2 * Functions to help device tree manipulation using libfdt.
3 * It also provides functions to read entries from device tree proc
6 * Copyright 2008 IBM Corporation.
7 * Authors: Jerone Young <jyoung5@us.ibm.com>
8 * Hollis Blanchard <hollisb@us.ibm.com>
10 * This work is licensed under the GNU GPL license version 2 or later.
14 #include "qemu/osdep.h"
20 #include "qapi/error.h"
21 #include "qemu/error-report.h"
22 #include "qemu/option.h"
23 #include "qemu/bswap.h"
24 #include "qemu/cutils.h"
25 #include "sysemu/device_tree.h"
26 #include "sysemu/sysemu.h"
27 #include "hw/loader.h"
28 #include "hw/boards.h"
29 #include "qemu/config-file.h"
33 #define FDT_MAX_SIZE 0x100000
35 void *create_device_tree(int *sizep
)
40 *sizep
= FDT_MAX_SIZE
;
41 fdt
= g_malloc0(FDT_MAX_SIZE
);
42 ret
= fdt_create(fdt
, FDT_MAX_SIZE
);
46 ret
= fdt_finish_reservemap(fdt
);
50 ret
= fdt_begin_node(fdt
, "");
54 ret
= fdt_end_node(fdt
);
58 ret
= fdt_finish(fdt
);
62 ret
= fdt_open_into(fdt
, fdt
, *sizep
);
64 error_report("Unable to copy device tree in memory");
70 error_report("%s Couldn't create dt: %s", __func__
, fdt_strerror(ret
));
74 void *load_device_tree(const char *filename_path
, int *sizep
)
77 int dt_file_load_size
;
82 dt_size
= get_image_size(filename_path
);
84 error_report("Unable to get size of device tree file '%s'",
88 if (dt_size
> INT_MAX
/ 2 - 10000) {
89 error_report("Device tree file '%s' is too large", filename_path
);
93 /* Expand to 2x size to give enough room for manipulation. */
96 /* First allocate space in qemu for device tree */
97 fdt
= g_malloc0(dt_size
);
99 dt_file_load_size
= load_image_size(filename_path
, fdt
, dt_size
);
100 if (dt_file_load_size
< 0) {
101 error_report("Unable to open device tree file '%s'",
106 ret
= fdt_open_into(fdt
, fdt
, dt_size
);
108 error_report("Unable to copy device tree in memory");
112 /* Check sanity of device tree */
113 if (fdt_check_header(fdt
)) {
114 error_report("Device tree file loaded into memory is invalid: %s",
128 #define SYSFS_DT_BASEDIR "/proc/device-tree"
131 * read_fstree: this function is inspired from dtc read_fstree
132 * @fdt: preallocated fdt blob buffer, to be populated
133 * @dirname: directory to scan under SYSFS_DT_BASEDIR
134 * the search is recursive and the tree is searched down to the
135 * leaves (property files).
137 * the function asserts in case of error
139 static void read_fstree(void *fdt
, const char *dirname
)
144 const char *root_dir
= SYSFS_DT_BASEDIR
;
145 const char *parent_node
;
147 if (strstr(dirname
, root_dir
) != dirname
) {
148 error_report("%s: %s must be searched within %s",
149 __func__
, dirname
, root_dir
);
152 parent_node
= &dirname
[strlen(SYSFS_DT_BASEDIR
)];
154 d
= opendir(dirname
);
156 error_report("%s cannot open %s", __func__
, dirname
);
160 while ((de
= readdir(d
)) != NULL
) {
163 if (!g_strcmp0(de
->d_name
, ".")
