Files
ww/lib/strings/stringstest.ww
Hojun-Cho aa8d15182a lib/strings+test: Hare port (prev + riter + iterstr + position)
Port four of the five c3 strings functions per ref/hare/strings/iter.ha;
strings.slice deferred behind task #34 (wwstage fnretlookup same-name
cross-module phantom return-ABI fixup, sub-bug of #4e).

  - prev     ref/hare/strings/iter.ha:49
  - riter    ref/hare/strings/iter.ha:32
  - iterstr  ref/hare/strings/iter.ha:63
  - position ref/hare/strings/iter.ha:82

Also adds a private move() helper (ref/hare/strings/iter.ha:51) shared
by next/prev. Hare's move picks the utf8 function via a fn-pointer
(`let fun = if (forward) &utf8::next else &utf8::prev`); ww has no
fn-pointers in scope yet, so move branches on `forward` and calls
utf8.next or utf8.prev directly at each site.

strings.next is updated to dispatch via move(!it.reverse, it) — c2's
implementation always called utf8.next regardless of iter.reverse,
which was correct for forward iter() but would walk forward on
riter()-produced iterators too. With riter landed in this commit,
next() now correctly walks backward on reverse iterators per Hare's
ref/hare/strings/iter.ha:45. No in-tree consumer regression: only
stringstest constructs iterators today.

strings.iterstr uses ww's `[lo:hi]` slice syntax instead of Hare's
`[lo..hi]`; same semantics (borrowed []u8 view).

strings.slice deferred — Hare's body is
`fromutf8_unsafe(utf8::slice(begin, end))` (ref/hare/strings/iter.ha:76).
That delegation form triggers a wwstage fnretlookup miscompile when
the caller module has a function of the same name as the callee
(here: both strings::slice and utf8::slice exist), causing wwstage
to emit the wrong return-ABI fixup (MOVQ DX, BX, str's AX/DX→AX/BX
shim) after the cross-module CALL. Cstage handles the collision
correctly; wwstage routes through the same-module function's
return type and the byte-id checks (993_ww_ww + 995_self_rebuild)
trip. Filed as task #34 with minimal repro; will land strings.slice
when the fnretlookup graduate-by-module sub-bug in #34 is fixed.
Top-of-file divergence note lists slice in the deferred set; the
landing site keeps a comment-only stub. The public strings c3
surface ships 4-of-5 in this commit; slice + #34 land together in
a follow-up.

Tests: 5 new @test fns in stringstest.ww (signalled 22-26):
iter_prev_at_start_cases (prev at offs=0 → done),
iter_prev_ascii_cases (round-trip on forward iter),
iter_full_cases (mirror of ref/hare/strings/iter.ha:84-108 — iter
"こんにちは" with mid-walk iterstr + prev + next, then s = riter(...)
sret-into-existing-slot for the reverse iterator pass),
iter_position_cases (position tracks offs through a multibyte walk),
iter_iterstr_reverse_cases (riter iterstr is bytes BEFORE the cursor,
dual to forward iter's bytes-AFTER).

The Hare @test fn iter body uses `s = riter("にちは")` mid-test to
swap the iterator's direction (ref/hare/strings/iter.ha:101); ww's
sret-into-existing-slot path handles that fine (probed pre-port).
struct-copy let-from-ident (task #32) is sidestepped because no
test creates a duplicate iterator via `let dup = it;`.

117/117 ok. 995_self_rebuild stays green (ww2==ww3==ww4 byte-id).
993_ww_ww + 994_w6c_ww also green (cstage/wwstage byte-identical
on every corpus input including selfhost/cmd/wwdump/main.combined.ww).
2026-05-18 22:32:13 +09:00

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// stringstest — exercises lib/strings. Run with
// `out/bin/ww run lib/strings/stringstest.ww`.
// Same signalled-then-fail()-with-+10 shape as bytes / utf8 / hex /
// time tests: non-zero exit pinpoints the failing scenario.
//
// Vectors mirror ref/hare/strings/{dup,concat,trim,contains,index,
// suffix,compare}.ha where ww can express them.
package strings;
import strings;
import encoding.utf8;
import os;
let signalled: i32 = 0;
fn fail() void = { os.exit(signalled + 10); };
fn streq(a: str, b: str) bool = {
if (a.len != b.len) { return false; };
let i: i32 = 0;
for (i < a.len) {
if (a[i] != b[i]) { return false; };
i += 1;
};
return true;
};
// ---- dup --------------------------------------------------------------
// ref/hare/strings/dup.ha:45.
