d57c78bc71
This is how I did it: 1. `git clone https://github.com/ooni/probe-engine internal/engine` 2. ``` (cd internal/engine && git describe --tags) v0.23.0 ``` 3. `nvim go.mod` (merging `go.mod` with `internal/engine/go.mod` 4. `rm -rf internal/.git internal/engine/go.{mod,sum}` 5. `git add internal/engine` 6. `find . -type f -name \*.go -exec sed -i 's@/ooni/probe-engine@/ooni/probe-cli/v3/internal/engine@g' {} \;` 7. `go build ./...` (passes) 8. `go test -race ./...` (temporary failure on RiseupVPN) 9. `go mod tidy` 10. this commit message Once this piece of work is done, we can build a new version of `ooniprobe` that is using `internal/engine` directly. We need to do more work to ensure all the other functionality in `probe-engine` (e.g. making mobile packages) are still WAI. Part of https://github.com/ooni/probe/issues/1335
126 lines
3.2 KiB
Go
126 lines
3.2 KiB
Go
package dialer
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import (
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"context"
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"crypto/tls"
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"net"
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"time"
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"github.com/ooni/probe-cli/v3/internal/engine/internal/tlsx"
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"github.com/ooni/probe-cli/v3/internal/engine/netx/errorx"
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"github.com/ooni/probe-cli/v3/internal/engine/netx/trace"
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)
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// SaverDialer saves events occurring during the dial
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type SaverDialer struct {
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Dialer
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Saver *trace.Saver
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}
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// DialContext implements Dialer.DialContext
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func (d SaverDialer) DialContext(ctx context.Context, network, address string) (net.Conn, error) {
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start := time.Now()
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conn, err := d.Dialer.DialContext(ctx, network, address)
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stop := time.Now()
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d.Saver.Write(trace.Event{
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Address: address,
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Duration: stop.Sub(start),
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Err: err,
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Name: errorx.ConnectOperation,
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Proto: network,
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Time: stop,
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})
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return conn, err
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}
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// SaverTLSHandshaker saves events occurring during the handshake
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type SaverTLSHandshaker struct {
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TLSHandshaker
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Saver *trace.Saver
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}
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// Handshake implements TLSHandshaker.Handshake
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func (h SaverTLSHandshaker) Handshake(
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ctx context.Context, conn net.Conn, config *tls.Config,
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) (net.Conn, tls.ConnectionState, error) {
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start := time.Now()
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h.Saver.Write(trace.Event{
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Name: "tls_handshake_start",
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NoTLSVerify: config.InsecureSkipVerify,
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TLSNextProtos: config.NextProtos,
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TLSServerName: config.ServerName,
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Time: start,
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})
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tlsconn, state, err := h.TLSHandshaker.Handshake(ctx, conn, config)
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stop := time.Now()
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h.Saver.Write(trace.Event{
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Duration: stop.Sub(start),
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Err: err,
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Name: "tls_handshake_done",
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NoTLSVerify: config.InsecureSkipVerify,
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TLSCipherSuite: tlsx.CipherSuiteString(state.CipherSuite),
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TLSNegotiatedProto: state.NegotiatedProtocol,
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TLSNextProtos: config.NextProtos,
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TLSPeerCerts: trace.PeerCerts(state, err),
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TLSServerName: config.ServerName,
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TLSVersion: tlsx.VersionString(state.Version),
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Time: stop,
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})
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return tlsconn, state, err
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}
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// SaverConnDialer wraps the returned connection such that we
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// collect all the read/write events that occur.
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type SaverConnDialer struct {
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Dialer
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Saver *trace.Saver
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}
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// DialContext implements Dialer.DialContext
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func (d SaverConnDialer) DialContext(ctx context.Context, network, address string) (net.Conn, error) {
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conn, err := d.Dialer.DialContext(ctx, network, address)
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if err != nil {
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return nil, err
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}
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return saverConn{saver: d.Saver, Conn: conn}, nil
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}
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type saverConn struct {
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net.Conn
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saver *trace.Saver
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}
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func (c saverConn) Read(p []byte) (int, error) {
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start := time.Now()
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count, err := c.Conn.Read(p)
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stop := time.Now()
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c.saver.Write(trace.Event{
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Data: p[:count],
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Duration: stop.Sub(start),
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Err: err,
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NumBytes: count,
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Name: errorx.ReadOperation,
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Time: stop,
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})
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return count, err
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}
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func (c saverConn) Write(p []byte) (int, error) {
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start := time.Now()
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count, err := c.Conn.Write(p)
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stop := time.Now()
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c.saver.Write(trace.Event{
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Data: p[:count],
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Duration: stop.Sub(start),
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Err: err,
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NumBytes: count,
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Name: errorx.WriteOperation,
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Time: stop,
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})
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return count, err
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}
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var _ Dialer = SaverDialer{}
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var _ TLSHandshaker = SaverTLSHandshaker{}
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var _ net.Conn = saverConn{}
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