mirror of
https://github.com/cgrates/cgrates.git
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321 lines
10 KiB
Go
321 lines
10 KiB
Go
/*
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Real-time Online/Offline Charging System (OCS) for Telecom & ISP environments
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Copyright (C) ITsysCOM GmbH
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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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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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU 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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package config
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import (
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"fmt"
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"regexp"
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"strings"
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"github.com/cgrates/cgrates/utils"
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)
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var (
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spltRgxp = regexp.MustCompile(`:s\/`)
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rulesRgxp = regexp.MustCompile(`(?:(.*[^\\])\/(.*[^\\])*\/){1,}`)
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)
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func NewRSRParsers(parsersRules string, allFiltersMatch bool, rsrSeparator string) (prsrs RSRParsers, err error) {
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if parsersRules == "" {
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return
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}
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if count := strings.Count(parsersRules, "`"); count%2 != 0 { // check if we have matching `
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return nil, fmt.Errorf("Unclosed unspilit syntax")
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} else if count != 0 {
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var splitedRule []string
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for idx := strings.IndexByte(parsersRules, '`'); idx != -1; idx = strings.IndexByte(parsersRules, '`') {
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insideARulePrefix := !strings.HasSuffix(parsersRules[:idx], utils.INFIELD_SEP) // if doesn't have ; we need to concatenate it with last rule
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if insideARulePrefix {
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splitedRule = append(splitedRule, strings.Split(parsersRules[:idx], utils.INFIELD_SEP)...)
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} else {
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splitedRule = append(splitedRule, strings.Split(parsersRules[:idx-1], utils.INFIELD_SEP)...)
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}
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parsersRules = parsersRules[idx+1:]
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idx = strings.IndexByte(parsersRules, '`')
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if insideARulePrefix {
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splitedRule[len(splitedRule)-1] += parsersRules[:idx]
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} else {
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splitedRule = append(splitedRule, parsersRules[:idx])
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}
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parsersRules = parsersRules[idx+1:]
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count -= 2 // the number of ` remaining
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if len(parsersRules) == 0 {
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continue
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}
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insideARuleSufix := !strings.HasPrefix(parsersRules, utils.INFIELD_SEP) // if doesn't have ; we need to concatenate it with last rule
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if insideARuleSufix {
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idx = strings.IndexByte(parsersRules, ';')
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if idx == -1 {
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idx = len(parsersRules)
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splitedRule[len(splitedRule)-1] += parsersRules[:idx]
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break
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}
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splitedRule[len(splitedRule)-1] += parsersRules[:idx]
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} else {
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idx = 0
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}
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parsersRules = parsersRules[idx+1:]
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if len(parsersRules) == 0 {
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break
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}
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if count == 0 { // no more ` so add the rest
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splitedRule = append(splitedRule, strings.Split(parsersRules, utils.INFIELD_SEP)...)
