#define _GNU_SOURCE
#include <assert.h>
#include <stdint.h>
#include <stdlib.h>
#include <string.h>
#include "compat.h"
#include "context.h"
#include "dict.h"
#include "in_internal.h"
#include "log.h"
#include "ly_common.h"
#include "parser_data.h"
#include "parser_internal.h"
#include "plugins_exts.h"
#include "plugins_internal.h"
#include "schema_compile_node.h"
#include "set.h"
#include "tree.h"
#include "tree_data.h"
#include "tree_data_internal.h"
#include "tree_schema.h"
#include "tree_schema_internal.h"
#include "validation.h"
#include "xml.h"
static LY_ERR lydxml_subtree_r(struct lyd_xml_ctx *lydctx, struct lyd_node *parent, struct lyd_node **first_p,
struct ly_set *parsed);
void
lyd_xml_ctx_free(struct lyd_ctx *lydctx)
{
struct lyd_xml_ctx *ctx = (struct lyd_xml_ctx *)lydctx;
lyd_ctx_free(lydctx);
lyxml_ctx_free(ctx->xmlctx);
free(ctx);
}
static void
lydxml_log_namespace_err(const struct ly_ctx *ctx, const struct lyd_node *lnode, const char *prefix, size_t prefix_len,
const char *attr_name, size_t attr_len)
{
if (prefix_len && attr_len) {
LOGVAL(ctx, lnode, LYVE_REFERENCE, "Unknown XML prefix \"%.*s\" at attribute \"%.*s\".",
(int)prefix_len, prefix, (int)attr_len, attr_name);
} else if (prefix_len) {
LOGVAL(ctx, lnode, LYVE_REFERENCE, "Unknown XML prefix \"%.*s\".",
(int)prefix_len, prefix);
} else {
LOGVAL(ctx, lnode, LYVE_REFERENCE, "Missing XML namespace.");
}
}
static LY_ERR
lydxml_metadata(struct lyd_xml_ctx *lydctx, const struct lysc_node *sparent, const struct lyd_node *lnode,
struct lyd_meta **meta)
{
LY_ERR ret = LY_SUCCESS;
const struct lyxml_ns *ns;
struct lys_module *mod;
const char *name;
size_t name_len;
LY_ARRAY_COUNT_TYPE u;
ly_bool filter_attrs = 0;
struct lyxml_ctx *xmlctx = lydctx->xmlctx;
*meta = NULL;
if (!strcmp(sparent->module->name, "notifications")) {
filter_attrs = 1;
} else {
LY_ARRAY_FOR(sparent->exts, u) {
if (!strcmp(sparent->exts[u].def->name, "get-filter-element-attributes") &&
!strcmp(sparent->exts[u].def->module->name, "ietf-netconf")) {
filter_attrs = 1;
break;
}
}
}
while (xmlctx->status == LYXML_ATTRIBUTE) {
if (!xmlctx->prefix_len) {
if (filter_attrs && (!ly_strncmp("type", xmlctx->name, xmlctx->name_len) ||
!ly_strncmp("select", xmlctx->name, xmlctx->name_len))) {
mod = ly_ctx_get_module_implemented(xmlctx->ctx, "ietf-netconf");
if (!mod) {
LOG_LOCSET(sparent);
LOGVAL(xmlctx->ctx, lnode, LYVE_REFERENCE,
"Missing (or not implemented) YANG module \"ietf-netconf\" for special filter attributes.");
LOG_LOCBACK(1);
ret = LY_ENOTFOUND;
goto cleanup;
}
goto create_meta;
}
if (lydctx->parse_opts & LYD_PARSE_STRICT) {
LOG_LOCSET(sparent);
LOGVAL(xmlctx->ctx, lnode, LYVE_REFERENCE, "Missing mandatory prefix for XML metadata \"%.*s\".",
(int)xmlctx->name_len, xmlctx->name);
LOG_LOCBACK(1);
LY_DPARSER_ERR_GOTO(LY_EVALID, ret = LY_EVALID, lydctx, cleanup);
}
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
assert(xmlctx->status == LYXML_ATTR_CONTENT);
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
continue;
}
ns = lyxml_ns_get(&xmlctx->ns, xmlctx->prefix, xmlctx->prefix_len);
if (!ns) {
LOG_LOCSET(sparent);
lydxml_log_namespace_err(xmlctx->ctx, lnode, xmlctx->prefix, xmlctx->prefix_len, xmlctx->name, xmlctx->name_len);
LOG_LOCBACK(1);
ret = LY_ENOTFOUND;
goto cleanup;
}
mod = ly_ctx_get_module_implemented_ns(xmlctx->ctx, ns->uri);
if (!mod) {
if (lydctx->parse_opts & LYD_PARSE_STRICT) {
LOG_LOCSET(sparent);
LOGVAL(xmlctx->ctx, lnode, LYVE_REFERENCE,
"Unknown (or not implemented) YANG module with namespace \"%s\" for metadata \"%.*s%s%.*s\".",
ns->uri, (int)xmlctx->prefix_len, xmlctx->prefix, xmlctx->prefix_len ? ":" : "",
(int)xmlctx->name_len, xmlctx->name);
LOG_LOCBACK(1);
ret = LY_ENOTFOUND;
goto cleanup;
}
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
assert(xmlctx->status == LYXML_ATTR_CONTENT);
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
continue;
}
create_meta:
name = xmlctx->name;
name_len = xmlctx->name_len;
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
assert(xmlctx->status == LYXML_ATTR_CONTENT);
ret = lyd_parser_create_meta((struct lyd_ctx *)lydctx, NULL, meta, mod, name, name_len, xmlctx->value,
xmlctx->value_len * 8, &xmlctx->dynamic, LY_VALUE_XML, &xmlctx->ns, LYD_HINT_DATA, sparent, lnode);
LY_CHECK_GOTO(ret, cleanup);
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
}
cleanup:
if (ret) {
lyd_free_meta_siblings(*meta);
*meta = NULL;
}
return ret;
}
static LY_ERR
