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[karo-tx-uboot.git] / common / cmd_fdt.c
1 /*
2  * (C) Copyright 2007
3  * Gerald Van Baren, Custom IDEAS, vanbaren@cideas.com
4  * Based on code written by:
5  *   Pantelis Antoniou <pantelis.antoniou@gmail.com> and
6  *   Matthew McClintock <msm@freescale.com>
7  *
8  * See file CREDITS for list of people who contributed to this
9  * project.
10  *
11  * This program is free software; you can redistribute it and/or
12  * modify it under the terms of the GNU General Public License as
13  * published by the Free Software Foundation; either version 2 of
14  * the License, or (at your option) any later version.
15  *
16  * This program is distributed in the hope that it will be useful,
17  * but WITHOUT ANY WARRANTY; without even the implied warranty of
18  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
19  * GNU General Public License for more details.
20  *
21  * You should have received a copy of the GNU General Public License
22  * along with this program; if not, write to the Free Software
23  * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
24  * MA 02111-1307 USA
25  */
26
27 #include <common.h>
28 #include <command.h>
29 #include <linux/ctype.h>
30 #include <linux/types.h>
31 #include <asm/global_data.h>
32 #include <fdt.h>
33 #include <libfdt.h>
34 #include <fdt_support.h>
35
36 #define MAX_LEVEL       32              /* how deeply nested we will go */
37 #define SCRATCHPAD      1024            /* bytes of scratchpad memory */
38
39 /*
40  * Global data (for the gd->bd)
41  */
42 DECLARE_GLOBAL_DATA_PTR;
43
44 static int fdt_valid(void);
45 static int fdt_parse_prop(char **newval, int count, char *data, int *len);
46 static int fdt_print(const char *pathp, char *prop, int depth);
47
48 /*
49  * The working_fdt points to our working flattened device tree.
50  */
51 struct fdt_header *working_fdt;
52
53 /*
54  * Flattened Device Tree command, see the help for parameter definitions.
55  */
56 int do_fdt (cmd_tbl_t * cmdtp, int flag, int argc, char *argv[])
57 {
58         if (argc < 2) {
59                 printf ("Usage:\n%s\n", cmdtp->usage);
60                 return 1;
61         }
62
63         /********************************************************************
64          * Set the address of the fdt
65          ********************************************************************/
66         if (argv[1][0] == 'a') {
67                 /*
68                  * Set the address [and length] of the fdt.
69                  */
70                 working_fdt = (struct fdt_header *)simple_strtoul(argv[2], NULL, 16);
71
72                 if (!fdt_valid()) {
73                         return 1;
74                 }
75
76                 if (argc >= 4) {
77                         int  len;
78                         int  err;
79                         /*
80                          * Optional new length
81                          */
82                         len = simple_strtoul(argv[3], NULL, 16);
83                         if (len < fdt_totalsize(working_fdt)) {
84                                 printf ("New length %d < existing length %d, "
85                                         "ignoring.\n",
86                                         len, fdt_totalsize(working_fdt));
87                         } else {
88                                 /*
89                                  * Open in place with a new length.
90                                  */
91                                 err = fdt_open_into(working_fdt, working_fdt, len);
92                                 if (err != 0) {
93                                         printf ("libfdt fdt_open_into(): %s\n",
94                                                 fdt_strerror(err));
95                                 }
96                         }
97                 }
98
99         /********************************************************************
100          * Move the working_fdt
101          ********************************************************************/
102         } else if (strncmp(argv[1], "mo", 2) == 0) {
103                 struct fdt_header *newaddr;
104                 int  len;
105                 int  err;
106
107                 if (argc < 4) {
108                         printf ("Usage:\n%s\n", cmdtp->usage);
109                         return 1;
110                 }
111
112                 /*
113                  * Set the address and length of the fdt.
114                  */
115                 working_fdt = (struct fdt_header *)simple_strtoul(argv[2], NULL, 16);
116                 if (!fdt_valid()) {
117                         return 1;
118                 }
119
120                 newaddr = (struct fdt_header *)simple_strtoul(argv[3],NULL,16);
121
122                 /*
123                  * If the user specifies a length, use that.  Otherwise use the
124                  * current length.
