1088 lines
37 KiB
Zig
1088 lines
37 KiB
Zig
const std = @import("std");
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const builtin = @import("builtin");
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const Compilation = @import("compilation.zig").Compilation;
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const Scope = @import("scope.zig").Scope;
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const ast = std.zig.ast;
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const Allocator = std.mem.Allocator;
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const Value = @import("value.zig").Value;
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const Type = Value.Type;
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const assert = std.debug.assert;
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const Token = std.zig.Token;
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const ParsedFile = @import("parsed_file.zig").ParsedFile;
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const Span = @import("errmsg.zig").Span;
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const llvm = @import("llvm.zig");
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const ObjectFile = @import("codegen.zig").ObjectFile;
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pub const LVal = enum {
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None,
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Ptr,
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};
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pub const IrVal = union(enum) {
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Unknown,
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KnownType: *Type,
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KnownValue: *Value,
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const Init = enum {
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Unknown,
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NoReturn,
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Void,
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};
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pub fn dump(self: IrVal) void {
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switch (self) {
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IrVal.Unknown => typeof.dump(),
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IrVal.KnownType => |typeof| {
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std.debug.warn("KnownType(");
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typeof.dump();
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std.debug.warn(")");
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},
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IrVal.KnownValue => |value| {
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std.debug.warn("KnownValue(");
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value.dump();
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std.debug.warn(")");
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},
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}
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}
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};
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pub const Instruction = struct {
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id: Id,
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scope: *Scope,
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debug_id: usize,
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val: IrVal,
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ref_count: usize,
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span: Span,
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owner_bb: *BasicBlock,
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/// true if this instruction was generated by zig and not from user code
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is_generated: bool,
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/// the instruction that is derived from this one in analysis
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child: ?*Instruction,
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/// the instruction that this one derives from in analysis
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parent: ?*Instruction,
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/// populated durign codegen
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llvm_value: ?llvm.ValueRef,
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pub fn cast(base: *Instruction, comptime T: type) ?*T {
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if (base.id == comptime typeToId(T)) {
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return @fieldParentPtr(T, "base", base);
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}
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return null;
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}
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pub fn typeToId(comptime T: type) Id {
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comptime var i = 0;
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inline while (i < @memberCount(Id)) : (i += 1) {
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if (T == @field(Instruction, @memberName(Id, i))) {
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return @field(Id, @memberName(Id, i));
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}
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}
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unreachable;
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}
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pub fn dump(base: *const Instruction) void {
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comptime var i = 0;
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inline while (i < @memberCount(Id)) : (i += 1) {
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if (base.id == @field(Id, @memberName(Id, i))) {
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const T = @field(Instruction, @memberName(Id, i));
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std.debug.warn("#{} = {}(", base.debug_id, @tagName(base.id));
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@fieldParentPtr(T, "base", base).dump();
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std.debug.warn(")");
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return;
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}
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}
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unreachable;
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}
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pub fn hasSideEffects(base: *const Instruction) bool {
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comptime var i = 0;
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inline while (i < @memberCount(Id)) : (i += 1) {
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if (base.id == @field(Id, @memberName(Id, i))) {
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const T = @field(Instruction, @memberName(Id, i));
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return @fieldParentPtr(T, "base", base).hasSideEffects();
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}
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}
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unreachable;
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}
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pub fn analyze(base: *Instruction, ira: *Analyze) Analyze.Error!*Instruction {
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comptime var i = 0;
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inline while (i < @memberCount(Id)) : (i += 1) {
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if (base.id == @field(Id, @memberName(Id, i))) {
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const T = @field(Instruction, @memberName(Id, i));
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return @fieldParentPtr(T, "base", base).analyze(ira);
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}
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}
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unreachable;
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}
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pub fn render(base: *Instruction, ofile: *ObjectFile, fn_val: *Value.Fn) (error{OutOfMemory}!?llvm.ValueRef) {
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switch (base.id) {
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Id.Return => return @fieldParentPtr(Return, "base", base).render(ofile, fn_val),
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Id.Const => return @fieldParentPtr(Const, "base", base).render(ofile, fn_val),
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Id.Ref => @panic("TODO"),
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Id.DeclVar => @panic("TODO"),
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Id.CheckVoidStmt => @panic("TODO"),
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Id.Phi => @panic("TODO"),
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Id.Br => @panic("TODO"),
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Id.AddImplicitReturnType => @panic("TODO"),
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}
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}
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fn ref(base: *Instruction, builder: *Builder) void {
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base.ref_count += 1;
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if (base.owner_bb != builder.current_basic_block and !base.isCompTime()) {
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base.owner_bb.ref();
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}
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}
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fn getAsParam(param: *Instruction) !*Instruction {
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const child = param.child orelse return error.SemanticAnalysisFailed;
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switch (child.val) {
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IrVal.Unknown => return error.SemanticAnalysisFailed,
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else => return child,
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}
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}
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/// asserts that the type is known
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fn getKnownType(self: *Instruction) *Type {
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switch (self.val) {
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IrVal.KnownType => |typeof| return typeof,
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IrVal.KnownValue => |value| return value.typeof,
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IrVal.Unknown => unreachable,
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}
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}
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pub fn setGenerated(base: *Instruction) void {
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base.is_generated = true;
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}
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pub fn isNoReturn(base: *const Instruction) bool {
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switch (base.val) {
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IrVal.Unknown => return false,
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IrVal.KnownValue => |x| return x.typeof.id == Type.Id.NoReturn,
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IrVal.KnownType => |typeof| return typeof.id == Type.Id.NoReturn,
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}
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}
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pub fn isCompTime(base: *const Instruction) bool {
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return base.val == IrVal.KnownValue;
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}
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pub fn linkToParent(self: *Instruction, parent: *Instruction) void {
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assert(self.parent == null);
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assert(parent.child == null);
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self.parent = parent;
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parent.child = self;
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}
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pub const Id = enum {
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Return,
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Const,
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Ref,
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DeclVar,
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CheckVoidStmt,
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Phi,
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Br,
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AddImplicitReturnType,
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};
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pub const Const = struct {
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base: Instruction,
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params: Params,
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const Params = struct {};
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// Use Builder.buildConst* methods, or, after building a Const instruction,
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// manually set the ir_val field.
