The loud-arm row asserted only a non-empty error on "a*" — a
half-ported arm returning any other error text, or another metachar
falling to the literal default, would have passed. Table over one
pattern per deferred arm ('^' leading, so the r_idx==0 skip gate
composes with the loud arm) compared against the exact boundary
text via strings.compare.
288 lines
9.0 KiB
Plaintext
288 lines
9.0 KiB
Plaintext
// regex_test — exercises the lib/regex fold-1 data model (the type
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// model + finish()) and the fold-2a compile() literal core. Run with
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// `out/bin/ww run lib/regex/regex_test.ww`.
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//
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// Fold 2a ports compile()'s lit/any/match arms only; exec lives in
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// later folds, so the compile_* cases pin the emitted inst PROGRAM
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// (shape + payloads via indexed match-extraction), not matching.
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// charclass_map's fn-ptr table is deferred behind the array→slice
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// element-coercion checker gap (see regex.ww), so this test does not
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// exercise the POSIX-class predicate dispatch yet — it pins variant
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// discrimination (including the nominally-distinct same-underlying
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// inst_split/inst_jump/inst_groupstart `size` aliases and the
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// inst_any/inst_skip/inst_groupend `void` aliases), payload extraction,
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// the regex/capture struct shapes, and finish(). Same
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// signalled-then-fail()-with-+10 pattern as the rest of the stdlib
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// run-tests; the non-zero exit pinpoints the failing case.
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//
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// Struct literals below name the type UNQUALIFIED (`inst_charset { … }`,
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// not `regex.inst_charset { … }`): the parser rejects a module-qualified
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// name in struct-literal position (#29), and the imported type
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// is in scope unqualified.
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package regex;
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import regex;
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import os;
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import strings;
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let signalled: i32 = 0;
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fn fail() void = { os.exit(signalled + 10); };
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// inst_lit / inst_match carry distinguishable payloads (rune / bool).
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@test fn lit_and_match() void = {
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let a: regex.inst = ('a': regex.inst_lit);
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match (a) {
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case let l: regex.inst_lit => { if ((l: rune) != 'a') { fail(); }; };
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case => fail();
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};
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let m: regex.inst = (true: regex.inst_match);
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match (m) {
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case let b: regex.inst_match => { if (!(b: bool)) { fail(); }; };
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case => fail();
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};
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};
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// The three `size`-aliased variants are nominally distinct: a value
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// built as inst_split must match inst_split, never inst_jump /
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// inst_groupstart, despite identical underlying storage.
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@test fn size_aliases_distinct() void = {
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let sp: regex.inst = ((5: size): regex.inst_split);
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match (sp) {
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case let s: regex.inst_split => { if ((s: size) != (5: size)) { fail(); }; };
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case let j: regex.inst_jump => fail();
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case let g: regex.inst_groupstart => fail();
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case => fail();
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};
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let jp: regex.inst = ((9: size): regex.inst_jump);
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match (jp) {
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case let j: regex.inst_jump => { if ((j: size) != (9: size)) { fail(); }; };
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case let s: regex.inst_split => fail();
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case => fail();
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};
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let gs: regex.inst = ((2: size): regex.inst_groupstart);
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match (gs) {
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case let g: regex.inst_groupstart => { if ((g: size) != (2: size)) { fail(); }; };
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case let s: regex.inst_split => fail();
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case => fail();
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};
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};
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// The `void`-aliased variants are likewise nominally distinct.
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@test fn void_aliases_distinct() void = {
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let av: regex.inst_any;
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let an: regex.inst = av;
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match (an) {
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case let a: regex.inst_any => void;
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case let k: regex.inst_skip => fail();
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case let e: regex.inst_groupend => fail();
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case => fail();
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};
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let sv: regex.inst_skip;
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let sk: regex.inst = sv;
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match (sk) {
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case let k: regex.inst_skip => void;
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case let a: regex.inst_any => fail();
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case => fail();
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};
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let gv: regex.inst_groupend;
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let ge: regex.inst = gv;
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match (ge) {
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case let e: regex.inst_groupend => void;
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case let a: regex.inst_any => fail();
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case let k: regex.inst_skip => fail();
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case => fail();
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};
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};
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// inst_charset carries a struct payload; its fields survive the union
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// round-trip.
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@test fn charset_payload() void = {
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let c: regex.inst = (inst_charset { idx = 3, is_positive = true });
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match (c) {
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case let cs: regex.inst_charset => {
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if (cs.idx != (3: size)) { fail(); };
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if (!cs.is_positive) { fail(); };
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};
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case => fail();
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};
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};
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// inst_repeat round-trips through the inst union with its plain `size`
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// fields intact. Matching the nested (void | size) min/max bounds back
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// out is DEFERRED: `match` on a tagged-union-typed struct field
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// diverges cs≠ww (#26 — the wwstage frames it wider), so
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// asserting the bounds here would seed a rule-10-divergent fixture.
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@test fn repeat_payload() void = {
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let r: regex.inst = (inst_repeat {
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id = 1, origin = 4, min = (2: size), max = void,
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});
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match (r) {
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case let rp: regex.inst_repeat => {
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if (rp.id != (1: size)) { fail(); };
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if (rp.origin != (4: size)) { fail(); };
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};
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case => fail();
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};
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};
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// The regex/capture structs hold their fields; finish() is a no-op
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// (no-free runtime) and must accept a built regex.