125                  */
126                 if (argc <= 4) {
127                         len = fdt_totalsize(working_fdt);
128                 } else {
129                         len = simple_strtoul(argv[4], NULL, 16);
130                         if (len < fdt_totalsize(working_fdt)) {
131                                 printf ("New length 0x%X < existing length "
132                                         "0x%X, aborting.\n",
133                                         len, fdt_totalsize(working_fdt));
134                                 return 1;
135                         }
136                 }
137
138                 /*
139                  * Copy to the new location.
140                  */
141                 err = fdt_open_into(working_fdt, newaddr, len);
142                 if (err != 0) {
143                         printf ("libfdt fdt_open_into(): %s\n",
144                                 fdt_strerror(err));
145                         return 1;
146                 }
147                 working_fdt = newaddr;
148
149         /********************************************************************
150          * Make a new node
151          ********************************************************************/
152         } else if (strncmp(argv[1], "mk", 2) == 0) {
153                 char *pathp;            /* path */
154                 char *nodep;            /* new node to add */
155                 int  nodeoffset;        /* node offset from libfdt */
156                 int  err;
157
158                 /*
159                  * Parameters: Node path, new node to be appended to the path.
160                  */
161                 if (argc < 4) {
162                         printf ("Usage:\n%s\n", cmdtp->usage);
163                         return 1;
164                 }
165
166                 pathp = argv[2];
167                 nodep = argv[3];
168
169                 nodeoffset = fdt_path_offset (working_fdt, pathp);
170                 if (nodeoffset < 0) {
171                         /*
172                          * Not found or something else bad happened.
173                          */
174                         printf ("libfdt fdt_path_offset() returned %s\n",
175                                 fdt_strerror(nodeoffset));
176                         return 1;
177                 }
178                 err = fdt_add_subnode(working_fdt, nodeoffset, nodep);
179                 if (err < 0) {
180                         printf ("libfdt fdt_add_subnode(): %s\n",
181                                 fdt_strerror(err));
182                         return 1;
183                 }
184
185         /********************************************************************
186          * Set the value of a property in the working_fdt.
187          ********************************************************************/
188         } else if (argv[1][0] == 's') {
189                 char *pathp;            /* path */
190                 char *prop;             /* property */
191                 int  nodeoffset;        /* node offset from libfdt */
192                 static char data[SCRATCHPAD];   /* storage for the property */
193                 int  len;               /* new length of the property */
194                 int  ret;               /* return value */
195
196                 /*
197                  * Parameters: Node path, property, optional value.
198                  */
199                 if (argc < 4) {
200                         printf ("Usage:\n%s\n", cmdtp->usage);
201                         return 1;
202                 }
203
204                 pathp  = argv[2];
205                 prop   = argv[3];
206                 if (argc == 4) {
207                         len = 0;
208                 } else {
209                         ret = fdt_parse_prop(&argv[4], argc - 4, data, &len);
210                         if (ret != 0)
211                                 return ret;
212                 }
213
214                 nodeoffset = fdt_path_offset (working_fdt, pathp);
215                 if (nodeoffset < 0) {
216                         /*
217                          * Not found or something else bad happened.
218                          */
219                         printf ("libfdt fdt_path_offset() returned %s\n",
220                                 fdt_strerror(nodeoffset));
221                         return 1;
222                 }
223
224                 ret = fdt_setprop(working_fdt, nodeoffset, prop, data, len);
225                 if (ret < 0) {
226                         printf ("libfdt fdt_setprop(): %s\n", fdt_strerror(ret));
227                         return 1;
228                 }
229
230         /********************************************************************
231          * Print (recursive) / List (single level)
232          ********************************************************************/
233         } else if ((argv[1][0] == 'p') || (argv[1][0] == 'l')) {
234                 int depth = MAX_LEVEL;  /* how deep to print */
235                 char *pathp;            /* path */
236                 char *prop;             /* property */
237                 int  ret;               /* return value */
238                 static char root[2] = "/";
239
240                 /*
241                  * list is an alias for print, but limited to 1 level
242                  */
243                 if (argv[1][0] == 'l') {
244                         depth = 1;
245                 }
246
247                 /*
248                  * Get the starting path.  The root node is an oddball,
249                  * the offset is zero and has no name.
