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Commit | Line | Data |
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f652e6af AJ |
1 | /* |
2 | * Functions to help device tree manipulation using libfdt. | |
3 | * It also provides functions to read entries from device tree proc | |
4 | * interface. | |
5 | * | |
6 | * Copyright 2008 IBM Corporation. | |
7 | * Authors: Jerone Young <[email protected]> | |
8 | * Hollis Blanchard <[email protected]> | |
9 | * | |
10 | * This work is licensed under the GNU GPL license version 2 or later. | |
11 | * | |
12 | */ | |
13 | ||
d38ea87a | 14 | #include "qemu/osdep.h" |
f652e6af | 15 | |
60e43e98 EA |
16 | #ifdef CONFIG_LINUX |
17 | #include <dirent.h> | |
18 | #endif | |
19 | ||
f652e6af | 20 | #include "qemu-common.h" |
db013f81 | 21 | #include "qemu/error-report.h" |
9c17d615 | 22 | #include "sysemu/device_tree.h" |
2ff3de68 | 23 | #include "sysemu/sysemu.h" |
39b7f20e | 24 | #include "hw/loader.h" |
6cabe7fa | 25 | #include "hw/boards.h" |
1de7afc9 | 26 | #include "qemu/config-file.h" |
f652e6af AJ |
27 | |
28 | #include <libfdt.h> | |
29 | ||
ce36252c AG |
30 | #define FDT_MAX_SIZE 0x10000 |
31 | ||
32 | void *create_device_tree(int *sizep) | |
33 | { | |
34 | void *fdt; | |
35 | int ret; | |
36 | ||
37 | *sizep = FDT_MAX_SIZE; | |
38 | fdt = g_malloc0(FDT_MAX_SIZE); | |
39 | ret = fdt_create(fdt, FDT_MAX_SIZE); | |
40 | if (ret < 0) { | |
41 | goto fail; | |
42 | } | |
ef6de70e PM |
43 | ret = fdt_finish_reservemap(fdt); |
44 | if (ret < 0) { | |
45 | goto fail; | |
46 | } | |
ce36252c AG |
47 | ret = fdt_begin_node(fdt, ""); |
48 | if (ret < 0) { | |
49 | goto fail; | |
50 | } | |
51 | ret = fdt_end_node(fdt); | |
52 | if (ret < 0) { | |
53 | goto fail; | |
54 | } | |
55 | ret = fdt_finish(fdt); | |
56 | if (ret < 0) { | |
57 | goto fail; | |
58 | } | |
59 | ret = fdt_open_into(fdt, fdt, *sizep); | |
60 | if (ret) { | |
508e221f | 61 | error_report("Unable to copy device tree in memory"); |
ce36252c AG |
62 | exit(1); |
63 | } | |
64 | ||
65 | return fdt; | |
66 | fail: | |
508e221f | 67 | error_report("%s Couldn't create dt: %s", __func__, fdt_strerror(ret)); |
ce36252c AG |
68 | exit(1); |
69 | } | |
70 | ||
7ec632b4 | 71 | void *load_device_tree(const char *filename_path, int *sizep) |
f652e6af | 72 | { |
7ec632b4 | 73 | int dt_size; |
f652e6af | 74 | int dt_file_load_size; |
f652e6af | 75 | int ret; |
7ec632b4 | 76 | void *fdt = NULL; |
f652e6af | 77 | |
7ec632b4 PB |
78 | *sizep = 0; |
79 | dt_size = get_image_size(filename_path); | |
80 | if (dt_size < 0) { | |
db013f81 LL |
81 | error_report("Unable to get size of device tree file '%s'", |
82 | filename_path); | |
f652e6af AJ |
83 | goto fail; |
84 | } | |
85 | ||
7ec632b4 | 86 | /* Expand to 2x size to give enough room for manipulation. */ |
ded57c5f | 87 | dt_size += 10000; |
7ec632b4 | 88 | dt_size *= 2; |
f652e6af | 89 | /* First allocate space in qemu for device tree */ |
7267c094 | 90 | fdt = g_malloc0(dt_size); |
f652e6af | 91 | |
7ec632b4 PB |
