/src/libyang/src/parser_lyb.c
Line  | Count  | Source  | 
1  |  | /**  | 
2  |  |  * @file parser_lyb.c  | 
3  |  |  * @author Michal Vasko <mvasko@cesnet.cz>  | 
4  |  |  * @brief LYB data parser for libyang  | 
5  |  |  *  | 
6  |  |  * Copyright (c) 2020 CESNET, z.s.p.o.  | 
7  |  |  *  | 
8  |  |  * This source code is licensed under BSD 3-Clause License (the "License").  | 
9  |  |  * You may not use this file except in compliance with the License.  | 
10  |  |  * You may obtain a copy of the License at  | 
11  |  |  *  | 
12  |  |  *     https://opensource.org/licenses/BSD-3-Clause  | 
13  |  |  */  | 
14  |  |  | 
15  |  | #include "lyb.h"  | 
16  |  |  | 
17  |  | #include <assert.h>  | 
18  |  | #include <stdint.h>  | 
19  |  | #include <stdio.h>  | 
20  |  | #include <stdlib.h>  | 
21  |  | #include <string.h>  | 
22  |  |  | 
23  |  | #include "common.h"  | 
24  |  | #include "compat.h"  | 
25  |  | #include "context.h"  | 
26  |  | #include "dict.h"  | 
27  |  | #include "hash_table.h"  | 
28  |  | #include "in.h"  | 
29  |  | #include "in_internal.h"  | 
30  |  | #include "log.h"  | 
31  |  | #include "parser_data.h"  | 
32  |  | #include "parser_internal.h"  | 
33  |  | #include "set.h"  | 
34  |  | #include "tree.h"  | 
35  |  | #include "tree_data.h"  | 
36  |  | #include "tree_data_internal.h"  | 
37  |  | #include "tree_edit.h"  | 
38  |  | #include "tree_schema.h"  | 
39  |  | #include "validation.h"  | 
40  |  | #include "xml.h"  | 
41  |  |  | 
42  |  | void  | 
43  |  | lylyb_ctx_free(struct lylyb_ctx *ctx)  | 
44  | 0  | { | 
45  | 0  |     LY_ARRAY_COUNT_TYPE u;  | 
46  |  | 
  | 
47  | 0  |     LY_ARRAY_FREE(ctx->subtrees);  | 
48  | 0  |     LY_ARRAY_FREE(ctx->models);  | 
49  |  | 
  | 
50  | 0  |     LY_ARRAY_FOR(ctx->sib_hts, u) { | 
51  | 0  |         lyht_free(ctx->sib_hts[u].ht);  | 
52  | 0  |     }  | 
53  | 0  |     LY_ARRAY_FREE(ctx->sib_hts);  | 
54  |  | 
  | 
55  | 0  |     free(ctx);  | 
56  | 0  | }  | 
57  |  |  | 
58  |  | void  | 
59  |  | lyd_lyb_ctx_free(struct lyd_ctx *lydctx)  | 
60  | 0  | { | 
61  | 0  |     struct lyd_lyb_ctx *ctx = (struct lyd_lyb_ctx *)lydctx;  | 
62  |  | 
  | 
63  | 0  |     lyd_ctx_free(lydctx);  | 
64  | 0  |     lylyb_ctx_free(ctx->lybctx);  | 
65  | 0  |     free(ctx);  | 
66  | 0  | }  | 
67  |  |  | 
68  |  | /**  | 
69  |  |  * @brief Read YANG data from LYB input. Metadata are handled transparently and not returned.  | 
70  |  |  *  | 
71  |  |  * @param[in] buf Destination buffer.  | 
72  |  |  * @param[in] count Number of bytes to read.  | 
73  |  |  * @param[in] lybctx LYB context.  | 
74  |  |  */  | 
75  |  | static void  | 
76  |  | lyb_read(uint8_t *buf, size_t count, struct lylyb_ctx *lybctx)  | 
77  | 0  | { | 
78  | 0  |     LY_ARRAY_COUNT_TYPE u;  | 
79  | 0  |     struct lyd_lyb_subtree *empty;  | 
80  | 0  |     size_t to_read;  | 
81  | 0  |     uint8_t meta_buf[LYB_META_BYTES];  | 
82  |  | 
  | 
83  | 0  |     assert(lybctx);  | 
84  |  | 
  | 
85  | 0  |     while (1) { | 
86  |  |         /* check for fully-read (empty) data chunks */  | 
87  | 0  |         to_read = count;  | 
88  | 0  |         empty = NULL;  | 
89  | 0  |         LY_ARRAY_FOR(lybctx->subtrees, u) { | 
90  |  |             /* we want the innermost chunks resolved first, so replace previous empty chunks,  | 
91  |  |              * also ignore chunks that are completely finished, there is nothing for us to do */  | 
92  | 0  |             if ((lybctx->subtrees[u].written <= to_read) && lybctx->subtrees[u].position) { | 
93  |  |                 /* empty chunk, do not read more */  | 
94  | 0  |                 to_read = lybctx->subtrees[u].written;  | 
95  | 0  |                 empty = &lybctx->subtrees[u];  | 
96  | 0  |             }  | 
97  | 0  |         }  | 
98  |  | 
  | 
99  | 0  |         if (!empty && !count) { | 
100  | 0  |             break;  | 
101  | 0  |         }  | 
102  |  |  | 
103  |  |         /* we are actually reading some data, not just finishing another chunk */  | 
104  | 0  |         if (to_read) { | 
105  | 0  |             if (buf) { | 
106  | 0  |                 ly_in_read(lybctx->in, buf, to_read);  | 
107  | 0  |             } else { | 
108  | 0  |                 ly_in_skip(lybctx->in, to_read);  | 
109  | 0  |             }  | 
110  |  | 
  | 
111  | 0  |             LY_ARRAY_FOR(lybctx->subtrees, u) { | 
112  |  |                 /* decrease all written counters */  | 
113  | 0  |                 lybctx->subtrees[u].written -= to_read;  | 
114  | 0  |                 assert(lybctx->subtrees[u].written <= LYB_SIZE_MAX);  | 
115  | 0  |             }  | 
116  |  |             /* decrease count/buf */  | 
117  | 0  |             count -= to_read;  | 
118  | 0  |             if (buf) { | 
119  | 0  |                 buf += to_read;  | 
120  | 0  |             }  | 
121  | 0  |         }  | 
122  |  | 
  | 
123  | 0  |         if (empty) { | 
124  |  |             /* read the next chunk meta information */  | 
125  | 0  |             ly_in_read(lybctx->in, meta_buf, LYB_META_BYTES);  | 
126  | 0  |             empty->written = meta_buf[0];  | 
127  | 0  |             empty->inner_chunks = meta_buf[1];  | 
128  |  |  | 
129  |  |             /* remember whether there is a following chunk or not */  | 
130  | 0  |             empty->position = (empty->written == LYB_SIZE_MAX ? 1 : 0);  | 
131  | 0  |         }  | 
132  | 0  |     }  | 
133  | 0  | }  | 
134  |  |  | 
135  |  | /**  | 
136  |  |  * @brief Read a number.  | 
137  |  |  *  | 
138  |  |  * @param[in] num Destination buffer.  | 
139  |  |  * @param[in] num_size Size of @p num.  | 
140  |  |  * @param[in] bytes Number of bytes to read.  | 
141  |  |  * @param[in] lybctx LYB context.  | 
142  |  |  */  | 
143  |  | static void  | 
144  |  | lyb_read_number(void *num, size_t num_size, size_t bytes, struct lylyb_ctx *lybctx)  | 
145  | 0  | { | 
146  | 0  |     uint64_t buf = 0;  | 
147  |  | 
  | 
148  | 0  |     lyb_read((uint8_t *)&buf, bytes, lybctx);  | 
149  |  |  | 
150  |  |     /* correct byte order */  | 
151  | 0  |     buf = le64toh(buf);  | 
152  |  | 
  | 
153  | 0  |     switch (num_size) { | 
154  | 0  |     case sizeof(uint8_t):  | 
155  | 0  |         *((uint8_t *)num) = buf;  | 
156  | 0  |         break;  | 
157  | 0  |     case sizeof(uint16_t):  | 
158  | 0  |         *((uint16_t *)num) = buf;  | 
159  | 0  |         break;  | 
160  | 0  |     case sizeof(uint32_t):  | 
161  | 0  |         *((uint32_t *)num) = buf;  | 
162  | 0  |         break;  | 
163  | 0  |     case sizeof(uint64_t):  | 
