Files
openserp/core/browser.go

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package core
import (
"context"
"encoding/json"
"errors"
"fmt"
"net/http"
"net/url"
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"os"
"regexp"
"runtime/debug"
"strings"
"sync"
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"time"
"github.com/go-rod/rod"
"github.com/go-rod/rod/lib/launcher"
"github.com/go-rod/rod/lib/proto"
browserprofile "github.com/karust/openserp/core/browser"
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"github.com/sirupsen/logrus"
"github.com/ysmood/gson"
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)
// BrowserOpts configures Chromium launch and navigation behavior.
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type BrowserOpts struct {
// IsHeadless runs Chromium without visible UI.
IsHeadless bool
// IsLeakless forces child browser process cleanup when the parent exits.
IsLeakless bool
// Timeout is applied to browser connect and page navigation operations.
Timeout time.Duration
// LanguageCode sets Accept-Language for emulated requests.
LanguageCode string
// WaitRequests waits for request-idle state after navigation.
WaitRequests bool
// LeavePageOpen keeps pages open after search operations.
LeavePageOpen bool
// WaitLoadTime caps the document load-event wait after navigation. Selector
// parsing still decides whether the page is usable after this wait expires.
WaitLoadTime time.Duration
// CaptchaSolverApiKey enables 2Captcha integration for supported engines.
CaptchaSolverApiKey string
// CaptchaSolverEnabled gates solver invocation regardless of engine flags.
CaptchaSolverEnabled bool
// BrowserPath optionally points to a specific browser executable.
BrowserPath string
// ProxyURL defines the upstream proxy for browser traffic.
ProxyURL string
// ProxyLaneStore keeps sticky proxy lane profiles and cookies.
ProxyLaneStore *LaneStore
// Insecure allows invalid TLS certificates for browser requests.
Insecure bool
// UserAgent optionally overrides browser-reported user agent during emulation.
UserAgent string
// BlockResourceTypes are blocked during page navigation when non-empty.
// Typical tokens map to these types: image, font, css(stylesheet), js(script), media.
BlockResourceTypes []proto.NetworkResourceType
// BlockTrackers toggles static tracker-domain blocking.
BlockTrackers bool
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}
// Check applies default option values when optional fields are unset.
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func (o *BrowserOpts) Check() {
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if o.Timeout == 0 {
o.Timeout = time.Second * 30
}
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if o.WaitLoadTime == 0 {
o.WaitLoadTime = time.Second * 2
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}
}
func minPositiveDuration(a, b time.Duration) time.Duration {
if a <= 0 {
return b
}
if b <= 0 {
return a
}
if a < b {
return a
}
return b
}
var alwaysBlockedTrackingDomains = []string{
"google-analytics.com",
"googletagmanager.com",
"doubleclick.net",
"connect.facebook.net",
}
var alwaysBlockedTrackingURLPatterns = buildTrackingDomainURLPatterns(alwaysBlockedTrackingDomains)
var blockedResourceTypeTokenMap = map[string]proto.NetworkResourceType{
"image": proto.NetworkResourceTypeImage,
"font": proto.NetworkResourceTypeFont,
"media": proto.NetworkResourceTypeMedia,
"css": proto.NetworkResourceTypeStylesheet,
"js": proto.NetworkResourceTypeScript,
}
// ParseBlockedResourceTypes parses a comma-separated config value into
// NetworkResourceType values accepted by the request blocker.
func ParseBlockedResourceTypes(raw string) ([]proto.NetworkResourceType, error) {
raw = strings.TrimSpace(raw)
if raw == "" {
return nil, nil
}
parts := strings.Split(raw, ",")
seen := make(map[proto.NetworkResourceType]struct{}, len(parts))
out := make([]proto.NetworkResourceType, 0, len(parts))
for _, part := range parts {
token := strings.TrimSpace(strings.ToLower(part))
if token == "" {
continue
}
resourceType, ok := blockedResourceTypeTokenMap[token]
if !ok {
return nil, fmt.Errorf("unsupported resource type %q", token)
}
if _, exists := seen[resourceType]; exists {
continue
}
seen[resourceType] = struct{}{}
out = append(out, resourceType)
}
return out, nil
}
// MustParseBlockedResourceTypes is like ParseBlockedResourceTypes but panics on error.
// Only call this after the value has already been validated by ParseBlockedResourceTypes.
func MustParseBlockedResourceTypes(raw string) []proto.NetworkResourceType {
types, err := ParseBlockedResourceTypes(raw)
if err != nil {
panic(fmt.Sprintf("MustParseBlockedResourceTypes: %v", err))
}
return types
}
func buildTrackingDomainURLPatterns(domains []string) []string {
patterns := make([]string, 0, len(domains)*2)
for _, domain := range domains {
domain = strings.TrimSpace(strings.ToLower(domain))
if domain == "" {
continue
}
patterns = append(patterns, "*://"+domain+"/*", "*://*."+domain+"/*")
}
return patterns
}
func blockedResourceTypeSet(types []proto.NetworkResourceType) map[proto.NetworkResourceType]struct{} {
out := make(map[proto.NetworkResourceType]struct{}, len(types))
for _, t := range types {
if t != "" {
out[t] = struct{}{}
}
}
return out
}
func proxyAuthFetchPatterns() []*proto.FetchRequestPattern {
return []*proto.FetchRequestPattern{
{
URLPattern: "http://*/*",
ResourceType: proto.NetworkResourceTypeDocument,
RequestStage: proto.FetchRequestStageRequest,
},
{
URLPattern: "https://*/*",
ResourceType: proto.NetworkResourceTypeDocument,
RequestStage: proto.FetchRequestStageRequest,
},
}
}
func (b *Browser) configureRequestBlocking(ctx context.Context, page *rod.Page) error {
if !b.BlockTrackers && len(b.BlockResourceTypes) == 0 {
return nil
}
if b.BlockTrackers && len(alwaysBlockedTrackingURLPatterns) > 0 {
if err := (proto.NetworkEnable{}).Call(page); err != nil {
return fmt.Errorf("enable network domain for tracker blocking: %w", err)
}
if err := (proto.NetworkSetBlockedURLs{Urls: alwaysBlockedTrackingURLPatterns}).Call(page); err != nil {
return fmt.Errorf("set blocked tracking URLs: %w", err)
}
}
if len(b.BlockResourceTypes) == 0 {
return nil
}
// HijackRequests calls Fetch.enable on the page, which collides with the
// browser-level Fetch.enable installed by the proxy-auth listener. Two
// consumers competing for the same RequestID produce "Invalid
// InterceptionId" errors and stall parallel navigations (e.g. mega search
// behind an authenticated proxy). Resource-type blocking is dropped on the
// auth-proxy path; tracker URL blocking via NetworkSetBlockedURLs above
// still works because it is not Fetch-based.
