mirror of
https://github.com/odin-lang/Odin.git
synced 2025-12-28 17:04:34 +00:00
346 lines
6.9 KiB
Odin
346 lines
6.9 KiB
Odin
package bytes
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import "core:io"
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import "core:unicode/utf8"
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MIN_READ :: 512;
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@(private)
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SMALL_BUFFER_SIZE :: 64;
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Buffer :: struct {
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buf: [dynamic]byte,
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off: int,
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last_read: Read_Op,
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}
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@(private)
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Read_Op :: enum i8 {
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Read = -1,
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Invalid = 0,
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Read_Rune1 = 1,
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Read_Rune2 = 2,
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Read_Rune3 = 3,
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Read_Rune4 = 4,
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}
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buffer_init :: proc(b: ^Buffer, buf: []byte) {
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resize(&b.buf, len(buf));
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copy(b.buf[:], buf);
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}
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buffer_init_string :: proc(b: ^Buffer, s: string) {
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resize(&b.buf, len(s));
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copy(b.buf[:], s);
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}
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buffer_init_allocator :: proc(b: ^Buffer, len, cap: int, allocator := context.allocator) {
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b.buf.allocator = allocator;
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reserve(&b.buf, cap);
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resize(&b.buf, len);
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}
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buffer_destroy :: proc(b: ^Buffer) {
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delete(b.buf);
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buffer_reset(b);
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}
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buffer_to_bytes :: proc(b: ^Buffer) -> []byte {
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return b.buf[b.off:];
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}
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buffer_to_string :: proc(b: ^Buffer) -> string {
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if b == nil {
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return "<nil>";
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}
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return string(b.buf[b.off:]);
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}
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buffer_is_empty :: proc(b: ^Buffer) -> bool {
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return len(b.buf) <= b.off;
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}
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buffer_length :: proc(b: ^Buffer) -> int {
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return len(b.buf) - b.off;
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}
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buffer_capacity :: proc(b: ^Buffer) -> int {
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return cap(b.buf);
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}
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buffer_reset :: proc(b: ^Buffer) {
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clear(&b.buf);
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b.off = 0;
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b.last_read = .Invalid;
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}
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buffer_truncate :: proc(b: ^Buffer, n: int) {
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if n == 0 {
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buffer_reset(b);
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return;
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}
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b.last_read = .Invalid;
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if n < 0 || n > buffer_length(b) {
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panic("bytes.truncate: truncation out of range");
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}
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resize(&b.buf, b.off+n);
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}
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@(private)
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_buffer_try_grow :: proc(b: ^Buffer, n: int) -> (int, bool) {
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if l := len(b.buf); n <= cap(b.buf)-l {
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resize(&b.buf, l+n);
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return l, true;
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}
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return 0, false;
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}
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@(private)
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_buffer_grow :: proc(b: ^Buffer, n: int) -> int {
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m := buffer_length(b);
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if m == 0 && b.off != 0 {
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buffer_reset(b);
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}
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if i, ok := _buffer_try_grow(b, n); ok {
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return i;
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}
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if b.buf == nil && n <= SMALL_BUFFER_SIZE {
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b.buf = make([dynamic]byte, n, SMALL_BUFFER_SIZE);
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return 0;
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}
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c := cap(b.buf);
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if n <= c/2 - m {
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copy(b.buf[:], b.buf[b.off:]);
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} else if c > max(int) - c - n {
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panic("bytes.Buffer: too large");
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} else {
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resize(&b.buf, 2*c + n);
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copy(b.buf[:], b.buf[b.off:]);
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}
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b.off = 0;
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resize(&b.buf, m+n);
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return m;
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}
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buffer_grow :: proc(b: ^Buffer, n: int) {
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if n < 0 {
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panic("bytes.buffer_grow: negative count");
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}
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m := _buffer_grow(b, n);
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resize(&b.buf, m);
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}
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buffer_write :: proc(b: ^Buffer, p: []byte) -> (n: int, err: io.Error) {
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b.last_read = .Invalid;
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m, ok := _buffer_try_grow(b, len(p));
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if !ok {
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m = _buffer_grow(b, len(p));
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}
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return copy(b.buf[m:], p), nil;
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}
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buffer_write_string :: proc(b: ^Buffer, s: string) -> (n: int, err: io.Error) {
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b.last_read = .Invalid;
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m, ok := _buffer_try_grow(b, len(s));
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if !ok {
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m = _buffer_grow(b, len(s));
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}
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return copy(b.buf[m:], s), nil;
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}
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buffer_write_byte :: proc(b: ^Buffer, c: byte) -> io.Error {
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b.last_read = .Invalid;
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m, ok := _buffer_try_grow(b, 1);
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if !ok {
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m = _buffer_grow(b, 1);
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}
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b.buf[m] = c;
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return nil;
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}
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buffer_write_rune :: proc(b: ^Buffer, r: rune) -> (n: int, err: io.Error) {
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if r < utf8.RUNE_SELF {
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buffer_write_byte(b, byte(r));
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return 1, nil;
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}
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b.last_read = .Invalid;
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m, ok := _buffer_try_grow(b, utf8.UTF_MAX);
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if !ok {
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m = _buffer_grow(b, utf8.UTF_MAX);
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}
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res: [4]byte;
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res, n = utf8.encode_rune(r);
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copy(b.buf[m:][:utf8.UTF_MAX], res[:n]);
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resize(&b.buf, m+n);
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return;
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}
