mirror of
https://github.com/cgrates/cgrates.git
synced 2026-02-19 22:28:45 +05:00
`ClientConnector` is no longer defined within `rpcclient` in its latest
version. It has been changed to be obtained from the `cgrates/birpc`
library instead.
Replaced `net/rpc` with `cgrates/birpc` and `net/rpc/jsonrpc` with
`cgrates/birpc/jsonrpc` libraries.
The implementations of `CallBiRPC()` and `Handlers()` were removed,
along with the methods associated with them.
The `rpcclient.BIRPCConector` and the methods prefixed with `BiRPC` were
removed from the `BiRPClient` interface.
The `BiRPClient` interface was renamed to `BIRPCClient`, although not
sure if needed (seems useful just to test if the structure is correct).
`rpcclient.BiRPCConector` has been replaced with `context.ClientConnector`,
which is now passed alongside `context.Context` within the same struct
(`cgrates/birpc/context.Context`). Consequently, functions that were
previously relying on it are now receiving the context instead. The
changes were made in the following functions:
- `engine/connmanager.go` - `*ConnManager.Call`
- `engine/connmanager.go` - `*ConnManager.getConn`
- `engine/connmanager.go` - `*ConnManager.getConnWithConfig`
- `engine/libengine.go` - `NewRPCPool`
- `engine/libengine.go` - `NewRPCConnection`
- `agents/libagents.go` - `processRequest`
Compilation errors related to the `rpcclient.NewRPCClient` function were
resolved by adding the missing `context`, `max_reconnect_interval`, and
`delayFunc` parameters. Additionally, context was added to all calls made
by the client. An effort was made to avoid passing hardcoded values as
much as possible, and extra flags were added where necessary for cgr
binaries.
The `max_reconnect_interval` parameter is now passed from parent
functions, which required adjustments to the function signature.
A new context field was added to all agent objects to ensure access to
it before sending it to the `connmanager's Call`, effectively replacing
`birpcclient`. Although an alternative would have been to create the
new service and add it to the context right before passing it to the
handlers, the chosen approach is definitely more comfortable.
With the addition of a context field for the SIP servers agents, an
additional error needed to be handled, coming from the creation of the
service. Agent constructors within the services package log errors as
they occur and return. Alternate solutions considered were either
shutting down the engine instead of returning, or just logging the
occurrence as a warning, particularly when the `ctx.Client` isn't
required, especially in cases where bidirectional connections are not
needed. For the latter option, it's crucial to return the object with
the error rather than nil or to make the error nil immediately after
logging.
Context has been integrated into all internal Call implementations to
ensure the objects conform to the `birpc.ClientConnector` interface.
These implementations will be removed in the near future as all service
objects are being wrapped in a `birpc.Service` type that satisfies the
`birpc.ClientConnector` interface. Currently, they are being retained
as a reference in case of any unexpected issues that arise.
Ensured that the `birpc.Service` wrapped service objects are passed to
the internal channel getters rather than the objects themselves.
Add context.TODO() to all \*ConnManager.Call function calls. To be
replaced with the context passed to the Method, when available.
For all `*ConnManager.Call` function calls, `context.TODO()` has been
added. This will be replaced with the context passed to the method when
it becomes available.
The value returned by StringGetOpts is now passed directly to the
FirstNonEmpty function, instead of being assigned to a variable
first.
The implementation of the `*AnalyzerService.GetInternalBiRPCCodec`
function has been removed from the services package. Additionally,
the AnalyzerBiRPCConnector type definition and its associated methods
have been removed.
The codec implementation has been revised to include the following
changes:
- `rpc.ServerCodec` -> `birpc.ServerCodec`;
- `rpc2.ServerCodec` -> `birpc.BirpcCodec`;
- `rpc2.Request` -> `birpc.Request`;
- `rpc2.Response` -> `birpc.Response`;
- The constructors for json and gob birpc codecs in `cenkalti/rpc`
have been replaced with ones from the `birpc/jsonrpc` library;
- The gob codec implementation has been removed in favor of the
version already implemented in the birpc external library.