if b.proxyUser != "" {
WithRequest(ctx).Debug("Skipping HijackRequests resource blocking under proxy auth listener")
return nil
}
blocked := blockedResourceTypeSet(b.BlockResourceTypes)
router := page.HijackRequests()
router.MustAdd("*", func(h *rod.Hijack) {
if _, ok := blocked[h.Request.Type()]; ok {
h.Response.Fail(proto.NetworkErrorReasonBlockedByClient)
return
}
h.ContinueRequest(&proto.FetchContinueRequest{})
})
go router.Run()
// Stop the router when the page context is done to avoid goroutine leak.
go func() {
<-ctx.Done()
if err := router.Stop(); err != nil && !errors.Is(err, context.Canceled) && !isBrowserClosedError(err) {
WithRequest(ctx).WithError(err).Debug("Stop request-blocking router failed")
}
}()
return nil
}
// Browser wraps a launched Chromium instance used by engine implementations.
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type Browser struct {
BrowserOpts
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browserAddr string
proxyUser string
proxyPass string
conn *browserConnection
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CaptchaSolver *CaptchaSolver
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}
type browserConnection struct {
mu sync.Mutex
browser *rod.Browser
laneProfiles map[string]browserprofile.Profile
authCancel context.CancelFunc
authStopped chan struct{}
}
// NewBrowser launches a new Chromium process via Rod launcher and returns a
// Browser wrapper configured with proxy and captcha solver settings.
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func NewBrowser(opts BrowserOpts) (*Browser, error) {
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opts.Check()
if strings.TrimSpace(opts.UserAgent) != "" {
logrus.Warn("custom user_agent override can reduce profile coherence; use only for diagnostics")
}
logrus.WithFields(browserOptsLogFields(opts)).Debug("Browser options")
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path, err := resolveBrowserBinaryPath(opts.BrowserPath, launcher.LookPath)
if err != nil {
return nil, err
}
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// Create launcher.
// headless=new uses the full Chrome renderer; legacy --headless disables the
// GPU process entirely, making WebGL context creation fail even with SwiftShader.
// use-angle=swiftshader-webgl (Chrome ≥112) enables a software WebGL renderer.
l := launcher.New().Leakless(opts.IsLeakless).
Set("disable-blink-features", "AutomationControlled").
Delete("enable-automation").
Set("use-angle", "swiftshader-webgl").
Set("ignore-gpu-blocklist")
if opts.IsHeadless {
l = l.HeadlessNew(true)
} else {
l = l.Headless(false)
}
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if path != "" {
logrus.WithField("browser_path", path).Debug("Using browser binary")
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l = l.Bin(path)
}
b := Browser{
conn: &browserConnection{},
}
// Configure proxy if specified. Chrome's --proxy-server flag must NOT
// include credentials; we strip them here and reinject via a persistent
// CDP Fetch.handleAuthRequired listener installed after each connect.
if opts.ProxyURL != "" {
normalizedProxyURL, err := NormalizeProxyURL(opts.ProxyURL)
if err != nil {
return nil, fmt.Errorf("invalid proxy URL: %v", err)
}
opts.ProxyURL = normalizedProxyURL
proxyUrl, err := url.Parse(opts.ProxyURL)
if err != nil {
return nil, fmt.Errorf("invalid proxy URL: %v", err)
}
proxyStr := proxyURLForBrowserLaunch(proxyUrl)
logrus.WithField("proxy", MaskProxyURL(proxyStr)).Debug("Setting up proxy")
l = l.Proxy(proxyStr)
if proxyUrl.User != nil && (proxyUrl.Scheme == "http" || proxyUrl.Scheme == "https") {
b.proxyUser = proxyUrl.User.Username()
b.proxyPass, _ = proxyUrl.User.Password()
logrus.WithFields(logrus.Fields{
"proxy_scheme": proxyUrl.Scheme,
"proxy_username": b.proxyUser,
}).Debugf("Proxy credentials configured for %s proxy: %s:****", proxyUrl.Scheme, b.proxyUser)
}
}
b.BrowserOpts = opts
b.browserAddr, err = l.Launch()
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if opts.CaptchaSolverEnabled && opts.CaptchaSolverApiKey != "" {
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b.CaptchaSolver = NewSolver(opts.CaptchaSolverApiKey)
logrus.Debug("Captcha solver initialized")
}
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return &b, err
}
func browserOptsLogFields(opts BrowserOpts) logrus.Fields {
return logrus.Fields{
"headless": opts.IsHeadless,
"leakless": opts.IsLeakless,
"timeout": opts.Timeout.String(),
"language_code": opts.LanguageCode,
"wait_requests": opts.WaitRequests,
"leave_page_open": opts.LeavePageOpen,
"captcha_solver_enabled": opts.CaptchaSolverEnabled,
"captcha_solver_has_key": strings.TrimSpace(opts.CaptchaSolverApiKey) != "",
"browser_path_configured": strings.TrimSpace(opts.BrowserPath) != "",
"proxy": maskedProxyLogValue(opts.ProxyURL),
"insecure": opts.Insecure,
"user_agent_override": strings.TrimSpace(opts.UserAgent) != "",
"block_resource_types": len(opts.BlockResourceTypes),
"block_trackers": opts.BlockTrackers,
"proxy_lanes_enabled": opts.ProxyLaneStore != nil,
}
}
func maskedProxyLogValue(proxyURL string) string {
if strings.TrimSpace(proxyURL) == "" {
return ""
}
return MaskProxyURL(proxyURL)
}
func proxyURLForBrowserLaunch(u *url.URL) string {
if u == nil {
return ""
}
clone := *u
// Chrome expects socks5 scheme in --proxy-server; socks5h is not accepted.
if clone.Scheme == "socks5h" {
clone.Scheme = "socks5"
}
clone.User = nil
clone.Path = ""
clone.RawPath = ""
clone.RawQuery = ""
clone.Fragment = ""
return clone.String()
}
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func validateBrowserBinaryPath(path string) error {
info, err := os.Stat(path)
if err != nil {
return err
}
if info.IsDir() {
return fmt.Errorf("path points to a directory")
}
return nil
}
// resolveBrowserBinaryPath prefers an explicit browser path. If no explicit path is provided,
// it falls back to launcher autodiscovery and lets Rod handle auto-download when no binary is found.
func resolveBrowserBinaryPath(browserPath string, lookPath func() (string, bool)) (string, error) {
if browserPath != "" {
if err := validateBrowserBinaryPath(browserPath); err != nil {
return "", fmt.Errorf("invalid browser_path %q: %w", browserPath, err)
}
return browserPath, nil
}
path, has := lookPath()
if has {
return path, nil
}
return "", nil
}
// IsInitialized reports whether the browser launcher has been created.
