package jsoniter import ( "io" ) // stream is a io.Writer like object, with JSON specific write functions. // Error is not returned as return value, but stored as Error member on this stream instance. type Stream struct { cfg *frozenConfig out io.Writer buf []byte n int Error error indention int Attachment interface{} // open for customized encoder } // NewStream create new stream instance. // cfg can be jsoniter.ConfigDefault. // out can be nil if write to internal buffer. // bufSize is the initial size for the internal buffer in bytes. func NewStream(cfg API, out io.Writer, bufSize int) *Stream { return &Stream{ cfg: cfg.(*frozenConfig), out: out, buf: make([]byte, bufSize), n: 0, Error: nil, indention: 0, } } // Pool returns a pool can provide more stream with same configuration func (stream *Stream) Pool() StreamPool { return stream.cfg } // Reset reuse this stream instance by assign a new writer func (stream *Stream) Reset(out io.Writer) { stream.out = out stream.n = 0 } // Available returns how many bytes are unused in the buffer. func (stream *Stream) Available() int { return len(stream.buf) - stream.n } // Buffered returns the number of bytes that have been written into the current buffer. func (stream *Stream) Buffered() int { return stream.n } // Buffer if writer is nil, use this method to take the result func (stream *Stream) Buffer() []byte { return stream.buf[:stream.n] } // Write writes the contents of p into the buffer. // It returns the number of bytes written. // If nn < len(p), it also returns an error explaining // why the write is short. func (stream *Stream) Write(p []byte) (nn int, err error) { for len(p) > stream.Available() && stream.Error == nil { if stream.out == nil { stream.growAtLeast(len(p)) } else { var n int if stream.Buffered() == 0 { // Large write, empty buffer. // Write directly from p to avoid copy. n, stream.Error = stream.out.Write(p) } else { n = copy(stream.buf[stream.n:], p) stream.n += n stream.Flush() } nn += n p = p[n:] } } if stream.Error != nil { return nn, stream.Error } n := copy(stream.buf[stream.n:], p) stream.n += n nn += n return nn, nil } // WriteByte writes a single byte. func (stream *Stream) writeByte(c byte) { if stream.Error != nil { return } if stream.Available() < 1 { stream.growAtLeast(1) } stream.buf[stream.n] = c stream.n++ } func (stream *Stream) writeTwoBytes(c1 byte, c2 byte) { if stream.Error != nil { return } if stream.Available() < 2 { stream.growAtLeast(2) } stream.buf[stream.n] = c1 stream.buf[stream.n+1] = c2 stream.n += 2 } func (stream *Stream) writeThreeBytes(c1 byte, c2 byte, c3 byte) { if stream.Error != nil { return } if stream.Available() < 3 { stream.growAtLeast(3) } stream.buf[stream.n] = c1 stream.buf[stream.n+1] = c2 stream.buf[stream.n+2] = c3 stream.n += 3 } func (stream *Stream) writeFourBytes(c1 byte, c2 byte, c3 byte, c4 byte) { if stream.Error != nil { return } if stream.Available() < 4 { stream.growAtLeast(4) } stream.buf[stream.n] = c1 stream.buf[stream.n+1] = c2 stream.buf[stream.n+2] = c3 stream.buf[stream.n+3] = c4 stream.n += 4 } func (stream *Stream) writeFiveBytes(c1 byte, c2 byte, c3 byte, c4 byte, c5 byte) { if stream.Error != nil { return } if stream.Available() < 5 { stream.growAtLeast(5) } stream.buf[stream.n] = c1 stream.buf[stream.n+1] = c2 stream.buf[stream.n+2] = c3 stream.buf[stream.n+3] = c4 stream.buf[stream.n+4] = c5 stream.n += 5 } // Flush writes any buffered data to the underlying io.Writer. func (stream *Stream) Flush() error { if stream.out == nil { return nil } if stream.Error != nil { return stream.Error } if stream.n == 0 { return nil } n, err := stream.out.Write(stream.buf[0:stream.n]) if n < stream.n && err == nil { err = io.ErrShortWrite } if err != nil { if n > 0 && n < stream.n { copy(stream.buf[0:stream.n-n], stream.buf[n:stream.n]) } stream.n -= n stream.Error = err return err } stream.n = 0 return nil } func (stream *Stream) ensure(minimal int) { available := stream.Available() if available < minimal { stream.growAtLeast(minimal) } } func (stream *Stream) growAtLeast(minimal int) { if stream.out != nil { stream.Flush() if stream.Available() >= minimal { return } } toGrow := len(stream.buf) if toGrow < minimal { toGrow = minimal } newBuf := make([]byte, len(stream.buf)+toGrow) copy(newBuf, stream.Buffer()) stream.buf = newBuf } // WriteRaw write string out without quotes, just like []byte func (stream *Stream) WriteRaw(s string) { stream.ensure(len(s)) if stream.Error != nil { return } n := copy(stream.buf[stream.n:], s) stream.n += n } // WriteNil write null to stream func (stream *Stream) WriteNil() { stream.writeFourBytes('n', 'u', 'l', 'l') } // WriteTrue write true to stream func (stream *Stream) WriteTrue() { stream.writeFourBytes('t', 'r', 'u', 'e') } // WriteFalse write false to stream func (stream *Stream) WriteFalse() { stream.writeFiveBytes('f', 'a', 'l', 's', 'e') } // WriteBool write true or false into stream func (stream *Stream) WriteBool(val bool) { if val { stream.WriteTrue() } else { stream.WriteFalse() } } // WriteObjectStart write { with possible indention func (stream *Stream) WriteObjectStart() { stream.indention += stream.cfg.indentionStep stream.writeByte('{') stream.writeIndention(0) } // WriteObjectField write "field": with possible indention func (stream *Stream) WriteObjectField(field string) { stream.WriteString(field) if stream.indention > 0 { stream.writeTwoBytes(':', ' ') } else { stream.writeByte(':') } } // WriteObjectEnd write } with possible indention func (stream *Stream) WriteObjectEnd() { stream.writeIndention(stream.cfg.indentionStep) stream.indention -= stream.cfg.indentionStep stream.writeByte('}') } // WriteEmptyObject write {} func (stream *Stream) WriteEmptyObject() { stream.writeByte('{') stream.writeByte('}') } // WriteMore write , with possible indention func (stream *Stream) WriteMore() { stream.writeByte(',') stream.writeIndention(0) } // WriteArrayStart write [ with possible indention func (stream *Stream) WriteArrayStart() { stream.indention += stream.cfg.indentionStep stream.writeByte('[') stream.writeIndention(0) } // WriteEmptyArray write [] func (stream *Stream) WriteEmptyArray() { stream.writeTwoBytes('[', ']') } // WriteArrayEnd write ] with possible indention func (stream *Stream) WriteArrayEnd() { stream.writeIndention(stream.cfg.indentionStep) stream.indention -= stream.cfg.indentionStep stream.writeByte(']') } func (stream *Stream) writeIndention(delta int) { if stream.indention == 0 { return } stream.writeByte('\n') toWrite := stream.indention - delta stream.ensure(toWrite) for i := 0; i < toWrite && stream.n < len(stream.buf); i++ { stream.buf[stream.n] = ' ' stream.n++ } }