adding branching and conversions
This commit is contained in:
@@ -238,9 +238,15 @@ variant: ?union(Variant) {
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},
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Variable: struct {
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storage_class: spv.SpvStorageClass,
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type_word: SpvWord,
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type: Type,
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value: Value,
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},
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Constant: struct {
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type_word: SpvWord,
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type: Type,
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value: Value,
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},
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Constant: Value,
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Function: struct {
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source_location: usize,
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return_type: SpvWord,
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@@ -284,7 +290,7 @@ pub fn deinit(self: *Self, allocator: std.mem.Allocator) void {
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},
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else => {},
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},
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.Constant => |*v| v.deinit(allocator),
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.Constant => |*c| c.value.deinit(allocator),
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.Variable => |*v| v.value.deinit(allocator),
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//.AccessChain => |*a| a.value.deinit(allocator),
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else => {},
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@@ -293,10 +299,26 @@ pub fn deinit(self: *Self, allocator: std.mem.Allocator) void {
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self.decorations.deinit(allocator);
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}
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pub fn getValueTypeWord(self: *Self) RuntimeError!SpvWord {
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return switch (self.variant orelse return RuntimeError.InvalidSpirV) {
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.Variable => |v| v.type_word,
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.Constant => |c| c.type_word,
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else => RuntimeError.InvalidSpirV,
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};
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}
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pub fn getValueType(self: *Self) RuntimeError!Type {
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return switch (self.variant orelse return RuntimeError.InvalidSpirV) {
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.Variable => |v| v.type,
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.Constant => |c| c.type,
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else => RuntimeError.InvalidSpirV,
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};
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}
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pub fn getValue(self: *Self) RuntimeError!*Value {
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return switch (self.variant orelse return RuntimeError.InvalidSpirV) {
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.Variable => |*v| &v.value,
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.Constant => |*v| v,
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.Constant => |*c| &c.value,
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else => RuntimeError.InvalidSpirV,
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};
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}
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@@ -343,10 +365,18 @@ pub fn dupe(self: *const Self, allocator: std.mem.Allocator) RuntimeError!Self {
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.Variable => |v| break :blk .{
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.Variable = .{
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.storage_class = v.storage_class,
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.type_word = v.type_word,
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.type = v.type,
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.value = try v.value.dupe(allocator),
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},
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},
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.Constant => |c| break :blk .{ .Constant = try c.dupe(allocator) },
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.Constant => |c| break :blk .{
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.Constant = .{
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.type_word = c.type_word,
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.type = c.type,
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.value = try c.value.dupe(allocator),
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},
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},
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.Function => |f| break :blk .{
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.Function = .{
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.source_location = f.source_location,
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@@ -111,6 +111,7 @@ pub fn callEntryPoint(self: *Self, allocator: std.mem.Allocator, entry_point_ind
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}
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}
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self.it.did_jump = false; // To reset function jump
