xref: /openbmc/u-boot/scripts/dtc/flattree.c (revision db405d1980e0e3bfdd629399d1dfe457f1f32646)
1c0e032e0STom Rini /*
2c0e032e0STom Rini  * (C) Copyright David Gibson <dwg@au1.ibm.com>, IBM Corporation.  2005.
3c0e032e0STom Rini  *
4c0e032e0STom Rini  *
5c0e032e0STom Rini  * This program is free software; you can redistribute it and/or
6c0e032e0STom Rini  * modify it under the terms of the GNU General Public License as
7c0e032e0STom Rini  * published by the Free Software Foundation; either version 2 of the
8c0e032e0STom Rini  * License, or (at your option) any later version.
9c0e032e0STom Rini  *
10c0e032e0STom Rini  *  This program is distributed in the hope that it will be useful,
11c0e032e0STom Rini  *  but WITHOUT ANY WARRANTY; without even the implied warranty of
12c0e032e0STom Rini  *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
13c0e032e0STom Rini  *  General Public License for more details.
14c0e032e0STom Rini  *
15c0e032e0STom Rini  *  You should have received a copy of the GNU General Public License
16c0e032e0STom Rini  *  along with this program; if not, write to the Free Software
17c0e032e0STom Rini  *  Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307
18c0e032e0STom Rini  *                                                                   USA
19c0e032e0STom Rini  */
20c0e032e0STom Rini 
21c0e032e0STom Rini #include "dtc.h"
22c0e032e0STom Rini #include "srcpos.h"
23c0e032e0STom Rini 
24c0e032e0STom Rini #define FTF_FULLPATH	0x1
25c0e032e0STom Rini #define FTF_VARALIGN	0x2
26c0e032e0STom Rini #define FTF_NAMEPROPS	0x4
27c0e032e0STom Rini #define FTF_BOOTCPUID	0x8
28c0e032e0STom Rini #define FTF_STRTABSIZE	0x10
29c0e032e0STom Rini #define FTF_STRUCTSIZE	0x20
30c0e032e0STom Rini #define FTF_NOPS	0x40
31c0e032e0STom Rini 
32c0e032e0STom Rini static struct version_info {
33c0e032e0STom Rini 	int version;
34c0e032e0STom Rini 	int last_comp_version;
35c0e032e0STom Rini 	int hdr_size;
36c0e032e0STom Rini 	int flags;
37c0e032e0STom Rini } version_table[] = {
38c0e032e0STom Rini 	{1, 1, FDT_V1_SIZE,
39c0e032e0STom Rini 	 FTF_FULLPATH|FTF_VARALIGN|FTF_NAMEPROPS},
40c0e032e0STom Rini 	{2, 1, FDT_V2_SIZE,
41c0e032e0STom Rini 	 FTF_FULLPATH|FTF_VARALIGN|FTF_NAMEPROPS|FTF_BOOTCPUID},
42c0e032e0STom Rini 	{3, 1, FDT_V3_SIZE,
43c0e032e0STom Rini 	 FTF_FULLPATH|FTF_VARALIGN|FTF_NAMEPROPS|FTF_BOOTCPUID|FTF_STRTABSIZE},
44c0e032e0STom Rini 	{16, 16, FDT_V3_SIZE,
45c0e032e0STom Rini 	 FTF_BOOTCPUID|FTF_STRTABSIZE|FTF_NOPS},
46c0e032e0STom Rini 	{17, 16, FDT_V17_SIZE,
47c0e032e0STom Rini 	 FTF_BOOTCPUID|FTF_STRTABSIZE|FTF_STRUCTSIZE|FTF_NOPS},
48c0e032e0STom Rini };
49c0e032e0STom Rini 
50c0e032e0STom Rini struct emitter {
51c0e032e0STom Rini 	void (*cell)(void *, cell_t);
52d6fc90ceSTom Rini 	void (*string)(void *, const char *, int);
53c0e032e0STom Rini 	void (*align)(void *, int);
54c0e032e0STom Rini 	void (*data)(void *, struct data);
55c0e032e0STom Rini 	void (*beginnode)(void *, struct label *labels);
56c0e032e0STom Rini 	void (*endnode)(void *, struct label *labels);
57c0e032e0STom Rini 	void (*property)(void *, struct label *labels);
58c0e032e0STom Rini };
59c0e032e0STom Rini 
bin_emit_cell(void * e,cell_t val)60c0e032e0STom Rini static void bin_emit_cell(void *e, cell_t val)
61c0e032e0STom Rini {
62c0e032e0STom Rini 	struct data *dtbuf = e;
63c0e032e0STom Rini 
64c0e032e0STom Rini 	*dtbuf = data_append_cell(*dtbuf, val);
65c0e032e0STom Rini }
66c0e032e0STom Rini 
bin_emit_string(void * e,const char * str,int len)67d6fc90ceSTom Rini static void bin_emit_string(void *e, const char *str, int len)
68c0e032e0STom Rini {
69c0e032e0STom Rini 	struct data *dtbuf = e;
70c0e032e0STom Rini 
71c0e032e0STom Rini 	if (len == 0)
72c0e032e0STom Rini 		len = strlen(str);
73c0e032e0STom Rini 
74c0e032e0STom Rini 	*dtbuf = data_append_data(*dtbuf, str, len);
75c0e032e0STom Rini 	*dtbuf = data_append_byte(*dtbuf, '\0');
76c0e032e0STom Rini }
77c0e032e0STom Rini 
bin_emit_align(void * e,int a)78c0e032e0STom Rini static void bin_emit_align(void *e, int a)
79c0e032e0STom Rini {
80c0e032e0STom Rini 	struct data *dtbuf = e;
81c0e032e0STom Rini 
82c0e032e0STom Rini 	*dtbuf = data_append_align(*dtbuf, a);
83c0e032e0STom Rini }
84c0e032e0STom Rini 
bin_emit_data(void * e,struct data d)85c0e032e0STom Rini static void bin_emit_data(void *e, struct data d)
86c0e032e0STom Rini {
87c0e032e0STom Rini 	struct data *dtbuf = e;
88c0e032e0STom Rini 
89c0e032e0STom Rini 	*dtbuf = data_append_data(*dtbuf, d.val, d.len);
90c0e032e0STom Rini }
91c0e032e0STom Rini 
bin_emit_beginnode(void * e,struct label * labels)92c0e032e0STom Rini static void bin_emit_beginnode(void *e, struct label *labels)
93c0e032e0STom Rini {
94c0e032e0STom Rini 	bin_emit_cell(e, FDT_BEGIN_NODE);
95c0e032e0STom Rini }
96c0e032e0STom Rini 
bin_emit_endnode(void * e,struct label * labels)97c0e032e0STom Rini static void bin_emit_endnode(void *e, struct label *labels)
98c0e032e0STom Rini {
99c0e032e0STom Rini 	bin_emit_cell(e, FDT_END_NODE);
100c0e032e0STom Rini }
101c0e032e0STom Rini 
bin_emit_property(void * e,struct label * labels)102c0e032e0STom Rini static void bin_emit_property(void *e, struct label *labels)