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const ir_val_init = IrVal.Init.Unknown;
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pub fn dump(self: *const Const) void {
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self.base.val.KnownValue.dump();
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}
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pub fn hasSideEffects(self: *const Const) bool {
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return false;
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}
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pub fn analyze(self: *const Const, ira: *Analyze) !*Instruction {
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const new_inst = try ira.irb.build(Const, self.base.scope, self.base.span, Params{});
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new_inst.val = IrVal{ .KnownValue = self.base.val.KnownValue.getRef() };
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return new_inst;
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}
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pub fn render(self: *Const, ofile: *ObjectFile, fn_val: *Value.Fn) !?llvm.ValueRef {
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return self.base.val.KnownValue.getLlvmConst(ofile);
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}
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};
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pub const Return = struct {
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base: Instruction,
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params: Params,
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const Params = struct {
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return_value: *Instruction,
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};
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const ir_val_init = IrVal.Init.NoReturn;
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pub fn dump(self: *const Return) void {
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std.debug.warn("#{}", self.params.return_value.debug_id);
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}
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pub fn hasSideEffects(self: *const Return) bool {
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return true;
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}
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pub fn analyze(self: *const Return, ira: *Analyze) !*Instruction {
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const value = try self.params.return_value.getAsParam();
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const casted_value = try ira.implicitCast(value, ira.explicit_return_type);
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// TODO detect returning local variable address
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return ira.irb.build(Return, self.base.scope, self.base.span, Params{ .return_value = casted_value });
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}
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pub fn render(self: *Return, ofile: *ObjectFile, fn_val: *Value.Fn) ?llvm.ValueRef {
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const value = self.params.return_value.llvm_value;
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const return_type = self.params.return_value.getKnownType();
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if (return_type.handleIsPtr()) {
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@panic("TODO");
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} else {
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_ = llvm.BuildRet(ofile.builder, value);
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}
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return null;
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}
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};
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pub const Ref = struct {
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base: Instruction,
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params: Params,
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const Params = struct {
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target: *Instruction,
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mut: Type.Pointer.Mut,
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volatility: Type.Pointer.Vol,
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};
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const ir_val_init = IrVal.Init.Unknown;
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pub fn dump(inst: *const Ref) void {}
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pub fn hasSideEffects(inst: *const Ref) bool {
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return false;
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}
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pub fn analyze(self: *const Ref, ira: *Analyze) !*Instruction {
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const target = try self.params.target.getAsParam();
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if (ira.getCompTimeValOrNullUndefOk(target)) |val| {
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return ira.getCompTimeRef(
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val,
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Value.Ptr.Mut.CompTimeConst,
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self.params.mut,
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self.params.volatility,
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val.typeof.getAbiAlignment(ira.irb.comp),
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);
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}
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const new_inst = try ira.irb.build(Ref, self.base.scope, self.base.span, Params{
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.target = target,
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.mut = self.params.mut,
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.volatility = self.params.volatility,
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});
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const elem_type = target.getKnownType();
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const ptr_type = Type.Pointer.get(
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ira.irb.comp,
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elem_type,
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self.params.mut,
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self.params.volatility,
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Type.Pointer.Size.One,
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elem_type.getAbiAlignment(ira.irb.comp),
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);
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// TODO: potentially set the hint that this is a stack pointer. But it might not be - this
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// could be a ref of a global, for example
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new_inst.val = IrVal{ .KnownType = &ptr_type.base };
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// TODO potentially add an alloca entry here
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return new_inst;
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}
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};
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pub const DeclVar = struct {
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base: Instruction,
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params: Params,
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const Params = struct {
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variable: *Variable,
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};
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const ir_val_init = IrVal.Init.Unknown;
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pub fn dump(inst: *const DeclVar) void {}
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pub fn hasSideEffects(inst: *const DeclVar) bool {
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return true;
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}
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pub fn analyze(self: *const DeclVar, ira: *Analyze) !*Instruction {
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return error.Unimplemented; // TODO
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}
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};
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pub const CheckVoidStmt = struct {
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base: Instruction,
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params: Params,
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const Params = struct {
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target: *Instruction,
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};
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const ir_val_init = IrVal.Init.Unknown;
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pub fn dump(inst: *const CheckVoidStmt) void {}
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pub fn hasSideEffects(inst: *const CheckVoidStmt) bool {
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return true;
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}
