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karo: fdt: remove property 'xceiver-supply' if no can xcvr present
[karo-tx-uboot.git] / board / karo / common / fdt.c
1 /*
2  * (C) Copyright 2012,2013 Lothar Waßmann <LW@KARO-electronics.de>
3  *
4  * See file CREDITS for list of people who contributed to this
5  * project.
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  * This program is distributed in the hope that it will be useful,
12  * but WITHOUT ANY WARRANTY; without even the implied warranty of
13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14  * GNU General Public License for more details.
15  *
16 */
17
18 #include <common.h>
19 #include <errno.h>
20 #include <libfdt.h>
21 #include <fdt_support.h>
22 #include <nand.h>
23 #include <mxcfb.h>
24 #include <linux/list.h>
25 #include <linux/fb.h>
26 #include <jffs2/load_kernel.h>
27 #include <malloc.h>
28
29 #include "karo.h"
30
31 #ifdef CONFIG_MAX_DTB_SIZE
32 #define MAX_DTB_SIZE    CONFIG_MAX_DTB_SIZE
33 #else
34 #define MAX_DTB_SIZE    SZ_64K
35 #endif
36
37 DECLARE_GLOBAL_DATA_PTR;
38
39 static void karo_set_fdtsize(void *fdt)
40 {
41         size_t fdtsize = getenv_ulong("fdtsize", 16, 0);
42
43         if (fdtsize == fdt_totalsize(fdt)) {
44                 return;
45         }
46         debug("FDT size changed from %u to %u\n",
47                 fdtsize, fdt_totalsize(fdt));
48         setenv_hex("fdtsize", fdt_totalsize(fdt));
49 }
50
51 static void *karo_fdt_load_dtb(void)
52 {
53         int ret;
54         void *fdt = (void *)getenv_ulong("fdtaddr", 16, CONFIG_SYS_FDT_ADDR);
55
56         if (had_ctrlc()) {
57                 printf("aborting DTB load\n");
58                 return NULL;
59         }
60
61         /* clear FDT header in memory */
62         memset(fdt, 0, 4);
63
64         ret = karo_load_part("dtb", fdt, MAX_DTB_SIZE);
65         if (ret) {
66                 printf("Failed to load dtb from flash: %d\n", ret);
67                 return NULL;
68         }
69
70         if (fdt_check_header(fdt)) {
71                 debug("No valid DTB in flash\n");
72                 return NULL;
73         }
74         debug("Using DTB from flash\n");
75         karo_set_fdtsize(fdt);
76         return fdt;
77 }
78
79 void karo_fdt_move_fdt(void)
80 {
81         void *fdt;
82         unsigned long fdt_addr = getenv_ulong("fdtaddr", 16, 0);
83
84         if (working_fdt) {
85                 debug("DTB already loaded\n");
86                 return;
87         }
88
89         setenv("fdtsize", 0);
90
91         if (!fdt_addr) {
92                 fdt_addr = CONFIG_SYS_FDT_ADDR;
93                 printf("fdtaddr is not set; using default: %08lx\n",
94                         fdt_addr);
95         }
96
97         fdt = karo_fdt_load_dtb();
98         if (fdt == NULL) {
99                 fdt = (void *)gd->fdt_blob;
100                 if (fdt == NULL) {
101 #ifdef CONFIG_OF_EMBED
102                         printf("Compiled in FDT not found");
103 #else
104                         printf("No FDT found");
105 #endif
106                         printf("; creating empty DTB\n");
107                         fdt = (void *)fdt_addr;
108                         fdt_create_empty_tree(fdt, 256);
109                 } else {
110                         printf("No DTB in flash; using default DTB\n");
111                 }
112                 debug("Checking FDT header @ %p\n", fdt);
113                 if (fdt_check_header(fdt)) {
114                         printf("ERROR: No valid DTB found at %p\n", fdt);
115                         return;
116                 }
117                 debug("Moving FDT from %p..%p to %08lx..%08lx\n",
118                         fdt, fdt + fdt_totalsize(fdt) - 1,
119                         fdt_addr, fdt_addr + fdt_totalsize(fdt) - 1);
120                 memmove((void *)fdt_addr, fdt, fdt_totalsize(fdt));
121         }
122         set_working_fdt_addr((void *)fdt_addr);
123         gd->fdt_blob = fdt;
124         karo_set_fdtsize(fdt);
125 }
126
127 void karo_fdt_remove_node(void *blob, const char *node)
128 {
129         int off = fdt_path_offset(blob, node);
130         int ret;
131
132         debug("Removing node '%s' from DT\n", node);
133