164  | 0  |         *((uint64_t *)num) = buf;  | 
165  | 0  |         break;  | 
166  | 0  |     default:  | 
167  | 0  |         LOGINT(lybctx->ctx);  | 
168  | 0  |     }  | 
169  | 0  | }  | 
170  |  |  | 
171  |  | /**  | 
172  |  |  * @brief Read a string.  | 
173  |  |  *  | 
174  |  |  * @param[in] str Destination buffer, is allocated.  | 
175  |  |  * @param[in] with_length Whether the string is preceded with its length or it ends at the end of this subtree.  | 
176  |  |  * @param[in] lybctx LYB context.  | 
177  |  |  * @return LY_ERR value.  | 
178  |  |  */  | 
179  |  | static LY_ERR  | 
180  |  | lyb_read_string(char **str, ly_bool with_length, struct lylyb_ctx *lybctx)  | 
181  | 0  | { | 
182  | 0  |     ly_bool next_chunk = 0;  | 
183  | 0  |     size_t len = 0, cur_len;  | 
184  |  | 
  | 
185  | 0  |     *str = NULL;  | 
186  |  | 
  | 
187  | 0  |     if (with_length) { | 
188  | 0  |         lyb_read_number(&len, sizeof len, 2, lybctx);  | 
189  | 0  |     } else { | 
190  |  |         /* read until the end of this subtree */  | 
191  | 0  |         len = LYB_LAST_SUBTREE(lybctx).written;  | 
192  | 0  |         if (LYB_LAST_SUBTREE(lybctx).position) { | 
193  | 0  |             next_chunk = 1;  | 
194  | 0  |         }  | 
195  | 0  |     }  | 
196  |  | 
  | 
197  | 0  |     *str = malloc((len + 1) * sizeof **str);  | 
198  | 0  |     LY_CHECK_ERR_RET(!*str, LOGMEM(lybctx->ctx), LY_EMEM);  | 
199  |  | 
  | 
200  | 0  |     lyb_read((uint8_t *)*str, len, lybctx);  | 
201  |  | 
  | 
202  | 0  |     while (next_chunk) { | 
203  | 0  |         cur_len = LYB_LAST_SUBTREE(lybctx).written;  | 
204  | 0  |         if (LYB_LAST_SUBTREE(lybctx).position) { | 
205  | 0  |             next_chunk = 1;  | 
206  | 0  |         } else { | 
207  | 0  |             next_chunk = 0;  | 
208  | 0  |         }  | 
209  |  | 
  | 
210  | 0  |         *str = ly_realloc(*str, (len + cur_len + 1) * sizeof **str);  | 
211  | 0  |         LY_CHECK_ERR_RET(!*str, LOGMEM(lybctx->ctx), LY_EMEM);  | 
212  |  | 
  | 
213  | 0  |         lyb_read(((uint8_t *)*str) + len, cur_len, lybctx);  | 
214  |  | 
  | 
215  | 0  |         len += cur_len;  | 
216  | 0  |     }  | 
217  |  |  | 
218  | 0  |     ((char *)*str)[len] = '\0';  | 
219  | 0  |     return LY_SUCCESS;  | 
220  | 0  | }  | 
221  |  |  | 
222  |  | /**  | 
223  |  |  * @brief Stop the current subtree - change LYB context state.  | 
224  |  |  *  | 
225  |  |  * @param[in] lybctx LYB context.  | 
226  |  |  * @return LY_ERR value.  | 
227  |  |  */  | 
228  |  | static LY_ERR  | 
229  |  | lyb_read_stop_subtree(struct lylyb_ctx *lybctx)  | 
230  | 0  | { | 
231  | 0  |     if (LYB_LAST_SUBTREE(lybctx).written) { | 
232  | 0  |         LOGINT_RET(lybctx->ctx);  | 
233  | 0  |     }  | 
234  |  |  | 
235  | 0  |     LY_ARRAY_DECREMENT(lybctx->subtrees);  | 
236  | 0  |     return LY_SUCCESS;  | 
237  | 0  | }  | 
238  |  |  | 
239  |  | /**  | 
240  |  |  * @brief Start a new subtree - change LYB context state but also read the expected metadata.  | 
241  |  |  *  | 
242  |  |  * @param[in] lybctx LYB context.  | 
243  |  |  * @return LY_ERR value.  | 
244  |  |  */  | 
245  |  | static LY_ERR  | 
246  |  | lyb_read_start_subtree(struct lylyb_ctx *lybctx)  | 
247  | 0  | { | 
248  | 0  |     uint8_t meta_buf[LYB_META_BYTES];  | 
249  | 0  |     LY_ARRAY_COUNT_TYPE u;  | 
250  |  | 
  | 
251  | 0  |     u = LY_ARRAY_COUNT(lybctx->subtrees);  | 
252  | 0  |     if (u == lybctx->subtree_size) { | 
253  | 0  |         LY_ARRAY_CREATE_RET(lybctx->ctx, lybctx->subtrees, u + LYB_SUBTREE_STEP, LY_EMEM);  | 
254  | 0  |         lybctx->subtree_size = u + LYB_SUBTREE_STEP;  | 
255  | 0  |     }  | 
256  |  |  | 
257  | 0  |     LY_CHECK_RET(ly_in_read(lybctx->in, meta_buf, LYB_META_BYTES));  | 
258  |  | 
  | 
259  | 0  |     LY_ARRAY_INCREMENT(lybctx->subtrees);  | 
260  | 0  |     LYB_LAST_SUBTREE(lybctx).written = meta_buf[0];  | 
261  | 0  |     LYB_LAST_SUBTREE(lybctx).inner_chunks = meta_buf[LYB_SIZE_BYTES];  | 
262  | 0  |     LYB_LAST_SUBTREE(lybctx).position = (LYB_LAST_SUBTREE(lybctx).written == LYB_SIZE_MAX ? 1 : 0);  | 
263  |  | 
  | 
264  | 0  |     return LY_SUCCESS;  | 
265  | 0  | }  | 
266  |  |  | 
267  |  | /**  | 
268  |  |  * @brief Parse YANG model info.  | 
269  |  |  *  | 
270  |  |  * @param[in] lybctx LYB context.  | 
271  |  |  * @param[out] mod Parsed module.  | 
272  |  |  * @return LY_ERR value.  | 
273  |  |  */  | 
274  |  | static LY_ERR  | 
275  |  | lyb_parse_model(struct lylyb_ctx *lybctx, uint32_t parse_options, const struct lys_module **mod)  | 
276  | 0  | { | 
277  | 0  |     LY_ERR ret = LY_SUCCESS;  | 
278  | 0  |     char *mod_name = NULL, mod_rev[LY_REV_SIZE];  | 
279  | 0  |     uint16_t rev;  | 
280  |  |  | 
281  |  |     /* model name */  | 
282  | 0  |     ret = lyb_read_string(&mod_name, 1, lybctx);  | 
283  | 0  |     LY_CHECK_GOTO(ret, cleanup);  | 
284  |  |  | 
285  |  |     /* revision */  | 
286  | 0  |     lyb_read_number(&rev, sizeof rev, 2, lybctx);  | 
287  |  | 
  | 
288  | 0  |     if (!mod_name[0]) { | 
289  |  |         /* opaq node, no module */  | 
290  | 0  |         *mod = NULL;  | 
291  | 0  |         goto cleanup;  | 
292  | 0  |     }  | 
293  |  |  | 
294  | 0  |     if (rev) { | 
295  | 0  |         sprintf(mod_rev, "%04u-%02u-%02u", ((rev & LYB_REV_YEAR_MASK) >> LYB_REV_YEAR_SHIFT) + LYB_REV_YEAR_OFFSET,  | 
296  | 0  |                 (rev & LYB_REV_MONTH_MASK) >> LYB_REV_MONTH_SHIFT, rev & LYB_REV_DAY_MASK);  | 
297  | 0  |         *mod = ly_ctx_get_module(lybctx->ctx, mod_name, mod_rev);  | 
298  | 0  |         if ((parse_options & LYD_PARSE_LYB_MOD_UPDATE) && !(*mod)) { | 
299  |  |             /* try to use an updated module */  | 
300  | 0  |             *mod = ly_ctx_get_module_implemented(lybctx->ctx, mod_name);  | 
301  | 0  |             if (*mod && (!(*mod)->revision || (strcmp((*mod)->revision, mod_rev) < 0))) { | 
302  |  |                 /* not an implemented module in a newer revision */  | 
303  | 0  |                 *mod = NULL;  | 
304  | 0  |             }  | 
305  | 0  |         }  | 
306  | 0  |     } else { | 
307  | 0  |         *mod = ly_ctx_get_module_latest(lybctx->ctx, mod_name);  | 
308  | 0  |     }  | 
309  |  |     /* TODO data_clb supported?  | 
310  |  |     if (lybctx->ctx->data_clb) { | 
311  |  |         if (!*mod) { | 
312  |  |             *mod = lybctx->ctx->data_clb(lybctx->ctx, mod_name, NULL, 0, lybctx->ctx->data_clb_data);  | 
313  |  |         } else if (!(*mod)->implemented) { | 