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pub fn analyze(self: *const CheckVoidStmt, ira: *Analyze) !*Instruction {
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return error.Unimplemented; // TODO
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}
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};
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pub const Phi = struct {
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base: Instruction,
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params: Params,
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const Params = struct {
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incoming_blocks: []*BasicBlock,
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incoming_values: []*Instruction,
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};
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const ir_val_init = IrVal.Init.Unknown;
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pub fn dump(inst: *const Phi) void {}
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pub fn hasSideEffects(inst: *const Phi) bool {
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return false;
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}
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pub fn analyze(self: *const Phi, ira: *Analyze) !*Instruction {
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return error.Unimplemented; // TODO
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}
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};
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pub const Br = struct {
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base: Instruction,
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params: Params,
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const Params = struct {
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dest_block: *BasicBlock,
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is_comptime: *Instruction,
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};
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const ir_val_init = IrVal.Init.NoReturn;
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pub fn dump(inst: *const Br) void {}
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pub fn hasSideEffects(inst: *const Br) bool {
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return true;
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}
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pub fn analyze(self: *const Br, ira: *Analyze) !*Instruction {
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return error.Unimplemented; // TODO
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}
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};
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pub const AddImplicitReturnType = struct {
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base: Instruction,
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params: Params,
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pub const Params = struct {
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target: *Instruction,
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};
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const ir_val_init = IrVal.Init.Unknown;
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pub fn dump(inst: *const AddImplicitReturnType) void {
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std.debug.warn("#{}", inst.params.target.debug_id);
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}
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pub fn hasSideEffects(inst: *const AddImplicitReturnType) bool {
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return true;
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}
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pub fn analyze(self: *const AddImplicitReturnType, ira: *Analyze) !*Instruction {
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const target = try self.params.target.getAsParam();
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try ira.src_implicit_return_type_list.append(target);
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return ira.irb.buildConstVoid(self.base.scope, self.base.span, true);
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}
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};
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};
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pub const Variable = struct {
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child_scope: *Scope,
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};
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pub const BasicBlock = struct {
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ref_count: usize,
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name_hint: [*]const u8, // must be a C string literal
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debug_id: usize,
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scope: *Scope,
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instruction_list: std.ArrayList(*Instruction),
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ref_instruction: ?*Instruction,
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/// for codegen
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llvm_block: llvm.BasicBlockRef,
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llvm_exit_block: llvm.BasicBlockRef,
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/// the basic block that is derived from this one in analysis
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child: ?*BasicBlock,
|
|
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/// the basic block that this one derives from in analysis
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parent: ?*BasicBlock,
|
|
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pub fn ref(self: *BasicBlock) void {
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self.ref_count += 1;
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}
|
|
|
|
pub fn linkToParent(self: *BasicBlock, parent: *BasicBlock) void {
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|
assert(self.parent == null);
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|
assert(parent.child == null);
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|
self.parent = parent;
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|
parent.child = self;
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|
}
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|
};
|
|
|
|
/// Stuff that survives longer than Builder
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|
pub const Code = struct {
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|
basic_block_list: std.ArrayList(*BasicBlock),
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|
arena: std.heap.ArenaAllocator,
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|
return_type: ?*Type,
|
|
|
|
/// allocator is comp.gpa()
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|
pub fn destroy(self: *Code, allocator: *Allocator) void {
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self.arena.deinit();
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|
allocator.destroy(self);
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|
}
|
|
|
|
pub fn dump(self: *Code) void {
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|
var bb_i: usize = 0;
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|
for (self.basic_block_list.toSliceConst()) |bb| {
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|
std.debug.warn("{s}_{}:\n", bb.name_hint, bb.debug_id);
|
|
for (bb.instruction_list.toSliceConst()) |instr| {
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|
std.debug.warn(" ");
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|
instr.dump();
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std.debug.warn("\n");
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|
}
|
|
}
|
|
}
|
|
};
|
|
|
|
pub const Builder = struct {
|
|
comp: *Compilation,
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|
code: *Code,
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|
current_basic_block: *BasicBlock,
|
|
next_debug_id: usize,
|
|
parsed_file: *ParsedFile,
|
|
is_comptime: bool,
|
|
|
|
pub const Error = Analyze.Error;
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|
|
|
pub fn init(comp: *Compilation, parsed_file: *ParsedFile) !Builder {
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|
const code = try comp.gpa().create(Code{
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.basic_block_list = undefined,
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|
.arena = std.heap.ArenaAllocator.init(comp.gpa()),
|
|
.return_type = null,
|
|
});
|
|
code.basic_block_list = std.ArrayList(*BasicBlock).init(&code.arena.allocator);
|
|
errdefer code.destroy(comp.gpa());
|
|
|
|
return Builder{
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|
.comp = comp,
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|
.parsed_file = parsed_file,
|
|
.current_basic_block = undefined,
|
|
.code = code,
|
|
.next_debug_id = 0,
|
|
.is_comptime = false,
|
|
};
|
|
}
|
|
|
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pub fn abort(self: *Builder) void {
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|
self.code.destroy(self.comp.gpa());
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|
}
|
|
|
|
/// Call code.destroy() when done
|
|
pub fn finish(self: *Builder) *Code {
|
|
return self.code;
|
|
}
|
|
|
|
/// No need to clean up resources thanks to the arena allocator.
