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The netmask applied to table entries as configured using ipmask() is stored in arg_p->data.ip not arg_i (which will be 1 if the netmask is set).
577 lines
15 KiB
C
577 lines
15 KiB
C
/*
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* Patterns management functions.
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*
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* Copyright 2009-2010 EXCELIANCE, Emeric Brun <ebrun@exceliance.fr>
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version
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* 2 of the License, or (at your option) any later version.
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*
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*/
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#include <string.h>
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#include <arpa/inet.h>
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#include <proto/pattern.h>
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#include <proto/buffers.h>
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#include <common/standard.h>
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/* static structure used on pattern_process if <p> is NULL*/
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static struct pattern spattern;
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/* trash chunk used for pattern conversions */
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static struct chunk trash_chunk;
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/* trash buffers used or pattern conversions */
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static char pattern_trash_buf1[BUFSIZE];
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static char pattern_trash_buf2[BUFSIZE];
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/* pattern_trash_buf point on used buffer*/
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static char *pattern_trash_buf = pattern_trash_buf1;
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/* list head of all known pattern fetch keywords */
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static struct pattern_fetch_kw_list pattern_fetches = {
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.list = LIST_HEAD_INIT(pattern_fetches.list)
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};
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/* list head of all known pattern format conversion keywords */
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static struct pattern_conv_kw_list pattern_convs = {
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.list = LIST_HEAD_INIT(pattern_convs.list)
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};
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/*
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* Registers the pattern fetch keyword list <kwl> as a list of valid keywords for next
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* parsing sessions.
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*/
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void pattern_register_fetches(struct pattern_fetch_kw_list *pfkl)
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{
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LIST_ADDQ(&pattern_fetches.list, &pfkl->list);
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}
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/*
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* Registers the pattern format coverstion keyword list <pckl> as a list of valid keywords for next
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* parsing sessions.
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*/
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void pattern_register_convs(struct pattern_conv_kw_list *pckl)
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{
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LIST_ADDQ(&pattern_convs.list, &pckl->list);
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}
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/*
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* Returns the pointer on pattern fetch keyword structure identified by
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* string of <len> in buffer <kw>.
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*
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*/
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struct pattern_fetch *find_pattern_fetch(const char *kw, int len)
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{
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int index;
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struct pattern_fetch_kw_list *kwl;
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list_for_each_entry(kwl, &pattern_fetches.list, list) {
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for (index = 0; kwl->kw[index].kw != NULL; index++) {
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if (strncmp(kwl->kw[index].kw, kw, len) == 0 &&
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kwl->kw[index].kw[len] == '\0')
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return &kwl->kw[index];
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}
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}
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return NULL;
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}
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/*
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* Returns the pointer on pattern format conversion keyword structure identified by
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* string of <len> in buffer <kw>.
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*
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*/
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struct pattern_conv *find_pattern_conv(const char *kw, int len)
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{
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int index;
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struct pattern_conv_kw_list *kwl;
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list_for_each_entry(kwl, &pattern_convs.list, list) {
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for (index = 0; kwl->kw[index].kw != NULL; index++) {
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if (strncmp(kwl->kw[index].kw, kw, len) == 0 &&
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kwl->kw[index].kw[len] == '\0')
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return &kwl->kw[index];
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}
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}
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return NULL;
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}
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/*
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* Returns a static trash struct chunk to use in pattern casts or format conversions
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* Swiths the 2 available trash buffers to protect data during convert
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*/
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static struct chunk *get_trash_chunk(void)
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{
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if (pattern_trash_buf == pattern_trash_buf1)
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pattern_trash_buf = pattern_trash_buf2;
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else
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pattern_trash_buf = pattern_trash_buf1;
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chunk_init(&trash_chunk, pattern_trash_buf, BUFSIZE);
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return &trash_chunk;
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}
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/*
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* Used to set pattern data from a struct chunk, could be the trash struct chunk
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*/
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static void pattern_data_setstring(union pattern_data *data, struct chunk *c)
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{
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chunk_initlen(&data->str, c->str, c->size, c->len);
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}
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/******************************************************************/
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/* Pattern casts functions */
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/******************************************************************/