250                  */
251                 if (argc == 2)
252                         pathp = root;
253                 else
254                         pathp = argv[2];
255                 if (argc > 3)
256                         prop = argv[3];
257                 else
258                         prop = NULL;
259
260                 ret = fdt_print(pathp, prop, depth);
261                 if (ret != 0)
262                         return ret;
263
264         /********************************************************************
265          * Remove a property/node
266          ********************************************************************/
267         } else if (strncmp(argv[1], "rm", 2) == 0) {
268                 int  nodeoffset;        /* node offset from libfdt */
269                 int  err;
270
271                 /*
272                  * Get the path.  The root node is an oddball, the offset
273                  * is zero and has no name.
274                  */
275                 nodeoffset = fdt_path_offset (working_fdt, argv[2]);
276                 if (nodeoffset < 0) {
277                         /*
278                          * Not found or something else bad happened.
279                          */
280                         printf ("libfdt fdt_path_offset() returned %s\n",
281                                 fdt_strerror(nodeoffset));
282                         return 1;
283                 }
284                 /*
285                  * Do the delete.  A fourth parameter means delete a property,
286                  * otherwise delete the node.
287                  */
288                 if (argc > 3) {
289                         err = fdt_delprop(working_fdt, nodeoffset, argv[3]);
290                         if (err < 0) {
291                                 printf("libfdt fdt_delprop():  %s\n",
292                                         fdt_strerror(err));
293                                 return err;
294                         }
295                 } else {
296                         err = fdt_del_node(working_fdt, nodeoffset);
297                         if (err < 0) {
298                                 printf("libfdt fdt_del_node():  %s\n",
299                                         fdt_strerror(err));
300                                 return err;
301                         }
302                 }
303
304         /********************************************************************
305          * Display header info
306          ********************************************************************/
307         } else if (argv[1][0] == 'h') {
308                 u32 version = fdt_version(working_fdt);
309                 printf("magic:\t\t\t0x%x\n", fdt_magic(working_fdt));
310                 printf("totalsize:\t\t0x%x (%d)\n", fdt_totalsize(working_fdt),
311                        fdt_totalsize(working_fdt));
312                 printf("off_dt_struct:\t\t0x%x\n",
313                        fdt_off_dt_struct(working_fdt));
314                 printf("off_dt_strings:\t\t0x%x\n",
315                        fdt_off_dt_strings(working_fdt));
316                 printf("off_mem_rsvmap:\t\t0x%x\n",
317                        fdt_off_mem_rsvmap(working_fdt));
318                 printf("version:\t\t%d\n", version);
319                 printf("last_comp_version:\t%d\n",
320                        fdt_last_comp_version(working_fdt));
321                 if (version >= 2)
322                         printf("boot_cpuid_phys:\t0x%x\n",
323                                 fdt_boot_cpuid_phys(working_fdt));
324                 if (version >= 3)
325                         printf("size_dt_strings:\t0x%x\n",
326                                 fdt_size_dt_strings(working_fdt));
327                 if (version >= 17)
328                         printf("size_dt_struct:\t\t0x%x\n",
329                                 fdt_size_dt_struct(working_fdt));
330                 printf("number mem_rsv:\t\t0x%x\n",
331                        fdt_num_mem_rsv(working_fdt));
332                 printf("\n");
333
334         /********************************************************************
335          * Set boot cpu id
336          ********************************************************************/
337         } else if (strncmp(argv[1], "boo", 3) == 0) {
338                 unsigned long tmp = simple_strtoul(argv[2], NULL, 16);
339                 fdt_set_boot_cpuid_phys(working_fdt, tmp);
340
341         /********************************************************************
342          * memory command
343          ********************************************************************/
344         } else if (strncmp(argv[1], "me", 2) == 0) {
