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Sub2API v1.0 - AI API 网关(二开初始版本,基于上游 Wei-Shaw/sub2api)
2026-08-21 18:30:13 +08:00

350 lines
8.8 KiB
Go

package servertiming
import (
"context"
"fmt"
"sort"
"strconv"
"strings"
"sync"
"time"
)
const (
HeaderName = "Server-Timing"
AdminUIHeader = "X-Admin-UI-Request"
UserUIHeader = "X-User-UI-Request"
MetricDatabase = "db"
MetricRedis = "redis"
dependencyPrefix = "dep_"
maxMetricNameLength = 48
maxIntervals = 2048
maxHeaderLength = 4096
)
type contextKey struct{}
type interval struct {
start time.Time
end time.Time
}
type metric struct {
count int64
intervals []interval
}
// Collector stores request-scoped timing samples. It is safe for concurrent use.
type Collector struct {
startedAt time.Time
mu sync.Mutex
metrics map[string]*metric
cacheStatus string
}
// New creates a collector whose total duration starts at startedAt.
func New(startedAt time.Time) *Collector {
if startedAt.IsZero() {
startedAt = time.Now()
}
return &Collector{
startedAt: startedAt,
metrics: make(map[string]*metric),
}
}
// WithCollector attaches a collector to a context.
func WithCollector(ctx context.Context, collector *Collector) context.Context {
if ctx == nil {
ctx = context.Background()
}
if collector == nil {
return ctx
}
return context.WithValue(ctx, contextKey{}, collector)
}
// FromContext returns the request timing collector, when one is active.
func FromContext(ctx context.Context) (*Collector, bool) {
if ctx == nil {
return nil, false
}
collector, ok := ctx.Value(contextKey{}).(*Collector)
return collector, ok && collector != nil
}
// Active reports whether timing collection is enabled for this request.
func Active(ctx context.Context) bool {
_, ok := FromContext(ctx)
return ok
}
// Record adds a completed interval and operation count to a metric.
func Record(ctx context.Context, name string, startedAt, endedAt time.Time, count int) {
collector, ok := FromContext(ctx)
if !ok {
return
}
collector.Record(name, startedAt, endedAt, count)
}
// RecordInterval adds timing without incrementing the operation count. It is
// useful when one logical operation has multiple blocking driver calls.
func RecordInterval(ctx context.Context, name string, startedAt, endedAt time.Time) {
collector, ok := FromContext(ctx)
if !ok {
return
}
collector.record(name, startedAt, endedAt, 0)
}
// Record adds a completed interval directly to the collector.
func (c *Collector) Record(name string, startedAt, endedAt time.Time, count int) {
if count <= 0 {
count = 1
}
c.record(name, startedAt, endedAt, count)
}
func (c *Collector) record(name string, startedAt, endedAt time.Time, count int) {
name = normalizeMetricName(name)
if c == nil || name == "" || startedAt.IsZero() || endedAt.Before(startedAt) {
return
}
if count < 0 {
count = 0
}
c.mu.Lock()
m := c.metrics[name]
if m == nil {
m = &metric{}
c.metrics[name] = m
}
m.count += int64(count)
if len(m.intervals) < maxIntervals {
m.intervals = append(m.intervals, interval{start: startedAt, end: endedAt})
}
c.mu.Unlock()
}
// Observe starts a metric span and returns an idempotent completion function.
func Observe(ctx context.Context, name string) func() {
collector, ok := FromContext(ctx)
name = normalizeMetricName(name)
if !ok || name == "" {
return func() {}
}
startedAt := time.Now()
var once sync.Once
return func() {
once.Do(func() {
collector.Record(name, startedAt, time.Now(), 1)
})
}
}
// ObserveDependency starts a named external dependency span.
func ObserveDependency(ctx context.Context, module string) func() {
return Observe(ctx, dependencyMetricName(module))
}
// RecordDependency records a completed external dependency interval.
func RecordDependency(ctx context.Context, module string, startedAt, endedAt time.Time) {
Record(ctx, dependencyMetricName(module), startedAt, endedAt, 1)
}
// SetCacheStatus records the response-cache outcome for the request.
func SetCacheStatus(ctx context.Context, status string) {
collector, ok := FromContext(ctx)
if !ok {
return
}
status = normalizeCacheStatus(status)
if status == "" {
return
}
collector.mu.Lock()
collector.cacheStatus = status
collector.mu.Unlock()
}
// HeaderValue renders a bounded, deterministic Server-Timing header.
func HeaderValue(ctx context.Context, endedAt time.Time, cacheStatus string) string {
collector, ok := FromContext(ctx)
if !ok {
return ""
}
return collector.HeaderValue(endedAt, cacheStatus)
}
// HeaderValue renders a bounded, deterministic Server-Timing header.