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while (self.it.nextOrNull()) |opcode_data| {
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const word_count = ((opcode_data & (~spv.SpvOpCodeMask)) >> spv.SpvWordCountShift) - 1;
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const opcode = (opcode_data & spv.SpvOpCodeMask);
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@@ -121,8 +122,13 @@ pub fn callEntryPoint(self: *Self, allocator: std.mem.Allocator, entry_point_ind
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try pfn(allocator, word_count, self);
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}
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}
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_ = it_tmp.skipN(word_count);
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self.it = it_tmp;
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if (!self.it.did_jump) {
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_ = it_tmp.skipN(word_count);
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self.it = it_tmp;
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} else {
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self.it.did_jump = false;
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_ = it_tmp.skip();
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}
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}
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//@import("pretty").print(allocator, self.results, .{
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@@ -9,11 +9,13 @@ const Self = @This();
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buffer: []const SpvWord,
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index: usize,
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did_jump: bool,
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pub fn init(buffer: []const SpvWord) Self {
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return .{
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.buffer = buffer,
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.index = 0,
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.did_jump = false,
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};
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}
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@@ -66,5 +68,6 @@ pub inline fn emitSourceLocation(self: *const Self) usize {
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pub inline fn jumpToSourceLocation(self: *Self, source_location: usize) bool {
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if (source_location > self.buffer.len) return false;
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self.index = source_location;
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self.did_jump = true;
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return true;
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}
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477
src/opcodes.zig
477
src/opcodes.zig
@@ -13,18 +13,149 @@ const SpvByte = spv.SpvByte;
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const SpvWord = spv.SpvWord;
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const SpvBool = spv.SpvBool;
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const MathType = enum {Float,
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const ValueType = enum {
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Float,
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SInt,
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UInt,
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};
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const MathOp = enum {Add,
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const MathOp = enum {
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Add,
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Sub,
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Mul,
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Div,
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Mod,
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};
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const CondOp = enum {
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Equal,
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NotEqual,
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Greater,
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GreaterEqual,
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Less,
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LessEqual,
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};
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fn CondEngine(comptime T: ValueType, comptime Op: CondOp) type {
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return struct {
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fn op(_: std.mem.Allocator, _: SpvWord, rt: *Runtime) RuntimeError!void {
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sw: switch ((rt.results[try rt.it.next()].variant orelse return RuntimeError.InvalidSpirV).Type) {
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.Vector => |v| continue :sw (rt.results[v.components_type_word].variant orelse return RuntimeError.InvalidSpirV).Type,
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.Bool => {},
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else => return RuntimeError.InvalidSpirV,
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}
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const value = try rt.results[try rt.it.next()].getValue();
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const op1_result = &rt.results[try rt.it.next()];
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const op1_type = try op1_result.getValueTypeWord();
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const op1_value = try op1_result.getValue();
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const op2_value = try rt.results[try rt.it.next()].getValue();