103c0e032e0STom Rini {
104c0e032e0STom Rini 	bin_emit_cell(e, FDT_PROP);
105c0e032e0STom Rini }
106c0e032e0STom Rini 
107c0e032e0STom Rini static struct emitter bin_emitter = {
108c0e032e0STom Rini 	.cell = bin_emit_cell,
109c0e032e0STom Rini 	.string = bin_emit_string,
110c0e032e0STom Rini 	.align = bin_emit_align,
111c0e032e0STom Rini 	.data = bin_emit_data,
112c0e032e0STom Rini 	.beginnode = bin_emit_beginnode,
113c0e032e0STom Rini 	.endnode = bin_emit_endnode,
114c0e032e0STom Rini 	.property = bin_emit_property,
115c0e032e0STom Rini };
116c0e032e0STom Rini 
emit_label(FILE * f,const char * prefix,const char * label)117c0e032e0STom Rini static void emit_label(FILE *f, const char *prefix, const char *label)
118c0e032e0STom Rini {
119c0e032e0STom Rini 	fprintf(f, "\t.globl\t%s_%s\n", prefix, label);
120c0e032e0STom Rini 	fprintf(f, "%s_%s:\n", prefix, label);
121c0e032e0STom Rini 	fprintf(f, "_%s_%s:\n", prefix, label);
122c0e032e0STom Rini }
123c0e032e0STom Rini 
emit_offset_label(FILE * f,const char * label,int offset)124c0e032e0STom Rini static void emit_offset_label(FILE *f, const char *label, int offset)
125c0e032e0STom Rini {
126c0e032e0STom Rini 	fprintf(f, "\t.globl\t%s\n", label);
127c0e032e0STom Rini 	fprintf(f, "%s\t= . + %d\n", label, offset);
128c0e032e0STom Rini }
129c0e032e0STom Rini 
130c0e032e0STom Rini #define ASM_EMIT_BELONG(f, fmt, ...) \
131c0e032e0STom Rini 	{ \
132c0e032e0STom Rini 		fprintf((f), "\t.byte\t((" fmt ") >> 24) & 0xff\n", __VA_ARGS__); \
133c0e032e0STom Rini 		fprintf((f), "\t.byte\t((" fmt ") >> 16) & 0xff\n", __VA_ARGS__); \
134c0e032e0STom Rini 		fprintf((f), "\t.byte\t((" fmt ") >> 8) & 0xff\n", __VA_ARGS__); \
135c0e032e0STom Rini 		fprintf((f), "\t.byte\t(" fmt ") & 0xff\n", __VA_ARGS__); \
136c0e032e0STom Rini 	}
137c0e032e0STom Rini 
asm_emit_cell(void * e,cell_t val)138c0e032e0STom Rini static void asm_emit_cell(void *e, cell_t val)
139c0e032e0STom Rini {
140c0e032e0STom Rini 	FILE *f = e;
141c0e032e0STom Rini 
142c0e032e0STom Rini 	fprintf(f, "\t.byte 0x%02x; .byte 0x%02x; .byte 0x%02x; .byte 0x%02x\n",
143c0e032e0STom Rini 		(val >> 24) & 0xff, (val >> 16) & 0xff,
144c0e032e0STom Rini 		(val >> 8) & 0xff, val & 0xff);
145c0e032e0STom Rini }
146c0e032e0STom Rini 
asm_emit_string(void * e,const char * str,int len)147d6fc90ceSTom Rini static void asm_emit_string(void *e, const char *str, int len)
148c0e032e0STom Rini {
149c0e032e0STom Rini 	FILE *f = e;
150c0e032e0STom Rini 
151d6fc90ceSTom Rini 	if (len != 0)
152d6fc90ceSTom Rini 		fprintf(f, "\t.string\t\"%.*s\"\n", len, str);
153d6fc90ceSTom Rini 	else
154c0e032e0STom Rini 		fprintf(f, "\t.string\t\"%s\"\n", str);
155c0e032e0STom Rini }
156c0e032e0STom Rini 
asm_emit_align(void * e,int a)157c0e032e0STom Rini static void asm_emit_align(void *e, int a)
158c0e032e0STom Rini {
159c0e032e0STom Rini 	FILE *f = e;
160c0e032e0STom Rini 
161c0e032e0STom Rini 	fprintf(f, "\t.balign\t%d, 0\n", a);
162c0e032e0STom Rini }
163c0e032e0STom Rini 
asm_emit_data(void * e,struct data d)164c0e032e0STom Rini static void asm_emit_data(void *e, struct data d)
165c0e032e0STom Rini {
166c0e032e0STom Rini 	FILE *f = e;
167c0e032e0STom Rini 	int off = 0;
168c0e032e0STom Rini 	struct marker *m = d.markers;
169c0e032e0STom Rini 
170c0e032e0STom Rini 	for_each_marker_of_type(m, LABEL)
171c0e032e0STom Rini 		emit_offset_label(f, m->ref, m->offset);
172c0e032e0STom Rini 
173c0e032e0STom Rini 	while ((d.len - off) >= sizeof(uint32_t)) {
174d6fc90ceSTom Rini 		asm_emit_cell(e, fdt32_to_cpu(*((fdt32_t *)(d.val+off))));
175c0e032e0STom Rini 		off += sizeof(uint32_t);
176c0e032e0STom Rini 	}
177c0e032e0STom Rini 
178c0e032e0STom Rini 	while ((d.len - off) >= 1) {
179c0e032e0STom Rini 		fprintf(f, "\t.byte\t0x%hhx\n", d.val[off]);
180c0e032e0STom Rini 		off += 1;
181c0e032e0STom Rini 	}
182c0e032e0STom Rini 
183c0e032e0STom Rini 	assert(off == d.len);
184c0e032e0STom Rini }
185c0e032e0STom Rini 
asm_emit_beginnode(void * e,struct label * labels)186c0e032e0STom Rini static void asm_emit_beginnode(void *e, struct label *labels)
187c0e032e0STom Rini {
188c0e032e0STom Rini 	FILE *f = e;
189c0e032e0STom Rini 	struct label *l;
190c0e032e0STom Rini 
191c0e032e0STom Rini 	for_each_label(labels, l) {
192c0e032e0STom Rini 		fprintf(f, "\t.globl\t%s\n", l->label);
193c0e032e0STom Rini 		fprintf(f, "%s:\n", l->label);
194c0e032e0STom Rini 	}
195c0e032e0STom Rini 	fprintf(f, "\t/* FDT_BEGIN_NODE */\n");
196c0e032e0STom Rini 	asm_emit_cell(e, FDT_BEGIN_NODE);
197c0e032e0STom Rini }
198c0e032e0STom Rini 
asm_emit_endnode(void * e,struct label * labels)199c0e032e0STom Rini static void asm_emit_endnode(void *e, struct label *labels)
200c0e032e0STom Rini {
201c0e032e0STom Rini 	FILE *f = e;
202c0e032e0STom Rini 	struct label *l;
203c0e032e0STom Rini 
204c0e032e0STom Rini 	fprintf(f, "\t/* FDT_END_NODE */\n");
205c0e032e0STom Rini 	asm_emit_cell(e, FDT_END_NODE);
206c0e032e0STom Rini 	for_each_label(labels, l) {
207c0e032e0STom Rini 		fprintf(f, "\t.globl\t%s_end\n", l->label);
208c0e032e0STom Rini 		fprintf(f, "%s_end:\n", l->label);
209c0e032e0STom Rini 	}