314  |  |             *mod = lybctx->ctx->data_clb(lybctx->ctx, mod_name, (*mod)->ns, LY_MODCLB_NOT_IMPLEMENTED, lybctx->ctx->data_clb_data);  | 
315  |  |         }  | 
316  |  |     }*/  | 
317  |  | 
  | 
318  | 0  |     if (!*mod || !(*mod)->implemented) { | 
319  | 0  |         if (parse_options & LYD_PARSE_STRICT) { | 
320  | 0  |             if (!*mod) { | 
321  | 0  |                 LOGERR(lybctx->ctx, LY_EINVAL, "Invalid context for LYB data parsing, missing module \"%s%s%s\".",  | 
322  | 0  |                         mod_name, rev ? "@" : "", rev ? mod_rev : "");  | 
323  | 0  |             } else if (!(*mod)->implemented) { | 
324  | 0  |                 LOGERR(lybctx->ctx, LY_EINVAL, "Invalid context for LYB data parsing, module \"%s%s%s\" not implemented.",  | 
325  | 0  |                         mod_name, rev ? "@" : "", rev ? mod_rev : "");  | 
326  | 0  |             }  | 
327  | 0  |             ret = LY_EINVAL;  | 
328  | 0  |             goto cleanup;  | 
329  | 0  |         }  | 
330  |  | 
  | 
331  | 0  |     }  | 
332  |  |  | 
333  | 0  |     if (*mod) { | 
334  |  |         /* fill cached hashes, if not already */  | 
335  | 0  |         lyb_cache_module_hash(*mod);  | 
336  | 0  |     }  | 
337  |  | 
  | 
338  | 0  | cleanup:  | 
339  | 0  |     free(mod_name);  | 
340  | 0  |     return ret;  | 
341  | 0  | }  | 
342  |  |  | 
343  |  | /**  | 
344  |  |  * @brief Parse YANG node metadata.  | 
345  |  |  *  | 
346  |  |  * @param[in] lybctx LYB context.  | 
347  |  |  * @param[out] meta Parsed metadata.  | 
348  |  |  * @return LY_ERR value.  | 
349  |  |  */  | 
350  |  | static LY_ERR  | 
351  |  | lyb_parse_metadata(struct lyd_lyb_ctx *lybctx, struct lyd_meta **meta)  | 
352  | 0  | { | 
353  | 0  |     LY_ERR ret = LY_SUCCESS;  | 
354  | 0  |     ly_bool dynamic;  | 
355  | 0  |     uint8_t i, count = 0;  | 
356  | 0  |     char *meta_name = NULL, *meta_value;  | 
357  | 0  |     const struct lys_module *mod;  | 
358  |  |  | 
359  |  |     /* read number of attributes stored */  | 
360  | 0  |     lyb_read(&count, 1, lybctx->lybctx);  | 
361  |  |  | 
362  |  |     /* read attributes */  | 
363  | 0  |     for (i = 0; i < count; ++i) { | 
364  | 0  |         ret = lyb_read_start_subtree(lybctx->lybctx);  | 
365  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
366  |  |  | 
367  |  |         /* find model */  | 
368  | 0  |         ret = lyb_parse_model(lybctx->lybctx, lybctx->parse_opts, &mod);  | 
369  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
370  |  | 
  | 
371  | 0  |         if (!mod) { | 
372  |  |             /* skip it */  | 
373  | 0  |             do { | 
374  | 0  |                 lyb_read(NULL, LYB_LAST_SUBTREE(lybctx->lybctx).written, lybctx->lybctx);  | 
375  | 0  |             } while (LYB_LAST_SUBTREE(lybctx->lybctx).written);  | 
376  | 0  |             goto stop_subtree;  | 
377  | 0  |         }  | 
378  |  |  | 
379  |  |         /* meta name */  | 
380  | 0  |         ret = lyb_read_string(&meta_name, 1, lybctx->lybctx);  | 
381  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
382  |  |  | 
383  |  |         /* meta value */  | 
384  | 0  |         ret = lyb_read_string(&meta_value, 0, lybctx->lybctx);  | 
385  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
386  | 0  |         dynamic = 1;  | 
387  |  |  | 
388  |  |         /* create metadata */  | 
389  | 0  |         ret = lyd_parser_create_meta((struct lyd_ctx *)lybctx, NULL, meta, mod, meta_name, strlen(meta_name), meta_value,  | 
390  | 0  |                 ly_strlen(meta_value), &dynamic, LY_VALUE_JSON, NULL, LYD_HINT_DATA);  | 
391  |  |  | 
392  |  |         /* free strings */  | 
393  | 0  |         free(meta_name);  | 
394  | 0  |         meta_name = NULL;  | 
395  | 0  |         if (dynamic) { | 
396  | 0  |             free(meta_value);  | 
397  | 0  |             dynamic = 0;  | 
398  | 0  |         }  | 
399  |  | 
  | 
400  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
401  |  | 
  | 
402  | 0  | stop_subtree:  | 
403  | 0  |         ret = lyb_read_stop_subtree(lybctx->lybctx);  | 
404  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
405  | 0  |     }  | 
406  |  |  | 
407  | 0  | cleanup:  | 
408  | 0  |     free(meta_name);  | 
409  | 0  |     if (ret) { | 
410  | 0  |         lyd_free_meta_siblings(*meta);  | 
411  | 0  |         *meta = NULL;  | 
412  | 0  |     }  | 
413  | 0  |     return ret;  | 
414  | 0  | }  | 
415  |  |  | 
416  |  | /**  | 
417  |  |  * @brief Parse format-specific prefix data.  | 
418  |  |  *  | 
419  |  |  * @param[in] lybctx LYB context.  | 
420  |  |  * @param[in] format Prefix data format.  | 
421  |  |  * @param[out] prefix_data Parsed prefix data.  | 
422  |  |  * @return LY_ERR value.  | 
423  |  |  */  | 
424  |  | static LY_ERR  | 
425  |  | lyb_parse_prefix_data(struct lylyb_ctx *lybctx, LY_VALUE_FORMAT format, void **prefix_data)  | 
426  | 0  | { | 
427  | 0  |     LY_ERR ret = LY_SUCCESS;  | 
428  | 0  |     uint8_t count, i;  | 
429  | 0  |     struct ly_set *set = NULL;  | 
430  | 0  |     struct lyxml_ns *ns = NULL;  | 
431  |  | 
  | 
432  | 0  |     switch (format) { | 
433  | 0  |     case LY_VALUE_XML:  | 
434  |  |         /* read count */  | 
435  | 0  |         lyb_read(&count, 1, lybctx);  | 
436  | 0  |         if (!count) { | 
437  | 0  |             return LY_SUCCESS;  | 
438  | 0  |         }  | 
439  |  |  | 
440  |  |         /* read all NS elements */  | 
441  | 0  |         LY_CHECK_GOTO(ret = ly_set_new(&set), cleanup);  | 
442  |  | 
  | 
443  | 0  |         for (i = 0; i < count; ++i) { | 
444  | 0  |             ns = calloc(1, sizeof *ns);  | 
445  |  |  | 
446  |  |             /* prefix */  | 
447  | 0  |             LY_CHECK_GOTO(ret = lyb_read_string(&ns->prefix, 1, lybctx), cleanup);  | 
448  |  |  | 
449  |  |             /* namespace */  | 
450  | 0  |             LY_CHECK_GOTO(ret = lyb_read_string(&ns->uri, 1, lybctx), cleanup);  | 
451  |  | 
  | 
452  | 0  |             LY_CHECK_GOTO(ret = ly_set_add(set, ns, 1, NULL), cleanup);  | 
453  | 0  |             ns = NULL;  | 
454  | 0  |         }  | 
455  |  |  | 
456  | 0  |         *prefix_data = set;  | 
457  | 0  |         break;  | 
458  | 0  |     case LY_VALUE_JSON:  | 
459  | 0  |     case LY_VALUE_LYB:  | 
460  |  |         /* nothing stored */  | 
461  | 0  |         break;  | 
462  | 0  |     default:  | 
463  | 0  |         LOGINT(lybctx->ctx);  | 
464  | 0  |         ret = LY_EINT;  | 
465  | 0  |         break;  | 
466  | 0  |     }  | 
467  |  |  | 
468  | 0  | cleanup:  | 
469  | 0  |     if (ret) { | 
470  | 0  |         ly_free_prefix_data(format, set);  | 