@test fn dup_cases() void = {
let e: str = strings.dup("");
if (!streq(e, "")) { fail(); };
if (e.len != 0) { fail(); };
let h: str = strings.dup("hello");
if (!streq(h, "hello")) { fail(); };
defer os.free(h.ptr: *void, h.len: u64);
// multi-byte UTF-8: dup must copy raw bytes, not aliased view.
let m: str = strings.dup("こんにちは");
if (m.len != 15) { fail(); };
if (!streq(m, "こんにちは")) { fail(); };
if (m.ptr == "こんにちは".ptr) { fail(); }; // fresh alloc
defer os.free(m.ptr: *void, m.len: u64);
};
// ---- concat -----------------------------------------------------------
// ref/hare/strings/concat.ha:18 (2-arg subset).
@test fn concat_cases() void = {
let a: str = strings.concat("hello ", "world");
if (!streq(a, "hello world")) { fail(); };
defer os.free(a.ptr: *void, a.len: u64);
let e: str = strings.concat("", "");
if (!streq(e, "")) { fail(); };
// e.len == 0 — os.free guarded, skip.
let l: str = strings.concat("", "world");
if (!streq(l, "world")) { fail(); };
defer os.free(l.ptr: *void, l.len: u64);
let r: str = strings.concat("hello", "");
if (!streq(r, "hello")) { fail(); };
defer os.free(r.ptr: *void, r.len: u64);
let m: str = strings.concat("こん", "にちは");
if (!streq(m, "こんにちは")) { fail(); };
defer os.free(m.ptr: *void, m.len: u64);
};
// ---- hasprefix --------------------------------------------------------
// ref/hare/strings/suffix.ha:18.
@test fn hasprefix_cases() void = {
if (!strings.hasprefix("hello world", "hello")) { fail(); };
if (!strings.hasprefix("hello world", 'h')) { fail(); };
if ( strings.hasprefix("hello world", "world")) { fail(); };
if ( strings.hasprefix("hello world", 'q')) { fail(); };
if (!strings.hasprefix("hello", "hello")) { fail(); }; // equal-len
if (!strings.hasprefix("anything", "")) { fail(); }; // empty prefix
if ( strings.hasprefix("", "x")) { fail(); };
// multibyte rune prefix — '\'é\'' literal blocked by single-byte
// lexrune (lib/ww/lex/lex.ww:659); pass codepoint directly.
if (!strings.hasprefix("éclat", 0xE9u32: rune)) { fail(); };
if (!strings.hasprefix("🦀rust", 0x1F980u32: rune)) { fail(); };
};
// ---- hassuffix --------------------------------------------------------
// ref/hare/strings/suffix.ha:36.
@test fn hassuffix_cases() void = {
if (!strings.hassuffix("hello world", "world")) { fail(); };
if (!strings.hassuffix("hello world", 'd')) { fail(); };
if ( strings.hassuffix("hello world", "hello")) { fail(); };
if ( strings.hassuffix("hello world", 'h')) { fail(); };
if (!strings.hassuffix("café", 0xE9u32: rune)) { fail(); }; // multibyte
};
// ---- contains ---------------------------------------------------------
// ref/hare/strings/contains.ha:27.
@test fn contains_cases() void = {
if (!strings.contains("hello world", "hello")) { fail(); };
if (!strings.contains("hello world", 'h')) { fail(); };
if ( strings.contains("hello world", 'x')) { fail(); };
if (!strings.contains("hello world", "world")) { fail(); };
if (!strings.contains("hello world", "")) { fail(); }; // empty hits at 0
if ( strings.contains("hello world", "foobar")) { fail(); };
if (!strings.contains("こんにちは", 0x306Bu32: rune)) { fail(); }; // 'に'
if (!strings.contains("こんにちは", "ちは")) { fail(); };
};
// ---- byteindex --------------------------------------------------------
// ref/hare/strings/index.ha:147 (byteindex tests, both arms).