92 | dt_file_load_size = load_image(filename_path, fdt); |
93 | if (dt_file_load_size < 0) { | |
db013f81 LL |
94 | error_report("Unable to open device tree file '%s'", |
95 | filename_path); | |
7ec632b4 PB |
96 | goto fail; |
97 | } | |
f652e6af | 98 | |
7ec632b4 | 99 | ret = fdt_open_into(fdt, fdt, dt_size); |
f652e6af | 100 | if (ret) { |
db013f81 | 101 | error_report("Unable to copy device tree in memory"); |
f652e6af AJ |
102 | goto fail; |
103 | } | |
104 | ||
105 | /* Check sanity of device tree */ | |
106 | if (fdt_check_header(fdt)) { | |
db013f81 LL |
107 | error_report("Device tree file loaded into memory is invalid: %s", |
108 | filename_path); | |
f652e6af AJ |
109 | goto fail; |
110 | } | |
7ec632b4 | 111 | *sizep = dt_size; |
f652e6af AJ |
112 | return fdt; |
113 | ||
114 | fail: | |
7267c094 | 115 | g_free(fdt); |
f652e6af AJ |
116 | return NULL; |
117 | } | |
118 | ||
60e43e98 EA |
119 | #ifdef CONFIG_LINUX |
120 | ||
121 | #define SYSFS_DT_BASEDIR "/proc/device-tree" | |
122 | ||
123 | /** | |
124 | * read_fstree: this function is inspired from dtc read_fstree | |
125 | * @fdt: preallocated fdt blob buffer, to be populated | |
126 | * @dirname: directory to scan under SYSFS_DT_BASEDIR | |
127 | * the search is recursive and the tree is searched down to the | |
128 | * leaves (property files). | |
129 | * | |
130 | * the function asserts in case of error | |
131 | */ | |
132 | static void read_fstree(void *fdt, const char *dirname) | |
133 | { | |
134 | DIR *d; | |
135 | struct dirent *de; | |
136 | struct stat st; | |
137 | const char *root_dir = SYSFS_DT_BASEDIR; | |
138 | const char *parent_node; | |
139 | ||
140 | if (strstr(dirname, root_dir) != dirname) { | |
141 | error_setg(&error_fatal, "%s: %s must be searched within %s", | |
142 | __func__, dirname, root_dir); | |
143 | } | |
144 | parent_node = &dirname[strlen(SYSFS_DT_BASEDIR)]; | |
145 | ||
146 | d = opendir(dirname); | |
147 | if (!d) { | |
148 | error_setg(&error_fatal, "%s cannot open %s", __func__, dirname); | |
149 | } | |
150 | ||
151 | while ((de = readdir(d)) != NULL) { | |
152 | char *tmpnam; | |
153 | ||
154 | if (!g_strcmp0(de->d_name, ".") | |
155 | || !g_strcmp0(de->d_name, "..")) { | |
156 | continue; | |
157 | } | |
158 | ||
159 | tmpnam = g_strdup_printf("%s/%s", dirname, de->d_name); | |
160 | ||
161 | if (lstat(tmpnam, &st) < 0) { | |
162 | error_setg(&error_fatal, "%s cannot lstat %s", __func__, tmpnam); | |
163 | } | |
164 | ||
165 | if (S_ISREG(st.st_mode)) { | |
166 | gchar *val; | |
167 | gsize len; | |
168 | ||
169 | if (!g_file_get_contents(tmpnam, &val, &len, NULL)) { | |
170 | error_setg(&error_fatal, "%s not able to extract info from %s", | |
171 | __func__, tmpnam); | |
172 | } | |
173 | ||
174 | if (strlen(parent_node) > 0) { | |
175 | qemu_fdt_setprop(fdt, parent_node, | |
176 | de->d_name, val, len); | |
177 | } else { | |
178 | qemu_fdt_setprop(fdt, "/", de->d_name, val, len); | |
179 | } | |
180 | g_free(val); | |
181 | } else if (S_ISDIR(st.st_mode)) { | |