471  | 0  |         if (ns) { | 
472  | 0  |             free(ns->prefix);  | 
473  | 0  |             free(ns->uri);  | 
474  | 0  |             free(ns);  | 
475  | 0  |         }  | 
476  | 0  |     }  | 
477  | 0  |     return ret;  | 
478  | 0  | }  | 
479  |  |  | 
480  |  | /**  | 
481  |  |  * @brief Parse opaque attributes.  | 
482  |  |  *  | 
483  |  |  * @param[in] lybctx LYB context.  | 
484  |  |  * @param[out] attr Parsed attributes.  | 
485  |  |  * @return LY_ERR value.  | 
486  |  |  */  | 
487  |  | static LY_ERR  | 
488  |  | lyb_parse_attributes(struct lylyb_ctx *lybctx, struct lyd_attr **attr)  | 
489  | 0  | { | 
490  | 0  |     LY_ERR ret = LY_SUCCESS;  | 
491  | 0  |     uint8_t count, i;  | 
492  | 0  |     struct lyd_attr *attr2;  | 
493  | 0  |     char *prefix = NULL, *module_name = NULL, *name = NULL, *value = NULL;  | 
494  | 0  |     ly_bool dynamic = 0;  | 
495  | 0  |     LY_VALUE_FORMAT format = 0;  | 
496  | 0  |     void *val_prefix_data = NULL;  | 
497  |  |  | 
498  |  |     /* read count */  | 
499  | 0  |     lyb_read(&count, 1, lybctx);  | 
500  |  |  | 
501  |  |     /* read attributes */  | 
502  | 0  |     for (i = 0; i < count; ++i) { | 
503  | 0  |         ret = lyb_read_start_subtree(lybctx);  | 
504  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
505  |  |  | 
506  |  |         /* prefix, may be empty */  | 
507  | 0  |         ret = lyb_read_string(&prefix, 1, lybctx);  | 
508  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
509  | 0  |         if (!prefix[0]) { | 
510  | 0  |             free(prefix);  | 
511  | 0  |             prefix = NULL;  | 
512  | 0  |         }  | 
513  |  |  | 
514  |  |         /* namespace, may be empty */  | 
515  | 0  |         ret = lyb_read_string(&module_name, 1, lybctx);  | 
516  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
517  | 0  |         if (!module_name[0]) { | 
518  | 0  |             free(module_name);  | 
519  | 0  |             module_name = NULL;  | 
520  | 0  |         }  | 
521  |  |  | 
522  |  |         /* name */  | 
523  | 0  |         ret = lyb_read_string(&name, 1, lybctx);  | 
524  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
525  |  |  | 
526  |  |         /* format */  | 
527  | 0  |         lyb_read((uint8_t *)&format, 1, lybctx);  | 
528  |  |  | 
529  |  |         /* value prefixes */  | 
530  | 0  |         ret = lyb_parse_prefix_data(lybctx, format, &val_prefix_data);  | 
531  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
532  |  |  | 
533  |  |         /* value */  | 
534  | 0  |         ret = lyb_read_string(&value, 0, lybctx);  | 
535  | 0  |         LY_CHECK_ERR_GOTO(ret, ly_free_prefix_data(format, val_prefix_data), cleanup);  | 
536  | 0  |         dynamic = 1;  | 
537  |  |  | 
538  |  |         /* attr2 is always changed to the created attribute */  | 
539  | 0  |         ret = lyd_create_attr(NULL, &attr2, lybctx->ctx, name, strlen(name), prefix, ly_strlen(prefix), module_name,  | 
540  | 0  |                 ly_strlen(module_name), value, ly_strlen(value), &dynamic, format, val_prefix_data, 0);  | 
541  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
542  |  | 
  | 
543  | 0  |         free(prefix);  | 
544  | 0  |         prefix = NULL;  | 
545  | 0  |         free(module_name);  | 
546  | 0  |         module_name = NULL;  | 
547  | 0  |         free(name);  | 
548  | 0  |         name = NULL;  | 
549  | 0  |         assert(!dynamic);  | 
550  | 0  |         value = NULL;  | 
551  |  | 
  | 
552  | 0  |         if (!*attr) { | 
553  | 0  |             *attr = attr2;  | 
554  | 0  |         }  | 
555  |  | 
  | 
556  | 0  |         ret = lyb_read_stop_subtree(lybctx);  | 
557  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
558  | 0  |     }  | 
559  |  |  | 
560  | 0  | cleanup:  | 
561  | 0  |     free(prefix);  | 
562  | 0  |     free(module_name);  | 
563  | 0  |     free(name);  | 
564  | 0  |     if (dynamic) { | 
565  | 0  |         free(value);  | 
566  | 0  |     }  | 
567  | 0  |     if (ret) { | 
568  | 0  |         lyd_free_attr_siblings(lybctx->ctx, *attr);  | 
569  | 0  |         *attr = NULL;  | 
570  | 0  |     }  | 
571  | 0  |     return ret;  | 
572  | 0  | }  | 
573  |  |  | 
574  |  | /**  | 
575  |  |  * @brief Check whether a schema node matches a hash(es).  | 
576  |  |  *  | 
577  |  |  * @param[in] sibling Schema node to check.  | 
578  |  |  * @param[in] hash Hash array to check.  | 
579  |  |  * @param[in] hash_count Number of hashes in @p hash.  | 
580  |  |  * @return non-zero if matches,  | 
581  |  |  * @return 0 if not.  | 
582  |  |  */  | 
583  |  | static int  | 
584  |  | lyb_is_schema_hash_match(struct lysc_node *sibling, LYB_HASH *hash, uint8_t hash_count)  | 
585  | 0  | { | 
586  | 0  |     LYB_HASH sibling_hash;  | 
587  | 0  |     uint8_t i;  | 
588  |  |  | 
589  |  |     /* compare all the hashes starting from collision ID 0 */  | 
590  | 0  |     for (i = 0; i < hash_count; ++i) { | 
591  | 0  |         sibling_hash = lyb_get_hash(sibling, i);  | 
592  | 0  |         if (sibling_hash != hash[i]) { | 
593  | 0  |             return 0;  | 
594  | 0  |         }  | 
595  | 0  |     }  | 
596  |  |  | 
597  | 0  |     return 1;  | 
598  | 0  | }  | 
599  |  |  | 
600  |  | /**  | 
601  |  |  * @brief Parse schema node hash.  | 
602  |  |  *  | 
603  |  |  * @param[in] lybctx LYB context.  | 
604  |  |  * @param[in] sparent Schema parent, must be set if @p mod is not.  | 
605  |  |  * @param[in] mod Module of the top-level node, must be set if @p sparent is not.  | 
606  |  |  * @param[out] snode Parsed found schema node, may be NULL if opaque.  | 
607  |  |  * @return LY_ERR value.  | 
608  |  |  */  | 
609  |  | static LY_ERR  | 
610  |  | lyb_parse_schema_hash(struct lyd_lyb_ctx *lybctx, const struct lysc_node *sparent, const struct lys_module *mod,  | 
611  |  |         const struct lysc_node **snode)  | 
612  | 0  | { | 
613  | 0  |     LY_ERR ret;  | 
614  | 0  |     uint8_t i, j;  | 
615  | 0  |     const struct lysc_node *sibling;  | 
616  | 0  |     LYB_HASH hash[LYB_HASH_BITS - 1];  | 
617  | 0  |     uint32_t getnext_opts;  | 
618  |  | 
  | 
619  | 0  |     *snode = NULL;  | 
620  | 0  |     getnext_opts = lybctx->int_opts & LYD_INTOPT_REPLY ? LYS_GETNEXT_OUTPUT : 0;  | 
621  |  |  | 
622  |  |     /* read the first hash */  | 
623  | 0  |     lyb_read(&hash[0], sizeof *hash, lybctx->lybctx);  | 
624  |  | 
  | 
625  | 0  |     if (!hash[0]) { | 
626  |  |         /* opaque node */  | 
627  | 0  |         return LY_SUCCESS;  | 