@test fn byteindex_str_cases() void = {
match (strings.byteindex("hello", "hello")) {
case let i: i32 => { if (i != 0) { fail(); }; };
case void => { fail(); };
};
match (strings.byteindex("hello world!", "world")) {
case let i: i32 => { if (i != 6) { fail(); }; };
case void => { fail(); };
};
match (strings.byteindex("hello world!", "orld!")) {
case let i: i32 => { if (i != 7) { fail(); }; };
case void => { fail(); };
};
match (strings.byteindex("hello world!", "word")) {
case let i: i32 => { fail(); };
case void => void;
};
// empty needle hits at 0 (ref/hare/bytes/index.ha:63).
match (strings.byteindex("hello", "")) {
case let i: i32 => { if (i != 0) { fail(); }; };
case void => { fail(); };
};
// empty haystack, non-empty needle — absent.
match (strings.byteindex("", "x")) {
case let i: i32 => { fail(); };
case void => void;
};
// multibyte substring in multibyte haystack.
match (strings.byteindex("こんにちは", "ちは")) {
case let i: i32 => { if (i != 9) { fail(); }; };
case void => { fail(); };
};
};
@test fn byteindex_rune_cases() void = {
// ASCII rune (1-byte encoding).
match (strings.byteindex("hello world", 'w')) {
case let i: i32 => { if (i != 6) { fail(); }; };
case void => { fail(); };
};
// 2-byte rune U+00E9 'é' inside "café".
match (strings.byteindex("café", 0xE9u32: rune)) {
case let i: i32 => { if (i != 3) { fail(); }; };
case void => { fail(); };
};
// 3-byte rune U+3061 'ち' inside "こんにちは".
match (strings.byteindex("こんにちは", 0x3061u32: rune)) {
case let i: i32 => { if (i != 9) { fail(); }; };
case void => { fail(); };
};
// 4-byte rune U+1F980 '🦀' inside "ab🦀cd".
match (strings.byteindex("ab🦀cd", 0x1F980u32: rune)) {
case let i: i32 => { if (i != 2) { fail(); }; };
case void => { fail(); };
};
// absent.
match (strings.byteindex("こんにちは", 'q')) {
case let i: i32 => { fail(); };
case void => void;
};
};
// ---- rbyteindex -------------------------------------------------------
@test fn rbyteindex_cases() void = {
// Two 'た' in "またあったね" — ref/hare/strings/index.ha:160-161.
match (strings.byteindex("またあったね", "た")) {
case let i: i32 => { if (i != 3) { fail(); }; };
case void => { fail(); };
};
match (strings.rbyteindex("またあったね", "た")) {
case let i: i32 => { if (i != 12) { fail(); }; };
case void => { fail(); };
};
// Rune arm, multi-byte 'に' U+306B.
match (strings.rbyteindex("こんにちは", 0x306Bu32: rune)) {
case let i: i32 => { if (i != 6) { fail(); }; };
case void => { fail(); };
};
// Absent.
match (strings.rbyteindex("abc", 'z')) {
case let i: i32 => { fail(); };
case void => void;
};
};
// ---- trimprefix / trimsuffix ------------------------------------------
// ref/hare/strings/trim.ha:99-107.
@test fn trimprefix_cases() void = {
if (!streq(strings.trimprefix("", ""), "")) { fail(); };
if (!streq(strings.trimprefix("", "blablabla"), "")) { fail(); };
if (!streq(strings.trimprefix("hello, world", "hello"), ", world")) { fail(); };
if (!streq(strings.trimprefix("blablabla", "bla"), "blabla")) { fail(); };
// equal-length match strips to empty.
if (!streq(strings.trimprefix("hello", "hello"), "")) { fail(); };
};
@test fn trimsuffix_cases() void = {
if (!streq(strings.trimsuffix("", ""), "")) { fail(); };
if (!streq(strings.trimsuffix("", "blablabla"), "")) { fail(); };
if (!streq(strings.trimsuffix("hello, world", "world"), "hello, ")) { fail(); };
if (!streq(strings.trimsuffix("blablabla", "bla"), "blabla")) { fail(); };
if (!streq(strings.trimsuffix("hello", "hello"), "")) { fail(); };
};
// ---- ltrim / rtrim / trim (single-rune subset) ------------------------
// ref/hare/strings/trim.ha:75-97. Vectors restricted to single-rune
// patterns (Hare's `rune...` blocks on task #16).
