| ... | ... | @@ -3922,7 +3922,7 @@ fn resolveComptimeKnownAllocPtr(sema: *Sema, block: *Block, alloc: Air.Inst.Ref, |
| 3922 | 3922 | const store_inst = sema.air_instructions.get(@intFromEnum(store_inst_idx)); |
| 3923 | 3923 | const ptr_to_map = switch (store_inst.tag) { |
| 3924 | 3924 | .store, .store_safe => store_inst.data.bin_op.lhs.toIndex().?, // Map the pointer being stored to. |
| 3925 | | .set_union_tag => continue, // We can completely ignore these: we'll do it implicitly when we get the field pointer. |
| 3925 | .set_union_tag => continue, // Ignore for now; handled after we map pointers |
| 3926 | 3926 | .optional_payload_ptr_set, .errunion_payload_ptr_set => store_inst_idx, // Map the generated pointer itself. |
| 3927 | 3927 | else => unreachable, |
| 3928 | 3928 | }; |
| ... | ... | @@ -4055,19 +4055,33 @@ fn resolveComptimeKnownAllocPtr(sema: *Sema, block: *Block, alloc: Air.Inst.Ref, |
| 4055 | 4055 | } |
| 4056 | 4056 | |
| 4057 | 4057 | // We have a correlation between AIR pointers and decl pointers. Perform all stores at comptime. |
| 4058 | | // Any implicit stores performed by `optional_payload_ptr_set`, `errunion_payload_ptr_set`, or |
| 4059 | | // `set_union_tag` instructions were already done above. |
| 4058 | // Any implicit stores performed by `optional_payload_ptr_set` or `errunion_payload_ptr_set` |
| 4059 | // instructions were already done above. |
| 4060 | 4060 | |
| 4061 | 4061 | for (stores) |store_inst_idx| { |
| 4062 | 4062 | const store_inst = sema.air_instructions.get(@intFromEnum(store_inst_idx)); |
| 4063 | 4063 | switch (store_inst.tag) { |
| 4064 | | .set_union_tag => {}, // Handled implicitly by field pointers above |
| 4065 | 4064 | .optional_payload_ptr_set, .errunion_payload_ptr_set => {}, // Handled explicitly above |
| 4065 | .set_union_tag => { |
| 4066 | // Usually, we can ignore these, because the creation of the field pointer above |
| 4067 | // already did it for us. However, if the field is OPV, this is relevant, because |
| 4068 | // there is not going to be a store to the field. So we must initialize the union |
| 4069 | // tag if the field is OPV. |
| 4070 | const union_ptr_inst = store_inst.data.bin_op.lhs.toIndex().?; |
| 4071 | const union_ptr_val: Value = .fromInterned(ptr_mapping.get(union_ptr_inst).?); |
| 4072 | const tag_val: Value = .fromInterned(store_inst.data.bin_op.rhs.toInterned().?); |
| 4073 | const union_ty = union_ptr_val.typeOf(zcu).childType(zcu); |
| 4074 | const field_ty = union_ty.unionFieldType(tag_val, zcu).?; |
| 4075 | if (try sema.typeHasOnePossibleValue(field_ty)) |payload_val| { |
| 4076 | const new_union_val = try pt.unionValue(union_ty, tag_val, payload_val); |
| 4077 | try sema.storePtrVal(block, .unneeded, union_ptr_val, new_union_val, union_ty); |
| 4078 | } |
| 4079 | }, |
| 4066 | 4080 | .store, .store_safe => { |
| 4067 | 4081 | const air_ptr_inst = store_inst.data.bin_op.lhs.toIndex().?; |
| 4068 | 4082 | const store_val = (try sema.resolveValue(store_inst.data.bin_op.rhs)).?; |
| 4069 | 4083 | const new_ptr = ptr_mapping.get(air_ptr_inst).?; |
| 4070 | | try sema.storePtrVal(block, LazySrcLoc.unneeded, Value.fromInterned(new_ptr), store_val, .fromInterned(zcu.intern_pool.typeOf(store_val.toIntern()))); |
| 4084 | try sema.storePtrVal(block, .unneeded, .fromInterned(new_ptr), store_val, store_val.typeOf(zcu)); |
| 4071 | 4085 | }, |
| 4072 | 4086 | else => unreachable, |
| 4073 | 4087 | } |
| ... | ... | @@ -4099,14 +4113,13 @@ fn finishResolveComptimeKnownAllocPtr( |
| 4099 | 4113 | // We're almost done - we have the resolved comptime value. We just need to |
| 4100 | 4114 | // eliminate the now-dead runtime instructions. |
| 4101 | 4115 | |
| 4102 | | // We will rewrite the AIR to eliminate the alloc and all stores to it. |
| 4103 | | // This will cause instructions deriving field pointers etc of the alloc to |
| 4104 | | // become invalid, however, since we are removing all stores to those pointers, |
| 4105 | | // they will be eliminated by Liveness before they reach codegen. |
| 4106 | | |
| 4107 | | // The specifics of this instruction aren't really important: we just want |
| 4108 | | // Liveness to elide it. |
| 4109 | | const nop_inst: Air.Inst = .{ .tag = .bitcast, .data = .{ .ty_op = .{ .ty = .u8_type, .operand = .zero_u8 } } }; |
| 4116 | // This instruction has type `alloc_ty`, meaning we can rewrite the `alloc` AIR instruction to |
| 4117 | // this one to drop the side effect. We also need to rewrite the stores; we'll turn them to this |
| 4118 | // too because it doesn't really matter what they become. |
| 4119 | const nop_inst: Air.Inst = .{ .tag = .bitcast, .data = .{ .ty_op = .{ |
| 4120 | .ty = .fromIntern(alloc_ty.toIntern()), |
| 4121 | .operand = .zero_usize, |
| 4122 | } } }; |
| 4110 | 4123 | |
| 4111 | 4124 | sema.air_instructions.set(@intFromEnum(alloc_inst), nop_inst); |
| 4112 | 4125 | for (comptime_info.stores.items(.inst)) |store_inst| { |
| ... | ... | @@ -4829,13 +4842,13 @@ fn zirValidatePtrStructInit( |
| 4829 | 4842 | agg_ty, |
| 4830 | 4843 | init_src, |
| 4831 | 4844 | instrs, |
| 4845 | object_ptr, |
| 4832 | 4846 | ), |
| 4833 | 4847 | .@"union" => return sema.validateUnionInit( |
| 4834 | 4848 | block, |
| 4835 | 4849 | agg_ty, |
| 4836 | 4850 | init_src, |
| 4837 | 4851 | instrs, |
| 4838 | | object_ptr, |
| 4839 | 4852 | ), |
| 4840 | 4853 | else => unreachable, |
| 4841 | 4854 | } |
| ... | ... | @@ -4847,164 +4860,28 @@ fn validateUnionInit( |