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static int c_ip2int(union pattern_data *data)
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{
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data->integer = ntohl(data->ip.s_addr);
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return 1;
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}
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static int c_ip2str(union pattern_data *data)
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{
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struct chunk *trash = get_trash_chunk();
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if (!inet_ntop(AF_INET, (void *)&data->ip, trash->str, trash->size))
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return 0;
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trash->len = strlen(trash->str);
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pattern_data_setstring(data, trash);
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return 1;
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}
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static int c_ip2ipv6(union pattern_data *data)
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{
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v4tov6(&data->ipv6, &data->ip);
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return 1;
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}
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static int c_ipv62str(union pattern_data *data)
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{
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struct chunk *trash = get_trash_chunk();
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if (!inet_ntop(AF_INET6, (void *)&data->ipv6, trash->str, trash->size))
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return 0;
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trash->len = strlen(trash->str);
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pattern_data_setstring(data, trash);
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return 1;
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}
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/*
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static int c_ipv62ip(union pattern_data *data)
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{
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return v6tov4(&data->ip, &data->ipv6);
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}
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*/
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static int c_int2ip(union pattern_data *data)
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{
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data->ip.s_addr = htonl(data->integer);
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return 1;
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}
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static int c_str2ip(union pattern_data *data)
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{
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if (!buf2ip(data->str.str, data->str.len, &data->ip))
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return 0;
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return 1;
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}
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static int c_str2ipv6(union pattern_data *data)
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{
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return inet_pton(AF_INET6, data->str.str, &data->ipv6);
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}
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static int c_int2str(union pattern_data *data)
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{
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struct chunk *trash = get_trash_chunk();
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char *pos;
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pos = ultoa_r(data->integer, trash->str, trash->size);
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if (!pos)
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return 0;
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trash->size = trash->size - (pos - trash->str);
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trash->str = pos;
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trash->len = strlen(pos);
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pattern_data_setstring(data, trash);
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return 1;
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}
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static int c_datadup(union pattern_data *data)
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{
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struct chunk *trash = get_trash_chunk();
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trash->len = data->str.len < trash->size ? data->str.len : trash->size;
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memcpy(trash->str, data->str.str, trash->len);
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pattern_data_setstring(data, trash);
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return 1;
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}
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static int c_donothing(union pattern_data *data)
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{
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return 1;
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}
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static int c_str2int(union pattern_data *data)
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{
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int i;
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uint32_t ret = 0;
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for (i = 0; i < data->str.len; i++) {
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uint32_t val = data->str.str[i] - '0';
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if (val > 9)
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break;
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ret = ret * 10 + val;
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}
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data->integer = ret;
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return 1;
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}
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/*****************************************************************/
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/* Pattern casts matrix: */
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/* pattern_casts[from type][to type] */
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/* NULL pointer used for impossible pattern casts */
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/*****************************************************************/
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typedef int (*pattern_cast_fct)(union pattern_data *data);
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static pattern_cast_fct pattern_casts[PATTERN_TYPES][PATTERN_TYPES] = {
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/* to: IP IPV6 INTEGER STRING DATA CONSTSTRING CONSTDATA */
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/* from: IP */ { c_donothing, c_ip2ipv6, c_ip2int, c_ip2str, NULL, c_ip2str, NULL },
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/* IPV6 */ { NULL, c_donothing, NULL, c_ipv62str, NULL, c_ipv62str, NULL },
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/* INTEGER */ { c_int2ip, NULL, c_donothing, c_int2str, NULL, c_int2str, NULL },
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/* STRING */ { c_str2ip, c_str2ipv6, c_str2int, c_donothing, c_donothing, c_donothing, c_donothing },
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/* DATA */ { NULL, NULL, NULL, NULL, c_donothing, NULL, c_donothing },
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/* CONSTSTRING */ { c_str2ip, c_str2ipv6, c_str2int, c_datadup, c_datadup, c_donothing, c_donothing },
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/* CONSTDATA */ { NULL, NULL, NULL, NULL, c_datadup, NULL, c_donothing },
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};
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/*
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* Parse a pattern expression configuration:
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* fetch keyword followed by format conversion keywords.
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* Returns a pointer on allocated pattern expression structure.