210c0e032e0STom Rini }
211c0e032e0STom Rini 
asm_emit_property(void * e,struct label * labels)212c0e032e0STom Rini static void asm_emit_property(void *e, struct label *labels)
213c0e032e0STom Rini {
214c0e032e0STom Rini 	FILE *f = e;
215c0e032e0STom Rini 	struct label *l;
216c0e032e0STom Rini 
217c0e032e0STom Rini 	for_each_label(labels, l) {
218c0e032e0STom Rini 		fprintf(f, "\t.globl\t%s\n", l->label);
219c0e032e0STom Rini 		fprintf(f, "%s:\n", l->label);
220c0e032e0STom Rini 	}
221c0e032e0STom Rini 	fprintf(f, "\t/* FDT_PROP */\n");
222c0e032e0STom Rini 	asm_emit_cell(e, FDT_PROP);
223c0e032e0STom Rini }
224c0e032e0STom Rini 
225c0e032e0STom Rini static struct emitter asm_emitter = {
226c0e032e0STom Rini 	.cell = asm_emit_cell,
227c0e032e0STom Rini 	.string = asm_emit_string,
228c0e032e0STom Rini 	.align = asm_emit_align,
229c0e032e0STom Rini 	.data = asm_emit_data,
230c0e032e0STom Rini 	.beginnode = asm_emit_beginnode,
231c0e032e0STom Rini 	.endnode = asm_emit_endnode,
232c0e032e0STom Rini 	.property = asm_emit_property,
233c0e032e0STom Rini };
234c0e032e0STom Rini 
stringtable_insert(struct data * d,const char * str)235c0e032e0STom Rini static int stringtable_insert(struct data *d, const char *str)
236c0e032e0STom Rini {
237c0e032e0STom Rini 	int i;
238c0e032e0STom Rini 
239c0e032e0STom Rini 	/* FIXME: do this more efficiently? */
240c0e032e0STom Rini 
241c0e032e0STom Rini 	for (i = 0; i < d->len; i++) {
242c0e032e0STom Rini 		if (streq(str, d->val + i))
243c0e032e0STom Rini 			return i;
244c0e032e0STom Rini 	}
245c0e032e0STom Rini 
246c0e032e0STom Rini 	*d = data_append_data(*d, str, strlen(str)+1);
247c0e032e0STom Rini 	return i;
248c0e032e0STom Rini }
249c0e032e0STom Rini 
flatten_tree(struct node * tree,struct emitter * emit,void * etarget,struct data * strbuf,struct version_info * vi)250c0e032e0STom Rini static void flatten_tree(struct node *tree, struct emitter *emit,
251c0e032e0STom Rini 			 void *etarget, struct data *strbuf,
252c0e032e0STom Rini 			 struct version_info *vi)
253c0e032e0STom Rini {
254c0e032e0STom Rini 	struct property *prop;
255c0e032e0STom Rini 	struct node *child;
256c0e032e0STom Rini 	bool seen_name_prop = false;
257c0e032e0STom Rini 
258c0e032e0STom Rini 	if (tree->deleted)
259c0e032e0STom Rini 		return;
260c0e032e0STom Rini 
261c0e032e0STom Rini 	emit->beginnode(etarget, tree->labels);
262c0e032e0STom Rini 
263c0e032e0STom Rini 	if (vi->flags & FTF_FULLPATH)
264c0e032e0STom Rini 		emit->string(etarget, tree->fullpath, 0);
265c0e032e0STom Rini 	else
266c0e032e0STom Rini 		emit->string(etarget, tree->name, 0);
267c0e032e0STom Rini 
268c0e032e0STom Rini 	emit->align(etarget, sizeof(cell_t));
269c0e032e0STom Rini 
270c0e032e0STom Rini 	for_each_property(tree, prop) {
271c0e032e0STom Rini 		int nameoff;
272c0e032e0STom Rini 
273c0e032e0STom Rini 		if (streq(prop->name, "name"))
274c0e032e0STom Rini 			seen_name_prop = true;
275c0e032e0STom Rini 
276c0e032e0STom Rini 		nameoff = stringtable_insert(strbuf, prop->name);
277c0e032e0STom Rini 
278c0e032e0STom Rini 		emit->property(etarget, prop->labels);
279c0e032e0STom Rini 		emit->cell(etarget, prop->val.len);
280c0e032e0STom Rini 		emit->cell(etarget, nameoff);
281c0e032e0STom Rini 
282c0e032e0STom Rini 		if ((vi->flags & FTF_VARALIGN) && (prop->val.len >= 8))
283c0e032e0STom Rini 			emit->align(etarget, 8);
284c0e032e0STom Rini 
285c0e032e0STom Rini 		emit->data(etarget, prop->val);
286c0e032e0STom Rini 		emit->align(etarget, sizeof(cell_t));
287c0e032e0STom Rini 	}
288c0e032e0STom Rini 
289c0e032e0STom Rini 	if ((vi->flags & FTF_NAMEPROPS) && !seen_name_prop) {
290c0e032e0STom Rini 		emit->property(etarget, NULL);
291c0e032e0STom Rini 		emit->cell(etarget, tree->basenamelen+1);
292c0e032e0STom Rini 		emit->cell(etarget, stringtable_insert(strbuf, "name"));
293c0e032e0STom Rini 
294c0e032e0STom Rini 		if ((vi->flags & FTF_VARALIGN) && ((tree->basenamelen+1) >= 8))
295c0e032e0STom Rini 			emit->align(etarget, 8);
296c0e032e0STom Rini 
297c0e032e0STom Rini 		emit->string(etarget, tree->name, tree->basenamelen);
298c0e032e0STom Rini 		emit->align(etarget, sizeof(cell_t));
299c0e032e0STom Rini 	}
300c0e032e0STom Rini 
301c0e032e0STom Rini 	for_each_child(tree, child) {
302c0e032e0STom Rini 		flatten_tree(child, emit, etarget, strbuf, vi);
303c0e032e0STom Rini 	}
304c0e032e0STom Rini 
305c0e032e0STom Rini 	emit->endnode(etarget, tree->labels);
306c0e032e0STom Rini }
307c0e032e0STom Rini 
flatten_reserve_list(struct reserve_info * reservelist,struct version_info * vi)308c0e032e0STom Rini static struct data flatten_reserve_list(struct reserve_info *reservelist,
309c0e032e0STom Rini 				 struct version_info *vi)
310c0e032e0STom Rini {
311c0e032e0STom Rini 	struct reserve_info *re;
312c0e032e0STom Rini 	struct data d = empty_data;
313c0e032e0STom Rini 	int    j;
314c0e032e0STom Rini 
315c0e032e0STom Rini 	for (re = reservelist; re; re = re->next) {
316d6fc90ceSTom Rini 		d = data_append_re(d, re->address, re->size);
317c0e032e0STom Rini 	}
318c0e032e0STom Rini 	/*
319c0e032e0STom Rini 	 * Add additional reserved slots if the user asked for them.