func (c *Collector) HeaderValue(endedAt time.Time, cacheStatus string) string {
if c == nil {
return ""
}
if endedAt.IsZero() {
endedAt = time.Now()
}
if endedAt.Before(c.startedAt) {
endedAt = c.startedAt
}
c.mu.Lock()
metrics := make(map[string]metric, len(c.metrics))
allIntervals := make([]interval, 0)
dependencyIntervals := make([]interval, 0)
var dependencyCount int64
for name, source := range c.metrics {
copied := metric{count: source.count, intervals: append([]interval(nil), source.intervals...)}
metrics[name] = copied
allIntervals = append(allIntervals, copied.intervals...)
if strings.HasPrefix(name, dependencyPrefix) {
dependencyIntervals = append(dependencyIntervals, copied.intervals...)
dependencyCount += copied.count
}
}
storedCacheStatus := c.cacheStatus
c.mu.Unlock()
total := endedAt.Sub(c.startedAt)
blocked := unionDuration(allIntervals, c.startedAt, endedAt)
app := total - blocked
if app < 0 {
app = 0
}
cacheStatus = normalizeCacheStatus(cacheStatus)
if cacheStatus == "" {
cacheStatus = normalizeCacheStatus(storedCacheStatus)
}
if cacheStatus == "" {
cacheStatus = "bypass"
}
database := metrics[MetricDatabase]
redisMetric := metrics[MetricRedis]
parts := []string{
"total;dur=" + formatDuration(total),
"app;dur=" + formatDuration(app),
fmt.Sprintf("db;dur=%s;desc=\"queries=%d\"", formatDuration(unionDuration(database.intervals, c.startedAt, endedAt)), database.count),
fmt.Sprintf("redis;dur=%s;desc=\"commands=%d\"", formatDuration(unionDuration(redisMetric.intervals, c.startedAt, endedAt)), redisMetric.count),
"cache;desc=\"" + cacheStatus + "\"",
fmt.Sprintf("deps;dur=%s;desc=\"calls=%d\"", formatDuration(unionDuration(dependencyIntervals, c.startedAt, endedAt)), dependencyCount),
}
dependencyNames := make([]string, 0)
for name := range metrics {
if strings.HasPrefix(name, dependencyPrefix) {
dependencyNames = append(dependencyNames, name)
}
}
sort.Strings(dependencyNames)
for _, name := range dependencyNames {
m := metrics[name]
part := fmt.Sprintf("%s;dur=%s;desc=\"calls=%d\"", name, formatDuration(unionDuration(m.intervals, c.startedAt, endedAt)), m.count)
candidate := strings.Join(append(parts, part), ", ")
if len(candidate) > maxHeaderLength {
break
}
parts = append(parts, part)
}
return strings.Join(parts, ", ")
}
func dependencyMetricName(module string) string {
module = normalizeMetricName(module)
module = strings.TrimPrefix(module, dependencyPrefix)
if module == "" {
module = "http"
}
return dependencyPrefix + module
}
func normalizeMetricName(name string) string {
name = strings.ToLower(strings.TrimSpace(name))
if name == "" {
return ""
}
var b strings.Builder
b.Grow(min(len(name), maxMetricNameLength))
for _, r := range name {
if b.Len() >= maxMetricNameLength {
break
}
switch {
case r >= 'a' && r <= 'z', r >= '0' && r <= '9':
_, _ = b.WriteRune(r)
case r == '_' || r == '-':
_ = b.WriteByte('_')
}
}
return strings.Trim(b.String(), "_")
}
func normalizeCacheStatus(status string) string {
switch strings.ToLower(strings.TrimSpace(status)) {
case "hit":
return "hit"
case "miss":
return "miss"
case "bypass":
return "bypass"
default:
return ""
}
}
func unionDuration(intervals []interval, lowerBound, upperBound time.Time) time.Duration {
if len(intervals) == 0 || !upperBound.After(lowerBound) {
return 0
}
normalized := make([]interval, 0, len(intervals))
for _, item := range intervals {
start := item.start
end := item.end
if start.Before(lowerBound) {
start = lowerBound
}
if end.After(upperBound) {
end = upperBound
}
if end.After(start) {
normalized = append(normalized, interval{start: start, end: end})
}
}
if len(normalized) == 0 {
return 0
}
sort.Slice(normalized, func(i, j int) bool {
return normalized[i].start.Before(normalized[j].start)
})
currentStart := normalized[0].start
currentEnd := normalized[0].end
var total time.Duration
for _, item := range normalized[1:] {
if !item.start.After(currentEnd) {
if item.end.After(currentEnd) {
currentEnd = item.end
}
continue
}
total += currentEnd.Sub(currentStart)
currentStart = item.start
currentEnd = item.end
}
total += currentEnd.Sub(currentStart)
return total
}
func formatDuration(value time.Duration) string {
if value < 0 {
value = 0
}
return strconv.FormatFloat(float64(value)/float64(time.Millisecond), 'f', 1, 64)
}