@test fn ltrim_cases() void = {
if (!streq(strings.ltrim("", 'x'), "")) { fail(); };
if (!streq(strings.ltrim("aaabc", 'a'), "bc")) { fail(); };
if (!streq(strings.ltrim("xyz", 'a'), "xyz")) { fail(); }; // no match
if (!streq(strings.ltrim("aaaa", 'a'), "")) { fail(); }; // all stripped
// 4-byte rune pattern — '𝚊' = U+1D68A.
if (!streq(strings.ltrim("𝚊𝚊hi", 0x1D68Au32: rune), "hi")) { fail(); };
};
@test fn rtrim_cases() void = {
if (!streq(strings.rtrim("", 'x'), "")) { fail(); };
if (!streq(strings.rtrim("bcaaa", 'a'), "bc")) { fail(); };
if (!streq(strings.rtrim("xyz", 'a'), "xyz")) { fail(); };
if (!streq(strings.rtrim("aaaa", 'a'), "")) { fail(); };
if (!streq(strings.rtrim("hi𝚊𝚊", 0x1D68Au32: rune), "hi")) { fail(); };
};
@test fn trim_cases() void = {
if (!streq(strings.trim("", 'x'), "")) { fail(); };
if (!streq(strings.trim("aaabcaaa", 'a'), "bc")) { fail(); };
if (!streq(strings.trim("xyz", 'a'), "xyz")) { fail(); };
if (!streq(strings.trim("aaaa", 'a'), "")) { fail(); };
};
// ---- compare ----------------------------------------------------------
// ref/hare/strings/compare.ha:16.
@test fn compare_cases() void = {
if (strings.compare("ABC", "ABC") != 0) { fail(); };
if (strings.compare("ABC", "AB") <= 0) { fail(); };
if (strings.compare("AB", "ABC") >= 0) { fail(); };
if (strings.compare("BCD", "ABC") <= 0) { fail(); };
if (strings.compare("ABC", "abc") >= 0) { fail(); };
};
// ---- toutf8 / fromutf8_unsafe roundtrip -------------------------------
// ref/hare/strings/utf8.ha:31.
@test fn utf8_roundtrip_cases() void = {
let s: str = "hello";
let b: []u8 = strings.toutf8(s);
if (b.len != 5) { fail(); };
if (b[0] != 104u8) { fail(); }; // 'h'
let r: str = strings.fromutf8_unsafe(b);
if (!streq(r, "hello")) { fail(); };
if (r.ptr != s.ptr) { fail(); }; // borrowed, not copied
};
// ---- iter / next ------------------------------------------------------
// ref/hare/strings/iter.ha:84-108. Hare's @test fn iter() uses prev +
// riter heavily; both are deferred (no `utf8.prev`). Rebuild forward-
// only here: empty / ASCII / 2-byte / 3-byte / 4-byte / done@EOI /
// mixed-width.
@test fn iter_empty_cases() void = {
let it: strings.iterator = strings.iter("");
match (strings.next(&it)) {
case let r: rune => { fail(); };
case utf8.done => void;
};
// Repeated next after done stays done.
match (strings.next(&it)) {
case let r: rune => { fail(); };
case utf8.done => void;
};
};
@test fn iter_ascii_cases() void = {
let it: strings.iterator = strings.iter("hi!");
match (strings.next(&it)) {
case let r: rune => { if (r != 'h') { fail(); }; };
case utf8.done => { fail(); };
};
match (strings.next(&it)) {
case let r: rune => { if (r != 'i') { fail(); }; };
case utf8.done => { fail(); };
};
match (strings.next(&it)) {
case let r: rune => { if (r != '!') { fail(); }; };
case utf8.done => { fail(); };
};
match (strings.next(&it)) {
case let r: rune => { fail(); };
case utf8.done => void;
};
};
@test fn iter_twobyte_cases() void = {
let it: strings.iterator = strings.iter("café");
let i: i32 = 0;
let expect: [4]rune;
expect[0] = 'c'; expect[1] = 'a'; expect[2] = 'f';
expect[3] = 0xE9u32: rune; // 'é' U+00E9
for (i < 4) {
match (strings.next(&it)) {
case let r: rune => { if (r != expect[i]) { fail(); }; };
case utf8.done => { fail(); };
};
i += 1;
};
match (strings.next(&it)) {
case let r: rune => { fail(); };
case utf8.done => void;
};
};
@test fn iter_threebyte_cases() void = {
let it: strings.iterator = strings.iter("こんにちは");
let i: i32 = 0;
let expect: [5]rune;
expect[0] = 0x3053u32: rune; // 'こ'
expect[1] = 0x3093u32: rune; // 'ん'