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func (b *Browser) IsInitialized() bool {
return b.browserAddr != ""
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}
func (b *Browser) connectionState() *browserConnection {
if b.conn == nil {
b.conn = &browserConnection{}
}
return b.conn
}
func (b *Browser) newRodBrowser() *rod.Browser {
browser := rod.New().NoDefaultDevice().ControlURL(b.browserAddr)
if b.Timeout > 0 {
browser = browser.Timeout(b.Timeout)
}
return browser
}
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func (b *Browser) connectBrowser() (*rod.Browser, error) {
browser := b.newRodBrowser()
if err := browser.Connect(); err != nil {
return nil, err
}
// Keep cert handling on the persistent browser session.
// Proxy runtime can surface MITM certs, and insecure mode is explicit opt-in.
if b.ProxyURL != "" || b.Insecure {
if err := browser.IgnoreCertErrors(true); err != nil {
return nil, err
}
}
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if b.proxyUser != "" {
if err := b.startProxyAuthListener(browser); err != nil {
return nil, fmt.Errorf("install proxy auth listener: %w", err)
}
}
return browser, nil
}
// startProxyAuthListener enables the Fetch domain with HandleAuthRequests=true
// and runs a goroutine that responds to every Fetch.requestPaused (continue
// the request) and every Fetch.authRequired (provide credentials). The
// listener lives for the lifetime of the rod.Browser session and replaces
// rod's single-shot HandleAuth helper.
func (b *Browser) startProxyAuthListener(browser *rod.Browser) error {
state := b.connectionState()
// Stop a previous listener attached to a stale connection.
if state.authCancel != nil {
state.authCancel()
if state.authStopped != nil {
<-state.authStopped
}
state.authCancel = nil
state.authStopped = nil
}
listenCtx, cancel := context.WithCancel(context.Background())
stopped := make(chan struct{})
state.authCancel = cancel
state.authStopped = stopped
username := b.proxyUser
password := b.proxyPass
scoped := browser.Context(listenCtx)
started := make(chan struct{})
go func() {
defer close(stopped)
// Subscribe via EachEvent. The wait function it returns blocks until
// listenCtx is cancelled. We close `started` after EachEvent has
// installed its handlers but before we wait, so the caller can safely
// enable the Fetch domain without racing the listener install.
//
// Each ack runs in its own goroutine. EachEvent invokes our callbacks
// sequentially on a single dispatch goroutine, and each ack performs a
// synchronous CDP roundtrip. Under concurrent load (e.g. mega search
// fanning out 5 engines through one Chrome) sequential dispatch
// becomes the bottleneck — Chrome times out paused requests faster
// than we can ack them, producing "Invalid InterceptionId" errors and
// stalled navigations. Acks for distinct RequestIDs are independent,
// so dispatching them concurrently is safe.
wait := scoped.EachEvent(
func(e *proto.FetchAuthRequired) bool {
go func(requestID proto.FetchRequestID) {
resp := proto.FetchAuthChallengeResponseResponseProvideCredentials
err := proto.FetchContinueWithAuth{
RequestID: requestID,
AuthChallengeResponse: &proto.FetchAuthChallengeResponse{
Response: resp,
Username: username,
Password: password,
},
}.Call(scoped)
if err != nil && !errors.Is(err, context.Canceled) {
logrus.WithError(err).Debug("Proxy auth response failed")
}
}(e.RequestID)
return false
},
func(e *proto.FetchRequestPaused) bool {
go func(requestID proto.FetchRequestID) {
err := proto.FetchContinueRequest{RequestID: requestID}.Call(scoped)
if err != nil && !errors.Is(err, context.Canceled) {
logrus.WithError(err).Debug("Continue paused request failed")
}
}(e.RequestID)
return false
},
)
close(started)
wait()
}()
<-started
if err := (proto.FetchEnable{
Patterns: proxyAuthFetchPatterns(),
HandleAuthRequests: true,
}).Call(browser); err != nil {
cancel()
<-stopped
state.authCancel = nil
state.authStopped = nil
return fmt.Errorf("enable Fetch domain: %w", err)
}
return nil
}
func (b *Browser) ensureConnectedBrowser(ctx context.Context, forceReconnect bool) (*rod.Browser, error) {
if b == nil || b.browserAddr == "" {
return nil, fmt.Errorf("browser is not initialized")
}
state := b.connectionState()
state.mu.Lock()
defer state.mu.Unlock()
if state.browser == nil || forceReconnect {
connected, err := b.connectBrowser()
if err != nil {
return nil, err
}
state.browser = connected
return state.browser, nil
}
if _, err := state.browser.Version(); err != nil {
WithRequest(ctx).WithError(err).Debug("Browser ping failed, reconnecting")
connected, reconnectErr := b.connectBrowser()
if reconnectErr != nil {
return nil, reconnectErr
}
state.browser = connected
}
return state.browser, nil
}
func createIsolatedPage(browser *rod.Browser, proxyURL string) (*rod.Page, proto.BrowserBrowserContextID, error) {
create := proto.TargetCreateBrowserContext{}
if strings.TrimSpace(proxyURL) != "" {
parsed, err := url.Parse(proxyURL)
if err != nil {
return nil, "", err
}
create.ProxyServer = proxyURLForBrowserLaunch(parsed)
}
browserContext, err := create.Call(browser)
if err != nil {
return nil, "", err
}
target, err := (proto.TargetCreateTarget{
URL: "about:blank",
BrowserContextID: browserContext.BrowserContextID,
}).Call(browser)
if err != nil {
_ = disposeBrowserContext(browser, browserContext.BrowserContextID)
return nil, "", err
}
page, err := browser.PageFromTarget(target.TargetID)
if err != nil {
_ = disposeBrowserContext(browser, browserContext.BrowserContextID)
return nil, "", err
}
return page, browserContext.BrowserContextID, nil
}
func disposeBrowserContext(browser *rod.Browser, browserContextID proto.BrowserBrowserContextID) error {
if browser == nil || browserContextID == "" {
return nil
}
return (proto.TargetDisposeBrowserContext{
BrowserContextID: browserContextID,
}).Call(browser)
}
var chromeVersionPattern = regexp.MustCompile(`(?:HeadlessChrome|Chrome)/([0-9]+\.[0-9]+\.[0-9]+\.[0-9]+)`)
func (b *Browser) laneProfile(ctx context.Context, browser *rod.Browser) (browserprofile.Profile, string) {
engine := engineFromContext(ctx)
region := profileRegionFromContext(ctx)