345                 uint64_t addr, size;
346                 int err;
347 #ifdef CFG_64BIT_STRTOUL
348                         addr = simple_strtoull(argv[2], NULL, 16);
349                         size = simple_strtoull(argv[3], NULL, 16);
350 #else
351                         addr = simple_strtoul(argv[2], NULL, 16);
352                         size = simple_strtoul(argv[3], NULL, 16);
353 #endif
354                 err = fdt_fixup_memory(working_fdt, addr, size);
355                 if (err < 0)
356                         return err;
357
358         /********************************************************************
359          * mem reserve commands
360          ********************************************************************/
361         } else if (strncmp(argv[1], "rs", 2) == 0) {
362                 if (argv[2][0] == 'p') {
363                         uint64_t addr, size;
364                         int total = fdt_num_mem_rsv(working_fdt);
365                         int j, err;
366                         printf("index\t\t   start\t\t    size\n");
367                         printf("-------------------------------"
368                                 "-----------------\n");
369                         for (j = 0; j < total; j++) {
370                                 err = fdt_get_mem_rsv(working_fdt, j, &addr, &size);
371                                 if (err < 0) {
372                                         printf("libfdt fdt_get_mem_rsv():  %s\n",
373                                                         fdt_strerror(err));
374                                         return err;
375                                 }
376                                 printf("    %x\t%08x%08x\t%08x%08x\n", j,
377                                         (u32)(addr >> 32),
378                                         (u32)(addr & 0xffffffff),
379                                         (u32)(size >> 32),
380                                         (u32)(size & 0xffffffff));
381                         }
382                 } else if (argv[2][0] == 'a') {
383                         uint64_t addr, size;
384                         int err;
385 #ifdef CFG_64BIT_STRTOUL
386                         addr = simple_strtoull(argv[3], NULL, 16);
387                         size = simple_strtoull(argv[4], NULL, 16);
388 #else
389                         addr = simple_strtoul(argv[3], NULL, 16);
390                         size = simple_strtoul(argv[4], NULL, 16);
391 #endif
392                         err = fdt_add_mem_rsv(working_fdt, addr, size);
393
394                         if (err < 0) {
395                                 printf("libfdt fdt_add_mem_rsv():  %s\n",
396                                         fdt_strerror(err));
397                                 return err;
398                         }
399                 } else if (argv[2][0] == 'd') {
400                         unsigned long idx = simple_strtoul(argv[3], NULL, 16);
401                         int err = fdt_del_mem_rsv(working_fdt, idx);
402
403                         if (err < 0) {
404                                 printf("libfdt fdt_del_mem_rsv():  %s\n",
405                                         fdt_strerror(err));
406                                 return err;
407                         }
408                 } else {
409                         /* Unrecognized command */
410                         printf ("Usage:\n%s\n", cmdtp->usage);
411                         return 1;
412                 }
413         }
414 #ifdef CONFIG_OF_BOARD_SETUP
415         /* Call the board-specific fixup routine */
416         else if (strncmp(argv[1], "boa", 3) == 0)
417                 ft_board_setup(working_fdt, gd->bd);
418 #endif
419         /* Create a chosen node */
420         else if (argv[1][0] == 'c')
421                 fdt_chosen(working_fdt, 0, 0, 1);
422         else {
423                 /* Unrecognized command */
424                 printf ("Usage:\n%s\n", cmdtp->usage);
425                 return 1;
426         }
427
428         return 0;
429 }
430
431 /****************************************************************************/
432
433 static int fdt_valid(void)
434 {
435         int  err;
436
437         if (working_fdt == NULL) {
438                 printf ("The address of the fdt is invalid (NULL).\n");
439                 return 0;
440         }
441
442         err = fdt_check_header(working_fdt);
443         if (err == 0)
444                 return 1;       /* valid */
445
446         if (err < 0) {
447                 printf("libfdt fdt_check_header(): %s", fdt_strerror(err));
448                 /*
449                  * Be more informative on bad version.