134         if (off < 0) {
135                 printf("Could not find node '%s': %s\n", node,
136                         fdt_strerror(off));
137         } else {
138                 ret = fdt_del_node(blob, off);
139                 if (ret)
140                         printf("Failed to remove node '%s': %s\n",
141                                 node, fdt_strerror(ret));
142         }
143         karo_set_fdtsize(blob);
144 }
145
146 void karo_fdt_enable_node(void *blob, const char *node, int enable)
147 {
148         int off = fdt_path_offset(blob, node);
149
150         debug("%sabling node '%s'\n", enable ? "En" : "Dis", node);
151         if (off < 0) {
152                 printf("Could not find node '%s': %s\n", node,
153                         fdt_strerror(off));
154                 return;
155         }
156         fdt_set_node_status(blob, off,
157                         enable ? FDT_STATUS_OKAY : FDT_STATUS_DISABLED, 0);
158
159         karo_set_fdtsize(blob);
160 }
161
162 static void fdt_disable_tp_node(void *blob, const char *name)
163 {
164         int offs = fdt_node_offset_by_compatible(blob, -1, name);
165
166         while (offs >= 0) {
167                 debug("Disabling node '%s'\n", name);
168                 fdt_set_node_status(blob, offs, FDT_STATUS_DISABLED, 0);
169                 offs = fdt_node_offset_by_compatible(blob, offs, name);
170         }
171 }
172
173 void karo_fdt_fixup_touchpanel(void *blob, const char *panels[],
174                         size_t num_panels)
175 {
176         int i;
177         const char *model = getenv("touchpanel");
178
179         for (i = 0; i < num_panels; i++) {
180                 const char *tp = panels[i];
181
182                 if (model != NULL) {
183                         if (strcmp(model, tp) == 0)
184                                 continue;
185                         while (tp != NULL) {
186                                 if (*tp != '\0' && strcmp(model, tp + 1) == 0)
187                                         break;
188                                 tp = strpbrk(tp + 1, ",-");
189                         }
190                         if (tp != NULL)
191                                 continue;
192                 }
193                 fdt_disable_tp_node(blob, panels[i]);
194         }
195         karo_set_fdtsize(blob);
196 }
197
198 static int karo_fdt_disable_node_phandle(void *blob, const char *parent,
199                                         const char *name)
200 {
201         const uint32_t *ph;
202         int off;
203
204         off = fdt_path_offset(blob, parent);
205         if (off < 0) {
206                 printf("Failed to find node '%s'\n", parent);
207                 return off;
208         }
209
210         ph = fdt_getprop(blob, off, name, NULL);
211         if (ph == NULL) {
212                 printf("Failed to find '%s' phandle in node '%s'\n", name,
213                         fdt_get_name(blob, off, NULL));
214                 return -FDT_ERR_NOTFOUND;
215         }
216
217         off = fdt_node_offset_by_phandle(blob, fdt32_to_cpu(*ph));
218         if (off <= 0) {
219                 printf("Failed to find '%s' node via phandle %04x\n",
220                         name, fdt32_to_cpu(*ph));
221                 return -FDT_ERR_NOTFOUND;
222         }
223         return fdt_set_node_status(blob, off, FDT_STATUS_DISABLED, 0);
224 }
225
226 void karo_fdt_fixup_usb_otg(void *blob, const char *node, const char *phy)
227 {
228         const char *otg_mode = getenv("otg_mode");
229         int off;
230         int ret;
231         int disable_otg = 0;
232         int disable_phy_pins = 1;
233
234         debug("OTG mode is '%s'\n", otg_mode ? otg_mode : "<UNSET>");
235
236         off = fdt_path_offset(blob, node);
237         if (off < 0) {
238                 debug("Failed to find node %s\n", node);
239                 return;
240         }
241
242         if (otg_mode && (strcmp(otg_mode, "device") == 0 ||
243                                 strcmp(otg_mode, "gadget") == 0)) {
244                 debug("Setting dr_mode to 'peripheral'\n");
245                 ret = fdt_setprop_string(blob, off, "dr_mode", "peripheral");