| 4847 | 4860 | union_ty: Type, |
| 4848 | 4861 | init_src: LazySrcLoc, |
| 4849 | 4862 | instrs: []const Zir.Inst.Index, |
| 4850 | | union_ptr: Air.Inst.Ref, |
| 4851 | 4863 | ) CompileError!void { |
| 4852 | | const pt = sema.pt; |
| 4853 | | const zcu = pt.zcu; |
| 4854 | | const gpa = sema.gpa; |
| 4855 | | |
| 4856 | | if (instrs.len != 1) { |
| 4857 | | const msg = msg: { |
| 4858 | | const msg = try sema.errMsg( |
| 4859 | | init_src, |
| 4860 | | "cannot initialize multiple union fields at once; unions can only have one active field", |
| 4861 | | .{}, |
| 4862 | | ); |
| 4863 | | errdefer msg.destroy(gpa); |
| 4864 | | |
| 4865 | | for (instrs[1..]) |inst| { |
| 4866 | | const inst_data = sema.code.instructions.items(.data)[@intFromEnum(inst)].pl_node; |
| 4867 | | const inst_src = block.src(.{ .node_offset_initializer = inst_data.src_node }); |
| 4868 | | try sema.errNote(inst_src, msg, "additional initializer here", .{}); |
| 4869 | | } |
| 4870 | | try sema.addDeclaredHereNote(msg, union_ty); |
| 4871 | | break :msg msg; |
| 4872 | | }; |
| 4873 | | return sema.failWithOwnedErrorMsg(block, msg); |
| 4874 | | } |
| 4875 | | |
| 4876 | | if (block.isComptime() and |
| 4877 | | (try sema.resolveDefinedValue(block, init_src, union_ptr)) != null) |
| 4878 | | { |
| 4879 | | // In this case, comptime machinery already did everything. No work to do here. |
| 4864 | if (instrs.len == 1) { |
| 4865 | // Trvial validation done, and the union tag was already set by machinery in `unionFieldPtr`. |
| 4880 | 4866 | return; |
| 4881 | 4867 | } |
| 4868 | const msg = msg: { |
| 4869 | const msg = try sema.errMsg( |
| 4870 | init_src, |
| 4871 | "cannot initialize multiple union fields at once; unions can only have one active field", |
| 4872 | .{}, |
| 4873 | ); |
| 4874 | errdefer msg.destroy(sema.gpa); |
| 4882 | 4875 | |
| 4883 | | const field_ptr = instrs[0]; |
| 4884 | | const field_ptr_data = sema.code.instructions.items(.data)[@intFromEnum(field_ptr)].pl_node; |
| 4885 | | const field_src = block.src(.{ .node_offset_initializer = field_ptr_data.src_node }); |
| 4886 | | const field_ptr_extra = sema.code.extraData(Zir.Inst.Field, field_ptr_data.payload_index).data; |
| 4887 | | const field_name = try zcu.intern_pool.getOrPutString( |
| 4888 | | gpa, |
| 4889 | | pt.tid, |
| 4890 | | sema.code.nullTerminatedString(field_ptr_extra.field_name_start), |
| 4891 | | .no_embedded_nulls, |
| 4892 | | ); |
| 4893 | | const field_index = try sema.unionFieldIndex(block, union_ty, field_name, field_src); |
| 4894 | | const air_tags = sema.air_instructions.items(.tag); |
| 4895 | | const air_datas = sema.air_instructions.items(.data); |
| 4896 | | const field_ptr_ref = sema.inst_map.get(field_ptr).?; |
| 4897 | | |
| 4898 | | // Our task here is to determine if the union is comptime-known. In such case, |
| 4899 | | // we erase the runtime AIR instructions for initializing the union, and replace |
| 4900 | | // the mapping with the comptime value. Either way, we will need to populate the tag. |
| 4901 | | |
| 4902 | | // We expect to see something like this in the current block AIR: |
| 4903 | | // %a = alloc(*const U) |
| 4904 | | // %b = bitcast(*U, %a) |
| 4905 | | // %c = field_ptr(..., %b) |
| 4906 | | // %e!= store(%c!, %d!) |
| 4907 | | // If %d is a comptime operand, the union is comptime. |
| 4908 | | // If the union is comptime, we want `first_block_index` |
| 4909 | | // to point at %c so that the bitcast becomes the last instruction in the block. |
| 4910 | | // |
| 4911 | | // Store instruction may be missing; if field type has only one possible value, this case is handled below. |
| 4912 | | // |
| 4913 | | // In the case of a comptime-known pointer to a union, the |
| 4914 | | // the field_ptr instruction is missing, so we have to pattern-match |
| 4915 | | // based only on the store instructions. |
| 4916 | | // `first_block_index` needs to point to the `field_ptr` if it exists; |
| 4917 | | // the `store` otherwise. |
| 4918 | | var first_block_index = block.instructions.items.len; |
| 4919 | | var block_index = block.instructions.items.len - 1; |
| 4920 | | var init_val: ?Value = null; |
| 4921 | | var init_ref: ?Air.Inst.Ref = null; |
| 4922 | | while (block_index > 0) : (block_index -= 1) { |
| 4923 | | const store_inst = block.instructions.items[block_index]; |
| 4924 | | if (store_inst.toRef() == field_ptr_ref) { |
| 4925 | | first_block_index = block_index; |
| 4926 | | break; |
| 4876 | for (instrs[1..]) |inst| { |
| 4877 | const inst_data = sema.code.instructions.items(.data)[@intFromEnum(inst)].pl_node; |
| 4878 | const inst_src = block.src(.{ .node_offset_initializer = inst_data.src_node }); |
| 4879 | try sema.errNote(inst_src, msg, "additional initializer here", .{}); |
| 4927 | 4880 | } |
| 4928 | | switch (air_tags[@intFromEnum(store_inst)]) { |
| 4929 | | .store, .store_safe => {}, |
| 4930 | | else => continue, |
| 4931 | | } |
| 4932 | | const bin_op = air_datas[@intFromEnum(store_inst)].bin_op; |
| 4933 | | var ptr_ref = bin_op.lhs; |
| 4934 | | if (ptr_ref.toIndex()) |ptr_inst| if (air_tags[@intFromEnum(ptr_inst)] == .bitcast) { |
| 4935 | | ptr_ref = air_datas[@intFromEnum(ptr_inst)].ty_op.operand; |
| 4936 | | }; |
| 4937 | | if (ptr_ref != field_ptr_ref) continue; |
| 4938 | | first_block_index = @min(if (field_ptr_ref.toIndex()) |field_ptr_inst| |
| 4939 | | std.mem.lastIndexOfScalar( |
| 4940 | | Air.Inst.Index, |
