frame.go 25 KB

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  1. // Copyright 2014 The Go Authors.
  2. // See https://code.google.com/p/go/source/browse/CONTRIBUTORS
  3. // Licensed under the same terms as Go itself:
  4. // https://code.google.com/p/go/source/browse/LICENSE
  5. package http2
  6. import (
  7. "bytes"
  8. "encoding/binary"
  9. "errors"
  10. "fmt"
  11. "io"
  12. "sync"
  13. )
  14. const frameHeaderLen = 9
  15. var padZeros = make([]byte, 255) // zeros for padding
  16. // A FrameType is a registered frame type as defined in
  17. // http://http2.github.io/http2-spec/#rfc.section.11.2
  18. type FrameType uint8
  19. const (
  20. FrameData FrameType = 0x0
  21. FrameHeaders FrameType = 0x1
  22. FramePriority FrameType = 0x2
  23. FrameRSTStream FrameType = 0x3
  24. FrameSettings FrameType = 0x4
  25. FramePushPromise FrameType = 0x5
  26. FramePing FrameType = 0x6
  27. FrameGoAway FrameType = 0x7
  28. FrameWindowUpdate FrameType = 0x8
  29. FrameContinuation FrameType = 0x9
  30. )
  31. var frameName = map[FrameType]string{
  32. FrameData: "DATA",
  33. FrameHeaders: "HEADERS",
  34. FramePriority: "PRIORITY",
  35. FrameRSTStream: "RST_STREAM",
  36. FrameSettings: "SETTINGS",
  37. FramePushPromise: "PUSH_PROMISE",
  38. FramePing: "PING",
  39. FrameGoAway: "GOAWAY",
  40. FrameWindowUpdate: "WINDOW_UPDATE",
  41. FrameContinuation: "CONTINUATION",
  42. }
  43. func (t FrameType) String() string {
  44. if s, ok := frameName[t]; ok {
  45. return s
  46. }
  47. return fmt.Sprintf("UNKNOWN_FRAME_TYPE_%d", uint8(t))
  48. }
  49. // Flags is a bitmask of HTTP/2 flags.
  50. // The meaning of flags varies depending on the frame type.
  51. type Flags uint8
  52. // Has reports whether f contains all (0 or more) flags in v.
  53. func (f Flags) Has(v Flags) bool {
  54. return (f & v) == v
  55. }
  56. // Frame-specific FrameHeader flag bits.
  57. const (
  58. // Data Frame
  59. FlagDataEndStream Flags = 0x1
  60. FlagDataPadded Flags = 0x8
  61. // Headers Frame
  62. FlagHeadersEndStream Flags = 0x1
  63. FlagHeadersEndHeaders Flags = 0x4
  64. FlagHeadersPadded Flags = 0x8
  65. FlagHeadersPriority Flags = 0x20
  66. // Settings Frame
  67. FlagSettingsAck Flags = 0x1
  68. // Ping Frame
  69. FlagPingAck Flags = 0x1
  70. // Continuation Frame
  71. FlagContinuationEndHeaders Flags = 0x4
  72. )
  73. var flagName = map[FrameType]map[Flags]string{
  74. FrameData: {
  75. FlagDataEndStream: "END_STREAM",
  76. FlagDataPadded: "PADDED",
  77. },
  78. FrameHeaders: {
  79. FlagHeadersEndStream: "END_STREAM",
  80. FlagHeadersEndHeaders: "END_HEADERS",
  81. FlagHeadersPadded: "PADDED",
  82. FlagHeadersPriority: "PRIORITY",
  83. },
  84. FrameSettings: {
  85. FlagSettingsAck: "ACK",
  86. },
  87. FramePing: {
  88. FlagPingAck: "ACK",
  89. },
  90. FrameContinuation: {
  91. FlagContinuationEndHeaders: "END_HEADERS",
  92. },
  93. }
  94. // A SettingID is an HTTP/2 setting as defined in
  95. // http://http2.github.io/http2-spec/#iana-settings
  96. type SettingID uint16
  97. const (
  98. SettingHeaderTableSize SettingID = 0x1
  99. SettingEnablePush SettingID = 0x2
  100. SettingMaxConcurrentStreams SettingID = 0x3
  101. SettingInitialWindowSize SettingID = 0x4
  102. SettingMaxFrameSize SettingID = 0x5
  103. SettingMaxHeaderListSize SettingID = 0x6
  104. )
  105. var settingName = map[SettingID]string{
  106. SettingHeaderTableSize: "HEADER_TABLE_SIZE",
  107. SettingEnablePush: "ENABLE_PUSH",
  108. SettingMaxConcurrentStreams: "MAX_CONCURRENT_STREAMS",
  109. SettingInitialWindowSize: "INITIAL_WINDOW_SIZE",
  110. SettingMaxFrameSize: "MAX_FRAME_SIZE",
  111. SettingMaxHeaderListSize: "MAX_HEADER_LIST_SIZE",
  112. }
  113. func (s SettingID) String() string {
  114. if v, ok := settingName[s]; ok {
  115. return v
  116. }
  117. return fmt.Sprintf("UNKNOWN_SETTING_%d", uint8(s))
  118. }
  119. // a frameParser parses a frame given its FrameHeader and payload
  120. // bytes. The length of payload will always equal fh.Length (which
  121. // might be 0).