246         } else if (otg_mode && strcmp(otg_mode, "host") == 0) {
247                 debug("Setting dr_mode to 'host'\n");
248                 ret = fdt_setprop_string(blob, off, "dr_mode", "host");
249                 disable_phy_pins = 0;
250         } else if (otg_mode && strcmp(otg_mode, "otg") == 0) {
251                 debug("Setting dr_mode to 'host'\n");
252                 ret = fdt_setprop_string(blob, off, "dr_mode", "otg");
253         } else {
254                 if (otg_mode && strcmp(otg_mode, "none") != 0)
255                         printf("Invalid 'otg_mode' setting '%s'; disabling usbotg port\n",
256                                 otg_mode);
257                 disable_otg = 1;
258                 ret = 0;
259         }
260
261         if ((!disable_phy_pins && !disable_otg) || ret)
262                 goto out;
263
264         ret = karo_fdt_disable_node_phandle(blob, node, "vbus-supply");
265         if (ret)
266                 goto out;
267
268         if (disable_otg) {
269                 debug("Disabling usbphy\n");
270                 ret = fdt_set_node_status(blob, off, FDT_STATUS_DISABLED, 0);
271                 if (ret)
272                         goto out;
273
274                 ret = karo_fdt_disable_node_phandle(blob, node, phy);
275         }
276 out:
277         if (ret)
278                 printf("Failed to update usbotg: %s\n", fdt_strerror(ret));
279         else
280                 debug("node '%s' updated\n", node);
281         karo_set_fdtsize(blob);
282 }
283
284 static inline int karo_fdt_flexcan_enabled(void *blob)
285 {
286         static const char *can_ifs[] = {
287                 "can0",
288                 "can1",
289         };
290         size_t i;
291
292         for (i = 0; i < ARRAY_SIZE(can_ifs); i++) {
293                 const char *status;
294                 int off = fdt_path_offset(blob, can_ifs[i]);
295
296                 if (off < 0) {
297                         debug("node '%s' not found\n", can_ifs[i]);
298                         continue;
299                 }
300                 status = fdt_getprop(blob, off, "status", NULL);
301                 if (status && strcmp(status, "okay") == 0) {
302                         debug("%s is enabled\n", can_ifs[i]);
303                         return 1;
304                 }
305         }
306         debug("can driver is disabled\n");
307         return 0;
308 }
309
310 static inline void karo_fdt_set_lcd_pins(void *blob, const char *name)
311 {
312         int off = fdt_path_offset(blob, name);
313         u32 ph;
314         const struct fdt_property *pc;
315         int len;
316
317         if (off < 0)
318                 return;
319
320         ph = fdt_create_phandle(blob, off);
321         if (!ph)
322                 return;
323
324         off = fdt_path_offset(blob, "display");
325         if (off < 0)
326                 return;
327
328         pc = fdt_get_property(blob, off, "pinctrl-0", &len);
329         if (!pc || len < sizeof(ph))
330                 return;
331
332         memcpy((void *)pc->data, &ph, sizeof(ph));
333         fdt_setprop_cell(blob, off, "pinctrl-0", ph);
334 }
335
336 void karo_fdt_fixup_flexcan(void *blob, int xcvr_present)
337 {
338         int ret;
339         const char *xcvr_status = "disabled";
340         const char *otg_mode = getenv("otg_mode");
341
342         if (xcvr_present) {
343                 if (karo_fdt_flexcan_enabled(blob)) {
344                         if (!is_lvds()) {
345                                 debug("Changing LCD to use 23bits only\n");
346                                 karo_fdt_set_lcd_pins(blob, "lcdif_23bit_pins_a");
347                                 xcvr_status = NULL;
348                         }
349                 } else if (!is_lvds()) {
350                         debug("Changing LCD to use 24bits\n");
351                         karo_fdt_set_lcd_pins(blob, "lcdif_24bit_pins_a");
352                 }
353         } else {
354                 int off = fdt_path_offset(blob, "can0");
355
356                 if (off >= 0)
357                         fdt_delprop(blob, off, "xceiver-supply");
358                 off = fdt_path_offset(blob, "can1");
359                 if (off >= 0)
