Files
cgrates/engine/storage_postgres.go
2014-11-13 19:41:15 +01:00

530 lines
17 KiB
Go

/*
Rating system designed to be used in VoIP Carriers World
Copyright (C) 2013 ITsysCOM
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>
*/
package engine
import (
"bytes"
"database/sql"
"encoding/json"
"fmt"
"github.com/cgrates/cgrates/config"
"github.com/cgrates/cgrates/utils"
"path"
"strconv"
"time"
_ "github.com/bmizerany/pq"
"github.com/go-sql-driver/mysql"
"github.com/jinzhu/gorm"
)
type PostgresStorage struct {
*SQLStorage
}
func NewPostgresStorage(host, port, name, user, password string, maxConn, maxIdleConn int) (Storage, error) {
connectString := fmt.Sprintf("host=%s port=%s dbname=%s user=%s password=%s sslmode=disable", host, port, name, user, password)
db, err := gorm.Open("postgres", connectString)
if err != nil {
return nil, err
}
err = db.DB().Ping()
if err != nil {
return nil, err
}
db.DB().SetMaxIdleConns(maxIdleConn)
db.DB().SetMaxOpenConns(maxConn)
//db.LogMode(true)
return &PostgresStorage{&SQLStorage{Db: db.DB(), db: db}}, nil
}
func (self *PostgresStorage) Flush() (err error) {
cfg := config.CgrConfig()
for _, scriptName := range []string{CREATE_CDRS_TABLES_SQL, CREATE_TARIFFPLAN_TABLES_SQL} {
if err := self.CreateTablesFromScript(path.Join(cfg.DataFolderPath, "storage", utils.POSTGRES, scriptName)); err != nil {
return err
}
}
for _, tbl := range []string{utils.TBL_CDRS_PRIMARY, utils.TBL_CDRS_EXTRA} {
if _, err := self.Db.Query(fmt.Sprintf("SELECT 1 FROM %s", tbl)); err != nil {
return err
}
}
return nil
}
func (self *PostgresStorage) SetTPTiming(tm *utils.ApierTPTiming) error {
if tm == nil {
return nil //Nothing to set
}
tx := self.db.Begin()
if err := tx.Save(&TpTiming{Tpid: tm.TPid, Tag: tm.TimingId, Years: tm.Years, Months: tm.Months, MonthDays: tm.MonthDays, WeekDays: tm.WeekDays, Time: tm.Time, CreatedAt: time.Now()}).Error; err != nil {
tx.Rollback()
tx = self.db.Begin()
updated := tx.Model(TpTiming{}).Where(&TpTiming{Tpid: tm.TPid, Tag: tm.TimingId}).Updates(&TpTiming{Years: tm.Years, Months: tm.Months, MonthDays: tm.MonthDays, WeekDays: tm.WeekDays, Time: tm.Time})
if updated.Error != nil {
tx.Rollback()
return updated.Error
}
}
tx.Commit()
return nil
}
func (self *PostgresStorage) LogCallCost(cgrid, source, runid string, cc *CallCost) (err error) {
tss, err := json.Marshal(cc.Timespans)
if err != nil {
Logger.Err(fmt.Sprintf("Error marshalling timespans to json: %v", err))
return err
}
tx := self.db.Begin()
cd := &TblCostDetail{
Cgrid: cgrid,
Runid: runid,
Tor: cc.TOR,
Direction: cc.Direction,
Tenant: cc.Tenant,
Category: cc.Category,
Account: cc.Account,
Subject: cc.Subject,
Destination: cc.Destination,
Cost: cc.Cost,
Timespans: string(tss),
CostSource: source,
CreatedAt: time.Now(),
}
if tx.Save(cd).Error != nil { // Check further since error does not properly reflect duplicates here (sql: no rows in result set)
tx.Rollback()
tx = self.db.Begin()
updated := tx.Model(TblCostDetail{}).Where(&TblCostDetail{Cgrid: cgrid, Runid: runid}).Updates(&TblCostDetail{Tor: cc.TOR, Direction: cc.Direction, Tenant: cc.Tenant, Category: cc.Category,
Account: cc.Account, Subject: cc.Subject, Destination: cc.Destination, Cost: cc.Cost, Timespans: string(tss), CostSource: source, UpdatedAt: time.Now()})
if updated.Error != nil {
tx.Rollback()
return updated.Error
}
}
tx.Commit()
return nil
}
func (self *PostgresStorage) SetRatedCdr(cdr *utils.StoredCdr, extraInfo string) (err error) {
tx := self.db.Begin()
saved := tx.Save(&TblRatedCdr{
Cgrid: cdr.CgrId,