  122. type frameParser func(fh FrameHeader, payload []byte) (Frame, error)
  123. var frameParsers = map[FrameType]frameParser{
  124. FrameData: parseDataFrame,
  125. FrameHeaders: parseHeadersFrame,
  126. FramePriority: parsePriorityFrame,
  127. FrameRSTStream: parseRSTStreamFrame,
  128. FrameSettings: parseSettingsFrame,
  129. FramePushPromise: nil, // TODO
  130. FramePing: parsePingFrame,
  131. FrameGoAway: parseGoAwayFrame,
  132. FrameWindowUpdate: parseWindowUpdateFrame,
  133. FrameContinuation: parseContinuationFrame,
  134. }
  135. func typeFrameParser(t FrameType) frameParser {
  136. if f := frameParsers[t]; f != nil {
  137. return f
  138. }
  139. return parseUnknownFrame
  140. }
  141. // A FrameHeader is the 9 byte header of all HTTP/2 frames.
  142. //
  143. // See http://http2.github.io/http2-spec/#FrameHeader
  144. type FrameHeader struct {
  145. valid bool // caller can access []byte fields in the Frame
  146. Type FrameType
  147. Flags Flags
  148. Length uint32 // actually a uint24 max; default is uint16 max
  149. StreamID uint32
  150. }
  151. // Header returns h. It exists so FrameHeaders can be embedded in other
  152. // specific frame types and implement the Frame interface.
  153. func (h FrameHeader) Header() FrameHeader { return h }
  154. func (h FrameHeader) String() string {
  155. var buf bytes.Buffer
  156. buf.WriteString("[FrameHeader ")
  157. buf.WriteString(h.Type.String())
  158. if h.Flags != 0 {
  159. buf.WriteString(" flags=")
  160. set := 0
  161. for i := uint8(0); i < 8; i++ {
  162. if h.Flags&(1<<i) == 0 {
  163. continue
  164. }
  165. set++
  166. if set > 1 {
  167. buf.WriteByte('|')
  168. }
  169. name := flagName[h.Type][Flags(1<<i)]
  170. if name != "" {
  171. buf.WriteString(name)
  172. } else {
  173. fmt.Fprintf(&buf, "0x%x", 1<<i)
  174. }
  175. }
  176. }
  177. if h.StreamID != 0 {
  178. fmt.Fprintf(&buf, " stream=%d", h.StreamID)
  179. }
  180. fmt.Fprintf(&buf, " len=%d]", h.Length)
  181. return buf.String()
  182. }
  183. func (h *FrameHeader) checkValid() {
  184. if !h.valid {
  185. panic("Frame accessor called on non-owned Frame")
  186. }
  187. }
  188. func (h *FrameHeader) invalidate() { h.valid = false }
  189. // frame header bytes.
  190. // Used only by ReadFrameHeader.
  191. var fhBytes = sync.Pool{
  192. New: func() interface{} {
  193. buf := make([]byte, frameHeaderLen)
  194. return &buf
  195. },
  196. }
  197. // ReadFrameHeader reads 9 bytes from r and returns a FrameHeader.
  198. // Most users should use Framer.ReadFrame instead.
  199. func ReadFrameHeader(r io.Reader) (FrameHeader, error) {
  200. bufp := fhBytes.Get().(*[]byte)
  201. defer fhBytes.Put(bufp)
  202. return readFrameHeader(*bufp, r)
  203. }
  204. func readFrameHeader(buf []byte, r io.Reader) (FrameHeader, error) {
  205. _, err := io.ReadFull(r, buf[:frameHeaderLen])
  206. if err != nil {
  207. return FrameHeader{}, err
  208. }
  209. return FrameHeader{
  210. Length: (uint32(buf[0])<<16 | uint32(buf[1])<<8 | uint32(buf[2])),
  211. Type: FrameType(buf[3]),
  212. Flags: Flags(buf[4]),
  213. StreamID: binary.BigEndian.Uint32(buf[5:]) & (1<<31 - 1),
  214. valid: true,
  215. }, nil
  216. }
  217. // A Frame is the base interface implemented by all frame types.