182 | char *node_name; | |
183 | ||
184 | node_name = g_strdup_printf("%s/%s", | |
185 | parent_node, de->d_name); | |
186 | qemu_fdt_add_subnode(fdt, node_name); | |
187 | g_free(node_name); | |
188 | read_fstree(fdt, tmpnam); | |
189 | } | |
190 | ||
191 | g_free(tmpnam); | |
192 | } | |
193 | ||
194 | closedir(d); | |
195 | } | |
196 | ||
197 | /* load_device_tree_from_sysfs: extract the dt blob from host sysfs */ | |
198 | void *load_device_tree_from_sysfs(void) | |
199 | { | |
200 | void *host_fdt; | |
201 | int host_fdt_size; | |
202 | ||
203 | host_fdt = create_device_tree(&host_fdt_size); | |
204 | read_fstree(host_fdt, SYSFS_DT_BASEDIR); | |
205 | if (fdt_check_header(host_fdt)) { | |
206 | error_setg(&error_fatal, | |
207 | "%s host device tree extracted into memory is invalid", | |
208 | __func__); | |
209 | } | |
210 | return host_fdt; | |
211 | } | |
212 | ||
213 | #endif /* CONFIG_LINUX */ | |
214 | ||
ccbcfedd | 215 | static int findnode_nofail(void *fdt, const char *node_path) |
f652e6af AJ |
216 | { |
217 | int offset; | |
218 | ||
219 | offset = fdt_path_offset(fdt, node_path); | |
ccbcfedd | 220 | if (offset < 0) { |
508e221f LL |
221 | error_report("%s Couldn't find node %s: %s", __func__, node_path, |
222 | fdt_strerror(offset)); | |
ccbcfedd AG |
223 | exit(1); |
224 | } | |
225 | ||
226 | return offset; | |
227 | } | |
228 | ||
5a4348d1 | 229 | int qemu_fdt_setprop(void *fdt, const char *node_path, |
be5907f2 | 230 | const char *property, const void *val, int size) |
ccbcfedd AG |
231 | { |
232 | int r; | |
233 | ||
be5907f2 | 234 | r = fdt_setprop(fdt, findnode_nofail(fdt, node_path), property, val, size); |
ccbcfedd | 235 | if (r < 0) { |
508e221f LL |
236 | error_report("%s: Couldn't set %s/%s: %s", __func__, node_path, |
237 | property, fdt_strerror(r)); | |
ccbcfedd AG |
238 | exit(1); |
239 | } | |
f652e6af | 240 | |
ccbcfedd | 241 | return r; |
f652e6af AJ |
242 | } |
243 | ||
5a4348d1 PC |
244 | int qemu_fdt_setprop_cell(void *fdt, const char *node_path, |
245 | const char *property, uint32_t val) | |
f652e6af | 246 | { |
ccbcfedd | 247 | int r; |
f652e6af | 248 | |
ccbcfedd AG |
249 | r = fdt_setprop_cell(fdt, findnode_nofail(fdt, node_path), property, val); |
250 | if (r < 0) { | |
508e221f LL |
251 | error_report("%s: Couldn't set %s/%s = %#08x: %s", __func__, |
252 | node_path, property, val, fdt_strerror(r)); | |
ccbcfedd AG |
253 | exit(1); |
254 | } | |
f652e6af | 255 | |
ccbcfedd | 256 | return r; |
f652e6af AJ |
257 | } |
258 | ||
5a4348d1 PC |
259 | int qemu_fdt_setprop_u64(void *fdt, const char *node_path, |
260 | const char *property, uint64_t val) | |
bb28eb37 AG |
261 | { |
262 | val = cpu_to_be64(val); | |
5a4348d1 | 263 | return qemu_fdt_setprop(fdt, node_path, property, &val, sizeof(val)); |
bb28eb37 AG |
264 | } |
265 | ||
5a4348d1 PC |
266 | int qemu_fdt_setprop_string(void *fdt, const char *node_path, |
267 | const char *property, const char *string) | |
f652e6af | 268 | { |
ccbcfedd | 269 | int r; |
f652e6af | 270 | |