if region == "" {
region = strings.TrimSpace(b.LanguageCode)
}
if forcedID := forcedProfileIDFromContext(ctx); forcedID != "" {
profile, ok := browserprofile.ProfileByID(forcedID)
if ok {
profile = applyRuntimeBrowserVersion(profile, browser)
profile = applyProfileLanguageHint(profile, region)
if overrideUA := strings.TrimSpace(b.UserAgent); overrideUA != "" {
profile.UserAgent = overrideUA
}
return profile, "forced:" + forcedID
}
}
if laneKey := proxyLaneKeyFromContext(ctx); !laneKey.Empty() && b.ProxyLaneStore != nil {
profile := b.ProxyLaneStore.Profile(laneKey, func() browserprofile.Profile {
selected := browserprofile.SelectProfileForSession(engine, region, laneKey.SessionID)
selected = applyRuntimeBrowserVersion(selected, browser)
selected = applyProfileLanguageHint(selected, region)
if overrideUA := strings.TrimSpace(b.UserAgent); overrideUA != "" {
selected.UserAgent = overrideUA
}
return selected
})
return profile, laneKey.ID()
}
laneKey := browserprofile.LaneKey(engine, region)
state := b.connectionState()
state.mu.Lock()
if state.laneProfiles == nil {
state.laneProfiles = make(map[string]browserprofile.Profile)
}
if profile, ok := state.laneProfiles[laneKey]; ok {
state.mu.Unlock()
return profile, laneKey
}
state.mu.Unlock()
// Resolve profile outside the lock: SelectProfileForSession reads from a separate
// RWMutex-guarded catalog, and applyRuntimeBrowserVersion makes a CDP
// round-trip (browser.Version). Holding state.mu over network I/O would
// serialize all concurrent Navigate calls.
profile := browserprofile.SelectProfileForSession(engine, region, laneKey)
profile = applyRuntimeBrowserVersion(profile, browser)
profile = applyProfileLanguageHint(profile, region)
if overrideUA := strings.TrimSpace(b.UserAgent); overrideUA != "" {
profile.UserAgent = overrideUA
}
state.mu.Lock()
if state.laneProfiles == nil {
state.laneProfiles = make(map[string]browserprofile.Profile)
}
if _, exists := state.laneProfiles[laneKey]; !exists {
state.laneProfiles[laneKey] = profile
} else {
profile = state.laneProfiles[laneKey]
}
state.mu.Unlock()
return profile, laneKey
}
func applyRuntimeBrowserVersion(profile browserprofile.Profile, browser *rod.Browser) browserprofile.Profile {
fullVersion := ""
if browser != nil {
version, err := browser.Version()
if err == nil && version != nil {
fullVersion = extractChromeVersion(version.UserAgent)
if fullVersion == "" {
fullVersion = extractChromeVersion(version.Product)
}
}
}
if fullVersion == "" {
fullVersion = extractChromeVersion(profile.UserAgent)
}
if fullVersion == "" {
return profile
}
major := chromeMajorVersion(fullVersion)
if major == "" {
return profile
}
profile.UserAgent = replaceChromeUserAgentVersion(profile.UserAgent, major+".0.0.0")
profile.UACHBrands = patchBrandVersions(profile.UACHBrands, major, false)
profile.UACHFullVerList = patchBrandVersions(profile.UACHFullVerList, fullVersion, true)
return profile
}
func extractChromeVersion(value string) string {
matches := chromeVersionPattern.FindStringSubmatch(strings.TrimSpace(value))
if len(matches) < 2 {
return ""
}
return strings.TrimSpace(matches[1])
}
func chromeMajorVersion(fullVersion string) string {
fullVersion = strings.TrimSpace(fullVersion)
if fullVersion == "" {
return ""
}
parts := strings.Split(fullVersion, ".")
if len(parts) == 0 {
return ""
}
return strings.TrimSpace(parts[0])
}
func replaceChromeUserAgentVersion(userAgent string, replacement string) string {
replacement = strings.TrimSpace(replacement)
if replacement == "" {
return strings.ReplaceAll(strings.TrimSpace(userAgent), "HeadlessChrome/", "Chrome/")
}
normalized := strings.ReplaceAll(strings.TrimSpace(userAgent), "HeadlessChrome/", "Chrome/")
return chromeVersionPattern.ReplaceAllString(normalized, "Chrome/"+replacement)
}
func patchBrandVersions(values []browserprofile.BrandVersion, version string, patchNotABrand bool) []browserprofile.BrandVersion {
version = strings.TrimSpace(version)
if version == "" {
return values
}
out := make([]browserprofile.BrandVersion, 0, len(values))
for _, value := range values {
item := value
brandLower := strings.ToLower(strings.TrimSpace(item.Brand))
if brandLower == "chromium" || brandLower == "google chrome" {
item.Version = version
} else if patchNotABrand && strings.Contains(brandLower, "not_a brand") && strings.Count(version, ".") == 3 {
item.Version = "24.0.0.0"
}
out = append(out, item)
}
return out
}
func navigatorPlatformForProfile(profile browserprofile.Profile) string {
switch strings.ToLower(strings.TrimSpace(profile.Platform)) {
case "windows":
return "Win32"
case "macos":
return "MacIntel"
case "linux":
return "Linux x86_64"
default:
return strings.TrimSpace(profile.Platform)
}
}
type profileDisplayMetrics struct {
ViewportWidth int
ViewportHeight int
ScreenWidth int
ScreenHeight int
AvailWidth int
AvailHeight int
AvailTop int
OuterWidth int
OuterHeight int
PositionX int
PositionY int
}
func profileDisplayMetricsFor(profile browserprofile.Profile) profileDisplayMetrics {
screenWidth := profile.Viewport.Width
screenHeight := profile.Viewport.Height
if screenWidth <= 0 {
screenWidth = 1920
}
if screenHeight <= 0 {
screenHeight = 1080
}
chromeHeight := 85
systemReservedHeight := 40
availTop := 0
if strings.EqualFold(strings.TrimSpace(profile.Platform), "macos") {
chromeHeight = 88
systemReservedHeight = 25
availTop = 25
}
if profile.Mobile {
chromeHeight = 0
systemReservedHeight = 0
availTop = 0
}
availHeight := max(screenHeight-systemReservedHeight, 1)
viewportHeight := max(availHeight-chromeHeight, 1)
return profileDisplayMetrics{
ViewportWidth: screenWidth,
ViewportHeight: viewportHeight,
ScreenWidth: screenWidth,
ScreenHeight: screenHeight,
AvailWidth: screenWidth,
AvailHeight: availHeight,
AvailTop: availTop,
OuterWidth: screenWidth,
OuterHeight: availHeight,
PositionX: 0,
PositionY: availTop,
}
}
// applyProfileLanguageHint overrides the profile's locale-derived fields when
// the requested language differs from the cached profile's. A bare language
// hint that already matches the profile language is treated as a no-op so that
// an explicit profile region (e.g. en-GB) isn't clobbered by a default (en-US).
