
068f6310
RH
1147 if (base + size < phys_offset) {
1148 pr_warning("Ignoring memory block 0x%llx - 0x%llx\n",
1149 base, base + size);
1150 return;
1151 }
1152 if (base < phys_offset) {
1153 pr_warning("Ignoring memory range 0x%llx - 0x%llx\n",
1154 base, phys_offset);
1155 size -= phys_offset - base;
1156 base = phys_offset;
1157 }
1158 memblock_add(base, size);
1159}
1160
41a9ada3
RA
1161int __init __weak early_init_dt_mark_hotplug_memory_arch(u64 base, u64 size)
1162{
1163 return memblock_mark_hotplug(base, size);
1164}
1165
e8d9d1f5
MS
1166int __init __weak early_init_dt_reserve_memory_arch(phys_addr_t base,
1167 phys_addr_t size, bool nomap)
1168{
e8d9d1f5
MS
1169 if (nomap)
1170 return memblock_remove(base, size);
1171 return memblock_reserve(base, size);
1172}
1173
a1727da5
GL
1174/*
1175 * called from unflatten_device_tree() to bootstrap devicetree itself
1176 * Architectures can override this definition if memblock isn't used
1177 */
1178void * __init __weak early_init_dt_alloc_memory_arch(u64 size, u64 align)
1179{
1180 return __va(memblock_alloc(size, align));
1181}
e8d9d1f5 1182#else
aefc7ec2
RH
1183void __init __weak early_init_dt_add_memory_arch(u64 base, u64 size)
1184{
1185 WARN_ON(1);
1186}
1187
41a9ada3
RA
1188int __init __weak early_init_dt_mark_hotplug_memory_arch(u64 base, u64 size)
1189{
1190 return -ENOSYS;
1191}
1192
e8d9d1f5
MS
1193int __init __weak early_init_dt_reserve_memory_arch(phys_addr_t base,
1194 phys_addr_t size, bool nomap)
1195{
78bb2abe 1196 pr_err("Reserved memory not supported, ignoring range %pa - %pa%s\n",
1d1a661d 1197 &base, &size, nomap ? " (nomap)" : "");
e8d9d1f5
MS
1198 return -ENOSYS;
1199}
aefc7ec2
RH
1200
1201void * __init __weak early_init_dt_alloc_memory_arch(u64 size, u64 align)
1202{
1203 WARN_ON(1);
1204 return NULL;
1205}
a1727da5
GL
1206#endif
1207
4972a74b 1208bool __init early_init_dt_verify(void *params)
0288ffcb
RH
1209{
1210 if (!params)
1211 return false;
1212
0288ffcb 1213 /* check device tree validity */
50ba08f3 1214 if (fdt_check_header(params))
0288ffcb 1215 return false;
0288ffcb 1216
50ba08f3
BH
1217 /* Setup flat device-tree pointer */
1218 initial_boot_params = params;
08d53aa5
AB
1219 of_fdt_crc32 = crc32_be(~0, initial_boot_params,
1220 fdt_totalsize(initial_boot_params));
4972a74b
LA
1221 return true;
1222}
1223
1224
1225void __init early_init_dt_scan_nodes(void)
1226{
0288ffcb
RH
1227 /* Retrieve various information from the /chosen node */
1228 of_scan_flat_dt(early_init_dt_scan_chosen, boot_command_line);
1229
1230 /* Initialize {size,address}-cells info */
1231 of_scan_flat_dt(early_init_dt_scan_root, NULL);
1232
1233 /* Setup memory, calling early_init_dt_add_memory_arch */
1234 of_scan_flat_dt(early_init_dt_scan_memory, NULL);
4972a74b
LA
1235}
1236
1237bool __init early_init_dt_scan(void *params)
1238{
1239 bool status;
1240
1241 status = early_init_dt_verify(params);
1242 if (!status)
1243 return false;
0288ffcb 1244
4972a74b 1245 early_init_dt_scan_nodes();
0288ffcb
RH
1246 return true;
1247}
1248
41f88009
GL
1249/**
1250 * unflatten_device_tree - create tree of device_nodes from flat blob
1251 *
1252 * unflattens the device-tree passed by the firmware, creating the
1253 * tree of struct device_node. It also fills the "name" and "type"
1254 * pointers of the nodes so the normal device-tree walking functions
1255 * can be used.
1256 */
1257void __init unflatten_device_tree(void)
1258{
c4263233 1259 __unflatten_device_tree(initial_boot_params, NULL, &of_root,
1d1bde55 1260 early_init_dt_alloc_memory_arch, false);
41f88009 1261
4c7d6361 1262 /* Get pointer to "/chosen" and "/aliases" nodes for use everywhere */
611cad72 1263 of_alias_scan(early_init_dt_alloc_memory_arch);
41f88009 1264}
e6ce1324 1265
a8bf7527
RH
1266/**
1267 * unflatten_and_copy_device_tree - copy and create tree of device_nodes from flat blob
1268 *
1269 * Copies and unflattens the device-tree passed by the firmware, creating the
1270 * tree of struct device_node. It also fills the "name" and "type"
1271 * pointers of the nodes so the normal device-tree walking functions
1272 * can be used. This should only be used when the FDT memory has not been
1273 * reserved such is the case when the FDT is built-in to the kernel init
1274 * section. If the FDT memory is reserved already then unflatten_device_tree
1275 * should be used instead.
1276 */
1277void __init unflatten_and_copy_device_tree(void)
1278{
6f041e99
JH
1279 int size;
1280 void *dt;
1281
1282 if (!initial_boot_params) {
1283 pr_warn("No valid device tree found, continuing without\n");
1284 return;
1285 }
1286
c972de14 1287 size = fdt_totalsize(initial_boot_params);
6f041e99 1288 dt = early_init_dt_alloc_memory_arch(size,
c972de14 1289 roundup_pow_of_two(FDT_V17_SIZE));
a8bf7527
RH
1290
1291 if (dt) {
1292 memcpy(dt, initial_boot_params, size);
1293 initial_boot_params = dt;
1294 }
1295 unflatten_device_tree();
1296}
1297
08d53aa5
AB
1298#ifdef CONFIG_SYSFS
1299static ssize_t of_fdt_raw_read(struct file *filp, struct kobject *kobj,
1300 struct bin_attribute *bin_attr,
1301 char *buf, loff_t off, size_t count)
b0a6fb36 1302{
08d53aa5
AB
1303 memcpy(buf, initial_boot_params + off, count);
1304 return count;
1305}
b0a6fb36 1306
08d53aa5
AB
1307static int __init of_fdt_raw_init(void)
1308{
1309 static struct bin_attribute of_fdt_raw_attr =
1310 __BIN_ATTR(fdt, S_IRUSR, of_fdt_raw_read, NULL, 0);
b0a6fb36 1311
08d53aa5
AB
1312 if (!initial_boot_params)
1313 return 0;
b0a6fb36 1314
08d53aa5
AB
1315 if (of_fdt_crc32 != crc32_be(~0, initial_boot_params,
1316 fdt_totalsize(initial_boot_params))) {
606ad42a 1317 pr_warn("not creating '/sys/firmware/fdt': CRC check failed\n");
08d53aa5
AB
1318 return 0;
1319 }
1320 of_fdt_raw_attr.size = fdt_totalsize(initial_boot_params);
1321 return sysfs_create_bin_file(firmware_kobj, &of_fdt_raw_attr);
b0a6fb36 1322}
08d53aa5 1323late_initcall(of_fdt_raw_init);
b0a6fb36
RH
1324#endif
1325
e6ce1324 1326#endif /* CONFIG_OF_EARLY_FLATTREE */