The server implementation has been updated with the following changes:
- A field that represents a simple RPC server has been added to the
Server struct;
- Both the simple and bidirectional RPC servers are now initialized
inside the Server constructor, eliminating the need for nil checks;
- Usage of `net/rpc` and `cenkalti/rpc2` has been replaced with
`cgrates/birpc`;
- Additional `(Bi)RPCUnregisterName` methods have been added;
- The implementations for (bi)json/gob servers have been somewhat
simplified.
Before deleting the Call functions and using the `birpc.NewService`
method to register the methods for all cgrates components, update the
Call functions to satisfy the `birpc.ClientConnector` interface. This
way it will be a bit safer. Had to be done for SessionS though.
The `BiRPCCall` method has been removed from coreutils.go. The
`RPCCall` and `APIerRPCCall` methods are also to be removed in the
future.
Ensured that all methods for `SessionSv1` and `SessionS` have the
correct function signature with context. The same adjustments were made
for the session dispatcher methods and for the `SessionSv1Interface`.
Also removed sessionsbirpc.go and smgbirpc.go files.
Implemented the following methods to help with the registration of
methods across all subsystems:
- `NewServiceWithName`;
- `NewDispatcherService` for all dispatcher methods;
- `NewService` for the remaining methods that are already named
correctly.
Compared to the constructor from the external library, these also make
sure that the naming of the methods is consistent with our constants.
Added context to the Call methods for the mock client connectors (used
in tests).
Removed unused rpc fields from inside the following services:
- EeS
- LoaderS
- ResourceS
- RouteS
- StatS
- ThresholdS
- SessionS
- CoreS
Updated the methods implementing the logic for API methods to align
with the latest changes, ensuring consistency and correctness. The
modifications include:
- Adjusting the function signature to the new format
(ctx, args, reply).
- Prefixing names with 'V*' to indicate that they are utilized by
or registered as APIs.
- Containing the complete logic within the methods, enabling APIs
to call them and return their reply directly.
The subsystems affected by these changes are detailed as follows:
- CoreS: Additional methods were implementing utilizing the
existing ones. Though modifying them directly was possible, certain
methods (e.g., StopCPUProfiling()) were used elsewhere and not as
RPC requests.
- CDRs: Renamed V1CountCDRs to V1GetCDRsCount.
- StatS: V1GetQueueFloatMetrics, V1GetQueueStringMetrics,
V1GetStatQueue accept different arguments compared to API functions
(opted to register StatSv1 instead).
- ResourceS: Renamed V1ResourcesForEvent to V1GetResourcesForEvent
to align with API naming.
- DispatcherS: Renamed V1GetProfilesForEvent to
DispatcherSv1GetProfilesForEvent.
- For the rest, adding context to the function signature was enough.
In the unit tests, wrapping the object within a biprc.Service is now
ensured before passing it to the internal connections map under the
corresponding key.
Some tests that are covering error cases, are also checking the other
return value besides the error. That check has been removed since it
is redundant.
Revised the RPC/BiRPC clients' constructors (for use in tests)
A different approach has been chosen for the handling of ping methods
within subsystems. Instead of defining the same structure in every file,
the ping methods were added inside the Service constructor function.
Though the existing Ping methods were left as they were, they will be
removed in the future.
An additional method has been implemented to register the Ping method
from outside of the engine package.
Implemented Sleep and CapsError methods for SessionS (before they were
exclusively for bidirectional use, I believe).
A specific issue has been fixed within the CapsError SessionSv1 API
implementation, which is designed to overwrite methods that cannot be
allocated due to the threshold limit being reached. Previously, it was
deallocating when writing the response, even when a spot hadn't been
allocated in the first place (due to the cap being hit). The reason
behind this, especially why the test was passing before, still needs
to be looked into, as the problem should have occurred from before.
