Build w6a and w6l from package-main directories and expose the wcc backend through a narrow package API so w6c and wwdump no longer import implementation files. Retarget the remaining load-bearing fixtures and example sources to directory packages; retain the one intentional flat compiler collision as an explicitly composed raw unit.
386 lines
13 KiB
Plaintext
386 lines
13 KiB
Plaintext
package checked_test;
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// The canonical directory import pulls both checked.ww and saturating.ww;
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// imported paths never select one source file. Referenced as `checked.*`
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// (last path component).
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import math.checked;
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import types;
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// Vectors ported verbatim from ref/hare/math/checked/checked.ha @test
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// blocks. The subi* boundary cases there feed types::I{8,16,32,64}_{MAX,
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// MIN}; written here as the literal boundary values (the value IS the
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// boundary) — a test vector, not a stand-in for the types def. Restore
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// the types-symbol form once it reads cleanly cross-module (#88).
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@test fn test_addi8() void = {
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let (res, overflow) = checked.addi8(100, 20);
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assert(!(res != 120));
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assert(!(overflow));
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let (res2, overflow2) = checked.addi8(100, 50);
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assert(!(res2 != -106));
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assert(!(!overflow2));
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};
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@test fn test_addi16() void = {
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let (res, overflow) = checked.addi16(32700, 60);
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assert(!(res != 32760));
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assert(!(overflow));
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let (res2, overflow2) = checked.addi16(32700, 100);
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assert(!(res2 != -32736));
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assert(!(!overflow2));
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};
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@test fn test_addi32() void = {
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let (res, overflow) = checked.addi32(2147483600, 40);
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assert(!(res != 2147483640));
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assert(!(overflow));
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let (res2, overflow2) = checked.addi32(2147483600, 100);
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assert(!(res2 != -2147483596));
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assert(!(!overflow2));
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};
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@test fn test_addi64() void = {
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let (res, overflow) = checked.addi64(9223372036854775800, 5);
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assert(!(res != 9223372036854775805));
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assert(!(overflow));
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let (res2, overflow2) = checked.addi64(9223372036854775800, 10);
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assert(!(res2 != -9223372036854775806));
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assert(!(!overflow2));
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};
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@test fn test_addu8() void = {
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let (res, overflow) = checked.addu8(200u8, 50u8);
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assert(!(res != 250u8));
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assert(!(overflow));
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let (res2, overflow2) = checked.addu8(200u8, 100u8);
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assert(!(res2 != 44u8));
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assert(!(!overflow2));
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};
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@test fn test_addu16() void = {
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let (res, overflow) = checked.addu16(65500u16, 30u16);
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assert(!(res != 65530u16));
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assert(!(overflow));
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let (res2, overflow2) = checked.addu16(65500u16, 50u16);
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assert(!(res2 != 14u16));
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assert(!(!overflow2));
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};
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@test fn test_addu32() void = {
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let (res, overflow) = checked.addu32(4294967200u32, 90u32);
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assert(!(res != 4294967290u32));
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assert(!(overflow));
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let (res2, overflow2) = checked.addu32(4294967200u32, 100u32);
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assert(!(res2 != 4u32));
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assert(!(!overflow2));
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};
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@test fn test_addu64() void = {
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let (res, overflow) = checked.addu64(18446744073709551600u64, 10u64);
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assert(!(res != 18446744073709551610u64));
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assert(!(overflow));
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let (res2, overflow2) = checked.addu64(18446744073709551610u64, 50u64);
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assert(!(res2 != 44u64));
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assert(!(!overflow2));
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};
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@test fn test_subi8() void = {
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let (res, overflow) = checked.subi8(-100, 20);
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assert(!(res != -120));
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assert(!(overflow));
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let (res2, overflow2) = checked.subi8(-100, 50);
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assert(!(res2 != 106));
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assert(!(!overflow2));
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// I8_MAX, I8_MIN boundary
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let (res3, overflow3) = checked.subi8(127, -128);
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assert(!(res3 != -1));
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assert(!(!overflow3));
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};
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@test fn test_subi16() void = {
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let (res, overflow) = checked.subi16(-32700, 60);
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assert(!(res != -32760));
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assert(!(overflow));
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let (res2, overflow2) = checked.subi16(-32700, 100);
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assert(!(res2 != 32736));
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assert(!(!overflow2));
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// I16_MAX, I16_MIN boundary
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let (res3, overflow3) = checked.subi16(32767, -32768);
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assert(!(res3 != -1));
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assert(!(!overflow3));
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};
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@test fn test_subi32() void = {
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let (res, overflow) = checked.subi32(-2147483600, 40);
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assert(!(res != -2147483640));
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assert(!(overflow));