lydxml_attrs(struct lyxml_ctx *xmlctx, const struct lyd_node *lnode, struct lyd_attr **attr)
{
LY_ERR ret = LY_SUCCESS;
const struct lyxml_ns *ns;
void *val_prefix_data;
LY_VALUE_FORMAT format;
struct lyd_attr *attr2;
const char *name, *prefix;
size_t name_len, prefix_len;
assert(attr);
*attr = NULL;
while (xmlctx->status == LYXML_ATTRIBUTE) {
if (*attr) {
attr2 = *attr;
} else {
attr2 = NULL;
}
prefix = xmlctx->prefix;
prefix_len = xmlctx->prefix_len;
name = xmlctx->name;
name_len = xmlctx->name_len;
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
assert(xmlctx->status == LYXML_ATTR_CONTENT);
if ((prefix_len == 3) && !strncmp(prefix, "xml", 3)) {
name = prefix;
name_len += 1 + prefix_len;
prefix = NULL;
prefix_len = 0;
}
ns = NULL;
if (prefix_len) {
ns = lyxml_ns_get(&xmlctx->ns, prefix, prefix_len);
if (!ns) {
lydxml_log_namespace_err(xmlctx->ctx, lnode, prefix, prefix_len, name, name_len);
ret = LY_EVALID;
goto cleanup;
}
}
val_prefix_data = NULL;
LY_CHECK_GOTO(ret = ly_store_prefix_data(xmlctx->ctx, xmlctx->value, xmlctx->value_len, LY_VALUE_XML,
&xmlctx->ns, &format, &val_prefix_data), cleanup);
ret = lyd_create_attr(NULL, &attr2, xmlctx->ctx, name, name_len, prefix, prefix_len, ns ? ns->uri : NULL,
ns ? strlen(ns->uri) : 0, xmlctx->value, xmlctx->value_len, &xmlctx->dynamic, format, val_prefix_data,
LYD_HINT_DATA);
LY_CHECK_GOTO(ret, cleanup);
if (!*attr) {
*attr = attr2;
}
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
}
cleanup:
if (ret) {
lyd_free_attr_siblings(xmlctx->ctx, *attr);
*attr = NULL;
}
return ret;
}
static LY_ERR
lydxml_check_list(struct lyd_xml_ctx *lydctx, const struct lysc_node *list)
{
LY_ERR ret = LY_SUCCESS, r;
struct lyxml_ctx *xmlctx = lydctx->xmlctx;
enum LYXML_PARSER_STATUS next;
struct ly_set key_set = {0};
const struct lysc_node *snode;
uint32_t i, parents_count;
assert(list && (list->nodetype == LYS_LIST));
snode = NULL;
while ((snode = lys_getnext(snode, list, NULL, 0)) && (snode->flags & LYS_KEY)) {
ret = ly_set_add(&key_set, (void *)snode, 1, NULL);
LY_CHECK_GOTO(ret, cleanup);
}
parents_count = xmlctx->elements.count;
while (xmlctx->status == LYXML_ELEMENT) {
for (i = 0; i < key_set.count; ++i) {
snode = (const struct lysc_node *)key_set.objs[i];
if (!ly_strncmp(snode->name, xmlctx->name, xmlctx->name_len)) {
break;
}
}
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
while (xmlctx->status == LYXML_ATTRIBUTE) {
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
assert(xmlctx->status == LYXML_ATTR_CONTENT);
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
}
assert(xmlctx->status == LYXML_ELEM_CONTENT);
if (i < key_set.count) {
r = ly_value_validate(NULL, snode, xmlctx->value, xmlctx->value_len * 8, LY_VALUE_XML, &xmlctx->ns,
LYD_HINT_DATA);
if (!r) {
ly_set_rm_index(&key_set, i, NULL);
}
}
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
while (xmlctx->status == LYXML_ELEMENT) {
while (parents_count < xmlctx->elements.count) {
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
}
assert(xmlctx->status == LYXML_ELEM_CLOSE);
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
}
assert(xmlctx->status == LYXML_ELEM_CLOSE);
LY_CHECK_GOTO(ret = lyxml_ctx_peek(xmlctx, &next), cleanup);
if (next != LYXML_ELEM_CLOSE) {
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), cleanup);
}
}
if (key_set.count) {
ret = LY_ENOT;
}
cleanup:
ly_set_erase(&key_set, NULL);
return ret;
}
static LY_ERR
lydxml_data_skip(struct lyxml_ctx *xmlctx)
{
uint32_t parents_count;
parents_count = xmlctx->elements.count;
assert(parents_count);
while (xmlctx->status != LYXML_ELEM_CONTENT) {
LY_CHECK_RET(lyxml_ctx_next(xmlctx));
}
LY_CHECK_RET(lyxml_ctx_next(xmlctx));
while (parents_count <= xmlctx->elements.count) {
LY_CHECK_RET(lyxml_ctx_next(xmlctx));
}
assert(xmlctx->status == LYXML_ELEM_CLOSE);
LY_CHECK_RET(lyxml_ctx_next(xmlctx));
return LY_SUCCESS;
}
static LY_ERR
lydxml_data_check_opaq(struct lyd_xml_ctx *lydctx, const struct lysc_node **snode)
{
LY_ERR ret = LY_SUCCESS, r;
struct lyxml_ctx *xmlctx = lydctx->xmlctx, pxmlctx;
uint32_t *prev_lo, temp_lo = 0;
if (!(lydctx->parse_opts & LYD_PARSE_OPAQ)) {
return LY_SUCCESS;
}
if (!((*snode)->nodetype & (LYD_NODE_TERM | LYD_NODE_INNER))) {
return LY_SUCCESS;
}
assert(xmlctx->elements.count);
LY_CHECK_RET(lyxml_ctx_backup(xmlctx, &pxmlctx));
while (xmlctx->status == LYXML_ATTRIBUTE) {
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), restore);
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), restore);