|
|
pub fn createBasicBlock(self: *Builder, scope: *Scope, name_hint: [*]const u8) !*BasicBlock {
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|
const basic_block = try self.arena().create(BasicBlock{
|
|
.ref_count = 0,
|
|
.name_hint = name_hint,
|
|
.debug_id = self.next_debug_id,
|
|
.scope = scope,
|
|
.instruction_list = std.ArrayList(*Instruction).init(self.arena()),
|
|
.child = null,
|
|
.parent = null,
|
|
.ref_instruction = null,
|
|
.llvm_block = undefined,
|
|
.llvm_exit_block = undefined,
|
|
});
|
|
self.next_debug_id += 1;
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|
return basic_block;
|
|
}
|
|
|
|
pub fn setCursorAtEndAndAppendBlock(self: *Builder, basic_block: *BasicBlock) !void {
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|
try self.code.basic_block_list.append(basic_block);
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|
self.setCursorAtEnd(basic_block);
|
|
}
|
|
|
|
pub fn setCursorAtEnd(self: *Builder, basic_block: *BasicBlock) void {
|
|
self.current_basic_block = basic_block;
|
|
}
|
|
|
|
pub fn genNode(irb: *Builder, node: *ast.Node, scope: *Scope, lval: LVal) Error!*Instruction {
|
|
switch (node.id) {
|
|
ast.Node.Id.Root => unreachable,
|
|
ast.Node.Id.Use => unreachable,
|
|
ast.Node.Id.TestDecl => unreachable,
|
|
ast.Node.Id.VarDecl => @panic("TODO"),
|
|
ast.Node.Id.Defer => @panic("TODO"),
|
|
ast.Node.Id.InfixOp => @panic("TODO"),
|
|
ast.Node.Id.PrefixOp => @panic("TODO"),
|
|
ast.Node.Id.SuffixOp => @panic("TODO"),
|
|
ast.Node.Id.Switch => @panic("TODO"),
|
|
ast.Node.Id.While => @panic("TODO"),
|
|
ast.Node.Id.For => @panic("TODO"),
|
|
ast.Node.Id.If => @panic("TODO"),
|
|
ast.Node.Id.ControlFlowExpression => return error.Unimplemented,
|
|
ast.Node.Id.Suspend => @panic("TODO"),
|
|
ast.Node.Id.VarType => @panic("TODO"),
|
|
ast.Node.Id.ErrorType => @panic("TODO"),
|
|
ast.Node.Id.FnProto => @panic("TODO"),
|
|
ast.Node.Id.PromiseType => @panic("TODO"),
|
|
ast.Node.Id.IntegerLiteral => @panic("TODO"),
|
|
ast.Node.Id.FloatLiteral => @panic("TODO"),
|
|
ast.Node.Id.StringLiteral => @panic("TODO"),
|
|
ast.Node.Id.MultilineStringLiteral => @panic("TODO"),
|
|
ast.Node.Id.CharLiteral => @panic("TODO"),
|
|
ast.Node.Id.BoolLiteral => @panic("TODO"),
|
|
ast.Node.Id.NullLiteral => @panic("TODO"),
|
|
ast.Node.Id.UndefinedLiteral => @panic("TODO"),
|
|
ast.Node.Id.ThisLiteral => @panic("TODO"),
|
|
ast.Node.Id.Unreachable => @panic("TODO"),
|
|
ast.Node.Id.Identifier => @panic("TODO"),
|
|
ast.Node.Id.GroupedExpression => {
|
|
const grouped_expr = @fieldParentPtr(ast.Node.GroupedExpression, "base", node);
|
|
return irb.genNode(grouped_expr.expr, scope, lval);
|
|
},
|
|
ast.Node.Id.BuiltinCall => @panic("TODO"),
|
|
ast.Node.Id.ErrorSetDecl => @panic("TODO"),
|
|
ast.Node.Id.ContainerDecl => @panic("TODO"),
|
|
ast.Node.Id.Asm => @panic("TODO"),
|
|
ast.Node.Id.Comptime => @panic("TODO"),
|
|
ast.Node.Id.Block => {
|
|
const block = @fieldParentPtr(ast.Node.Block, "base", node);
|
|
return irb.lvalWrap(scope, try irb.genBlock(block, scope), lval);
|
|
},
|
|
ast.Node.Id.DocComment => @panic("TODO"),
|
|
ast.Node.Id.SwitchCase => @panic("TODO"),
|
|
ast.Node.Id.SwitchElse => @panic("TODO"),
|
|
ast.Node.Id.Else => @panic("TODO"),
|
|
ast.Node.Id.Payload => @panic("TODO"),
|
|
ast.Node.Id.PointerPayload => @panic("TODO"),
|
|
ast.Node.Id.PointerIndexPayload => @panic("TODO"),
|
|
ast.Node.Id.StructField => @panic("TODO"),
|
|
ast.Node.Id.UnionTag => @panic("TODO"),
|
|
ast.Node.Id.EnumTag => @panic("TODO"),
|
|
ast.Node.Id.ErrorTag => @panic("TODO"),
|
|
ast.Node.Id.AsmInput => @panic("TODO"),
|
|
ast.Node.Id.AsmOutput => @panic("TODO"),
|
|
ast.Node.Id.AsyncAttribute => @panic("TODO"),
|
|
ast.Node.Id.ParamDecl => @panic("TODO"),
|
|
ast.Node.Id.FieldInitializer => @panic("TODO"),
|
|
}
|
|
}
|
|
|
|