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*/
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struct pattern_expr *pattern_parse_expr(char **str, int *idx, char *err, int err_size)
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{
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const char *endw;
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const char *end;
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struct pattern_expr *expr;
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struct pattern_fetch *fetch;
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struct pattern_conv *conv;
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unsigned long prev_type;
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char *p;
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snprintf(err, err_size, "memory error.");
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if (!str[*idx]) {
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snprintf(err, err_size, "missing fetch method.");
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goto out_error;
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}
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end = str[*idx] + strlen(str[*idx]);
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endw = strchr(str[*idx], '(');
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if (!endw)
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endw = end;
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else if ((end-1)[0] != ')') {
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p = my_strndup(str[*idx], endw - str[*idx]);
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if (p) {
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snprintf(err, err_size, "syntax error: missing ')' after keyword '%s'.", p);
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free(p);
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}
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goto out_error;
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}
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fetch = find_pattern_fetch(str[*idx], endw - str[*idx]);
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if (!fetch) {
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p = my_strndup(str[*idx], endw - str[*idx]);
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if (p) {
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snprintf(err, err_size, "unknown fetch method '%s'.", p);
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free(p);
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}
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goto out_error;
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}
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if (fetch->out_type >= PATTERN_TYPES) {
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p = my_strndup(str[*idx], endw - str[*idx]);
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if (p) {
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snprintf(err, err_size, "returns type of fetch method '%s' is unknown.", p);
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free(p);
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}
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goto out_error;
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}
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prev_type = fetch->out_type;
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expr = calloc(1, sizeof(struct pattern_expr));
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if (!expr)
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goto out_error;
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LIST_INIT(&(expr->conv_exprs));
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expr->fetch = fetch;
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if (end != endw) {
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int i = end - endw - 2;
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if (!fetch->parse_args) {
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p = my_strndup(str[*idx], endw - str[*idx]);
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if (p) {
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snprintf(err, err_size, "fetch method '%s' does not support any args.", p);
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free(p);
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}
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goto out_error;
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}
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p = my_strndup(endw + 1, i);
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if (!p)
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goto out_error;
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i = fetch->parse_args(p, &expr->arg_p, &expr->arg_i);
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free(p);
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if (!i) {
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p = my_strndup(str[*idx], endw - str[*idx]);
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if (p) {
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snprintf(err, err_size, "invalid args in fetch method '%s'.", p);
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free(p);
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}
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goto out_error;
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}
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}
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else if (fetch->parse_args) {
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p = my_strndup(str[*idx], endw - str[*idx]);
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if (p) {
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snprintf(err, err_size, "missing args for fetch method '%s'.", p);
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free(p);
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}
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goto out_error;
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}
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for (*idx += 1; *(str[*idx]); (*idx)++) {
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struct pattern_conv_expr *conv_expr;
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end = str[*idx] + strlen(str[*idx]);
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endw = strchr(str[*idx], '(');
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if (!endw)
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endw = end;
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else if ((end-1)[0] != ')') {
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p = my_strndup(str[*idx], endw - str[*idx]);
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if (p) {
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snprintf(err, err_size, "syntax error, missing ')' after keyword '%s'.", p);
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free(p);
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}
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goto out_error;
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}
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conv = find_pattern_conv(str[*idx], endw - str[*idx]);
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if (!conv)
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break;
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if (conv->in_type >= PATTERN_TYPES ||
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conv->out_type >= PATTERN_TYPES) {
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p = my_strndup(str[*idx], endw - str[*idx]);
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if (p) {
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snprintf(err, err_size, "returns type of conv method '%s' is unknown.", p);
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free(p);
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}
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goto out_error;
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}
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/* If impossible type conversion */
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if (!pattern_casts[prev_type][conv->in_type]) {
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p = my_strndup(str[*idx], endw - str[*idx]);
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if (p) {
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snprintf(err, err_size, "conv method '%s' cannot be applied.", p);
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free(p);
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}
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goto out_error;
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}
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prev_type = conv->out_type;
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conv_expr = calloc(1, sizeof(struct pattern_conv_expr));
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if (!conv_expr)
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goto out_error;
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LIST_ADDQ(&(expr->conv_exprs), &(conv_expr->list));
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conv_expr->conv = conv;
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if (end != endw) {
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int i = end - endw - 2;
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if (!conv->parse_args) {
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p = my_strndup(str[*idx], endw - str[*idx]);
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if (p) {
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snprintf(err, err_size, "conv method '%s' does not support any args.", p);
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free(p);
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}
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goto out_error;
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}
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p = my_strndup(endw + 1, i);
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if (!p)
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goto out_error;
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i = conv->parse_args(p, &conv_expr->arg_p, &conv_expr->arg_i);
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free(p);
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if (!i) {
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p = my_strndup(str[*idx], endw - str[*idx]);
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if (p) {
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snprintf(err, err_size, "invalid args in conv method '%s'.", p);
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free(p);
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}
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goto out_error;
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}
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}
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else if (conv->parse_args) {
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p = my_strndup(str[*idx], endw - str[*idx]);
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if (p) {
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snprintf(err, err_size, "missing args for conv method '%s'.", p);
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free(p);
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}
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goto out_error;
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}
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}
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return expr;
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out_error:
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/* TODO: prune_pattern_expr(expr); */
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return NULL;
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}
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/*
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* Process a fetch + format conversion of defined by the pattern expression <expr>
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* on request or response considering the <dir> parameter.