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break
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}
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}
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return NewRSRParsersFromSlice(splitedRule, allFiltersMatch)
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}
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return NewRSRParsersFromSlice(strings.Split(parsersRules, rsrSeparator), allFiltersMatch)
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}
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func NewRSRParsersFromSlice(parsersRules []string, allFiltersMatch bool) (prsrs RSRParsers, err error) {
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prsrs = make(RSRParsers, len(parsersRules))
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for i, rlStr := range parsersRules {
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if rsrPrsr, err := NewRSRParser(rlStr, allFiltersMatch); err != nil {
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return nil, err
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} else if rsrPrsr == nil {
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return nil, fmt.Errorf("emtpy RSRParser in rule: <%s>", rlStr)
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} else {
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prsrs[i] = rsrPrsr
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}
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}
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return
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}
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func NewRSRParsersMustCompile(parsersRules string, allFiltersMatch bool, rsrSeparator string) (prsrs RSRParsers) {
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var err error
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if prsrs, err = NewRSRParsers(parsersRules, allFiltersMatch, rsrSeparator); err != nil {
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panic(fmt.Sprintf("rule: <%s>, error: %s", parsersRules, err.Error()))
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}
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return
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}
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// RSRParsers is a set of RSRParser
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type RSRParsers []*RSRParser
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func (prsrs RSRParsers) GetRule() (out string) {
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for i, prsr := range prsrs {
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if i == 0 {
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out = prsr.Rules
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} else {
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out = out + utils.NestingSep + prsr.Rules
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}
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}
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return
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}
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func (prsrs RSRParsers) Compile() (err error) {
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for _, prsr := range prsrs {
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if err = prsr.Compile(); err != nil {
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return
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}
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}
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return
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}
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// ParseValue will parse the value out considering converters and filters
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func (prsrs RSRParsers) ParseValue(value interface{}) (out string, err error) {
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for _, prsr := range prsrs {
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if outPrsr, err := prsr.ParseValue(value); err != nil {
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return "", err
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} else {
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out += outPrsr
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}
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}
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return
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}
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func (prsrs RSRParsers) ParseDataProvider(dP utils.DataProvider, separator string) (out string, err error) {
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for _, prsr := range prsrs {
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if outPrsr, err := prsr.ParseDataProvider(dP, separator); err != nil {
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return "", err
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} else {
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out += outPrsr
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}
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}
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return
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}
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func (prsrs RSRParsers) ParseDataProviderWithInterfaces(dP utils.DataProvider, separator string) (out string, err error) {
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for _, prsr := range prsrs {
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if outPrsr, err := prsr.ParseDataProviderWithInterfaces(dP, separator); err != nil {
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return "", err
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} else {
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out += outPrsr
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}
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}
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return
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}
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func NewRSRParser(parserRules string, allFiltersMatch bool) (rsrParser *RSRParser, err error) {
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if len(parserRules) == 0 {
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return
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}
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rsrParser = &RSRParser{Rules: parserRules, AllFiltersMatch: allFiltersMatch}
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if strings.HasSuffix(parserRules, utils.FILTER_VAL_END) { // Has filter, populate the var
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fltrStart := strings.Index(parserRules, utils.FILTER_VAL_START)
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if fltrStart < 1 {
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return nil, fmt.Errorf("invalid RSRFilter start rule in string: <%s>", parserRules)
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}
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fltrVal := parserRules[fltrStart+1 : len(parserRules)-1]
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rsrParser.filters, err = utils.ParseRSRFilters(fltrVal, utils.ANDSep)
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if err != nil {
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return nil, fmt.Errorf("Invalid FilterValue in string: %s, err: %s", fltrVal, err.Error())
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}
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parserRules = parserRules[:fltrStart] // Take the filter part out before compiling further
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}
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if idxConverters := strings.Index(parserRules, "{*"); idxConverters != -1 { // converters in the string
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if !strings.HasSuffix(parserRules, "}") {
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return nil,
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fmt.Errorf("invalid converter terminator in rule: <%s>",
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parserRules)
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}
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convertersStr := parserRules[idxConverters+1 : len(parserRules)-1] // strip also {}
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convsSplt := strings.Split(convertersStr, utils.ANDSep)
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rsrParser.converters = make(utils.DataConverters, len(convsSplt))
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for i, convStr := range convsSplt {
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var conv utils.DataConverter
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if conv, err = utils.NewDataConverter(convStr); err != nil {
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return nil,
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fmt.Errorf("invalid converter value in string: <%s>, err: %s",
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convStr, err.Error())
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}
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rsrParser.converters[i] = conv
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}