320c0e032e0STom Rini 	 */
321c0e032e0STom Rini 	for (j = 0; j < reservenum; j++) {
322d6fc90ceSTom Rini 		d = data_append_re(d, 0, 0);
323c0e032e0STom Rini 	}
324c0e032e0STom Rini 
325c0e032e0STom Rini 	return d;
326c0e032e0STom Rini }
327c0e032e0STom Rini 
make_fdt_header(struct fdt_header * fdt,struct version_info * vi,int reservesize,int dtsize,int strsize,int boot_cpuid_phys)328c0e032e0STom Rini static void make_fdt_header(struct fdt_header *fdt,
329c0e032e0STom Rini 			    struct version_info *vi,
330c0e032e0STom Rini 			    int reservesize, int dtsize, int strsize,
331c0e032e0STom Rini 			    int boot_cpuid_phys)
332c0e032e0STom Rini {
333c0e032e0STom Rini 	int reserve_off;
334c0e032e0STom Rini 
335c0e032e0STom Rini 	reservesize += sizeof(struct fdt_reserve_entry);
336c0e032e0STom Rini 
337c0e032e0STom Rini 	memset(fdt, 0xff, sizeof(*fdt));
338c0e032e0STom Rini 
339c0e032e0STom Rini 	fdt->magic = cpu_to_fdt32(FDT_MAGIC);
340c0e032e0STom Rini 	fdt->version = cpu_to_fdt32(vi->version);
341c0e032e0STom Rini 	fdt->last_comp_version = cpu_to_fdt32(vi->last_comp_version);
342c0e032e0STom Rini 
343c0e032e0STom Rini 	/* Reserve map should be doubleword aligned */
344c0e032e0STom Rini 	reserve_off = ALIGN(vi->hdr_size, 8);
345c0e032e0STom Rini 
346c0e032e0STom Rini 	fdt->off_mem_rsvmap = cpu_to_fdt32(reserve_off);
347c0e032e0STom Rini 	fdt->off_dt_struct = cpu_to_fdt32(reserve_off + reservesize);
348c0e032e0STom Rini 	fdt->off_dt_strings = cpu_to_fdt32(reserve_off + reservesize
349c0e032e0STom Rini 					  + dtsize);
350c0e032e0STom Rini 	fdt->totalsize = cpu_to_fdt32(reserve_off + reservesize + dtsize + strsize);
351c0e032e0STom Rini 
352c0e032e0STom Rini 	if (vi->flags & FTF_BOOTCPUID)
353c0e032e0STom Rini 		fdt->boot_cpuid_phys = cpu_to_fdt32(boot_cpuid_phys);
354c0e032e0STom Rini 	if (vi->flags & FTF_STRTABSIZE)
355c0e032e0STom Rini 		fdt->size_dt_strings = cpu_to_fdt32(strsize);
356c0e032e0STom Rini 	if (vi->flags & FTF_STRUCTSIZE)
357c0e032e0STom Rini 		fdt->size_dt_struct = cpu_to_fdt32(dtsize);
358c0e032e0STom Rini }
359c0e032e0STom Rini 
dt_to_blob(FILE * f,struct dt_info * dti,int version)360c0e032e0STom Rini void dt_to_blob(FILE *f, struct dt_info *dti, int version)
361c0e032e0STom Rini {
362c0e032e0STom Rini 	struct version_info *vi = NULL;
363c0e032e0STom Rini 	int i;
364c0e032e0STom Rini 	struct data blob       = empty_data;
365c0e032e0STom Rini 	struct data reservebuf = empty_data;
366c0e032e0STom Rini 	struct data dtbuf      = empty_data;
367c0e032e0STom Rini 	struct data strbuf     = empty_data;
368c0e032e0STom Rini 	struct fdt_header fdt;
369c0e032e0STom Rini 	int padlen = 0;
370c0e032e0STom Rini 
371c0e032e0STom Rini 	for (i = 0; i < ARRAY_SIZE(version_table); i++) {
372c0e032e0STom Rini 		if (version_table[i].version == version)
373c0e032e0STom Rini 			vi = &version_table[i];
374c0e032e0STom Rini 	}
375c0e032e0STom Rini 	if (!vi)
376c0e032e0STom Rini 		die("Unknown device tree blob version %d\n", version);
377c0e032e0STom Rini 
378c0e032e0STom Rini 	flatten_tree(dti->dt, &bin_emitter, &dtbuf, &strbuf, vi);
379c0e032e0STom Rini 	bin_emit_cell(&dtbuf, FDT_END);
380c0e032e0STom Rini 
381c0e032e0STom Rini 	reservebuf = flatten_reserve_list(dti->reservelist, vi);
382c0e032e0STom Rini 
383c0e032e0STom Rini 	/* Make header */
384c0e032e0STom Rini 	make_fdt_header(&fdt, vi, reservebuf.len, dtbuf.len, strbuf.len,
385c0e032e0STom Rini 			dti->boot_cpuid_phys);
386c0e032e0STom Rini 
387c0e032e0STom Rini 	/*
388c0e032e0STom Rini 	 * If the user asked for more space than is used, adjust the totalsize.
389c0e032e0STom Rini 	 */
390c0e032e0STom Rini 	if (minsize > 0) {
391c0e032e0STom Rini 		padlen = minsize - fdt32_to_cpu(fdt.totalsize);
392c0e032e0STom Rini 		if (padlen < 0) {
393c0e032e0STom Rini 			padlen = 0;
394c0e032e0STom Rini 			if (quiet < 1)
395c0e032e0STom Rini 				fprintf(stderr,
396c0e032e0STom Rini 					"Warning: blob size %d >= minimum size %d\n",
397c0e032e0STom Rini 					fdt32_to_cpu(fdt.totalsize), minsize);
398c0e032e0STom Rini 		}
399c0e032e0STom Rini 	}
400c0e032e0STom Rini 
401c0e032e0STom Rini 	if (padsize > 0)
402c0e032e0STom Rini 		padlen = padsize;
403c0e032e0STom Rini 
404c0e032e0STom Rini 	if (alignsize > 0)
405c0e032e0STom Rini 		padlen = ALIGN(fdt32_to_cpu(fdt.totalsize) + padlen, alignsize)
406c0e032e0STom Rini 			- fdt32_to_cpu(fdt.totalsize);
407c0e032e0STom Rini 
408c0e032e0STom Rini 	if (padlen > 0) {
409c0e032e0STom Rini 		int tsize = fdt32_to_cpu(fdt.totalsize);
410c0e032e0STom Rini 		tsize += padlen;
411c0e032e0STom Rini 		fdt.totalsize = cpu_to_fdt32(tsize);
412c0e032e0STom Rini 	}
413c0e032e0STom Rini 
414c0e032e0STom Rini 	/*
415c0e032e0STom Rini 	 * Assemble the blob: start with the header, add with alignment
416c0e032e0STom Rini 	 * the reserve buffer, add the reserve map terminating zeroes,
417c0e032e0STom Rini 	 * the device tree itself, and finally the strings.
418c0e032e0STom Rini 	 */
419c0e032e0STom Rini 	blob = data_append_data(blob, &fdt, vi->hdr_size);
420c0e032e0STom Rini 	blob = data_append_align(blob, 8);
421c0e032e0STom Rini 	blob = data_merge(blob, reservebuf);
422c0e032e0STom Rini 	blob = data_append_zeroes(blob, sizeof(struct fdt_reserve_entry));
423c0e032e0STom Rini 	blob = data_merge(blob, dtbuf);
424c0e032e0STom Rini 	blob = data_merge(blob, strbuf);
425c0e032e0STom Rini 
426c0e032e0STom Rini 	/*
427c0e032e0STom Rini 	 * If the user asked for more space than is used, pad out the blob.
428c0e032e0STom Rini 	 */
429c0e032e0STom Rini 	if (padlen > 0)
430c0e032e0STom Rini 		blob = data_append_zeroes(blob, padlen);
431c0e032e0STom Rini 
432c0e032e0STom Rini 	if (fwrite(blob.val, blob.len, 1, f) != 1) {
433c0e032e0STom Rini 		if (ferror(f))
434c0e032e0STom Rini 			die("Error writing device tree blob: %s\n",
435c0e032e0STom Rini 			    strerror(errno));
436c0e032e0STom Rini 		else
437c0e032e0STom Rini 			die("Short write on device tree blob\n");
438c0e032e0STom Rini 	}
439c0e032e0STom Rini 
440c0e032e0STom Rini 	/*
441c0e032e0STom Rini 	 * data_merge() frees the right-hand element so only the blob
442c0e032e0STom Rini 	 * remains to be freed.