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* Returns a pointer on a typed pattern structure containing the result or NULL if
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* pattern is not found or when format conversion failed.
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* If <p> is not null, function returns results in structure pointed by <p>.
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* If <p> is null, functions returns a pointer on a static pattern structure.
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*/
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struct pattern *pattern_process(struct proxy *px, struct session *l4, void *l7, int dir,
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struct pattern_expr *expr, struct pattern *p)
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{
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struct pattern_conv_expr *conv_expr;
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if (p == NULL)
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p = &spattern;
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if (!expr->fetch->process(px, l4, l7, dir, expr->arg_p, expr->arg_i, &p->data))
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return NULL;
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p->type = expr->fetch->out_type;
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list_for_each_entry(conv_expr, &expr->conv_exprs, list) {
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if (!pattern_casts[p->type][conv_expr->conv->in_type](&p->data))
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return NULL;
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p->type = conv_expr->conv->in_type;
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if (!conv_expr->conv->process(conv_expr->arg_p, conv_expr->arg_i, &p->data))
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return NULL;
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p->type = conv_expr->conv->out_type;
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}
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return p;
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}
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/* Converts an argument string mask to a pattern_arg type IP.
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* Returns non-zero in case of success, 0 on error.
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*/
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int pattern_arg_ipmask(const char *arg_str, struct pattern_arg **arg_p, int *arg_i)
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{
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*arg_i = 1;
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*arg_p = calloc(1, *arg_i*sizeof(struct pattern_arg));
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(*arg_p)->type = PATTERN_ARG_TYPE_IP;
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if (!str2mask(arg_str, &(*arg_p)->data.ip))
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return 0;
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return 1;
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}
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/* Converts an argument string to a pattern_arg type STRING.
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* Returns non-zero in case of success, 0 on error.
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*/
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int pattern_arg_str(const char *arg_str, struct pattern_arg **arg_p, int *arg_i)
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{
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*arg_i = 1;
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*arg_p = calloc(1, *arg_i*sizeof(struct pattern_arg));
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(*arg_p)->type = PATTERN_ARG_TYPE_STRING;
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(*arg_p)->data.str.str = strdup(arg_str);
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(*arg_p)->data.str.len = strlen(arg_str);
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return 1;
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}
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/*****************************************************************/
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/* Pattern format convert functions */
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/*****************************************************************/
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static int pattern_conv_str2lower(const struct pattern_arg *arg_p, int arg_i, union pattern_data *data)
|
|
{
|
|
int i;
|
|
|
|
if (!data->str.size)
|
|
return 0;
|
|
|
|
for (i = 0; i < data->str.len; i++) {
|
|
if ((data->str.str[i] >= 'A') && (data->str.str[i] <= 'Z'))
|
|
data->str.str[i] += 'a' - 'A';
|
|
}
|
|
return 1;
|
|
}
|
|
|
|
static int pattern_conv_str2upper(const struct pattern_arg *arg_p, int arg_i, union pattern_data *data)
|
|
{
|
|
int i;
|
|
|
|
if (!data->str.size)
|
|
return 0;
|
|
|
|
for (i = 0; i < data->str.len; i++) {
|
|
if ((data->str.str[i] >= 'a') && (data->str.str[i] <= 'z'))
|
|
data->str.str[i] += 'A' - 'a';
|
|
}
|
|
return 1;
|
|
}
|
|
|
|
/* takes the netmask in arg_i */
|
|
static int pattern_conv_ipmask(const struct pattern_arg *arg_p, int arg_i, union pattern_data *data)
|
|
{
|
|
data->ip.s_addr &= arg_p->data.ip.s_addr;
|
|
return 1;
|
|
}
|
|
|
|
/* Note: must not be declared <const> as its list will be overwritten */
|
|
static struct pattern_conv_kw_list pattern_conv_kws = {{ },{
|
|
{ "upper", pattern_conv_str2upper, NULL, PATTERN_TYPE_STRING, PATTERN_TYPE_STRING },
|
|
{ "lower", pattern_conv_str2lower, NULL, PATTERN_TYPE_STRING, PATTERN_TYPE_STRING },
|
|
{ "ipmask", pattern_conv_ipmask, pattern_arg_ipmask, PATTERN_TYPE_IP, PATTERN_TYPE_IP },
|
|
{ NULL, NULL, NULL, 0, 0 },
|
|
}};
|
|
|
|
__attribute__((constructor))
|
|
static void __pattern_init(void)
|
|
{
|
|
/* register pattern format convert keywords */
|
|
pattern_register_convs(&pattern_conv_kws);
|
|
}
|