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Sema: skip aliasing check and runtime operation for @memcpy of zero-bit type
This check isn't valid in such cases, because the source and destination pointers both refer to zero bits of memory, meaning they effectively never alias. Resolves: #21655
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16
src/Sema.zig
16
src/Sema.zig
@ -25928,6 +25928,22 @@ fn zirMemcpy(sema: *Sema, block: *Block, inst: Zir.Inst.Index) CompileError!void
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}
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}
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zero_bit: {
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const src_comptime = try src_elem_ty.comptimeOnlySema(pt);
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const dest_comptime = try dest_elem_ty.comptimeOnlySema(pt);
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assert(src_comptime == dest_comptime); // IMC
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if (src_comptime) break :zero_bit;
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const src_has_bits = try src_elem_ty.hasRuntimeBitsIgnoreComptimeSema(pt);
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const dest_has_bits = try dest_elem_ty.hasRuntimeBitsIgnoreComptimeSema(pt);
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assert(src_has_bits == dest_has_bits); // IMC
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if (src_has_bits) break :zero_bit;
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// The element type is zero-bit. We've done all validation (aside from the aliasing check,
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// which we must skip) so we're done.
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return;
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}
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const runtime_src = rs: {
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const dest_ptr_val = try sema.resolveDefinedValue(block, dest_src, dest_ptr) orelse break :rs dest_src;
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const src_ptr_val = try sema.resolveDefinedValue(block, src_src, src_ptr) orelse break :rs src_src;
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@ -452,6 +452,13 @@ pub fn hasRuntimeBitsIgnoreComptime(ty: Type, zcu: *const Zcu) bool {
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return hasRuntimeBitsInner(ty, true, .eager, zcu, {}) catch unreachable;
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}
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pub fn hasRuntimeBitsIgnoreComptimeSema(ty: Type, pt: Zcu.PerThread) SemaError!bool {
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return hasRuntimeBitsInner(ty, true, .sema, pt.zcu, pt.tid) catch |err| switch (err) {
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error.NeedLazy => unreachable, // this would require a resolve strat of lazy
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else => |e| return e,
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};
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}
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/// true if and only if the type takes up space in memory at runtime.
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/// There are two reasons a type will return false:
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/// * the type is a comptime-only type. For example, the type `type` itself.
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@ -1,6 +1,7 @@
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const std = @import("std");
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const builtin = @import("builtin");
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const expect = std.testing.expect;
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const assert = std.debug.assert;
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test "memcpy and memset intrinsics" {
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if (builtin.zig_backend == .stage2_aarch64) return error.SkipZigTest;
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@ -99,3 +100,31 @@ comptime {
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s.set("hello");
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if (!std.mem.eql(u8, s.buffer[0..5], "hello")) @compileError("bad");
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}
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test "@memcpy comptime-only type" {
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const in: [4]type = .{ u8, u16, u32, u64 };
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comptime var out: [4]type = undefined;
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@memcpy(&out, &in);
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comptime assert(out[0] == u8);
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comptime assert(out[1] == u16);
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comptime assert(out[2] == u32);
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comptime assert(out[3] == u64);
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}
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test "@memcpy zero-bit type with aliasing" {
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const S = struct {
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fn doTheTest() void {
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var buf: [3]void = @splat({});
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const slice: []void = &buf;
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// These two pointers are the same, but it's still not considered aliasing because
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// the input and output slices both correspond to zero bits of memory.
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@memcpy(slice, slice);
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comptime assert(buf[0] == {});
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comptime assert(buf[1] == {});
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comptime assert(buf[2] == {});
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}
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};
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S.doTheTest();
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comptime S.doTheTest();
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}
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