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const size = sw: switch ((rt.results[op1_type].variant orelse return RuntimeError.InvalidSpirV).Type) {
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.Vector => |v| continue :sw (rt.results[v.components_type_word].variant orelse return RuntimeError.InvalidSpirV).Type,
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.Float => |f| if (T == .Float) f.bit_length else return RuntimeError.InvalidSpirV,
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.Int => |i| if (T == .SInt or T == .UInt) i.bit_length else return RuntimeError.InvalidSpirV,
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else => return RuntimeError.InvalidSpirV,
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};
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const operator = struct {
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fn operation(comptime TT: type, op1: TT, op2: TT) RuntimeError!bool {
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return switch (Op) {
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.Equal => op1 == op2,
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.NotEqual => op1 != op2,
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.Greater => op1 > op2,
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.GreaterEqual => op1 >= op2,
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.Less => op1 < op2,
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.LessEqual => op1 <= op2,
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};
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}
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fn process(bit_count: SpvWord, v: *Result.Value, op1_v: *const Result.Value, op2_v: *const Result.Value) RuntimeError!void {
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switch (bit_count) {
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inline 8, 16, 32, 64 => |i| {
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if (i == 8 and T == .Float) { // No f8
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return RuntimeError.InvalidSpirV;
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}
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v.Bool = try operation(
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getValuePrimitiveFieldType(T, i),
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(try getValuePrimitiveField(T, i, @constCast(op1_v))).*,
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(try getValuePrimitiveField(T, i, @constCast(op2_v))).*,
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);
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},
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else => return RuntimeError.InvalidSpirV,
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}
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}
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};
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switch (value.*) {
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.Bool => try operator.process(size, value, op1_value, op2_value),
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.Vector => |vec| for (vec, op1_value.Vector, op2_value.Vector) |*val, op1_v, op2_v| try operator.process(size, val, &op1_v, &op2_v),
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else => return RuntimeError.InvalidSpirV,
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}
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}
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};
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}
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fn ConversionEngine(comptime From: ValueType, comptime To: ValueType) type {
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return struct {
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fn op(_: std.mem.Allocator, _: SpvWord, rt: *Runtime) RuntimeError!void {
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const target_type = (rt.results[try rt.it.next()].variant orelse return RuntimeError.InvalidSpirV).Type;
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const value = try rt.results[try rt.it.next()].getValue();
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const op_result = &rt.results[try rt.it.next()];
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const op_type = try op_result.getValueTypeWord();
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const op_value = try op_result.getValue();
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const from_size = sw: switch ((rt.results[op_type].variant orelse return RuntimeError.InvalidSpirV).Type) {
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.Vector => |v| continue :sw (rt.results[v.components_type_word].variant orelse return RuntimeError.InvalidSpirV).Type,
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.Float => |f| if (From == .Float) f.bit_length else return RuntimeError.InvalidSpirV,
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.Int => |i| if (From == .SInt or From == .UInt) i.bit_length else return RuntimeError.InvalidSpirV,
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else => return RuntimeError.InvalidSpirV,
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};
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const to_size = sw: switch (target_type) {
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.Vector => |v| continue :sw (rt.results[v.components_type_word].variant orelse return RuntimeError.InvalidSpirV).Type,
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.Float => |f| if (To == .Float) f.bit_length else return RuntimeError.InvalidSpirV,
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.Int => |i| if (To == .SInt or To == .UInt) i.bit_length else return RuntimeError.InvalidSpirV,
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else => return RuntimeError.InvalidSpirV,
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};
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const operator = struct {
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fn process(from_bit_count: SpvWord, to_bit_count: SpvWord, to: *Result.Value, from: *Result.Value) RuntimeError!void {