Implement `*SessionSv1.RegisterInternalBiJSONConn` method in apier.
All agent methods have been registered under the SessionSv1 name. For
the correct method names, the leading "V1" prefix has been trimmed
using the `birpc.NewServiceWithMethodsRename` function.
Revise the RegisterRpcParams function to populate the parameters
while relying on the `*birpc.Service` type instead. This will
automatically also deal with the validation. At the moment,
any error encountered is logged without being returned. Might
be changed in the future.
Inside the cgrRPCAction function, `mapstructure.Decode`'s output parameter
is now guaranteed to always be a pointer.
Updated go.mod and go.sum.
Fixed some typos.
478 lines
18 KiB
Go
478 lines
18 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 agents
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import (
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"errors"
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"fmt"
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"log"
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"regexp"
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"strings"
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"time"
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"github.com/cgrates/birpc"
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"github.com/cgrates/birpc/context"
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"github.com/cgrates/cgrates/engine"
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"github.com/cgrates/cgrates/config"
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"github.com/cgrates/cgrates/sessions"
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"github.com/cgrates/cgrates/utils"
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"github.com/cgrates/kamevapi"
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)
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var (
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kamAuthReqRegexp = regexp.MustCompile(CGR_AUTH_REQUEST)
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kamCallStartRegexp = regexp.MustCompile(CGR_CALL_START)
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kamCallEndRegexp = regexp.MustCompile(CGR_CALL_END)
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kamDlgListRegexp = regexp.MustCompile(CGR_DLG_LIST)
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kamProcessMessageRegex = regexp.MustCompile(CGR_PROCESS_MESSAGE)
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kamProcessCDRRegex = regexp.MustCompile(CGR_PROCESS_CDR)
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)
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func NewKamailioAgent(kaCfg *config.KamAgentCfg,
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connMgr *engine.ConnManager, timezone string) (*KamailioAgent, error) {
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ka := &KamailioAgent{
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cfg: kaCfg,
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connMgr: connMgr,
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timezone: timezone,
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conns: make([]*kamevapi.KamEvapi, len(kaCfg.EvapiConns)),
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activeSessionIDs: make(chan []*sessions.SessionID),
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}
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srv, err := birpc.NewServiceWithMethodsRename(ka, utils.SessionSv1, true, func(oldFn string) (newFn string) {
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return strings.TrimPrefix(oldFn, "V1")
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})
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if err != nil {
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return nil, err
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}
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ka.ctx = context.WithClient(context.TODO(), srv)
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return ka, nil
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}
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type KamailioAgent struct {
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cfg *config.KamAgentCfg
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connMgr *engine.ConnManager
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timezone string
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conns []*kamevapi.KamEvapi
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activeSessionIDs chan []*sessions.SessionID
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ctx *context.Context
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}
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func (self *KamailioAgent) Connect() (err error) {
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eventHandlers := map[*regexp.Regexp][]func([]byte, int){
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kamAuthReqRegexp: {self.onCgrAuth},
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kamCallStartRegexp: {self.onCallStart},
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kamCallEndRegexp: {self.onCallEnd},
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kamDlgListRegexp: {self.onDlgList},
