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220 lines
5.6 KiB
C
220 lines
5.6 KiB
C
9 years ago
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/*
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* Yet another daemon library especially designed to be used
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* with libsxmp based daemons.
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*
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* (c) Alexander Vdolainen 2016 <avdolainen@zoho.com>
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*
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* libsxmp is free software: you can redistribute it and/or modify it
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* under the terms of the GNU Lesser General Public License as published
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* by the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* libsxmp is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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* See the GNU Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.";
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*
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*/
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#define DMUX_USE 1
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#include <ydaemon/dataobject.h>
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yd_filter_t *yd_filter_create(domx_t *refobj)
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{
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yd_filter_t *f = malloc(sizeof(yd_filter_t));
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if(f) {
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f->domx = refobj;
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list_init_head(&f->filter);
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}
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return f;
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}
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void yd_filter_destroy(yd_filter_t *f)
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{
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list_head_t *lhead;
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list_node_t *iter, *siter, *liter, *lsiter;
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yd_filter_item_t *filter_item;
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yd_inlist_item_t *inl_item;
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dataobject_t *obj;
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uint64_t len;
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uint8_t type;
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if(!f) return;
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else {
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lhead = &f->filter;
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obj = f->domx->dox;
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}
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list_for_each_safe(lhead, iter, siter) {
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filter_item = container_of(iter, yd_filter_item_t, node);
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type = dotr_item_type(obj, filter_item->name, &len);
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if(type && len) {
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switch(filter_item->ftype) {
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case YDEQUAL:
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case YDNOTEQUAL:
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if(type == CSTR || type == TBLOB) free(filter_item->cstr);
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break;
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case YDINLIST:
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/* we must destroy the list */
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list_for_each_safe(filter_item->inlist, liter, lsiter) {
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inl_item = container_of(liter, yd_inlist_item_t, node);
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if(type == CSTR || type == TBLOB) free(inl_item->dta);
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list_del(&inl_item->node);
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free(inl_item);
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}
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free(filter_item->inlist);
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break;
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default: break; /* nothing to do */
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}
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}
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/* free struct itself */
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list_del(&filter_item->node);
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free(filter_item);
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}
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free(f);
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return;
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}
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static yd_filter_item_t *__alloc_init_fitem(filt_t ftype, char *name)
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{
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yd_filter_item_t *fitem = NULL;
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if(name && (fitem = malloc(sizeof(yd_filter_item_t)))) {
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memset(fitem, 0, sizeof(yd_filter_item_t));
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fitem->name = name;
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fitem->ftype = ftype;
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list_init_node(&fitem->node);
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}
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return fitem;
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}
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int yd_filter_add_sf(yd_filter_t *f, const char *name, filt_t ftype,
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uint64_t vf, uint64_t vc)
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{
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yd_filter_item_t *fitem;
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dataobject_t *obj;
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uint64_t len;
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uint8_t type;
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if(!f || !name) return EINVAL;
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/* lookup for existing entry and check it */
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obj = f->domx->dox;
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type = dotr_item_type(obj, name, &len);
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if(!type && !len) return EINVAL;
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/* check validity */
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if((type < CSTR) && (len > tltable[type].len)) return EINVAL; /* we cannot filter by array here */
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if(type > S64) return EINVAL; /* we're adding a simple filter rule */
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if(ftype == YDINLIST) return EINVAL; /* we're not working with that in this function */
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fitem = __alloc_init_fitem(ftype, dotr_item_nameptr(obj, name));
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if(!fitem) return ENOMEM;
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fitem->vf = vf;
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if(ftype == YDINLIST) fitem->vc = vc;
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/* add this entry */
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list_add2tail(&f->filter, &fitem->node);
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return 0;
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}
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int yd_filter_add_str(yd_filter_t *f, const char *name, const char *value, int eq)
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{
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yd_filter_item_t *fitem;
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dataobject_t *obj;
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filt_t ftype;
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uint64_t len;
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uint8_t type;
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if(!f || !name) return EINVAL;
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/* lookup for existing entry and check it */
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obj = f->domx->dox;
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type = dotr_item_type(obj, name, &len);
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if(!type && !len) return EINVAL;
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if(type != CSTR) return EINVAL; /* cannot do it, invalid */
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if(!eq) ftype = YDNOTEQUAL;
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else ftype = YDEQUAL;
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fitem = __alloc_init_fitem(ftype, dotr_item_nameptr(obj, name));
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if(!fitem) return ENOMEM;
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if(!(fitem->cstr = strndup(value, len - sizeof(char)))) {
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free(fitem);
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return ENOMEM;
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}
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/* add this entry */
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list_add2tail(&f->filter, &fitem->node);
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return 0;
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}
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int yd_filter_add_inlist(yd_filter_t *f, const char *name, int length, void **array)
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{
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yd_filter_item_t *fitem;
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yd_inlist_item_t *list_item;
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dataobject_t *obj;
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list_node_t *iter, *siter;
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uint64_t len;
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int i;
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uint8_t type;
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if(!f || !name) return EINVAL;
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if(!length || !array) return EINVAL;
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/* lookup for existing entry and check it */
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obj = f->domx->dox;
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type = dotr_item_type(obj, name, &len);
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if(!type && !len) return EINVAL;
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fitem = __alloc_init_fitem(YDINLIST, dotr_item_nameptr(obj, name));
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if(!fitem) return ENOMEM;
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if(!(fitem->inlist = malloc(sizeof(list_head_t)))) {
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__enomem:
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free(fitem);
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return ENOMEM;
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}
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/* fill the list */
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for(i = 0; i < length; i++) {
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if(!(list_item = malloc(sizeof(yd_inlist_item_t)))) {
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__deep_enomem:
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list_for_each_safe(fitem->inlist, iter, siter) {
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list_item = container_of(iter, yd_inlist_item_t, node);
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if(type == CSTR || type == TBLOB) free(list_item->dta);
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list_del(&list_item->node);
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free(list_item);
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}
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/* free the list */
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free(fitem->inlist);
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goto __enomem;
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}
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if(type < CSTR) list_item->val = *(uint64_t *)array[i];
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else if(!(list_item->dta = strndup((const char *)array[i], len - sizeof(char)))) goto __deep_enomem;
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list_init_node(&list_item->node);
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list_add2tail(fitem->inlist, &list_item->node);
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}
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/* add this entry */
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list_add2tail(&f->filter, &fitem->node);
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return 0;
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}
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