360                         fdt_delprop(blob, off, "xceiver-supply");
361                 if (!is_lvds())
362                         karo_fdt_set_lcd_pins(blob, "lcdif_24bit_pins_a");
363         }
364
365         if (otg_mode && strcmp(otg_mode, "host") == 0)
366                 karo_fdt_enable_node(blob, "can1", 0);
367
368         if (xcvr_status) {
369                 debug("Disabling CAN XCVR\n");
370                 ret = fdt_find_and_setprop(blob, "reg_can_xcvr", "status",
371                                         xcvr_status, strlen(xcvr_status) + 1, 1);
372                 if (ret)
373                         printf("Failed to disable CAN transceiver switch: %s\n",
374                                 fdt_strerror(ret));
375         }
376 }
377
378 void karo_fdt_del_prop(void *blob, const char *compat, phys_addr_t offs,
379                         const char *prop)
380 {
381         int ret;
382         int offset;
383         const uint32_t *phandle;
384         uint32_t ph = 0;
385
386         offset = fdt_node_offset_by_compat_reg(blob, compat, offs);
387         if (offset <= 0)
388                 return;
389
390         phandle = fdt_getprop(blob, offset, prop, NULL);
391         if (phandle) {
392                 ph = fdt32_to_cpu(*phandle);
393         }
394
395         debug("Removing property '%s' from node %s@%08lx\n", prop, compat, offs);
396         ret = fdt_delprop(blob, offset, prop);
397         if (ret == 0)
398                 karo_set_fdtsize(blob);
399
400         if (!ph)
401                 return;
402
403         offset = fdt_node_offset_by_phandle(blob, ph);
404         if (offset <= 0)
405                 return;
406
407         debug("Removing node @ %08x\n", offset);
408         fdt_del_node(blob, offset);
409         karo_set_fdtsize(blob);
410 }
411
412 static int fdt_init_fb_mode(const void *blob, int off, struct fb_videomode *fb_mode)
413 {
414         const uint32_t *prop;
415
416         memset(fb_mode, 0, sizeof(*fb_mode));
417
418         prop = fdt_getprop(blob, off, "clock-frequency", NULL);
419         if (prop)
420                 fb_mode->pixclock = KHZ2PICOS(fdt32_to_cpu(*prop) / 1000);
421
422         prop = fdt_getprop(blob, off, "hactive", NULL);
423         if (prop)
424                 fb_mode->xres = fdt32_to_cpu(*prop);
425
426         prop = fdt_getprop(blob, off, "vactive", NULL);
427         if (prop)
428                 fb_mode->yres = fdt32_to_cpu(*prop);
429
430         prop = fdt_getprop(blob, off, "hback-porch", NULL);
431         if (prop)
432                 fb_mode->left_margin = fdt32_to_cpu(*prop);
433
434         prop = fdt_getprop(blob, off, "hsync-len", NULL);
435         if (prop)
436                 fb_mode->hsync_len = fdt32_to_cpu(*prop);
437
438         prop = fdt_getprop(blob, off, "hfront-porch", NULL);
439         if (prop)
440                 fb_mode->right_margin = fdt32_to_cpu(*prop);
441
442         prop = fdt_getprop(blob, off, "vback-porch", NULL);
443         if (prop)
444                 fb_mode->upper_margin = fdt32_to_cpu(*prop);
445
446         prop = fdt_getprop(blob, off, "vsync-len", NULL);
447         if (prop)
448                 fb_mode->vsync_len = fdt32_to_cpu(*prop);
449
450         prop = fdt_getprop(blob, off, "vfront-porch", NULL);
451         if (prop)
452                 fb_mode->lower_margin = fdt32_to_cpu(*prop);
453
454         prop = fdt_getprop(blob, off, "hsync-active", NULL);
455         if (prop)
456                 fb_mode->sync |= *prop ? FB_SYNC_VERT_HIGH_ACT : 0;
457
458         prop = fdt_getprop(blob, off, "vsync-active", NULL);
459         if (prop)
460                 fb_mode->sync |= *prop ? FB_SYNC_VERT_HIGH_ACT : 0;
461
462         prop = fdt_getprop(blob, off, "de-active", NULL);
463         if (prop)
464                 fb_mode->sync |= *prop ? 0 : FB_SYNC_OE_LOW_ACT;
465
466         prop = fdt_getprop(blob, off, "pixelclk-active", NULL);
467         if (prop)
468                 fb_mode->sync |= *prop ? 0 : FB_SYNC_CLK_LAT_FALL;
469
470         return 0;
471 }
472
473 static int fdt_update_native_fb_mode(void *blob, int off)
474 {
475         int ret;
476         uint32_t ph;
477
478         ret = fdt_increase_size(blob, 64);