  218. // Callers will generally type-assert the specific frame type:
  219. // *HeadersFrame, *SettingsFrame, *WindowUpdateFrame, etc.
  220. //
  221. // Frames are only valid until the next call to Framer.ReadFrame.
  222. type Frame interface {
  223. Header() FrameHeader
  224. // invalidate is called by Framer.ReadFrame to make this
  225. // frame's buffers as being invalid, since the subsequent
  226. // frame will reuse them.
  227. invalidate()
  228. }
  229. // A Framer reads and writes Frames.
  230. type Framer struct {
  231. r io.Reader
  232. lr io.LimitedReader
  233. lastFrame Frame
  234. readBuf []byte
  235. w io.Writer
  236. wbuf []byte
  237. // AllowIllegalWrites permits the Framer's Write methods to
  238. // write frames that do not conform to the HTTP/2 spec. This
  239. // permits using the Framer to test other HTTP/2
  240. // implementations' conformance to the spec.
  241. // If false, the Write methods will prefer to return an error
  242. // rather than comply.
  243. AllowIllegalWrites bool
  244. // TODO: track which type of frame & with which flags was sent
  245. // last. Then return an error (unless AllowIllegalWrites) if
  246. // we're in the middle of a header block and a
  247. // non-Continuation or Continuation on a different stream is
  248. // attempted to be written.
  249. // TODO: add limits on max frame size allowed to be read &
  250. // written.
  251. }
  252. func (f *Framer) startWrite(ftype FrameType, flags Flags, streamID uint32) {
  253. // Write the FrameHeader.
  254. f.wbuf = append(f.wbuf[:0],
  255. 0, // 3 bytes of length, filled in in endWrite
  256. 0,
  257. 0,
  258. byte(ftype),
  259. byte(flags),
  260. byte(streamID>>24),
  261. byte(streamID>>16),
  262. byte(streamID>>8),
  263. byte(streamID))
  264. }
  265. var errFrameTooLarge = errors.New("http2: frame too large")
  266. func (f *Framer) endWrite() error {
  267. // Now that we know the final size, fill in the FrameHeader in
  268. // the space previously reserved for it. Abuse append.
  269. length := len(f.wbuf) - frameHeaderLen
  270. if length >= (1 << 24) {
  271. return errFrameTooLarge
  272. }
  273. _ = append(f.wbuf[:0],
  274. byte(length>>16),
  275. byte(length>>8),
  276. byte(length))
  277. n, err := f.w.Write(f.wbuf)
  278. if err == nil && n != len(f.wbuf) {
  279. err = io.ErrShortWrite
  280. }
  281. return err
  282. }
  283. func (f *Framer) writeByte(v byte) { f.wbuf = append(f.wbuf, v) }
  284. func (f *Framer) writeBytes(v []byte) { f.wbuf = append(f.wbuf, v...) }
  285. func (f *Framer) writeUint16(v uint16) { f.wbuf = append(f.wbuf, byte(v>>8), byte(v)) }
  286. func (f *Framer) writeUint32(v uint32) {
  287. f.wbuf = append(f.wbuf, byte(v>>24), byte(v>>16), byte(v>>8), byte(v))
  288. }
  289. // NewFramer returns a Framer that writes frames to w and reads them from r.
  290. func NewFramer(w io.Writer, r io.Reader) *Framer {
  291. return &Framer{
  292. w: w,
  293. r: r,
  294. readBuf: make([]byte, 1<<10),
  295. }
  296. }
  297. // ReadFrame reads a single frame. The returned Frame is only valid
  298. // until the next call to ReadFrame.