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switch (to_bit_count) {
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inline 8, 16, 32, 64 => |i| {
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if (i == 8 and To == .Float) {
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return RuntimeError.InvalidSpirV; // No f8
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}
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const ToType = getValuePrimitiveFieldType(To, i);
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(try getValuePrimitiveField(To, i, to)).* = std.math.lossyCast(
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ToType,
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switch (from_bit_count) {
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inline 8, 16, 32, 64 => |j| blk: {
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if (j == 8 and From == .Float) {
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return RuntimeError.InvalidSpirV; // Same
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}
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break :blk (try getValuePrimitiveField(From, j, from)).*;
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},
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else => return RuntimeError.InvalidSpirV,
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},
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);
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},
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else => return RuntimeError.InvalidSpirV,
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}
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}
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};
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switch (value.*) {
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.Float => if (To == .Float) try operator.process(from_size, to_size, value, op_value) else return RuntimeError.InvalidSpirV,
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.Int => if (To == .SInt or To == .UInt) try operator.process(from_size, to_size, value, op_value) else return RuntimeError.InvalidSpirV,
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.Vector => |vec| for (vec, op_value.Vector) |*val, *op_v| try operator.process(from_size, to_size, val, op_v),
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else => return RuntimeError.InvalidSpirV,
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}
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}
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};
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}
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pub const OpCodeFunc = *const fn (std.mem.Allocator, SpvWord, *Runtime) RuntimeError!void;
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pub const SetupDispatcher = block: {
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@@ -36,14 +167,42 @@ pub const SetupDispatcher = block: {
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.Decorate = opDecorate,
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.EntryPoint = opEntryPoint,
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.ExecutionMode = opExecutionMode,
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.FAdd = autoSetupConstant,
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.FDiv = autoSetupConstant,
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.FMod = autoSetupConstant,
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.FMul = autoSetupConstant,
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.FOrdEqual = autoSetupConstant,
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.FOrdGreaterThan = autoSetupConstant,
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.FOrdGreaterThanEqual = autoSetupConstant,
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.FOrdLessThan = autoSetupConstant,
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.FOrdLessThanEqual = autoSetupConstant,
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.FOrdNotEqual = autoSetupConstant,
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.FSub = autoSetupConstant,
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.FUnordEqual = autoSetupConstant,
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.FUnordGreaterThan = autoSetupConstant,
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.FUnordGreaterThanEqual = autoSetupConstant,
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.FUnordLessThan = autoSetupConstant,
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.FUnordLessThanEqual = autoSetupConstant,
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.FUnordNotEqual = autoSetupConstant,
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.Function = opFunction,
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.FunctionEnd = opFunctionEnd,
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.IAdd = autoSetupConstant,
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.IEqual = autoSetupConstant,
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.IMul = autoSetupConstant,
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.INotEqual = autoSetupConstant,
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.ISub = autoSetupConstant,
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.Label = opLabel,
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.Load = autoSetupConstant,
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.MemberDecorate = opDecorateMember,
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.MemberName = opMemberName,
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.MemoryModel = opMemoryModel,
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.Name = opName,
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.SDiv = autoSetupConstant,
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.SGreaterThan = autoSetupConstant,
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.SGreaterThanEqual = autoSetupConstant,
