194 lines
5.1 KiB
Zig
194 lines
5.1 KiB
Zig
const assert = @import("std").debug.assert;
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const builtin = @import("builtin");
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var foo: u8 align(4) = 100;
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test "global variable alignment" {
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assert(@typeOf(&foo).alignment == 4);
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assert(@typeOf(&foo) == &align(4) u8);
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const slice = (&foo)[0..1];
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assert(@typeOf(slice) == []align(4) u8);
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}
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fn derp() align(@sizeOf(usize) * 2) i32 { return 1234; }
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fn noop1() align(1) void {}
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fn noop4() align(4) void {}
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test "function alignment" {
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assert(derp() == 1234);
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assert(@typeOf(noop1) == fn() align(1) void);
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assert(@typeOf(noop4) == fn() align(4) void);
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noop1();
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noop4();
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}
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var baz: packed struct {
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a: u32,
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b: u32,
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} = undefined;
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test "packed struct alignment" {
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assert(@typeOf(&baz.b) == &align(1) u32);
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}
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const blah: packed struct {
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a: u3,
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b: u3,
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c: u2,
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} = undefined;
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test "bit field alignment" {
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assert(@typeOf(&blah.b) == &align(1:3:6) const u3);
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}
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test "default alignment allows unspecified in type syntax" {
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assert(&u32 == &align(@alignOf(u32)) u32);
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}
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test "implicitly decreasing pointer alignment" {
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const a: u32 align(4) = 3;
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const b: u32 align(8) = 4;
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assert(addUnaligned(&a, &b) == 7);
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}
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fn addUnaligned(a: &align(1) const u32, b: &align(1) const u32) u32 { return *a + *b; }
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test "implicitly decreasing slice alignment" {
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const a: u32 align(4) = 3;
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const b: u32 align(8) = 4;
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assert(addUnalignedSlice((&a)[0..1], (&b)[0..1]) == 7);
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}
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fn addUnalignedSlice(a: []align(1) const u32, b: []align(1) const u32) u32 { return a[0] + b[0]; }
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test "specifying alignment allows pointer cast" {
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testBytesAlign(0x33);
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}
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fn testBytesAlign(b: u8) void {
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var bytes align(4) = []u8{b, b, b, b};
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const ptr = @ptrCast(&u32, &bytes[0]);
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assert(*ptr == 0x33333333);
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}
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test "specifying alignment allows slice cast" {
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testBytesAlignSlice(0x33);
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}
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fn testBytesAlignSlice(b: u8) void {
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var bytes align(4) = []u8{b, b, b, b};
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const slice = ([]u32)(bytes[0..]);
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assert(slice[0] == 0x33333333);
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}
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test "@alignCast pointers" {
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var x: u32 align(4) = 1;
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expectsOnly1(&x);
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assert(x == 2);
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}
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fn expectsOnly1(x: &align(1) u32) void {
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expects4(@alignCast(4, x));
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}
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fn expects4(x: &align(4) u32) void {
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*x += 1;
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}
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test "@alignCast slices" {
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var array align(4) = []u32{1, 1};
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const slice = array[0..];
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sliceExpectsOnly1(slice);
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assert(slice[0] == 2);
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}
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fn sliceExpectsOnly1(slice: []align(1) u32) void {
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sliceExpects4(@alignCast(4, slice));
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}
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fn sliceExpects4(slice: []align(4) u32) void {
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slice[0] += 1;
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}
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test "implicitly decreasing fn alignment" {
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testImplicitlyDecreaseFnAlign(alignedSmall, 1234);
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testImplicitlyDecreaseFnAlign(alignedBig, 5678);
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}
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fn testImplicitlyDecreaseFnAlign(ptr: fn () align(1) i32, answer: i32) void {
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assert(ptr() == answer);
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}
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fn alignedSmall() align(8) i32 { return 1234; }
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fn alignedBig() align(16) i32 { return 5678; }
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test "@alignCast functions" {
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assert(fnExpectsOnly1(simple4) == 0x19);
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}
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fn fnExpectsOnly1(ptr: fn()align(1) i32) i32 {
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return fnExpects4(@alignCast(4, ptr));
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}
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fn fnExpects4(ptr: fn()align(4) i32) i32 {
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return ptr();
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}
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fn simple4() align(4) i32 { return 0x19; }
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test "generic function with align param" {
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assert(whyWouldYouEverDoThis(1) == 0x1);
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assert(whyWouldYouEverDoThis(4) == 0x1);
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assert(whyWouldYouEverDoThis(8) == 0x1);
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}
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fn whyWouldYouEverDoThis(comptime align_bytes: u8) align(align_bytes) u8 { return 0x1; }
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test "@ptrCast preserves alignment of bigger source" {
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var x: u32 align(16) = 1234;
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const ptr = @ptrCast(&u8, &x);
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assert(@typeOf(ptr) == &align(16) u8);
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}
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test "compile-time known array index has best alignment possible" {
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// take full advantage of over-alignment
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var array align(4) = []u8 {1, 2, 3, 4};
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assert(@typeOf(&array[0]) == &align(4) u8);
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assert(@typeOf(&array[1]) == &u8);
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assert(@typeOf(&array[2]) == &align(2) u8);
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assert(@typeOf(&array[3]) == &u8);
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// because align is too small but we still figure out to use 2
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var bigger align(2) = []u64{1, 2, 3, 4};
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assert(@typeOf(&bigger[0]) == &align(2) u64);
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assert(@typeOf(&bigger[1]) == &align(2) u64);
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assert(@typeOf(&bigger[2]) == &align(2) u64);
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assert(@typeOf(&bigger[3]) == &align(2) u64);
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// because pointer is align 2 and u32 align % 2 == 0 we can assume align 2
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var smaller align(2) = []u32{1, 2, 3, 4};
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testIndex(&smaller[0], 0, &align(2) u32);
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testIndex(&smaller[0], 1, &align(2) u32);
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testIndex(&smaller[0], 2, &align(2) u32);
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testIndex(&smaller[0], 3, &align(2) u32);
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// has to use ABI alignment because index known at runtime only
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testIndex2(&array[0], 0, &u8);
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testIndex2(&array[0], 1, &u8);
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testIndex2(&array[0], 2, &u8);
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testIndex2(&array[0], 3, &u8);
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}
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fn testIndex(smaller: &align(2) u32, index: usize, comptime T: type) void {
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assert(@typeOf(&smaller[index]) == T);
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}
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fn testIndex2(ptr: &align(4) u8, index: usize, comptime T: type) void {
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assert(@typeOf(&ptr[index]) == T);
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}
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test "alignstack" {
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assert(fnWithAlignedStack() == 1234);
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}
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fn fnWithAlignedStack() i32 {
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@setAlignStack(256);
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return 1234;
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}
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