450                  */
451                 if (err == -FDT_ERR_BADVERSION) {
452                         if (fdt_version(working_fdt) <
453                             FDT_FIRST_SUPPORTED_VERSION) {
454                                 printf (" - too old, fdt $d < %d",
455                                         fdt_version(working_fdt),
456                                         FDT_FIRST_SUPPORTED_VERSION);
457                                 working_fdt = NULL;
458                         }
459                         if (fdt_last_comp_version(working_fdt) >
460                             FDT_LAST_SUPPORTED_VERSION) {
461                                 printf (" - too new, fdt $d > %d",
462                                         fdt_version(working_fdt),
463                                         FDT_LAST_SUPPORTED_VERSION);
464                                 working_fdt = NULL;
465                         }
466                         return 0;
467                 }
468                 printf("\n");
469                 return 0;
470         }
471         return 1;
472 }
473
474 /****************************************************************************/
475
476 /*
477  * Parse the user's input, partially heuristic.  Valid formats:
478  * <0x00112233 4 05>    - an array of cells.  Numbers follow standard
479  *                      C conventions.
480  * [00 11 22 .. nn] - byte stream
481  * "string"     - If the the value doesn't start with "<" or "[", it is
482  *                      treated as a string.  Note that the quotes are
483  *                      stripped by the parser before we get the string.
484  * newval: An array of strings containing the new property as specified
485  *      on the command line
486  * count: The number of strings in the array
487  * data: A bytestream to be placed in the property
488  * len: The length of the resulting bytestream
489  */
490 static int fdt_parse_prop(char **newval, int count, char *data, int *len)
491 {
492         char *cp;               /* temporary char pointer */
493         char *newp;             /* temporary newval char pointer */
494         unsigned long tmp;      /* holds converted values */
495         int stridx = 0;
496
497         *len = 0;
498         newp = newval[0];
499
500         /* An array of cells */
501         if (*newp == '<') {
502                 newp++;
503                 while ((*newp != '>') && (stridx < count)) {
504                         /*
505                          * Keep searching until we find that last ">"
506                          * That way users don't have to escape the spaces
507                          */
508                         if (*newp == '\0') {
509                                 newp = newval[++stridx];
510                                 continue;
511                         }
512
513                         cp = newp;
514                         tmp = simple_strtoul(cp, &newp, 0);
515                         *(uint32_t *)data = __cpu_to_be32(tmp);
516                         data  += 4;
517                         *len += 4;
518
519                         /* If the ptr didn't advance, something went wrong */
520                         if ((newp - cp) <= 0) {
521                                 printf("Sorry, I could not convert \"%s\"\n",
522                                         cp);
523                                 return 1;
524                         }
525
526                         while (*newp == ' ')
527                                 newp++;
528                 }
529
530                 if (*newp != '>') {
531                         printf("Unexpected character '%c'\n", *newp);
532                         return 1;
533                 }
534         } else if (*newp == '[') {
535                 /*
536                  * Byte stream.  Convert the values.
537                  */
538                 newp++;
539                 while ((*newp != ']') && (stridx < count)) {
540                         tmp = simple_strtoul(newp, &newp, 16);
541                         *data++ = tmp & 0xFF;
542                         *len    = *len + 1;
543                         while (*newp == ' ')
544                                 newp++;
545                         if (*newp != '\0')
546                                 newp = newval[++stridx];
547                 }
548                 if (*newp != ']') {
549                         printf("Unexpected character '%c'\n", *newval);
550                         return 1;
551                 }
552         } else {
553                 /*
554                  * Assume it is a string.  Copy it into our data area for
555                  * convenience (including the terminating '\0').
556                  */
557                 while (stridx < count) {
558                         *len = strlen(newp) + 1;
559                         strcpy(data, newp);
560                         newp = newval[++stridx];
561                 }
562         }
563         return 0;
564 }
565
566 /****************************************************************************/
567
568 /*
569  * Heuristic to guess if this is a string or concatenated strings.
570  */
571
572 static int is_printable_string(const void *data, int len)
573 {
574         const char *s = data;
575
576         /* zero length is not */
577         if (len == 0)
578                 return 0;
579
580         /* must terminate with zero */
581         if (s[len - 1] != '\0')
582                 return 0;
583
584         /* printable or a null byte (concatenated strings) */
585         while (((*s == '\0') || isprint(*s)) && (len > 0)) {
586                 /*
587                  * If we see a null, there are three possibilities:
588                  * 1) If len == 1, it is the end of the string, printable
589                  * 2) Next character also a null, not printable.