Runid: cdr.MediationRunId,
Reqtype: cdr.ReqType,
Direction: cdr.Direction,
Tenant: cdr.Tenant,
Category: cdr.Category,
Account: cdr.Account,
Subject: cdr.Subject,
Destination: cdr.Destination,
SetupTime: cdr.SetupTime,
AnswerTime: cdr.AnswerTime,
Usage: cdr.Usage.Seconds(),
Cost: cdr.Cost,
ExtraInfo: extraInfo,
CreatedAt: time.Now(),
})
if saved.Error != nil {
tx.Rollback()
tx = self.db.Begin()
updated := tx.Model(TblRatedCdr{}).Where(&TblRatedCdr{Cgrid: cdr.CgrId, Runid: cdr.MediationRunId}).Updates(&TblRatedCdr{Reqtype: cdr.ReqType,
Direction: cdr.Direction, Tenant: cdr.Tenant, Category: cdr.Category, Account: cdr.Account, Subject: cdr.Subject, Destination: cdr.Destination,
SetupTime: cdr.SetupTime, AnswerTime: cdr.AnswerTime, Usage: cdr.Usage.Seconds(), Cost: cdr.Cost, ExtraInfo: extraInfo, UpdatedAt: time.Now()})
if updated.Error != nil {
tx.Rollback()
return updated.Error
}
}
tx.Commit()
return nil
}
func (self *PostgresStorage) GetStoredCdrs(cgrIds, runIds, tors, cdrHosts, cdrSources, reqTypes, directions, tenants, categories, accounts, subjects, destPrefixes, ratedAccounts, ratedSubjects []string,
orderIdStart, orderIdEnd int64, timeStart, timeEnd time.Time, ignoreErr, ignoreRated, ignoreDerived bool, pagination *utils.Paginator) ([]*utils.StoredCdr, error) {
var cdrs []*utils.StoredCdr
var q *bytes.Buffer // Need to query differently since in case of primary, unmediated CDRs some values will be missing
if ignoreDerived {
q = bytes.NewBufferString(fmt.Sprintf("SELECT %s.cgrid,%s.id,%s.tor,%s.accid,%s.cdrhost,%s.cdrsource,%s.reqtype,%s.direction,%s.tenant,%s.category,%s.account,%s.subject,%s.destination,%s.setup_time,%s.answer_time,%s.usage,%s.extra_fields,%s.runid,%s.account,%s.subject,%s.cost FROM %s LEFT JOIN %s ON %s.cgrid=%s.cgrid LEFT JOIN %s ON %s.cgrid=%s.cgrid LEFT JOIN %s ON %s.cgrid=%s.cgrid AND %s.runid=%s.runid",
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_EXTRA,
utils.TBL_RATED_CDRS,
utils.TBL_COST_DETAILS,
utils.TBL_COST_DETAILS,
utils.TBL_RATED_CDRS,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_EXTRA,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_EXTRA,
utils.TBL_RATED_CDRS,
utils.TBL_CDRS_PRIMARY,
utils.TBL_RATED_CDRS,
utils.TBL_COST_DETAILS,
utils.TBL_RATED_CDRS,
utils.TBL_COST_DETAILS,
utils.TBL_RATED_CDRS,
utils.TBL_COST_DETAILS))
} else {
q = bytes.NewBufferString(fmt.Sprintf("SELECT %s.cgrid,%s.id,%s.tor,%s.accid,%s.cdrhost,%s.cdrsource,%s.reqtype,%s.direction,%s.tenant,%s.category,%s.account,%s.subject,%s.destination,%s.setup_time,%s.answer_time,%s.usage,%s.extra_fields,%s.runid,%s.account,%s.subject,%s.cost FROM %s LEFT JOIN %s ON %s.cgrid=%s.cgrid LEFT JOIN %s ON %s.cgrid=%s.cgrid LEFT JOIN %s ON %s.cgrid=%s.cgrid AND %s.runid=%s.runid",
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_PRIMARY,
utils.TBL_RATED_CDRS,
utils.TBL_RATED_CDRS,
utils.TBL_RATED_CDRS,
utils.TBL_RATED_CDRS,
utils.TBL_RATED_CDRS,
utils.TBL_RATED_CDRS,
utils.TBL_RATED_CDRS,
utils.TBL_RATED_CDRS,
utils.TBL_RATED_CDRS,
utils.TBL_RATED_CDRS,
utils.TBL_CDRS_EXTRA,
utils.TBL_RATED_CDRS,
utils.TBL_COST_DETAILS,
utils.TBL_COST_DETAILS,
utils.TBL_RATED_CDRS,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_EXTRA,
utils.TBL_CDRS_PRIMARY,
utils.TBL_CDRS_EXTRA,
utils.TBL_RATED_CDRS,
utils.TBL_CDRS_PRIMARY,
utils.TBL_RATED_CDRS,
utils.TBL_COST_DETAILS,
utils.TBL_RATED_CDRS,
utils.TBL_COST_DETAILS,
utils.TBL_RATED_CDRS,
utils.TBL_COST_DETAILS))
}
q.WriteString(" WHERE")
for idx, tblName := range []string{utils.TBL_CDRS_PRIMARY, utils.TBL_CDRS_EXTRA, utils.TBL_COST_DETAILS, utils.TBL_RATED_CDRS} {