}
if ((*snode)->nodetype & LYD_NODE_TERM) {
prev_lo = ly_temp_log_options(&temp_lo);
r = ly_value_validate(NULL, *snode, xmlctx->value, xmlctx->value_len * 8, LY_VALUE_XML, &xmlctx->ns, LYD_HINT_DATA);
ly_temp_log_options(prev_lo);
if (r) {
LOGVRB("Parsing opaque term node \"%s\" with invalid value \"%.*s\".", (*snode)->name, (int)xmlctx->value_len,
xmlctx->value);
*snode = NULL;
}
} else if ((*snode)->nodetype == LYS_LIST) {
LY_CHECK_GOTO(ret = lyxml_ctx_next(xmlctx), restore);
if (lydxml_check_list(lydctx, *snode)) {
LOGVRB("Parsing opaque list node \"%s\" with missing/invalid keys.", (*snode)->name);
*snode = NULL;
}
} else {
assert(xmlctx->status == LYXML_ELEM_CONTENT);
if (!xmlctx->ws_only) {
*snode = NULL;
}
}
restore:
lyxml_ctx_restore(xmlctx, &pxmlctx);
return ret;
}
static void
lydxml_get_hints_opaq(const char *name, size_t name_len, const char *value, size_t value_len, const struct lyd_node *first,
const char *ns, uint32_t *hints, struct lyd_node **anchor)
{
struct lyd_node_opaq *opaq;
char *ptr;
long long num;
*hints = 0;
*anchor = NULL;
if (!value_len) {
*hints |= LYD_VALHINT_EMPTY | LYD_VALHINT_STRING;
} else if (!strncmp(value, "true", value_len) || !strncmp(value, "false", value_len)) {
*hints |= LYD_VALHINT_BOOLEAN;
} else {
num = strtoll(value, &ptr, 10);
if ((unsigned)(ptr - value) == value_len) {
*hints |= LYD_VALHINT_DECNUM;
if ((num < INT32_MIN) || (num > UINT32_MAX)) {
*hints |= LYD_VALHINT_NUM64;
}
} else {
*hints |= LYD_VALHINT_STRING;
}
}
if (!first) {
return;
}
do {
first = first->prev;
if (first->schema) {
continue;
}
opaq = (struct lyd_node_opaq *)first;
assert(opaq->format == LY_VALUE_XML);
if (!ly_strncmp(opaq->name.name, name, name_len) &&
((ns && opaq->name.module_ns && !strcmp(opaq->name.module_ns, ns)) || (!ns && !opaq->name.module_ns))) {
if (opaq->value && opaq->value[0]) {
opaq->hints |= LYD_NODEHINT_LEAFLIST;
*hints |= LYD_NODEHINT_LEAFLIST;
} else {
opaq->hints |= LYD_NODEHINT_LIST;
*hints |= LYD_NODEHINT_LIST;
}
*anchor = (struct lyd_node *)first;
break;
}
} while (first->prev->next);
}
static LY_ERR
lydxml_subtree_get_snode(struct lyd_xml_ctx *lydctx, const struct lyd_node *parent, const char *prefix, size_t prefix_len,
const char *name, size_t name_len, const struct lysc_node **snode, struct lysc_ext_instance **ext)
{
LY_ERR r;
struct lyxml_ctx *xmlctx;
const struct ly_ctx *ctx;
const struct lyxml_ns *ns;
const struct lys_module *mod = NULL;
const struct lysc_node *sparent;
uint32_t getnext_opts;
xmlctx = lydctx->xmlctx;
ctx = xmlctx->ctx;
getnext_opts = lydctx->int_opts & LYD_INTOPT_REPLY ? LYS_GETNEXT_OUTPUT : 0;
*snode = NULL;
*ext = NULL;
if (parent && parent->schema && !(parent->schema->nodetype & LYD_NODE_ANY)) {
sparent = parent->schema;
} else {
sparent = NULL;
}
if (!prefix_len) {
prefix = NULL;
}
r = lys_find_child_node(parent ? LYD_CTX(parent) : ctx, sparent, NULL, prefix, prefix_len, LY_VALUE_XML,
&lydctx->xmlctx->ns, name, name_len, getnext_opts, snode, ext);
LY_CHECK_RET(r && (r != LY_ENOT), r);
if (!r) {
LY_CHECK_RET(lyd_parser_check_schema((struct lyd_ctx *)lydctx, *snode));
LY_CHECK_RET(lydxml_data_check_opaq(lydctx, snode));
return LY_SUCCESS;
}
ns = lyxml_ns_get(&xmlctx->ns, prefix, prefix_len);
if (!ns && !(lydctx->int_opts & LYD_INTOPT_ANY)) {
lydxml_log_namespace_err(xmlctx->ctx, parent, prefix, prefix_len, NULL, 0);
return LY_EVALID;
}
if (!(lydctx->parse_opts & LYD_PARSE_STRICT)) {
return LY_SUCCESS;
}
if (ns) {
mod = ly_ctx_get_module_implemented_ns(parent ? LYD_CTX(parent) : ctx, ns->uri);
}
if (!mod) {
if (ns) {
LOGVAL(ctx, parent, LYVE_REFERENCE, "No module with namespace \"%s\" in the context.", ns->uri);
} else if (prefix_len) {
LOGVAL(ctx, parent, LYVE_REFERENCE, "No module with namespace \"%.*s\" in the context.", (int)prefix_len, prefix);
} else {
LOGVAL(ctx, parent, LYVE_REFERENCE, "No default namespace in the context.");
}
return LY_EVALID;
}
if (sparent) {
LOGVAL(ctx, parent, LYVE_REFERENCE, "Node \"%.*s\" not found as a child of \"%s\" node.",
(int)name_len, name, sparent->name);
} else {
LOGVAL(ctx, parent, LYVE_REFERENCE, "Node \"%.*s\" not found in the \"%s\" module.", (int)name_len, name,
mod->name);
}
return LY_EVALID;
}
static LY_ERR
lydxml_subtree_opaq(struct lyd_xml_ctx *lydctx, const char *prefix, uint32_t prefix_len, const char *name,
uint32_t name_len, struct lyd_node *parent, struct lyd_node **first_p, struct lyd_node **node)
{
LY_ERR rc = LY_SUCCESS;
struct lyxml_ctx *xmlctx = lydctx->xmlctx;