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.SLessThan = autoSetupConstant,
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.SLessThanEqual = autoSetupConstant,
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.SMod = autoSetupConstant,
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.Source = opSource,
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.SourceExtension = opSourceExtension,
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.TypeBool = opTypeBool,
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@@ -55,19 +214,26 @@ pub const SetupDispatcher = block: {
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.TypeStruct = opTypeStruct,
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.TypeVector = opTypeVector,
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.TypeVoid = opTypeVoid,
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.Variable = opVariable,
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.FAdd = autoSetupConstant,
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.FDiv = autoSetupConstant,
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.FMod = autoSetupConstant,
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.FMul = autoSetupConstant,
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.FSub = autoSetupConstant,
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.IAdd = autoSetupConstant,
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.IMul = autoSetupConstant,
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.ISub = autoSetupConstant,
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.SDiv = autoSetupConstant,
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.SMod = autoSetupConstant,
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.UDiv = autoSetupConstant,
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.UGreaterThan = autoSetupConstant,
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.UGreaterThanEqual = autoSetupConstant,
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.ULessThan = autoSetupConstant,
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.ULessThanEqual = autoSetupConstant,
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.UMod = autoSetupConstant,
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.Variable = opVariable,
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.ConvertFToU = autoSetupConstant,
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.ConvertFToS = autoSetupConstant,
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.ConvertSToF = autoSetupConstant,
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.ConvertUToF = autoSetupConstant,
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.UConvert = autoSetupConstant,
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.SConvert = autoSetupConstant,
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.FConvert = autoSetupConstant,
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.QuantizeToF16 = autoSetupConstant,
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.ConvertPtrToU = autoSetupConstant,
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.SatConvertSToU = autoSetupConstant,
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.SatConvertUToS = autoSetupConstant,
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.ConvertUToPtr = autoSetupConstant,
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});
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};
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@@ -75,26 +241,122 @@ pub const RuntimeDispatcher = block: {
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@setEvalBranchQuota(65535);
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break :block std.EnumMap(spv.SpvOp, OpCodeFunc).init(.{
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.AccessChain = opAccessChain,
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.Branch = opBranch,
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.BranchConditional = opBranchConditional,
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.CompositeConstruct = opCompositeConstruct,
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.CompositeExtract = opCompositeExtract,
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.FAdd = maths(.Float, .Add).op,
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.FDiv = maths(.Float, .Div).op,
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.FMod = maths(.Float, .Mod).op,
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.FMul = maths(.Float, .Mul).op,
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.FSub = maths(.Float, .Sub).op,
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.IAdd = maths(.SInt, .Add).op,
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.IMul = maths(.SInt, .Mul).op,
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.ISub = maths(.SInt, .Sub).op,
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.FAdd = MathEngine(.Float, .Add).op,
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.FDiv = MathEngine(.Float, .Div).op,
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.FMod = MathEngine(.Float, .Mod).op,
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.FMul = MathEngine(.Float, .Mul).op,
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.FOrdEqual = CondEngine(.Float, .Equal).op,
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.FOrdGreaterThan = CondEngine(.Float, .Greater).op,
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.FOrdGreaterThanEqual = CondEngine(.Float, .GreaterEqual).op,
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.FOrdLessThan = CondEngine(.Float, .Less).op,
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.FOrdLessThanEqual = CondEngine(.Float, .LessEqual).op,
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.FOrdNotEqual = CondEngine(.Float, .NotEqual).op,
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.FSub = MathEngine(.Float, .Sub).op,
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.FUnordEqual = CondEngine(.Float, .Equal).op,