| 4941 | | block.instructions.items[0..block_index], |
| 4942 | | field_ptr_inst, |
| 4943 | | ).? |
| 4944 | | else |
| 4945 | | block_index, first_block_index); |
| 4946 | | init_ref = bin_op.rhs; |
| 4947 | | init_val = try sema.resolveValue(bin_op.rhs); |
| 4948 | | break; |
| 4949 | | } |
| 4950 | | |
| 4951 | | const tag_ty = union_ty.unionTagTypeHypothetical(zcu); |
| 4952 | | const tag_val = try pt.enumValueFieldIndex(tag_ty, field_index); |
| 4953 | | const field_type = union_ty.unionFieldType(tag_val, zcu).?; |
| 4954 | | |
| 4955 | | if (try sema.typeHasOnePossibleValue(field_type)) |field_only_value| { |
| 4956 | | init_val = field_only_value; |
| 4957 | | } |
| 4958 | | |
| 4959 | | if (init_val) |val| { |
| 4960 | | // Our task is to delete all the `field_ptr` and `store` instructions, and insert |
| 4961 | | // instead a single `store` to the result ptr with a comptime union value. |
| 4962 | | block_index = first_block_index; |
| 4963 | | for (block.instructions.items[first_block_index..]) |cur_inst| { |
| 4964 | | switch (air_tags[@intFromEnum(cur_inst)]) { |
| 4965 | | .struct_field_ptr, |
| 4966 | | .struct_field_ptr_index_0, |
| 4967 | | .struct_field_ptr_index_1, |
| 4968 | | .struct_field_ptr_index_2, |
| 4969 | | .struct_field_ptr_index_3, |
| 4970 | | => if (cur_inst.toRef() == field_ptr_ref) continue, |
| 4971 | | .bitcast => if (air_datas[@intFromEnum(cur_inst)].ty_op.operand == field_ptr_ref) continue, |
| 4972 | | .store, .store_safe => { |
| 4973 | | var ptr_ref = air_datas[@intFromEnum(cur_inst)].bin_op.lhs; |
| 4974 | | if (ptr_ref.toIndex()) |ptr_inst| if (air_tags[@intFromEnum(ptr_inst)] == .bitcast) { |
| 4975 | | ptr_ref = air_datas[@intFromEnum(ptr_inst)].ty_op.operand; |
| 4976 | | }; |
| 4977 | | if (ptr_ref == field_ptr_ref) continue; |
| 4978 | | }, |
| 4979 | | else => {}, |
| 4980 | | } |
| 4981 | | block.instructions.items[block_index] = cur_inst; |
| 4982 | | block_index += 1; |
| 4983 | | } |
| 4984 | | block.instructions.shrinkRetainingCapacity(block_index); |
| 4985 | | |
| 4986 | | const union_val = try pt.internUnion(.{ |
| 4987 | | .ty = union_ty.toIntern(), |
| 4988 | | .tag = tag_val.toIntern(), |
| 4989 | | .val = val.toIntern(), |
| 4990 | | }); |
| 4991 | | const union_init = Air.internedToRef(union_val); |
| 4992 | | try sema.storePtr2(block, init_src, union_ptr, init_src, union_init, init_src, .store); |
| 4993 | | return; |
| 4994 | | } else if (try union_ty.comptimeOnlySema(pt)) { |
| 4995 | | const src = block.nodeOffset(field_ptr_data.src_node); |
| 4996 | | return sema.failWithNeededComptime(block, src, .{ .comptime_only = .{ |
| 4997 | | .ty = union_ty, |
| 4998 | | .msg = .union_init, |
| 4999 | | } }); |
| 5000 | | } |
| 5001 | | if (init_ref) |v| try sema.validateRuntimeValue(block, block.nodeOffset(field_ptr_data.src_node), v); |
| 5002 | | |
| 5003 | | if ((try sema.typeHasOnePossibleValue(tag_ty)) == null) { |
| 5004 | | const new_tag = Air.internedToRef(tag_val.toIntern()); |
| 5005 | | const set_tag_inst = try block.addBinOp(.set_union_tag, union_ptr, new_tag); |
| 5006 | | try sema.checkComptimeKnownStore(block, set_tag_inst, LazySrcLoc.unneeded); // `unneeded` since this isn't a "proper" store |
| 5007 | | } |
| 4881 | try sema.addDeclaredHereNote(msg, union_ty); |
| 4882 | break :msg msg; |
| 4883 | }; |
| 4884 | return sema.failWithOwnedErrorMsg(block, msg); |
| 5008 | 4885 | } |
| 5009 | 4886 | |
| 5010 | 4887 | fn validateStructInit( |
| ... | ... | @@ -5013,187 +4890,62 @@ fn validateStructInit( |
| 5013 | 4890 | struct_ty: Type, |
| 5014 | 4891 | init_src: LazySrcLoc, |
| 5015 | 4892 | instrs: []const Zir.Inst.Index, |
| 4893 | struct_ptr: Air.Inst.Ref, |
| 5016 | 4894 | ) CompileError!void { |
| 5017 | 4895 | const pt = sema.pt; |
| 5018 | 4896 | const zcu = pt.zcu; |
| 5019 | 4897 | const gpa = sema.gpa; |
| 5020 | 4898 | const ip = &zcu.intern_pool; |
| 5021 | 4899 | |
| 5022 | | const field_indices = try gpa.alloc(u32, instrs.len); |
| 5023 | | defer gpa.free(field_indices); |
| 5024 | | |
| 5025 | | // Maps field index to field_ptr index of where it was already initialized. |
| 5026 | | const found_fields = try gpa.alloc(Zir.Inst.OptionalIndex, struct_ty.structFieldCount(zcu)); |
| 4900 | // Tracks whether each field was explicitly initialized. |
| 4901 | const found_fields = try gpa.alloc(bool, struct_ty.structFieldCount(zcu)); |
| 5027 | 4902 | defer gpa.free(found_fields); |
| 5028 | | @memset(found_fields, .none); |
| 4903 | @memset(found_fields, false); |
| 5029 | 4904 | |
| 5030 | | var struct_ptr_zir_ref: Zir.Inst.Ref = undefined; |
| 5031 | | |
| 5032 | | for (instrs, field_indices) |field_ptr, *field_index| { |
| 4905 | for (instrs) |field_ptr| { |
| 5033 | 4906 | const field_ptr_data = sema.code.instructions.items(.data)[@intFromEnum(field_ptr)].pl_node; |
| 5034 | 4907 | const field_src = block.src(.{ .node_offset_initializer = field_ptr_data.src_node }); |
| 5035 | 4908 | const field_ptr_extra = sema.code.extraData(Zir.Inst.Field, field_ptr_data.payload_index).data; |
| 5036 | | struct_ptr_zir_ref = field_ptr_extra.lhs; |
| 5037 | 4909 | const field_name = try ip.getOrPutString( |
| 5038 | 4910 | gpa, |
| 5039 | 4911 | pt.tid, |
| 5040 | 4912 | sema.code.nullTerminatedString(field_ptr_extra.field_name_start), |
| 5041 | 4913 | .no_embedded_nulls, |
| 5042 | 4914 | ); |
| 5043 | | field_index.* = if (struct_ty.isTuple(zcu)) |
| 4915 | const field_index = if (struct_ty.isTuple(zcu)) |