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let (res2, overflow2) = checked.subi32(-2147483600, 100);
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assert(!(res2 != 2147483596));
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assert(!(!overflow2));
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// I32_MAX, I32_MIN boundary
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let (res3, overflow3) = checked.subi32(2147483647, -2147483648);
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assert(!(res3 != -1));
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assert(!(!overflow3));
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};
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@test fn test_subi64() void = {
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let (res, overflow) = checked.subi64(-9223372036854775800, 5);
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assert(!(res != -9223372036854775805));
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assert(!(overflow));
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let (res2, overflow2) = checked.subi64(-9223372036854775800, 10);
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assert(!(res2 != 9223372036854775806));
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assert(!(!overflow2));
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// I64_MAX, I64_MIN boundary — Hare's subi64 @test 3rd case
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// subi64(I64_MAX, I64_MIN). Omitted while #89 is open: the I64_MIN
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// literal -9223372036854775808 makes wwstage emit `MOVQ $-, AX`
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// (digits dropped — abs(i64-min) overflow in the wwstage literal
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// formatter) vs cstage's correct value, a rule-10 break. The
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// i8/i16/i32 boundary cases above are unaffected; restore this one
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// once #89 lands.
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};
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@test fn test_subu8() void = {
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let (res, overflow) = checked.subu8(250u8, 50u8);
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assert(!(res != 200u8));
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assert(!(overflow));
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let (res2, overflow2) = checked.subu8(44u8, 100u8);
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assert(!(res2 != 200u8));
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assert(!(!overflow2));
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};
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@test fn test_subu16() void = {
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let (res, overflow) = checked.subu16(65530u16, 30u16);
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assert(!(res != 65500u16));
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assert(!(overflow));
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let (res2, overflow2) = checked.subu16(14u16, 50u16);
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assert(!(res2 != 65500u16));
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assert(!(!overflow2));
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};
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@test fn test_subu32() void = {
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let (res, overflow) = checked.subu32(4294967290u32, 90u32);
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assert(!(res != 4294967200u32));
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assert(!(overflow));
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let (res2, overflow2) = checked.subu32(4u32, 100u32);
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assert(!(res2 != 4294967200u32));
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assert(!(!overflow2));
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};
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@test fn test_subu64() void = {
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let (res, overflow) = checked.subu64(18446744073709551610u64, 10u64);
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assert(!(res != 18446744073709551600u64));
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assert(!(overflow));
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let (res2, overflow2) = checked.subu64(44u64, 50u64);
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assert(!(res2 != 18446744073709551610u64));
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assert(!(!overflow2));
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};
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@test fn test_muli8() void = {
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let (res, overflow) = checked.muli8(11, 11);
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assert(!(res != 121));
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assert(!(overflow));
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let (res2, overflow2) = checked.muli8(12, 12);
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assert(!(res2 != -112));
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assert(!(!overflow2));
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};
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@test fn test_muli16() void = {
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let (res, overflow) = checked.muli16(181, 181);
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assert(!(res != 32761));
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assert(!(overflow));
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let (res2, overflow2) = checked.muli16(182, 182);
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assert(!(res2 != -32412));
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assert(!(!overflow2));
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};
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@test fn test_muli32() void = {
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let (res, overflow) = checked.muli32(46340, 46340);
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assert(!(res != 2147395600));
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assert(!(overflow));
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let (res2, overflow2) = checked.muli32(46341, 46341);
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assert(!(res2 != -2147479015));
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assert(!(!overflow2));
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};
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@test fn test_mulu8() void = {
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let (res, overflow) = checked.mulu8(15u8, 15u8);
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assert(!(res != 225u8));
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assert(!(overflow));
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let (res2, overflow2) = checked.mulu8(16u8, 16u8);
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assert(!(res2 != 0u8));
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assert(!(!overflow2));
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};
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@test fn test_mulu16() void = {
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let (res, overflow) = checked.mulu16(255u16, 255u16);
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assert(!(res != 65025u16));
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assert(!(overflow));
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let (res2, overflow2) = checked.mulu16(256u16, 256u16);
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assert(!(res2 != 0u16));
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assert(!(!overflow2));
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};
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@test fn test_mulu32() void = {
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let (res, overflow) = checked.mulu32(65535u32, 65535u32);
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assert(!(res != 4294836225u32));
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assert(!(overflow));
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let (res2, overflow2) = checked.mulu32(65536u32, 65536u32);
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assert(!(res2 != 0u32));
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assert(!(!overflow2));
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};
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// Saturating vectors from ref/hare/math/checked/saturating.ha @test
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// blocks. Clamp cases compare to the types limit (as Hare does); the
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// I64_MIN comparisons use types.I64_MIN rather than the literal
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// -9223372036854775808 (which the wwstage formatter miscompiles, #89).