func applyProfileLanguageHint(profile browserprofile.Profile, langCode string) browserprofile.Profile {
hint := ParseLocale(langCode)
if hint.Language == "" {
return profile
}
current := ParseLocale(profile.Locale)
if current.Language == hint.Language && (hint.Country == "" || current.Country == hint.Country) {
return profile
}
primary := PrimaryLanguageTag(langCode)
if primary == "" {
return profile
}
profile.AcceptLanguage = BuildAcceptLanguageHeader(langCode)
profile.NavigatorLangs = []string{primary}
profile.Locale = primary
// Fill in country from the language default when the hint has no explicit country,
// so TimezoneForLocale can resolve even bare language codes like "de".
if hint.Country == "" {
if country, ok := defaultLocaleCountryByLanguage[hint.Language]; ok {
hint.Country = country
}
}
if tz := TimezoneForLocale(hint); tz != "" {
profile.Timezone = tz
}
return profile
}
func applyProfile(page *rod.Page, profile browserprofile.Profile, minimal bool) error {
if page == nil {
return fmt.Errorf("page is nil")
}
navigatorLangs := profileNavigatorLanguages(profile)
acceptLanguage := strings.TrimSpace(profile.AcceptLanguage)
if acceptLanguage == "" {
acceptLanguage = navigatorLangs[0]
}
locale := strings.TrimSpace(profile.Locale)
if locale == "" {
locale = navigatorLangs[0]
}
metrics := profileDisplayMetricsFor(profile)
metadata := &proto.EmulationUserAgentMetadata{
Brands: toProtoBrandVersions(profile.UACHBrands),
FullVersionList: toProtoBrandVersions(profile.UACHFullVerList),
Platform: strings.TrimSpace(profile.Platform),
PlatformVersion: strings.TrimSpace(profile.PlatformVersion),
Architecture: strings.TrimSpace(profile.Architecture),
Bitness: strings.TrimSpace(profile.Bitness),
Mobile: profile.Mobile,
}
if err := (proto.NetworkSetUserAgentOverride{
UserAgent: strings.TrimSpace(profile.UserAgent),
AcceptLanguage: acceptLanguage,
Platform: navigatorPlatformForProfile(profile),
UserAgentMetadata: metadata,
}).Call(page); err != nil {
return fmt.Errorf("set user agent override failed: %w", err)
}
if err := (proto.EmulationSetLocaleOverride{
Locale: locale,
}).Call(page); err != nil {
return fmt.Errorf("set locale override failed: %w", err)
}
if err := (proto.EmulationSetTimezoneOverride{
TimezoneID: strings.TrimSpace(profile.Timezone),
}).Call(page); err != nil {
return fmt.Errorf("set timezone override failed: %w", err)
}
if err := (proto.EmulationSetDeviceMetricsOverride{
Width: metrics.ViewportWidth,
Height: metrics.ViewportHeight,
DeviceScaleFactor: 1,
Mobile: profile.Mobile,
ScreenWidth: &metrics.ScreenWidth,
ScreenHeight: &metrics.ScreenHeight,
PositionX: &metrics.PositionX,
PositionY: &metrics.PositionY,
}).Call(page); err != nil {
return fmt.Errorf("set device metrics failed: %w", err)
}
if err := (proto.NetworkSetExtraHTTPHeaders{
Headers: proto.NetworkHeaders{
"Accept-Language": gson.New(acceptLanguage),
},
}).Call(page); err != nil {
return fmt.Errorf("set extra headers failed: %w", err)
}
if minimal {
return nil
}
if err := evalPatchScript(page, profile, navigatorLangs, metrics); err != nil {
return err
}
return nil
}
func (b *Browser) restoreLaneCookies(ctx context.Context, page *rod.Page) error {
if b == nil || b.ProxyLaneStore == nil {
return nil
}
laneKey := proxyLaneKeyFromContext(ctx)
if laneKey.Empty() {
return nil
}
cookies := b.ProxyLaneStore.Cookies(laneKey)
if len(cookies) == 0 {
return nil
}
if err := (proto.NetworkSetCookies{Cookies: cookieParams(cookies)}).Call(page); err != nil {
return fmt.Errorf("restore lane cookies: %w", err)
}
return nil
}
func (b *Browser) saveLaneCookies(ctx context.Context, page *rod.Page, pageURL string) {
if b == nil || b.ProxyLaneStore == nil || page == nil {
return
}
laneKey := proxyLaneKeyFromContext(ctx)
if laneKey.Empty() {
return
}
res, err := (proto.NetworkGetCookies{Urls: []string{pageURL}}).Call(page)
if err != nil {
WithRequest(ctx).WithError(err).Debug("Save lane cookies failed")
return
}
b.ProxyLaneStore.SaveCookies(laneKey, res.Cookies)
}
type mainDocumentStatusWatcher struct {
cancel context.CancelFunc
done chan struct{}
mu sync.Mutex
status int
}
type networkUsageWatcher struct {
cancel context.CancelFunc
done chan struct{}
}
type workerPatchWatcher struct {
cancel context.CancelFunc
done chan struct{}
page *rod.Page
}
var pageNetworkUsageWatchers sync.Map
var pageWorkerPatchWatchers sync.Map
func startMainDocumentStatusWatcher(ctx context.Context, page *rod.Page) *mainDocumentStatusWatcher {
watchCtx, cancel := context.WithCancel(EnsureContext(ctx))
watcher := &mainDocumentStatusWatcher{
cancel: cancel,
done: make(chan struct{}),
}
wait := page.Context(watchCtx).EachEvent(func(e *proto.NetworkResponseReceived) bool {
if e == nil || e.Response == nil || e.Type != proto.NetworkResourceTypeDocument {
return false
}
watcher.mu.Lock()
watcher.status = e.Response.Status
watcher.mu.Unlock()
return false
})
go func() {
defer close(watcher.done)
wait()
}()
return watcher
}
func (w *mainDocumentStatusWatcher) Stop() {
if w == nil {
return
}
w.cancel()
select {
case <-w.done:
case <-time.After(100 * time.Millisecond):
}
}
func startNetworkUsageWatcher(ctx context.Context, page *rod.Page) *networkUsageWatcher {
if networkUsageFromContext(ctx) == nil {
return nil
}
if err := (proto.NetworkEnable{}).Call(page); err != nil {
WithRequest(ctx).WithError(err).Debug("Enable network usage tracking failed")
return nil
}
watchCtx, cancel := context.WithCancel(EnsureContext(ctx))
watcher := &networkUsageWatcher{
cancel: cancel,
done: make(chan struct{}),
}
wait := page.Context(watchCtx).EachEvent(func(e *proto.NetworkLoadingFinished) bool {
if e != nil && e.EncodedDataLength > 0 {
AddNetworkBytes(ctx, int64(e.EncodedDataLength))
}
return false