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.FUnordGreaterThan = CondEngine(.Float, .Greater).op,
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.FUnordGreaterThanEqual = CondEngine(.Float, .GreaterEqual).op,
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.FUnordLessThan = CondEngine(.Float, .Less).op,
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.FUnordLessThanEqual = CondEngine(.Float, .LessEqual).op,
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.FUnordNotEqual = CondEngine(.Float, .NotEqual).op,
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.IAdd = MathEngine(.SInt, .Add).op,
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.IEqual = CondEngine(.SInt, .Equal).op,
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.IMul = MathEngine(.SInt, .Mul).op,
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.INotEqual = CondEngine(.SInt, .NotEqual).op,
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.ISub = MathEngine(.SInt, .Sub).op,
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.Load = opLoad,
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.Return = opReturn,
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.SDiv = maths(.SInt, .Div).op,
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.SMod = maths(.SInt, .Mod).op,
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.SDiv = MathEngine(.SInt, .Div).op,
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.SGreaterThan = CondEngine(.SInt, .Greater).op,
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.SGreaterThanEqual = CondEngine(.SInt, .GreaterEqual).op,
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.SLessThan = CondEngine(.SInt, .Less).op,
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.SLessThanEqual = CondEngine(.SInt, .LessEqual).op,
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.SMod = MathEngine(.SInt, .Mod).op,
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.Store = opStore,
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.UDiv = maths(.UInt, .Div).op,
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.UMod = maths(.UInt, .Mod).op,
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.UDiv = MathEngine(.UInt, .Div).op,
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.UGreaterThan = CondEngine(.UInt, .Greater).op,
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.UGreaterThanEqual = CondEngine(.UInt, .GreaterEqual).op,
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.ULessThan = CondEngine(.UInt, .Less).op,
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.ULessThanEqual = CondEngine(.UInt, .LessEqual).op,
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.UMod = MathEngine(.UInt, .Mod).op,
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.ConvertFToU = ConversionEngine(.Float, .UInt).op,
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.ConvertFToS = ConversionEngine(.Float, .SInt).op,
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.ConvertSToF = ConversionEngine(.SInt, .Float).op,
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.ConvertUToF = ConversionEngine(.UInt, .Float).op,
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.UConvert = ConversionEngine(.UInt, .UInt).op,
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.SConvert = ConversionEngine(.SInt, .SInt).op,
|
||||
.FConvert = ConversionEngine(.Float, .Float).op,
|
||||
//.QuantizeToF16 = autoSetupConstant,
|
||||
//.ConvertPtrToU = autoSetupConstant,
|
||||
//.SatConvertSToU = autoSetupConstant,
|
||||
//.SatConvertUToS = autoSetupConstant,
|
||||
//.ConvertUToPtr = autoSetupConstant,
|
||||
});
|
||||
};
|
||||
|
||||
fn MathEngine(comptime T: ValueType, comptime Op: MathOp) type {
|
||||
return struct {
|
||||
fn op(_: std.mem.Allocator, _: SpvWord, rt: *Runtime) RuntimeError!void {
|
||||
const target_type = (rt.results[try rt.it.next()].variant orelse return RuntimeError.InvalidSpirV).Type;
|
||||
const value = try rt.results[try rt.it.next()].getValue();
|
||||
const op1_value = try rt.results[try rt.it.next()].getValue();
|
||||
const op2_value = try rt.results[try rt.it.next()].getValue();
|
||||
|
||||
const size = sw: switch (target_type) {
|
||||
.Vector => |v| continue :sw (rt.results[v.components_type_word].variant orelse return RuntimeError.InvalidSpirV).Type,
|
||||
.Float => |f| if (T == .Float) f.bit_length else return RuntimeError.InvalidSpirV,
|
||||
.Int => |i| if (T == .SInt or T == .UInt) i.bit_length else return RuntimeError.InvalidSpirV,
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
};
|
||||
|
||||
const operator = struct {
|
||||
fn operation(comptime TT: type, op1: TT, op2: TT) RuntimeError!TT {
|
||||
return switch (Op) {
|
||||
.Add => if (@typeInfo(TT) == .int) @addWithOverflow(op1, op2)[0] else op1 + op2,
|
||||
.Sub => if (@typeInfo(TT) == .int) @subWithOverflow(op1, op2)[0] else op1 - op2,
|
||||
.Mul => if (@typeInfo(TT) == .int) @mulWithOverflow(op1, op2)[0] else op1 * op2,
|
||||
.Div => blk: {
|
||||
if (op2 == 0) return RuntimeError.DivisionByZero;
|
||||
break :blk if (@typeInfo(TT) == .int) @divTrunc(op1, op2) else op1 / op2;
|
||||
},
|
||||
.Mod => blk: {
|
||||
if (op2 == 0) return RuntimeError.DivisionByZero;
|
||||
break :blk @mod(op1, op2);
|
||||
},
|
||||
};
|
||||
}
|
||||
|
||||
fn process(bit_count: SpvWord, v: *Result.Value, op1_v: *const Result.Value, op2_v: *const Result.Value) RuntimeError!void {
|
||||
switch (bit_count) {
|
||||
inline 8, 16, 32, 64 => |i| {
|
||||
if (i == 8 and T == .Float) { // No f8
|
||||
return RuntimeError.InvalidSpirV;
|
||||
}
|
||||
(try getValuePrimitiveField(T, i, v)).* = try operation(
|
||||
getValuePrimitiveFieldType(T, i),
|
||||
(try getValuePrimitiveField(T, i, @constCast(op1_v))).*,
|
||||
(try getValuePrimitiveField(T, i, @constCast(op2_v))).*,
|
||||
);
|
||||
},
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
}
|
||||
}
|
||||
};
|
||||
|
||||
switch (value.*) {
|
||||
.Float => if (T == .Float) try operator.process(size, value, op1_value, op2_value) else return RuntimeError.InvalidSpirV,
|
||||