479         if (ret) {
480                 printf("Warning: Failed to increase FDT size: %s\n",
481                         fdt_strerror(ret));
482         }
483         debug("Creating phandle at offset %d\n", off);
484         ph = fdt_create_phandle(blob, off);
485         if (!ph) {
486                 printf("Failed to create phandle for video timing\n");
487                 return -ENOMEM;
488         }
489
490         debug("phandle of %s @ %06x=%04x\n", fdt_get_name(blob, off, NULL),
491                 off, ph);
492         off = fdt_parent_offset(blob, off);
493         if (off < 0)
494                 return off;
495         debug("parent offset=%06x\n", off);
496         ret = fdt_setprop_cell(blob, off, "native-mode", ph);
497         if (ret)
498                 printf("Failed to set property 'native-mode': %s\n",
499                         fdt_strerror(ret));
500         karo_set_fdtsize(blob);
501         return ret;
502 }
503
504 static int karo_fdt_find_video_timings(void *blob)
505 {
506         int off = fdt_path_offset(blob, "display");
507         const char *subnode = "display-timings";
508
509         if (off < 0) {
510                 debug("Could not find node 'display' in FDT: %s\n",
511                         fdt_strerror(off));
512                 return off;
513         }
514
515         off = fdt_subnode_offset(blob, off, subnode);
516         if (off < 0) {
517                 debug("Could not find node '%s' in FDT: %s\n", subnode,
518                         fdt_strerror(off));
519         }
520         return off;
521 }
522
523 int karo_fdt_get_fb_mode(void *blob, const char *name, struct fb_videomode *fb_mode)
524 {
525         int off = karo_fdt_find_video_timings(blob);
526
527         if (off < 0)
528                 return off;
529         while (off > 0) {
530                 const char *n, *endp;
531                 int len, d = 1;
532
533                 off = fdt_next_node(blob, off, &d);
534                 if (off < 0)
535                         return off;
536                 if (d < 1)
537                         return -EINVAL;
538                 if (d > 2) {
539                         debug("Skipping node @ %04x %s depth %d\n", off,
540                                 fdt_get_name(blob, off, NULL), d);
541                         continue;
542                 }
543                 debug("parsing subnode @ %04x %s depth %d\n", off,
544                         fdt_get_name(blob, off, NULL), d);
545
546                 n = fdt_getprop(blob, off, "panel-name", &len);
547                 if (!n) {
548                         n = fdt_get_name(blob, off, NULL);
549                         if (strcasecmp(n, name) == 0) {
550                                 break;
551                         }
552                 } else {
553                         int found = 0;
554
555                         for (endp = n + len; n < endp; n += strlen(n) + 1) {
556                                 debug("Checking panel-name '%s'\n", n);
557                                 if (strcasecmp(n, name) == 0) {
558                                         debug("Using node %s @ %04x\n",
559                                                 fdt_get_name(blob, off, NULL), off);
560                                         found = 1;
561                                         break;
562                                 }
563                         }
564                         if (found)
565                                 break;
566                 }
567         }
568         if (off > 0) {
569                 return fdt_init_fb_mode(blob, off, fb_mode);
570         }
571         return -EINVAL;
572 }
573
574 #define SET_FB_PROP(n, v) ({                                            \
575         int ret;                                                        \
576         ret = fdt_setprop_u32(blob, off, n, v);                         \
577         if (ret) {                                                      \
578                 printf("Failed to set property %s: %s\n", name,         \
579                         fdt_strerror(ret));                             \
580         }                                                               \