})
go func() {
defer close(watcher.done)
wait()
}()
return watcher
}
func startWorkerPatchWatcher(ctx context.Context, page *rod.Page, script string) (*workerPatchWatcher, error) {
if page == nil || strings.TrimSpace(script) == "" {
return nil, nil
}
watchCtx, cancel := context.WithCancel(EnsureContext(ctx))
watcher := &workerPatchWatcher{
cancel: cancel,
done: make(chan struct{}),
page: page,
}
scopedPage := page.Context(watchCtx)
started := make(chan struct{})
go func() {
defer close(watcher.done)
wait := scopedPage.EachEvent(func(e *proto.TargetAttachedToTarget) bool {
if e == nil || e.SessionID == "" {
return false
}
go injectWorkerPatch(watchCtx, scopedPage.Browser(), e, script)
return false
})
close(started)
wait()
}()
<-started
if err := (proto.TargetSetAutoAttach{
AutoAttach: true,
WaitForDebuggerOnStart: true,
Flatten: true,
Filter: workerTargetFilter(),
}).Call(scopedPage); err != nil {
cancel()
<-watcher.done
return nil, fmt.Errorf("enable worker auto-attach: %w", err)
}
return watcher, nil
}
func workerTargetFilter() proto.TargetTargetFilter {
return proto.TargetTargetFilter{
{Type: "worker"},
{Type: string(proto.TargetTargetInfoTypeSharedWorker)},
{Type: string(proto.TargetTargetInfoTypeServiceWorker)},
}
}
func injectWorkerPatch(ctx context.Context, browser *rod.Browser, e *proto.TargetAttachedToTarget, script string) {
if browser == nil || e == nil || e.SessionID == "" {
return
}
injectCtx, cancel := context.WithTimeout(EnsureContext(ctx), 3*time.Second)
defer cancel()
if isPatchableWorkerTarget(e.TargetInfo) {
eval := proto.RuntimeEvaluate{
Expression: script,
Silent: true,
AllowUnsafeEvalBlockedByCSP: true,
}
if _, err := browser.Call(injectCtx, string(e.SessionID), eval.ProtoReq(), eval); err != nil && !errors.Is(err, context.Canceled) {
logrus.WithError(err).Debug("Worker profile patch failed")
}
}
if e.WaitingForDebugger {
run := proto.RuntimeRunIfWaitingForDebugger{}
if _, err := browser.Call(injectCtx, string(e.SessionID), run.ProtoReq(), run); err != nil && !errors.Is(err, context.Canceled) {
logrus.WithError(err).Debug("Resume worker after profile patch failed")
}
}
}
func isPatchableWorkerTarget(info *proto.TargetTargetInfo) bool {
if info == nil {
return true
}
switch string(info.Type) {
case "worker", string(proto.TargetTargetInfoTypeSharedWorker), string(proto.TargetTargetInfoTypeServiceWorker):
return true
default:
return false
}
}
func rememberNetworkUsageWatcher(page *rod.Page, watcher *networkUsageWatcher) {
if page == nil || watcher == nil {
return
}
pageNetworkUsageWatchers.Store(page, watcher)
}
func rememberWorkerPatchWatcher(page *rod.Page, watcher *workerPatchWatcher) {
if page == nil || watcher == nil {
return
}
pageWorkerPatchWatchers.Store(page, watcher)
}
func stopNetworkUsageWatcher(page *rod.Page) {
if page == nil {
return
}
raw, ok := pageNetworkUsageWatchers.LoadAndDelete(page)
if !ok {
return
}
if watcher, ok := raw.(*networkUsageWatcher); ok {
watcher.Stop()
}
}
func stopWorkerPatchWatcher(page *rod.Page) {
if page == nil {
return
}
raw, ok := pageWorkerPatchWatchers.LoadAndDelete(page)
if !ok {
return
}
if watcher, ok := raw.(*workerPatchWatcher); ok {
watcher.Stop()
}
}
func (w *networkUsageWatcher) Stop() {
if w == nil {
return
}
w.cancel()
select {
case <-w.done:
case <-time.After(100 * time.Millisecond):
}
}
func (w *workerPatchWatcher) Stop() {
if w == nil {
return
}
if w.page != nil {
disableCtx, cancel := context.WithTimeout(context.Background(), time.Second)
_ = (proto.TargetSetAutoAttach{
AutoAttach: false,
WaitForDebuggerOnStart: false,
Flatten: true,
Filter: workerTargetFilter(),
}).Call(w.page.Context(disableCtx))
cancel()
}
w.cancel()
select {
case <-w.done:
case <-time.After(100 * time.Millisecond):
}
}
func (w *mainDocumentStatusWatcher) Status() int {
if w == nil {
return 0
}
w.mu.Lock()
defer w.mu.Unlock()
return w.status
}
func classifyMainDocumentStatus(status int) error {
switch status {
case http.StatusForbidden:
return ErrBlocked
case http.StatusTooManyRequests:
return ErrRateLimited
default:
return nil
}
}
func profileNavigatorLanguages(profile browserprofile.Profile) []string {
langs := make([]string, 0, len(profile.NavigatorLangs))
for _, language := range profile.NavigatorLangs {
trimmed := strings.TrimSpace(language)
if trimmed == "" {
continue
}
langs = append(langs, trimmed)
}
if len(langs) > 0 {
return langs
}
acceptLanguage := strings.TrimSpace(profile.AcceptLanguage)
if acceptLanguage != "" {
parts := strings.Split(acceptLanguage, ",")
langs = make([]string, 0, len(parts))
for _, part := range parts {
part = strings.TrimSpace(part)
if part == "" {
continue
}
if idx := strings.Index(part, ";"); idx >= 0 {
part = strings.TrimSpace(part[:idx])
}
if part != "" {
langs = append(langs, part)
}
}
if len(langs) > 0 {
return langs
}
}
if locale := strings.TrimSpace(profile.Locale); locale != "" {
return []string{locale}
}
return []string{"en-US"}
}
func toProtoBrandVersions(values []browserprofile.BrandVersion) []*proto.EmulationUserAgentBrandVersion {
out := make([]*proto.EmulationUserAgentBrandVersion, 0, len(values))
for _, value := range values {
brand := strings.TrimSpace(value.Brand)
version := strings.TrimSpace(value.Version)
if brand == "" || version == "" {
continue
}
out = append(out, &proto.EmulationUserAgentBrandVersion{
Brand: brand,
Version: version,
})
}
return out
}
func buildProfilePatchScript(profile browserprofile.Profile, langs []string, metrics profileDisplayMetrics) (string, error) {
langsJSON, err := json.Marshal(langs)
if err != nil {
return "", fmt.Errorf("marshal navigator languages: %w", err)
}
webGLVendor := strings.TrimSpace(profile.WebGLVendor)
if webGLVendor == "" {
webGLVendor = "Intel Inc."
