/** * @file xmlnode.c XML DOM functions * * gaim * * Gaim is the legal property of its developers, whose names are too numerous * to list here. Please refer to the COPYRIGHT file distributed with this * source distribution. * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */ /* A lot of this code at least resembles the code in libxode, but since * libxode uses memory pools that we simply have no need for, I decided to * write my own stuff. Also, re-writing this lets me be as lightweight * as I want to be. Thank you libxode for giving me a good starting point */ #include "internal.h" #include #include #include "xmlnode.h" static xmlnode* new_node(const char *name, XMLNodeType type) { xmlnode *node = g_new0(xmlnode, 1); if(name) node->name = g_strdup(name); node->type = type; return node; } xmlnode* xmlnode_new(const char *name) { g_return_val_if_fail(name != NULL, NULL); return new_node(name, XMLNODE_TYPE_TAG); } xmlnode *xmlnode_new_child(xmlnode *parent, const char *name) { xmlnode *node; g_return_val_if_fail(parent != NULL, NULL); g_return_val_if_fail(name != NULL, NULL); node = new_node(name, XMLNODE_TYPE_TAG); xmlnode_insert_child(parent, node); return node; } void xmlnode_insert_child(xmlnode *parent, xmlnode *child) { g_return_if_fail(parent != NULL); g_return_if_fail(child != NULL); child->parent = parent; if(parent->child) { xmlnode *x; for(x = parent->child; x->next; x = x->next); x->next = child; } else { parent->child = child; } } void xmlnode_insert_data(xmlnode *parent, const char *data, size_t size) { xmlnode *node; size_t real_size; g_return_if_fail(parent != NULL); g_return_if_fail(data != NULL); g_return_if_fail(size != 0); real_size = size == -1 ? strlen(data) : size; node = new_node(NULL, XMLNODE_TYPE_DATA); node->data = g_memdup(data, real_size); node->data_sz = real_size; xmlnode_insert_child(parent, node); } void xmlnode_remove_attrib(xmlnode *node, const char *attr) { xmlnode *attr_node, *sibling = NULL; g_return_if_fail(node != NULL); g_return_if_fail(attr != NULL); for(attr_node = node->child; attr_node; attr_node = attr_node->next) { if(attr_node->type == XMLNODE_TYPE_ATTRIB && !strcmp(attr_node->name, attr)) { if(node->child == attr_node) { node->child = attr_node->next; } else { sibling->next = attr_node->next; } xmlnode_free(attr_node); return; } sibling = attr_node; } } void xmlnode_set_attrib(xmlnode *node, const char *attr, const char *value) { xmlnode *attrib_node; g_return_if_fail(node != NULL); g_return_if_fail(attr != NULL); g_return_if_fail(value != NULL); xmlnode_remove_attrib(node, attr); attrib_node = new_node(attr, XMLNODE_TYPE_ATTRIB); attrib_node->data = g_strdup(value); xmlnode_insert_child(node, attrib_node); } const char* xmlnode_get_attrib(xmlnode *node, const char *attr) { xmlnode *x; g_return_val_if_fail(node != NULL, NULL); for(x = node->child; x; x = x->next) { if(x->type == XMLNODE_TYPE_ATTRIB && !strcmp(attr, x->name)) { return x->data; } } return NULL; } void xmlnode_free(xmlnode *node) { xmlnode *x, *y; g_return_if_fail(node != NULL); x = node->child; while(x) { y = x->next; xmlnode_free(x); x = y; } if(node->name) g_free(node->name); if(node->data) g_free(node->data); g_free(node); } xmlnode* xmlnode_get_child_with_namespace(xmlnode *parent, const char *name, const char *ns) { xmlnode *x, *ret = NULL; char **names; char *parent_name, *child_name; g_return_val_if_fail(parent != NULL, NULL); names = g_strsplit(name, "/", 2); parent_name = names[0]; child_name = names[1]; for(x = parent->child; x; x = x->next) { const char *xmlns = NULL; if(ns) xmlns = xmlnode_get_attrib(x, "xmlns"); if(x->type == XMLNODE_TYPE_TAG && name && !strcmp(parent_name, x->name) && (!ns || (xmlns && !strcmp(ns, xmlns)))) { ret = x; break; } } if(child_name && ret) ret = xmlnode_get_child(ret, child_name); g_strfreev(names); return ret; } xmlnode* xmlnode_get_child(xmlnode *parent, const char *name) { return xmlnode_get_child_with_namespace(parent, name, NULL); } char * xmlnode_get_data(xmlnode *node) { GString *str = NULL; char *ret = NULL; xmlnode *c; g_return_val_if_fail(node != NULL, NULL); for(c = node->child; c; c = c->next) { if(c->type == XMLNODE_TYPE_DATA) { if(!str) str = g_string_new(""); str = g_string_append_len(str, c->data, c->data_sz); } } if(str) { ret = str->str; g_string_free(str, FALSE); } return ret; } char *xmlnode_to_str(xmlnode *node, int *len) { char *ret; GString *text = g_string_new(""); xmlnode *c; char *node_name, *esc, *esc2; gboolean need_end = FALSE; node_name = g_markup_escape_text(node->name, -1); g_string_append_printf(text, "<%s", node_name); for(c = node->child; c; c = c->next) { if(c->type == XMLNODE_TYPE_ATTRIB) { esc = g_markup_escape_text(c->name, -1); esc2 = g_markup_escape_text(c->data, -1); g_string_append_printf(text, " %s='%s'", esc, esc2); g_free(esc); g_free(esc2); } else if(c->type == XMLNODE_TYPE_TAG || c->type == XMLNODE_TYPE_DATA) { need_end = TRUE; } } if(need_end) { text = g_string_append_c(text, '>'); for(c = node->child; c; c = c->next) { if(c->type == XMLNODE_TYPE_TAG) { int esc_len; esc = xmlnode_to_str(c, &esc_len); text = g_string_append_len(text, esc, esc_len); g_free(esc); } else if(c->type == XMLNODE_TYPE_DATA) { esc = g_markup_escape_text(c->data, c->data_sz); text = g_string_append(text, esc); g_free(esc); } } g_string_append_printf(text, "", node_name); } else { g_string_append_printf(text, "/>"); } g_free(node_name); ret = text->str; if(len) *len = text->len; g_string_free(text, FALSE); return ret; } struct _xmlnode_parser_data { xmlnode *current; }; static void xmlnode_parser_element_start(GMarkupParseContext *context, const char *element_name, const char **attrib_names, const char **attrib_values, gpointer user_data, GError **error) { struct _xmlnode_parser_data *xpd = user_data; xmlnode *node; int i; if(!element_name) { return; } else { if(xpd->current) node = xmlnode_new_child(xpd->current, element_name); else node = xmlnode_new(element_name); for(i=0; attrib_names[i]; i++) xmlnode_set_attrib(node, attrib_names[i], attrib_values[i]); xpd->current = node; } } static void xmlnode_parser_element_end(GMarkupParseContext *context, const char *element_name, gpointer user_data, GError **error) { struct _xmlnode_parser_data *xpd = user_data; if(!element_name || !xpd->current) return; if(xpd->current->parent) { if(!strcmp(xpd->current->name, element_name)) xpd->current = xpd->current->parent; } } static void xmlnode_parser_element_text(GMarkupParseContext *context, const char *text, gsize text_len, gpointer user_data, GError **error) { struct _xmlnode_parser_data *xpd = user_data; if(!xpd->current) return; if(!text || !text_len) return; xmlnode_insert_data(xpd->current, text, text_len); } static GMarkupParser xmlnode_parser = { xmlnode_parser_element_start, xmlnode_parser_element_end, xmlnode_parser_element_text, NULL, NULL }; xmlnode *xmlnode_from_str(const char *str, size_t size) { struct _xmlnode_parser_data *xpd = g_new0(struct _xmlnode_parser_data, 1); xmlnode *ret; GMarkupParseContext *context; size_t real_size = size == -1 ? strlen(str) : size; context = g_markup_parse_context_new(&xmlnode_parser, 0, xpd, NULL); if(!g_markup_parse_context_parse(context, str, real_size, NULL)) { while(xpd->current && xpd->current->parent) xpd->current = xpd->current->parent; if(xpd->current) xmlnode_free(xpd->current); xpd->current = NULL; } g_markup_parse_context_free(context); ret = xpd->current; g_free(xpd); return ret; } xmlnode *xmlnode_copy(xmlnode *src) { xmlnode *ret; xmlnode *child; xmlnode *sibling = NULL; if(!src) return NULL; ret = new_node(src->name, src->type); if(src->data) { if(src->data_sz) { ret->data = g_memdup(src->data, src->data_sz); ret->data_sz = src->data_sz; } else { ret->data = g_strdup(src->data); } } for(child = src->child; child; child = child->next) { if(sibling) { sibling->next = xmlnode_copy(child); sibling = sibling->next; } else { ret->child = xmlnode_copy(child); sibling = ret->child; } sibling->parent = ret; } return ret; } xmlnode *xmlnode_get_next_twin(xmlnode *node) { xmlnode *sibling; const char *ns = xmlnode_get_attrib(node, "xmlns"); g_return_val_if_fail(node != NULL, NULL); g_return_val_if_fail(node->type == XMLNODE_TYPE_TAG, NULL); for(sibling = node->next; sibling; sibling = sibling->next) { const char *xmlns = NULL; if(ns) xmlns = xmlnode_get_attrib(sibling, "xmlns"); if(sibling->type == XMLNODE_TYPE_TAG && !strcmp(node->name, sibling->name) && (!ns || (xmlns && !strcmp(ns, xmlns)))) return sibling; } return NULL; }