Files
OpenFlare/backend/cmd/redis_plug_test.go
T

259 lines
9.6 KiB
Go

// Copyright 2026 Arctel.net
// SPDX-License-Identifier: Apache-2.0
package cmd
import (
"Wavelet/core"
"Wavelet/core/contracts"
"Wavelet/core/extpoints"
"Wavelet/pkg/idgen"
"context"
"fmt"
"sync/atomic"
"testing"
"time"
"github.com/alicebob/miniredis/v2"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
)
func TestRedisPluggability_Simulation(t *testing.T) {
_ = idgen.Init(1)
// ══════════════════════════════════════════════════════════════════════════
// 场景 1: 拔出 Redis (Zero-Redis Monolith 模式)
// ══════════════════════════════════════════════════════════════════════════
t.Run("Scenario_Unplugged_ZeroRedis_Mode", func(t *testing.T) {
app := newWaveletApp(core.ProfileAll, core.WithConfigValues(map[string]any{
"app": map[string]any{
"addr": "127.0.0.1:0",
},
"redis": map[string]any{
"enabled": false,
},
}))
require.NotNil(t, app)
require.NoError(t, app.Reconcile())
// 1. 验证插件挂载形态
f, ok := app.Fiber("cache_memory")
assert.True(t, ok, "cache_memory 必须挂载")
assert.Equal(t, core.FiberActive, f.State())
f, ok = app.Fiber("driver_inproc_worker")
assert.True(t, ok, "driver_inproc_worker 必须挂载")
assert.Equal(t, core.FiberActive, f.State())
f, ok = app.Fiber("driver_inproc_cron")
assert.True(t, ok, "driver_inproc_cron 必须挂载")
assert.Equal(t, core.FiberActive, f.State())
f, ok = app.Fiber("cache")
assert.True(t, ok)
assert.Equal(t, core.FiberSkipped, f.State(), "分布式 cache 不得挂载")
f, ok = app.Fiber("driver_asynq_worker")
assert.True(t, ok)
assert.Equal(t, core.FiberSkipped, f.State(), "asynq_worker 不得挂载")
f, ok = app.Fiber("driver_asynq_cron")
assert.True(t, ok)
assert.Equal(t, core.FiberSkipped, f.State(), "asynq_cron 不得挂载")
// 2. 注册测试任务与 Cron 定时
var taskExecuted atomic.Int32
var cronExecuted atomic.Int32
app.Context().Tasks().Register("test:inproc_task", func(ctx context.Context, payload []byte) error {
if string(payload) == "payload_unplugged" {
taskExecuted.Add(1)
}
return nil
}, extpoints.WithTaskTimeout(3*time.Second))
app.Context().Schedules().RegisterCron("* * * * * *", "test:inproc_cron", []byte("cron_ping"))
app.Context().Tasks().Register("test:inproc_cron", func(ctx context.Context, payload []byte) error {
if string(payload) == "cron_ping" {
cronExecuted.Add(1)
}
return nil
})
// 3. 启动应用
bootCtx, bootCancel := context.WithTimeout(context.Background(), 5*time.Second)
defer bootCancel()
require.NoError(t, app.Start(bootCtx))
// 4. 验证 CacheService 操作
cacheSvc, err := core.Inject[contracts.CacheService](app.Context())
require.NoError(t, err)
require.NotNil(t, cacheSvc)
reqCtx := context.Background()
require.NoError(t, cacheSvc.Set(reqCtx, "unplugged_key", "value_123", time.Minute))
var val string
require.NoError(t, cacheSvc.Get(reqCtx, "unplugged_key", &val))
assert.Equal(t, "value_123", val)
// 5. 验证异步 Worker 任务分发与执行
taskSvc, err := core.Inject[contracts.TaskService](app.Context())
require.NoError(t, err)
require.NotNil(t, taskSvc)
taskID, err := taskSvc.Dispatch(reqCtx, "test:inproc_task", []byte("payload_unplugged"), "unit_test")
require.NoError(t, err)
assert.NotEmpty(t, taskID)
require.Eventually(t, func() bool {
return taskExecuted.Load() >= 1
}, 3*time.Second, 50*time.Millisecond, "内存 Worker 应在进程内顺利执行任务")
// 6. 验证 Cron 定时触发
require.Eventually(t, func() bool {
return cronExecuted.Load() >= 1
}, 3*time.Second, 100*time.Millisecond, "内存 Cron 驱动应成功触发定时任务")
// 7. 优雅关闭
stopCtx, stopCancel := context.WithTimeout(context.Background(), 5*time.Second)
defer stopCancel()
require.NoError(t, app.Stop(stopCtx))
})
// ══════════════════════════════════════════════════════════════════════════
// 场景 2: 插入 Redis (Distributed Cluster 模式)
// ══════════════════════════════════════════════════════════════════════════
t.Run("Scenario_Plugged_Redis_Mode", func(t *testing.T) {
mr, err := miniredis.Run()
require.NoError(t, err)
defer mr.Close()
app := newWaveletApp(core.ProfileAll, core.WithConfigValues(map[string]any{
"app": map[string]any{
"addr": "127.0.0.1:0",
},
"redis": map[string]any{