164 || !g_strcmp0(de
->d_name
, "..")) {
168 tmpnam
= g_strdup_printf("%s/%s", dirname
, de
->d_name
);
170 if (lstat(tmpnam
, &st
) < 0) {
171 error_report("%s cannot lstat %s", __func__
, tmpnam
);
175 if (S_ISREG(st
.st_mode
)) {
179 if (!g_file_get_contents(tmpnam
, &val
, &len
, NULL
)) {
180 error_report("%s not able to extract info from %s",
185 if (strlen(parent_node
) > 0) {
186 qemu_fdt_setprop(fdt
, parent_node
,
187 de
->d_name
, val
, len
);
189 qemu_fdt_setprop(fdt
, "/", de
->d_name
, val
, len
);
192 } else if (S_ISDIR(st
.st_mode
)) {
195 node_name
= g_strdup_printf("%s/%s",
196 parent_node
, de
->d_name
);
197 qemu_fdt_add_subnode(fdt
, node_name
);
199 read_fstree(fdt
, tmpnam
);
208 /* load_device_tree_from_sysfs: extract the dt blob from host sysfs */
209 void *load_device_tree_from_sysfs(void)
214 host_fdt
= create_device_tree(&host_fdt_size
);
215 read_fstree(host_fdt
, SYSFS_DT_BASEDIR
);
216 if (fdt_check_header(host_fdt
)) {
217 error_report("%s host device tree extracted into memory is invalid",
224 #endif /* CONFIG_LINUX */
226 static int findnode_nofail(void *fdt
, const char *node_path
)
230 offset
= fdt_path_offset(fdt
, node_path
);
232 error_report("%s Couldn't find node %s: %s", __func__
, node_path
,
233 fdt_strerror(offset
));
240 char **qemu_fdt_node_unit_path(void *fdt
, const char *name
, Error
**errp
)
242 char *prefix
= g_strdup_printf("%s@", name
);
243 unsigned int path_len
= 16, n
= 0;
244 GSList
*path_list
= NULL
, *iter
;
245 const char *iter_name
;
246 int offset
, len
, ret
;
249 offset
= fdt_next_node(fdt
, -1, NULL
);
251 while (offset
>= 0) {
252 iter_name
= fdt_get_name(fdt
, offset
, &len
);
257 if (!strcmp(iter_name
, name
) || g_str_has_prefix(iter_name
, prefix
)) {
260 path
= g_malloc(path_len
);
261 while ((ret
= fdt_get_path(fdt
, offset
, path
, path_len
))
262 == -FDT_ERR_NOSPACE
) {
264 path
= g_realloc(path
, path_len
);
266 path_list
= g_slist_prepend(path_list
, path
);
269 offset
= fdt_next_node(fdt
, offset
, NULL
);
273 if (offset
< 0 && offset
!= -FDT_ERR_NOTFOUND
) {
274 error_setg(errp
, "%s: abort parsing dt for %s node units: %s",
275 __func__
, name
, fdt_strerror(offset
));
276 for (iter
= path_list
; iter
; iter
= iter
->next
) {
279 g_slist_free(path_list
);
283 path_array
= g_new(char *, n
+ 1);
284 path_array
[n
--] = NULL
;
286 for (iter
= path_list
; iter
; iter
= iter
->next
) {
287 path_array
[n
--] = iter
->data
;
290 g_slist_free(path_list
);
295 char **qemu_fdt_node_path(void *fdt
, const char *name
, const char *compat
,
298 int offset
, len
, ret
;
299 const char *iter_name
;
300 unsigned int path_len
= 16, n
= 0;
301 GSList
*path_list
= NULL
, *iter
;
304 offset
= fdt_node_offset_by_compatible(fdt
, -1, compat
);
306 while (offset
>= 0) {
307 iter_name
= fdt_get_name(fdt
, offset
, &len
);
312 if (!name
|| !strcmp(iter_name
, name
)) {
315 path
= g_malloc(path_len
);
316 while ((ret
= fdt_get_path(fdt
, offset
, path
, path_len
))
317 == -FDT_ERR_NOSPACE
) {
319 path
= g_realloc(path
, path_len
);
321 path_list
= g_slist_prepend(path_list
, path
);
324 offset
= fdt_node_offset_by_compatible(fdt
, offset
, compat
);
327 if (offset
< 0 && offset
!= -FDT_ERR_NOTFOUND
) {
328 error_setg(errp
, "%s: abort parsing dt for %s/%s: %s",
329 __func__
, name
, compat
, fdt_strerror(offset
));
330 for (iter
= path_list
; iter
; iter
= iter
->next
) {
333 g_slist_free(path_list
);
337 path_array
= g_new(char *, n
+ 1);
338 path_array
[n
--] = NULL
;
340 for (iter
= path_list
; iter
; iter
= iter
->next
) {
341 path_array
[n
--] = iter
->data
;
344 g_slist_free(path_list
);
349 int qemu_fdt_setprop(void *fdt
, const char *node_path
,
350 const char *property
, const void *val
, int size
)
354 r
= fdt_setprop(fdt
, findnode_nofail(fdt
, node_path
), property
, val
, size
);
356 error_report("%s: Couldn't set %s/%s: %s", __func__
, node_path
,
357 property
, fdt_strerror(r
));
364 int qemu_fdt_setprop_cell(void *fdt
, const char *node_path
,
365 const char *property
, uint32_t val
)
369 r
= fdt_setprop_cell(fdt
, findnode_nofail(fdt
, node_path
), property
, val
);
371 error_report("%s: Couldn't set %s/%s = %#08x: %s", __func__
,
372 node_path
, property
, val
, fdt_strerror(r
));
379 int qemu_fdt_setprop_u64(void *fdt
, const char *node_path
,
380 const char *property
, uint64_t val
)
382 val
= cpu_to_be64(val
);
383 return qemu_fdt_setprop(fdt
, node_path
, property
, &val
, sizeof(val
));
386 int qemu_fdt_setprop_string(void *fdt
, const char *node_path
,
387 const char *property
, const char *string
)
391 r
= fdt_setprop_string(fdt
, findnode_nofail(fdt
, node_path
), property
, string
);
393 error_report("%s: Couldn't set %s/%s = %s: %s", __func__
,
394 node_path
, property
, string
, fdt_strerror(r
));
402 * libfdt doesn't allow us to add string arrays directly but they are
403 * test a series of null terminated strings with a length. We build
404 * the string up here so we can calculate the final length.