  299. func (fr *Framer) ReadFrame() (Frame, error) {
  300. if fr.lastFrame != nil {
  301. fr.lastFrame.invalidate()
  302. }
  303. fh, err := readFrameHeader(fr.readBuf, fr.r)
  304. if err != nil {
  305. return nil, err
  306. }
  307. if uint32(len(fr.readBuf)) < fh.Length {
  308. fr.readBuf = make([]byte, fh.Length)
  309. }
  310. payload := fr.readBuf[:fh.Length]
  311. if _, err := io.ReadFull(fr.r, payload); err != nil {
  312. return nil, err
  313. }
  314. f, err := typeFrameParser(fh.Type)(fh, payload)
  315. if err != nil {
  316. return nil, err
  317. }
  318. fr.lastFrame = f
  319. return f, nil
  320. }
  321. // A DataFrame conveys arbitrary, variable-length sequences of octets
  322. // associated with a stream.
  323. // See http://http2.github.io/http2-spec/#rfc.section.6.1
  324. type DataFrame struct {
  325. FrameHeader
  326. data []byte
  327. }
  328. // Data returns the frame's data octets, not including any padding
  329. // size byte or padding suffix bytes.
  330. // The caller must not retain the returned memory past the next
  331. // call to ReadFrame.
  332. func (f *DataFrame) Data() []byte {
  333. f.checkValid()
  334. return f.data
  335. }
  336. func parseDataFrame(fh FrameHeader, payload []byte) (Frame, error) {
  337. if fh.StreamID == 0 {
  338. // DATA frames MUST be associated with a stream. If a
  339. // DATA frame is received whose stream identifier
  340. // field is 0x0, the recipient MUST respond with a
  341. // connection error (Section 5.4.1) of type
  342. // PROTOCOL_ERROR.
  343. return nil, ConnectionError(ErrCodeProtocol)
  344. }
  345. f := &DataFrame{
  346. FrameHeader: fh,
  347. }
  348. var padSize byte
  349. if fh.Flags.Has(FlagDataPadded) {
  350. var err error
  351. payload, padSize, err = readByte(payload)
  352. if err != nil {
  353. return nil, err
  354. }
  355. }
  356. if int(padSize) > len(payload) {
  357. // If the length of the padding is greater than the
  358. // length of the frame payload, the recipient MUST
  359. // treat this as a connection error.
  360. // Filed: https://github.com/http2/http2-spec/issues/610
  361. return nil, ConnectionError(ErrCodeProtocol)
  362. }
  363. f.data = payload[:len(payload)-int(padSize)]
  364. return f, nil
  365. }
  366. var errStreamID = errors.New("invalid streamid")
  367. func validStreamID(streamID uint32) bool {
  368. return streamID != 0 && streamID&(1<<31) == 0
  369. }
  370. // WriteData writes a DATA frame.
  371. //
  372. // It will perform exactly one Write to the underlying Writer.
  373. // It is the caller's responsibility to not call other Write methods concurrently.
  374. func (f *Framer) WriteData(streamID uint32, endStream bool, data []byte) error {
  375. // TODO: ignoring padding for now. will add when somebody cares.
  376. if !validStreamID(streamID) && !f.AllowIllegalWrites {
  377. return errStreamID
  378. }
  379. var flags Flags
  380. if endStream {
  381. flags |= FlagDataEndStream
  382. }
  383. f.startWrite(FrameData, flags, streamID)
  384. f.wbuf = append(f.wbuf, data...)
  385. return f.endWrite()
  386. }
  387. // A SettingsFrame conveys configuration parameters that affect how
  388. // endpoints communicate, such as preferences and constraints on peer
  389. // behavior.
  390. //
  391. // See http://http2.github.io/http2-spec/#SETTINGS
  392. type SettingsFrame struct {
  393. FrameHeader
  394. p []byte
  395. }
  396. func parseSettingsFrame(fh FrameHeader, p []byte) (Frame, error) {
  397. if fh.Flags.Has(FlagSettingsAck) && fh.Length > 0 {
  398. // When this (ACK 0x1) bit is set, the payload of the
  399. // SETTINGS frame MUST be empty. Receipt of a
  400. // SETTINGS frame with the ACK flag set and a length
  401. // field value other than 0 MUST be treated as a
  402. // connection error (Section 5.4.1) of type
  403. // FRAME_SIZE_ERROR.
  404. return nil, ConnectionError(ErrCodeFrameSize)
  405. }
  406. if fh.StreamID != 0 {
  407. // SETTINGS frames always apply to a connection,
  408. // never a single stream. The stream identifier for a
  409. // SETTINGS frame MUST be zero (0x0). If an endpoint
  410. // receives a SETTINGS frame whose stream identifier
  411. // field is anything other than 0x0, the endpoint MUST
  412. // respond with a connection error (Section 5.4.1) of
  413. // type PROTOCOL_ERROR.