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kamProcessMessageRegex: {self.onCgrProcessMessage},
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kamProcessCDRRegex: {self.onCgrProcessCDR},
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}
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errChan := make(chan error)
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for connIdx, connCfg := range self.cfg.EvapiConns {
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logger := log.New(utils.Logger, "kamevapi:", 2)
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if self.conns[connIdx], err = kamevapi.NewKamEvapi(connCfg.Address, connIdx, connCfg.Reconnects, connCfg.MaxReconnectInterval,
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utils.FibDuration, eventHandlers, logger); err != nil {
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return
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}
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utils.Logger.Info(fmt.Sprintf("<%s> successfully connected to Kamailio at: <%s>", utils.KamailioAgent, connCfg.Address))
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go func(conn *kamevapi.KamEvapi) { // Start reading in own goroutine, return on error
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if err := conn.ReadEvents(); err != nil {
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errChan <- err
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}
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}(self.conns[connIdx])
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}
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err = <-errChan // Will keep the Connect locked until the first error in one of the connections
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return
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}
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func (self *KamailioAgent) Shutdown() (err error) {
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for conIndx, conn := range self.conns {
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if conn == nil {
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break
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}
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if err = conn.Disconnect(); err != nil {
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utils.Logger.Err(fmt.Sprintf("<%s> can't disconnect connection at index %v because: %s",
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utils.KamailioAgent, conIndx, err))
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continue
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}
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}
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return
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}
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// birpc.ClientConnector interface
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func (ka *KamailioAgent) Call(serviceMethod string, args any, reply any) error {
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return utils.RPCCall(ka, serviceMethod, args, reply)
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}
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// onCgrAuth is called when new event of type CGR_AUTH_REQUEST is coming
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func (ka *KamailioAgent) onCgrAuth(evData []byte, connIdx int) {
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if connIdx >= len(ka.conns) { // protection against index out of range panic
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err := fmt.Errorf("Index out of range[0,%v): %v ", len(ka.conns), connIdx)
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utils.Logger.Err(fmt.Sprintf("<%s> %s", utils.KamailioAgent, err.Error()))
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return
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}
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kev, err := NewKamEvent(evData, ka.cfg.EvapiConns[connIdx].Alias, ka.conns[connIdx].RemoteAddr().String())
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if err != nil {
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utils.Logger.Err(fmt.Sprintf("<%s> unmarshalling event data: %s, error: %s",
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utils.KamailioAgent, evData, err.Error()))
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return
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}
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if kev[utils.RequestType] == utils.MetaNone { // Do not process this request
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return
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}
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if kev.MissingParameter() {
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if kRply, err := kev.AsKamAuthReply(nil, nil, utils.ErrMandatoryIeMissing); err != nil {
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utils.Logger.Err(fmt.Sprintf("<%s> failed building auth reply for event: %s, error: %s",
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utils.KamailioAgent, kev[utils.OriginID], err.Error()))
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} else if err = ka.conns[connIdx].Send(kRply.String()); err != nil {
