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synced 2025-08-06 07:07:04 +02:00
MINOR: pattern: add support for compiling patterns for lookups
With this patch, patterns can be compiled for two modes : - match - lookup The match mode is used for example in ACLs or maps. The lookup mode is used to lookup a key for pattern maintenance. For example, looking up a network is different from looking up one address belonging to this network. A special case is made for regex. In lookup mode they return the input regex string and do not compile the regex.
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@ -68,7 +68,7 @@ enum pat_match_res pattern_exec_match(struct pattern_expr *expr, struct sample *
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/* ignore the current line */
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int pat_parse_nothing(const char **text, struct pattern *pattern, int *opaque, char **err);
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int pat_parse_nothing(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err);
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/* NB: For two strings to be identical, it is required that their lengths match */
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enum pat_match_res pat_match_str(struct sample *smp, struct pattern *pattern);
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@ -83,37 +83,37 @@ enum pat_match_res pat_match_len(struct sample *smp, struct pattern *pattern);
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enum pat_match_res pat_match_int(struct sample *smp, struct pattern *pattern);
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/* Parse an integer. It is put both in min and max. */
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int pat_parse_int(const char **text, struct pattern *pattern, int *opaque, char **err);
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int pat_parse_int(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err);
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/* Parse len like an integer, but specify expected string type */
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int pat_parse_len(const char **text, struct pattern *pattern, int *opaque, char **err);
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int pat_parse_len(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err);
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/* Parse an version. It is put both in min and max. */
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int pat_parse_dotted_ver(const char **text, struct pattern *pattern, int *opaque, char **err);
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int pat_parse_dotted_ver(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err);
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/* Parse a range of integers delimited by either ':' or '-'. If only one
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* integer is read, it is set as both min and max.
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*/
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int pat_parse_range(const char **text, struct pattern *pattern, int *opaque, char **err);
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int pat_parse_range(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err);
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/* Parse a string. It is allocated and duplicated. */
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int pat_parse_str(const char **text, struct pattern *pattern, int *opaque, char **err);
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int pat_parse_str(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err);
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/* Parse a hexa binary definition. It is allocated and duplicated. */
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int pat_parse_bin(const char **text, struct pattern *pattern, int *opaque, char **err);
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int pat_parse_bin(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err);
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/* Parse and concatenate strings into one. It is allocated and duplicated. */
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int pat_parse_strcat(const char **text, struct pattern *pattern, int *opaque, char **err);
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int pat_parse_strcat(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err);
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/* Parse a regex. It is allocated. */
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int pat_parse_reg(const char **text, struct pattern *pattern, int *opaque, char **err);
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int pat_parse_reg(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err);
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/* Parse an IP address and an optional mask in the form addr[/mask].
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* The addr may either be an IPv4 address or a hostname. The mask
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* may either be a dotted mask or a number of bits. Returns 1 if OK,
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* otherwise 0.
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*/
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int pat_parse_ip(const char **text, struct pattern *pattern, int *opaque, char **err);
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int pat_parse_ip(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err);
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/* always return false */
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enum pat_match_res pat_match_nothing(struct sample *smp, struct pattern *pattern);
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@ -92,7 +92,7 @@ struct acl_expr;
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struct acl_keyword {
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const char *kw;
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char *fetch_kw;
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int (*parse)(const char **text, struct pattern *pattern, int *opaque, char **err);
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int (*parse)(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err);
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enum pat_match_res (*match)(struct sample *smp, struct pattern *pattern);
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/* must be after the config params */
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struct sample_fetch *smp; /* the sample fetch we depend on */
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@ -61,6 +61,15 @@ enum pat_match_res {
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PAT_MATCH = 3, /* sample matched at least one pattern */
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};
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/* This enum describe the running mode of the function pat_parse_*().
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* The lookup mode does not allocate memory. The compile mode allocate
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* memory and create any data
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*/
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enum pat_usage {
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PAT_U_LOOKUP,
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PAT_U_COMPILE,
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};
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/* possible flags for expressions or patterns */
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enum {
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PAT_F_IGNORE_CASE = 1 << 0, /* ignore case */
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@ -151,14 +160,14 @@ struct pattern {
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* are grouped together in order to optimize caching.
