Files
ModelRouter/e2e/e2e_test.go
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2026-08-30 08:04:22 +08:00

329 lines
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Go

// Package e2e runs the real llmsproxy binary against mocked upstreams over
// real HTTP: startup, auth, chat, streaming SSE, image generation, and
// AUTO failover when a higher-priority source fails.
package e2e
import (
"bytes"
"encoding/json"
"fmt"
"io"
"net"
"net/http"
"os"
"os/exec"
"path/filepath"
"runtime"
"strings"
"sync"
"testing"
"time"
)
// mockUpstream is an OpenAI-compatible upstream that can be programmed to fail.
type mockUpstream struct {
mu sync.Mutex
hits int
fail bool
server *http.Server
baseURL string
done chan struct{}
}
func newMockUpstream(t *testing.T) *mockUpstream {
m := &mockUpstream{done: make(chan struct{})}
l, err := net.Listen("tcp", "127.0.0.1:0")
if err != nil {
t.Fatalf("listen: %v", err)
}
mux := http.NewServeMux()
mux.HandleFunc("/chat/completions", func(w http.ResponseWriter, r *http.Request) {
m.mu.Lock()
m.hits++
fail := m.fail
m.mu.Unlock()
if fail {
w.WriteHeader(http.StatusInternalServerError)
fmt.Fprint(w, `{"error":"mock upstream down"}`)
return
}
body, _ := io.ReadAll(r.Body)
var req map[string]interface{}
_ = json.Unmarshal(body, &req)
if stream, _ := req["stream"].(bool); stream {
w.Header().Set("Content-Type", "text/event-stream")
w.WriteHeader(200)
fmt.Fprintln(w, `data: {"choices":[{"delta":{"content":"Hel"}}]}`)
fmt.Fprintln(w, `data: {"choices":[{"delta":{"content":"lo"}}]}`)
fmt.Fprintln(w, `data: {"choices":[{"delta":{},"finish_reason":"stop"}]}`)
fmt.Fprintln(w, "data: [DONE]")
return
}
w.Header().Set("Content-Type", "application/json")
w.WriteHeader(200)
fmt.Fprintf(w, `{"choices":[{"message":{"content":"pong"},"finish_reason":"stop"}],"usage":{"prompt_tokens":3,"completion_tokens":1,"total_tokens":4}}`)
})
mux.HandleFunc("/v1/images/generations", func(w http.ResponseWriter, r *http.Request) {
w.Header().Set("Content-Type", "application/json")
fmt.Fprint(w, `{"created":1,"data":[{"b64_json":"QUJD"}]}`)
})
m.server = &http.Server{Handler: mux}
go m.server.Serve(l)
m.baseURL = "http://" + l.Addr().String()
t.Cleanup(func() {
close(m.done)
_ = m.server.Close()
})
return m
}
func (m *mockUpstream) Hits() int {
m.mu.Lock()
defer m.mu.Unlock()
return m.hits
}
func (m *mockUpstream) SetFail(f bool) {
m.mu.Lock()
defer m.mu.Unlock()
m.fail = f
}
// gatewayUnderTest is the real binary, started from a temp config.