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utils.Logger.Err(fmt.Sprintf("<%s> failed sending auth reply for event: %s, error %s",
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utils.KamailioAgent, kev[utils.OriginID], err.Error()))
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}
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return
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}
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authArgs := kev.V1AuthorizeArgs()
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if authArgs == nil {
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utils.Logger.Err(fmt.Sprintf("<%s> event: %s cannot generate auth session arguments",
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utils.KamailioAgent, kev[utils.OriginID]))
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return
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}
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authArgs.CGREvent.Event[EvapiConnID] = connIdx // Attach the connection ID
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var authReply sessions.V1AuthorizeReply
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// take the error after calling SessionSv1.AuthorizeEvent
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// and send it as parameter to AsKamAuthReply
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err = ka.connMgr.Call(ka.ctx, ka.cfg.SessionSConns,
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utils.SessionSv1AuthorizeEvent,
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authArgs, &authReply)
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if kar, err := kev.AsKamAuthReply(authArgs, &authReply, err); err != nil {
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utils.Logger.Err(fmt.Sprintf("<%s> failed building auth reply for event: %s, error: %s",
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utils.KamailioAgent, kev[utils.OriginID], err.Error()))
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} else if err = ka.conns[connIdx].Send(kar.String()); err != nil {
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utils.Logger.Err(fmt.Sprintf("<%s> failed sending auth reply for event: %s, error: %s",
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utils.KamailioAgent, kev[utils.OriginID], err.Error()))
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}
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}
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func (ka *KamailioAgent) onCallStart(evData []byte, connIdx int) {
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if connIdx >= len(ka.conns) { // protection against index out of range panic
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err := fmt.Errorf("Index out of range[0,%v): %v ", len(ka.conns), connIdx)
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utils.Logger.Err(fmt.Sprintf("<%s> %s", utils.KamailioAgent, err.Error()))
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return
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}
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kev, err := NewKamEvent(evData, ka.cfg.EvapiConns[connIdx].Alias, ka.conns[connIdx].RemoteAddr().String())
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if err != nil {
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utils.Logger.Err(fmt.Sprintf("<%s> unmarshalling event: %s, error: %s",
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utils.KamailioAgent, evData, err.Error()))
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return
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}
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if kev[utils.RequestType] == utils.MetaNone { // Do not process this request
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return
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}
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if kev.MissingParameter() {
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ka.disconnectSession(connIdx,
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NewKamSessionDisconnect(kev[KamHashEntry], kev[KamHashID],
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utils.ErrMandatoryIeMissing.Error()))
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return
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}
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initSessionArgs := kev.V1InitSessionArgs()
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if initSessionArgs == nil {
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utils.Logger.Err(fmt.Sprintf("<%s> event: %s cannot generate init session arguments",
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utils.KamailioAgent, kev[utils.OriginID]))
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return
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}
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initSessionArgs.CGREvent.Event[EvapiConnID] = connIdx // Attach the connection ID so we can properly disconnect later
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var initReply sessions.V1InitSessionReply
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if err := ka.connMgr.Call(ka.ctx, ka.cfg.SessionSConns,
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utils.SessionSv1InitiateSession,