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*/
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struct pattern_expr {
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int (*parse)(const char **text, struct pattern *pattern, int *opaque, char **err);
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int (*parse)(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err);
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enum pat_match_res (*match)(struct sample *smp, struct pattern *pattern);
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struct list patterns; /* list of acl_patterns */
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struct eb_root pattern_tree; /* may be used for lookup in large datasets */
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};
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extern char *pat_match_names[PAT_MATCH_NUM];
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extern int (*pat_parse_fcts[PAT_MATCH_NUM])(const char **, struct pattern *, int *, char **);
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extern int (*pat_parse_fcts[PAT_MATCH_NUM])(const char **, struct pattern *, enum pat_usage, int *, char **);
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extern enum pat_match_res (*pat_match_fcts[PAT_MATCH_NUM])(struct sample *, struct pattern *);
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extern int pat_match_types[PAT_MATCH_NUM];
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@ -40,7 +40,7 @@ char *pat_match_names[PAT_MATCH_NUM] = {
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[PAT_MATCH_REG] = "reg",
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};
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int (*pat_parse_fcts[PAT_MATCH_NUM])(const char **, struct pattern *, int *, char **) = {
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int (*pat_parse_fcts[PAT_MATCH_NUM])(const char **, struct pattern *, enum pat_usage, int *, char **) = {
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[PAT_MATCH_FOUND] = pat_parse_nothing,
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[PAT_MATCH_BOOL] = pat_parse_nothing,
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[PAT_MATCH_INT] = pat_parse_int,
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@ -94,7 +94,7 @@ int pat_match_types[PAT_MATCH_NUM] = {
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*/
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/* ignore the current line */
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int pat_parse_nothing(const char **text, struct pattern *pattern, int *opaque, char **err)
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int pat_parse_nothing(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err)
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{
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return 1;
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}
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@ -419,45 +419,70 @@ static void *pat_lookup_ip(struct sample *smp, struct pattern_expr *expr)
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}
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/* Parse a string. It is allocated and duplicated. */
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int pat_parse_str(const char **text, struct pattern *pattern, int *opaque, char **err)
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int pat_parse_str(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err)
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{
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pattern->type = SMP_T_CSTR;
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pattern->expect_type = SMP_T_CSTR;
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pattern->ptr.str = strdup(*text);
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if (!pattern->ptr.str) {
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memprintf(err, "out of memory while loading string pattern");
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return 0;
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if (usage == PAT_U_COMPILE) {
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pattern->ptr.str = strdup(*text);
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if (!pattern->ptr.str) {
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memprintf(err, "out of memory while loading string pattern");
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return 0;
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}
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}
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else
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pattern->ptr.str = (char *)*text;
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pattern->len = strlen(*text);
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return 1;
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}
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/* Parse a binary written in hexa. It is allocated. */
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int pat_parse_bin(const char **text, struct pattern *pattern, int *opaque, char **err)
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int pat_parse_bin(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err)
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{
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struct chunk *trash;
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pattern->type = SMP_T_CBIN;
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pattern->expect_type = SMP_T_CBIN;
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if (usage == PAT_U_COMPILE)
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return parse_binary(*text, &pattern->ptr.str, &pattern->len, err);
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trash = get_trash_chunk();
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pattern->len = trash->size;
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pattern->ptr.str = trash->str;
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return parse_binary(*text, &pattern->ptr.str, &pattern->len, err);
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}
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/* Parse and concatenate all further strings into one. */
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int
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pat_parse_strcat(const char **text, struct pattern *pattern, int *opaque, char **err)
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pat_parse_strcat(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err)
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{
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int len = 0, i;
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char *s;
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struct chunk *trash;
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for (i = 0; *text[i]; i++)
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len += strlen(text[i])+1;
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pattern->type = SMP_T_CSTR;
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pattern->ptr.str = s = calloc(1, len);
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if (!pattern->ptr.str) {
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memprintf(err, "out of memory while loading pattern");
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return 0;
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if (usage == PAT_U_COMPILE) {
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pattern->ptr.str = calloc(1, len);
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if (!pattern->ptr.str) {
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memprintf(err, "out of memory while loading pattern");
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return 0;
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}
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}
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else {
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trash = get_trash_chunk();
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if (trash->size < len) {
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memprintf(err, "no space avalaible in the buffer. expect %d, provides %d",
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len, trash->size);
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return 0;
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}
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pattern->ptr.str = trash->str;
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}
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s = pattern->ptr.str;
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for (i = 0; *text[i]; i++)
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s += sprintf(s, i?" %s":"%s", text[i]);
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@ -474,24 +499,40 @@ static void pat_free_reg(void *ptr)
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}
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/* Parse a regex. It is allocated. */
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int pat_parse_reg(const char **text, struct pattern *pattern, int *opaque, char **err)
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int pat_parse_reg(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err)
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{
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struct my_regex *preg;
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struct chunk *trash;
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preg = calloc(1, sizeof(*preg));
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if (usage == PAT_U_COMPILE) {
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if (!preg) {
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memprintf(err, "out of memory while loading pattern");
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return 0;
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preg = calloc(1, sizeof(*preg));
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if (!preg) {
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memprintf(err, "out of memory while loading pattern");
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return 0;
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}
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if (!regex_comp(*text, preg, !(pattern->flags & PAT_F_IGNORE_CASE), 0, err)) {
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free(preg);
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return 0;
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}
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pattern->freeptrbuf = &pat_free_reg;
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}
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else {
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if (!regex_comp(*text, preg, !(pattern->flags & PAT_F_IGNORE_CASE), 0, err)) {
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free(preg);
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return 0;
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trash = get_trash_chunk();
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if (trash->size < sizeof(*preg)) {
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memprintf(err, "no space avalaible in the buffer. expect %d, provides %d",
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(int)sizeof(*preg), trash->size);
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return 0;
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}
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preg = (struct my_regex *)trash->str;
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preg->regstr = (char *)*text;
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pattern->freeptrbuf = NULL;
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}
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pattern->ptr.reg = preg;
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pattern->freeptrbuf = &pat_free_reg;
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pattern->expect_type = SMP_T_CSTR;
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return 1;
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}
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@ -510,7 +551,7 @@ int pat_parse_reg(const char **text, struct pattern *pattern, int *opaque, char
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* the caller will have to free it.