}
webGLRenderer := strings.TrimSpace(profile.WebGLRenderer)
if webGLRenderer == "" {
webGLRenderer = "Intel Iris OpenGL Engine"
}
webGLVendorJSON, err := json.Marshal(webGLVendor)
if err != nil {
return "", fmt.Errorf("marshal webgl vendor: %w", err)
}
webGLRendererJSON, err := json.Marshal(webGLRenderer)
if err != nil {
return "", fmt.Errorf("marshal webgl renderer: %w", err)
}
return fmt.Sprintf("(() => {\nconst __langs = %s;\nconst __w = %d;\nconst __h = %d;\nconst __screenW = %d;\nconst __screenH = %d;\nconst __availW = %d;\nconst __availH = %d;\nconst __availTop = %d;\nconst __outerW = %d;\nconst __outerH = %d;\nconst __webglVendor = %s;\nconst __webglRenderer = %s;\n%s\n})();",
string(langsJSON),
metrics.ViewportWidth,
metrics.ViewportHeight,
metrics.ScreenWidth,
metrics.ScreenHeight,
metrics.AvailWidth,
metrics.AvailHeight,
metrics.AvailTop,
metrics.OuterWidth,
metrics.OuterHeight,
string(webGLVendorJSON),
string(webGLRendererJSON),
string(browserprofile.PatchJS),
), nil
}
func evalPatchScript(page *rod.Page, profile browserprofile.Profile, langs []string, metrics profileDisplayMetrics) error {
script, err := buildProfilePatchScript(profile, langs, metrics)
if err != nil {
return err
}
_, err = page.EvalOnNewDocument(script)
if err != nil {
return fmt.Errorf("eval patch script: %w", err)
}
return nil
}
// Navigate connects to Chromium, creates a page, applies a coherent profile and
// proxy auth, then navigates to URL. It returns an initialized page ready for
// selector queries, or an error when browser setup/navigation fails.
func (b *Browser) Navigate(ctx context.Context, URL string) (*rod.Page, error) {
ctx = EnsureContext(ctx)
if err := ctx.Err(); err != nil {
return nil, err
}
WithRequest(ctx).WithField("url", URL).Debug("Navigate")
// Per-context proxy override is only used for unauthenticated proxies on a
// Chrome that was launched without a process-level proxy. When this Browser
// was launched with a proxy (b.ProxyURL set), Chrome handles routing and
// auth natively for the whole process; per-context override is skipped to
// avoid breaking Chrome's auth flow.
contextProxyURL := ""
if strings.TrimSpace(b.ProxyURL) == "" {
contextProxyURL = requestProxyURLFromContext(ctx)
}
hasProxy := contextProxyURL != "" || strings.TrimSpace(b.ProxyURL) != ""
browser, err := b.ensureConnectedBrowser(ctx, false)
if err != nil {
return nil, fmt.Errorf("browser connect failed: %w", err)
}
if hasProxy || b.Insecure {
if err := browser.IgnoreCertErrors(true); err != nil {
return nil, fmt.Errorf("ignore cert errors failed: %w", err)
}
}
page, browserContextID, err := createIsolatedPage(browser, contextProxyURL)
if err != nil {
// Single-shot reconnect for stale websocket sessions.
browser, err = b.ensureConnectedBrowser(ctx, true)
if err != nil {
return nil, fmt.Errorf("create isolated page failed, reconnect also failed: %w", err)
}
page, browserContextID, err = createIsolatedPage(browser, contextProxyURL)
if err != nil {
return nil, fmt.Errorf("create isolated page failed after reconnect: %w", err)
}
}
// closeOnErr closes page then disposes context. Order matters: disposing the
// context first causes Chrome to kill the page target before our Close call,
// producing a spurious "target closed" error on the page.Close() that follows.