628  | 0  |     }  | 
629  |  |  | 
630  |  |     /* based on the first hash read all the other ones, if any */  | 
631  | 0  |     for (i = 0; !(hash[0] & (LYB_HASH_COLLISION_ID >> i)); ++i) { | 
632  | 0  |         if (i > LYB_HASH_BITS) { | 
633  | 0  |             LOGINT_RET(lybctx->lybctx->ctx);  | 
634  | 0  |         }  | 
635  | 0  |     }  | 
636  |  |  | 
637  |  |     /* move the first hash on its accurate position */  | 
638  | 0  |     hash[i] = hash[0];  | 
639  |  |  | 
640  |  |     /* read the rest of hashes */  | 
641  | 0  |     for (j = i; j; --j) { | 
642  | 0  |         lyb_read(&hash[j - 1], sizeof *hash, lybctx->lybctx);  | 
643  |  |  | 
644  |  |         /* correct collision ID */  | 
645  | 0  |         assert(hash[j - 1] & (LYB_HASH_COLLISION_ID >> (j - 1)));  | 
646  |  |         /* preceded with zeros */  | 
647  | 0  |         assert(!(hash[j - 1] & (LYB_HASH_MASK << (LYB_HASH_BITS - (j - 1)))));  | 
648  | 0  |     }  | 
649  |  |  | 
650  |  |     /* find our node with matching hashes */  | 
651  | 0  |     sibling = NULL;  | 
652  | 0  |     while (1) { | 
653  | 0  |         if (!sparent && lybctx->ext) { | 
654  | 0  |             sibling = lys_getnext_ext(sibling, sparent, lybctx->ext, getnext_opts);  | 
655  | 0  |         } else { | 
656  | 0  |             sibling = lys_getnext(sibling, sparent, mod ? mod->compiled : NULL, getnext_opts);  | 
657  | 0  |         }  | 
658  | 0  |         if (!sibling) { | 
659  | 0  |             break;  | 
660  | 0  |         }  | 
661  |  |         /* skip schema nodes from models not present during printing */  | 
662  | 0  |         if (lyb_has_schema_model(sibling, lybctx->lybctx->models) &&  | 
663  | 0  |                 lyb_is_schema_hash_match((struct lysc_node *)sibling, hash, i + 1)) { | 
664  |  |             /* match found */  | 
665  | 0  |             break;  | 
666  | 0  |         }  | 
667  | 0  |     }  | 
668  |  | 
  | 
669  | 0  |     if (!sibling && (lybctx->parse_opts & LYD_PARSE_STRICT)) { | 
670  | 0  |         if (lybctx->ext) { | 
671  | 0  |             LOGVAL(lybctx->lybctx->ctx, LYVE_REFERENCE, "Failed to find matching hash for a node from \"%s\" extension instance node.",  | 
672  | 0  |                     lybctx->ext->def->name);  | 
673  | 0  |         } else if (mod) { | 
674  | 0  |             LOGVAL(lybctx->lybctx->ctx, LYVE_REFERENCE, "Failed to find matching hash for a top-level node"  | 
675  | 0  |                     " from \"%s\".", mod->name);  | 
676  | 0  |         } else { | 
677  | 0  |             LOGVAL(lybctx->lybctx->ctx, LYVE_REFERENCE, "Failed to find matching hash for a child node"  | 
678  | 0  |                     " of \"%s\".", sparent->name);  | 
679  | 0  |         }  | 
680  | 0  |         return LY_EVALID;  | 
681  | 0  |     } else if (sibling && (ret = lyd_parser_check_schema((struct lyd_ctx *)lybctx, sibling))) { | 
682  | 0  |         return ret;  | 
683  | 0  |     }  | 
684  |  |  | 
685  | 0  |     *snode = sibling;  | 
686  | 0  |     return LY_SUCCESS;  | 
687  | 0  | }  | 
688  |  |  | 
689  |  | /**  | 
690  |  |  * @brief Read until the end of the current subtree.  | 
691  |  |  *  | 
692  |  |  * @param[in] lybctx LYB context.  | 
693  |  |  */  | 
694  |  | static void  | 
695  |  | lyb_skip_subtree(struct lylyb_ctx *lybctx)  | 
696  | 0  | { | 
697  | 0  |     do { | 
698  |  |         /* first skip any meta information inside */  | 
699  | 0  |         ly_in_skip(lybctx->in, LYB_LAST_SUBTREE(lybctx).inner_chunks * LYB_META_BYTES);  | 
700  |  |  | 
701  |  |         /* then read data */  | 
702  | 0  |         lyb_read(NULL, LYB_LAST_SUBTREE(lybctx).written, lybctx);  | 
703  | 0  |     } while (LYB_LAST_SUBTREE(lybctx).written);  | 
704  | 0  | }  | 
705  |  |  | 
706  |  | /**  | 
707  |  |  * @brief Parse LYB subtree.  | 
708  |  |  *  | 
709  |  |  * @param[in] lybctx LYB context.  | 
710  |  |  * @param[in] parent Data parent of the subtree, must be set if @p first is not.  | 
711  |  |  * @param[in,out] first First top-level sibling, must be set if @p parent is not.  | 
712  |  |  * @return LY_ERR value.  | 
713  |  |  */  | 
714  |  | static LY_ERR  | 
715  |  | lyb_parse_subtree_r(struct lyd_lyb_ctx *lybctx, struct lyd_node *parent, struct lyd_node **first_p, struct ly_set *parsed)  | 
716  | 0  | { | 
717  | 0  |     LY_ERR ret = LY_SUCCESS;  | 
718  | 0  |     struct lyd_node *node = NULL, *tree;  | 
719  | 0  |     const struct lys_module *mod;  | 
720  | 0  |     const struct lysc_node *snode = NULL;  | 
721  | 0  |     struct lyd_meta *meta = NULL, *m;  | 
722  | 0  |     struct lyd_attr *attr = NULL, *a;  | 
723  | 0  |     LYD_ANYDATA_VALUETYPE value_type;  | 
724  | 0  |     char *value = NULL, *name = NULL, *prefix = NULL, *module_key = NULL;  | 
725  | 0  |     const char *val_dict;  | 
726  | 0  |     ly_bool dynamic = 0;  | 
727  | 0  |     LY_VALUE_FORMAT format = 0;  | 
728  | 0  |     void *val_prefix_data = NULL;  | 
729  | 0  |     uint32_t prev_lo, flags;  | 
730  | 0  |     const struct ly_ctx *ctx = lybctx->lybctx->ctx;  | 
731  |  |  | 
732  |  |     /* register a new subtree */  | 
733  | 0  |     LY_CHECK_GOTO(ret = lyb_read_start_subtree(lybctx->lybctx), cleanup);  | 
734  |  | 
  | 
735  | 0  |     if (!parent) { | 
736  |  |         /* top-level, read module name */  | 
737  | 0  |         ret = lyb_parse_model(lybctx->lybctx, lybctx->parse_opts, &mod);  | 
738  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
739  |  |  | 
740  |  |         /* read hash, find the schema node starting from mod */  | 
741  | 0  |         ret = lyb_parse_schema_hash(lybctx, NULL, mod, &snode);  | 
742  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
743  | 0  |     } else { | 
744  |  |         /* read hash, find the schema node starting from parent schema */  | 
745  | 0  |         ret = lyb_parse_schema_hash(lybctx, parent->schema, NULL, &snode);  | 
746  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
747  | 0  |     }  | 
748  |  |  | 
749  | 0  |     if (!snode && !(lybctx->parse_opts & LYD_PARSE_OPAQ)) { | 
750  |  |         /* unknown data, skip them */  | 
751  | 0  |         lyb_skip_subtree(lybctx->lybctx);  | 
752  | 0  |         goto stop_subtree;  | 
753  | 0  |     }  | 
754  |  |  | 
755  |  |     /* create metadata/attributes */  | 
756  | 0  |     if (snode) { | 
757  | 0  |         ret = lyb_parse_metadata(lybctx, &meta);  | 
758  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
759  | 0  |     } else { | 
760  | 0  |         ret = lyb_parse_attributes(lybctx->lybctx, &attr);  | 