| 5044 | 4916 | try sema.tupleFieldIndex(block, struct_ty, field_name, field_src) |
| 5045 | 4917 | else |
| 5046 | 4918 | try sema.structFieldIndex(block, struct_ty, field_name, field_src); |
| 5047 | | assert(found_fields[field_index.*] == .none); |
| 5048 | | found_fields[field_index.*] = field_ptr.toOptional(); |
| 4919 | assert(found_fields[field_index] == false); |
| 4920 | found_fields[field_index] = true; |
| 5049 | 4921 | } |
| 5050 | 4922 | |
| 5051 | | var root_msg: ?*Zcu.ErrorMsg = null; |
| 5052 | | errdefer if (root_msg) |msg| msg.destroy(sema.gpa); |
| 4923 | // Our job is simply to deal with default field values. Specifically, any field which was not |
| 4924 | // explicitly initialized must have its default value stored to the field pointer, or, if the |
| 4925 | // field has no default value, a compile error must be emitted instead. |
| 5053 | 4926 | |
| 5054 | | const struct_ptr = try sema.resolveInst(struct_ptr_zir_ref); |
| 5055 | | if (block.isComptime() and |
| 5056 | | (try sema.resolveDefinedValue(block, init_src, struct_ptr)) != null) |
| 5057 | | { |
| 5058 | | try struct_ty.resolveLayout(pt); |
| 5059 | | // In this case the only thing we need to do is evaluate the implicit |
| 5060 | | // store instructions for default field values, and report any missing fields. |
| 5061 | | // Avoid the cost of the extra machinery for detecting a comptime struct init value. |
| 5062 | | for (found_fields, 0..) |field_ptr, i_usize| { |
| 5063 | | const i: u32 = @intCast(i_usize); |
| 5064 | | if (field_ptr != .none) continue; |
| 5065 | | |
| 5066 | | try struct_ty.resolveStructFieldInits(pt); |
| 5067 | | const default_val = struct_ty.structFieldDefaultValue(i, zcu); |
| 5068 | | if (default_val.toIntern() == .unreachable_value) { |
| 5069 | | const field_name = struct_ty.structFieldName(i, zcu).unwrap() orelse { |
| 5070 | | const template = "missing tuple field with index {d}"; |
| 5071 | | if (root_msg) |msg| { |
| 5072 | | try sema.errNote(init_src, msg, template, .{i}); |
| 5073 | | } else { |
| 5074 | | root_msg = try sema.errMsg(init_src, template, .{i}); |
| 5075 | | } |
| 5076 | | continue; |
| 5077 | | }; |
| 5078 | | const template = "missing struct field: {f}"; |
| 5079 | | const args = .{field_name.fmt(ip)}; |
| 5080 | | if (root_msg) |msg| { |
| 5081 | | try sema.errNote(init_src, msg, template, args); |
| 5082 | | } else { |
| 5083 | | root_msg = try sema.errMsg(init_src, template, args); |
| 5084 | | } |
| 5085 | | continue; |
| 5086 | | } |
| 5087 | | |
| 5088 | | const field_src = init_src; // TODO better source location |
| 5089 | | const default_field_ptr = if (struct_ty.isTuple(zcu)) |
| 5090 | | try sema.tupleFieldPtr(block, init_src, struct_ptr, field_src, @intCast(i), true) |
| 5091 | | else |
| 5092 | | try sema.structFieldPtrByIndex(block, init_src, struct_ptr, @intCast(i), struct_ty); |
| 5093 | | const init = Air.internedToRef(default_val.toIntern()); |
| 5094 | | try sema.storePtr2(block, init_src, default_field_ptr, init_src, init, field_src, .store); |
| 5095 | | } |
| 5096 | | |
| 5097 | | if (root_msg) |msg| { |
| 5098 | | try sema.addDeclaredHereNote(msg, struct_ty); |
| 5099 | | root_msg = null; |
| 5100 | | return sema.failWithOwnedErrorMsg(block, msg); |
| 5101 | | } |
| 5102 | | |
| 5103 | | return; |
| 5104 | | } |
| 5105 | | |
| 5106 | | var fields_allow_runtime = true; |
| 5107 | | |
| 5108 | | var struct_is_comptime = true; |
| 5109 | | var first_block_index = block.instructions.items.len; |
| 5110 | | |
| 5111 | | const require_comptime = try struct_ty.comptimeOnlySema(pt); |
| 5112 | | const air_tags = sema.air_instructions.items(.tag); |
| 5113 | | const air_datas = sema.air_instructions.items(.data); |
| 5114 | | |
| 5115 | | try struct_ty.resolveStructFieldInits(pt); |
| 4927 | // In the past, this code had other responsibilities, which involved some nasty AIR rewrites. However, |
| 4928 | // that work was actually all redundant: |
| 4929 | // |
| 4930 | // * If the struct value is comptime-known, field stores remain a perfectly valid way of initializing |
| 4931 | // the struct through RLS; there is no need to turn the field stores into one store. Comptime-known |
| 4932 | // consts are handled correctly either way thanks to `maybe_comptime_allocs` and friends. |
| 4933 | // |
| 4934 | // * If the struct type is comptime-only, we need to make sure all of the fields were comptime-known. |
| 4935 | // But the comptime-only type means that `struct_ptr` must be a comptime-mutable pointer, so the |
| 4936 | // field stores were to comptime-mutable pointers, so have already errored if not comptime-known. |
| 4937 | // |
| 4938 | // * If the value is runtime-known, then comptime-known fields must be validated as runtime values. |
| 4939 | // But this was already handled for every field store by the machinery in `checkComptimeKnownStore`. |
| 5116 | 4940 | |
| 5117 | | // We collect the comptime field values in case the struct initialization |
| 5118 | | // ends up being comptime-known. |
| 5119 | | const field_values = try sema.arena.alloc(InternPool.Index, struct_ty.structFieldCount(zcu)); |
| 4941 | var root_msg: ?*Zcu.ErrorMsg = null; |
| 4942 | errdefer if (root_msg) |msg| msg.destroy(sema.gpa); |
| 5120 | 4943 | |
| 5121 | | field: for (found_fields, 0..) |opt_field_ptr, i_usize| { |
| 4944 | for (found_fields, 0..) |explicit, i_usize| { |
| 4945 | if (explicit) continue; |
| 5122 | 4946 | const i: u32 = @intCast(i_usize); |