  414. return nil, ConnectionError(ErrCodeProtocol)
  415. }
  416. if len(p)%6 != 0 {
  417. // Expecting even number of 6 byte settings.
  418. return nil, ConnectionError(ErrCodeFrameSize)
  419. }
  420. f := &SettingsFrame{FrameHeader: fh, p: p}
  421. if v, ok := f.Value(SettingInitialWindowSize); ok && v > (1<<31)-1 {
  422. // Values above the maximum flow control window size of 2^31 - 1 MUST
  423. // be treated as a connection error (Section 5.4.1) of type
  424. // FLOW_CONTROL_ERROR.
  425. return nil, ConnectionError(ErrCodeFlowControl)
  426. }
  427. return f, nil
  428. }
  429. func (f *SettingsFrame) Value(s SettingID) (v uint32, ok bool) {
  430. f.checkValid()
  431. buf := f.p
  432. for len(buf) > 0 {
  433. settingID := SettingID(binary.BigEndian.Uint16(buf[:2]))
  434. if settingID == s {
  435. return binary.BigEndian.Uint32(buf[2:6]), true
  436. }
  437. buf = buf[6:]
  438. }
  439. return 0, false
  440. }
  441. func (f *SettingsFrame) ForeachSetting(fn func(Setting)) {
  442. f.checkValid()
  443. buf := f.p
  444. for len(buf) > 0 {
  445. fn(Setting{SettingID(binary.BigEndian.Uint16(buf[:2])), binary.BigEndian.Uint32(buf[2:6])})
  446. buf = buf[6:]
  447. }
  448. }
  449. // Setting is a setting parameter: which setting it is, and its value.
  450. type Setting struct {
  451. // ID is which setting is being set.
  452. // See http://http2.github.io/http2-spec/#SettingValues
  453. ID SettingID
  454. // Val is the value.
  455. Val uint32
  456. }
  457. // WriteSettings writes a SETTINGS frame with zero or more settings
  458. // specified and the ACK bit not set.
  459. //
  460. // It will perform exactly one Write to the underlying Writer.
  461. // It is the caller's responsibility to not call other Write methods concurrently.
  462. func (f *Framer) WriteSettings(settings ...Setting) error {
  463. f.startWrite(FrameSettings, 0, 0)
  464. for _, s := range settings {
  465. f.writeUint16(uint16(s.ID))
  466. f.writeUint32(s.Val)
  467. }
  468. return f.endWrite()
  469. }
  470. // WriteSettings writes an empty SETTINGS frame with the ACK bit set.
  471. //
  472. // It will perform exactly one Write to the underlying Writer.
  473. // It is the caller's responsibility to not call other Write methods concurrently.
  474. func (f *Framer) WriteSettingsAck() error {
  475. f.startWrite(FrameSettings, FlagSettingsAck, 0)
  476. return f.endWrite()
  477. }
  478. // A PingFrame is a mechanism for measuring a minimal round trip time
  479. // from the sender, as well as determining whether an idle connection
  480. // is still functional.
  481. // See http://http2.github.io/http2-spec/#rfc.section.6.7
  482. type PingFrame struct {
  483. FrameHeader
  484. Data [8]byte
  485. }
  486. func parsePingFrame(fh FrameHeader, payload []byte) (Frame, error) {
  487. if len(payload) != 8 {
  488. return nil, ConnectionError(ErrCodeFrameSize)
  489. }
  490. if fh.StreamID != 0 {
  491. return nil, ConnectionError(ErrCodeProtocol)
  492. }
  493. f := &PingFrame{FrameHeader: fh}
  494. copy(f.Data[:], payload)
  495. return f, nil
  496. }
  497. // A GoAwayFrame informs the remote peer to stop creating streams on this connection.
  498. // See http://http2.github.io/http2-spec/#rfc.section.6.8
  499. type GoAwayFrame struct {
  500. FrameHeader
  501. LastStreamID uint32
  502. ErrCode uint32
  503. debugData []byte
  504. }
  505. // DebugData returns any debug data in the GOAWAY frame. Its contents
  506. // are not defined.
  507. // The caller must not retain the returned memory past the next
  508. // call to ReadFrame.
