rdio-scanner/server/group.go
2025-12-21 09:14:31 -05:00

407 lines
8 KiB
Go

// Copyright (C) 2019-2026 Chrystian Huot <chrystian@huot.qc.ca>
//
// 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 main
import (
"database/sql"
"encoding/json"
"errors"
"fmt"
"sort"
"strings"
"sync"
)
type Group struct {
Id uint64
Alert string
Label string
Led string
Order uint
}
func NewGroup() *Group {
return &Group{}
}
func (group *Group) FromMap(m map[string]any) *Group {
switch v := m["id"].(type) {
case float64:
group.Id = uint64(v)
}
switch v := m["alert"].(type) {
case string:
group.Alert = v
}
switch v := m["label"].(type) {
case string:
group.Label = v
}
switch v := m["led"].(type) {
case string:
group.Led = v
}
switch v := m["order"].(type) {
case float64:
group.Order = uint(v)
}
return group
}
func (group *Group) MarshalJSON() ([]byte, error) {
m := map[string]any{
"id": group.Id,
"label": group.Label,
}
if len(group.Alert) > 0 {
m["alert"] = group.Alert
}
if len(group.Led) > 0 {
m["led"] = group.Led
}
if group.Order > 0 {
m["order"] = group.Order
}
return json.Marshal(m)
}
type Groups struct {
List []*Group
mutex sync.Mutex
}
func NewGroups() *Groups {
return &Groups{
List: []*Group{},
mutex: sync.Mutex{},
}
}
func (groups *Groups) FromMap(f []any) *Groups {
groups.mutex.Lock()
defer groups.mutex.Unlock()
groups.List = []*Group{}
for _, r := range f {
switch m := r.(type) {
case map[string]any:
group := NewGroup().FromMap(m)
groups.List = append(groups.List, group)
}
}
return groups
}
func (groups *Groups) GetGroupById(id uint64) (group *Group, ok bool) {
groups.mutex.Lock()
defer groups.mutex.Unlock()
for _, group := range groups.List {
if group.Id == id {
return group, true
}
}
return nil, false
}
func (groups *Groups) GetGroupByLabel(label string) (group *Group, ok bool) {
groups.mutex.Lock()
defer groups.mutex.Unlock()
for _, group := range groups.List {
if group.Label == label {
return group, true
}
}
return nil, false
}
func (groups *Groups) GetGroupsData(systemsMap *SystemsMap) []Group {
var list = []Group{}
for _, systemMap := range *systemsMap {
switch talkgroupsMap := systemMap["talkgroups"].(type) {
case TalkgroupsMap:
for _, talkgroupMap := range talkgroupsMap {
switch label := talkgroupMap["group"].(type) {
case string:
if group, ok := groups.GetGroupByLabel(label); ok {
add := true
for _, l := range list {
if l == *group {
add = false
break
}
}
if add {
list = append(list, *group)
}
}
}
}
}
}
return list
}
func (groups *Groups) GetGroupIds(labels []string) []uint64 {
var groupIds = []uint64{}
for _, label := range labels {
if group, ok := groups.GetGroupByLabel(label); ok {
groupIds = append(groupIds, group.Id)
}
}
return groupIds
}
func (groups *Groups) GetGroupsMap(systemsMap *SystemsMap) GroupsMap {
var groupsMap = GroupsMap{}
for _, system := range *systemsMap {
var (
fSystemId = system["id"]
fTalkgroups = system["talkgroups"]
systemId uint
talkgroupsMap TalkgroupsMap
)
switch v := fSystemId.(type) {
case uint:
systemId = v
}
switch v := fTalkgroups.(type) {
case TalkgroupsMap:
talkgroupsMap = v
}
for _, talkgroup := range talkgroupsMap {
var (
fTalkgroupGroups = talkgroup["groups"]
fTalkgroupId = talkgroup["id"]
talkgroupGroups []string
talkgroupId uint
)
switch v := fTalkgroupGroups.(type) {
case []string:
talkgroupGroups = v
}
switch v := fTalkgroupId.(type) {
case uint:
talkgroupId = v
}
for _, talkgroupGroup := range talkgroupGroups {
group, ok := groups.GetGroupByLabel(talkgroupGroup)