590                  * 3) Next character not a null, continue to check.
591                  */
592                 if (s[0] == '\0') {
593                         if (len == 1)
594                                 return 1;
595                         if (s[1] == '\0')
596                                 return 0;
597                 }
598                 s++;
599                 len--;
600         }
601
602         /* Not the null termination, or not done yet: not printable */
603         if (*s != '\0' || (len != 0))
604                 return 0;
605
606         return 1;
607 }
608
609
610 /*
611  * Print the property in the best format, a heuristic guess.  Print as
612  * a string, concatenated strings, a byte, word, double word, or (if all
613  * else fails) it is printed as a stream of bytes.
614  */
615 static void print_data(const void *data, int len)
616 {
617         int j;
618
619         /* no data, don't print */
620         if (len == 0)
621                 return;
622
623         /*
624          * It is a string, but it may have multiple strings (embedded '\0's).
625          */
626         if (is_printable_string(data, len)) {
627                 puts("\"");
628                 j = 0;
629                 while (j < len) {
630                         if (j > 0)
631                                 puts("\", \"");
632                         puts(data);
633                         j    += strlen(data) + 1;
634                         data += strlen(data) + 1;
635                 }
636                 puts("\"");
637                 return;
638         }
639
640         if ((len %4) == 0) {
641                 const u32 *p;
642
643                 printf("<");
644                 for (j = 0, p = data; j < len/4; j ++)
645                         printf("0x%x%s", p[j], j < (len/4 - 1) ? " " : "");
646                 printf(">");
647         } else { /* anything else... hexdump */
648                 const u8 *s;
649
650                 printf("[");
651                 for (j = 0, s = data; j < len; j++)
652                         printf("%02x%s", s[j], j < len - 1 ? " " : "");
653                 printf("]");
654         }
655 }
656
657 /****************************************************************************/
658
659 /*
660  * Recursively print (a portion of) the working_fdt.  The depth parameter
661  * determines how deeply nested the fdt is printed.
662  */
663 static int fdt_print(const char *pathp, char *prop, int depth)
664 {
665         static char tabs[MAX_LEVEL+1] =
666                 "\t\t\t\t\t\t\t\t\t\t\t\t\t\t\t\t"
667                 "\t\t\t\t\t\t\t\t\t\t\t\t\t\t\t\t";
668         const void *nodep;      /* property node pointer */
669         int  nodeoffset;        /* node offset from libfdt */
670         int  nextoffset;        /* next node offset from libfdt */
671         uint32_t tag;           /* tag */
672         int  len;               /* length of the property */
673         int  level = 0;         /* keep track of nesting level */
674         const struct fdt_property *fdt_prop;
675
676         nodeoffset = fdt_path_offset (working_fdt, pathp);
677         if (nodeoffset < 0) {
678                 /*
679                  * Not found or something else bad happened.
680                  */
681                 printf ("libfdt fdt_path_offset() returned %s\n",
682                         fdt_strerror(nodeoffset));
683                 return 1;
684         }
685         /*
686          * The user passed in a property as well as node path.
687          * Print only the given property and then return.
688          */
689         if (prop) {
690                 nodep = fdt_getprop (working_fdt, nodeoffset, prop, &len);
691                 if (len == 0) {
692                         /* no property value */
693                         printf("%s %s\n", pathp, prop);
694                         return 0;
695                 } else if (len > 0) {
696                         printf("%s = ", prop);
697                         print_data (nodep, len);
698                         printf("\n");
699                         return 0;
700                 } else {
701                         printf ("libfdt fdt_getprop(): %s\n",
702                                 fdt_strerror(len));
703                         return 1;
704                 }
705         }
706
707         /*
708          * The user passed in a node path and no property,
709          * print the node and all subnodes.