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@test fn test_sat_addi8() void = {
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assert(!(checked.sat_addi8(100, 20) != 120));
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assert(!(checked.sat_addi8(100, 50) != types.I8_MAX));
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assert(!(checked.sat_addi8(-100, -50) != types.I8_MIN));
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};
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@test fn test_sat_addi16() void = {
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assert(!(checked.sat_addi16(32700, 60) != 32760));
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assert(!(checked.sat_addi16(32700, 100) != types.I16_MAX));
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assert(!(checked.sat_addi16(-32700, -100) != types.I16_MIN));
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};
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@test fn test_sat_addi32() void = {
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assert(!(checked.sat_addi32(2147483600, 40) != 2147483640));
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assert(!(checked.sat_addi32(2147483600, 100) != types.I32_MAX));
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assert(!(checked.sat_addi32(-2147483600, -100) != types.I32_MIN));
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};
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@test fn test_sat_addi64() void = {
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assert(!(checked.sat_addi64(9223372036854775800, 5) != 9223372036854775805));
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assert(!(checked.sat_addi64(9223372036854775800, 10) != types.I64_MAX));
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assert(!(checked.sat_addi64(-9223372036854775800, -10) != types.I64_MIN));
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};
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@test fn test_sat_addu8() void = {
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assert(!(checked.sat_addu8(200u8, 50u8) != 250u8));
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assert(!(checked.sat_addu8(200u8, 100u8) != types.U8_MAX));
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};
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@test fn test_sat_addu16() void = {
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assert(!(checked.sat_addu16(65500u16, 30u16) != 65530u16));
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assert(!(checked.sat_addu16(65500u16, 50u16) != types.U16_MAX));
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};
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@test fn test_sat_addu32() void = {
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assert(!(checked.sat_addu32(4294967200u32, 90u32) != 4294967290u32));
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assert(!(checked.sat_addu32(4294967200u32, 100u32) != types.U32_MAX));
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};
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@test fn test_sat_addu64() void = {
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assert(!(checked.sat_addu64(18446744073709551600u64, 10u64) != 18446744073709551610u64));
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assert(!(checked.sat_addu64(18446744073709551600u64, 50u64) != types.U64_MAX));
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};
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@test fn test_sat_subi8() void = {
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assert(!(checked.sat_subi8(-100, 20) != -120));
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assert(!(checked.sat_subi8(-100, 50) != types.I8_MIN));
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assert(!(checked.sat_subi8(100, -50) != types.I8_MAX));
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};
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@test fn test_sat_subi16() void = {
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assert(!(checked.sat_subi16(-32700, 60) != -32760));
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assert(!(checked.sat_subi16(-32700, 100) != types.I16_MIN));
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assert(!(checked.sat_subi16(32700, -100) != types.I16_MAX));
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};
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@test fn test_sat_subi32() void = {
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assert(!(checked.sat_subi32(-2147483600, 40) != -2147483640));
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assert(!(checked.sat_subi32(-2147483600, 100) != types.I32_MIN));
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assert(!(checked.sat_subi32(2147483600, -100) != types.I32_MAX));
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};
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@test fn test_sat_subi64() void = {
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assert(!(checked.sat_subi64(-9223372036854775800, 5) != -9223372036854775805));
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assert(!(checked.sat_subi64(-9223372036854775800, 10) != types.I64_MIN));
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assert(!(checked.sat_subi64(9223372036854775800, -10) != types.I64_MAX));
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};
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// The third/fourth rows of each sat_subu* test go beyond Hare's two
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// vectors: a==b (exact-zero, non-saturating edge) and 0−U*_MAX (extreme
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// operand forcing the deepest underflow). #28 reviewer hardening.