| 5123 | | if (opt_field_ptr.unwrap()) |field_ptr| { |
| 5124 | | // Determine whether the value stored to this pointer is comptime-known. |
| 5125 | | const field_ty = struct_ty.fieldType(i, zcu); |
| 5126 | | if (try sema.typeHasOnePossibleValue(field_ty)) |opv| { |
| 5127 | | field_values[i] = opv.toIntern(); |
| 5128 | | continue; |
| 5129 | | } |
| 5130 | | |
| 5131 | | const field_ptr_ref = sema.inst_map.get(field_ptr).?; |
| 5132 | | |
| 5133 | | //std.debug.print("validateStructInit (field_ptr_ref=%{d}):\n", .{field_ptr_ref}); |
| 5134 | | //for (block.instructions.items) |item| { |
| 5135 | | // std.debug.print(" %{d} = {s}\n", .{item, @tagName(air_tags[@intFromEnum(item)])}); |
| 5136 | | //} |
| 5137 | | |
| 5138 | | // We expect to see something like this in the current block AIR: |
| 5139 | | // %a = field_ptr(...) |
| 5140 | | // store(%a, %b) |
| 5141 | | // With an optional bitcast between the store and the field_ptr. |
| 5142 | | // If %b is a comptime operand, this field is comptime. |
| 5143 | | // |
| 5144 | | // However, in the case of a comptime-known pointer to a struct, the |
| 5145 | | // the field_ptr instruction is missing, so we have to pattern-match |
| 5146 | | // based only on the store instructions. |
| 5147 | | // `first_block_index` needs to point to the `field_ptr` if it exists; |
| 5148 | | // the `store` otherwise. |
| 5149 | | |
| 5150 | | // Possible performance enhancement: save the `block_index` between iterations |
| 5151 | | // of the for loop. |
| 5152 | | var block_index = block.instructions.items.len; |
| 5153 | | while (block_index > 0) { |
| 5154 | | block_index -= 1; |
| 5155 | | const store_inst = block.instructions.items[block_index]; |
| 5156 | | if (store_inst.toRef() == field_ptr_ref) { |
| 5157 | | struct_is_comptime = false; |
| 5158 | | continue :field; |
| 5159 | | } |
| 5160 | | switch (air_tags[@intFromEnum(store_inst)]) { |
| 5161 | | .store, .store_safe => {}, |
| 5162 | | else => continue, |
| 5163 | | } |
| 5164 | | const bin_op = air_datas[@intFromEnum(store_inst)].bin_op; |
| 5165 | | var ptr_ref = bin_op.lhs; |
| 5166 | | if (ptr_ref.toIndex()) |ptr_inst| if (air_tags[@intFromEnum(ptr_inst)] == .bitcast) { |
| 5167 | | ptr_ref = air_datas[@intFromEnum(ptr_inst)].ty_op.operand; |
| 5168 | | }; |
| 5169 | | if (ptr_ref != field_ptr_ref) continue; |
| 5170 | | first_block_index = @min(if (field_ptr_ref.toIndex()) |field_ptr_inst| |
| 5171 | | std.mem.lastIndexOfScalar( |
| 5172 | | Air.Inst.Index, |
| 5173 | | block.instructions.items[0..block_index], |
| 5174 | | field_ptr_inst, |
| 5175 | | ).? |
| 5176 | | else |
| 5177 | | block_index, first_block_index); |
| 5178 | | if (!sema.checkRuntimeValue(bin_op.rhs)) fields_allow_runtime = false; |
| 5179 | | if (try sema.resolveValue(bin_op.rhs)) |val| { |
| 5180 | | field_values[i] = val.toIntern(); |
| 5181 | | } else if (require_comptime) { |
| 5182 | | const field_ptr_data = sema.code.instructions.items(.data)[@intFromEnum(field_ptr)].pl_node; |
| 5183 | | const src = block.nodeOffset(field_ptr_data.src_node); |
| 5184 | | return sema.failWithNeededComptime(block, src, .{ .comptime_only = .{ |
| 5185 | | .ty = struct_ty, |
| 5186 | | .msg = .struct_init, |
| 5187 | | } }); |
| 5188 | | } else { |
| 5189 | | struct_is_comptime = false; |
| 5190 | | } |
| 5191 | | continue :field; |
| 5192 | | } |
| 5193 | | struct_is_comptime = false; |
| 5194 | | continue :field; |
| 5195 | | } |
| 5196 | 4947 | |
| 4948 | try struct_ty.resolveStructFieldInits(pt); |
| 5197 | 4949 | const default_val = struct_ty.structFieldDefaultValue(i, zcu); |
| 5198 | 4950 | if (default_val.toIntern() == .unreachable_value) { |
| 5199 | 4951 | const field_name = struct_ty.structFieldName(i, zcu).unwrap() orelse { |
| ... | ... | @@ -5214,70 +4966,6 @@ fn validateStructInit( |
| 5214 | 4966 | } |
| 5215 | 4967 | continue; |
| 5216 | 4968 | } |
| 5217 | | field_values[i] = default_val.toIntern(); |
| 5218 | | } |
| 5219 | | |
| 5220 | | if (!struct_is_comptime and !fields_allow_runtime and root_msg == null) { |
| 5221 | | root_msg = try sema.errMsg(init_src, "runtime value contains reference to comptime var", .{}); |
| 5222 | | try sema.errNote(init_src, root_msg.?, "comptime var pointers are not available at runtime", .{}); |
| 5223 | | } |
| 5224 | | |
| 5225 | | if (root_msg) |msg| { |
| 5226 | | try sema.addDeclaredHereNote(msg, struct_ty); |
| 5227 | | root_msg = null; |
| 5228 | | return sema.failWithOwnedErrorMsg(block, msg); |
| 5229 | | } |
| 5230 | | |
| 5231 | | if (struct_is_comptime) { |
| 5232 | | // Our task is to delete all the `field_ptr` and `store` instructions, and insert |
| 5233 | | // instead a single `store` to the struct_ptr with a comptime struct value. |
| 5234 | | var init_index: usize = 0; |
| 5235 | | var field_ptr_ref = Air.Inst.Ref.none; |
| 5236 | | var block_index = first_block_index; |
| 5237 | | for (block.instructions.items[first_block_index..]) |cur_inst| { |
| 5238 | | while (field_ptr_ref == .none and init_index < instrs.len) : (init_index += 1) { |
| 5239 | | const field_ty = struct_ty.fieldType(field_indices[init_index], zcu); |
| 5240 | | if (try field_ty.onePossibleValue(pt)) |_| continue; |
| 5241 | | field_ptr_ref = sema.inst_map.get(instrs[init_index]).?; |
| 5242 | | } |
| 5243 | | switch (air_tags[@intFromEnum(cur_inst)]) { |
| 5244 | | .struct_field_ptr, |
| 5245 | | .struct_field_ptr_index_0, |
| 5246 | | .struct_field_ptr_index_1, |
| 5247 | | .struct_field_ptr_index_2, |