.Int => if (T == .SInt or T == .UInt) try operator.process(size, value, op1_value, op2_value) else return RuntimeError.InvalidSpirV,
|
||||
.Vector => |vec| for (vec, op1_value.Vector, op2_value.Vector) |*val, op1_v, op2_v| try operator.process(size, val, &op1_v, &op2_v),
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
}
|
||||
}
|
||||
};
|
||||
}
|
||||
|
||||
fn addDecoration(allocator: std.mem.Allocator, rt: *Runtime, target: SpvWord, decoration_type: spv.SpvDecoration, member: ?SpvWord) RuntimeError!void {
|
||||
var decoration = rt.mod.results[target].decorations.addOne(allocator) catch return RuntimeError.OutOfMemory;
|
||||
decoration.rtype = decoration_type;
|
||||
@@ -156,81 +418,29 @@ fn copyValue(dst: *Result.Value, src: *const Result.Value) void {
|
||||
dst.* = src.*;
|
||||
}
|
||||
}
|
||||
fn maths(comptime T: MathType, comptime Op: MathOp) type {
|
||||
return struct {
|
||||
fn op(_: std.mem.Allocator, _: SpvWord, rt: *Runtime) RuntimeError!void {
|
||||
const target_type = (rt.results[try rt.it.next()].variant orelse return RuntimeError.InvalidSpirV).Type;
|
||||
const value = try rt.results[try rt.it.next()].getValue();
|
||||
const op1_value = try rt.results[try rt.it.next()].getValue();
|
||||
const op2_value = try rt.results[try rt.it.next()].getValue();
|
||||
|
||||
const size = sw: switch (target_type) {
|
||||
.Vector => |v| continue :sw (rt.results[v.components_type_word].variant orelse return RuntimeError.InvalidSpirV).Type,
|
||||
.Float => |f| if (T == .Float) f.bit_length else return RuntimeError.InvalidSpirV,
|
||||
.Int => |i| if (T == .SInt or T == .UInt) i.bit_length else return RuntimeError.InvalidSpirV,
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
};
|
||||
fn getValuePrimitiveField(comptime T: ValueType, comptime BitCount: SpvWord, v: *Result.Value) RuntimeError!*getValuePrimitiveFieldType(T, BitCount) {
|
||||
return switch (T) {
|
||||
.Float => switch (BitCount) {
|
||||
inline 16, 32, 64 => |i| &@field(v.Float, std.fmt.comptimePrint("float{}", .{i})),
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
.SInt => switch (BitCount) {
|
||||
inline 8, 16, 32, 64 => |i| &@field(v.Int, std.fmt.comptimePrint("sint{}", .{i})),
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
.UInt => switch (BitCount) {
|
||||
inline 8, 16, 32, 64 => |i| &@field(v.Int, std.fmt.comptimePrint("uint{}", .{i})),
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
};
|
||||
}
|
||||
|
||||
const operator = struct {
|
||||
fn operation(comptime TT: type, op1: TT, op2: TT) RuntimeError!TT {
|
||||
return switch (Op) {
|
||||
.Add => if (@typeInfo(TT) == .int) @addWithOverflow(op1, op2)[0] else op1 + op2,
|
||||
.Sub => if (@typeInfo(TT) == .int) @subWithOverflow(op1, op2)[0] else op1 - op2,
|
||||
.Mul => if (@typeInfo(TT) == .int) @mulWithOverflow(op1, op2)[0] else op1 * op2,
|
||||
.Div => blk: {
|
||||
if (op2 == 0) return RuntimeError.DivisionByZero;
|
||||
break :blk if (@typeInfo(TT) == .int) @divTrunc(op1, op2) else op1 / op2;
|
||||
},
|
||||
.Mod => blk: {
|
||||
if (op2 == 0) return RuntimeError.DivisionByZero;
|
||||
break :blk @mod(op1, op2);
|
||||
},
|
||||
};
|
||||
}
|
||||
|
||||
fn process(bit_count: SpvWord, v: *Result.Value, op1_v: *const Result.Value, op2_v: *const Result.Value) RuntimeError!void {
|
||||
switch (T) {
|
||||
.Float => switch (bit_count) {
|
||||
inline 16, 32, 64 => |i| @field(v.Float, std.fmt.comptimePrint("float{}", .{i})) = try operation(
|
||||
@Type(.{ .float = .{ .bits = i } }),
|
||||
@field(op1_v.Float, std.fmt.comptimePrint("float{}", .{i})),
|
||||
@field(op2_v.Float, std.fmt.comptimePrint("float{}", .{i})),
|
||||
),
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
.SInt => switch (bit_count) {
|
||||
inline 8, 16, 32, 64 => |i| @field(v.Int, std.fmt.comptimePrint("sint{}", .{i})) = try operation(
|
||||
@Type(.{ .int = .{
|
||||
.signedness = .signed,
|
||||
.bits = i,
|
||||
} }),
|
||||
@field(op1_v.Int, std.fmt.comptimePrint("sint{}", .{i})),
|
||||
@field(op2_v.Int, std.fmt.comptimePrint("sint{}", .{i})),
|
||||
),
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
.UInt => switch (bit_count) {
|
||||
inline 8, 16, 32, 64 => |i| @field(v.Int, std.fmt.comptimePrint("uint{}", .{i})) = try operation(
|
||||
@Type(.{ .int = .{
|
||||
.signedness = .unsigned,
|
||||
.bits = i,
|
||||
} }),
|
||||
@field(op1_v.Int, std.fmt.comptimePrint("uint{}", .{i})),
|
||||
@field(op2_v.Int, std.fmt.comptimePrint("uint{}", .{i})),
|
||||
),
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
}
|
||||
}
|
||||
};
|
||||
|
||||
switch (value.*) {
|
||||
.Float => if (T == .Float) try operator.process(size, value, op1_value, op2_value) else return RuntimeError.InvalidSpirV,
|
||||
.Int => if (T == .SInt or T == .UInt) try operator.process(size, value, op1_value, op2_value) else return RuntimeError.InvalidSpirV,
|
||||
.Vector => |vec| for (vec, op1_value.Vector, op2_value.Vector) |*val, op1_v, op2_v| try operator.process(size, val, &op1_v, &op2_v),
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
}
|
||||
}
|
||||
fn getValuePrimitiveFieldType(comptime T: ValueType, comptime BitCount: SpvWord) type {
|
||||
return switch (T) {
|
||||
.Float => std.meta.Float(BitCount),
|
||||
.SInt => std.meta.Int(.signed, BitCount),
|
||||
.UInt => std.meta.Int(.unsigned, BitCount),
|
||||
};
|
||||
}
|
||||
|
||||
@@ -246,7 +456,7 @@ fn opAccessChain(_: std.mem.Allocator, word_count: SpvWord, rt: *Runtime) Runtim
|
||||
for (0..index_count) |_| {
|
||||
const member = &rt.results[try rt.it.next()];
|
||||
const member_value = switch (member.variant orelse return RuntimeError.InvalidSpirV) {
|
||||
.Constant => |c| &c,
|
||||
.Constant => |c| &c.value,
|
||||
.Variable => |v| &v.value,
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
};
|
||||
@@ -281,6 +491,31 @@ fn opAccessChain(_: std.mem.Allocator, word_count: SpvWord, rt: *Runtime) Runtim
|
||||
};
|
||||
}
|
||||
|
||||
fn opBranch(_: std.mem.Allocator, _: SpvWord, rt: *Runtime) RuntimeError!void {
|
||||
const id = try rt.it.next();
|
||||