761  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
762  | 0  |     }  | 
763  |  |  | 
764  |  |     /* read flags */  | 
765  | 0  |     lyb_read_number(&flags, sizeof flags, sizeof flags, lybctx->lybctx);  | 
766  |  | 
  | 
767  | 0  |     if (!snode) { | 
768  |  |         /* parse prefix */  | 
769  | 0  |         ret = lyb_read_string(&prefix, 1, lybctx->lybctx);  | 
770  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
771  |  |  | 
772  |  |         /* parse module key */  | 
773  | 0  |         ret = lyb_read_string(&module_key, 1, lybctx->lybctx);  | 
774  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
775  |  |  | 
776  |  |         /* parse name */  | 
777  | 0  |         ret = lyb_read_string(&name, 1, lybctx->lybctx);  | 
778  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
779  |  |  | 
780  |  |         /* parse format */  | 
781  | 0  |         lyb_read((uint8_t *)&format, 1, lybctx->lybctx);  | 
782  |  |  | 
783  |  |         /* parse value prefixes */  | 
784  | 0  |         ret = lyb_parse_prefix_data(lybctx->lybctx, format, &val_prefix_data);  | 
785  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
786  |  |  | 
787  |  |         /* parse value */  | 
788  | 0  |         ret = lyb_read_string(&value, 0, lybctx->lybctx);  | 
789  | 0  |         LY_CHECK_ERR_GOTO(ret, ly_free_prefix_data(format, val_prefix_data), cleanup);  | 
790  | 0  |         dynamic = 1;  | 
791  |  |  | 
792  |  |         /* create node */  | 
793  | 0  |         ret = lyd_create_opaq(ctx, name, strlen(name), prefix, ly_strlen(prefix), module_key, ly_strlen(module_key),  | 
794  | 0  |                 value, strlen(value), &dynamic, format, val_prefix_data, 0, &node);  | 
795  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
796  |  |  | 
797  |  |         /* process children */  | 
798  | 0  |         while (LYB_LAST_SUBTREE(lybctx->lybctx).written) { | 
799  | 0  |             ret = lyb_parse_subtree_r(lybctx, node, NULL, NULL);  | 
800  | 0  |             LY_CHECK_GOTO(ret, cleanup);  | 
801  | 0  |         }  | 
802  | 0  |     } else if (snode->nodetype & LYD_NODE_TERM) { | 
803  |  |         /* parse value */  | 
804  | 0  |         ret = lyb_read_string(&value, 0, lybctx->lybctx);  | 
805  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
806  | 0  |         dynamic = 1;  | 
807  |  |  | 
808  |  |         /* create node */  | 
809  | 0  |         ret = lyd_parser_create_term((struct lyd_ctx *)lybctx, snode, value, ly_strlen(value), &dynamic, LY_VALUE_JSON,  | 
810  | 0  |                 NULL, LYD_HINT_DATA, &node);  | 
811  | 0  |         if (dynamic) { | 
812  | 0  |             free(value);  | 
813  | 0  |             dynamic = 0;  | 
814  | 0  |         }  | 
815  | 0  |         value = NULL;  | 
816  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
817  | 0  |     } else if (snode->nodetype & LYD_NODE_INNER) { | 
818  |  |         /* create node */  | 
819  | 0  |         ret = lyd_create_inner(snode, &node);  | 
820  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
821  |  |  | 
822  |  |         /* process children */  | 
823  | 0  |         while (LYB_LAST_SUBTREE(lybctx->lybctx).written) { | 
824  | 0  |             ret = lyb_parse_subtree_r(lybctx, node, NULL, NULL);  | 
825  | 0  |             LY_CHECK_GOTO(ret, cleanup);  | 
826  | 0  |         }  | 
827  |  |  | 
828  | 0  |         if (!(lybctx->parse_opts & LYD_PARSE_ONLY)) { | 
829  |  |             /* new node validation, autodelete CANNOT occur, all nodes are new */  | 
830  | 0  |             ret = lyd_validate_new(lyd_node_child_p(node), snode, NULL, NULL);  | 
831  | 0  |             LY_CHECK_GOTO(ret, cleanup);  | 
832  |  |  | 
833  |  |             /* add any missing default children */  | 
834  | 0  |             ret = lyd_new_implicit_r(node, lyd_node_child_p(node), NULL, NULL, &lybctx->node_when, &lybctx->node_exts,  | 
835  | 0  |                     &lybctx->node_types, (lybctx->val_opts & LYD_VALIDATE_NO_STATE) ? LYD_IMPLICIT_NO_STATE : 0, NULL);  | 
836  | 0  |             LY_CHECK_GOTO(ret, cleanup);  | 
837  | 0  |         }  | 
838  |  |  | 
839  | 0  |         if (snode->nodetype & (LYS_RPC | LYS_ACTION | LYS_NOTIF)) { | 
840  |  |             /* rememeber the RPC/action/notification */  | 
841  | 0  |             lybctx->op_node = node;  | 
842  | 0  |         }  | 
843  | 0  |     } else if (snode->nodetype & LYD_NODE_ANY) { | 
844  |  |         /* parse value type */  | 
845  | 0  |         lyb_read((uint8_t *)&value_type, sizeof value_type, lybctx->lybctx);  | 
846  | 0  |         if (value_type == LYD_ANYDATA_DATATREE) { | 
847  |  |             /* invalid situation */  | 
848  | 0  |             LOGINT(ctx);  | 
849  | 0  |             goto cleanup;  | 
850  | 0  |         }  | 
851  |  |  | 
852  |  |         /* read anydata content */  | 
853  | 0  |         ret = lyb_read_string(&value, 0, lybctx->lybctx);  | 
854  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
855  | 0  |         dynamic = 1;  | 
856  |  | 
  | 
857  | 0  |         if (value_type == LYD_ANYDATA_LYB) { | 
858  |  |             /* turn logging off */  | 
859  | 0  |             prev_lo = ly_log_options(0);  | 
860  |  |  | 
861  |  |             /* try to parse LYB into a data tree */  | 
862  | 0  |             if (lyd_parse_data_mem(ctx, value, LYD_LYB, LYD_PARSE_ONLY | LYD_PARSE_OPAQ | LYD_PARSE_STRICT, 0, &tree) == LY_SUCCESS) { | 
863  |  |                 /* successfully parsed */  | 
864  | 0  |                 free(value);  | 
865  | 0  |                 value = (char *)tree;  | 
866  | 0  |                 value_type = LYD_ANYDATA_DATATREE;  | 
867  | 0  |             }  | 
868  |  |  | 
869  |  |             /* turn logging on again */  | 
870  | 0  |             ly_log_options(prev_lo);  | 
871  | 0  |         }  | 
872  |  |  | 
873  |  |         /* create the node */  | 
874  | 0  |         switch (value_type) { | 
875  | 0  |         case LYD_ANYDATA_LYB:  | 
876  | 0  |         case LYD_ANYDATA_DATATREE:  | 
877  |  |             /* use the value directly */  | 
878  | 0  |             ret = lyd_create_any(snode, value, value_type, 1, &node);  | 
879  | 0  |             LY_CHECK_GOTO(ret, cleanup);  | 
880  |  | 
  | 
881  | 0  |             dynamic = 0;  | 
882  | 0  |             value = NULL;  | 
883  | 0  |             break;  | 
884  | 0  |         case LYD_ANYDATA_STRING:  | 
885  | 0  |         case LYD_ANYDATA_XML:  | 
886  | 0  |         case LYD_ANYDATA_JSON:  | 
887  |  |             /* value is expected to be in the dictionary */  | 