581         ret;                                                            \
582 })
583
584
585 int karo_fdt_create_fb_mode(void *blob, const char *name,
586                         struct fb_videomode *fb_mode)
587 {
588         int off = fdt_path_offset(blob, "display");
589         int ret;
590         const char *subnode = "display-timings";
591
592         if (off < 0) {
593                 printf("'display' node not found in FDT\n");
594                 return off;
595         }
596
597         ret = fdt_increase_size(blob, 512);
598         if (ret) {
599                 printf("Failed to increase FDT size: %s\n", fdt_strerror(ret));
600                 return ret;
601         }
602
603         ret = fdt_subnode_offset(blob, off, subnode);
604         if (ret < 0) {
605                 debug("Could not find node '%s' in FDT: %s\n", subnode,
606                         fdt_strerror(ret));
607                 ret = fdt_add_subnode(blob, off, subnode);
608                 if (ret < 0) {
609                         printf("Failed to add %s subnode: %s\n", subnode,
610                                 fdt_strerror(ret));
611                         return ret;
612                 }
613         }
614
615         ret = fdt_add_subnode(blob, ret, name);
616         if (ret < 0) {
617                 printf("Failed to add %s subnode: %s\n", name,
618                         fdt_strerror(ret));
619                 return ret;
620         }
621         off = ret;
622
623         ret = SET_FB_PROP("clock-frequency",
624                         PICOS2KHZ(fb_mode->pixclock) * 1000);
625         if (ret)
626                 goto out;
627         ret = SET_FB_PROP("hactive", fb_mode->xres);
628         if (ret)
629                 goto out;
630         ret = SET_FB_PROP("vactive", fb_mode->yres);
631         if (ret)
632                 goto out;
633         ret = SET_FB_PROP("hback-porch", fb_mode->left_margin);
634         if (ret)
635                 goto out;
636         ret = SET_FB_PROP("hsync-len", fb_mode->hsync_len);
637         if (ret)
638                 goto out;
639         ret = SET_FB_PROP("hfront-porch", fb_mode->right_margin);
640         if (ret)
641                 goto out;
642         ret = SET_FB_PROP("vback-porch", fb_mode->upper_margin);
643         if (ret)
644                 goto out;
645         ret = SET_FB_PROP("vsync-len", fb_mode->vsync_len);
646         if (ret)
647                 goto out;
648         ret = SET_FB_PROP("vfront-porch", fb_mode->lower_margin);
649         if (ret)
650                 goto out;
651         ret = SET_FB_PROP("hsync-active",
652                         fb_mode->sync & FB_SYNC_VERT_HIGH_ACT ? 1 : 0);
653         if (ret)
654                 goto out;
655         ret = SET_FB_PROP("vsync-active",
656                         fb_mode->sync & FB_SYNC_VERT_HIGH_ACT ? 1 : 0);
657         if (ret)
658                 goto out;
659         ret = SET_FB_PROP("de-active",
660                         !(fb_mode->sync & FB_SYNC_OE_LOW_ACT));
661         if (ret)
662                 goto out;
663         ret = SET_FB_PROP("pixelclk-active",
664                         !(fb_mode->sync & FB_SYNC_CLK_LAT_FALL));
665 out:
666         karo_set_fdtsize(blob);
667         return ret;
668 }
669
670 int karo_fdt_update_fb_mode(void *blob, const char *name)
671 {
672         int off = fdt_path_offset(blob, "display");
673         const char *subnode = "display-timings";
674
675         if (off < 0)
676                 return off;
677
678         if (name == NULL) {
679                 int ret;
680
681                 debug("Disabling node '%s' at %03x\n",
682                         fdt_get_name(blob, off, NULL), off);
683                 ret = fdt_set_node_status(blob, off, FDT_STATUS_DISABLED, 0);
684                 return ret;
685         }
686
687         off = fdt_subnode_offset(blob, off, subnode);
688         if (off < 0) {
689                 debug("Could not find node '%s' in FDT: %s\n", subnode,
690                         fdt_strerror(off));
691                 return off;
692         }
693         while (off > 0) {
694                 const char *n, *endp;
695                 int len, d = 1;
696