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parserRules = parserRules[:idxConverters]
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}
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if !strings.HasPrefix(parserRules, utils.DynamicDataPrefix) ||
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len(parserRules) == 1 { // special case when RSR is defined as static attribute
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return
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}
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// dynamic content via attributeNames
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spltRules := spltRgxp.Split(parserRules, -1)
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rsrParser.path = spltRules[0][1:] // in form ~hdr_name
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if len(spltRules) > 1 {
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for _, ruleStr := range spltRules[1:] { // :s/ already removed through split
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allMatches := rulesRgxp.FindStringSubmatch(ruleStr)
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if len(allMatches) != 3 {
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return nil, fmt.Errorf("not enough members in Search&Replace, ruleStr: <%s>, matches: %v, ", ruleStr, allMatches)
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}
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var srRegexp *regexp.Regexp
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if srRegexp, err = regexp.Compile(allMatches[1]); err != nil {
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return nil, fmt.Errorf("invalid Search&Replace subfield rule: <%s>", allMatches[1])
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}
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rsrParser.rsrRules = append(rsrParser.rsrRules, &utils.ReSearchReplace{
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SearchRegexp: srRegexp,
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ReplaceTemplate: allMatches[2],
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})
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}
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}
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return
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}
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func NewRSRParserMustCompile(parserRules string, allFiltersMatch bool) (rsrPrsr *RSRParser) {
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var err error
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if rsrPrsr, err = NewRSRParser(parserRules, allFiltersMatch); err != nil {
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panic(fmt.Sprintf("compiling rules: <%s>, error: %s", parserRules, err.Error()))
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}
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return
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}
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// RSRParser is a parser for data coming from various sources
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type RSRParser struct {
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Rules string // Rules container holding the string rules, public so it can be stored
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AllFiltersMatch bool // all filters must match policy
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path string // instruct extracting info out of header in event
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rsrRules []*utils.ReSearchReplace // rules to use when parsing value
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converters utils.DataConverters // set of converters to apply on output
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filters utils.RSRFilters // The value to compare when used as filter
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}
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// AttrName exports the attribute name of the RSRParser
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func (prsr *RSRParser) AttrName() string {
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return prsr.path
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}
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// Compile parses Rules string and repopulates other fields
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func (prsr *RSRParser) Compile() (err error) {
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var newPrsr *RSRParser
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if newPrsr, err = NewRSRParser(prsr.Rules, prsr.AllFiltersMatch); err != nil {
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return
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}
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if newPrsr != nil {
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*prsr = *newPrsr
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}
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return
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}
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// RegexpMatched will investigate whether we had at least one regexp match through the rules
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func (prsr *RSRParser) RegexpMatched() bool {
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for _, rsrule := range prsr.rsrRules {
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if rsrule.Matched {
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return true
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}
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}
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return false
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}
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// parseValue the field value from a string
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func (prsr *RSRParser) parseValue(value string) string {
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if prsr.path == "" { // Enforce parsing of static values
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return prsr.Rules
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}
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for _, rsRule := range prsr.rsrRules {
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value = rsRule.Process(value)
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}
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return value
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}
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// ParseValue will parse the value out considering converters and filters
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func (prsr *RSRParser) ParseValue(value interface{}) (out string, err error) {
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out = prsr.parseValue(utils.IfaceAsString(value))
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if out, err = prsr.converters.ConvertString(out); err != nil {
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return
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}
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if !prsr.filters.Pass(out, prsr.AllFiltersMatch) {
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return "", utils.ErrFilterNotPassingNoCaps
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}
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return
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}
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func (prsr *RSRParser) ParseDataProvider(dP utils.DataProvider, separator string) (out string, err error) {
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var outStr string
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if prsr.path != "" {
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if outStr, err = dP.FieldAsString(
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strings.Split(prsr.path, separator)); err != nil &&
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(err != utils.ErrNotFound || prsr.filters.FilterRules() != "^$") {
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return
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}
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}
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return prsr.ParseValue(outStr)
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}
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func (prsr *RSRParser) ParseDataProviderWithInterfaces(dP utils.DataProvider, separator string) (out string, err error) {
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var outIface interface{}
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if prsr.path != "" {
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if outIface, err = dP.FieldAsInterface(
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strings.Split(prsr.path, separator)); err != nil &&
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(err != utils.ErrNotFound || prsr.filters.FilterRules() != "^$") {
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return
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}
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}
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return prsr.ParseValue(outIface)
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}
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