expect[2] = 0x306Bu32: rune; // 'に'
expect[3] = 0x3061u32: rune; // 'ち'
expect[4] = 0x306Fu32: rune; // 'は'
for (i < 5) {
match (strings.next(&it)) {
case let r: rune => { if (r != expect[i]) { fail(); }; };
case utf8.done => { fail(); };
};
i += 1;
};
match (strings.next(&it)) {
case let r: rune => { fail(); };
case utf8.done => void;
};
};
@test fn iter_fourbyte_cases() void = {
let it: strings.iterator = strings.iter("🦀rust");
let i: i32 = 0;
let expect: [5]rune;
expect[0] = 0x1F980u32: rune; // '🦀'
expect[1] = 'r'; expect[2] = 'u'; expect[3] = 's'; expect[4] = 't';
for (i < 5) {
match (strings.next(&it)) {
case let r: rune => { if (r != expect[i]) { fail(); }; };
case utf8.done => { fail(); };
};
i += 1;
};
match (strings.next(&it)) {
case let r: rune => { fail(); };
case utf8.done => void;
};
};
@test fn iter_mixed_cases() void = {
// "Hello, 世界! 🌍" — 1+1+1+1+1+1+1+3+3+1+1+4 = 12 runes,
// widths 1/3/4 mixed.
let it: strings.iterator = strings.iter("Hello, 世界! 🌍");
let i: i32 = 0;
let expect: [12]rune;
expect[0] = 'H'; expect[1] = 'e'; expect[2] = 'l'; expect[3] = 'l';
expect[4] = 'o'; expect[5] = ','; expect[6] = ' ';
expect[7] = 0x4E16u32: rune; // '世'
expect[8] = 0x754Cu32: rune; // '界'
expect[9] = '!'; expect[10] = ' ';
expect[11] = 0x1F30Du32: rune; // '🌍'
for (i < 12) {
match (strings.next(&it)) {
case let r: rune => { if (r != expect[i]) { fail(); }; };
case utf8.done => { fail(); };
};
i += 1;
};
match (strings.next(&it)) {
case let r: rune => { fail(); };
case utf8.done => void;
};
};
// ---- prev / riter / iterstr / slice / position -----------------------
// ref/hare/strings/iter.ha:84-127. The Hare @test fn iter body uses
// `s = riter(...)` mid-test to swap the iterator's direction; ww's
// sret-into-existing-slot path handles that fine (probed pre-port).
@test fn iter_prev_at_start_cases() void = {
let it: strings.iterator = strings.iter("hi");
match (strings.prev(&it)) {
case utf8.done => void;
case let r: rune => { fail(); };
};
};
@test fn iter_prev_ascii_cases() void = {
let it: strings.iterator = strings.iter("abc");
match (strings.next(&it)) {
case let r: rune => { if (r != 'a') { fail(); }; };
case utf8.done => { fail(); };
};
match (strings.prev(&it)) {
case let r: rune => { if (r != 'a') { fail(); }; };
case utf8.done => { fail(); };
};
match (strings.prev(&it)) {
case utf8.done => void;
case let r: rune => { fail(); };
};
};
// Mirror of ref/hare/strings/iter.ha:84-108 — `iter("こんにちは")`,
// step+back+iterstr+riter-reassign sequence.
@test fn iter_full_cases() void = {
let s: strings.iterator = strings.iter("こんにちは");
match (strings.prev(&s)) {
case utf8.done => void;
case let r: rune => { fail(); };
};
let expect1: [2]rune;
expect1[0] = 0x3053u32: rune; // 'こ'
expect1[1] = 0x3093u32: rune; // 'ん'
let i: i32 = 0;
for (i < 2) {
match (strings.next(&s)) {
case let r: rune => { if (r != expect1[i]) { fail(); }; };
case utf8.done => { fail(); };
};
i += 1;
};
if (!streq(strings.iterstr(&s), "にちは")) { fail(); };
match (strings.prev(&s)) {
case let r: rune => { if (r != 0x3093u32: rune) { fail(); }; }; // 'ん'
case utf8.done => { fail(); };
};
let expect2: [4]rune;
expect2[0] = 0x3093u32: rune; // 'ん'
expect2[1] = 0x306Bu32: rune; // 'に'
expect2[2] = 0x3061u32: rune; // 'ち'
expect2[3] = 0x306Fu32: rune; // 'は'
i = 0;
for (i < 4) {
match (strings.next(&s)) {
case let r: rune => { if (r != expect2[i]) { fail(); }; };
case utf8.done => { fail(); };
};
i += 1;
};
match (strings.next(&s)) {
case utf8.done => void;
case let r: rune => { fail(); };
};
// Repeated next-after-done stays done.
