1 // SPDX-License-Identifier: GPL-2.0-or-later
8 void data_free(struct data d)
10 struct marker *m, *nm;
24 struct data data_grow_for(struct data d, int xlen)
36 while ((d.len + xlen) > newsize)
39 nd.val = xrealloc(d.val, newsize);
44 struct data data_copy_mem(const char *mem, int len)
48 d = data_grow_for(empty_data, len);
51 memcpy(d.val, mem, len);
56 struct data data_copy_escape_string(const char *s, int len)
62 d = data_add_marker(empty_data, TYPE_STRING, NULL);
63 d = data_grow_for(d, len + 1);
70 c = get_escape_char(s, &i);
79 struct data data_copy_file(FILE *f, size_t maxlen)
81 struct data d = empty_data;
83 d = data_add_marker(d, TYPE_NONE, NULL);
84 while (!feof(f) && (d.len < maxlen)) {
85 size_t chunksize, ret;
90 chunksize = maxlen - d.len;
92 d = data_grow_for(d, chunksize);
93 ret = fread(d.val + d.len, 1, chunksize, f);
96 die("Error reading file into data: %s", strerror(errno));
98 if (d.len + ret < d.len)
99 die("Overflow reading file into data\n");
107 struct data data_append_data(struct data d, const void *p, int len)
109 d = data_grow_for(d, len);
110 memcpy(d.val + d.len, p, len);
115 struct data data_insert_at_marker(struct data d, struct marker *m,
116 const void *p, int len)
118 d = data_grow_for(d, len);
119 memmove(d.val + m->offset + len, d.val + m->offset, d.len - m->offset);
120 memcpy(d.val + m->offset, p, len);
123 /* Adjust all markers after the one we're inserting at */
130 static struct data data_append_markers(struct data d, struct marker *m)
132 struct marker **mp = &d.markers;
134 /* Find the end of the markerlist */
141 struct data data_merge(struct data d1, struct data d2)
144 struct marker *m2 = d2.markers;
146 d = data_append_markers(data_append_data(d1, d2.val, d2.len), m2);
148 /* Adjust for the length of d1 */
150 m2->offset += d1.len;
152 d2.markers = NULL; /* So data_free() doesn't clobber them */
158 struct data data_append_integer(struct data d, uint64_t value, int bits)
168 return data_append_data(d, &value_8, 1);
171 value_16 = cpu_to_fdt16(value);
172 return data_append_data(d, &value_16, 2);
175 value_32 = cpu_to_fdt32(value);
176 return data_append_data(d, &value_32, 4);
179 value_64 = cpu_to_fdt64(value);
180 return data_append_data(d, &value_64, 8);
183 die("Invalid literal size (%d)\n", bits);
187 struct data data_append_re(struct data d, uint64_t address, uint64_t size)
189 struct fdt_reserve_entry re;
191 re.address = cpu_to_fdt64(address);
192 re.size = cpu_to_fdt64(size);
194 return data_append_data(d, &re, sizeof(re));
197 struct data data_append_cell(struct data d, cell_t word)
199 return data_append_integer(d, word, sizeof(word) * 8);
202 struct data data_append_addr(struct data d, uint64_t addr)
204 return data_append_integer(d, addr, sizeof(addr) * 8);
207 struct data data_append_byte(struct data d, uint8_t byte)
209 return data_append_data(d, &byte, 1);
212 struct data data_append_zeroes(struct data d, int len)
214 d = data_grow_for(d, len);
216 memset(d.val + d.len, 0, len);
221 struct data data_append_align(struct data d, int align)
223 int newlen = ALIGN(d.len, align);
224 return data_append_zeroes(d, newlen - d.len);
227 struct data data_add_marker(struct data d, enum markertype type, char *ref)
231 m = xmalloc(sizeof(*m));
237 return data_append_markers(d, m);
240 bool data_is_one_string(struct data d)
248 for (i = 0; i < len-1; i++)
249 if (d.val[i] == '\0')
252 if (d.val[len-1] != '\0')