blob: 2593d2b42a3f60186c8a85674f8742c65f312183 [file] [log] [blame]
Nicholas Flintham1e3d3112013-04-10 10:48:38 +01001/*
2 * (C) Copyright David Gibson <dwg@au1.ibm.com>, IBM Corporation. 2005.
3 *
4 *
5 * This program is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU General Public License as
7 * published by the Free Software Foundation; either version 2 of the
8 * License, or (at your option) any later version.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
18 * USA
19 */
20
21#include "dtc.h"
22
23void data_free(struct data d)
24{
25 struct marker *m, *nm;
26
27 m = d.markers;
28 while (m) {
29 nm = m->next;
30 free(m->ref);
31 free(m);
32 m = nm;
33 }
34
35 if (d.val)
36 free(d.val);
37}
38
39struct data data_grow_for(struct data d, int xlen)
40{
41 struct data nd;
42 int newsize;
43
44 if (xlen == 0)
45 return d;
46
47 nd = d;
48
49 newsize = xlen;
50
51 while ((d.len + xlen) > newsize)
52 newsize *= 2;
53
54 nd.val = xrealloc(d.val, newsize);
55
56 return nd;
57}
58
59struct data data_copy_mem(const char *mem, int len)
60{
61 struct data d;
62
63 d = data_grow_for(empty_data, len);
64
65 d.len = len;
66 memcpy(d.val, mem, len);
67
68 return d;
69}
70
71static char get_oct_char(const char *s, int *i)
72{
73 char x[4];
74 char *endx;
75 long val;
76
77 x[3] = '\0';
78 strncpy(x, s + *i, 3);
79
80 val = strtol(x, &endx, 8);
81
82 assert(endx > x);
83
84 (*i) += endx - x;
85 return val;
86}
87
88static char get_hex_char(const char *s, int *i)
89{
90 char x[3];
91 char *endx;
92 long val;
93
94 x[2] = '\0';
95 strncpy(x, s + *i, 2);
96
97 val = strtol(x, &endx, 16);
98 if (!(endx > x))
99 die("\\x used with no following hex digits\n");
100
101 (*i) += endx - x;
102 return val;
103}
104
105struct data data_copy_escape_string(const char *s, int len)
106{
107 int i = 0;
108 struct data d;
109 char *q;
110
111 d = data_grow_for(empty_data, strlen(s)+1);
112
113 q = d.val;
114 while (i < len) {
115 char c = s[i++];
116
117 if (c != '\\') {
118 q[d.len++] = c;
119 continue;
120 }
121
122 c = s[i++];
123 assert(c);
124 switch (c) {
125 case 'a':
126 q[d.len++] = '\a';
127 break;
128 case 'b':
129 q[d.len++] = '\b';
130 break;
131 case 't':
132 q[d.len++] = '\t';
133 break;
134 case 'n':
135 q[d.len++] = '\n';
136 break;
137 case 'v':
138 q[d.len++] = '\v';
139 break;
140 case 'f':
141 q[d.len++] = '\f';
142 break;
143 case 'r':
144 q[d.len++] = '\r';
145 break;
146 case '0':
147 case '1':
148 case '2':
149 case '3':
150 case '4':
151 case '5':
152 case '6':
153 case '7':
154 i--;
155 q[d.len++] = get_oct_char(s, &i);
156 break;
157 case 'x':
158 q[d.len++] = get_hex_char(s, &i);
159 break;
160 default:
161 q[d.len++] = c;
162 }
163 }
164
165 q[d.len++] = '\0';
166 return d;
167}
168
169struct data data_copy_file(FILE *f, size_t maxlen)
170{
171 struct data d = empty_data;
172
173 while (!feof(f) && (d.len < maxlen)) {
174 size_t chunksize, ret;
175
176 if (maxlen == -1)
177 chunksize = 4096;
178 else
179 chunksize = maxlen - d.len;
180
181 d = data_grow_for(d, chunksize);
182 ret = fread(d.val + d.len, 1, chunksize, f);
183
184 if (ferror(f))
185 die("Error reading file into data: %s", strerror(errno));
186
187 if (d.len + ret < d.len)
188 die("Overflow reading file into data\n");
189
190 d.len += ret;
191 }
192
193 return d;
194}
195
196struct data data_append_data(struct data d, const void *p, int len)
197{
198 d = data_grow_for(d, len);
199 memcpy(d.val + d.len, p, len);
200 d.len += len;
201 return d;
202}
203
204struct data data_insert_at_marker(struct data d, struct marker *m,
205 const void *p, int len)
206{
207 d = data_grow_for(d, len);
208 memmove(d.val + m->offset + len, d.val + m->offset, d.len - m->offset);
209 memcpy(d.val + m->offset, p, len);
210 d.len += len;
211
212
213 m = m->next;
214 for_each_marker(m)
215 m->offset += len;
216 return d;
217}
218
219static struct data data_append_markers(struct data d, struct marker *m)
220{
221 struct marker **mp = &d.markers;
222
223
224 while (*mp)
225 mp = &((*mp)->next);
226 *mp = m;
227 return d;
228}
229
230struct data data_merge(struct data d1, struct data d2)
231{
232 struct data d;
233 struct marker *m2 = d2.markers;
234
235 d = data_append_markers(data_append_data(d1, d2.val, d2.len), m2);
236
237
238 for_each_marker(m2)
239 m2->offset += d1.len;
240
241 d2.markers = NULL;
242 data_free(d2);
243
244 return d;
245}
246
247struct data data_append_cell(struct data d, cell_t word)
248{
249 cell_t beword = cpu_to_fdt32(word);
250
251 return data_append_data(d, &beword, sizeof(beword));
252}
253
254struct data data_append_re(struct data d, const struct fdt_reserve_entry *re)
255{
256 struct fdt_reserve_entry bere;
257
258 bere.address = cpu_to_fdt64(re->address);
259 bere.size = cpu_to_fdt64(re->size);
260
261 return data_append_data(d, &bere, sizeof(bere));
262}
263
264struct data data_append_addr(struct data d, uint64_t addr)
265{
266 uint64_t beaddr = cpu_to_fdt64(addr);
267
268 return data_append_data(d, &beaddr, sizeof(beaddr));
269}
270
271struct data data_append_byte(struct data d, uint8_t byte)
272{
273 return data_append_data(d, &byte, 1);
274}
275
276struct data data_append_zeroes(struct data d, int len)
277{
278 d = data_grow_for(d, len);
279
280 memset(d.val + d.len, 0, len);
281 d.len += len;
282 return d;
283}
284
285struct data data_append_align(struct data d, int align)
286{
287 int newlen = ALIGN(d.len, align);
288 return data_append_zeroes(d, newlen - d.len);
289}
290
291struct data data_add_marker(struct data d, enum markertype type, char *ref)
292{
293 struct marker *m;
294
295 m = xmalloc(sizeof(*m));
296 m->offset = d.len;
297 m->type = type;
298 m->ref = ref;
299 m->next = NULL;
300
301 return data_append_markers(d, m);
302}
303
304int data_is_one_string(struct data d)
305{
306 int i;
307 int len = d.len;
308
309 if (len == 0)
310 return 0;
311
312 for (i = 0; i < len-1; i++)
313 if (d.val[i] == '\0')
314 return 0;
315
316 if (d.val[len-1] != '\0')
317 return 0;
318
319 return 1;
320}