ccbcfedd AG |
271 | r = fdt_setprop_string(fdt, findnode_nofail(fdt, node_path), property, string); |
272 | if (r < 0) { | |
508e221f LL |
273 | error_report("%s: Couldn't set %s/%s = %s: %s", __func__, |
274 | node_path, property, string, fdt_strerror(r)); | |
ccbcfedd AG |
275 | exit(1); |
276 | } | |
f652e6af | 277 | |
ccbcfedd | 278 | return r; |
f652e6af | 279 | } |
d69a8e63 | 280 | |
5a4348d1 PC |
281 | const void *qemu_fdt_getprop(void *fdt, const char *node_path, |
282 | const char *property, int *lenp) | |
f0aa713f PM |
283 | { |
284 | int len; | |
285 | const void *r; | |
286 | if (!lenp) { | |
287 | lenp = &len; | |
288 | } | |
289 | r = fdt_getprop(fdt, findnode_nofail(fdt, node_path), property, lenp); | |
290 | if (!r) { | |
508e221f LL |
291 | error_report("%s: Couldn't get %s/%s: %s", __func__, |
292 | node_path, property, fdt_strerror(*lenp)); | |
f0aa713f PM |
293 | exit(1); |
294 | } | |
295 | return r; | |
296 | } | |
297 | ||
5a4348d1 PC |
298 | uint32_t qemu_fdt_getprop_cell(void *fdt, const char *node_path, |
299 | const char *property) | |
f0aa713f PM |
300 | { |
301 | int len; | |
5a4348d1 | 302 | const uint32_t *p = qemu_fdt_getprop(fdt, node_path, property, &len); |
f0aa713f | 303 | if (len != 4) { |
508e221f LL |
304 | error_report("%s: %s/%s not 4 bytes long (not a cell?)", |
305 | __func__, node_path, property); | |
f0aa713f PM |
306 | exit(1); |
307 | } | |
308 | return be32_to_cpu(*p); | |
309 | } | |
310 | ||
5a4348d1 | 311 | uint32_t qemu_fdt_get_phandle(void *fdt, const char *path) |
7d5fd108 AG |
312 | { |
313 | uint32_t r; | |
314 | ||
315 | r = fdt_get_phandle(fdt, findnode_nofail(fdt, path)); | |
909a196d | 316 | if (r == 0) { |
508e221f LL |
317 | error_report("%s: Couldn't get phandle for %s: %s", __func__, |
318 | path, fdt_strerror(r)); | |
7d5fd108 AG |
319 | exit(1); |
320 | } | |
321 | ||
322 | return r; | |
323 | } | |
324 | ||
5a4348d1 PC |
325 | int qemu_fdt_setprop_phandle(void *fdt, const char *node_path, |
326 | const char *property, | |
327 | const char *target_node_path) | |
8535ab12 | 328 | { |
5a4348d1 PC |
329 | uint32_t phandle = qemu_fdt_get_phandle(fdt, target_node_path); |
330 | return qemu_fdt_setprop_cell(fdt, node_path, property, phandle); | |
8535ab12 AG |
331 | } |
332 | ||
5a4348d1 | 333 | uint32_t qemu_fdt_alloc_phandle(void *fdt) |
3601b572 | 334 | { |
4b1b1c89 AG |
335 | static int phandle = 0x0; |
336 | ||
337 | /* | |
338 | * We need to find out if the user gave us special instruction at | |
cc47a16b | 339 | * which phandle id to start allocating phandles. |
4b1b1c89 AG |
340 | */ |
341 | if (!phandle) { | |
6cabe7fa | 342 | phandle = machine_phandle_start(current_machine); |
4b1b1c89 AG |
343 | } |
344 | ||
345 | if (!phandle) { | |
346 | /* | |
347 | * None or invalid phandle given on the command line, so fall back to | |
348 | * default starting point. | |
349 | */ | |
350 | phandle = 0x8000; | |
351 | } | |
3601b572 AG |
352 | |
353 | return phandle++; | |
354 | } | |
355 | ||