  509. func (f *GoAwayFrame) DebugData() []byte {
  510. f.checkValid()
  511. return f.debugData
  512. }
  513. func parseGoAwayFrame(fh FrameHeader, p []byte) (Frame, error) {
  514. if fh.StreamID != 0 {
  515. return nil, ConnectionError(ErrCodeProtocol)
  516. }
  517. if len(p) < 8 {
  518. return nil, ConnectionError(ErrCodeFrameSize)
  519. }
  520. return &GoAwayFrame{
  521. FrameHeader: fh,
  522. LastStreamID: binary.BigEndian.Uint32(p[:4]) & (1<<31 - 1),
  523. ErrCode: binary.BigEndian.Uint32(p[4:8]),
  524. debugData: p[:8],
  525. }, nil
  526. }
  527. // An UnknownFrame is the frame type returned when the frame type is unknown
  528. // or no specific frame type parser exists.
  529. type UnknownFrame struct {
  530. FrameHeader
  531. p []byte
  532. }
  533. // Payload returns the frame's payload (after the header).
  534. // It is not valid to call this method after a subsequent
  535. // call to Framer.ReadFrame.
  536. func (f *UnknownFrame) Payload() []byte {
  537. f.checkValid()
  538. return f.p
  539. }
  540. func parseUnknownFrame(fh FrameHeader, p []byte) (Frame, error) {
  541. return &UnknownFrame{fh, p}, nil
  542. }
  543. // A WindowUpdateFrame is used to implement flow control.
  544. // See http://http2.github.io/http2-spec/#rfc.section.6.9
  545. type WindowUpdateFrame struct {
  546. FrameHeader
  547. Increment uint32
  548. }
  549. func parseWindowUpdateFrame(fh FrameHeader, p []byte) (Frame, error) {
  550. if len(p) != 4 {
  551. return nil, ConnectionError(ErrCodeFrameSize)
  552. }
  553. inc := binary.BigEndian.Uint32(p[:4]) & 0x7fffffff // mask off high reserved bit
  554. if inc == 0 {
  555. // A receiver MUST treat the receipt of a
  556. // WINDOW_UPDATE frame with an flow control window
  557. // increment of 0 as a stream error (Section 5.4.2) of
  558. // type PROTOCOL_ERROR; errors on the connection flow
  559. // control window MUST be treated as a connection
  560. // error (Section 5.4.1).
  561. if fh.StreamID == 0 {
  562. return nil, ConnectionError(ErrCodeProtocol)
  563. }
  564. return nil, StreamError{fh.StreamID, ErrCodeProtocol}
  565. }
  566. return &WindowUpdateFrame{
  567. FrameHeader: fh,
  568. Increment: inc,
  569. }, nil
  570. }
  571. // WriteWindowUpdate writes a WINDOW_UPDATE frame.
  572. // The increment value must be between 1 and 2,147,483,647, inclusive.
  573. // If the Stream ID is zero, the window update applies to the
  574. // connection as a whole.
  575. func (f *Framer) WriteWindowUpdate(streamID, incr uint32) error {
  576. // "The legal range for the increment to the flow control window is 1 to 2^31-1 (2,147,483,647) octets."
  577. if (incr < 1 || incr > 2147483647) && !f.AllowIllegalWrites {
  578. return errors.New("illegal window increment value")
  579. }
  580. f.startWrite(FrameWindowUpdate, 0, streamID)
  581. f.writeUint32(incr)
  582. return f.endWrite()
  583. }
  584. // A HeadersFrame is used to open a stream and additionally carries a
  585. // header block fragment.
  586. type HeadersFrame struct {
  587. FrameHeader
  588. // Priority is set if FlagHeadersPriority is set in the FrameHeader.
  589. Priority PriorityParam
  590. headerFragBuf []byte // not owned
  591. }
  592. func (f *HeadersFrame) HeaderBlockFragment() []byte {
  593. f.checkValid()
  594. return f.headerFragBuf
  595. }
  596. func (f *HeadersFrame) HeadersEnded() bool {
  597. return f.FrameHeader.Flags.Has(FlagHeadersEndHeaders)
  598. }
  599. func parseHeadersFrame(fh FrameHeader, p []byte) (_ Frame, err error) {
  600. hf := &HeadersFrame{
  601. FrameHeader: fh,
  602. }
  603. if fh.StreamID == 0 {
  604. // HEADERS frames MUST be associated with a stream. If a HEADERS frame
  605. // is received whose stream identifier field is 0x0, the recipient MUST
  606. // respond with a connection error (Section 5.4.1) of type
  607. // PROTOCOL_ERROR.