struct lyd_node_opaq *opaq;
struct lyd_node *insert_anchor = NULL;
const char *ns_uri, *value = NULL;
size_t value_len;
ly_bool ws_only, dynamic = 0;
const struct lyxml_ns *ns;
uint32_t hints;
void *val_prefix_data = NULL;
LY_VALUE_FORMAT format;
assert(lydctx->parse_opts & LYD_PARSE_OPAQ);
*node = NULL;
value = xmlctx->value;
value_len = xmlctx->value_len;
ws_only = xmlctx->ws_only;
dynamic = xmlctx->dynamic;
if (dynamic) {
xmlctx->dynamic = 0;
}
rc = ly_store_prefix_data(xmlctx->ctx, value, value_len, LY_VALUE_XML, &xmlctx->ns, &format, &val_prefix_data);
LY_CHECK_GOTO(rc, cleanup);
ns = lyxml_ns_get(&xmlctx->ns, prefix, prefix_len);
ns_uri = ns ? ns->uri : NULL;
lydxml_get_hints_opaq(name, name_len, xmlctx->value, xmlctx->value_len, parent ? lyd_child_any(parent) : *first_p,
ns_uri, &hints, &insert_anchor);
rc = lyd_create_opaq(xmlctx->ctx, name, name_len, prefix, prefix_len, ns_uri, ns_uri ? strlen(ns_uri) : 0, NULL, 0,
NULL, format, NULL, hints, node);
LY_CHECK_GOTO(rc, cleanup);
rc = lyd_parser_node_insert(parent, first_p, insert_anchor, lydctx->parse_opts, *node);
LY_CHECK_GOTO(rc, cleanup);
rc = lyxml_ctx_next(xmlctx);
LY_CHECK_GOTO(rc, cleanup);
while (xmlctx->status == LYXML_ELEMENT) {
rc = lydxml_subtree_r(lydctx, *node, lyd_node_child_p(*node), NULL);
LY_CHECK_GOTO(rc, cleanup);
}
opaq = (struct lyd_node_opaq *)*node;
if (opaq->child) {
if (!ws_only) {
LOGVAL(xmlctx->ctx, *node, LYVE_SYNTAX_XML, "Mixed XML content node \"%s\" found, not supported.",
LYD_NAME(opaq));
rc = LY_EVALID;
goto cleanup;
}
} else if (value_len) {
lydict_remove(xmlctx->ctx, opaq->value);
if (dynamic) {
LY_CHECK_GOTO(rc = lydict_insert_zc(xmlctx->ctx, (char *)value, &opaq->value), cleanup);
dynamic = 0;
} else {
LY_CHECK_GOTO(rc = lydict_insert(xmlctx->ctx, value, value_len, &opaq->value), cleanup);
}
}
assert(!opaq->val_prefix_data);
opaq->val_prefix_data = val_prefix_data;
val_prefix_data = NULL;
cleanup:
ly_free_prefix_data(format, val_prefix_data);
if (dynamic) {
free((char *)value);
}
if (rc) {
lyd_parser_node_free(first_p, node);
}
return rc;
}
static LY_ERR
lydxml_subtree_term(struct lyd_xml_ctx *lydctx, const struct lysc_node *snode, const struct lysc_ext_instance *ext,
struct lyd_node *parent, struct lyd_node **first_p, struct lyd_node **node)
{
LY_ERR r, rc = LY_SUCCESS;
struct lyxml_ctx *xmlctx = lydctx->xmlctx;
struct lyd_node *anchor;
*node = NULL;
r = lyd_parser_create_term((struct lyd_ctx *)lydctx, snode, parent, xmlctx->value, (uint64_t)xmlctx->value_len * 8,
&xmlctx->dynamic, LY_VALUE_XML, &xmlctx->ns, LYD_HINT_DATA, node);
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
if (ext) {
(*node)->flags |= LYD_EXT;
}
r = lyd_parser_node_insert(parent, first_p, NULL, lydctx->parse_opts, *node);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
if (*node && parent && (snode->flags & LYS_KEY)) {
anchor = lyd_insert_get_next_anchor(lyd_child(parent), *node);
if (anchor && anchor->schema && (anchor->schema->flags & LYS_KEY)) {
if (lydctx->parse_opts & LYD_PARSE_STRICT) {
LOGVAL(xmlctx->ctx, *node, LYVE_DATA, "Invalid position of the key \"%s\" in a list.", snode->name);
r = LY_EVALID;
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
} else {
LOGWRN(xmlctx->ctx, "Invalid position of the key \"%s\" in a list.", snode->name);
}
}
}
r = lyxml_ctx_next(xmlctx);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
if (xmlctx->status == LYXML_ELEMENT) {
LOGVAL(xmlctx->ctx, *node, LYVE_SYNTAX, "Child element \"%.*s\" inside a terminal node \"%s\" found.",
(int)xmlctx->name_len, xmlctx->name, snode->name);
r = LY_EVALID;
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
}
cleanup:
if (rc && (!(lydctx->val_opts & LYD_VALIDATE_MULTI_ERROR) || (rc != LY_EVALID))) {
lyd_parser_node_free(first_p, node);
}
return rc;
}
static LY_ERR
lydxml_subtree_inner(struct lyd_xml_ctx *lydctx, const struct lysc_node *snode, const struct lysc_ext_instance *ext,
struct lyd_node *parent, struct lyd_node **first_p, struct lyd_node **node)
{
LY_ERR r, rc = LY_SUCCESS;
struct lyxml_ctx *xmlctx = lydctx->xmlctx;
uint32_t prev_parse_opts = lydctx->parse_opts;
struct lyplg_ext *plg_ext;
*node = NULL;
if (!xmlctx->ws_only) {
LOGVAL(xmlctx->ctx, parent, LYVE_SYNTAX, "Text value \"%.*s\" inside an inner node \"%s\" found.",
(int)xmlctx->value_len, xmlctx->value, snode->name);
r = LY_EVALID;
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
}
rc = lyd_create_inner(snode, node);
LY_CHECK_GOTO(rc, cleanup);
