authorgravatar for john.schmidt.h@gmail.comJohn Schmidt <john.schmidt.h@gmail.com> 2022-03-18 13:29:00+01:00
committergravatar for john.schmidt.h@gmail.comJohn Schmidt <john.schmidt.h@gmail.com> 2022-03-18 16:28:38+01:00
log870341e32e4fa4c8ef1bc3b0163d6530cab5911e
tree1b3a42c965a89225fbde7540a72e3412a3330002
parentf3f5a5d05b7056aceb408b701613242d053019ab

stage2: implement `@bitReverse` for vectors


2 files changed, 122 insertions(+), 16 deletions(-)

src/Sema.zig+46-16
...@@ -13575,28 +13575,58 @@ fn zirByteSwap(sema: *Sema, block: *Block, inst: Zir.Inst.Index) CompileError!Ai...@@ -13575,28 +13575,58 @@ fn zirByteSwap(sema: *Sema, block: *Block, inst: Zir.Inst.Index) CompileError!Ai
1357513575
13576fn zirBitReverse(sema: *Sema, block: *Block, inst: Zir.Inst.Index) CompileError!Air.Inst.Ref {13576fn zirBitReverse(sema: *Sema, block: *Block, inst: Zir.Inst.Index) CompileError!Air.Inst.Ref {
13577 const inst_data = sema.code.instructions.items(.data)[inst].un_node;13577 const inst_data = sema.code.instructions.items(.data)[inst].un_node;
13578 const ty_src: LazySrcLoc = .{ .node_offset_builtin_call_arg0 = inst_data.src_node };
13579 const operand_src: LazySrcLoc = .{ .node_offset_builtin_call_arg1 = inst_data.src_node };13578 const operand_src: LazySrcLoc = .{ .node_offset_builtin_call_arg1 = inst_data.src_node };
13580 const operand = sema.resolveInst(inst_data.operand);13579 const operand = sema.resolveInst(inst_data.operand);
13581 const operand_ty = sema.typeOf(operand);13580 const operand_ty = sema.typeOf(operand);
13582 // TODO implement support for vectors13581 const scalar_ty = try sema.checkIntOrVectorAllowComptime(block, operand, operand_src);
13583 if (operand_ty.zigTypeTag() != .Int) {13582
13584 return sema.fail(block, ty_src, "expected integer type, found '{}'", .{
13585 operand_ty,
13586 });
13587 }
13588 const target = sema.mod.getTarget();13583 const target = sema.mod.getTarget();
13589 const bits = operand_ty.intInfo(target).bits;13584 const bits = scalar_ty.intInfo(target).bits;
13590 if (bits == 0) return Air.Inst.Ref.zero;13585 if (bits == 0) {
13586 switch (operand_ty.zigTypeTag()) {
13587 .Vector => return sema.addConstant(
13588 operand_ty,
13589 try Value.Tag.repeated.create(sema.arena, Value.zero),
13590 ),
13591 .Int => return Air.Inst.Ref.zero,
13592 else => unreachable,
13593 }
13594 }
1359113595
13592 const runtime_src = if (try sema.resolveMaybeUndefVal(block, operand_src, operand)) |val| {13596 switch (operand_ty.zigTypeTag()) {
13593 if (val.isUndef()) return sema.addConstUndef(operand_ty);13597 .Int, .ComptimeInt => {
13594 const result_val = try val.bitReverse(operand_ty, target, sema.arena);13598 const runtime_src = if (try sema.resolveMaybeUndefVal(block, operand_src, operand)) |val| {
13595 return sema.addConstant(operand_ty, result_val);13599 if (val.isUndef()) return sema.addConstUndef(operand_ty);
13596 } else operand_src;13600 const result_val = try val.bitReverse(operand_ty, target, sema.arena);
13601 return sema.addConstant(operand_ty, result_val);
13602 } else operand_src;
1359713603
13598 try sema.requireRuntimeBlock(block, runtime_src);13604 try sema.requireRuntimeBlock(block, runtime_src);
13599 return block.addTyOp(.bit_reverse, operand_ty, operand);13605 return block.addTyOp(.bit_reverse, operand_ty, operand);
13606 },
13607 .Vector => {
13608 const runtime_src = if (try sema.resolveMaybeUndefVal(block, operand_src, operand)) |val| {
13609 if (val.isUndef())
13610 return sema.addConstUndef(operand_ty);
13611
13612 const vec_len = operand_ty.vectorLen();
13613 var elem_buf: Value.ElemValueBuffer = undefined;
13614 const elems = try sema.arena.alloc(Value, vec_len);
13615 for (elems) |*elem, i| {
13616 const elem_val = val.elemValueBuffer(i, &elem_buf);