if !ok {
continue
}
if groupsMap[group.Label] == nil {
groupsMap[group.Label] = map[uint][]uint{}
}
if groupsMap[group.Label][systemId] == nil {
groupsMap[group.Label][systemId] = []uint{}
}
found := false
for _, id := range groupsMap[group.Label][systemId] {
if id == talkgroupId {
found = true
break
}
}
if !found {
groupsMap[group.Label][systemId] = append(groupsMap[group.Label][systemId], talkgroupId)
}
}
}
}
return groupsMap
}
func (groups *Groups) Read(db *Database) error {
var (
err error
query string
rows *sql.Rows
)
groups.mutex.Lock()
defer groups.mutex.Unlock()
groups.List = []*Group{}
formatError := groups.errorFormatter("read")
query = `SELECT "groupId", "alert", "label", "led", "order" FROM "groups"`
if rows, err = db.Sql.Query(query); err != nil {
return formatError(err, query)
}
for rows.Next() {
group := NewGroup()
if err = rows.Scan(&group.Id, &group.Alert, &group.Label, &group.Led, &group.Order); err != nil {
break
}
groups.List = append(groups.List, group)
}
rows.Close()
if err != nil {
return formatError(err, query)
}
sort.Slice(groups.List, func(i int, j int) bool {
return groups.List[i].Order < groups.List[j].Order
})
return nil
}
func (groups *Groups) Write(db *Database) error {
var (
err error
groupIds = []uint64{}
query string
rows *sql.Rows
tx *sql.Tx
)
groups.mutex.Lock()
defer groups.mutex.Unlock()
formatError := groups.errorFormatter("write")
if tx, err = db.Sql.Begin(); err != nil {
return formatError(err, "")
}
query = `SELECT "groupId" FROM "groups"`
if rows, err = tx.Query(query); err != nil {
tx.Rollback()
return formatError(err, query)
}
for rows.Next() {
var groupId uint64
if err = rows.Scan(&groupId); err != nil {
break
}
remove := true
for _, group := range groups.List {
if group.Id == 0 || group.Id == groupId {
remove = false
break
}
}
if remove {
groupIds = append(groupIds, groupId)
}
}
rows.Close()
if err != nil {
tx.Rollback()
return formatError(err, "")
}
if len(groupIds) > 0 {
if b, err := json.Marshal(groupIds); err == nil {
in := strings.ReplaceAll(strings.ReplaceAll(string(b), "[", "("), "]", ")")
query = fmt.Sprintf(`DELETE FROM "groups" WHERE "groupId" IN %s`, in)
if _, err = tx.Exec(query); err != nil {
tx.Rollback()
return formatError(err, query)
}
}
}
for _, group := range groups.List {
var count uint
if group.Id > 0 {
query = fmt.Sprintf(`SELECT COUNT(*) FROM "groups" WHERE "groupId" = %d`, group.Id)
if err = tx.QueryRow(query).Scan(&count); err != nil {
break
}
}
if count == 0 {
query = fmt.Sprintf(`INSERT INTO "groups" ("alert", "label", "led", "order") VALUES ('%s', '%s', '%s', %d)`, group.Alert, escapeQuotes(group.Label), group.Led, group.Order)
if _, err = tx.Exec(query); err != nil {
break
}
} else {
query = fmt.Sprintf(`UPDATE "groups" SET "alert" = '%s', "label" = '%s', "led" = '%s', "order" = %d where "groupId" = %d`, group.Alert, escapeQuotes(group.Label), group.Led, group.Order, group.Id)
if _, err = tx.Exec(query); err != nil {
break
}
}
}
if err != nil {
tx.Rollback()
return formatError(err, query)
}
if err = tx.Commit(); err != nil {
tx.Rollback()
return formatError(err, "")
}
return nil
}
func (groups *Groups) errorFormatter(label string) func(err error, query string) error {
return func(err error, query string) error {
s := fmt.Sprintf("groups.%s: %s", label, err.Error())
if len(query) > 0 {
s = fmt.Sprintf("%s in %s", s, query)
}
return errors.New(s)
}
}
type GroupsMap map[string]map[uint][]uint