299 lines
9.3 KiB
Plaintext
299 lines
9.3 KiB
Plaintext
package bufio;
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import encoding.utf8;
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import errors;
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import io;
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import os;
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// ref/hare/bufio/scanner.ha:11 — the auto-grow scanner's growth
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// increment. i32 (not Hare's size) per the lib-wide index-type
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// convention (lib/CLAUDE.md).
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def BUFSZ: i32 = 4096;
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// Plain tokenizer — no embedded vtable; driven directly via scanbyte /
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// scanbytes / scanline, not through io dispatch. Its `src` is an
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// io.stream and refills go through io.read. Value-return constructor
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// (Hare newscanner_buf, scanner.ha:92).
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//
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// ptr/cap kept flat (no `buf: []u8`); the scanner predates struct-held
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// slice support.
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export type scanner = struct {
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src: io.stream,
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ptr: *u8,
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cap: i32,
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start: i32, // index where the pending region starts in ptr
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avail: i32, // pending byte count; pending = ptr[start..start+avail]
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maxread: i32, // growth ceiling; == cap for newscannerbuf (scanner.ha:101)
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owned: bool, // ptr is scanner-owned and finish must release it
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eof: bool, // source reached EOF or returned no progress
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};
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// newscanner — wire a scanner that allocates and grows its own
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// read-ahead buffer, by BUFSZ per refill up to `maxread`. Returns the
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// scanner BY VALUE. This is Hare's newscanner
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// (ref/hare/bufio/scanner.ha:72) modulo two parameter drops: ww has no
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// default arguments, so Hare's `maxread: size = types::SIZE_MAX` is a
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// required i32 (callers wanting "no limit" pass types.I32_MAX), and the
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// defaulted `opts` is dropped like newscannerbuf's (EOF_DISCARD
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// behavior is the shipped default).
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export fn newscanner(src: io.stream, maxread: i32) scanner = {
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assert(maxread >= 0,
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"bufio.newscanner: maximum read size must not be negative");
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let r: scanner;
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r.src = src;
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r.ptr = nil;
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r.cap = 0;
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r.start = 0;
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r.avail = 0;
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r.maxread = maxread;
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r.owned = true;
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r.eof = false;
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return r;
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};
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// newscannerbuf — wire a scanner to read through `src` using `buf` as
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// the fixed read-ahead window (maxread == buf.len, so the buffer never
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// grows — scanner.ha:101). Returns the scanner BY VALUE. This is
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// Hare's newscanner_buf (ref/hare/bufio/scanner.ha:92).
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export fn newscannerbuf(src: io.stream, buf: []u8) scanner = {
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let r: scanner;
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r.src = src;
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r.ptr = buf.ptr;
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r.cap = buf.len;
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r.start = 0;
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r.avail = 0;
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r.maxread = buf.len;
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r.owned = false;
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r.eof = false;
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return r;
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};
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// finish — release scanner-owned resources; src isn't closed. A fixed
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// newscannerbuf window is borrowed and remains the caller's property.
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// Mirrors ref/hare/bufio/scanner.ha:110.
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export fn finish(s: *scanner) void = {
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if (s.owned && s.cap > 0) {
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os.free(s.ptr: *void, s.cap: u64);
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};
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s.ptr = nil;
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s.cap = 0;
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s.start = 0;
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s.avail = 0;
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s.maxread = 0;
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s.owned = false;
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s.eof = true;
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};
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// readahead — make room and read once from src into the back of the
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// pending region. Returns bytes newly buffered (>0), io.eof/io.error
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// from src, or errors.overflow at the maxread ceiling. A zero-byte read
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// is terminal EOF: retryable sources must return an explicit error.
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// The size from io.read narrows to i32 (buffer-length type).
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//
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// Mirrors ref/hare/bufio/scanner.ha:162 (scan_readahead): full buffer
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// first shifts pending left, then — when start == 0 — grows, or returns
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// overflow when no capacity remains (Hare's `pending >= readahead` ceiling,
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// scanner.ha:179-181, BEFORE the append). Hare grows via
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// `append(scan.buffer, [0...], readahead)?`; ww's flat ptr/cap scanner
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// allocates a fresh backing, copies pending bytes, and releases the
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// replaced owned block. Allocation remains `!` rather than `?` per the
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// #36 nomem-propagation gap. The generic overflow condition rides a
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// distinct arm because io.error is closed (lib/io/types.ww).
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fn readahead(s: *scanner) (i32 | io.eof | io.error | errors.overflow) = {
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if (s.eof) { let e: io.eof; return e; };
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if (s.start + s.avail == s.cap) {
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if (s.start > 0) {
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bufiomove(s.ptr, s.ptr + (s.start: u64), s.avail);
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s.start = 0;
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} else {
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let room: i32 = s.maxread - s.avail;
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if (room <= 0) {
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let e: errors.overflow; return e;
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};
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let ncap: i32 = s.maxread;
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if (room > BUFSZ) { ncap = s.avail + BUFSZ; };
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let nbuf: []u8 = alloc([], ncap: u64)!;
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let np: *u8 = nbuf.ptr;
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bufiomove(np, s.ptr, s.avail);
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if (s.owned && s.cap > 0) {
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os.free(s.ptr: *void, s.cap: u64);
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};
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s.ptr = np;
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s.cap = ncap;
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s.owned = true;
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};
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};
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let off: i32 = s.start + s.avail;
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let v: []u8;
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v.ptr = s.ptr + (off: u64);
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v.len = s.cap - off;
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v.cap = v.len;
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let r: (size | io.eof | io.error) = io.read(s.src, v);
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match (r) {
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case let n: size => {
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assert(n <= v.len: size,
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"bufio scanner: reader returned an oversized count");
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if (n == 0: size) {
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s.eof = true;
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let e: io.eof;
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return e;
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};
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s.avail += n: i32;
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return n: i32;
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};
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case io.eof => {
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s.eof = true;
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let e: io.eof;
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return e;
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};
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case let e: io.error => return e;
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};
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};
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// scanbyte — pop one byte, refilling from src on demand. Mirrors
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// ref/hare/bufio/scanner.ha:204.