443c0e032e0STom Rini 	 */
444c0e032e0STom Rini 	data_free(blob);
445c0e032e0STom Rini }
446c0e032e0STom Rini 
dump_stringtable_asm(FILE * f,struct data strbuf)447c0e032e0STom Rini static void dump_stringtable_asm(FILE *f, struct data strbuf)
448c0e032e0STom Rini {
449c0e032e0STom Rini 	const char *p;
450c0e032e0STom Rini 	int len;
451c0e032e0STom Rini 
452c0e032e0STom Rini 	p = strbuf.val;
453c0e032e0STom Rini 
454c0e032e0STom Rini 	while (p < (strbuf.val + strbuf.len)) {
455c0e032e0STom Rini 		len = strlen(p);
456c0e032e0STom Rini 		fprintf(f, "\t.string \"%s\"\n", p);
457c0e032e0STom Rini 		p += len+1;
458c0e032e0STom Rini 	}
459c0e032e0STom Rini }
460c0e032e0STom Rini 
dt_to_asm(FILE * f,struct dt_info * dti,int version)461c0e032e0STom Rini void dt_to_asm(FILE *f, struct dt_info *dti, int version)
462c0e032e0STom Rini {
463c0e032e0STom Rini 	struct version_info *vi = NULL;
464c0e032e0STom Rini 	int i;
465c0e032e0STom Rini 	struct data strbuf = empty_data;
466c0e032e0STom Rini 	struct reserve_info *re;
467c0e032e0STom Rini 	const char *symprefix = "dt";
468c0e032e0STom Rini 
469c0e032e0STom Rini 	for (i = 0; i < ARRAY_SIZE(version_table); i++) {
470c0e032e0STom Rini 		if (version_table[i].version == version)
471c0e032e0STom Rini 			vi = &version_table[i];
472c0e032e0STom Rini 	}
473c0e032e0STom Rini 	if (!vi)
474c0e032e0STom Rini 		die("Unknown device tree blob version %d\n", version);
475c0e032e0STom Rini 
476c0e032e0STom Rini 	fprintf(f, "/* autogenerated by dtc, do not edit */\n\n");
477c0e032e0STom Rini 
478c0e032e0STom Rini 	emit_label(f, symprefix, "blob_start");
479c0e032e0STom Rini 	emit_label(f, symprefix, "header");
480c0e032e0STom Rini 	fprintf(f, "\t/* magic */\n");
481c0e032e0STom Rini 	asm_emit_cell(f, FDT_MAGIC);
482c0e032e0STom Rini 	fprintf(f, "\t/* totalsize */\n");
483c0e032e0STom Rini 	ASM_EMIT_BELONG(f, "_%s_blob_abs_end - _%s_blob_start",
484c0e032e0STom Rini 			symprefix, symprefix);
485c0e032e0STom Rini 	fprintf(f, "\t/* off_dt_struct */\n");
486c0e032e0STom Rini 	ASM_EMIT_BELONG(f, "_%s_struct_start - _%s_blob_start",
487c0e032e0STom Rini 		symprefix, symprefix);
488c0e032e0STom Rini 	fprintf(f, "\t/* off_dt_strings */\n");
489c0e032e0STom Rini 	ASM_EMIT_BELONG(f, "_%s_strings_start - _%s_blob_start",
490c0e032e0STom Rini 		symprefix, symprefix);
491c0e032e0STom Rini 	fprintf(f, "\t/* off_mem_rsvmap */\n");
492c0e032e0STom Rini 	ASM_EMIT_BELONG(f, "_%s_reserve_map - _%s_blob_start",
493c0e032e0STom Rini 		symprefix, symprefix);
494c0e032e0STom Rini 	fprintf(f, "\t/* version */\n");
495c0e032e0STom Rini 	asm_emit_cell(f, vi->version);
496c0e032e0STom Rini 	fprintf(f, "\t/* last_comp_version */\n");
497c0e032e0STom Rini 	asm_emit_cell(f, vi->last_comp_version);
498c0e032e0STom Rini 
499c0e032e0STom Rini 	if (vi->flags & FTF_BOOTCPUID) {
500c0e032e0STom Rini 		fprintf(f, "\t/* boot_cpuid_phys */\n");
501c0e032e0STom Rini 		asm_emit_cell(f, dti->boot_cpuid_phys);
502c0e032e0STom Rini 	}
503c0e032e0STom Rini 
504c0e032e0STom Rini 	if (vi->flags & FTF_STRTABSIZE) {
505c0e032e0STom Rini 		fprintf(f, "\t/* size_dt_strings */\n");
506c0e032e0STom Rini 		ASM_EMIT_BELONG(f, "_%s_strings_end - _%s_strings_start",
507c0e032e0STom Rini 				symprefix, symprefix);
508c0e032e0STom Rini 	}
509c0e032e0STom Rini 
510c0e032e0STom Rini 	if (vi->flags & FTF_STRUCTSIZE) {
511c0e032e0STom Rini 		fprintf(f, "\t/* size_dt_struct */\n");
512c0e032e0STom Rini 		ASM_EMIT_BELONG(f, "_%s_struct_end - _%s_struct_start",
513c0e032e0STom Rini 			symprefix, symprefix);
514c0e032e0STom Rini 	}
515c0e032e0STom Rini 
516c0e032e0STom Rini 	/*
517c0e032e0STom Rini 	 * Reserve map entries.
518c0e032e0STom Rini 	 * Align the reserve map to a doubleword boundary.
519c0e032e0STom Rini 	 * Each entry is an (address, size) pair of u64 values.
520c0e032e0STom Rini 	 * Always supply a zero-sized temination entry.
521c0e032e0STom Rini 	 */
522c0e032e0STom Rini 	asm_emit_align(f, 8);
523c0e032e0STom Rini 	emit_label(f, symprefix, "reserve_map");
524c0e032e0STom Rini 
525c0e032e0STom Rini 	fprintf(f, "/* Memory reserve map from source file */\n");
526c0e032e0STom Rini 
527c0e032e0STom Rini 	/*
528c0e032e0STom Rini 	 * Use .long on high and low halfs of u64s to avoid .quad
529c0e032e0STom Rini 	 * as it appears .quad isn't available in some assemblers.
530c0e032e0STom Rini 	 */
531c0e032e0STom Rini 	for (re = dti->reservelist; re; re = re->next) {
532c0e032e0STom Rini 		struct label *l;
533c0e032e0STom Rini 
534c0e032e0STom Rini 		for_each_label(re->labels, l) {
535c0e032e0STom Rini 			fprintf(f, "\t.globl\t%s\n", l->label);
536c0e032e0STom Rini 			fprintf(f, "%s:\n", l->label);
537c0e032e0STom Rini 		}
538d6fc90ceSTom Rini 		ASM_EMIT_BELONG(f, "0x%08x", (unsigned int)(re->address >> 32));
539c0e032e0STom Rini 		ASM_EMIT_BELONG(f, "0x%08x",
540d6fc90ceSTom Rini 				(unsigned int)(re->address & 0xffffffff));
541d6fc90ceSTom Rini 		ASM_EMIT_BELONG(f, "0x%08x", (unsigned int)(re->size >> 32));
542d6fc90ceSTom Rini 		ASM_EMIT_BELONG(f, "0x%08x", (unsigned int)(re->size & 0xffffffff));
543c0e032e0STom Rini 	}
544c0e032e0STom Rini 	for (i = 0; i < reservenum; i++) {
545c0e032e0STom Rini 		fprintf(f, "\t.long\t0, 0\n\t.long\t0, 0\n");
546c0e032e0STom Rini 	}
547c0e032e0STom Rini 
548c0e032e0STom Rini 	fprintf(f, "\t.long\t0, 0\n\t.long\t0, 0\n");
549c0e032e0STom Rini 
550c0e032e0STom Rini 	emit_label(f, symprefix, "struct_start");
551c0e032e0STom Rini 	flatten_tree(dti->dt, &asm_emitter, f, &strbuf, vi);
552c0e032e0STom Rini 
553c0e032e0STom Rini 	fprintf(f, "\t/* FDT_END */\n");
554c0e032e0STom Rini 	asm_emit_cell(f, FDT_END);
555c0e032e0STom Rini 	emit_label(f, symprefix, "struct_end");
556c0e032e0STom Rini 
557c0e032e0STom Rini 	emit_label(f, symprefix, "strings_start");
558c0e032e0STom Rini 	dump_stringtable_asm(f, strbuf);
559c0e032e0STom Rini 	emit_label(f, symprefix, "strings_end");
560c0e032e0STom Rini 
561c0e032e0STom Rini 	emit_label(f, symprefix, "blob_end");
562c0e032e0STom Rini 
563c0e032e0STom Rini 	/*
564c0e032e0STom Rini 	 * If the user asked for more space than is used, pad it out.