if idx != 0 {
q.WriteString(" AND")
}
q.WriteString(fmt.Sprintf(" (%s.deleted_at IS NULL OR %s.deleted_at <= '0001-01-02')", tblName, tblName))
}
fltr := new(bytes.Buffer)
if len(cgrIds) != 0 {
qIds := bytes.NewBufferString(" (")
for idxId, cgrId := range cgrIds {
if idxId != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.cgrid='%s'", utils.TBL_CDRS_PRIMARY, cgrId))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(runIds) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, runId := range runIds {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.runid='%s'", utils.TBL_RATED_CDRS, runId))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(tors) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, host := range tors {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.tor='%s'", utils.TBL_CDRS_PRIMARY, host))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(cdrHosts) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, host := range cdrHosts {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.cdrhost='%s'", utils.TBL_CDRS_PRIMARY, host))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(cdrSources) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, src := range cdrSources {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.cdrsource='%s'", utils.TBL_CDRS_PRIMARY, src))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(reqTypes) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, reqType := range reqTypes {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.reqtype='%s'", utils.TBL_CDRS_PRIMARY, reqType))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(directions) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, direction := range directions {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.direction='%s'", utils.TBL_CDRS_PRIMARY, direction))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(tenants) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, tenant := range tenants {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.tenant='%s'", utils.TBL_CDRS_PRIMARY, tenant))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(categories) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, category := range categories {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.category='%s'", utils.TBL_CDRS_PRIMARY, category))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(accounts) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, account := range accounts {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.account='%s'", utils.TBL_CDRS_PRIMARY, account))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(subjects) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, subject := range subjects {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.subject='%s'", utils.TBL_CDRS_PRIMARY, subject))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(destPrefixes) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, destPrefix := range destPrefixes {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.destination LIKE '%s%%'", utils.TBL_CDRS_PRIMARY, destPrefix))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(ratedAccounts) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, ratedAccount := range ratedAccounts {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.account='%s'", utils.TBL_COST_DETAILS, ratedAccount))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if len(ratedSubjects) != 0 {
qIds := bytes.NewBufferString(" (")
for idx, ratedSubject := range ratedSubjects {