5a4348d1 | 356 | int qemu_fdt_nop_node(void *fdt, const char *node_path) |
d69a8e63 | 357 | { |
ccbcfedd | 358 | int r; |
d69a8e63 | 359 | |
ccbcfedd AG |
360 | r = fdt_nop_node(fdt, findnode_nofail(fdt, node_path)); |
361 | if (r < 0) { | |
508e221f LL |
362 | error_report("%s: Couldn't nop node %s: %s", __func__, node_path, |
363 | fdt_strerror(r)); | |
ccbcfedd AG |
364 | exit(1); |
365 | } | |
d69a8e63 | 366 | |
ccbcfedd | 367 | return r; |
d69a8e63 | 368 | } |
80ad7816 | 369 | |
5a4348d1 | 370 | int qemu_fdt_add_subnode(void *fdt, const char *name) |
80ad7816 | 371 | { |
80ad7816 AG |
372 | char *dupname = g_strdup(name); |
373 | char *basename = strrchr(dupname, '/'); | |
374 | int retval; | |
c640d088 | 375 | int parent = 0; |
80ad7816 AG |
376 | |
377 | if (!basename) { | |
bff39b63 | 378 | g_free(dupname); |
80ad7816 AG |
379 | return -1; |
380 | } | |
381 | ||
382 | basename[0] = '\0'; | |
383 | basename++; | |
384 | ||
c640d088 AG |
385 | if (dupname[0]) { |
386 | parent = findnode_nofail(fdt, dupname); | |
387 | } | |
388 | ||
389 | retval = fdt_add_subnode(fdt, parent, basename); | |
ccbcfedd | 390 | if (retval < 0) { |
508e221f LL |
391 | error_report("FDT: Failed to create subnode %s: %s", name, |
392 | fdt_strerror(retval)); | |
ccbcfedd | 393 | exit(1); |
80ad7816 AG |
394 | } |
395 | ||
80ad7816 AG |
396 | g_free(dupname); |
397 | return retval; | |
398 | } | |
71193433 | 399 | |
5a4348d1 | 400 | void qemu_fdt_dumpdtb(void *fdt, int size) |
71193433 | 401 | { |
2ff3de68 | 402 | const char *dumpdtb = qemu_opt_get(qemu_get_machine_opts(), "dumpdtb"); |
71193433 | 403 | |
2ff3de68 MA |
404 | if (dumpdtb) { |
405 | /* Dump the dtb to a file and quit */ | |
406 | exit(g_file_set_contents(dumpdtb, fdt, size, NULL) ? 0 : 1); | |
407 | } | |
71193433 | 408 | } |
97c38f8c | 409 | |
5a4348d1 PC |
410 | int qemu_fdt_setprop_sized_cells_from_array(void *fdt, |
411 | const char *node_path, | |
412 | const char *property, | |
413 | int numvalues, | |
414 | uint64_t *values) | |
97c38f8c PM |
415 | { |
416 | uint32_t *propcells; | |
417 | uint64_t value; | |
418 | int cellnum, vnum, ncells; | |
419 | uint32_t hival; | |
2bf9febc | 420 | int ret; |
97c38f8c PM |
421 | |
422 | propcells = g_new0(uint32_t, numvalues * 2); | |
423 | ||
424 | cellnum = 0; | |
425 | for (vnum = 0; vnum < numvalues; vnum++) { | |
426 | ncells = values[vnum * 2]; | |
427 | if (ncells != 1 && ncells != 2) { | |
2bf9febc SF |
428 | ret = -1; |
429 | goto out; | |
97c38f8c PM |
430 | } |
431 | value = values[vnum * 2 + 1]; | |
432 | hival = cpu_to_be32(value >> 32); | |
433 | if (ncells > 1) { | |
434 | propcells[cellnum++] = hival; | |
435 | } else if (hival != 0) { | |
2bf9febc SF |
436 | ret = -1; |
437 | goto out; | |
97c38f8c PM |
438 | } |
439 | propcells[cellnum++] = cpu_to_be32(value); | |
440 | } | |
441 | ||
2bf9febc SF |
442 | ret = qemu_fdt_setprop(fdt, node_path, property, propcells, |
443 | cellnum * sizeof(uint32_t)); | |
444 | out: | |
445 | g_free(propcells); | |
446 | return ret; | |
97c38f8c | 447 | } |