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@test fn struct_shapes_and_finish() void = {
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let cap: regex.capture = capture {
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content = "abc",
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start = 0,
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start_bytesize = 0,
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end = 3,
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end_bytesize = 3,
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};
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if (cap.content.len != 3) { fail(); };
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if (cap.end != (3: size)) { fail(); };
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// regex's insts/charsets ([]inst / []charset) are left empty here:
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// fold 1 ports no compile() to populate them, an empty `[]` literal
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// is unspellable as a typed slice (#25 — array→slice
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// element-coercion gap), and a struct-literal slice-field store
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// drops len/cap (#24). Declaring the regex zeroes both
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// slice headers to {0,0,0}; only n_reps is set explicitly.
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let re: regex.regex;
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re.n_reps = 0;
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if (re.n_reps != (0: size)) { fail(); };
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if (re.insts.len != 0) { fail(); };
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regex.finish(&re);
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};
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// compile("abc") emits the 5-inst literal program: the leading
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// unanchored inst_skip (regex.ha:261-263), one inst_lit per rune, the
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// epilogue inst_match(false) (ha:475-477). compile()'s
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// (regex | error | nomem) return is the first >24B tagged payload in
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// the tree — the receive shapes here double as #38 sret consumers
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// (typed-let + match here; scrutinee-direct in compile_empty_program).
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@test fn compile_literal_program() void = {
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let c: (regex.regex | regex.error | nomem) = regex.compile("abc");
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match (c) {
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case let re: regex.regex => {
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if (re.insts.len != 5) { fail(); };
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match (re.insts[0]) {
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case let k: regex.inst_skip => void;
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case => fail();
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};
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match (re.insts[1]) {
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case let l: regex.inst_lit => { if ((l: rune) != 'a') { fail(); }; };
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case => fail();
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};
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match (re.insts[2]) {
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case let l: regex.inst_lit => { if ((l: rune) != 'b') { fail(); }; };
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case => fail();
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};
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match (re.insts[3]) {
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case let l: regex.inst_lit => { if ((l: rune) != 'c') { fail(); }; };
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case => fail();
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};
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match (re.insts[4]) {
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case let m: regex.inst_match => { if ((m: bool)) { fail(); }; };
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case => fail();
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};
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if (re.charsets.len != 0) { fail(); };
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if (re.n_reps != (0: size)) { fail(); };
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regex.finish(&re);
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};
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case => fail();
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};
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};
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// '.' compiles to inst_any between the literals (regex.ha:460-461):
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// [skip, lit 'a', any, lit 'c', match(false)].
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@test fn compile_any_program() void = {
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let c: (regex.regex | regex.error | nomem) = regex.compile("a.c");
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match (c) {
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case let re: regex.regex => {
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if (re.insts.len != 5) { fail(); };
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match (re.insts[0]) {
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case let k: regex.inst_skip => void;
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case => fail();
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};
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match (re.insts[1]) {
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case let l: regex.inst_lit => { if ((l: rune) != 'a') { fail(); }; };
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case => fail();
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};
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match (re.insts[2]) {
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case let a: regex.inst_any => void;
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case => fail();
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};
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match (re.insts[3]) {
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case let l: regex.inst_lit => { if ((l: rune) != 'c') { fail(); }; };
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case => fail();
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};
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match (re.insts[4]) {
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case let m: regex.inst_match => { if ((m: bool)) { fail(); }; };
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case => fail();
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};
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regex.finish(&re);
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};
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case => fail();
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};
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};
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// compile("") is exactly [inst_match(false)]: the leading skip must
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// not fire on immediate done (regex.ha:261 gates on `next is rune`),
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// and the epilogue guard must fire on the empty program.
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@test fn compile_empty_program() void = {
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match (regex.compile("")) {
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case let re: regex.regex => {
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if (re.insts.len != 1) { fail(); };
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match (re.insts[0]) {
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case let m: regex.inst_match => { if ((m: bool)) { fail(); }; };
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case => fail();
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};
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regex.finish(&re);
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};
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case => fail();
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};
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};
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// Every deferred metacharacter is a LOUD error carrying the exact
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// fold-boundary text — falling through to the literal default would
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// silently compile a wrong program, and any OTHER error text would
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// mean an arm was half-ported. One pattern per deferred arm so the
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// fold that ports an arm consciously deletes its row. '^' leads its
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// pattern: the r_idx==0 skip gate (regex.ha:261) must compose with
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// the loud arm, not bypass it.
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@test fn compile_metachar_loud() void = {
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let pats: [11]str = [
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"a\\", "^a", "a$", "a[", "a(", "a)",
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"a|", "a{", "a?", "a*", "a+",
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];
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let i: i32 = 0;
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for (i < len(pats)) {
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match (regex.compile(pats[i])) {
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case let e: regex.error => {
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if (strings.compare((e: str),
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"regex: metacharacter not yet ported") != 0) {
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fail();
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};
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};
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case => fail();
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};
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i += 1;
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};
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};
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export fn main() i32 = {
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signalled = 1; lit_and_match();
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signalled = 2; size_aliases_distinct();
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signalled = 3; void_aliases_distinct();
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signalled = 4; charset_payload();
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signalled = 5; repeat_payload();
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signalled = 6; struct_shapes_and_finish();
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signalled = 7; compile_literal_program();
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signalled = 8; compile_any_program();
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signalled = 9; compile_empty_program();
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signalled = 10; compile_metachar_loud();
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return 0;
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};
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