if (ext) {
(*node)->flags |= LYD_EXT;
}
r = lyd_parser_node_insert(parent, first_p, NULL, lydctx->parse_opts, *node);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
rc = lyxml_ctx_next(xmlctx);
LY_CHECK_GOTO(rc, cleanup);
if (ext) {
plg_ext = LYSC_GET_EXT_PLG(ext->def->plugin_ref);
if (plg_ext && plg_ext->validate) {
lydctx->parse_opts |= LYD_PARSE_ONLY;
}
}
while (xmlctx->status == LYXML_ELEMENT) {
r = lydxml_subtree_r(lydctx, *node, lyd_node_child_p(*node), NULL);
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
r = lyd_parser_node_insert(parent, first_p, NULL, lydctx->parse_opts, *node);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
}
lydctx->parse_opts = prev_parse_opts;
if (snode->nodetype == LYS_LIST) {
r = lyd_parser_check_keys(*node);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
}
if (!(lydctx->parse_opts & LYD_PARSE_ONLY) && !rc) {
r = lyd_parser_validate_new_implicit((struct lyd_ctx *)lydctx, *node);
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
}
if (snode->nodetype & (LYS_RPC | LYS_ACTION | LYS_NOTIF)) {
lydctx->op_node = *node;
}
cleanup:
lydctx->parse_opts = prev_parse_opts;
if (rc && ((*node && !(*node)->hash) || !(lydctx->val_opts & LYD_VALIDATE_MULTI_ERROR) || (rc != LY_EVALID))) {
lyd_parser_node_free(first_p, node);
}
return rc;
}
static LY_ERR
lydxml_subtree_any(struct lyd_xml_ctx *lydctx, const struct lysc_node *snode, const struct lysc_ext_instance *ext,
struct lyd_node *parent, struct lyd_node **first_p, struct lyd_node **node)
{
LY_ERR r, rc = LY_SUCCESS;
struct lyxml_ctx *xmlctx = lydctx->xmlctx;
uint32_t prev_parse_opts = lydctx->parse_opts, prev_int_opts = lydctx->int_opts;
char *val = NULL;
ly_bool datatree_val = 0;
*node = NULL;
if (xmlctx->ws_only) {
r = lyd_create_any(snode, NULL, NULL, 0, 1, 0, node);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
datatree_val = 1;
} else {
if (snode->nodetype == LYS_ANYDATA) {
LOGVAL(xmlctx->ctx, parent, LYVE_SYNTAX, "Text value \"%.*s\" inside an anydata node \"%s\" found.",
xmlctx->value_len < 20 ? (int)xmlctx->value_len : 20, xmlctx->value, snode->name);
r = LY_EVALID;
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
}
val = strndup(xmlctx->value, xmlctx->value_len);
LY_CHECK_ERR_GOTO(!val, LOGMEM(xmlctx->ctx); rc = LY_EMEM, cleanup);
r = lyd_create_any(snode, NULL, val, 0, 1, 0, node);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
val = NULL;
}
if (ext) {
(*node)->flags |= LYD_EXT;
}
r = lyd_parser_node_insert(parent, first_p, NULL, lydctx->parse_opts, *node);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
r = lyxml_ctx_next(xmlctx);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
if (datatree_val) {
if (lydctx->parse_opts & LYD_PARSE_ANYDATA_STRICT) {
lydctx->parse_opts |= LYD_PARSE_STRICT;
} else {
lydctx->parse_opts &= ~LYD_PARSE_STRICT;
lydctx->parse_opts |= LYD_PARSE_OPAQ;
}
lydctx->parse_opts |= (ext ? LYD_PARSE_ONLY : 0);
lydctx->int_opts |= LYD_INTOPT_ANY | LYD_INTOPT_WITH_SIBLINGS;
while (xmlctx->status == LYXML_ELEMENT) {
r = lydxml_subtree_r(lydctx, *node, &((struct lyd_node_any *)*node)->child, NULL);
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
}
}
cleanup:
lydctx->parse_opts = prev_parse_opts;
lydctx->int_opts = prev_int_opts;
free(val);
if (rc && (!(lydctx->val_opts & LYD_VALIDATE_MULTI_ERROR) || (rc != LY_EVALID))) {
lyd_parser_node_free(first_p, node);
}
return rc;
}
static LY_ERR
lydxml_subtree_r(struct lyd_xml_ctx *lydctx, struct lyd_node *parent, struct lyd_node **first_p, struct ly_set *parsed)
{
LY_ERR r, rc = LY_SUCCESS;
const char *prefix, *name;
size_t prefix_len, name_len;
struct lyxml_ctx *xmlctx;
const struct ly_ctx *ctx;
struct lyd_meta *meta = NULL;
struct lyd_attr *attr = NULL;
const struct lysc_node *snode = NULL;
struct lysc_ext_instance *ext = NULL;
struct lyd_node *node = NULL;
assert(parent || first_p);
xmlctx = lydctx->xmlctx;
ctx = xmlctx->ctx;
assert(xmlctx->status == LYXML_ELEMENT);
prefix = xmlctx->prefix;
prefix_len = xmlctx->prefix_len;
name = xmlctx->name;
name_len = xmlctx->name_len;
rc = lyxml_ctx_next(xmlctx);
LY_CHECK_GOTO(rc, cleanup);
if ((lydctx->int_opts & LYD_INTOPT_EVENTTIME) && !parent && name_len && !prefix_len &&
!ly_strncmp("eventTime", name, name_len)) {
assert(xmlctx->status == LYXML_ELEM_CONTENT);
rc = lyd_create_opaq(xmlctx->ctx, name, name_len, prefix, prefix_len,
"urn:ietf:params:xml:ns:netconf:notification:1.0", 47, xmlctx->value,