fn isCompTime(irb: *Builder, target_scope: *Scope) bool {
|
|
if (irb.is_comptime)
|
|
return true;
|
|
|
|
var scope = target_scope;
|
|
while (true) {
|
|
switch (scope.id) {
|
|
Scope.Id.CompTime => return true,
|
|
Scope.Id.FnDef => return false,
|
|
Scope.Id.Decls => unreachable,
|
|
Scope.Id.Block,
|
|
Scope.Id.Defer,
|
|
Scope.Id.DeferExpr,
|
|
=> scope = scope.parent orelse return false,
|
|
}
|
|
}
|
|
}
|
|
|
|
pub fn genBlock(irb: *Builder, block: *ast.Node.Block, parent_scope: *Scope) !*Instruction {
|
|
const block_scope = try Scope.Block.create(irb.comp, parent_scope);
|
|
|
|
const outer_block_scope = &block_scope.base;
|
|
var child_scope = outer_block_scope;
|
|
|
|
if (parent_scope.findFnDef()) |fndef_scope| {
|
|
if (fndef_scope.fn_val.child_scope == parent_scope) {
|
|
fndef_scope.fn_val.block_scope = block_scope;
|
|
}
|
|
}
|
|
|
|
if (block.statements.len == 0) {
|
|
// {}
|
|
return irb.buildConstVoid(child_scope, Span.token(block.lbrace), false);
|
|
}
|
|
|
|
if (block.label) |label| {
|
|
block_scope.incoming_values = std.ArrayList(*Instruction).init(irb.arena());
|
|
block_scope.incoming_blocks = std.ArrayList(*BasicBlock).init(irb.arena());
|
|
block_scope.end_block = try irb.createBasicBlock(parent_scope, c"BlockEnd");
|
|
block_scope.is_comptime = try irb.buildConstBool(
|
|
parent_scope,
|
|
Span.token(block.lbrace),
|
|
irb.isCompTime(parent_scope),
|
|
);
|
|
}
|
|
|
|
var is_continuation_unreachable = false;
|
|
var noreturn_return_value: ?*Instruction = null;
|
|
|
|
var stmt_it = block.statements.iterator(0);
|
|
while (stmt_it.next()) |statement_node_ptr| {
|
|
const statement_node = statement_node_ptr.*;
|
|
|
|
if (statement_node.cast(ast.Node.Defer)) |defer_node| {
|
|
// defer starts a new scope
|
|
const defer_token = irb.parsed_file.tree.tokens.at(defer_node.defer_token);
|
|
const kind = switch (defer_token.id) {
|
|
Token.Id.Keyword_defer => Scope.Defer.Kind.ScopeExit,
|
|
Token.Id.Keyword_errdefer => Scope.Defer.Kind.ErrorExit,
|
|
else => unreachable,
|
|
};
|
|
const defer_expr_scope = try Scope.DeferExpr.create(irb.comp, parent_scope, defer_node.expr);
|
|
const defer_child_scope = try Scope.Defer.create(irb.comp, parent_scope, kind, defer_expr_scope);
|
|
child_scope = &defer_child_scope.base;
|
|
continue;
|
|
}
|
|
const statement_value = try irb.genNode(statement_node, child_scope, LVal.None);
|
|
|
|
is_continuation_unreachable = statement_value.isNoReturn();
|
|
if (is_continuation_unreachable) {
|
|
// keep the last noreturn statement value around in case we need to return it
|
|
noreturn_return_value = statement_value;
|
|
}
|
|
|
|
if (statement_value.cast(Instruction.DeclVar)) |decl_var| {
|
|
// variable declarations start a new scope
|
|
child_scope = decl_var.params.variable.child_scope;
|
|
} else if (!is_continuation_unreachable) {
|
|
// this statement's value must be void
|
|
_ = irb.build(
|
|
Instruction.CheckVoidStmt,
|
|
child_scope,
|
|
statement_value.span,
|
|
Instruction.CheckVoidStmt.Params{ .target = statement_value },
|
|
);
|
|
}
|
|
}
|
|
|
|
if (is_continuation_unreachable) {
|
|
assert(noreturn_return_value != null);
|
|
if (block.label == null or block_scope.incoming_blocks.len == 0) {
|
|
return noreturn_return_value.?;
|
|
}
|
|
|
|
try irb.setCursorAtEndAndAppendBlock(block_scope.end_block);
|
|
return irb.build(Instruction.Phi, parent_scope, Span.token(block.rbrace), Instruction.Phi.Params{
|
|
.incoming_blocks = block_scope.incoming_blocks.toOwnedSlice(),
|
|
.incoming_values = block_scope.incoming_values.toOwnedSlice(),
|
|
});
|
|
}
|
|
|
|
if (block.label) |label| {
|
|
try block_scope.incoming_blocks.append(irb.current_basic_block);
|
|
try block_scope.incoming_values.append(
|
|
try irb.buildConstVoid(parent_scope, Span.token(block.rbrace), true),
|
|
);
|
|