888  | 0  |             ret = lydict_insert_zc(ctx, value, &val_dict);  | 
889  | 0  |             LY_CHECK_GOTO(ret, cleanup);  | 
890  | 0  |             dynamic = 0;  | 
891  | 0  |             value = NULL;  | 
892  |  |  | 
893  |  |             /* use the value in the dictionary */  | 
894  | 0  |             ret = lyd_create_any(snode, val_dict, value_type, 1, &node);  | 
895  | 0  |             if (ret) { | 
896  | 0  |                 lydict_remove(ctx, val_dict);  | 
897  | 0  |                 goto cleanup;  | 
898  | 0  |             }  | 
899  | 0  |             break;  | 
900  | 0  |         }  | 
901  | 0  |     }  | 
902  | 0  |     assert(node);  | 
903  |  |  | 
904  |  |     /* set flags */  | 
905  | 0  |     node->flags = flags;  | 
906  |  |  | 
907  |  |     /* add metadata/attributes */  | 
908  | 0  |     if (snode) { | 
909  | 0  |         LY_LIST_FOR(meta, m) { | 
910  | 0  |             m->parent = node;  | 
911  | 0  |         }  | 
912  | 0  |         node->meta = meta;  | 
913  | 0  |         meta = NULL;  | 
914  | 0  |     } else { | 
915  | 0  |         assert(!node->schema);  | 
916  | 0  |         LY_LIST_FOR(attr, a) { | 
917  | 0  |             a->parent = (struct lyd_node_opaq *)node;  | 
918  | 0  |         }  | 
919  | 0  |         ((struct lyd_node_opaq *)node)->attr = attr;  | 
920  | 0  |         attr = NULL;  | 
921  | 0  |     }  | 
922  |  |  | 
923  |  |     /* insert, keep first pointer correct */  | 
924  | 0  |     lyd_insert_node(parent, first_p, node);  | 
925  | 0  |     while (!parent && (*first_p)->prev->next) { | 
926  | 0  |         *first_p = (*first_p)->prev;  | 
927  | 0  |     }  | 
928  |  |  | 
929  |  |     /* rememeber a successfully parsed node */  | 
930  | 0  |     if (parsed) { | 
931  | 0  |         ly_set_add(parsed, node, 1, NULL);  | 
932  | 0  |     }  | 
933  | 0  |     node = NULL;  | 
934  |  | 
  | 
935  | 0  | stop_subtree:  | 
936  |  |     /* end the subtree */  | 
937  | 0  |     ret = lyb_read_stop_subtree(lybctx->lybctx);  | 
938  | 0  |     LY_CHECK_GOTO(ret, cleanup);  | 
939  |  | 
  | 
940  | 0  | cleanup:  | 
941  | 0  |     free(prefix);  | 
942  | 0  |     free(module_key);  | 
943  | 0  |     free(name);  | 
944  | 0  |     if (dynamic) { | 
945  | 0  |         free(value);  | 
946  | 0  |     }  | 
947  |  | 
  | 
948  | 0  |     lyd_free_meta_siblings(meta);  | 
949  | 0  |     lyd_free_attr_siblings(ctx, attr);  | 
950  | 0  |     lyd_free_tree(node);  | 
951  | 0  |     return ret;  | 
952  | 0  | }  | 
953  |  |  | 
954  |  | /**  | 
955  |  |  * @brief Parse used YANG data models.  | 
956  |  |  *  | 
957  |  |  * @param[in] lybctx LYB context.  | 
958  |  |  * @return LY_ERR value.  | 
959  |  |  */  | 
960  |  | static LY_ERR  | 
961  |  | lyb_parse_data_models(struct lylyb_ctx *lybctx, uint32_t parse_options)  | 
962  | 0  | { | 
963  | 0  |     LY_ERR ret;  | 
964  | 0  |     uint32_t count;  | 
965  | 0  |     LY_ARRAY_COUNT_TYPE u;  | 
966  |  |  | 
967  |  |     /* read model count */  | 
968  | 0  |     lyb_read_number(&count, sizeof count, 2, lybctx);  | 
969  |  | 
  | 
970  | 0  |     if (count) { | 
971  | 0  |         LY_ARRAY_CREATE_RET(lybctx->ctx, lybctx->models, count, LY_EMEM);  | 
972  |  |  | 
973  |  |         /* read modules */  | 
974  | 0  |         for (u = 0; u < count; ++u) { | 
975  | 0  |             ret = lyb_parse_model(lybctx, parse_options, &lybctx->models[u]);  | 
976  | 0  |             LY_CHECK_RET(ret);  | 
977  | 0  |             LY_ARRAY_INCREMENT(lybctx->models);  | 
978  | 0  |         }  | 
979  | 0  |     }  | 
980  |  |  | 
981  | 0  |     return LY_SUCCESS;  | 
982  | 0  | }  | 
983  |  |  | 
984  |  | /**  | 
985  |  |  * @brief Parse LYB magic number.  | 
986  |  |  *  | 
987  |  |  * @param[in] lybctx LYB context.  | 
988  |  |  * @return LY_ERR value.  | 
989  |  |  */  | 
990  |  | static LY_ERR  | 
991  |  | lyb_parse_magic_number(struct lylyb_ctx *lybctx)  | 
992  | 0  | { | 
993  | 0  |     char magic_byte = 0;  | 
994  |  | 
  | 
995  | 0  |     lyb_read((uint8_t *)&magic_byte, 1, lybctx);  | 
996  | 0  |     if (magic_byte != 'l') { | 
997  | 0  |         LOGERR(lybctx->ctx, LY_EINVAL, "Invalid first magic number byte \"0x%02x\".", magic_byte);  | 
998  | 0  |         return LY_EINVAL;  | 
999  | 0  |     }  | 
1000  |  |  | 
1001  | 0  |     lyb_read((uint8_t *)&magic_byte, 1, lybctx);  | 
1002  | 0  |     if (magic_byte != 'y') { | 
1003  | 0  |         LOGERR(lybctx->ctx, LY_EINVAL, "Invalid second magic number byte \"0x%02x\".", magic_byte);  | 
1004  | 0  |         return LY_EINVAL;  | 
1005  | 0  |     }  | 
1006  |  |  | 
1007  | 0  |     lyb_read((uint8_t *)&magic_byte, 1, lybctx);  | 
1008  | 0  |     if (magic_byte != 'b') { | 
1009  | 0  |         LOGERR(lybctx->ctx, LY_EINVAL, "Invalid third magic number byte \"0x%02x\".", magic_byte);  | 
1010  | 0  |         return LY_EINVAL;  | 
1011  | 0  |     }  | 
1012  |  |  | 
1013  | 0  |     return LY_SUCCESS;  | 
1014  | 0  | }  | 
1015  |  |  | 
1016  |  | /**  | 
1017  |  |  * @brief Parse LYB header.  | 
1018  |  |  *  | 
1019  |  |  * @param[in] lybctx LYB context.  | 
1020  |  |  * @return LY_ERR value.  | 
1021  |  |  */  | 
1022  |  | static LY_ERR  | 
1023  |  | lyb_parse_header(struct lylyb_ctx *lybctx)  | 
1024  | 0  | { | 
1025  | 0  |     uint8_t byte = 0;  | 
1026  |  |  | 
1027  |  |     /* version, future flags */  | 
1028  | 0  |     lyb_read((uint8_t *)&byte, sizeof byte, lybctx);  | 
1029  |  | 
  | 
1030  | 0  |     if ((byte & LYB_VERSION_MASK) != LYB_VERSION_NUM) { | 
1031  | 0  |         LOGERR(lybctx->ctx, LY_EINVAL, "Invalid LYB format version \"0x%02x\", expected \"0x%02x\".",  | 
1032  | 0  |                 byte & LYB_VERSION_MASK, LYB_VERSION_NUM);  | 
1033  | 0  |         return LY_EINVAL;  | 
1034  | 0  |     }  | 
1035  |  |  | 
1036  | 0  |     return LY_SUCCESS;  | 
1037  | 0  | }  | 
1038  |  |  | 
1039  |  | LY_ERR  | 
1040  |  | lyd_parse_lyb(const struct ly_ctx *ctx, const struct lysc_ext_instance *ext, struct lyd_node *parent,  | 
1041  |  |         struct lyd_node **first_p, struct ly_in *in, uint32_t parse_opts, uint32_t val_opts, enum lyd_type data_type,  | 
1042  |  |         struct ly_set *parsed, struct lyd_ctx **lydctx_p)  | 
1043  | 0  | { | 
1044  | 0  |     LY_ERR rc = LY_SUCCESS;  | 
1045  | 0  |     struct lyd_lyb_ctx *lybctx;  | 
1046  | 0  |     uint32_t int_opts;  | 
1047  |  | 
  | 
1048  | 0  |     assert(!(parse_opts & ~LYD_PARSE_OPTS_MASK));  | 
1049  | 0  |     assert(!(val_opts & ~LYD_VALIDATE_OPTS_MASK));  | 
1050  |  | 