565c0e032e0STom Rini 	 */
566c0e032e0STom Rini 	if (minsize > 0) {
567c0e032e0STom Rini 		fprintf(f, "\t.space\t%d - (_%s_blob_end - _%s_blob_start), 0\n",
568c0e032e0STom Rini 			minsize, symprefix, symprefix);
569c0e032e0STom Rini 	}
570c0e032e0STom Rini 	if (padsize > 0) {
571c0e032e0STom Rini 		fprintf(f, "\t.space\t%d, 0\n", padsize);
572c0e032e0STom Rini 	}
573c0e032e0STom Rini 	if (alignsize > 0)
574c0e032e0STom Rini 		asm_emit_align(f, alignsize);
575c0e032e0STom Rini 	emit_label(f, symprefix, "blob_abs_end");
576c0e032e0STom Rini 
577c0e032e0STom Rini 	data_free(strbuf);
578c0e032e0STom Rini }
579c0e032e0STom Rini 
580c0e032e0STom Rini struct inbuf {
581c0e032e0STom Rini 	char *base, *limit, *ptr;
582c0e032e0STom Rini };
583c0e032e0STom Rini 
inbuf_init(struct inbuf * inb,void * base,void * limit)584c0e032e0STom Rini static void inbuf_init(struct inbuf *inb, void *base, void *limit)
585c0e032e0STom Rini {
586c0e032e0STom Rini 	inb->base = base;
587c0e032e0STom Rini 	inb->limit = limit;
588c0e032e0STom Rini 	inb->ptr = inb->base;
589c0e032e0STom Rini }
590c0e032e0STom Rini 
flat_read_chunk(struct inbuf * inb,void * p,int len)591c0e032e0STom Rini static void flat_read_chunk(struct inbuf *inb, void *p, int len)
592c0e032e0STom Rini {
593c0e032e0STom Rini 	if ((inb->ptr + len) > inb->limit)
594c0e032e0STom Rini 		die("Premature end of data parsing flat device tree\n");
595c0e032e0STom Rini 
596c0e032e0STom Rini 	memcpy(p, inb->ptr, len);
597c0e032e0STom Rini 
598c0e032e0STom Rini 	inb->ptr += len;
599c0e032e0STom Rini }
600c0e032e0STom Rini 
flat_read_word(struct inbuf * inb)601c0e032e0STom Rini static uint32_t flat_read_word(struct inbuf *inb)
602c0e032e0STom Rini {
603d6fc90ceSTom Rini 	fdt32_t val;
604c0e032e0STom Rini 
605c0e032e0STom Rini 	assert(((inb->ptr - inb->base) % sizeof(val)) == 0);
606c0e032e0STom Rini 
607c0e032e0STom Rini 	flat_read_chunk(inb, &val, sizeof(val));
608c0e032e0STom Rini 
609c0e032e0STom Rini 	return fdt32_to_cpu(val);
610c0e032e0STom Rini }
611c0e032e0STom Rini 
flat_realign(struct inbuf * inb,int align)612c0e032e0STom Rini static void flat_realign(struct inbuf *inb, int align)
613c0e032e0STom Rini {
614c0e032e0STom Rini 	int off = inb->ptr - inb->base;
615c0e032e0STom Rini 
616c0e032e0STom Rini 	inb->ptr = inb->base + ALIGN(off, align);
617c0e032e0STom Rini 	if (inb->ptr > inb->limit)
618c0e032e0STom Rini 		die("Premature end of data parsing flat device tree\n");
619c0e032e0STom Rini }
620c0e032e0STom Rini 
flat_read_string(struct inbuf * inb)621c0e032e0STom Rini static char *flat_read_string(struct inbuf *inb)
622c0e032e0STom Rini {
623c0e032e0STom Rini 	int len = 0;
624c0e032e0STom Rini 	const char *p = inb->ptr;
625c0e032e0STom Rini 	char *str;
626c0e032e0STom Rini 
627c0e032e0STom Rini 	do {
628c0e032e0STom Rini 		if (p >= inb->limit)
629c0e032e0STom Rini 			die("Premature end of data parsing flat device tree\n");
630c0e032e0STom Rini 		len++;
631c0e032e0STom Rini 	} while ((*p++) != '\0');
632c0e032e0STom Rini 
633c0e032e0STom Rini 	str = xstrdup(inb->ptr);
634c0e032e0STom Rini 
635c0e032e0STom Rini 	inb->ptr += len;
636c0e032e0STom Rini 
637c0e032e0STom Rini 	flat_realign(inb, sizeof(uint32_t));
638c0e032e0STom Rini 
639c0e032e0STom Rini 	return str;
640c0e032e0STom Rini }
641c0e032e0STom Rini 
flat_read_data(struct inbuf * inb,int len)642c0e032e0STom Rini static struct data flat_read_data(struct inbuf *inb, int len)
643c0e032e0STom Rini {
644c0e032e0STom Rini 	struct data d = empty_data;
645c0e032e0STom Rini 
646c0e032e0STom Rini 	if (len == 0)
647c0e032e0STom Rini 		return empty_data;
648c0e032e0STom Rini 
649c0e032e0STom Rini 	d = data_grow_for(d, len);
650c0e032e0STom Rini 	d.len = len;
651c0e032e0STom Rini 
652c0e032e0STom Rini 	flat_read_chunk(inb, d.val, len);
653c0e032e0STom Rini 
654c0e032e0STom Rini 	flat_realign(inb, sizeof(uint32_t));
655c0e032e0STom Rini 
656c0e032e0STom Rini 	return d;
657c0e032e0STom Rini }
658c0e032e0STom Rini 
flat_read_stringtable(struct inbuf * inb,int offset)659c0e032e0STom Rini static char *flat_read_stringtable(struct inbuf *inb, int offset)
660c0e032e0STom Rini {
661c0e032e0STom Rini 	const char *p;
662c0e032e0STom Rini 
663c0e032e0STom Rini 	p = inb->base + offset;
664c0e032e0STom Rini 	while (1) {
665c0e032e0STom Rini 		if (p >= inb->limit || p < inb->base)
666c0e032e0STom Rini 			die("String offset %d overruns string table\n",
667c0e032e0STom Rini 			    offset);
668c0e032e0STom Rini 
669c0e032e0STom Rini 		if (*p == '\0')
670c0e032e0STom Rini 			break;
671c0e032e0STom Rini 
672c0e032e0STom Rini 		p++;
673c0e032e0STom Rini 	}
674c0e032e0STom Rini 
675c0e032e0STom Rini 	return xstrdup(inb->base + offset);
676c0e032e0STom Rini }
677c0e032e0STom Rini 
flat_read_property(struct inbuf * dtbuf,struct inbuf * strbuf,int flags)678c0e032e0STom Rini static struct property *flat_read_property(struct inbuf *dtbuf,
679c0e032e0STom Rini 					   struct inbuf *strbuf, int flags)
680c0e032e0STom Rini {
681c0e032e0STom Rini 	uint32_t proplen, stroff;
682c0e032e0STom Rini 	char *name;
683c0e032e0STom Rini 	struct data val;
684c0e032e0STom Rini 
685c0e032e0STom Rini 	proplen = flat_read_word(dtbuf);
686c0e032e0STom Rini 	stroff = flat_read_word(dtbuf);
687c0e032e0STom Rini 
688c0e032e0STom Rini 	name = flat_read_stringtable(strbuf, stroff);
689c0e032e0STom Rini 
690c0e032e0STom Rini 	if ((flags & FTF_VARALIGN) && (proplen >= 8))
691c0e032e0STom Rini 		flat_realign(dtbuf, 8);
692c0e032e0STom Rini 
693c0e032e0STom Rini 	val = flat_read_data(dtbuf, proplen);
694c0e032e0STom Rini 
695c0e032e0STom Rini 	return build_property(name, val);
696c0e032e0STom Rini }
697c0e032e0STom Rini 
698c0e032e0STom Rini 
flat_read_mem_reserve(struct inbuf * inb)699c0e032e0STom Rini static struct reserve_info *flat_read_mem_reserve(struct inbuf *inb)
700c0e032e0STom Rini {
701c0e032e0STom Rini 	struct reserve_info *reservelist = NULL;
702c0e032e0STom Rini 	struct reserve_info *new;
703c0e032e0STom Rini 	struct fdt_reserve_entry re;
704c0e032e0STom Rini 
705c0e032e0STom Rini 	/*
706c0e032e0STom Rini 	 * Each entry is a pair of u64 (addr, size) values for 4 cell_t's.
