- `[a, b, c]` list literals (E_LIST → emit_list); static_type learns slice-element, `new T`, list, string and literal kinds - `x op= y` lowers through the same path as `x = x op y` (emit_bin_vals): fixed `*=`/`/=` use the Q16.16 64-bit paths, string `+=` concatenates, int→long widens; unary `-` keeps a fixed operand's type (arith_ty) - one `unescape()` table for "strings", 'chars' and `interpolation`; `'\''`, `'\\'`, `'\"'` no longer read as 0; unterminated char literals and unexpected characters are errors instead of silently skipped - every diagnostic is `file:line: error: msg` (g_parse_file / g_err_file, Node.file + Node.line set by node()); tok_desc() in expectation errors; duplicate `function` names and unknown `phase` names are reported in source terms (phase_id used to default unknown phases to Overlay) - interpolation holes skip braces inside string literals - hand-IR preludes move from the user `@fn_` prefix to `@lp_` so a user `is_ws` / `str_eq` / `path_join` no longer collides at link time - `@ClearColor(expr)` accepts any constant expression; `Os.pid()` added (docs page + inventory); `str_starts()` in support/str - main.ludic: `else if` flag ladder, char literals, stale script comments - examples/lang/operators.ludic covers all of the above; os.ludic covers Os.pid; docs pages for Os.pid and the Overlay phase; ten changesets - reseeded: selfhost/ludicc.seed.ll is the new compiler's own fixpoint Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
27 lines
1.2 KiB
Text
27 lines
1.2 KiB
Text
program T {
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entry {
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let a = Vector.make(3.0, 4.0)
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print(floor(Vector.x(a))) # 3
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print(floor(Vector.y(a))) # 4
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print(floor(Vector.length(a))) # 5 (3-4-5)
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let b = Vector.make(1.0, 2.0)
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let c = Vector.add(a, b)
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print(floor(Vector.x(c))) # 4
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print(floor(Vector.y(c))) # 6
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let d = Vector.sub(a, b)
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print(floor(Vector.x(d))) # 2
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print(floor(Vector.y(d))) # 2
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print(floor(Vector.dot(a, b))) # 11
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print(floor(Vector.distance(a, b))) # 2 (sqrt 8)
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print(floor(Vector.x(Vector.scale(a, 2.0)))) # 6
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let n = Vector.normalize(a)
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print(floor(Vector.length(n) * 1000)) # 999 (unit)
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print(floor(Vector.x(Vector.from_angle(0.0)) * 1000)) # 999 (cos 0)
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let r = Vector.rotate(Vector.make(1.0, 0.0), 1.5707963) # rotate 90 deg
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print(floor(Vector.y(r) * 1000)) # 999 (-> (0,1))
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print(floor(Vector.angle(Vector.make(0.0, 1.0)) * 1000)) # pi/2 -> 1570
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let m = Vector.lerp(Vector.zero(), Vector.make(10.0, 20.0), 0.5)
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print(floor(Vector.x(m))) # 5
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print(floor(Vector.y(m))) # 10
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}
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}
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