_ = rt.it.jumpToSourceLocation(switch (rt.results[id].variant orelse return RuntimeError.InvalidSpirV) {
|
||||
.Label => |l| l.source_location,
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
});
|
||||
}
|
||||
|
||||
fn opBranchConditional(_: std.mem.Allocator, _: SpvWord, rt: *Runtime) RuntimeError!void {
|
||||
const cond_value = try rt.results[try rt.it.next()].getValue();
|
||||
const true_branch = switch (rt.results[try rt.it.next()].variant orelse return RuntimeError.InvalidSpirV) {
|
||||
.Label => |l| l.source_location,
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
};
|
||||
const false_branch = switch (rt.results[try rt.it.next()].variant orelse return RuntimeError.InvalidSpirV) {
|
||||
.Label => |l| l.source_location,
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
};
|
||||
if (cond_value.Bool) {
|
||||
_ = rt.it.jumpToSourceLocation(true_branch);
|
||||
} else {
|
||||
_ = rt.it.jumpToSourceLocation(false_branch);
|
||||
}
|
||||
}
|
||||
|
||||
fn opCapability(_: std.mem.Allocator, _: SpvWord, rt: *Runtime) RuntimeError!void {
|
||||
rt.mod.capabilities.insert(try rt.it.nextAs(spv.SpvCapability));
|
||||
}
|
||||
@@ -290,33 +525,40 @@ fn opCompositeConstruct(_: std.mem.Allocator, word_count: SpvWord, rt: *Runtime)
|
||||
const id = try rt.it.next();
|
||||
|
||||
const index_count = word_count - 2;
|
||||
const target = (rt.results[id].variant orelse return RuntimeError.InvalidSpirV).Constant.getCompositeDataOrNull() orelse return RuntimeError.InvalidSpirV;
|
||||
const target = (rt.results[id].variant orelse return RuntimeError.InvalidSpirV).Constant.value.getCompositeDataOrNull() orelse return RuntimeError.InvalidSpirV;
|
||||
for (target[0..index_count]) |*elem| {
|
||||
const value = (rt.results[try rt.it.next()].variant orelse return RuntimeError.InvalidSpirV).Constant;
|
||||
const value = (rt.results[try rt.it.next()].variant orelse return RuntimeError.InvalidSpirV).Constant.value;
|
||||
elem.* = value;
|
||||
}
|
||||
}
|
||||
|
||||
fn opCompositeExtract(allocator: std.mem.Allocator, word_count: SpvWord, rt: *Runtime) RuntimeError!void {
|
||||
_ = rt.it.skip();
|
||||
const res_type = try rt.it.next();
|
||||
const id = try rt.it.next();
|
||||
const composite_id = try rt.it.next();
|
||||
|
||||
const index_count = word_count - 3;
|
||||
var composite = (rt.results[composite_id].variant orelse return RuntimeError.InvalidSpirV).Constant;
|
||||
var composite = (rt.results[composite_id].variant orelse return RuntimeError.InvalidSpirV).Constant.value;
|
||||
for (0..index_count) |_| {
|
||||
const member_id = try rt.it.next();
|
||||
composite = (composite.getCompositeDataOrNull() orelse return RuntimeError.InvalidSpirV)[member_id];
|
||||
}
|
||||
rt.results[id].variant = .{
|
||||
.Constant = try composite.dupe(allocator),
|
||||
.Constant = .{
|
||||
.type_word = res_type,
|
||||
.type = switch (rt.results[res_type].variant orelse return RuntimeError.InvalidSpirV) {
|
||||
.Type => |t| @as(Result.Type, t),
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
.value = try composite.dupe(allocator),
|
||||
},
|
||||
};
|
||||
}
|
||||
|
||||
fn opConstant(allocator: std.mem.Allocator, word_count: SpvWord, rt: *Runtime) RuntimeError!void {
|
||||
const target = try setupConstant(allocator, rt);
|
||||
// No check on null and sizes, absolute trust in this shit
|
||||
switch (target.variant.?.Constant) {
|
||||
switch (target.variant.?.Constant.value) {
|
||||
.Int => |*i| {
|
||||
if (word_count - 2 != 1) {
|
||||
const low = @as(u64, try rt.it.next());
|
||||
@@ -442,13 +684,13 @@ fn opLoad(_: std.mem.Allocator, _: SpvWord, rt: *Runtime) RuntimeError!void {
|
||||
copyValue(
|
||||
switch (rt.results[id].variant orelse return RuntimeError.InvalidSpirV) {
|
||||
.Variable => |*v| &v.value,
|
||||
.Constant => |*c| c,
|
||||
.Constant => |*c| &c.value,
|
||||
.AccessChain => |*a| &a.value,
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
switch (rt.results[ptr_id].variant orelse return RuntimeError.InvalidSpirV) {
|
||||
.Variable => |v| &v.value,
|
||||
.Constant => |c| &c,
|
||||
.Constant => |c| &c.value,
|
||||
.AccessChain => |a| &a.value,
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
@@ -540,13 +782,13 @@ fn opStore(_: std.mem.Allocator, _: SpvWord, rt: *Runtime) RuntimeError!void {
|
||||
copyValue(
|
||||
switch (rt.results[ptr_id].variant orelse return RuntimeError.InvalidSpirV) {
|
||||
.Variable => |*v| &v.value,
|
||||
.Constant => |*c| c,
|
||||
.Constant => |*c| &c.value,
|
||||
.AccessChain => |*a| &a.value,
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
switch (rt.results[val_id].variant orelse return RuntimeError.InvalidSpirV) {
|
||||
.Variable => |v| &v.value,
|
||||
.Constant => |c| &c,
|
||||
.Constant => |c| &c.value,
|
||||
.AccessChain => |a| &a.value,
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
@@ -716,6 +958,11 @@ fn opVariable(allocator: std.mem.Allocator, word_count: SpvWord, rt: *Runtime) R
|
||||
target.variant = .{
|
||||
.Variable = .{
|
||||
.storage_class = storage_class,
|
||||
.type_word = var_type,
|
||||
.type = switch (resolved.variant orelse return RuntimeError.InvalidSpirV) {
|
||||
.Type => |t| @as(Result.Type, t),
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
.value = try Result.initValue(allocator, member_count, rt.mod.results, resolved),
|
||||
},
|
||||
};
|
||||
@@ -761,7 +1008,15 @@ fn setupConstant(allocator: std.mem.Allocator, rt: *Runtime) RuntimeError!*Resul
|
||||
if (member_count == 0) {
|
||||
return RuntimeError.InvalidSpirV;
|
||||
}
|
||||
target.variant = .{ .Constant = try Result.initValue(allocator, member_count, rt.mod.results, resolved) };
|
||||
target.variant = .{
|
||||
.Constant = .{
|
||||
.value = try Result.initValue(allocator, member_count, rt.mod.results, resolved),
|
||||
.type_word = res_type,
|
||||
.type = switch (resolved.variant orelse return RuntimeError.InvalidSpirV) {
|
||||
.Type => |t| @as(Result.Type, t),
|
||||
else => return RuntimeError.InvalidSpirV,
|
||||
},
|
||||
},
|
||||
};
|
||||
return target;
|
||||
}
|
||||
|
||||
|
||||
Reference in New Issue
Block a user