Files
net/http/internal/chunked_test.go
T
deadprogram 35e809e0e5 Upgrade net package from Go 1.21.4 to Go 1.26.2
Backport upstream Go standard library changes to TinyGo's net package.

Unmodified files (18) replaced directly from Go 1.26.2 source.
Modified files (22) merged via 3-way diff, preserving all TinyGo
netdev adaptations, TINYGO markers, and embedded-device constraints.

Notable upstream changes included:
- net/http: cookie handling improvements, fs enhancements,
  reverse proxy updates, chunked encoding fixes
- net/http: ServeMux routing and pattern matching updates
- net: IP parsing and MAC address handling improvements
- Various doc link syntax modernization (e.g. [Dial], [Buffers])

TinyGo-only files (netdev.go, tlssock.go) unchanged.
All TINYGO comment markers preserved.
2026-04-13 22:55:27 +01:00

329 lines
8.7 KiB
Go

// TINYGO: The following is copied from Go 1.26.2 official implementation.
// Use of this source code is governed by a BSD-style
// license that can be found in the LICENSE file.
package internal
import (
"bufio"
"bytes"
"fmt"
"io"
"strings"
"testing"
"testing/iotest"
)
func TestChunk(t *testing.T) {
var b bytes.Buffer
w := NewChunkedWriter(&b)
const chunk1 = "hello, "
const chunk2 = "world! 0123456789abcdef"
w.Write([]byte(chunk1))
w.Write([]byte(chunk2))
w.Close()
if g, e := b.String(), "7\r\nhello, \r\n17\r\nworld! 0123456789abcdef\r\n0\r\n"; g != e {
t.Fatalf("chunk writer wrote %q; want %q", g, e)
}
r := NewChunkedReader(&b)
data, err := io.ReadAll(r)
if err != nil {
t.Logf(`data: "%s"`, data)
t.Fatalf("ReadAll from reader: %v", err)
}
if g, e := string(data), chunk1+chunk2; g != e {
t.Errorf("chunk reader read %q; want %q", g, e)
}
}
func TestChunkReadMultiple(t *testing.T) {
// Bunch of small chunks, all read together.
{
var b bytes.Buffer
w := NewChunkedWriter(&b)
w.Write([]byte("foo"))
w.Write([]byte("bar"))
w.Close()
r := NewChunkedReader(&b)
buf := make([]byte, 10)
n, err := r.Read(buf)
if n != 6 || err != io.EOF {
t.Errorf("Read = %d, %v; want 6, EOF", n, err)
}
buf = buf[:n]
if string(buf) != "foobar" {
t.Errorf("Read = %q; want %q", buf, "foobar")
}
}
// One big chunk followed by a little chunk, but the small bufio.Reader size
// should prevent the second chunk header from being read.
{
var b bytes.Buffer
w := NewChunkedWriter(&b)
// fillBufChunk is 11 bytes + 3 bytes header + 2 bytes footer = 16 bytes,
// the same as the bufio ReaderSize below (the minimum), so even
// though we're going to try to Read with a buffer larger enough to also
// receive "foo", the second chunk header won't be read yet.
const fillBufChunk = "0123456789a"
const shortChunk = "foo"
w.Write([]byte(fillBufChunk))
w.Write([]byte(shortChunk))
w.Close()
r := NewChunkedReader(bufio.NewReaderSize(&b, 16))
buf := make([]byte, len(fillBufChunk)+len(shortChunk))
n, err := r.Read(buf)
if n != len(fillBufChunk) || err != nil {
t.Errorf("Read = %d, %v; want %d, nil", n, err, len(fillBufChunk))
}
buf = buf[:n]
if string(buf) != fillBufChunk {
t.Errorf("Read = %q; want %q", buf, fillBufChunk)
}
n, err = r.Read(buf)