_ = try irb.genDefersForBlock(child_scope, outer_block_scope, Scope.Defer.Kind.ScopeExit);
|
|
|
|
_ = try irb.buildGen(Instruction.Br, parent_scope, Span.token(block.rbrace), Instruction.Br.Params{
|
|
.dest_block = block_scope.end_block,
|
|
.is_comptime = block_scope.is_comptime,
|
|
});
|
|
|
|
try irb.setCursorAtEndAndAppendBlock(block_scope.end_block);
|
|
|
|
return irb.build(Instruction.Phi, parent_scope, Span.token(block.rbrace), Instruction.Phi.Params{
|
|
.incoming_blocks = block_scope.incoming_blocks.toOwnedSlice(),
|
|
.incoming_values = block_scope.incoming_values.toOwnedSlice(),
|
|
});
|
|
}
|
|
|
|
_ = try irb.genDefersForBlock(child_scope, outer_block_scope, Scope.Defer.Kind.ScopeExit);
|
|
return irb.buildConstVoid(child_scope, Span.token(block.rbrace), true);
|
|
}
|
|
|
|
fn genDefersForBlock(
|
|
irb: *Builder,
|
|
inner_scope: *Scope,
|
|
outer_scope: *Scope,
|
|
gen_kind: Scope.Defer.Kind,
|
|
) !bool {
|
|
var scope = inner_scope;
|
|
var is_noreturn = false;
|
|
while (true) {
|
|
switch (scope.id) {
|
|
Scope.Id.Defer => {
|
|
const defer_scope = @fieldParentPtr(Scope.Defer, "base", scope);
|
|
const generate = switch (defer_scope.kind) {
|
|
Scope.Defer.Kind.ScopeExit => true,
|
|
Scope.Defer.Kind.ErrorExit => gen_kind == Scope.Defer.Kind.ErrorExit,
|
|
};
|
|
if (generate) {
|
|
const defer_expr_scope = defer_scope.defer_expr_scope;
|
|
const instruction = try irb.genNode(
|
|
defer_expr_scope.expr_node,
|
|
&defer_expr_scope.base,
|
|
LVal.None,
|
|
);
|
|
if (instruction.isNoReturn()) {
|
|
is_noreturn = true;
|
|
} else {
|
|
_ = try irb.build(
|
|
Instruction.CheckVoidStmt,
|
|
&defer_expr_scope.base,
|
|
Span.token(defer_expr_scope.expr_node.lastToken()),
|
|
Instruction.CheckVoidStmt.Params{ .target = instruction },
|
|
);
|
|
}
|
|
}
|
|
},
|
|
Scope.Id.FnDef,
|
|
Scope.Id.Decls,
|
|
=> return is_noreturn,
|
|
|
|
Scope.Id.CompTime,
|
|
Scope.Id.Block,
|
|
=> scope = scope.parent orelse return is_noreturn,
|
|
|
|
Scope.Id.DeferExpr => unreachable,
|
|
}
|
|
}
|
|
}
|
|
|
|
pub fn lvalWrap(irb: *Builder, scope: *Scope, instruction: *Instruction, lval: LVal) !*Instruction {
|
|
switch (lval) {
|
|
LVal.None => return instruction,
|
|
LVal.Ptr => {
|
|
// We needed a pointer to a value, but we got a value. So we create
|
|
// an instruction which just makes a const pointer of it.
|
|
return irb.build(Instruction.Ref, scope, instruction.span, Instruction.Ref.Params{
|
|
.target = instruction,
|
|
.mut = Type.Pointer.Mut.Const,
|
|
.volatility = Type.Pointer.Vol.Non,
|
|
});
|
|
},
|
|
}
|
|
}
|
|
|
|
fn arena(self: *Builder) *Allocator {
|
|
return &self.code.arena.allocator;
|
|
}
|
|
|
|
fn buildExtra(
|
|
self: *Builder,
|
|
comptime I: type,
|
|
scope: *Scope,
|
|
span: Span,
|
|
params: I.Params,
|
|
is_generated: bool,
|
|
) !*Instruction {
|
|
const inst = try self.arena().create(I{
|
|
.base = Instruction{
|
|
.id = Instruction.typeToId(I),
|
|
.is_generated = is_generated,
|
|
.scope = scope,
|
|
.debug_id = self.next_debug_id,
|
|
.val = switch (I.ir_val_init) {
|
|
IrVal.Init.Unknown => IrVal.Unknown,
|
|
IrVal.Init.NoReturn => IrVal{ .KnownValue = &Value.NoReturn.get(self.comp).base },
|
|
IrVal.Init.Void => IrVal{ .KnownValue = &Value.Void.get(self.comp).base },
|
|
},
|
|
.ref_count = 0,
|
|
.span = span,
|
|
.child = null,
|
|
.parent = null,
|
|
.llvm_value = undefined,
|
|
.owner_bb = self.current_basic_block,
|
|
},
|
|
.params = params,
|
|
});
|
|
|
|
// Look at the params and ref() other instructions
|
|
comptime var i = 0;
|
|
inline while (i < @memberCount(I.Params)) : (i += 1) {
|
|
const FieldType = comptime @typeOf(@field(I.Params(undefined), @memberName(I.Params, i)));
|
|
switch (FieldType) {
|
|
*Instruction => @field(inst.params, @memberName(I.Params, i)).ref(self),
|
|
?*Instruction => if (@field(inst.params, @memberName(I.Params, i))) |other| other.ref(self),