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buffer_next :: proc(b: ^Buffer, n: int) -> []byte {
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n := n;
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b.last_read = .Invalid;
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m := buffer_length(b);
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if n > m {
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n = m;
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}
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data := b.buf[b.off : b.off + n];
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b.off += n;
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if n > 0 {
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b.last_read = .Read;
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}
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return data;
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}
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buffer_read :: proc(b: ^Buffer, p: []byte) -> (n: int, err: io.Error) {
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b.last_read = .Invalid;
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if buffer_is_empty(b) {
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buffer_reset(b);
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if len(p) == 0 {
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return 0, nil;
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}
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return 0, .EOF;
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}
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n = copy(p, b.buf[b.off:]);
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b.off += n;
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if n > 0 {
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b.last_read = .Read;
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}
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return;
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}
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buffer_read_byte :: proc(b: ^Buffer) -> (byte, io.Error) {
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if buffer_is_empty(b) {
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buffer_reset(b);
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return 0, .EOF;
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}
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c := b.buf[b.off];
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b.off += 1;
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b.last_read = .Read;
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return c, nil;
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}
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buffer_read_rune :: proc(b: ^Buffer) -> (r: rune, size: int, err: io.Error) {
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if buffer_is_empty(b) {
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buffer_reset(b);
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return 0, 0, .EOF;
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}
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c := b.buf[b.off];
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if c < utf8.RUNE_SELF {
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b.off += 1;
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b.last_read = .Read_Rune1;
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return rune(c), 1, nil;
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}
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r, size = utf8.decode_rune(b.buf[b.off:]);
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b.off += size;
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b.last_read = Read_Op(i8(size));
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return;
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}
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buffer_unread_byte :: proc(b: ^Buffer) -> io.Error {
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if b.last_read == .Invalid {
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return .Invalid_Unread;
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}
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b.last_read = .Invalid;
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if b.off > 0 {
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b.off -= 1;
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}
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return nil;
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}
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buffer_unread_rune :: proc(b: ^Buffer) -> io.Error {
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if b.last_read <= .Invalid {
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return .Invalid_Unread;
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}
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if b.off >= int(b.last_read) {
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b.off -= int(i8(b.last_read));
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}
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b.last_read = .Invalid;
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return nil;
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}
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buffer_read_bytes :: proc(b: ^Buffer, delim: byte) -> (line: []byte, err: io.Error) {
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i := index_byte(b.buf[b.off:], delim);
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end := b.off + i + 1;
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if i < 0 {
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end = len(b.buf);
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err = .EOF;
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}
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line = b.buf[b.off:end];
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b.off = end;
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b.last_read = .Read;
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return;
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}
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buffer_read_string :: proc(b: ^Buffer, delim: byte) -> (line: string, err: io.Error) {
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slice: []byte;
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slice, err = buffer_read_bytes(b, delim);
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return string(slice), err;
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}
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buffer_to_stream :: proc(b: ^Buffer) -> (s: io.Stream) {
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s.stream_data = b;
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s.stream_vtable = _buffer_vtable;
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return;
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}
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buffer_to_writer :: proc(b: ^Buffer) -> (s: io.Writer) {
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s.stream_data = b;
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s.stream_vtable = _buffer_vtable;
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return;
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}
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@(private)
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_buffer_vtable := &io.Stream_VTable{
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impl_size = proc(s: io.Stream) -> i64 {
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b := (^Buffer)(s.stream_data);
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return i64(buffer_capacity(b));
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},
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impl_read = proc(s: io.Stream, p: []byte) -> (n: int, err: io.Error) {
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b := (^Buffer)(s.stream_data);
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return buffer_read(b, p);
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},
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impl_read_byte = proc(s: io.Stream) -> (byte, io.Error) {
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b := (^Buffer)(s.stream_data);
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return buffer_read_byte(b);
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},
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impl_read_rune = proc(s: io.Stream) -> (r: rune, size: int, err: io.Error) {
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b := (^Buffer)(s.stream_data);
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return buffer_read_rune(b);
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},
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impl_write = proc(s: io.Stream, p: []byte) -> (n: int, err: io.Error) {
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b := (^Buffer)(s.stream_data);
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return buffer_write(b, p);
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},
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impl_write_byte = proc(s: io.Stream, c: byte) -> io.Error {
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b := (^Buffer)(s.stream_data);
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return buffer_write_byte(b, c);
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},
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impl_write_rune = proc(s: io.Stream, r: rune) -> (int, io.Error) {
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b := (^Buffer)(s.stream_data);
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return buffer_write_rune(b, r);
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},
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impl_unread_byte = proc(s: io.Stream) -> io.Error {
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b := (^Buffer)(s.stream_data);
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return buffer_unread_byte(b);
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},
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impl_unread_rune = proc(s: io.Stream) -> io.Error {
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b := (^Buffer)(s.stream_data);
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return buffer_unread_rune(b);
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},
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impl_destroy = proc(s: io.Stream) -> io.Error {
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b := (^Buffer)(s.stream_data);
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buffer_destroy(b);
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return nil;
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},
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// TODO(bill): write_to and read_from
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// impl_write_to = nil,
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// impl_read_from = nil,
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};
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