697                 off = fdt_next_node(blob, off, &d);
698                 if (off < 0)
699                         return off;
700                 if (d < 1)
701                         return -EINVAL;
702                 if (d > 2) {
703                         debug("Skipping node @ %04x %s depth %d\n", off,
704                                 fdt_get_name(blob, off, NULL), d);
705                         continue;
706                 }
707                 debug("parsing subnode @ %04x %s depth %d\n", off,
708                         fdt_get_name(blob, off, NULL), d);
709
710                 n = fdt_getprop(blob, off, "panel-name", &len);
711                 if (!n) {
712                         n = fdt_get_name(blob, off, NULL);
713                         if (strcasecmp(n, name) == 0) {
714                                 break;
715                         }
716                 } else {
717                         int found = 0;
718
719                         for (endp = n + len; n < endp; n += strlen(n) + 1) {
720                                 debug("Checking panel-name '%s'\n", n);
721                                 if (strcasecmp(n, name) == 0) {
722                                         debug("Using node %s @ %04x\n",
723                                                 fdt_get_name(blob, off, NULL), off);
724                                         found = 1;
725                                         break;
726                                 }
727                         }
728                         if (found)
729                                 break;
730                 }
731         }
732         if (off > 0)
733                 return fdt_update_native_fb_mode(blob, off);
734         return off;
735 }
736
737 int karo_fdt_get_lcd_bus_width(const void *blob, int default_width)
738 {
739         int off = fdt_path_offset(blob, "display");
740
741         if (off >= 0) {
742                 const uint32_t *prop;
743
744                 prop = fdt_getprop(blob, off, "fsl,data-width", NULL);
745                 if (prop)
746                         return fdt32_to_cpu(*prop);
747         }
748         return default_width;
749 }
750
751 int karo_fdt_get_lvds_mapping(const void *blob, int default_mapping)
752 {
753         int off = fdt_path_offset(blob, "display");
754
755         if (off >= 0) {
756                 const char *prop;
757
758                 prop = fdt_getprop(blob, off, "fsl,data-mapping", NULL);
759                 if (prop)
760                         return strcmp(prop, "jeida") == 0;
761         }
762         return default_mapping;
763 }
764
765 u8 karo_fdt_get_lvds_channels(const void *blob)
766 {
767         static const char *lvds_chans[] = {
768                 "lvds0",
769                 "lvds1",
770         };
771         u8 lvds_chan_mask = 0;
772         int i;
773
774         for (i = 0; i < ARRAY_SIZE(lvds_chans); i++) {
775                 const char *status;
776                 int off = fdt_path_offset(blob, lvds_chans[i]);
777
778                 if (off < 0)
779                         continue;
780
781                 status = fdt_getprop(blob, off, "status", NULL);
782                 if (status && strcmp(status, "okay") == 0) {
783                         debug("%s is enabled\n", lvds_chans[i]);
784                         lvds_chan_mask |= 1 << i;
785                 }
786         }
787         return lvds_chan_mask;
788 }
789
790 int karo_fdt_get_backlight_polarity(const void *blob)
791 {
792         int off = fdt_path_offset(blob, "/backlight");
793         const struct fdt_property *prop;
794         int len;
795
796         if (off < 0) {
797                 printf("/backlight node not found in DT\n");
798                 return off;
799         }
800
801         prop = fdt_get_property(blob, off, "pwms", &len);
802         if (!prop)
803                 printf("'pwms' property not found\n");
804         else
805                 debug("'pwms' property has len %d\n", len);
806
807         len /= sizeof(u32);
808         if (prop && len > 3) {
809                 const u32 *data = (const u32 *)prop->data;
810                 return fdt32_to_cpu(data[3]) == 0;
811         }
812         return 0;
813 }