if idx != 0 {
qIds.WriteString(" OR")
}
qIds.WriteString(fmt.Sprintf(" %s.subject='%s'", utils.TBL_COST_DETAILS, ratedSubject))
}
qIds.WriteString(" )")
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.Write(qIds.Bytes())
}
if orderIdStart != 0 {
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.WriteString(fmt.Sprintf(" %s.id>=%d", utils.TBL_CDRS_PRIMARY, orderIdStart))
}
if orderIdEnd != 0 {
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.WriteString(fmt.Sprintf(" %s.id<%d", utils.TBL_CDRS_PRIMARY, orderIdEnd))
}
if !timeStart.IsZero() {
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.WriteString(fmt.Sprintf(" %s.answer_time>='%s'", utils.TBL_CDRS_PRIMARY, timeStart.Format(time.RFC3339Nano)))
}
if !timeEnd.IsZero() {
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.WriteString(fmt.Sprintf(" %s.answer_time<'%s'", utils.TBL_CDRS_PRIMARY, timeEnd.Format(time.RFC3339Nano)))
}
if ignoreRated {
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
if ignoreErr {
fltr.WriteString(fmt.Sprintf(" %s.cost IS NULL", utils.TBL_RATED_CDRS))
} else {
fltr.WriteString(fmt.Sprintf(" (%s.cost=-1 OR %s.cost IS NULL)", utils.TBL_RATED_CDRS, utils.TBL_RATED_CDRS))
}
} else if ignoreErr {
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.WriteString(fmt.Sprintf(" (%s.cost<>-1 OR %s.cost IS NULL)", utils.TBL_RATED_CDRS, utils.TBL_RATED_CDRS))
}
if ignoreDerived {
if fltr.Len() != 0 {
fltr.WriteString(" AND")
}
fltr.WriteString(fmt.Sprintf(" (%s.runid='%s' OR %s.cost IS NULL)", utils.TBL_RATED_CDRS, utils.DEFAULT_RUNID, utils.TBL_RATED_CDRS))
}
if fltr.Len() != 0 {
q.WriteString(fmt.Sprintf(" AND %s", fltr.String()))
}
if pagination != nil {
limLow, limHigh := pagination.GetLimits()
q.WriteString(fmt.Sprintf(" LIMIT %d,%d", limLow, limHigh))
}
rows, err := self.Db.Query(q.String())
if err != nil {
return nil, err
}
defer rows.Close()
for rows.Next() {
var cgrid, tor, accid, cdrhost, cdrsrc, reqtype, direction, tenant, category, account, subject, destination, runid, ratedAccount, ratedSubject sql.NullString
var extraFields []byte
var setupTime, answerTime mysql.NullTime
var orderid int64
var usage, cost sql.NullFloat64
var extraFieldsMp map[string]string
if err := rows.Scan(&cgrid, &orderid, &tor, &accid, &cdrhost, &cdrsrc, &reqtype, &direction, &tenant, &category, &account, &subject, &destination, &setupTime, &answerTime, &usage,
&extraFields, &runid, &ratedAccount, &ratedSubject, &cost); err != nil {
return nil, err
}
if len(extraFields) != 0 {
if err := json.Unmarshal(extraFields, &extraFieldsMp); err != nil {
return nil, fmt.Errorf("JSON unmarshal error for cgrid: %s, runid: %v, error: %s", cgrid.String, runid.String, err.Error())
}
}
usageDur, _ := time.ParseDuration(strconv.FormatFloat(usage.Float64, 'f', -1, 64) + "s")
storCdr := &utils.StoredCdr{
CgrId: cgrid.String, OrderId: orderid, TOR: tor.String, AccId: accid.String, CdrHost: cdrhost.String, CdrSource: cdrsrc.String, ReqType: reqtype.String,
Direction: direction.String, Tenant: tenant.String,
Category: category.String, Account: account.String, Subject: subject.String, Destination: destination.String,
SetupTime: setupTime.Time, AnswerTime: answerTime.Time, Usage: usageDur,
ExtraFields: extraFieldsMp, MediationRunId: runid.String, RatedAccount: ratedAccount.String, RatedSubject: ratedSubject.String, Cost: cost.Float64,
}
if !cost.Valid { //There was no cost provided, will fakely insert 0 if we do not handle it and reflect on re-rating
storCdr.Cost = -1
}
cdrs = append(cdrs, storCdr)
}
return cdrs, nil
}