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export fn scanbyte(s: *scanner) (u8 | io.eof | io.error | errors.overflow) = {
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for (s.avail == 0) {
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let r: (i32 | io.eof | io.error | errors.overflow) = readahead(s);
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match (r) {
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case let n: i32 => { };
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case io.eof => { let e: io.eof; return e; };
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case let e: io.error => return e;
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case errors.overflow => { let e: errors.overflow; return e; };
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};
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};
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let b: u8 = s.ptr[s.start];
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s.start += 1;
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s.avail -= 1;
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return b;
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};
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// scanbytes — read up to (and not including) the next byte equal to
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// `delim`. The delim is consumed but not returned. The returned slice
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// borrows from the scanner buffer and is invalidated by the next scan.
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// EOF without delim discards the trailing fragment and returns io.eof
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// (Hare EOF_DISCARD default); buffer-full without delim returns
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// errors.overflow. Single-byte delim only — Hare's `(u8 | []u8)` multibyte
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// form is #217. Mirrors ref/hare/bufio/scanner.ha:220 (narrowed).
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export fn scanbytes(s: *scanner, delim: u8) ([]u8 | io.eof | io.error | errors.overflow) = {
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let i: i32 = 0;
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for (true) {
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for (i < s.avail) {
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if (s.ptr[s.start + i] == delim) {
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let v: []u8;
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v.ptr = s.ptr + (s.start: u64);
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v.len = i;
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v.cap = v.len;
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s.start += i + 1;
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s.avail -= i + 1;
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return v;
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};
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i += 1;
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};
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// Capacity failure surfaces from readahead's single choke-point.
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let r: (i32 | io.eof | io.error | errors.overflow) = readahead(s);
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match (r) {
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case let n: i32 => { };
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case io.eof => { let e: io.eof; return e; };
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case let e: io.error => return e;
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case errors.overflow => { let e: errors.overflow; return e; };
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};
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};
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let e: io.eof; return e;
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};
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// scanrune — pop one UTF-8-encoded rune, refilling from src on demand.
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// EOF mid-codepoint (fewer pending bytes than the initial byte
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// announces) is utf8.invalid; a clean EOF before any byte is io.eof.
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// Partial reads are refilled until the announced width is present.
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// Decode happens before consumption: malformed input consumes only the
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// bytes visited by utf8.next, preserving any later pending byte.
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export fn scanrune(s: *scanner) (rune | io.eof | io.error | utf8.invalid | errors.overflow) = {
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for (s.avail == 0) {
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let ra: (i32 | io.eof | io.error | errors.overflow) = readahead(s);
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match (ra) {
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case let n: i32 => { };
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case io.eof => { let e: io.eof; return e; };
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case let e: io.error => return e;
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case errors.overflow => { let e: errors.overflow; return e; };
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};
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};
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let szr: (i32 | utf8.invalid) = utf8.utf8sz(s.ptr[s.start]);
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let sz: i32 = 0;
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match (szr) {
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case let n: i32 => { sz = n; };
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case utf8.invalid => {
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s.start += 1;
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s.avail -= 1;
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let e: utf8.invalid;
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return e;
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};
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};
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for (s.avail < sz) {
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let ra: (i32 | io.eof | io.error | errors.overflow) = readahead(s);
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match (ra) {
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case let n: i32 => { };
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case io.eof => {
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s.start += s.avail;
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s.avail = 0;
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let e: utf8.invalid;
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return e;
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};
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case let e: io.error => return e;
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case errors.overflow => { let e: errors.overflow; return e; };
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};
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};
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let v: []u8;
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v.ptr = s.ptr + (s.start: u64);
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v.len = sz;
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v.cap = v.len;
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let dec: utf8.decoder = utf8.decode(v);
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let nr: (rune | utf8.done | utf8.more | utf8.invalid) = utf8.next(&dec);
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let used: i32 = utf8.position(&dec): i32;
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match (nr) {
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case let r: rune => {
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assert(used == sz, "bufio.scanrune: decoder width mismatch");
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s.start += used;
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s.avail -= used;
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return r;
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};
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case utf8.done => abort("bufio.scanrune: decoder made no progress");
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case utf8.more => {
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s.start += used;
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s.avail -= used;
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let e: utf8.invalid;
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return e;
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};
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case utf8.invalid => {
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assert(used > 0 && used <= sz,
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"bufio.scanrune: invalid decoder position");
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s.start += used;
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s.avail -= used;
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let e: utf8.invalid;
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return e;
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};
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};
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};
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// scanline — read up to (and not including) the next '\n'. The newline
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// is consumed; the returned str view borrows from the scanner buffer.
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// Single-byte route (Hare's scan_line = scan_string(s, "\n"); the
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// arbitrary multibyte-delim scan_string is #217). Mirrors
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// ref/hare/bufio/scanner.ha:307.
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export fn scanline(s: *scanner) (str | io.eof | io.error | errors.overflow) = {
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let r: ([]u8 | io.eof | io.error | errors.overflow) = scanbytes(s, 10u8);
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match (r) {
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case let bs: []u8 => {
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let v: str;
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v.ptr = bs.ptr;
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v.len = bs.len;
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v.cap = v.len;
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return v;
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};
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case io.eof => { let e: io.eof; return e; };
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case let e: io.error => return e;
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case errors.overflow => { let e: errors.overflow; return e; };
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};
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};
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