type gatewayUnderTest struct {
cmd *exec.Cmd
addr string
key string
log bytes.Buffer
}
func buildBinary(t *testing.T) string {
t.Helper()
dir := t.TempDir()
bin := filepath.Join(dir, "llmsproxy")
if runtime.GOOS == "windows" {
bin += ".exe" // go build writes the exact name; Windows needs the suffix to exec
}
out, err := exec.Command("go", "build", "-tags", "luajit", "-o", bin, "llmsproxy/cmd/llmsproxy").CombinedOutput()
if err != nil && runtime.GOOS == "windows" {
// local Windows dev box may lack LuaJIT: fall back to the bundled
// Lua runtime (the e2e adapters used here are passthrough-only)
out, err = exec.Command("go", "build", "-o", bin, "llmsproxy/cmd/llmsproxy").CombinedOutput()
}
if err != nil {
t.Fatalf("build: %v\n%s", err, out)
}
return bin
}
func startGateway(t *testing.T, bin, listen, cfgPath string) *gatewayUnderTest {
t.Helper()
g := &gatewayUnderTest{addr: listen, key: "sk-e2e-0001"}
g.cmd = exec.Command(bin, "-config", cfgPath)
g.cmd.Stdout = &g.log
g.cmd.Stderr = &g.log
if err := g.cmd.Start(); err != nil {
t.Fatalf("start: %v", err)
}
t.Cleanup(func() {
if g.cmd.Process != nil {
_ = g.cmd.Process.Kill()
_, _ = g.cmd.Process.Wait()
}
})
// wait for readiness
deadline := time.Now().Add(10 * time.Second)
for time.Now().Before(deadline) {
req, _ := http.NewRequest("GET", "http://"+g.addr+"/v1/models", nil)
req.Header.Set("Authorization", "Bearer "+g.key)
resp, err := http.DefaultClient.Do(req)
if err == nil {
io.Copy(io.Discard, resp.Body)
resp.Body.Close()
if resp.StatusCode == http.StatusOK {
return g
}
}
if g.cmd.ProcessState != nil {
t.Fatalf("gateway exited early:\n%s", g.log.String())
}
time.Sleep(100 * time.Millisecond)
}
t.Fatalf("gateway did not become ready:\n%s", g.log.String())
return nil
}
func (g *gatewayUnderTest) do(method, path string, body string, authed bool) (*http.Response, string) {
var r io.Reader
if body != "" {
r = strings.NewReader(body)
}
req, _ := http.NewRequest(method, "http://"+g.addr+path, r)
if authed {
req.Header.Set("Authorization", "Bearer "+g.key)
}
if body != "" {
req.Header.Set("Content-Type", "application/json")
}
resp, err := http.DefaultClient.Do(req)
if err != nil {
return nil, ""
}
data, _ := io.ReadAll(resp.Body)
resp.Body.Close()
return resp, string(data)
}
// writeConfig writes a temp gateway config pointing at the mock upstreams,
// listening on the given address. Every non-image upstream becomes a chat
// source; the first named one ("good") is the highest-priority AUTO slot.
func writeConfig(t *testing.T, dir, listenAddr string, upstreams map[string]*mockUpstream) string {
t.Helper()
var sb strings.Builder
sb.WriteString("listen: " + listenAddr + "\n")
sb.WriteString("gateway_keys:\n - sk-e2e-0001\n")
sb.WriteString("default_model: AUTO\n")
sb.WriteString("adapter_dir: " + filepath.Join(dir, "adapters") + "\n")
sb.WriteString("runtime_file: " + filepath.Join(dir, "runtime.json") + "\n")
sb.WriteString("sources:\n")
order := []string{"good", "fallback", "image"}
prio := map[string]int{"good": 100, "fallback": 50}
for _, name := range order {
u, ok := upstreams[name]
if !ok {
continue
}
if name == "image" {
sb.WriteString(" - name: imagegen\n base_url: " + u.baseURL + "\n adapter: openai\n models:\n - id: flux-1\n kind: image\n priority: 80\n")
} else {
sb.WriteString(" - name: " + name + "\n base_url: " + u.baseURL + "\n adapter: openai\n models:\n - id: " + name + "-m\n priority: " + fmt.Sprint(prio[name]) + "\n")
}
}
path := filepath.Join(dir, "config.yaml")
if err := os.WriteFile(path, []byte(sb.String()), 0o644); err != nil {
t.Fatalf("write config: %v", err)
}
return path
}
func TestEndToEnd(t *testing.T) {
upstreams := map[string]*mockUpstream{
"good": newMockUpstream(t),
"fallback": newMockUpstream(t),