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initSessionArgs, &initReply); err != nil {
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utils.Logger.Err(
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fmt.Sprintf("<%s> could not process answer for event %s, error: %s",
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utils.KamailioAgent, kev[utils.OriginID], err.Error()))
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ka.disconnectSession(connIdx,
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NewKamSessionDisconnect(kev[KamHashEntry], kev[KamHashID],
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utils.ErrServerError.Error()))
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return
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}
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}
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func (ka *KamailioAgent) onCallEnd(evData []byte, connIdx int) {
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if connIdx >= len(ka.conns) { // protection against index out of range panic
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err := fmt.Errorf("Index out of range[0,%v): %v ", len(ka.conns), connIdx)
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utils.Logger.Err(fmt.Sprintf("<%s> %s", utils.KamailioAgent, err.Error()))
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return
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}
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kev, err := NewKamEvent(evData, ka.cfg.EvapiConns[connIdx].Alias, ka.conns[connIdx].RemoteAddr().String())
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if err != nil {
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utils.Logger.Err(fmt.Sprintf("<%s> unmarshalling event: %s, error: %s",
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utils.KamailioAgent, evData, err.Error()))
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return
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}
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if kev[utils.RequestType] == utils.MetaNone { // Do not process this request
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return
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}
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if kev.MissingParameter() {
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utils.Logger.Err(fmt.Sprintf("<%s> mandatory IE missing out from event: %s",
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utils.KamailioAgent, kev[utils.OriginID]))
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return
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}
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tsArgs := kev.V1TerminateSessionArgs()
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if tsArgs == nil {
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utils.Logger.Err(fmt.Sprintf("<%s> event: %s cannot generate terminate session arguments",
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utils.KamailioAgent, kev[utils.OriginID]))
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return
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}
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var reply string
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tsArgs.CGREvent.Event[EvapiConnID] = connIdx // Attach the connection ID in case we need to create a session and disconnect it
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if err := ka.connMgr.Call(ka.ctx, ka.cfg.SessionSConns,
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utils.SessionSv1TerminateSession,
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tsArgs, &reply); err != nil {
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utils.Logger.Err(
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fmt.Sprintf("<%s> could not terminate session with event %s, error: %s",
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utils.KamailioAgent, kev[utils.OriginID], err.Error()))
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// no return here since we want CDR anyhow
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}
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if ka.cfg.CreateCdr || strings.Index(kev[utils.CGRFlags], utils.MetaCDRs) != -1 {
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if err := ka.connMgr.Call(ka.ctx, ka.cfg.SessionSConns,
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utils.SessionSv1ProcessCDR,
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tsArgs.CGREvent, &reply); err != nil {
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utils.Logger.Err(fmt.Sprintf("%s> failed processing CGREvent: %s, error: %s",
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utils.KamailioAgent, utils.ToJSON(tsArgs.CGREvent), err.Error()))
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}
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}
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}
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func (ka *KamailioAgent) onDlgList(evData []byte, connIdx int) {
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kamDlgRpl, err := NewKamDlgReply(evData)
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if err != nil {