xmlctx->ws_only ? 0 : xmlctx->value_len, NULL, LY_VALUE_XML, NULL, LYD_HINT_DATA, &node);
LY_CHECK_GOTO(rc, cleanup);
r = lyd_parser_node_insert(parent, first_p, NULL, lydctx->parse_opts, node);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
r = lyd_parser_notif_eventtime_validate(node);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
r = lyxml_ctx_next(xmlctx);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
if (xmlctx->status != LYXML_ELEM_CLOSE) {
LOGVAL(ctx, NULL, LYVE_DATA, "Unexpected notification \"eventTime\" node children.");
rc = LY_EVALID;
goto cleanup;
}
goto node_parsed;
}
r = lydxml_subtree_get_snode(lydctx, parent, prefix, prefix_len, name, name_len, &snode, &ext);
if (r) {
rc = r;
if ((r == LY_EVALID) && (lydctx->val_opts & LYD_VALIDATE_MULTI_ERROR)) {
if ((r = lydxml_data_skip(xmlctx))) {
rc = r;
}
}
goto cleanup;
} else if (!snode && !(lydctx->parse_opts & LYD_PARSE_OPAQ)) {
LOGVRB("Skipping parsing of unknown node \"%.*s\".", (int)name_len, name);
rc = lydxml_data_skip(xmlctx);
goto cleanup;
}
if (xmlctx->status == LYXML_ATTRIBUTE) {
if (snode) {
r = lydxml_metadata(lydctx, snode, parent, &meta);
} else {
assert(lydctx->parse_opts & LYD_PARSE_OPAQ);
r = lydxml_attrs(xmlctx, parent, &attr);
}
}
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
assert(xmlctx->status == LYXML_ELEM_CONTENT);
if (!snode) {
r = lydxml_subtree_opaq(lydctx, prefix, prefix_len, name, name_len, parent, first_p, &node);
} else if (snode->nodetype & LYD_NODE_TERM) {
r = lydxml_subtree_term(lydctx, snode, ext, parent, first_p, &node);
} else if (snode->nodetype & LYD_NODE_INNER) {
r = lydxml_subtree_inner(lydctx, snode, ext, parent, first_p, &node);
} else {
assert(snode->nodetype & LYD_NODE_ANY);
r = lydxml_subtree_any(lydctx, snode, ext, parent, first_p, &node);
}
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
node_parsed:
if (node && snode) {
r = lyd_parser_set_data_flags(node, &meta, (struct lyd_ctx *)lydctx, ext);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
}
assert(xmlctx->status == LYXML_ELEM_CLOSE);
r = lyxml_ctx_next(xmlctx);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
LY_CHECK_GOTO(!node, cleanup);
if (snode) {
lyd_insert_meta(node, meta, 0);
meta = NULL;
} else {
lyd_insert_attr(node, attr);
attr = NULL;
}
if (parsed) {
ly_set_add(parsed, node, 1, NULL);
}
cleanup:
lyd_free_meta_siblings(meta);
lyd_free_attr_siblings(ctx, attr);
return rc;
}
static LY_ERR
lydxml_envelope(struct lyxml_ctx *xmlctx, const char *name, const char *uri, ly_bool value, struct lyd_node **envp)
{
LY_ERR rc = LY_SUCCESS;
const struct lyxml_ns *ns;
struct lyd_attr *attr = NULL;
const char *prefix;
size_t prefix_len;
if (xmlctx->status != LYXML_ELEMENT) {
return LY_ENOT;
}
if (ly_strncmp(name, xmlctx->name, xmlctx->name_len)) {
return LY_ENOT;
}
prefix = xmlctx->prefix;
prefix_len = xmlctx->prefix_len;
ns = lyxml_ns_get(&xmlctx->ns, prefix, prefix_len);
if (!ns) {
lydxml_log_namespace_err(xmlctx->ctx, NULL, prefix, prefix_len, NULL, 0);
return LY_EVALID;
} else if (strcmp(ns->uri, uri)) {
return LY_ENOT;
}
LY_CHECK_RET(lyxml_ctx_next(xmlctx));
if (xmlctx->status == LYXML_ATTRIBUTE) {
LY_CHECK_RET(lydxml_attrs(xmlctx, NULL, &attr));
}
assert(xmlctx->status == LYXML_ELEM_CONTENT);
if (!value && !xmlctx->ws_only) {
LOGVAL(xmlctx->ctx, NULL, LYVE_SYNTAX, "Unexpected value \"%.*s\" in the \"%s\" element.",
(int)xmlctx->value_len, xmlctx->value, name);
rc = LY_EVALID;
goto cleanup;
}
rc = lyd_create_opaq(xmlctx->ctx, name, strlen(name), prefix, prefix_len, uri, strlen(uri), xmlctx->value,
xmlctx->ws_only ? 0 : xmlctx->value_len, NULL, LY_VALUE_XML, NULL, 0, envp);
LY_CHECK_GOTO(rc, cleanup);
((struct lyd_node_opaq *)(*envp))->attr = attr;
attr = NULL;
LY_CHECK_GOTO(rc = lyxml_ctx_next(xmlctx), cleanup);
cleanup:
lyd_free_attr_siblings(xmlctx->ctx, attr);
if (rc) {
lyd_free_tree(*envp);
*envp = NULL;
}
return rc;
}
LY_ERR
lyd_parse_xml(const struct ly_ctx *ctx, struct lyd_node *parent, struct lyd_node **first_p, struct ly_in *in,
uint32_t parse_opts, uint32_t val_opts, uint32_t int_opts, struct ly_set *parsed, struct lyd_ctx **lydctx_p)
{
LY_ERR r, rc = LY_SUCCESS;
struct lyd_xml_ctx *lydctx;
ly_bool parsed_data_nodes = 0, close_elem = 0;
struct lyd_node *act = NULL;
assert(ctx && in && lydctx_p);
assert(!(parse_opts & ~LYD_PARSE_OPTS_MASK));
assert(!(val_opts & ~LYD_VALIDATE_OPTS_MASK));
lydctx = calloc(1, sizeof *lydctx);
LY_CHECK_ERR_RET(!lydctx, LOGMEM(ctx), LY_EMEM);