|
|
else => {},
|
|
}
|
|
}
|
|
|
|
self.next_debug_id += 1;
|
|
try self.current_basic_block.instruction_list.append(&inst.base);
|
|
return &inst.base;
|
|
}
|
|
|
|
fn build(
|
|
self: *Builder,
|
|
comptime I: type,
|
|
scope: *Scope,
|
|
span: Span,
|
|
params: I.Params,
|
|
) !*Instruction {
|
|
return self.buildExtra(I, scope, span, params, false);
|
|
}
|
|
|
|
fn buildGen(
|
|
self: *Builder,
|
|
comptime I: type,
|
|
scope: *Scope,
|
|
span: Span,
|
|
params: I.Params,
|
|
) !*Instruction {
|
|
return self.buildExtra(I, scope, span, params, true);
|
|
}
|
|
|
|
fn buildConstBool(self: *Builder, scope: *Scope, span: Span, x: bool) !*Instruction {
|
|
const inst = try self.build(Instruction.Const, scope, span, Instruction.Const.Params{});
|
|
inst.val = IrVal{ .KnownValue = &Value.Bool.get(self.comp, x).base };
|
|
return inst;
|
|
}
|
|
|
|
fn buildConstVoid(self: *Builder, scope: *Scope, span: Span, is_generated: bool) !*Instruction {
|
|
const inst = try self.buildExtra(Instruction.Const, scope, span, Instruction.Const.Params{}, is_generated);
|
|
inst.val = IrVal{ .KnownValue = &Value.Void.get(self.comp).base };
|
|
return inst;
|
|
}
|
|
};
|
|
|
|
const Analyze = struct {
|
|
irb: Builder,
|
|
old_bb_index: usize,
|
|
const_predecessor_bb: ?*BasicBlock,
|
|
parent_basic_block: *BasicBlock,
|
|
instruction_index: usize,
|
|
src_implicit_return_type_list: std.ArrayList(*Instruction),
|
|
explicit_return_type: ?*Type,
|
|
|
|
pub const Error = error{
|
|
/// This is only for when we have already reported a compile error. It is the poison value.
|
|
SemanticAnalysisFailed,
|
|
|
|
/// This is a placeholder - it is useful to use instead of panicking but once the compiler is
|
|
/// done this error code will be removed.
|
|
Unimplemented,
|
|
|
|
OutOfMemory,
|
|
};
|
|
|
|
pub fn init(comp: *Compilation, parsed_file: *ParsedFile, explicit_return_type: ?*Type) !Analyze {
|
|
var irb = try Builder.init(comp, parsed_file);
|
|
errdefer irb.abort();
|
|
|
|
return Analyze{
|
|
.irb = irb,
|
|
.old_bb_index = 0,
|
|
.const_predecessor_bb = null,
|
|
.parent_basic_block = undefined, // initialized with startBasicBlock
|
|
.instruction_index = undefined, // initialized with startBasicBlock
|
|
.src_implicit_return_type_list = std.ArrayList(*Instruction).init(irb.arena()),
|
|
.explicit_return_type = explicit_return_type,
|
|
};
|
|
}
|
|
|
|
pub fn abort(self: *Analyze) void {
|
|
self.irb.abort();
|
|
}
|
|
|
|
pub fn getNewBasicBlock(self: *Analyze, old_bb: *BasicBlock, ref_old_instruction: ?*Instruction) !*BasicBlock {
|
|
if (old_bb.child) |child| {
|
|
if (ref_old_instruction == null or child.ref_instruction != ref_old_instruction)
|
|
return child;
|
|
}
|
|
|
|
const new_bb = try self.irb.createBasicBlock(old_bb.scope, old_bb.name_hint);
|
|
new_bb.linkToParent(old_bb);
|
|
new_bb.ref_instruction = ref_old_instruction;
|
|
return new_bb;
|
|
}
|
|
|
|
pub fn startBasicBlock(self: *Analyze, old_bb: *BasicBlock, const_predecessor_bb: ?*BasicBlock) void {
|
|
self.instruction_index = 0;
|
|
self.parent_basic_block = old_bb;
|
|
self.const_predecessor_bb = const_predecessor_bb;
|
|
}
|
|
|
|
pub fn finishBasicBlock(ira: *Analyze, old_code: *Code) !void {
|
|
try ira.irb.code.basic_block_list.append(ira.irb.current_basic_block);
|
|
ira.instruction_index += 1;
|
|
|
|
while (ira.instruction_index < ira.parent_basic_block.instruction_list.len) {
|
|
const next_instruction = ira.parent_basic_block.instruction_list.at(ira.instruction_index);
|
|
|
|
if (!next_instruction.is_generated) {
|
|
try ira.addCompileError(next_instruction.span, "unreachable code");
|
|
break;
|
|
}
|
|
ira.instruction_index += 1;
|
|
}
|
|
|
|
ira.old_bb_index += 1;
|
|
|
|
var need_repeat = true;
|
|
while (true) {
|
|
while (ira.old_bb_index < old_code.basic_block_list.len) {
|
|