closeOnErr := func() {
stopWorkerPatchWatcher(page)
stopNetworkUsageWatcher(page)
if cerr := page.Close(); cerr != nil && !isBrowserClosedError(cerr) {
WithRequest(ctx).WithError(cerr).Debug("Close page after navigate error failed")
}
if derr := disposeBrowserContext(browser, browserContextID); derr != nil && !isBrowserClosedError(derr) {
WithRequest(ctx).WithError(derr).Debug("Dispose browser context after navigate error failed")
}
}
profile, laneKey := b.laneProfile(ctx, browser)
SetBrowserProfileID(ctx, profile.ID)
minimalProfile := minimalBrowserProfileFromContext(ctx)
WithRequest(ctx).WithFields(logrus.Fields{
"lane_id": laneKey,
"minimal_profile": minimalProfile,
}).Info("Browser profile selected")
if err := applyProfile(page, profile, minimalProfile); err != nil {
closeOnErr()
return nil, fmt.Errorf("apply profile %s (%s) failed: %w", profile.ID, laneKey, err)
}
if err := b.restoreLaneCookies(ctx, page); err != nil {
closeOnErr()
return nil, err
}
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page = page.Context(ctx)
if !minimalProfile {
metrics := profileDisplayMetricsFor(profile)
patchScript, err := buildProfilePatchScript(profile, profileNavigatorLanguages(profile), metrics)
if err != nil {
closeOnErr()
return nil, err
}
workerPatchWatcher, err := startWorkerPatchWatcher(ctx, page, patchScript)
if err != nil {
closeOnErr()
return nil, err
}
rememberWorkerPatchWatcher(page, workerPatchWatcher)
}
if err := b.configureRequestBlocking(ctx, page); err != nil {
closeOnErr()
return nil, fmt.Errorf("configure request blocking failed: %w", err)
}
networkUsageWatcher := startNetworkUsageWatcher(ctx, page)
if b.LeavePageOpen {
defer networkUsageWatcher.Stop()
} else {
rememberNetworkUsageWatcher(page, networkUsageWatcher)
}
statusWatcher := startMainDocumentStatusWatcher(ctx, page)
defer statusWatcher.Stop()
timedPage := page.Timeout(b.Timeout)
if err := timedPage.Navigate(URL); err != nil {
closeOnErr()
return nil, classifyProxyNetworkError(err)
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}
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// Avoid panics from MustWaitLoad when the target navigates/closes mid-wait.
loadWaitTimeout := minPositiveDuration(b.Timeout, b.WaitLoadTime)
loadWaitPage := page.Timeout(loadWaitTimeout)
if werr := loadWaitPage.WaitLoad(); werr != nil {
if errors.Is(werr, context.DeadlineExceeded) {
// Some engines keep loading background resources while the DOM is already usable.
// Treat load timeout as non-fatal and let engine-specific selector timeouts decide.
WithRequest(ctx).WithField("timeout", loadWaitTimeout.String()).Debug(
fmt.Sprintf("WaitLoad timed out after %s; continuing with partial page state", loadWaitTimeout),
)
} else {
WithRequest(ctx).WithError(werr).Debug("WaitLoad returned early")
}
}
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// may cause bugs with google
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if b.WaitRequests {
wait := timedPage.WaitRequestIdle(300*time.Millisecond, nil, nil, nil)
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wait()
}
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// WaitStable internally waits for page load too, so cap it separately.
// Selector parsing still decides whether a partially loaded page is usable.
stableWaitTimeout := minPositiveDuration(b.Timeout, b.WaitLoadTime+time.Second)
if err := page.Timeout(stableWaitTimeout).WaitStable(800 * time.Millisecond); err != nil {
WithRequest(ctx).WithError(err).Debug("WaitStable returned early; continuing")
}
if err := classifyMainDocumentStatus(statusWatcher.Status()); err != nil {
closeOnErr()
return nil, err
}
b.saveLaneCookies(ctx, page, URL)
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return page, nil
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}
// Close closes the active browser connection.
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func (b *Browser) Close() error {
if b == nil || b.browserAddr == "" {
return nil
}
state := b.connectionState()
state.mu.Lock()
defer state.mu.Unlock()
browser := state.browser
if browser == nil {
browser = b.newRodBrowser()
if err := browser.Connect(); err != nil {
if isBrowserClosedError(err) {
return nil
}
return err
}
}
if state.authCancel != nil {
state.authCancel()
if state.authStopped != nil {
<-state.authStopped
}
state.authCancel = nil
state.authStopped = nil
}
state.browser = nil
state.laneProfiles = nil
if err := browser.Close(); err != nil && !isBrowserClosedError(err) {
return err
}
return nil
}
func (b *Browser) ClosePage(ctx context.Context, page *rod.Page, timeout time.Duration) error {
return ClosePageWithTimeout(ctx, page, timeout)
}
func isBrowserClosedError(err error) bool {
if err == nil {
return false
}
msg := strings.ToLower(err.Error())
return strings.Contains(msg, "connection refused") ||
strings.Contains(msg, "closed network connection") ||
strings.Contains(msg, "target closed") ||
strings.Contains(msg, "eof")
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}
// ClosePageWithTimeout bounds page close calls so shutdown paths don't hang.
func ClosePageWithTimeout(ctx context.Context, page *rod.Page, timeout time.Duration) error {
if page == nil {
return nil
}
stopWorkerPatchWatcher(page)
stopNetworkUsageWatcher(page)
if timeout <= 0 {
timeout = time.Second
}
baseCtx := EnsureContext(ctx)
if baseCtx.Err() != nil {
baseCtx = context.Background()
}
closeCtx, cancel := context.WithTimeout(baseCtx, timeout)
defer cancel()
pageWithTimeout := page.Context(closeCtx)
info, _ := pageWithTimeout.Info()
if err := pageWithTimeout.Close(); err != nil && !isBrowserClosedError(err) {
return err
}
if info != nil && info.BrowserContextID != "" {
if derr := disposeBrowserContext(page.Browser().Context(closeCtx), info.BrowserContextID); derr != nil && !isBrowserClosedError(derr) {
return derr
}
}
return nil
}
// RecoverEnginePanic converts recovered panics to a typed engine error and
// logs stack trace with engine context.
func RecoverEnginePanic(engine string, recovered interface{}, logger *EngineLogger) error {
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return RecoverEnginePanicWithContext(context.TODO(), engine, recovered, logger)
}
func RecoverEnginePanicWithContext(ctx context.Context, engine string, recovered interface{}, logger *EngineLogger) error {
stack := debug.Stack()
if logger != nil {
logger.Error("Recovered panic in %s Search: panic=%v\n%s", engine, recovered, string(stack))
} else {
WithRequestEngine(ctx, engine).Errorf("Recovered panic in %s Search: panic=%v\n%s", engine, recovered, string(stack))
}
return fmt.Errorf("%w: %s", ErrEngineInternal, engine)
}
// IsRodObjectNotFound reports element/object lookup misses across rod error
// variants used by selector calls.
func IsRodObjectNotFound(err error) bool {
if err == nil {
return false
}
var objectErr *rod.ObjectNotFoundError
if errors.As(err, &objectErr) {
return true
}
var elementErr *rod.ElementNotFoundError
return errors.As(err, &elementErr)
}