if n != len(shortChunk) || err != io.EOF {
t.Errorf("Read = %d, %v; want %d, EOF", n, err, len(shortChunk))
}
}
// And test that we see an EOF chunk, even though our buffer is already full:
{
r := NewChunkedReader(bufio.NewReader(strings.NewReader("3\r\nfoo\r\n0\r\n")))
buf := make([]byte, 3)
n, err := r.Read(buf)
if n != 3 || err != io.EOF {
t.Errorf("Read = %d, %v; want 3, EOF", n, err)
}
if string(buf) != "foo" {
t.Errorf("buf = %q; want foo", buf)
}
}
}
func TestChunkReaderAllocs(t *testing.T) {
if testing.Short() {
t.Skip("skipping in short mode")
}
var buf bytes.Buffer
w := NewChunkedWriter(&buf)
a, b, c := []byte("aaaaaa"), []byte("bbbbbbbbbbbb"), []byte("cccccccccccccccccccccccc")
w.Write(a)
w.Write(b)
w.Write(c)
w.Close()
readBuf := make([]byte, len(a)+len(b)+len(c)+1)
byter := bytes.NewReader(buf.Bytes())
bufr := bufio.NewReader(byter)
mallocs := testing.AllocsPerRun(100, func() {
byter.Seek(0, io.SeekStart)
bufr.Reset(byter)
r := NewChunkedReader(bufr)
n, err := io.ReadFull(r, readBuf)
if n != len(readBuf)-1 {
t.Fatalf("read %d bytes; want %d", n, len(readBuf)-1)
}
if err != io.ErrUnexpectedEOF {
t.Fatalf("read error = %v; want ErrUnexpectedEOF", err)
}
})
if mallocs > 1.5 {
t.Errorf("mallocs = %v; want 1", mallocs)
}
}
func TestParseHexUint(t *testing.T) {
type testCase struct {
in string
want uint64
wantErr string
}
tests := []testCase{
{"x", 0, "invalid byte in chunk length"},
{"0000000000000000", 0, ""},
{"0000000000000001", 1, ""},
{"ffffffffffffffff", 1<<64 - 1, ""},
{"000000000000bogus", 0, "invalid byte in chunk length"},
{"00000000000000000", 0, "http chunk length too large"}, // could accept if we wanted
{"10000000000000000", 0, "http chunk length too large"},
{"00000000000000001", 0, "http chunk length too large"}, // could accept if we wanted
{"", 0, "empty hex number for chunk length"},
}
for i := uint64(0); i <= 1234; i++ {
tests = append(tests, testCase{in: fmt.Sprintf("%x", i), want: i})
}
for _, tt := range tests {
got, err := parseHexUint([]byte(tt.in))
if tt.wantErr != "" {
if !strings.Contains(fmt.Sprint(err), tt.wantErr) {
t.Errorf("parseHexUint(%q) = %v, %v; want error %q", tt.in, got, err, tt.wantErr)
}
} else {
if err != nil || got != tt.want {
t.Errorf("parseHexUint(%q) = %v, %v; want %v", tt.in, got, err, tt.want)
}
}
}
}
func TestChunkReadingIgnoresExtensions(t *testing.T) {
in := "7;ext=\"some quoted string\"\r\n" + // token=quoted string
"hello, \r\n" +
"17;someext\r\n" + // token without value
"world! 0123456789abcdef\r\n" +
"0;someextension=sometoken\r\n" // token=token
data, err := io.ReadAll(NewChunkedReader(strings.NewReader(in)))
if err != nil {
t.Fatalf("ReadAll = %q, %v", data, err)
}
if g, e := string(data), "hello, world! 0123456789abcdef"; g != e {
t.Errorf("read %q; want %q", g, e)
}
}
// Issue 17355: ChunkedReader shouldn't block waiting for more data
// if it can return something.
func TestChunkReadPartial(t *testing.T) {
pr, pw := io.Pipe()
go func() {
pw.Write([]byte("7\r\n1234567"))
}()
cr := NewChunkedReader(pr)
readBuf := make([]byte, 7)
n, err := cr.Read(readBuf)