707c0e032e0STom Rini 	 * List terminates at an entry with size equal to zero.
708c0e032e0STom Rini 	 *
709c0e032e0STom Rini 	 * First pass, count entries.
710c0e032e0STom Rini 	 */
711c0e032e0STom Rini 	while (1) {
712d6fc90ceSTom Rini 		uint64_t address, size;
713d6fc90ceSTom Rini 
714c0e032e0STom Rini 		flat_read_chunk(inb, &re, sizeof(re));
715d6fc90ceSTom Rini 		address  = fdt64_to_cpu(re.address);
716d6fc90ceSTom Rini 		size = fdt64_to_cpu(re.size);
717d6fc90ceSTom Rini 		if (size == 0)
718c0e032e0STom Rini 			break;
719c0e032e0STom Rini 
720d6fc90ceSTom Rini 		new = build_reserve_entry(address, size);
721c0e032e0STom Rini 		reservelist = add_reserve_entry(reservelist, new);
722c0e032e0STom Rini 	}
723c0e032e0STom Rini 
724c0e032e0STom Rini 	return reservelist;
725c0e032e0STom Rini }
726c0e032e0STom Rini 
727c0e032e0STom Rini 
nodename_from_path(const char * ppath,const char * cpath)728c0e032e0STom Rini static char *nodename_from_path(const char *ppath, const char *cpath)
729c0e032e0STom Rini {
730c0e032e0STom Rini 	int plen;
731c0e032e0STom Rini 
732c0e032e0STom Rini 	plen = strlen(ppath);
733c0e032e0STom Rini 
734*db405d19SRob Herring 	if (!strstarts(cpath, ppath))
735c0e032e0STom Rini 		die("Path \"%s\" is not valid as a child of \"%s\"\n",
736c0e032e0STom Rini 		    cpath, ppath);
737c0e032e0STom Rini 
738c0e032e0STom Rini 	/* root node is a special case */
739c0e032e0STom Rini 	if (!streq(ppath, "/"))
740c0e032e0STom Rini 		plen++;
741c0e032e0STom Rini 
742c0e032e0STom Rini 	return xstrdup(cpath + plen);
743c0e032e0STom Rini }
744c0e032e0STom Rini 
unflatten_tree(struct inbuf * dtbuf,struct inbuf * strbuf,const char * parent_flatname,int flags)745c0e032e0STom Rini static struct node *unflatten_tree(struct inbuf *dtbuf,
746c0e032e0STom Rini 				   struct inbuf *strbuf,
747c0e032e0STom Rini 				   const char *parent_flatname, int flags)
748c0e032e0STom Rini {
749c0e032e0STom Rini 	struct node *node;
750c0e032e0STom Rini 	char *flatname;
751c0e032e0STom Rini 	uint32_t val;
752c0e032e0STom Rini 
753c0e032e0STom Rini 	node = build_node(NULL, NULL);
754c0e032e0STom Rini 
755c0e032e0STom Rini 	flatname = flat_read_string(dtbuf);
756c0e032e0STom Rini 
757c0e032e0STom Rini 	if (flags & FTF_FULLPATH)
758c0e032e0STom Rini 		node->name = nodename_from_path(parent_flatname, flatname);
759c0e032e0STom Rini 	else
760c0e032e0STom Rini 		node->name = flatname;
761c0e032e0STom Rini 
762c0e032e0STom Rini 	do {
763c0e032e0STom Rini 		struct property *prop;
764c0e032e0STom Rini 		struct node *child;
765c0e032e0STom Rini 
766c0e032e0STom Rini 		val = flat_read_word(dtbuf);
767c0e032e0STom Rini 		switch (val) {
768c0e032e0STom Rini 		case FDT_PROP:
769c0e032e0STom Rini 			if (node->children)
770c0e032e0STom Rini 				fprintf(stderr, "Warning: Flat tree input has "
771c0e032e0STom Rini 					"subnodes preceding a property.\n");
772c0e032e0STom Rini 			prop = flat_read_property(dtbuf, strbuf, flags);
773c0e032e0STom Rini 			add_property(node, prop);
774c0e032e0STom Rini 			break;
775c0e032e0STom Rini 
776c0e032e0STom Rini 		case FDT_BEGIN_NODE:
777c0e032e0STom Rini 			child = unflatten_tree(dtbuf,strbuf, flatname, flags);
778c0e032e0STom Rini 			add_child(node, child);
779c0e032e0STom Rini 			break;
780c0e032e0STom Rini 
781c0e032e0STom Rini 		case FDT_END_NODE:
782c0e032e0STom Rini 			break;
783c0e032e0STom Rini 
784c0e032e0STom Rini 		case FDT_END:
785c0e032e0STom Rini 			die("Premature FDT_END in device tree blob\n");
786c0e032e0STom Rini 			break;
787c0e032e0STom Rini 
788c0e032e0STom Rini 		case FDT_NOP:
789c0e032e0STom Rini 			if (!(flags & FTF_NOPS))
790c0e032e0STom Rini 				fprintf(stderr, "Warning: NOP tag found in flat tree"
791c0e032e0STom Rini 					" version <16\n");
792c0e032e0STom Rini 
793c0e032e0STom Rini 			/* Ignore */
794c0e032e0STom Rini 			break;
795c0e032e0STom Rini 
796c0e032e0STom Rini 		default:
797c0e032e0STom Rini 			die("Invalid opcode word %08x in device tree blob\n",
798c0e032e0STom Rini 			    val);
799c0e032e0STom Rini 		}
800c0e032e0STom Rini 	} while (val != FDT_END_NODE);
801c0e032e0STom Rini 
802c0e032e0STom Rini 	if (node->name != flatname) {
803c0e032e0STom Rini 		free(flatname);
804c0e032e0STom Rini 	}
805c0e032e0STom Rini 
806c0e032e0STom Rini 	return node;
807c0e032e0STom Rini }
808c0e032e0STom Rini 
809c0e032e0STom Rini 
dt_from_blob(const char * fname)810c0e032e0STom Rini struct dt_info *dt_from_blob(const char *fname)
811c0e032e0STom Rini {
812c0e032e0STom Rini 	FILE *f;
813d6fc90ceSTom Rini 	fdt32_t magic_buf, totalsize_buf;
814c0e032e0STom Rini 	uint32_t magic, totalsize, version, size_dt, boot_cpuid_phys;
815c0e032e0STom Rini 	uint32_t off_dt, off_str, off_mem_rsvmap;
816c0e032e0STom Rini 	int rc;
817c0e032e0STom Rini 	char *blob;
818c0e032e0STom Rini 	struct fdt_header *fdt;
819c0e032e0STom Rini 	char *p;
820c0e032e0STom Rini 	struct inbuf dtbuf, strbuf;
821c0e032e0STom Rini 	struct inbuf memresvbuf;
822c0e032e0STom Rini 	int sizeleft;
823c0e032e0STom Rini 	struct reserve_info *reservelist;
824c0e032e0STom Rini 	struct node *tree;
825c0e032e0STom Rini 	uint32_t val;
826c0e032e0STom Rini 	int flags = 0;
827c0e032e0STom Rini 
828c0e032e0STom Rini 	f = srcfile_relative_open(fname, NULL);
829c0e032e0STom Rini 
830d6fc90ceSTom Rini 	rc = fread(&magic_buf, sizeof(magic_buf), 1, f);