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utils.Logger.Err(fmt.Sprintf("<%s> unmarshalling event data: %s, error: %s",
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utils.KamailioAgent, evData, err.Error()))
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return
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}
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var sIDs []*sessions.SessionID
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for _, dlgInfo := range kamDlgRpl.Jsonrpl_body.Result {
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originHost := ka.conns[connIdx].RemoteAddr().String()
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originID := dlgInfo.CallId + ";" + dlgInfo.Caller.Tag
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for _, variable := range dlgInfo.Variables {
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if variable.CgrOriginHost != utils.EmptyString {
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originHost = variable.CgrOriginHost
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}
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if variable.CgrOriginID != utils.EmptyString {
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originID = variable.CgrOriginID
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}
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}
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sIDs = append(sIDs, &sessions.SessionID{
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OriginHost: originHost,
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OriginID: originID,
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})
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}
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ka.activeSessionIDs <- sIDs
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}
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func (ka *KamailioAgent) onCgrProcessMessage(evData []byte, connIdx int) {
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if connIdx >= len(ka.conns) { // protection against index out of range panic
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err := fmt.Errorf("Index out of range[0,%v): %v ", len(ka.conns), connIdx)
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utils.Logger.Err(fmt.Sprintf("<%s> %s", utils.KamailioAgent, err.Error()))
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return
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}
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kev, err := NewKamEvent(evData, ka.cfg.EvapiConns[connIdx].Alias, ka.conns[connIdx].RemoteAddr().String())
|
|
if err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> unmarshalling event data: %s, error: %s",
|
|
utils.KamailioAgent, evData, err.Error()))
|
|
return
|
|
}
|
|
|
|
if kev.MissingParameter() {
|
|
if kRply, err := kev.AsKamProcessMessageReply(nil, nil, utils.ErrMandatoryIeMissing); err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> failed building process session event reply for event: %s, error: %s",
|
|
utils.KamailioAgent, kev[utils.OriginID], err.Error()))
|
|
} else if err = ka.conns[connIdx].Send(kRply.String()); err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> failed sending process session event reply for event: %s, error %s",
|
|
utils.KamailioAgent, kev[utils.OriginID], err.Error()))
|
|
}
|
|
return
|
|
}
|
|
|
|
//in case that we don't receive cgr_flags from kamailio
|
|
//we consider this as ping-pong event
|
|
if _, has := kev[utils.CGRFlags]; !has {
|
|
if err = ka.conns[connIdx].Send(kev.AsKamProcessMessageEmptyReply().String()); err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> failed sending empty process message reply for event: %s, error %s",
|
|
utils.KamailioAgent, kev[utils.OriginID], err.Error()))
|
|
}
|
|
}
|
|
|
|
procEvArgs := kev.V1ProcessMessageArgs()
|
|
if procEvArgs == nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> event: %s cannot generate process message session arguments",
|
|
utils.KamailioAgent, kev[utils.OriginID]))
|
|
return
|
|
}
|
|
procEvArgs.CGREvent.Event[EvapiConnID] = connIdx // Attach the connection ID
|
|
|
|
var processReply sessions.V1ProcessMessageReply
|
|
err = ka.connMgr.Call(ka.ctx, ka.cfg.SessionSConns,
|
|
utils.SessionSv1ProcessMessage,
|
|
procEvArgs, &processReply)
|
|
// take the error after calling SessionSv1.ProcessMessage
|
|
// and send it as parameter to AsKamProcessMessageReply
|
|
if kar, err := kev.AsKamProcessMessageReply(procEvArgs, &processReply, err); err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> failed building process session event reply for event: %s, error: %s",
|
|
utils.KamailioAgent, kev[utils.OriginID], err.Error()))
|
|
} else if err = ka.conns[connIdx].Send(kar.String()); err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> failed sending auth reply for event: %s, error: %s",
|
|
utils.KamailioAgent, kev[utils.OriginID], err.Error()))
|
|
}
|
|
}
|
|
|
|
func (ka *KamailioAgent) onCgrProcessCDR(evData []byte, connIdx int) {
|
|
if connIdx >= len(ka.conns) { // protection against index out of range panic
|
|
err := fmt.Errorf("Index out of range[0,%v): %v ", len(ka.conns), connIdx)
|
|
utils.Logger.Err(fmt.Sprintf("<%s> %s", utils.KamailioAgent, err.Error()))
|
|
return
|
|
}
|
|