const old_bb = old_code.basic_block_list.at(ira.old_bb_index);
|
|
const new_bb = old_bb.child orelse {
|
|
ira.old_bb_index += 1;
|
|
continue;
|
|
};
|
|
if (new_bb.instruction_list.len != 0) {
|
|
ira.old_bb_index += 1;
|
|
continue;
|
|
}
|
|
ira.irb.current_basic_block = new_bb;
|
|
|
|
ira.startBasicBlock(old_bb, null);
|
|
return;
|
|
}
|
|
if (!need_repeat)
|
|
return;
|
|
need_repeat = false;
|
|
ira.old_bb_index = 0;
|
|
continue;
|
|
}
|
|
}
|
|
|
|
fn addCompileError(self: *Analyze, span: Span, comptime fmt: []const u8, args: ...) !void {
|
|
return self.irb.comp.addCompileError(self.irb.parsed_file, span, fmt, args);
|
|
}
|
|
|
|
fn resolvePeerTypes(self: *Analyze, expected_type: ?*Type, peers: []const *Instruction) Analyze.Error!*Type {
|
|
// TODO actual implementation
|
|
return &Type.Void.get(self.irb.comp).base;
|
|
}
|
|
|
|
fn implicitCast(self: *Analyze, target: *Instruction, optional_dest_type: ?*Type) Analyze.Error!*Instruction {
|
|
const dest_type = optional_dest_type orelse return target;
|
|
@panic("TODO implicitCast");
|
|
}
|
|
|
|
fn getCompTimeValOrNullUndefOk(self: *Analyze, target: *Instruction) ?*Value {
|
|
@panic("TODO getCompTimeValOrNullUndefOk");
|
|
}
|
|
|
|
fn getCompTimeRef(
|
|
self: *Analyze,
|
|
value: *Value,
|
|
ptr_mut: Value.Ptr.Mut,
|
|
mut: Type.Pointer.Mut,
|
|
volatility: Type.Pointer.Vol,
|
|
ptr_align: u32,
|
|
) Analyze.Error!*Instruction {
|
|
@panic("TODO getCompTimeRef");
|
|
}
|
|
};
|
|
|
|
pub async fn gen(
|
|
comp: *Compilation,
|
|
body_node: *ast.Node,
|
|
scope: *Scope,
|
|
end_span: Span,
|
|
parsed_file: *ParsedFile,
|
|
) !*Code {
|
|
var irb = try Builder.init(comp, parsed_file);
|
|
errdefer irb.abort();
|
|
|
|
const entry_block = try irb.createBasicBlock(scope, c"Entry");
|
|
entry_block.ref(); // Entry block gets a reference because we enter it to begin.
|
|
try irb.setCursorAtEndAndAppendBlock(entry_block);
|
|
|
|
const result = try irb.genNode(body_node, scope, LVal.None);
|
|
if (!result.isNoReturn()) {
|
|
_ = irb.buildGen(
|
|
Instruction.AddImplicitReturnType,
|
|
scope,
|
|
end_span,
|
|
Instruction.AddImplicitReturnType.Params{ .target = result },
|
|
);
|
|
_ = irb.buildGen(
|
|
Instruction.Return,
|
|
scope,
|
|
end_span,
|
|
Instruction.Return.Params{ .return_value = result },
|
|
);
|
|
}
|
|
|
|
return irb.finish();
|
|
}
|
|
|
|
pub async fn analyze(comp: *Compilation, parsed_file: *ParsedFile, old_code: *Code, expected_type: ?*Type) !*Code {
|
|
var ira = try Analyze.init(comp, parsed_file, expected_type);
|
|
errdefer ira.abort();
|
|
|
|
const old_entry_bb = old_code.basic_block_list.at(0);
|
|
|
|
const new_entry_bb = try ira.getNewBasicBlock(old_entry_bb, null);
|
|
new_entry_bb.ref();
|
|
|
|
ira.irb.current_basic_block = new_entry_bb;
|
|
|
|
ira.startBasicBlock(old_entry_bb, null);
|
|
|
|
while (ira.old_bb_index < old_code.basic_block_list.len) {
|
|
const old_instruction = ira.parent_basic_block.instruction_list.at(ira.instruction_index);
|
|
|
|
if (old_instruction.ref_count == 0 and !old_instruction.hasSideEffects()) {
|
|
ira.instruction_index += 1;
|
|
continue;
|
|
}
|
|
|
|
const return_inst = try old_instruction.analyze(&ira);
|
|
return_inst.linkToParent(old_instruction);
|
|
// Note: if we ever modify the above to handle error.CompileError by continuing analysis,
|
|
// then here we want to check if ira.isCompTime() and return early if true
|
|
|
|
if (return_inst.isNoReturn()) {
|
|
try ira.finishBasicBlock(old_code);
|
|
continue;
|
|
}
|
|
|
|
ira.instruction_index += 1;
|
|
}
|
|
|
|
if (ira.src_implicit_return_type_list.len == 0) {
|
|
ira.irb.code.return_type = &Type.NoReturn.get(comp).base;
|
|
return ira.irb.finish();
|
|
}
|
|
|
|
ira.irb.code.return_type = try ira.resolvePeerTypes(expected_type, ira.src_implicit_return_type_list.toSliceConst());
|
|
return ira.irb.finish();
|
|
}
|