if err != nil {
t.Fatal(err)
}
want := "1234567"
if n != 7 || string(readBuf) != want {
t.Fatalf("Read: %v %q; want %d, %q", n, readBuf[:n], len(want), want)
}
go func() {
pw.Write([]byte("xx"))
}()
_, err = cr.Read(readBuf)
if got := fmt.Sprint(err); !strings.Contains(got, "malformed") {
t.Fatalf("second read = %v; want malformed error", err)
}
}
// Issue 48861: ChunkedReader should report incomplete chunks
func TestIncompleteChunk(t *testing.T) {
const valid = "4\r\nabcd\r\n" + "5\r\nabc\r\n\r\n" + "0\r\n"
for i := 0; i < len(valid); i++ {
incomplete := valid[:i]
r := NewChunkedReader(strings.NewReader(incomplete))
if _, err := io.ReadAll(r); err != io.ErrUnexpectedEOF {
t.Errorf("expected io.ErrUnexpectedEOF for %q, got %v", incomplete, err)
}
}
r := NewChunkedReader(strings.NewReader(valid))
if _, err := io.ReadAll(r); err != nil {
t.Errorf("unexpected error for %q: %v", valid, err)
}
}
func TestChunkEndReadError(t *testing.T) {
readErr := fmt.Errorf("chunk end read error")
r := NewChunkedReader(io.MultiReader(strings.NewReader("4\r\nabcd"), iotest.ErrReader(readErr)))
if _, err := io.ReadAll(r); err != readErr {
t.Errorf("expected %v, got %v", readErr, err)
}
}
func TestChunkReaderTooMuchOverhead(t *testing.T) {
// If the sender is sending 100x as many chunk header bytes as chunk data,
// we should reject the stream at some point.
chunk := []byte("1;")
for i := 0; i < 100; i++ {
chunk = append(chunk, 'a') // chunk extension
}
chunk = append(chunk, "\r\nX\r\n"...)
const bodylen = 1 << 20
r := NewChunkedReader(&funcReader{f: func(i int) ([]byte, error) {
if i < bodylen {
return chunk, nil
}
return []byte("0\r\n"), nil
}})
_, err := io.ReadAll(r)
if err == nil {
t.Fatalf("successfully read body with excessive overhead; want error")
}
}
func TestChunkReaderByteAtATime(t *testing.T) {
// Sending one byte per chunk should not trip the excess-overhead detection.
const bodylen = 1 << 20
r := NewChunkedReader(&funcReader{f: func(i int) ([]byte, error) {
if i < bodylen {
return []byte("1\r\nX\r\n"), nil
}
return []byte("0\r\n"), nil
}})
got, err := io.ReadAll(r)
if err != nil {
t.Errorf("unexpected error: %v", err)
}
if len(got) != bodylen {
t.Errorf("read %v bytes, want %v", len(got), bodylen)
}
}
func TestChunkInvalidInputs(t *testing.T) {
for _, test := range []struct {
name string
b string
}{{
name: "bare LF in chunk size",
b: "1\na\r\n0\r\n",
}, {
name: "extra LF in chunk size",
b: "1\r\r\na\r\n0\r\n",
}, {
name: "bare LF in chunk data",
b: "1\r\na\n0\r\n",
}, {
name: "bare LF in chunk extension",
b: "1;\na\r\n0\r\n",
}} {
t.Run(test.name, func(t *testing.T) {
r := NewChunkedReader(strings.NewReader(test.b))
got, err := io.ReadAll(r)
if err == nil {
t.Fatalf("unexpectedly parsed invalid chunked data:\n%q", got)
}
})
}
}
type funcReader struct {
f func(iteration int) ([]byte, error)
i int
b []byte
err error
}
func (r *funcReader) Read(p []byte) (n int, err error) {
if len(r.b) == 0 && r.err == nil {
r.b, r.err = r.f(r.i)
r.i++
}
n = copy(p, r.b)
r.b = r.b[n:]
if len(r.b) > 0 {
return n, nil
}
return n, r.err
}