| 5248 | | .struct_field_ptr_index_3, |
| 5249 | | => if (cur_inst.toRef() == field_ptr_ref) continue, |
| 5250 | | .bitcast => if (air_datas[@intFromEnum(cur_inst)].ty_op.operand == field_ptr_ref) continue, |
| 5251 | | .store, .store_safe => { |
| 5252 | | var ptr_ref = air_datas[@intFromEnum(cur_inst)].bin_op.lhs; |
| 5253 | | if (ptr_ref.toIndex()) |ptr_inst| if (air_tags[@intFromEnum(ptr_inst)] == .bitcast) { |
| 5254 | | ptr_ref = air_datas[@intFromEnum(ptr_inst)].ty_op.operand; |
| 5255 | | }; |
| 5256 | | if (ptr_ref == field_ptr_ref) { |
| 5257 | | field_ptr_ref = .none; |
| 5258 | | continue; |
| 5259 | | } |
| 5260 | | }, |
| 5261 | | else => {}, |
| 5262 | | } |
| 5263 | | block.instructions.items[block_index] = cur_inst; |
| 5264 | | block_index += 1; |
| 5265 | | } |
| 5266 | | block.instructions.shrinkRetainingCapacity(block_index); |
| 5267 | | |
| 5268 | | const struct_val = try pt.intern(.{ .aggregate = .{ |
| 5269 | | .ty = struct_ty.toIntern(), |
| 5270 | | .storage = .{ .elems = field_values }, |
| 5271 | | } }); |
| 5272 | | const struct_init = Air.internedToRef(struct_val); |
| 5273 | | try sema.storePtr2(block, init_src, struct_ptr, init_src, struct_init, init_src, .store); |
| 5274 | | return; |
| 5275 | | } |
| 5276 | | try struct_ty.resolveLayout(pt); |
| 5277 | | |
| 5278 | | // Our task is to insert `store` instructions for all the default field values. |
| 5279 | | for (found_fields, 0..) |field_ptr, i| { |
| 5280 | | if (field_ptr != .none) continue; |
| 5281 | 4969 | |
| 5282 | 4970 | const field_src = init_src; // TODO better source location |
| 5283 | 4971 | const default_field_ptr = if (struct_ty.isTuple(zcu)) |
| ... | ... | @@ -5285,8 +4973,13 @@ fn validateStructInit( |
| 5285 | 4973 | else |
| 5286 | 4974 | try sema.structFieldPtrByIndex(block, init_src, struct_ptr, @intCast(i), struct_ty); |
| 5287 | 4975 | try sema.checkKnownAllocPtr(block, struct_ptr, default_field_ptr); |
| 5288 | | const init = Air.internedToRef(field_values[i]); |
| 5289 | | try sema.storePtr2(block, init_src, default_field_ptr, init_src, init, field_src, .store); |
| 4976 | try sema.storePtr2(block, init_src, default_field_ptr, init_src, .fromValue(default_val), field_src, .store); |
| 4977 | } |
| 4978 | |
| 4979 | if (root_msg) |msg| { |
| 4980 | try sema.addDeclaredHereNote(msg, struct_ty); |
| 4981 | root_msg = null; |
| 4982 | return sema.failWithOwnedErrorMsg(block, msg); |
| 5290 | 4983 | } |
| 5291 | 4984 | } |
| 5292 | 4985 | |
| ... | ... | @@ -5307,15 +5000,14 @@ fn zirValidatePtrArrayInit( |
| 5307 | 5000 | const array_ty = sema.typeOf(array_ptr).childType(zcu).optEuBaseType(zcu); |
| 5308 | 5001 | const array_len = array_ty.arrayLen(zcu); |
| 5309 | 5002 | |
| 5310 | | // Collect the comptime element values in case the array literal ends up |
| 5311 | | // being comptime-known. |
| 5312 | | const element_vals = try sema.arena.alloc( |
| 5313 | | InternPool.Index, |
| 5314 | | try sema.usizeCast(block, init_src, array_len), |
| 5315 | | ); |
| 5003 | // Analagously to `validateStructInit`, our job is to handle default fields; either emitting AIR |
| 5004 | // to initialize them, or emitting a compile error if an unspecified field has no default. For |
| 5005 | // tuples, there are literally default field values, although they're guaranteed to be comptime |
| 5006 | // fields so we don't need to initialize them. For arrays, we may have a sentinel, which is never |
| 5007 | // specified so we always need to initialize here. For vectors, there's no such thing. |
| 5316 | 5008 | |
| 5317 | | if (instrs.len != array_len) switch (array_ty.zigTypeTag(zcu)) { |
| 5318 | | .@"struct" => { |
| 5009 | switch (array_ty.zigTypeTag(zcu)) { |
| 5010 | .@"struct" => if (instrs.len != array_len) { |
| 5319 | 5011 | var root_msg: ?*Zcu.ErrorMsg = null; |
| 5320 | 5012 | errdefer if (root_msg) |msg| msg.destroy(sema.gpa); |
| 5321 | 5013 | |
| ... | ... | @@ -5332,8 +5024,6 @@ fn zirValidatePtrArrayInit( |
| 5332 | 5024 | } |
| 5333 | 5025 | continue; |
| 5334 | 5026 | } |
| 5335 | | |
| 5336 | | element_vals[i] = default_val; |
| 5337 | 5027 | } |
| 5338 | 5028 | |
| 5339 | 5029 | if (root_msg) |msg| { |
| ... | ... | @@ -5341,162 +5031,25 @@ fn zirValidatePtrArrayInit( |
| 5341 | 5031 | return sema.failWithOwnedErrorMsg(block, msg); |
| 5342 | 5032 | } |
| 5343 | 5033 | }, |
| 5344 | | .array => { |
| 5034 | |
| 5035 | .array => if (instrs.len != array_len) { |
| 5345 | 5036 | return sema.fail(block, init_src, "expected {d} array elements; found {d}", .{ |
| 5346 | 5037 | array_len, instrs.len, |
| 5347 | 5038 | }); |
| 5039 | } else if (array_ty.sentinel(zcu)) |sentinel| { |
| 5040 | const array_len_ref = try pt.intRef(.usize, array_len); |
| 5041 | const sentinel_ptr = try sema.elemPtrArray(block, init_src, init_src, array_ptr, init_src, array_len_ref, true, true); |
| 5042 | try sema.checkKnownAllocPtr(block, array_ptr, sentinel_ptr); |
| 5043 | try sema.storePtr2(block, init_src, sentinel_ptr, init_src, .fromValue(sentinel), init_src, .store); |
| 5348 | 5044 | }, |
| 5349 | | .vector => { |
| 5045 | |
| 5046 | .vector => if (instrs.len != array_len) { |
| 5350 | 5047 | return sema.fail(block, init_src, "expected {d} vector elements; found {d}", .{ |
| 5351 | 5048 | array_len, instrs.len, |
| 5352 | 5049 | }); |
| 5353 | 5050 | }, |
| 5354 | | else => unreachable, |
| 5355 | | }; |
| 5356 | | |
| 5357 | | if (block.isComptime() and |