LY_CHECK_GOTO(rc = lyxml_ctx_new(ctx, in, &lydctx->xmlctx), cleanup);
lydctx->parse_opts = parse_opts;
lydctx->val_opts = val_opts;
lydctx->int_opts = int_opts;
lydctx->free = lyd_xml_ctx_free;
LY_CHECK_GOTO(rc = lyd_parser_find_operation(parent, int_opts, &lydctx->op_node), cleanup);
if ((int_opts & LYD_INTOPT_RPC) && (int_opts & LYD_INTOPT_ACTION)) {
if (!lydxml_envelope(lydctx->xmlctx, "action", "urn:ietf:params:xml:ns:yang:1", 0, &act)) {
close_elem = 1;
int_opts &= ~LYD_INTOPT_RPC;
}
}
while (lydctx->xmlctx->status == LYXML_ELEMENT) {
r = lydxml_subtree_r(lydctx, parent, first_p, parsed);
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
parsed_data_nodes = 1;
if (!(int_opts & LYD_INTOPT_WITH_SIBLINGS)) {
break;
}
}
if (close_elem) {
if (lydctx->xmlctx->status != LYXML_ELEM_CLOSE) {
assert(lydctx->xmlctx->status == LYXML_ELEMENT);
LOGVAL(ctx, NULL, LYVE_SYNTAX, "Unexpected child element \"%.*s\".", (int)lydctx->xmlctx->name_len,
lydctx->xmlctx->name);
rc = LY_EVALID;
goto cleanup;
}
LY_CHECK_GOTO(rc = lyxml_ctx_next(lydctx->xmlctx), cleanup);
}
if ((int_opts & LYD_INTOPT_NO_SIBLINGS) && (lydctx->xmlctx->status == LYXML_ELEMENT)) {
LOGVAL(ctx, NULL, LYVE_SYNTAX, "Unexpected sibling node.");
r = LY_EVALID;
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
}
if ((int_opts & (LYD_INTOPT_RPC | LYD_INTOPT_ACTION | LYD_INTOPT_NOTIF | LYD_INTOPT_REPLY)) && !lydctx->op_node) {
LOGVAL(ctx, NULL, LYVE_DATA, "Missing the operation node.");
r = LY_EVALID;
LY_DPARSER_ERR_GOTO(r, rc = r, lydctx, cleanup);
}
if (!parsed_data_nodes) {
lydctx->op_node = NULL;
}
cleanup:
assert(!(parse_opts & LYD_PARSE_ONLY) || (!lydctx->node_types.count && !lydctx->meta_types.count &&
!lydctx->node_when.count));
lyd_free_tree(act);
if (rc && (!(lydctx->val_opts & LYD_VALIDATE_MULTI_ERROR) || (rc != LY_EVALID))) {
lyd_xml_ctx_free((struct lyd_ctx *)lydctx);
} else {
*lydctx_p = (struct lyd_ctx *)lydctx;
lyxml_ctx_free(lydctx->xmlctx);
lydctx->xmlctx = NULL;
}
return rc;
}
static LY_ERR
lydxml_env_netconf_rpc(struct lyxml_ctx *xmlctx, struct lyd_node **envp, uint32_t *int_opts, uint32_t *close_elem)
{
LY_ERR rc = LY_SUCCESS, r;
struct lyd_node *child;
assert(envp && !*envp);
r = lydxml_envelope(xmlctx, "rpc", "urn:ietf:params:xml:ns:netconf:base:1.0", 0, envp);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
r = lydxml_envelope(xmlctx, "action", "urn:ietf:params:xml:ns:yang:1", 0, &child);
if (r == LY_SUCCESS) {
lyd_insert_node(*envp, NULL, child, LYD_INSERT_NODE_DEFAULT);
*int_opts = LYD_INTOPT_NO_SIBLINGS | LYD_INTOPT_ACTION;
*close_elem = 2;
} else if (r == LY_ENOT) {
*int_opts = LYD_INTOPT_NO_SIBLINGS | LYD_INTOPT_RPC;
*close_elem = 1;
} else {
rc = r;
goto cleanup;
}
cleanup:
if (rc) {
lyd_free_tree(*envp);
*envp = NULL;
}
return rc;
}
static LY_ERR
lydxml_env_netconf_reply(struct lyd_xml_ctx *lydctx, struct lyd_node **envp, uint32_t *int_opts, uint32_t *close_elem)
{
LY_ERR rc = LY_SUCCESS, r;
struct lyxml_ctx *xmlctx = lydctx->xmlctx;
struct lyd_node *child = NULL;
const char *parsed_elem = NULL;
assert(envp && !*envp);
lydctx->parse_opts &= ~LYD_PARSE_STRICT;
lydctx->parse_opts |= LYD_PARSE_OPAQ;
r = lydxml_envelope(xmlctx, "rpc-reply", "urn:ietf:params:xml:ns:netconf:base:1.0", 0, envp);
LY_CHECK_ERR_GOTO(r, rc = r, cleanup);
if (xmlctx->status == LYXML_ELEM_CLOSE) {
LOGVAL(xmlctx->ctx, NULL, LYVE_SYNTAX, "Missing child elements of \"rpc-reply\".");
rc = LY_EVALID;
goto cleanup;
}
r = lydxml_envelope(xmlctx, "ok", "urn:ietf:params:xml:ns:netconf:base:1.0", 0, &child);
if (r == LY_SUCCESS) {
lyd_insert_node(*envp, NULL, child, LYD_INSERT_NODE_LAST);
if (xmlctx->status != LYXML_ELEM_CLOSE) {
assert(xmlctx->status == LYXML_ELEMENT);
LOGVAL(xmlctx->ctx, NULL, LYVE_SYNTAX, "Unexpected child element \"%.*s\" of \"ok\".",
(int)xmlctx->name_len, xmlctx->name);
rc = LY_EVALID;
goto cleanup;
}
LY_CHECK_GOTO(rc = lyxml_ctx_next(xmlctx), cleanup);
parsed_elem = "ok";
goto finish;
} else if (r != LY_ENOT) {
rc = r;
goto cleanup;
}
while ((xmlctx->status == LYXML_ELEMENT) && !ly_strncmp("rpc-error", xmlctx->name, xmlctx->name_len)) {
LY_CHECK_GOTO(rc = lydxml_subtree_r(lydctx, *envp, lyd_node_child_p(*envp), NULL), cleanup);
parsed_elem = "rpc-error";
}
finish:
if (parsed_elem) {
if (xmlctx->status != LYXML_ELEM_CLOSE) {
assert(xmlctx->status == LYXML_ELEMENT);
LOGVAL(xmlctx->ctx, NULL, LYVE_SYNTAX, "Unexpected sibling element \"%.*s\" of \"%s\".",
(int)xmlctx->name_len, xmlctx->name, parsed_elem);
rc = LY_EVALID;
goto cleanup;
}
}