710          */
711         while(level >= 0) {
712                 tag = fdt_next_tag(working_fdt, nodeoffset, &nextoffset);
713                 switch(tag) {
714                 case FDT_BEGIN_NODE:
715                         pathp = fdt_get_name(working_fdt, nodeoffset, NULL);
716                         if (level <= depth) {
717                                 if (pathp == NULL)
718                                         pathp = "/* NULL pointer error */";
719                                 if (*pathp == '\0')
720                                         pathp = "/";    /* root is nameless */
721                                 printf("%s%s {\n",
722                                         &tabs[MAX_LEVEL - level], pathp);
723                         }
724                         level++;
725                         if (level >= MAX_LEVEL) {
726                                 printf("Nested too deep, aborting.\n");
727                                 return 1;
728                         }
729                         break;
730                 case FDT_END_NODE:
731                         level--;
732                         if (level <= depth)
733                                 printf("%s};\n", &tabs[MAX_LEVEL - level]);
734                         if (level == 0) {
735                                 level = -1;             /* exit the loop */
736                         }
737                         break;
738                 case FDT_PROP:
739                         fdt_prop = fdt_offset_ptr(working_fdt, nodeoffset,
740                                         sizeof(*fdt_prop));
741                         pathp    = fdt_string(working_fdt,
742                                         fdt32_to_cpu(fdt_prop->nameoff));
743                         len      = fdt32_to_cpu(fdt_prop->len);
744                         nodep    = fdt_prop->data;
745                         if (len < 0) {
746                                 printf ("libfdt fdt_getprop(): %s\n",
747                                         fdt_strerror(len));
748                                 return 1;
749                         } else if (len == 0) {
750                                 /* the property has no value */
751                                 if (level <= depth)
752                                         printf("%s%s;\n",
753                                                 &tabs[MAX_LEVEL - level],
754                                                 pathp);
755                         } else {
756                                 if (level <= depth) {
757                                         printf("%s%s = ",
758                                                 &tabs[MAX_LEVEL - level],
759                                                 pathp);
760                                         print_data (nodep, len);
761                                         printf(";\n");
762                                 }
763                         }
764                         break;
765                 case FDT_NOP:
766                         printf("/* NOP */\n", &tabs[MAX_LEVEL - level]);
767                         break;
768                 case FDT_END:
769                         return 1;
770                 default:
771                         if (level <= depth)
772                                 printf("Unknown tag 0x%08X\n", tag);
773                         return 1;
774                 }
775                 nodeoffset = nextoffset;
776         }
777         return 0;
778 }
779
780 /********************************************************************/
781
782 U_BOOT_CMD(
783         fdt,    255,    0,      do_fdt,
784         "fdt     - flattened device tree utility commands\n",
785             "addr   <addr> [<length>]        - Set the fdt location to <addr>\n"
786 #ifdef CONFIG_OF_BOARD_SETUP
787         "fdt boardsetup                      - Do board-specific set up\n"
788 #endif
789         "fdt move   <fdt> <newaddr> <length> - Copy the fdt to <addr> and make it active\n"
790         "fdt print  <path> [<prop>]          - Recursive print starting at <path>\n"
791         "fdt list   <path> [<prop>]          - Print one level starting at <path>\n"
792         "fdt set    <path> <prop> [<val>]    - Set <property> [to <val>]\n"
793         "fdt mknode <path> <node>            - Create a new node after <path>\n"
794         "fdt rm     <path> [<prop>]          - Delete the node or <property>\n"
795         "fdt header                          - Display header info\n"
796         "fdt bootcpu <id>                    - Set boot cpuid\n"
797         "fdt memory <addr> <size>            - Add/Update memory node\n"
798         "fdt rsvmem print                    - Show current mem reserves\n"
799         "fdt rsvmem add <addr> <size>        - Add a mem reserve\n"
800         "fdt rsvmem delete <index>           - Delete a mem reserves\n"
801         "fdt chosen - Add/update the /chosen branch in the tree\n"
802         "NOTE: If the path or property you are setting/printing has a '#' character\n"
803         "     or spaces, you MUST escape it with a \\ character or quote it with \".\n"
804 );