kev, err := NewKamEvent(evData, ka.cfg.EvapiConns[connIdx].Alias, ka.conns[connIdx].RemoteAddr().String())
|
|
if err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> unmarshalling event data: %s, error: %s",
|
|
utils.KamailioAgent, evData, err.Error()))
|
|
return
|
|
}
|
|
|
|
if kev.MissingParameter() {
|
|
if kRply, err := kev.AsKamProcessCDRReply(nil, nil, utils.ErrMandatoryIeMissing); err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> failed building process session event reply for event: %s, error: %s",
|
|
utils.KamailioAgent, kev[utils.OriginID], err.Error()))
|
|
} else if err = ka.conns[connIdx].Send(kRply.String()); err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> failed sending process session event reply for event: %s, error %s",
|
|
utils.KamailioAgent, kev[utils.OriginID], err.Error()))
|
|
}
|
|
return
|
|
}
|
|
|
|
procCDRArgs := kev.V1ProcessCDRArgs()
|
|
if procCDRArgs == nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> event: %s cannot generate process cdr session arguments",
|
|
utils.KamailioAgent, kev[utils.OriginID]))
|
|
return
|
|
}
|
|
procCDRArgs.Event[EvapiConnID] = connIdx // Attach the connection ID
|
|
|
|
var processReply string
|
|
err = ka.connMgr.Call(ka.ctx, ka.cfg.SessionSConns,
|
|
utils.SessionSv1ProcessCDR,
|
|
procCDRArgs, &processReply)
|
|
// take the error after calling SessionSv1.ProcessCDR
|
|
// and send it as parameter to AsKamProcessCDRReply
|
|
if kar, err := kev.AsKamProcessCDRReply(procCDRArgs, &processReply, err); err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> failed building process session event reply for event: %s, error: %s",
|
|
utils.KamailioAgent, kev[utils.OriginID], err.Error()))
|
|
} else if err = ka.conns[connIdx].Send(kar.String()); err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> failed sending auth reply for event: %s, error: %s",
|
|
utils.KamailioAgent, kev[utils.OriginID], err.Error()))
|
|
}
|
|
}
|
|
|
|
func (self *KamailioAgent) disconnectSession(connIdx int, dscEv *KamSessionDisconnect) (err error) {
|
|
if err = self.conns[connIdx].Send(dscEv.String()); err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> failed sending disconnect request: %s, connection id: %v, error %s",
|
|
utils.KamailioAgent, utils.ToJSON(dscEv), connIdx, err.Error()))
|
|
}
|
|
return
|
|
}
|
|
|
|
// Internal method to disconnect session in Kamailio
|
|
func (ka *KamailioAgent) V1DisconnectSession(ctx *context.Context, args utils.AttrDisconnectSession, reply *string) (err error) {
|
|
hEntry := utils.IfaceAsString(args.EventStart[KamHashEntry])
|
|
hID := utils.IfaceAsString(args.EventStart[KamHashID])
|
|
connIdxIface, has := args.EventStart[EvapiConnID]
|
|
if !has {
|
|
utils.Logger.Err(
|
|
fmt.Sprintf("<%s> error: <%s:%s> when attempting to disconnect <%s:%s> and <%s:%s>",
|
|
utils.KamailioAgent, utils.ErrNotFound.Error(), EvapiConnID,
|
|
KamHashEntry, hEntry, KamHashID, hID))
|
|
return
|
|
}
|
|
connIdx, err := utils.IfaceAsTInt64(connIdxIface)
|
|
if err != nil {
|
|
return err
|
|
}
|
|
if int(connIdx) >= len(ka.conns) { // protection against index out of range panic
|
|
err = fmt.Errorf("Index out of range[0,%v): %v ", len(ka.conns), connIdx)
|
|
utils.Logger.Err(fmt.Sprintf("<%s> %s", utils.KamailioAgent, err.Error()))
|
|
return
|
|
}
|
|
if err = ka.disconnectSession(int(connIdx),
|
|
NewKamSessionDisconnect(hEntry, hID,
|
|
utils.ErrInsufficientCredit.Error())); err != nil {
|
|
return
|
|
}
|
|
*reply = utils.OK
|
|
return
|
|
}
|
|
|
|
// V1GetActiveSessionIDs returns a list of CGRIDs based on active sessions from agent
|
|
func (ka *KamailioAgent) V1GetActiveSessionIDs(ctx *context.Context, ignParam string, sessionIDs *[]*sessions.SessionID) (err error) {
|
|
kamEv := utils.ToJSON(map[string]string{utils.Event: CGR_DLG_LIST})
|
|
var sentDLG int
|
|
for i, evapi := range ka.conns {
|
|
if err := evapi.Send(kamEv); err != nil {
|
|
utils.Logger.Err(fmt.Sprintf("<%s> failed sending event to connIdx<%v>, error %s",
|
|
utils.KamailioAgent, i, err.Error()))
|
|
continue
|
|
}
|
|
sentDLG++
|
|
}
|
|
if sentDLG == 0 {
|
|
return
|
|
}
|
|
tm := time.NewTimer(config.CgrConfig().GeneralCfg().ReplyTimeout)
|
|
for i := 0; i < sentDLG; i++ {
|
|
select {
|
|
case sIDs := <-ka.activeSessionIDs:
|
|
*sessionIDs = append(*sessionIDs, sIDs...)
|
|
case <-tm.C:
|
|
return errors.New("timeout executing dialog list")
|
|
}
|
|
}
|
|
if len(*sessionIDs) == 0 {
|
|
return utils.ErrNoActiveSession
|
|
}
|
|
tm.Stop()
|
|
return
|
|
}
|
|
|
|
// Reload recreates the connection buffers
|
|
// only used on reload
|
|
func (ka *KamailioAgent) Reload() {
|
|
ka.conns = make([]*kamevapi.KamEvapi, len(ka.cfg.EvapiConns))
|
|
}
|
|
|
|
// V1ReAuthorize is used to implement the sessions.BiRPClient interface
|
|
func (*KamailioAgent) V1ReAuthorize(ctx *context.Context, originID string, reply *string) (err error) {
|
|
return utils.ErrNotImplemented
|
|
}
|
|
|
|
// V1DisconnectPeer is used to implement the sessions.BiRPClient interface
|
|
func (*KamailioAgent) V1DisconnectPeer(ctx *context.Context, args *utils.DPRArgs, reply *string) (err error) {
|
|
return utils.ErrNotImplemented
|
|
}
|
|
|
|
// V1WarnDisconnect is used to implement the sessions.BiRPClient interface
|
|
func (*KamailioAgent) V1WarnDisconnect(ctx *context.Context, args map[string]any, reply *string) (err error) {
|
|
return utils.ErrNotImplemented
|
|
}
|