*int_opts = LYD_INTOPT_WITH_SIBLINGS | LYD_INTOPT_REPLY;
*close_elem = 1;
cleanup:
if (rc) {
lyd_free_tree(*envp);
*envp = NULL;
}
return rc;
}
LY_ERR
lyd_parse_xml_netconf(const struct ly_ctx *ctx, struct lyd_node *parent, struct lyd_node **first_p, struct ly_in *in,
uint32_t parse_opts, uint32_t val_opts, enum lyd_type data_type, struct lyd_node **envp, struct ly_set *parsed,
struct lyd_ctx **lydctx_p)
{
LY_ERR rc = LY_SUCCESS;
struct lyd_xml_ctx *lydctx;
struct lyd_node *node;
uint32_t i, int_opts = 0, close_elem = 0;
ly_bool parsed_data_nodes = 0;
assert(ctx && in && lydctx_p);
assert(!(parse_opts & ~LYD_PARSE_OPTS_MASK));
assert(!(val_opts & ~LYD_VALIDATE_OPTS_MASK));
lydctx = calloc(1, sizeof *lydctx);
LY_CHECK_ERR_RET(!lydctx, LOGMEM(ctx), LY_EMEM);
LY_CHECK_GOTO(rc = lyxml_ctx_new(ctx, in, &lydctx->xmlctx), cleanup);
lydctx->parse_opts = parse_opts;
lydctx->val_opts = val_opts;
lydctx->free = lyd_xml_ctx_free;
switch (data_type) {
case LYD_TYPE_RPC_NETCONF:
assert(!parent);
rc = lydxml_env_netconf_rpc(lydctx->xmlctx, envp, &int_opts, &close_elem);
if (rc == LY_ENOT) {
LOGVAL(ctx, NULL, LYVE_DATA, "Missing NETCONF <rpc> envelope or in incorrect namespace.");
}
LY_CHECK_GOTO(rc, cleanup);
break;
case LYD_TYPE_NOTIF_NETCONF:
assert(!parent);
rc = lydxml_envelope(lydctx->xmlctx, "notification", "urn:ietf:params:xml:ns:netconf:notification:1.0", 0, envp);
if (rc == LY_ENOT) {
LOGVAL(ctx, NULL, LYVE_DATA, "Missing NETCONF <notification> envelope or in incorrect namespace.");
}
LY_CHECK_GOTO(rc, cleanup);
int_opts = LYD_INTOPT_WITH_SIBLINGS | LYD_INTOPT_NOTIF | LYD_INTOPT_EVENTTIME;
close_elem = 1;
break;
case LYD_TYPE_REPLY_NETCONF:
assert(parent);
rc = lydxml_env_netconf_reply(lydctx, envp, &int_opts, &close_elem);
if (rc == LY_ENOT) {
LOGVAL(ctx, NULL, LYVE_DATA, "Missing NETCONF <rpc-reply> envelope or in incorrect namespace.");
}
LY_CHECK_GOTO(rc, cleanup);
break;
case LYD_TYPE_RPC_RESTCONF:
assert(parent);
rc = lydxml_envelope(lydctx->xmlctx, "input", lyd_node_module(parent)->ns, 0, envp);
if (rc == LY_ENOT) {
LOGVAL(ctx, NULL, LYVE_DATA, "Missing RESTCONF \"input\" object or in incorrect namespace.");
}
LY_CHECK_GOTO(rc, cleanup);
int_opts = LYD_INTOPT_WITH_SIBLINGS | LYD_INTOPT_RPC | LYD_INTOPT_ACTION;
close_elem = 1;
break;
case LYD_TYPE_REPLY_RESTCONF:
assert(parent);
rc = lydxml_envelope(lydctx->xmlctx, "output", lyd_node_module(parent)->ns, 0, envp);
if (rc == LY_ENOT) {
LOGVAL(ctx, NULL, LYVE_DATA, "Missing RESTCONF \"output\" object or in incorrect namespace.");
}
LY_CHECK_GOTO(rc, cleanup);
int_opts = LYD_INTOPT_WITH_SIBLINGS | LYD_INTOPT_REPLY;
close_elem = 1;
break;
default:
LOGINT(ctx);
rc = LY_EINT;
goto cleanup;
}
lydctx->int_opts = int_opts;
LY_CHECK_GOTO(rc = lyd_parser_find_operation(parent, int_opts, &lydctx->op_node), cleanup);
while (lydctx->xmlctx->status == LYXML_ELEMENT) {
LY_CHECK_GOTO(rc = lydxml_subtree_r(lydctx, parent, first_p, parsed), cleanup);
parsed_data_nodes = 1;
if (!(int_opts & LYD_INTOPT_WITH_SIBLINGS)) {
break;
}
}
for (i = 0; i < close_elem; ++i) {
if (lydctx->xmlctx->status != LYXML_ELEM_CLOSE) {
assert(lydctx->xmlctx->status == LYXML_ELEMENT);
LOGVAL(lydctx->xmlctx->ctx, NULL, LYVE_SYNTAX, "Unexpected child element \"%.*s\".",
(int)lydctx->xmlctx->name_len, lydctx->xmlctx->name);
rc = LY_EVALID;
goto cleanup;
}
LY_CHECK_GOTO(rc = lyxml_ctx_next(lydctx->xmlctx), cleanup);
}
if ((int_opts & LYD_INTOPT_NO_SIBLINGS) && (lydctx->xmlctx->status == LYXML_ELEMENT)) {
LOGVAL(ctx, NULL, LYVE_SYNTAX, "Unexpected sibling node.");
rc = LY_EVALID;
goto cleanup;
}
if ((int_opts & (LYD_INTOPT_RPC | LYD_INTOPT_ACTION | LYD_INTOPT_NOTIF | LYD_INTOPT_REPLY)) && !lydctx->op_node) {
LOGVAL(ctx, NULL, LYVE_DATA, "Missing the operation node.");
rc = LY_EVALID;
goto cleanup;
}
if (int_opts & LYD_INTOPT_EVENTTIME) {
node = (*first_p)->prev;
if (node->schema) {
LOGVAL(ctx, NULL, LYVE_DATA, "Missing notification \"eventTime\" node.");
rc = LY_EVALID;
goto cleanup;
} else {
assert(!strcmp(LYD_NAME(node), "eventTime") && (*first_p)->next);
lyd_unlink(node);
assert(*envp);
lyd_insert_child(*envp, node);
}
}
if (!parsed_data_nodes) {
lydctx->op_node = NULL;
}
cleanup:
assert(!(parse_opts & LYD_PARSE_ONLY) || (!lydctx->node_types.count && !lydctx->meta_types.count &&
!lydctx->node_when.count));
if (rc) {
lyd_xml_ctx_free((struct lyd_ctx *)lydctx);
} else {
*lydctx_p = (struct lyd_ctx *)lydctx;
lyxml_ctx_free(lydctx->xmlctx);
lydctx->xmlctx = NULL;
}
return rc;
}