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*
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*/
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int pat_parse_int(const char **text, struct pattern *pattern, int *opaque, char **err)
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int pat_parse_int(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err)
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{
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signed long long i;
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unsigned int j, last, skip = 0;
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@ -583,11 +624,11 @@ int pat_parse_int(const char **text, struct pattern *pattern, int *opaque, char
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return skip + 1;
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}
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int pat_parse_len(const char **text, struct pattern *pattern, int *opaque, char **err)
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int pat_parse_len(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err)
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{
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int ret;
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ret = pat_parse_int(text, pattern, opaque, err);
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ret = pat_parse_int(text, pattern, usage, opaque, err);
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pattern->expect_type = SMP_T_CSTR;
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return ret;
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}
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@ -612,7 +653,7 @@ int pat_parse_len(const char **text, struct pattern *pattern, int *opaque, char
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* acl valid_ssl ssl_req_proto 3.0-3.1
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*
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*/
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int pat_parse_dotted_ver(const char **text, struct pattern *pattern, int *opaque, char **err)
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int pat_parse_dotted_ver(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err)
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{
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signed long long i;
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unsigned int j, last, skip = 0;
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@ -703,7 +744,7 @@ int pat_parse_dotted_ver(const char **text, struct pattern *pattern, int *opaque
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* may either be a dotted mask or a number of bits. Returns 1 if OK,
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* otherwise 0. NOTE: IP address patterns are typed (IPV4/IPV6).
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*/
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int pat_parse_ip(const char **text, struct pattern *pattern, int *opaque, char **err)
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int pat_parse_ip(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err)
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{
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pattern->expect_type = SMP_T_ADDR;
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if (str2net(*text, &pattern->val.ipv4.addr, &pattern->val.ipv4.mask)) {
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@ -801,7 +842,7 @@ int pattern_register(struct pattern_expr *expr, const char **args,
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memset(*pattern, 0, sizeof(**pattern));
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(*pattern)->flags = patflags;
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ret = expr->parse(args, *pattern, &opaque, err);
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ret = expr->parse(args, *pattern, PAT_U_COMPILE, &opaque, err);
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if (!ret)
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return 0;
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@ -8735,21 +8735,33 @@ smp_prefetch_http(struct proxy *px, struct session *s, void *l7, unsigned int op
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* We use the pre-parsed method if it is known, and store its number as an
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* integer. If it is unknown, we use the pointer and the length.
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*/
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static int pat_parse_meth(const char **text, struct pattern *pattern, int *opaque, char **err)
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static int pat_parse_meth(const char **text, struct pattern *pattern, enum pat_usage usage, int *opaque, char **err)
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{
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int len, meth;
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struct chunk *trash;
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len = strlen(*text);
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meth = find_http_meth(*text, len);
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pattern->val.i = meth;
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if (meth == HTTP_METH_OTHER) {
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pattern->ptr.str = strdup(*text);
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pattern->expect_type = SMP_T_CSTR;
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if (!pattern->ptr.str) {
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memprintf(err, "out of memory while loading pattern");
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return 0;
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if (usage == PAT_U_COMPILE) {
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pattern->ptr.str = strdup(*text);
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if (!pattern->ptr.str) {
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memprintf(err, "out of memory while loading pattern");
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return 0;
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}
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}
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else {
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trash = get_trash_chunk();
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if (trash->size < len) {
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memprintf(err, "no space avalaible in the buffer. expect %d, provides %d",
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len, trash->size);
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return 0;
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}
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pattern->ptr.str = trash->str;
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}
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pattern->expect_type = SMP_T_CSTR;
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pattern->len = len;
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}
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else
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