  608. return nil, ConnectionError(ErrCodeProtocol)
  609. }
  610. var padLength uint8
  611. if fh.Flags.Has(FlagHeadersPadded) {
  612. if p, padLength, err = readByte(p); err != nil {
  613. return
  614. }
  615. }
  616. if fh.Flags.Has(FlagHeadersPriority) {
  617. var v uint32
  618. p, v, err = readUint32(p)
  619. if err != nil {
  620. return nil, err
  621. }
  622. hf.Priority.StreamDep = v & 0x7fffffff
  623. hf.Priority.Exclusive = (v != hf.Priority.StreamDep) // high bit was set
  624. p, hf.Priority.Weight, err = readByte(p)
  625. if err != nil {
  626. return nil, err
  627. }
  628. }
  629. if len(p)-int(padLength) <= 0 {
  630. return nil, StreamError{fh.StreamID, ErrCodeProtocol}
  631. }
  632. hf.headerFragBuf = p[:len(p)-int(padLength)]
  633. return hf, nil
  634. }
  635. // HeadersFrameParam are the parameters for writing a HEADERS frame.
  636. type HeadersFrameParam struct {
  637. // StreamID is the required Stream ID to initiate.
  638. StreamID uint32
  639. // BlockFragment is part (or all) of a Header Block.
  640. BlockFragment []byte
  641. // EndStream indicates that the header block is the last that
  642. // the endpoint will send for the identified stream. Setting
  643. // this flag causes the stream to enter one of "half closed"
  644. // states.
  645. EndStream bool
  646. // EndHeaders indicates that this frame contains an entire
  647. // header block and is not followed by any
  648. // CONTINUATION frames.
  649. EndHeaders bool
  650. // PadLength is the optional number of bytes of zeros to add
  651. // to this frame.
  652. PadLength uint8
  653. // Priority, if non-zero, includes stream priority information
  654. // in the HEADER frame.
  655. Priority PriorityParam
  656. }
  657. // WriteHeaders writes a single HEADERS frame.
  658. //
  659. // This is a low-level header writing method. Encoding headers and
  660. // splitting them into any necessary CONTINUATION frames is handled
  661. // elsewhere.
  662. //
  663. // It will perform exactly one Write to the underlying Writer.
  664. // It is the caller's responsibility to not call other Write methods concurrently.
  665. func (f *Framer) WriteHeaders(p HeadersFrameParam) error {
  666. var flags Flags
  667. if p.PadLength != 0 {
  668. flags |= FlagHeadersPadded
  669. }
  670. if p.EndStream {
  671. flags |= FlagHeadersEndStream
  672. }
  673. if p.EndHeaders {
  674. flags |= FlagHeadersEndHeaders
  675. }
  676. if !p.Priority.IsZero() {
  677. flags |= FlagHeadersPriority
  678. }
  679. f.startWrite(FrameHeaders, flags, p.StreamID)
  680. if p.PadLength != 0 {
  681. f.writeByte(p.PadLength)
  682. }
  683. if !p.Priority.IsZero() {
  684. v := p.Priority.StreamDep
  685. if !validStreamID(v) && !f.AllowIllegalWrites {
  686. return errors.New("invalid dependent stream id")
  687. }
  688. if p.Priority.Exclusive {
  689. v |= 1 << 31
  690. }
  691. f.writeUint32(v)
  692. f.writeByte(p.Priority.Weight)
  693. }
  694. f.wbuf = append(f.wbuf, p.BlockFragment...)
  695. f.wbuf = append(f.wbuf, padZeros[:p.PadLength]...)
  696. return f.endWrite()
  697. }
  698. // A PriorityFrame specifies the sender-advised priority of a stream.
  699. // See http://http2.github.io/http2-spec/#rfc.section.6.3
  700. type PriorityFrame struct {
  701. FrameHeader
  702. PriorityParam
  703. }
  704. // PriorityParam are the stream prioritzation parameters.
  705. type PriorityParam struct {
  706. // StreamDep is a 31-bit stream identifier for the
  707. // stream that this stream depends on. Zero means no
  708. // dependency.
  709. StreamDep uint32
  710. // Exclusive is whether the dependency is exclusive.
  711. Exclusive bool
  712. // Weight is the stream's weight. It should be set together
  713. // with StreamDep, or neither should be set.