"enabled": true,
"addrs": []string{mr.Addr()},
},
}))
require.NotNil(t, app)
require.NoError(t, app.Reconcile())
// 1. 验证插件挂载形态
f, ok := app.Fiber("cache")
assert.True(t, ok, "分布式 cache 必须挂载")
assert.Equal(t, core.FiberActive, f.State())
f, ok = app.Fiber("driver_asynq_worker")
assert.True(t, ok, "driver_asynq_worker 必须挂载")
assert.Equal(t, core.FiberActive, f.State())
f, ok = app.Fiber("driver_asynq_cron")
assert.True(t, ok, "driver_asynq_cron 必须挂载")
assert.Equal(t, core.FiberActive, f.State())
f, ok = app.Fiber("cache_memory")
assert.True(t, ok)
assert.Equal(t, core.FiberSkipped, f.State(), "纯内存 cache 不得挂载")
f, ok = app.Fiber("driver_inproc_worker")
assert.True(t, ok)
assert.Equal(t, core.FiberSkipped, f.State(), "inproc_worker 不得挂载")
f, ok = app.Fiber("driver_inproc_cron")
assert.True(t, ok)
assert.Equal(t, core.FiberSkipped, f.State(), "inproc_cron 不得挂载")
// 2. 注册测试任务
var asynqTaskExecuted atomic.Int32
app.Context().Tasks().Register("test:asynq_task", func(ctx context.Context, payload []byte) error {
if string(payload) == "payload_plugged" {
asynqTaskExecuted.Add(1)
}
return nil
}, extpoints.WithTaskTimeout(3*time.Second))
// 3. 启动应用
bootCtx, bootCancel := context.WithTimeout(context.Background(), 5*time.Second)
defer bootCancel()
require.NoError(t, app.Start(bootCtx))
// 4. 验证 CacheService 操作 (L1 RAM + L2 Redis)
cacheSvc, err := core.Inject[contracts.CacheService](app.Context())
require.NoError(t, err)
require.NotNil(t, cacheSvc)
reqCtx := context.Background()
testKey := fmt.Sprintf("plugged_key_%d", time.Now().UnixNano())
require.NoError(t, cacheSvc.Set(reqCtx, testKey, "value_redis_cluster", time.Minute))
var val string
require.NoError(t, cacheSvc.Get(reqCtx, testKey, &val))
assert.Equal(t, "value_redis_cluster", val)
// 验证失效广播与删除
require.NoError(t, cacheSvc.Delete(reqCtx, testKey))
var valAfterDelete string
err = cacheSvc.Get(reqCtx, testKey, &valAfterDelete)
assert.ErrorIs(t, err, contracts.ErrCacheMiss)
// 5. 验证 Asynq Worker 任务分发与消费
taskSvc, err := core.Inject[contracts.TaskService](app.Context())
require.NoError(t, err)
require.NotNil(t, taskSvc)
taskID, err := taskSvc.Dispatch(reqCtx, "test:asynq_task", []byte("payload_plugged"), "default")
require.NoError(t, err)
assert.NotEmpty(t, taskID)
require.Eventually(t, func() bool {
return asynqTaskExecuted.Load() >= 1
}, 10*time.Second, 100*time.Millisecond, "Asynq Worker 应从 Redis 队列中成功消费并执行任务")
// 6. 优雅关闭
stopCtx, stopCancel := context.WithTimeout(context.Background(), 5*time.Second)
defer stopCancel()
require.NoError(t, app.Stop(stopCtx))
})
// ══════════════════════════════════════════════════════════════════════════
// 场景 3: 往复插拔连续切换 (拔出 → 插入 → 再拔出,验证时空可组合性与零残留)
// ══════════════════════════════════════════════════════════════════════════
t.Run("Scenario_Dynamic_Plug_Unplug_Sequence", func(t *testing.T) {
mr, err := miniredis.Run()
require.NoError(t, err)
defer mr.Close()
for i := 1; i <= 2; i++ {
// 1. 拔出 Redis 运行
appUnplugged := newWaveletApp(core.ProfileAll, core.WithConfigValues(map[string]any{
"app": map[string]any{
"addr": "127.0.0.1:0",
},
"redis": map[string]any{
"enabled": false,
},
}))
require.NoError(t, appUnplugged.Start(context.Background()))
cacheSvc1, err := core.Inject[contracts.CacheService](appUnplugged.Context())
require.NoError(t, err)
require.NoError(t, cacheSvc1.Set(context.Background(), fmt.Sprintf("seq_key_%d", i), "seq_val_unplugged", time.Minute))
require.NoError(t, appUnplugged.Stop(context.Background()))
// 2. 插入 Redis 运行
appPlugged := newWaveletApp(core.ProfileAll, core.WithConfigValues(map[string]any{
"app": map[string]any{
"addr": "127.0.0.1:0",
},
"redis": map[string]any{
"enabled": true,
"addrs": []string{mr.Addr()},
},
}))
require.NoError(t, appPlugged.Start(context.Background()))
cacheSvc2, err := core.Inject[contracts.CacheService](appPlugged.Context())
require.NoError(t, err)
require.NoError(t, cacheSvc2.Set(context.Background(), fmt.Sprintf("seq_key_%d", i), "seq_val_plugged", time.Minute))
require.NoError(t, appPlugged.Stop(context.Background()))
}
})
}