406 int qemu_fdt_setprop_string_array(void *fdt
, const char *node_path
,
407 const char *prop
, char **array
, int len
)
409 int ret
, i
, total_len
= 0;
411 for (i
= 0; i
< len
; i
++) {
412 total_len
+= strlen(array
[i
]) + 1;
414 p
= str
= g_malloc0(total_len
);
415 for (i
= 0; i
< len
; i
++) {
416 int len
= strlen(array
[i
]) + 1;
417 pstrcpy(p
, len
, array
[i
]);
421 ret
= qemu_fdt_setprop(fdt
, node_path
, prop
, str
, total_len
);
426 const void *qemu_fdt_getprop(void *fdt
, const char *node_path
,
427 const char *property
, int *lenp
, Error
**errp
)
435 r
= fdt_getprop(fdt
, findnode_nofail(fdt
, node_path
), property
, lenp
);
437 error_setg(errp
, "%s: Couldn't get %s/%s: %s", __func__
,
438 node_path
, property
, fdt_strerror(*lenp
));
443 uint32_t qemu_fdt_getprop_cell(void *fdt
, const char *node_path
,
444 const char *property
, int *lenp
, Error
**errp
)
452 p
= qemu_fdt_getprop(fdt
, node_path
, property
, lenp
, errp
);
455 } else if (*lenp
!= 4) {
456 error_setg(errp
, "%s: %s/%s not 4 bytes long (not a cell?)",
457 __func__
, node_path
, property
);
461 return be32_to_cpu(*p
);
464 uint32_t qemu_fdt_get_phandle(void *fdt
, const char *path
)
468 r
= fdt_get_phandle(fdt
, findnode_nofail(fdt
, path
));
470 error_report("%s: Couldn't get phandle for %s: %s", __func__
,
471 path
, fdt_strerror(r
));
478 int qemu_fdt_setprop_phandle(void *fdt
, const char *node_path
,
479 const char *property
,
480 const char *target_node_path
)
482 uint32_t phandle
= qemu_fdt_get_phandle(fdt
, target_node_path
);
483 return qemu_fdt_setprop_cell(fdt
, node_path
, property
, phandle
);
486 uint32_t qemu_fdt_alloc_phandle(void *fdt
)
488 static int phandle
= 0x0;
491 * We need to find out if the user gave us special instruction at
492 * which phandle id to start allocating phandles.
495 phandle
= machine_phandle_start(current_machine
);
500 * None or invalid phandle given on the command line, so fall back to
501 * default starting point.
509 int qemu_fdt_nop_node(void *fdt
, const char *node_path
)
513 r
= fdt_nop_node(fdt
, findnode_nofail(fdt
, node_path
));
515 error_report("%s: Couldn't nop node %s: %s", __func__
, node_path
,
523 int qemu_fdt_add_subnode(void *fdt
, const char *name
)
525 char *dupname
= g_strdup(name
);
526 char *basename
= strrchr(dupname
, '/');
539 parent
= findnode_nofail(fdt
, dupname
);
542 retval
= fdt_add_subnode(fdt
, parent
, basename
);
544 error_report("FDT: Failed to create subnode %s: %s", name
,
545 fdt_strerror(retval
));
553 void qemu_fdt_dumpdtb(void *fdt
, int size
)
555 const char *dumpdtb
= current_machine
->dumpdtb
;
558 /* Dump the dtb to a file and quit */
559 if (g_file_set_contents(dumpdtb
, fdt
, size
, NULL
)) {
560 info_report("dtb dumped to %s. Exiting.", dumpdtb
);
563 error_report("%s: Failed dumping dtb to %s", __func__
, dumpdtb
);
568 int qemu_fdt_setprop_sized_cells_from_array(void *fdt
,
569 const char *node_path
,
570 const char *property
,
576 int cellnum
, vnum
, ncells
;
580 propcells
= g_new0(uint32_t, numvalues
* 2);
583 for (vnum
= 0; vnum
< numvalues
; vnum
++) {
584 ncells
= values
[vnum
* 2];
585 if (ncells
!= 1 && ncells
!= 2) {
589 value
= values
[vnum
* 2 + 1];
590 hival
= cpu_to_be32(value
>> 32);
592 propcells
[cellnum
++] = hival
;
593 } else if (hival
!= 0) {
597 propcells
[cellnum
++] = cpu_to_be32(value
);
600 ret
= qemu_fdt_setprop(fdt
, node_path
, property
, propcells
,
601 cellnum
* sizeof(uint32_t));