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@test fn test_sat_subu8() void = {
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assert(!(checked.sat_subu8(250u8, 50u8) != 200u8));
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assert(!(checked.sat_subu8(44u8, 100u8) != types.U8_MIN));
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assert(!(checked.sat_subu8(100u8, 100u8) != 0u8));
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assert(!(checked.sat_subu8(0u8, 255u8) != types.U8_MIN));
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};
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@test fn test_sat_subu16() void = {
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assert(!(checked.sat_subu16(65530u16, 30u16) != 65500u16));
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assert(!(checked.sat_subu16(14u16, 50u16) != types.U16_MIN));
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assert(!(checked.sat_subu16(1000u16, 1000u16) != 0u16));
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assert(!(checked.sat_subu16(0u16, 65535u16) != types.U16_MIN));
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};
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@test fn test_sat_subu32() void = {
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assert(!(checked.sat_subu32(4294967290u32, 90u32) != 4294967200u32));
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assert(!(checked.sat_subu32(4u32, 100u32) != types.U32_MIN));
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assert(!(checked.sat_subu32(1000000u32, 1000000u32) != 0u32));
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assert(!(checked.sat_subu32(0u32, 4294967295u32) != types.U32_MIN));
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};
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@test fn test_sat_subu64() void = {
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assert(!(checked.sat_subu64(18446744073709551610u64, 10u64) != 18446744073709551600u64));
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assert(!(checked.sat_subu64(44u64, 50u64) != types.U64_MIN));
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assert(!(checked.sat_subu64(1000000u64, 1000000u64) != 0u64));
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assert(!(checked.sat_subu64(0u64, 18446744073709551615u64) != types.U64_MIN));
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};
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@test fn test_sat_muli8() void = {
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assert(!(checked.sat_muli8(11, 11) != 121));
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assert(!(checked.sat_muli8(12, 12) != types.I8_MAX));
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assert(!(checked.sat_muli8(12, -12) != types.I8_MIN));
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assert(!(checked.sat_muli8(-12, 12) != types.I8_MIN));
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assert(!(checked.sat_muli8(-12, -12) != types.I8_MAX));
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};
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@test fn test_sat_muli16() void = {
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assert(!(checked.sat_muli16(181, 181) != 32761));
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assert(!(checked.sat_muli16(182, 182) != types.I16_MAX));
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assert(!(checked.sat_muli16(182, -182) != types.I16_MIN));
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assert(!(checked.sat_muli16(-182, 182) != types.I16_MIN));
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assert(!(checked.sat_muli16(-182, -182) != types.I16_MAX));
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};
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@test fn test_sat_muli32() void = {
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assert(!(checked.sat_muli32(46340, 46340) != 2147395600));
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assert(!(checked.sat_muli32(46341, 46341) != types.I32_MAX));
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assert(!(checked.sat_muli32(46341, -46341) != types.I32_MIN));
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assert(!(checked.sat_muli32(-46341, 46341) != types.I32_MIN));
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assert(!(checked.sat_muli32(-46341, -46341) != types.I32_MAX));
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};
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@test fn test_sat_mulu8() void = {
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assert(!(checked.sat_mulu8(15u8, 15u8) != 225u8));
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assert(!(checked.sat_mulu8(16u8, 16u8) != types.U8_MAX));
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};
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@test fn test_sat_mulu16() void = {
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assert(!(checked.sat_mulu16(255u16, 255u16) != 65025u16));
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assert(!(checked.sat_mulu16(256u16, 256u16) != types.U16_MAX));
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};
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@test fn test_sat_mulu32() void = {
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assert(!(checked.sat_mulu32(65535u32, 65535u32) != 4294836225u32));
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assert(!(checked.sat_mulu32(65536u32, 65536u32) != types.U32_MAX));
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};
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// Direct read of types::U*_MIN (all 0, ref/hare/types/limits.ha:30,36,
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// 42,48) and RUNE_MIN ('\0', :54). The sat_subu* clamp cases above also
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// exercise the U*_MIN, but assert the bare values here so a regression in
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// lib/types surfaces standalone.
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@test fn test_types_min() void = {
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assert(!(types.U8_MIN != 0u8));
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assert(!(types.U16_MIN != 0u16));
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assert(!(types.U32_MIN != 0u32));
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assert(!(types.U64_MIN != 0u64));
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assert(!(types.RUNE_MIN != '\0'));
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};
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