| 5358 | | (try sema.resolveDefinedValue(block, init_src, array_ptr)) != null) |
| 5359 | | { |
| 5360 | | // In this case the comptime machinery will have evaluated the store instructions |
| 5361 | | // at comptime so we have almost nothing to do here. However, in case of a |
| 5362 | | // sentinel-terminated array, the sentinel will not have been populated by |
| 5363 | | // any ZIR instructions at comptime; we need to do that here. |
| 5364 | | if (array_ty.sentinel(zcu)) |sentinel_val| { |
| 5365 | | const array_len_ref = try pt.intRef(.usize, array_len); |
| 5366 | | const sentinel_ptr = try sema.elemPtrArray(block, init_src, init_src, array_ptr, init_src, array_len_ref, true, true); |
| 5367 | | const sentinel = Air.internedToRef(sentinel_val.toIntern()); |
| 5368 | | try sema.storePtr2(block, init_src, sentinel_ptr, init_src, sentinel, init_src, .store); |
| 5369 | | } |
| 5370 | | return; |
| 5371 | | } |
| 5372 | | |
| 5373 | | // If the array has one possible value, the value is always comptime-known. |
| 5374 | | if (try sema.typeHasOnePossibleValue(array_ty)) |array_opv| { |
| 5375 | | const array_init = Air.internedToRef(array_opv.toIntern()); |
| 5376 | | try sema.storePtr2(block, init_src, array_ptr, init_src, array_init, init_src, .store); |
| 5377 | | return; |
| 5378 | | } |
| 5379 | | |
| 5380 | | var array_is_comptime = true; |
| 5381 | | var first_block_index = block.instructions.items.len; |
| 5382 | 5051 | |
| 5383 | | const air_tags = sema.air_instructions.items(.tag); |
| 5384 | | const air_datas = sema.air_instructions.items(.data); |
| 5385 | | |
| 5386 | | outer: for (instrs, 0..) |elem_ptr, i| { |
| 5387 | | // Determine whether the value stored to this pointer is comptime-known. |
| 5388 | | |
| 5389 | | if (array_ty.isTuple(zcu)) { |
| 5390 | | if (array_ty.structFieldIsComptime(i, zcu)) |
| 5391 | | try array_ty.resolveStructFieldInits(pt); |
| 5392 | | if (try array_ty.structFieldValueComptime(pt, i)) |opv| { |
| 5393 | | element_vals[i] = opv.toIntern(); |
| 5394 | | continue; |
| 5395 | | } |
| 5396 | | } |
| 5397 | | |
| 5398 | | const elem_ptr_ref = sema.inst_map.get(elem_ptr).?; |
| 5399 | | |
| 5400 | | // We expect to see something like this in the current block AIR: |
| 5401 | | // %a = elem_ptr(...) |
| 5402 | | // store(%a, %b) |
| 5403 | | // With an optional bitcast between the store and the elem_ptr. |
| 5404 | | // If %b is a comptime operand, this element is comptime. |
| 5405 | | // |
| 5406 | | // However, in the case of a comptime-known pointer to an array, the |
| 5407 | | // the elem_ptr instruction is missing, so we have to pattern-match |
| 5408 | | // based only on the store instructions. |
| 5409 | | // `first_block_index` needs to point to the `elem_ptr` if it exists; |
| 5410 | | // the `store` otherwise. |
| 5411 | | // |
| 5412 | | // This is nearly identical to similar logic in `validateStructInit`. |
| 5413 | | |
| 5414 | | // Possible performance enhancement: save the `block_index` between iterations |
| 5415 | | // of the for loop. |
| 5416 | | var block_index = block.instructions.items.len; |
| 5417 | | while (block_index > 0) { |
| 5418 | | block_index -= 1; |
| 5419 | | const store_inst = block.instructions.items[block_index]; |
| 5420 | | if (store_inst.toRef() == elem_ptr_ref) { |
| 5421 | | array_is_comptime = false; |
| 5422 | | continue :outer; |
| 5423 | | } |
| 5424 | | switch (air_tags[@intFromEnum(store_inst)]) { |
| 5425 | | .store, .store_safe => {}, |
| 5426 | | else => continue, |
| 5427 | | } |
| 5428 | | const bin_op = air_datas[@intFromEnum(store_inst)].bin_op; |
| 5429 | | var ptr_ref = bin_op.lhs; |
| 5430 | | if (ptr_ref.toIndex()) |ptr_inst| if (air_tags[@intFromEnum(ptr_inst)] == .bitcast) { |
| 5431 | | ptr_ref = air_datas[@intFromEnum(ptr_inst)].ty_op.operand; |
| 5432 | | }; |
| 5433 | | if (ptr_ref != elem_ptr_ref) continue; |
| 5434 | | first_block_index = @min(if (elem_ptr_ref.toIndex()) |elem_ptr_inst| |
| 5435 | | std.mem.lastIndexOfScalar( |
| 5436 | | Air.Inst.Index, |
| 5437 | | block.instructions.items[0..block_index], |
| 5438 | | elem_ptr_inst, |
| 5439 | | ).? |
| 5440 | | else |
| 5441 | | block_index, first_block_index); |
| 5442 | | if (try sema.resolveValue(bin_op.rhs)) |val| { |
| 5443 | | element_vals[i] = val.toIntern(); |
| 5444 | | } else { |
| 5445 | | array_is_comptime = false; |
| 5446 | | } |
| 5447 | | continue :outer; |
| 5448 | | } |
| 5449 | | array_is_comptime = false; |
| 5450 | | continue :outer; |
| 5451 | | } |
| 5452 | | |
| 5453 | | if (array_is_comptime) { |
| 5454 | | if (try sema.resolveDefinedValue(block, init_src, array_ptr)) |ptr_val| { |
| 5455 | | switch (zcu.intern_pool.indexToKey(ptr_val.toIntern())) { |
| 5456 | | .ptr => |ptr| switch (ptr.base_addr) { |
| 5457 | | .comptime_field => return, // This store was validated by the individual elem ptrs. |
| 5458 | | else => {}, |
| 5459 | | }, |
| 5460 | | else => {}, |
| 5461 | | } |
| 5462 | | } |
| 5463 | | |
| 5464 | | // Our task is to delete all the `elem_ptr` and `store` instructions, and insert |
| 5465 | | // instead a single `store` to the array_ptr with a comptime struct value. |
| 5466 | | var elem_index: usize = 0; |
| 5467 | | var elem_ptr_ref = Air.Inst.Ref.none; |
| 5468 | | var block_index = first_block_index; |
| 5469 | | for (block.instructions.items[first_block_index..]) |cur_inst| { |
| 5470 | | while (elem_ptr_ref == .none and elem_index < instrs.len) : (elem_index += 1) { |