13617 elem.* = try elem_val.bitReverse(operand_ty, target, sema.arena);
13618 }
13619 return sema.addConstant(
13620 operand_ty,
13621 try Value.Tag.aggregate.create(sema.arena, elems),
13622 );
13623 } else operand_src;
13624
13625 try sema.requireRuntimeBlock(block, runtime_src);
13626 return block.addTyOp(.bit_reverse, operand_ty, operand);
13627 },
13628 else => unreachable,
13629 }
13600}13630}
1360113631
13602fn zirBitOffsetOf(sema: *Sema, block: *Block, inst: Zir.Inst.Index) CompileError!Air.Inst.Ref {13632fn zirBitOffsetOf(sema: *Sema, block: *Block, inst: Zir.Inst.Index) CompileError!Air.Inst.Ref {
test/behavior/bitreverse.zig+76
...@@ -87,3 +87,79 @@ fn testBitReverse() !void {...@@ -87,3 +87,79 @@ fn testBitReverse() !void {
87 var neg32: i32 = -16773785;87 var neg32: i32 = -16773785;
88 try expect(@bitReverse(i32, @as(i32, -16773785)) == @bitReverse(i32, neg32));88 try expect(@bitReverse(i32, @as(i32, -16773785)) == @bitReverse(i32, neg32));
89}89}
90
91fn vector8() !void {
92 var v = @Vector(2, u8){ 0x12, 0x23 };
93 var result = @bitReverse(u8, v);
94 try expect(result[0] == 0x48);
95 try expect(result[1] == 0xc4);
96}
97
98test "bitReverse vectors u8" {
99 if (builtin.zig_backend == .stage1) return error.SkipZigTest;
100 if (builtin.zig_backend == .stage2_wasm) return error.SkipZigTest;
101 if (builtin.zig_backend == .stage2_c) return error.SkipZigTest;
102 if (builtin.zig_backend == .stage2_x86_64) return error.SkipZigTest;
103 if (builtin.zig_backend == .stage2_arm) return error.SkipZigTest;
104 if (builtin.zig_backend == .stage2_aarch64) return error.SkipZigTest;
105
106 comptime try vector8();
107 try vector8();
108}
109
110fn vector16() !void {
111 var v = @Vector(2, u16){ 0x1234, 0x2345 };
112 var result = @bitReverse(u16, v);
113 try expect(result[0] == 0x2c48);
114 try expect(result[1] == 0xa2c4);
115}
116
117test "bitReverse vectors u16" {
118 if (builtin.zig_backend == .stage1) return error.SkipZigTest;
119 if (builtin.zig_backend == .stage2_wasm) return error.SkipZigTest;
120 if (builtin.zig_backend == .stage2_c) return error.SkipZigTest;
121 if (builtin.zig_backend == .stage2_x86_64) return error.SkipZigTest;
122 if (builtin.zig_backend == .stage2_arm) return error.SkipZigTest;
123 if (builtin.zig_backend == .stage2_aarch64) return error.SkipZigTest;
124
125 comptime try vector16();
126 try vector16();
127}
128
129fn vector24() !void {
130 var v = @Vector(2, u24){ 0x123456, 0x234567 };
131 var result = @bitReverse(u24, v);
132 try expect(result[0] == 0x6a2c48);
133 try expect(result[1] == 0xe6a2c4);
134}
135
136test "bitReverse vectors u24" {
137 if (builtin.zig_backend == .stage1) return error.SkipZigTest;
138 if (builtin.zig_backend == .stage2_wasm) return error.SkipZigTest;
139 if (builtin.zig_backend == .stage2_c) return error.SkipZigTest;
140 if (builtin.zig_backend == .stage2_x86_64) return error.SkipZigTest;
141 if (builtin.zig_backend == .stage2_arm) return error.SkipZigTest;
142 if (builtin.zig_backend == .stage2_aarch64) return error.SkipZigTest;
143
144 comptime try vector24();
145 try vector24();
146}
147
148fn vector0() !void {
149 var v = @Vector(2, u0){ 0, 0 };
150 var result = @bitReverse(u0, v);
151 try expect(result[0] == 0);
152 try expect(result[1] == 0);
153}
154
155test "bitReverse vectors u0" {
156 if (builtin.zig_backend == .stage1) return error.SkipZigTest;
157 if (builtin.zig_backend == .stage2_wasm) return error.SkipZigTest;
158 if (builtin.zig_backend == .stage2_c) return error.SkipZigTest;
159 if (builtin.zig_backend == .stage2_x86_64) return error.SkipZigTest;
160 if (builtin.zig_backend == .stage2_arm) return error.SkipZigTest;
161 if (builtin.zig_backend == .stage2_aarch64) return error.SkipZigTest;
162
163 comptime try vector0();
164 try vector0();
165}