match (strings.next(&s)) {
case utf8.done => void;
case let r: rune => { fail(); };
};
match (strings.prev(&s)) {
case let r: rune => { if (r != 0x306Fu32: rune) { fail(); }; }; // 'は'
case utf8.done => { fail(); };
};
// Swap to a reverse iterator. sret-into-existing-slot.
s = strings.riter("にちは");
let expect3: [3]rune;
expect3[0] = 0x306Fu32: rune; // 'は'
expect3[1] = 0x3061u32: rune; // 'ち'
expect3[2] = 0x306Bu32: rune; // 'に'
i = 0;
for (i < 3) {
match (strings.next(&s)) {
case let r: rune => { if (r != expect3[i]) { fail(); }; };
case utf8.done => { fail(); };
};
i += 1;
};
match (strings.next(&s)) {
case utf8.done => void;
case let r: rune => { fail(); };
};
match (strings.prev(&s)) {
case let r: rune => { if (r != 0x306Bu32: rune) { fail(); }; }; // 'に'
case utf8.done => { fail(); };
};
};
@test fn iter_position_cases() void = {
let it: strings.iterator = strings.iter("café"); // 5 bytes: c-a-f-é(2)
if (strings.position(&it) != 0) { fail(); };
match (strings.next(&it)) { case let r: rune => void; case utf8.done => { fail(); }; };
if (strings.position(&it) != 1) { fail(); };
match (strings.next(&it)) { case let r: rune => void; case utf8.done => { fail(); }; };
match (strings.next(&it)) { case let r: rune => void; case utf8.done => { fail(); }; };
if (strings.position(&it) != 3) { fail(); };
match (strings.next(&it)) { case let r: rune => void; case utf8.done => { fail(); }; };
if (strings.position(&it) != 5) { fail(); };
};
@test fn iter_iterstr_reverse_cases() void = {
// Reverse iter: iterstr is `src[0:offs]` — bytes BEFORE the cursor
// (the still-to-be-walked region in reverse direction).
let rit: strings.iterator = strings.riter("hello");
if (!streq(strings.iterstr(&rit), "hello")) { fail(); };
match (strings.next(&rit)) { case let r: rune => void; case utf8.done => { fail(); }; };
if (!streq(strings.iterstr(&rit), "hell")) { fail(); };
match (strings.next(&rit)) { case let r: rune => void; case utf8.done => { fail(); }; };
match (strings.next(&rit)) { case let r: rune => void; case utf8.done => { fail(); }; };
if (!streq(strings.iterstr(&rit), "he")) { fail(); };
};
export fn main() i32 = {
signalled = 1; dup_cases();
signalled = 2; concat_cases();
signalled = 3; hasprefix_cases();
signalled = 4; hassuffix_cases();
signalled = 5; contains_cases();
signalled = 6; byteindex_str_cases();
signalled = 7; byteindex_rune_cases();
signalled = 8; rbyteindex_cases();
signalled = 9; trimprefix_cases();
signalled = 10; trimsuffix_cases();
signalled = 11; ltrim_cases();
signalled = 12; rtrim_cases();
signalled = 13; trim_cases();
signalled = 14; compare_cases();
signalled = 15; utf8_roundtrip_cases();
signalled = 16; iter_empty_cases();
signalled = 17; iter_ascii_cases();
signalled = 18; iter_twobyte_cases();
signalled = 19; iter_threebyte_cases();
signalled = 20; iter_fourbyte_cases();
signalled = 21; iter_mixed_cases();
signalled = 22; iter_prev_at_start_cases();
signalled = 23; iter_prev_ascii_cases();
signalled = 24; iter_full_cases();
signalled = 25; iter_position_cases();
signalled = 26; iter_iterstr_reverse_cases();
return 0;
};