| 5471 | | if (array_ty.isTuple(zcu) and array_ty.structFieldIsComptime(elem_index, zcu)) continue; |
| 5472 | | elem_ptr_ref = sema.inst_map.get(instrs[elem_index]).?; |
| 5473 | | } |
| 5474 | | switch (air_tags[@intFromEnum(cur_inst)]) { |
| 5475 | | .ptr_elem_ptr => if (cur_inst.toRef() == elem_ptr_ref) continue, |
| 5476 | | .bitcast => if (air_datas[@intFromEnum(cur_inst)].ty_op.operand == elem_ptr_ref) continue, |
| 5477 | | .store, .store_safe => { |
| 5478 | | var ptr_ref = air_datas[@intFromEnum(cur_inst)].bin_op.lhs; |
| 5479 | | if (ptr_ref.toIndex()) |ptr_inst| if (air_tags[@intFromEnum(ptr_inst)] == .bitcast) { |
| 5480 | | ptr_ref = air_datas[@intFromEnum(ptr_inst)].ty_op.operand; |
| 5481 | | }; |
| 5482 | | if (ptr_ref == elem_ptr_ref) { |
| 5483 | | elem_ptr_ref = .none; |
| 5484 | | continue; |
| 5485 | | } |
| 5486 | | }, |
| 5487 | | else => {}, |
| 5488 | | } |
| 5489 | | block.instructions.items[block_index] = cur_inst; |
| 5490 | | block_index += 1; |
| 5491 | | } |
| 5492 | | block.instructions.shrinkRetainingCapacity(block_index); |
| 5493 | | |
| 5494 | | const array_val = try pt.intern(.{ .aggregate = .{ |
| 5495 | | .ty = array_ty.toIntern(), |
| 5496 | | .storage = .{ .elems = element_vals }, |
| 5497 | | } }); |
| 5498 | | const array_init = Air.internedToRef(array_val); |
| 5499 | | try sema.storePtr2(block, init_src, array_ptr, init_src, array_init, init_src, .store); |
| 5052 | else => unreachable, |
| 5500 | 5053 | } |
| 5501 | 5054 | } |
| 5502 | 5055 | |
| ... | ... | @@ -5774,8 +5327,6 @@ fn zirStoreNode(sema: *Sema, block: *Block, inst: Zir.Inst.Index) CompileError!v |
| 5774 | 5327 | const tracy = trace(@src()); |
| 5775 | 5328 | defer tracy.end(); |
| 5776 | 5329 | |
| 5777 | | const pt = sema.pt; |
| 5778 | | const zcu = pt.zcu; |
| 5779 | 5330 | const zir_tags = sema.code.instructions.items(.tag); |
| 5780 | 5331 | const zir_datas = sema.code.instructions.items(.data); |
| 5781 | 5332 | const inst_data = zir_datas[@intFromEnum(inst)].pl_node; |
| ... | ... | @@ -5789,16 +5340,6 @@ fn zirStoreNode(sema: *Sema, block: *Block, inst: Zir.Inst.Index) CompileError!v |
| 5789 | 5340 | else |
| 5790 | 5341 | false; |
| 5791 | 5342 | |
| 5792 | | // Check for the possibility of this pattern: |
| 5793 | | // %a = ret_ptr |
| 5794 | | // %b = store(%a, %c) |
| 5795 | | // Where %c is an error union or error set. In such case we need to add |
| 5796 | | // to the current function's inferred error set, if any. |
| 5797 | | if (is_ret and sema.fn_ret_ty_ies != null) switch (sema.typeOf(operand).zigTypeTag(zcu)) { |
| 5798 | | .error_union, .error_set => try sema.addToInferredErrorSet(operand), |
| 5799 | | else => {}, |
| 5800 | | }; |
| 5801 | | |
| 5802 | 5343 | const ptr_src = block.src(.{ .node_offset_store_ptr = inst_data.src_node }); |
| 5803 | 5344 | const operand_src = block.src(.{ .node_offset_store_operand = inst_data.src_node }); |
| 5804 | 5345 | const air_tag: Air.Inst.Tag = if (is_ret) |
| ... | ... | @@ -28015,15 +27556,24 @@ fn unionFieldPtr( |
| 28015 | 27556 | return Air.internedToRef(field_ptr_val.toIntern()); |
| 28016 | 27557 | } |
| 28017 | 27558 | |
| 28018 | | if (!initializing and union_obj.flagsUnordered(ip).layout == .auto and block.wantSafety() and |
| 28019 | | union_ty.unionTagTypeSafety(zcu) != null and union_obj.field_types.len > 1) |
| 28020 | | { |
| 28021 | | const wanted_tag_val = try pt.enumValueFieldIndex(.fromInterned(union_obj.enum_tag_ty), enum_field_index); |
| 28022 | | const wanted_tag = Air.internedToRef(wanted_tag_val.toIntern()); |
| 28023 | | // TODO would it be better if get_union_tag supported pointers to unions? |
| 28024 | | const union_val = try block.addTyOp(.load, union_ty, union_ptr); |
| 28025 | | const active_tag = try block.addTyOp(.get_union_tag, .fromInterned(union_obj.enum_tag_ty), union_val); |
| 28026 | | try sema.addSafetyCheckInactiveUnionField(block, src, active_tag, wanted_tag); |
| 27559 | // If the union has a tag, we must either set or or safety check it depending on `initializing`. |
| 27560 | tag: { |
| 27561 | if (union_ty.containerLayout(zcu) != .auto) break :tag; |
| 27562 | const tag_ty: Type = .fromInterned(union_obj.enum_tag_ty); |
| 27563 | if (try sema.typeHasOnePossibleValue(tag_ty) != null) break :tag; |
| 27564 | // There is a hypothetical non-trivial tag. We must set it even if not there at runtime, but |
| 27565 | // only emit a safety check if it's available at runtime (i.e. it's safety-tagged). |
| 27566 | const want_tag = try pt.enumValueFieldIndex(tag_ty, enum_field_index); |
| 27567 | if (initializing) { |
| 27568 | const set_tag_inst = try block.addBinOp(.set_union_tag, union_ptr, .fromValue(want_tag)); |
| 27569 | try sema.checkComptimeKnownStore(block, set_tag_inst, .unneeded); // `unneeded` since this isn't a "proper" store |
| 27570 | } else if (block.wantSafety() and union_obj.hasTag(ip)) { |
| 27571 | // The tag exists at runtime (safety tag), so emit a safety check. |
| 27572 | // TODO would it be better if get_union_tag supported pointers to unions? |
| 27573 | const union_val = try block.addTyOp(.load, union_ty, union_ptr); |
| 27574 | const active_tag = try block.addTyOp(.get_union_tag, tag_ty, union_val); |
| 27575 | try sema.addSafetyCheckInactiveUnionField(block, src, active_tag, .fromValue(want_tag)); |
| 27576 | } |
| 28027 | 27577 | } |
| 28028 | 27578 | if (field_ty.zigTypeTag(zcu) == .noreturn) { |
| 28029 | 27579 | _ = try block.addNoOp(.unreach); |