831c0e032e0STom Rini 	if (ferror(f))
832c0e032e0STom Rini 		die("Error reading DT blob magic number: %s\n",
833c0e032e0STom Rini 		    strerror(errno));
834c0e032e0STom Rini 	if (rc < 1) {
835c0e032e0STom Rini 		if (feof(f))
836c0e032e0STom Rini 			die("EOF reading DT blob magic number\n");
837c0e032e0STom Rini 		else
838c0e032e0STom Rini 			die("Mysterious short read reading magic number\n");
839c0e032e0STom Rini 	}
840c0e032e0STom Rini 
841d6fc90ceSTom Rini 	magic = fdt32_to_cpu(magic_buf);
842c0e032e0STom Rini 	if (magic != FDT_MAGIC)
843c0e032e0STom Rini 		die("Blob has incorrect magic number\n");
844c0e032e0STom Rini 
845d6fc90ceSTom Rini 	rc = fread(&totalsize_buf, sizeof(totalsize_buf), 1, f);
846c0e032e0STom Rini 	if (ferror(f))
847c0e032e0STom Rini 		die("Error reading DT blob size: %s\n", strerror(errno));
848c0e032e0STom Rini 	if (rc < 1) {
849c0e032e0STom Rini 		if (feof(f))
850c0e032e0STom Rini 			die("EOF reading DT blob size\n");
851c0e032e0STom Rini 		else
852c0e032e0STom Rini 			die("Mysterious short read reading blob size\n");
853c0e032e0STom Rini 	}
854c0e032e0STom Rini 
855d6fc90ceSTom Rini 	totalsize = fdt32_to_cpu(totalsize_buf);
856c0e032e0STom Rini 	if (totalsize < FDT_V1_SIZE)
857c0e032e0STom Rini 		die("DT blob size (%d) is too small\n", totalsize);
858c0e032e0STom Rini 
859c0e032e0STom Rini 	blob = xmalloc(totalsize);
860c0e032e0STom Rini 
861c0e032e0STom Rini 	fdt = (struct fdt_header *)blob;
862c0e032e0STom Rini 	fdt->magic = cpu_to_fdt32(magic);
863c0e032e0STom Rini 	fdt->totalsize = cpu_to_fdt32(totalsize);
864c0e032e0STom Rini 
865c0e032e0STom Rini 	sizeleft = totalsize - sizeof(magic) - sizeof(totalsize);
866c0e032e0STom Rini 	p = blob + sizeof(magic)  + sizeof(totalsize);
867c0e032e0STom Rini 
868c0e032e0STom Rini 	while (sizeleft) {
869c0e032e0STom Rini 		if (feof(f))
870c0e032e0STom Rini 			die("EOF before reading %d bytes of DT blob\n",
871c0e032e0STom Rini 			    totalsize);
872c0e032e0STom Rini 
873c0e032e0STom Rini 		rc = fread(p, 1, sizeleft, f);
874c0e032e0STom Rini 		if (ferror(f))
875c0e032e0STom Rini 			die("Error reading DT blob: %s\n",
876c0e032e0STom Rini 			    strerror(errno));
877c0e032e0STom Rini 
878c0e032e0STom Rini 		sizeleft -= rc;
879c0e032e0STom Rini 		p += rc;
880c0e032e0STom Rini 	}
881c0e032e0STom Rini 
882c0e032e0STom Rini 	off_dt = fdt32_to_cpu(fdt->off_dt_struct);
883c0e032e0STom Rini 	off_str = fdt32_to_cpu(fdt->off_dt_strings);
884c0e032e0STom Rini 	off_mem_rsvmap = fdt32_to_cpu(fdt->off_mem_rsvmap);
885c0e032e0STom Rini 	version = fdt32_to_cpu(fdt->version);
886c0e032e0STom Rini 	boot_cpuid_phys = fdt32_to_cpu(fdt->boot_cpuid_phys);
887c0e032e0STom Rini 
888c0e032e0STom Rini 	if (off_mem_rsvmap >= totalsize)
889c0e032e0STom Rini 		die("Mem Reserve structure offset exceeds total size\n");
890c0e032e0STom Rini 
891c0e032e0STom Rini 	if (off_dt >= totalsize)
892c0e032e0STom Rini 		die("DT structure offset exceeds total size\n");
893c0e032e0STom Rini 
894c0e032e0STom Rini 	if (off_str > totalsize)
895c0e032e0STom Rini 		die("String table offset exceeds total size\n");
896c0e032e0STom Rini 
897c0e032e0STom Rini 	if (version >= 3) {
898c0e032e0STom Rini 		uint32_t size_str = fdt32_to_cpu(fdt->size_dt_strings);
899c0e032e0STom Rini 		if ((off_str+size_str < off_str) || (off_str+size_str > totalsize))
900c0e032e0STom Rini 			die("String table extends past total size\n");
901c0e032e0STom Rini 		inbuf_init(&strbuf, blob + off_str, blob + off_str + size_str);
902c0e032e0STom Rini 	} else {
903c0e032e0STom Rini 		inbuf_init(&strbuf, blob + off_str, blob + totalsize);
904c0e032e0STom Rini 	}
905c0e032e0STom Rini 
906c0e032e0STom Rini 	if (version >= 17) {
907c0e032e0STom Rini 		size_dt = fdt32_to_cpu(fdt->size_dt_struct);
908c0e032e0STom Rini 		if ((off_dt+size_dt < off_dt) || (off_dt+size_dt > totalsize))
909c0e032e0STom Rini 			die("Structure block extends past total size\n");
910c0e032e0STom Rini 	}
911c0e032e0STom Rini 
912c0e032e0STom Rini 	if (version < 16) {
913c0e032e0STom Rini 		flags |= FTF_FULLPATH | FTF_NAMEPROPS | FTF_VARALIGN;
914c0e032e0STom Rini 	} else {
915c0e032e0STom Rini 		flags |= FTF_NOPS;
916c0e032e0STom Rini 	}
917c0e032e0STom Rini 
918c0e032e0STom Rini 	inbuf_init(&memresvbuf,
919c0e032e0STom Rini 		   blob + off_mem_rsvmap, blob + totalsize);
920c0e032e0STom Rini 	inbuf_init(&dtbuf, blob + off_dt, blob + totalsize);
921c0e032e0STom Rini 
922c0e032e0STom Rini 	reservelist = flat_read_mem_reserve(&memresvbuf);
923c0e032e0STom Rini 
924c0e032e0STom Rini 	val = flat_read_word(&dtbuf);
925c0e032e0STom Rini 
926c0e032e0STom Rini 	if (val != FDT_BEGIN_NODE)
927c0e032e0STom Rini 		die("Device tree blob doesn't begin with FDT_BEGIN_NODE (begins with 0x%08x)\n", val);
928c0e032e0STom Rini 
929c0e032e0STom Rini 	tree = unflatten_tree(&dtbuf, &strbuf, "", flags);
930c0e032e0STom Rini 
931c0e032e0STom Rini 	val = flat_read_word(&dtbuf);
932c0e032e0STom Rini 	if (val != FDT_END)
933c0e032e0STom Rini 		die("Device tree blob doesn't end with FDT_END\n");
934c0e032e0STom Rini 
935c0e032e0STom Rini 	free(blob);
936c0e032e0STom Rini 
937c0e032e0STom Rini 	fclose(f);
938c0e032e0STom Rini 
939c0e032e0STom Rini 	return build_dt_info(DTSF_V1, reservelist, tree, boot_cpuid_phys);
940c0e032e0STom Rini }
941