"image": newMockUpstream(t),
}
dir := t.TempDir()
// pick a fixed free port for the gateway
l, err := net.Listen("tcp", "127.0.0.1:0")
if err != nil {
t.Fatalf("pick port: %v", err)
}
addr := l.Addr().String()
l.Close()
cfg := writeConfig(t, dir, addr, upstreams)
bin := buildBinary(t)
g := startGateway(t, bin, addr, cfg)
// 1. no key -> 401
resp, body := g.do("GET", "/v1/models", "", false)
if resp == nil || resp.StatusCode != http.StatusUnauthorized {
t.Fatalf("unauth status = %v body=%q", statusOf(resp), body)
}
// 2. list models
resp, body = g.do("GET", "/v1/models", "", true)
if resp == nil || resp.StatusCode != 200 {
t.Fatalf("models status=%v body=%q", statusOf(resp), body)
}
if !strings.Contains(body, "good-m") || !strings.Contains(body, "flux-1") {
t.Fatalf("models missing entries: %s", body)
}
// 3. single chat (explicit model)
resp, body = g.do("POST", "/v1/chat/completions",
`{"model":"good-m","messages":[{"role":"user","content":"hi"}]}`, true)
if resp == nil || resp.StatusCode != 200 {
t.Fatalf("chat status=%v body=%q", statusOf(resp), body)
}
var chat map[string]interface{}
_ = json.Unmarshal([]byte(body), &chat)
msg := chat["choices"].([]interface{})[0].(map[string]interface{})["message"].(map[string]interface{})
if msg["content"] != "pong" {
t.Fatalf("chat content = %q", msg["content"])
}
// 4. streaming SSE
resp, body = g.do("POST", "/v1/chat/completions",
`{"model":"good-m","stream":true,"messages":[{"role":"user","content":"hi"}]}`, true)
if resp == nil || resp.StatusCode != 200 {
t.Fatalf("stream status=%v body=%q", statusOf(resp), body)
}
if !strings.Contains(body, "Hel") || !strings.Contains(body, "lo") || !strings.Contains(body, "[DONE]") {
t.Fatalf("stream body = %q", body)
}
// 5. image generation
resp, body = g.do("POST", "/v1/images/generations",
`{"model":"flux-1","prompt":"a cat"}`, true)
if resp == nil || resp.StatusCode != 200 {
t.Fatalf("image status=%v body=%q", statusOf(resp), body)
}
if !strings.Contains(body, "QUJD") {
t.Fatalf("image body = %q", body)
}
// 6. AUTO failover: make the high-priority source fail, chat should still work
before := upstreams["good"].Hits()
upstreams["good"].SetFail(true)
resp, body = g.do("POST", "/v1/chat/completions",
`{"model":"AUTO","messages":[{"role":"user","content":"hi"}]}`, true)
upstreams["good"].SetFail(false)
if resp == nil || resp.StatusCode != 200 {
t.Fatalf("failover status=%v body=%q", statusOf(resp), body)
}
// the failing upstream must have received the attempt (proving fallback happened)
if upstreams["good"].Hits() <= before {
t.Fatalf("failover did not try the failing provider (hits %d -> %d)", before, upstreams["good"].Hits())
}
}
// TestEndToEndAuto503: with every AUTO slot failing, the gateway must answer
// 503 whose message summarizes each failed tier/source/model instead of a
// bare "no provider available" (P8).
func TestEndToEndAuto503(t *testing.T) {
upstreams := map[string]*mockUpstream{
"good": newMockUpstream(t),
}
dir := t.TempDir()
l, err := net.Listen("tcp", "127.0.0.1:0")
if err != nil {
t.Fatalf("pick port: %v", err)
}
addr := l.Addr().String()
l.Close()
cfg := writeConfig(t, dir, addr, upstreams)
bin := buildBinary(t)
g := startGateway(t, bin, addr, cfg)
upstreams["good"].SetFail(true)
resp, body := g.do("POST", "/v1/chat/completions",
`{"model":"AUTO","messages":[{"role":"user","content":"hi"}]}`, true)
if resp == nil || resp.StatusCode != http.StatusServiceUnavailable {
t.Fatalf("status=%v body=%q", statusOf(resp), body)
}
if !strings.Contains(body, "auto providers failed") || !strings.Contains(body, "good/good-m") {
t.Fatalf("503 must summarize the failed slot, body=%q", body)
}
}
func statusOf(resp *http.Response) int {
if resp == nil {
return -1
}
return resp.StatusCode
}