  714. Weight uint8
  715. }
  716. func (p PriorityParam) IsZero() bool {
  717. return p == PriorityParam{}
  718. }
  719. func parsePriorityFrame(fh FrameHeader, payload []byte) (Frame, error) {
  720. if fh.StreamID == 0 {
  721. return nil, ConnectionError(ErrCodeProtocol)
  722. }
  723. if len(payload) != 5 {
  724. return nil, ConnectionError(ErrCodeFrameSize)
  725. }
  726. v := binary.BigEndian.Uint32(payload[:4])
  727. streamID := v & 0x7fffffff // mask off high bit
  728. return &PriorityFrame{
  729. FrameHeader: fh,
  730. PriorityParam: PriorityParam{
  731. Weight: payload[4],
  732. StreamDep: streamID,
  733. Exclusive: streamID != v, // was high bit set?
  734. },
  735. }, nil
  736. }
  737. // WritePriority writes a PRIORITY frame.
  738. //
  739. // It will perform exactly one Write to the underlying Writer.
  740. // It is the caller's responsibility to not call other Write methods concurrently.
  741. func (f *Framer) WritePriority(streamID uint32, p PriorityParam) error {
  742. if !validStreamID(streamID) && !f.AllowIllegalWrites {
  743. return errStreamID
  744. }
  745. f.startWrite(FramePriority, 0, streamID)
  746. v := p.StreamDep
  747. if p.Exclusive {
  748. v |= 1 << 31
  749. }
  750. f.writeUint32(v)
  751. f.writeByte(p.Weight)
  752. return f.endWrite()
  753. }
  754. // A RSTStreamFrame allows for abnormal termination of a stream.
  755. // See http://http2.github.io/http2-spec/#rfc.section.6.4
  756. type RSTStreamFrame struct {
  757. FrameHeader
  758. ErrCode uint32
  759. }
  760. func parseRSTStreamFrame(fh FrameHeader, p []byte) (Frame, error) {
  761. if len(p) != 4 {
  762. return nil, ConnectionError(ErrCodeFrameSize)
  763. }
  764. if fh.StreamID == 0 {
  765. return nil, ConnectionError(ErrCodeProtocol)
  766. }
  767. return &RSTStreamFrame{fh, binary.BigEndian.Uint32(p[:4])}, nil
  768. }
  769. // WriteRSTStream writes a RST_STREAM frame.
  770. //
  771. // It will perform exactly one Write to the underlying Writer.
  772. // It is the caller's responsibility to not call other Write methods concurrently.
  773. func (f *Framer) WriteRSTStream(streamID, errCode uint32) error {
  774. if !validStreamID(streamID) && !f.AllowIllegalWrites {
  775. return errStreamID
  776. }
  777. f.startWrite(FrameRSTStream, 0, streamID)
  778. f.writeUint32(errCode)
  779. return f.endWrite()
  780. }
  781. // A ContinuationFrame is used to continue a sequence of header block fragments.
  782. // See http://http2.github.io/http2-spec/#rfc.section.6.10
  783. type ContinuationFrame struct {
  784. FrameHeader
  785. headerFragBuf []byte
  786. }
  787. func parseContinuationFrame(fh FrameHeader, p []byte) (Frame, error) {
  788. return &ContinuationFrame{fh, p}, nil
  789. }
  790. func (f *ContinuationFrame) HeaderBlockFragment() []byte {
  791. f.checkValid()
  792. return f.headerFragBuf
  793. }
  794. func (f *ContinuationFrame) HeadersEnded() bool {
  795. return f.FrameHeader.Flags.Has(FlagContinuationEndHeaders)
  796. }
  797. // WriteContinuation writes a CONTINUATION frame.
  798. //
  799. // It will perform exactly one Write to the underlying Writer.
  800. // It is the caller's responsibility to not call other Write methods concurrently.
  801. func (f *Framer) WriteContinuation(streamID uint32, endHeaders bool, headerBlockFragment []byte) error {
  802. if !validStreamID(streamID) && !f.AllowIllegalWrites {
  803. return errStreamID
  804. }
  805. var flags Flags
  806. if endHeaders {
  807. flags |= FlagContinuationEndHeaders
  808. }
  809. f.startWrite(FrameContinuation, flags, streamID)
  810. f.wbuf = append(f.wbuf, headerBlockFragment...)
  811. return f.endWrite()
  812. }
  813. func readByte(p []byte) (remain []byte, b byte, err error) {
  814. if len(p) == 0 {
  815. return nil, 0, io.ErrUnexpectedEOF
  816. }
  817. return p[1:], p[0], nil
  818. }
  819. func readUint32(p []byte) (remain []byte, v uint32, err error) {
  820. if len(p) < 4 {
  821. return nil, 0, io.ErrUnexpectedEOF
  822. }
  823. return p[4:], binary.BigEndian.Uint32(p[:4]), nil
  824. }