  | 
1051  | 0  |     lybctx = calloc(1, sizeof *lybctx);  | 
1052  | 0  |     LY_CHECK_ERR_RET(!lybctx, LOGMEM(ctx), LY_EMEM);  | 
1053  | 0  |     lybctx->lybctx = calloc(1, sizeof *lybctx->lybctx);  | 
1054  | 0  |     LY_CHECK_ERR_GOTO(!lybctx->lybctx, LOGMEM(ctx); rc = LY_EMEM, cleanup);  | 
1055  |  | 
  | 
1056  | 0  |     lybctx->lybctx->in = in;  | 
1057  | 0  |     lybctx->lybctx->ctx = ctx;  | 
1058  | 0  |     lybctx->parse_opts = parse_opts;  | 
1059  | 0  |     lybctx->val_opts = val_opts;  | 
1060  | 0  |     lybctx->free = lyd_lyb_ctx_free;  | 
1061  |  | 
  | 
1062  | 0  |     switch (data_type) { | 
1063  | 0  |     case LYD_TYPE_DATA_YANG:  | 
1064  | 0  |         int_opts = LYD_INTOPT_WITH_SIBLINGS;  | 
1065  | 0  |         break;  | 
1066  | 0  |     case LYD_TYPE_RPC_YANG:  | 
1067  | 0  |         int_opts = LYD_INTOPT_RPC | LYD_INTOPT_ACTION | LYD_INTOPT_NO_SIBLINGS;  | 
1068  | 0  |         break;  | 
1069  | 0  |     case LYD_TYPE_NOTIF_YANG:  | 
1070  | 0  |         int_opts = LYD_INTOPT_NOTIF | LYD_INTOPT_NO_SIBLINGS;  | 
1071  | 0  |         break;  | 
1072  | 0  |     case LYD_TYPE_REPLY_YANG:  | 
1073  | 0  |         int_opts = LYD_INTOPT_REPLY | LYD_INTOPT_NO_SIBLINGS;  | 
1074  | 0  |         break;  | 
1075  | 0  |     default:  | 
1076  | 0  |         LOGINT(ctx);  | 
1077  | 0  |         rc = LY_EINT;  | 
1078  | 0  |         goto cleanup;  | 
1079  | 0  |     }  | 
1080  | 0  |     lybctx->int_opts = int_opts;  | 
1081  | 0  |     lybctx->ext = ext;  | 
1082  |  |  | 
1083  |  |     /* find the operation node if it exists already */  | 
1084  | 0  |     LY_CHECK_GOTO(rc = lyd_parser_find_operation(parent, int_opts, &lybctx->op_node), cleanup);  | 
1085  |  |  | 
1086  |  |     /* read magic number */  | 
1087  | 0  |     rc = lyb_parse_magic_number(lybctx->lybctx);  | 
1088  | 0  |     LY_CHECK_GOTO(rc, cleanup);  | 
1089  |  |  | 
1090  |  |     /* read header */  | 
1091  | 0  |     rc = lyb_parse_header(lybctx->lybctx);  | 
1092  | 0  |     LY_CHECK_GOTO(rc, cleanup);  | 
1093  |  |  | 
1094  |  |     /* read used models */  | 
1095  | 0  |     rc = lyb_parse_data_models(lybctx->lybctx, lybctx->parse_opts);  | 
1096  | 0  |     LY_CHECK_GOTO(rc, cleanup);  | 
1097  |  |  | 
1098  |  |     /* read subtree(s) */  | 
1099  | 0  |     while (lybctx->lybctx->in->current[0]) { | 
1100  | 0  |         rc = lyb_parse_subtree_r(lybctx, parent, first_p, parsed);  | 
1101  | 0  |         LY_CHECK_GOTO(rc, cleanup);  | 
1102  |  | 
  | 
1103  | 0  |         if (!(int_opts & LYD_INTOPT_WITH_SIBLINGS)) { | 
1104  | 0  |             break;  | 
1105  | 0  |         }  | 
1106  | 0  |     }  | 
1107  |  |  | 
1108  | 0  |     if ((int_opts & LYD_INTOPT_NO_SIBLINGS) && lybctx->lybctx->in->current[0]) { | 
1109  | 0  |         LOGVAL(ctx, LYVE_SYNTAX, "Unexpected sibling node.");  | 
1110  | 0  |         rc = LY_EVALID;  | 
1111  | 0  |         goto cleanup;  | 
1112  | 0  |     }  | 
1113  | 0  |     if ((int_opts & (LYD_INTOPT_RPC | LYD_INTOPT_ACTION | LYD_INTOPT_NOTIF | LYD_INTOPT_REPLY)) && !lybctx->op_node) { | 
1114  | 0  |         LOGVAL(ctx, LYVE_DATA, "Missing the operation node.");  | 
1115  | 0  |         rc = LY_EVALID;  | 
1116  | 0  |         goto cleanup;  | 
1117  | 0  |     }  | 
1118  |  |  | 
1119  |  |     /* read the last zero, parsing finished */  | 
1120  | 0  |     ly_in_skip(lybctx->lybctx->in, 1);  | 
1121  |  | 
  | 
1122  | 0  | cleanup:  | 
1123  |  |     /* there should be no unres stored if validation should be skipped */  | 
1124  | 0  |     assert(!(parse_opts & LYD_PARSE_ONLY) || (!lybctx->node_types.count && !lybctx->meta_types.count &&  | 
1125  | 0  |             !lybctx->node_when.count));  | 
1126  |  | 
  | 
1127  | 0  |     if (rc) { | 
1128  | 0  |         lyd_lyb_ctx_free((struct lyd_ctx *)lybctx);  | 
1129  | 0  |     } else { | 
1130  | 0  |         *lydctx_p = (struct lyd_ctx *)lybctx;  | 
1131  | 0  |     }  | 
1132  | 0  |     return rc;  | 
1133  | 0  | }  | 
1134  |  |  | 
1135  |  | API int  | 
1136  |  | lyd_lyb_data_length(const char *data)  | 
1137  | 0  | { | 
1138  | 0  |     LY_ERR ret = LY_SUCCESS;  | 
1139  | 0  |     struct lylyb_ctx *lybctx;  | 
1140  | 0  |     int count, i;  | 
1141  | 0  |     size_t len;  | 
1142  | 0  |     uint8_t buf[LYB_SIZE_MAX];  | 
1143  |  | 
  | 
1144  | 0  |     if (!data) { | 
1145  | 0  |         return -1;  | 
1146  | 0  |     }  | 
1147  |  |  | 
1148  | 0  |     lybctx = calloc(1, sizeof *lybctx);  | 
1149  | 0  |     LY_CHECK_ERR_RET(!lybctx, LOGMEM(NULL), LY_EMEM);  | 
1150  | 0  |     ret = ly_in_new_memory(data, &lybctx->in);  | 
1151  | 0  |     LY_CHECK_GOTO(ret, cleanup);  | 
1152  |  |  | 
1153  |  |     /* read magic number */  | 
1154  | 0  |     ret = lyb_parse_magic_number(lybctx);  | 
1155  | 0  |     LY_CHECK_GOTO(ret, cleanup);  | 
1156  |  |  | 
1157  |  |     /* read header */  | 
1158  | 0  |     ret = lyb_parse_header(lybctx);  | 
1159  | 0  |     LY_CHECK_GOTO(ret, cleanup);  | 
1160  |  |  | 
1161  |  |     /* read model count */  | 
1162  | 0  |     lyb_read_number(&count, sizeof count, 2, lybctx);  | 
1163  |  |  | 
1164  |  |     /* read all models */  | 
1165  | 0  |     for (i = 0; i < count; ++i) { | 
1166  |  |         /* module name length */  | 
1167  | 0  |         len = 0;  | 
1168  | 0  |         lyb_read_number(&len, sizeof len, 2, lybctx);  | 
1169  |  |  | 
1170  |  |         /* model name */  | 
1171  | 0  |         lyb_read(buf, len, lybctx);  | 
1172  |  |  | 
1173  |  |         /* revision */  | 
1174  | 0  |         lyb_read(buf, 2, lybctx);  | 
1175  | 0  |     }  | 
1176  |  | 
  | 
1177  | 0  |     while (lybctx->in->current[0]) { | 
1178  |  |         /* register a new subtree */  | 
1179  | 0  |         ret = lyb_read_start_subtree(lybctx);  | 
1180  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
1181  |  |  | 
1182  |  |         /* skip it */  | 
1183  | 0  |         lyb_skip_subtree(lybctx);  | 
1184  |  |  | 
1185  |  |         /* subtree finished */  | 
1186  | 0  |         ret = lyb_read_stop_subtree(lybctx);  | 
1187  | 0  |         LY_CHECK_GOTO(ret, cleanup);  | 
1188  | 0  |     }  | 
1189  |  |  | 
1190  |  |     /* read the last zero, parsing finished */  | 
1191  | 0  |     ly_in_skip(lybctx->in, 1);  | 
1192  |  | 
  | 
1193  | 0  | cleanup:  | 
1194  | 0  |     count = lybctx->in->current - lybctx->in->start;  | 
1195  |  | 
  | 
1196  | 0  |     ly_in_free(lybctx->in, 0);  | 
1197  | 0  |     lylyb_ctx_free(lybctx);  | 
1198  |  | 
  | 
1199  | 0  |     return ret ? -1 : count;  | 
1200  | 0  | }  |