| ... | @@ -22,6 +22,8 @@ const Liveness = @import("../../Liveness.zig"); | ... | @@ -22,6 +22,8 @@ const Liveness = @import("../../Liveness.zig"); |
| 22 | const Mir = @import("Mir.zig"); | 22 | const Mir = @import("Mir.zig"); |
| 23 | const Module = @import("../../Module.zig"); | 23 | const Module = @import("../../Module.zig"); |
| 24 | const RegisterManagerFn = @import("../../register_manager.zig").RegisterManager; | 24 | const RegisterManagerFn = @import("../../register_manager.zig").RegisterManager; |
| | 25 | const RegisterManager = RegisterManagerFn(Self, Register, &allocatable_registers); |
| | 26 | const RegisterLock = RegisterManager.RegisterLock; |
| 25 | const Target = std.Target; | 27 | const Target = std.Target; |
| 26 | const Type = @import("../../type.zig").Type; | 28 | const Type = @import("../../type.zig").Type; |
| 27 | const TypedValue = @import("../../TypedValue.zig"); | 29 | const TypedValue = @import("../../TypedValue.zig"); |
| ... | @@ -42,8 +44,6 @@ const InnerError = error{ | ... | @@ -42,8 +44,6 @@ const InnerError = error{ |
| 42 | OutOfRegisters, | 44 | OutOfRegisters, |
| 43 | }; | 45 | }; |
| 44 | | 46 | |
| 45 | const RegisterManager = RegisterManagerFn(Self, Register, &allocatable_registers); | | |
| 46 | | | |
| 47 | gpa: Allocator, | 47 | gpa: Allocator, |
| 48 | air: Air, | 48 | air: Air, |
| 49 | liveness: Liveness, | 49 | liveness: Liveness, |
| ... | @@ -191,60 +191,12 @@ pub const MCValue = union(enum) { | ... | @@ -191,60 +191,12 @@ pub const MCValue = union(enum) { |
| 191 | }; | 191 | }; |
| 192 | } | 192 | } |
| 193 | | 193 | |
| 194 | fn usesCompareFlags(mcv: MCValue) bool { | | |
| 195 | return switch (mcv) { | | |
| 196 | .compare_flags_unsigned, | | |
| 197 | .compare_flags_signed, | | |
| 198 | .register_overflow_unsigned, | | |
| 199 | .register_overflow_signed, | | |
| 200 | => true, | | |
| 201 | else => false, | | |
| 202 | }; | | |
| 203 | } | | |
| 204 | | | |
| 205 | fn isRegister(mcv: MCValue) bool { | 194 | fn isRegister(mcv: MCValue) bool { |
| 206 | return switch (mcv) { | 195 | return switch (mcv) { |
| 207 | .register, | 196 | .register => true, |
| 208 | .register_overflow_unsigned, | | |
| 209 | .register_overflow_signed, | | |
| 210 | => true, | | |
| 211 | else => false, | 197 | else => false, |
| 212 | }; | 198 | }; |
| 213 | } | 199 | } |
| 214 | | | |
| 215 | fn freezeIfRegister(mcv: MCValue, mgr: *RegisterManager) void { | | |
| 216 | switch (mcv) { | | |
| 217 | .register, | | |
| 218 | .register_overflow_signed, | | |
| 219 | .register_overflow_unsigned, | | |
| 220 | => |reg| { | | |
| 221 | mgr.freezeRegs(&.{reg}); | | |
| 222 | }, | | |
| 223 | else => {}, | | |
| 224 | } | | |
| 225 | } | | |
| 226 | | | |
| 227 | fn unfreezeIfRegister(mcv: MCValue, mgr: *RegisterManager) void { | | |
| 228 | switch (mcv) { | | |
| 229 | .register, | | |
| 230 | .register_overflow_signed, | | |
| 231 | .register_overflow_unsigned, | | |
| 232 | => |reg| { | | |
| 233 | mgr.unfreezeRegs(&.{reg}); | | |
| 234 | }, | | |
| 235 | else => {}, | | |
| 236 | } | | |
| 237 | } | | |
| 238 | | | |
| 239 | fn asRegister(mcv: MCValue) ?Register { | | |
| 240 | return switch (mcv) { | | |
| 241 | .register, | | |
| 242 | .register_overflow_signed, | | |
| 243 | .register_overflow_unsigned, | | |
| 244 | => |reg| reg, | | |
| 245 | else => null, | | |
| 246 | }; | | |
| 247 | } | | |
| 248 | }; | 200 | }; |
| 249 | | 201 | |
| 250 | const Branch = struct { | 202 | const Branch = struct { |
| ... | @@ -819,7 +771,7 @@ fn genBody(self: *Self, body: []const Air.Inst.Index) InnerError!void { | ... | @@ -819,7 +771,7 @@ fn genBody(self: *Self, body: []const Air.Inst.Index) InnerError!void { |
| 819 | // zig fmt: on | 771 | // zig fmt: on |
| 820 | } | 772 | } |
| 821 | | 773 | |
| 822 | assert(!self.register_manager.frozenRegsExist()); | 774 | assert(!self.register_manager.lockedRegsExist()); |
| 823 | | 775 | |
| 824 | if (std.debug.runtime_safety) { | 776 | if (std.debug.runtime_safety) { |
| 825 | if (self.air_bookkeeping < old_air_bookkeeping + 1) { | 777 | if (self.air_bookkeeping < old_air_bookkeeping + 1) { |
| ... | @@ -876,15 +828,21 @@ fn finishAir(self: *Self, inst: Air.Inst.Index, result: MCValue, operands: [Live | ... | @@ -876,15 +828,21 @@ fn finishAir(self: *Self, inst: Air.Inst.Index, result: MCValue, operands: [Live |
| 876 | const branch = &self.branch_stack.items[self.branch_stack.items.len - 1]; | 828 | const branch = &self.branch_stack.items[self.branch_stack.items.len - 1]; |
| 877 | branch.inst_table.putAssumeCapacityNoClobber(inst, result); | 829 | branch.inst_table.putAssumeCapacityNoClobber(inst, result); |
| 878 | | 830 | |
| 879 | if (result.asRegister()) |reg| { | 831 | switch (result) { |
| 880 | // In some cases (such as bitcast), an operand | 832 | .register, |
| 881 | // may be the same MCValue as the result. If | 833 | .register_overflow_signed, |
| 882 | // that operand died and was a register, it | 834 | .register_overflow_unsigned, |
| 883 | // was freed by processDeath. We have to | 835 | => |reg| { |
| 884 | // "re-allocate" the register. | 836 | // In some cases (such as bitcast), an operand |
| 885 | if (self.register_manager.isRegFree(reg)) { | 837 | // may be the same MCValue as the result. If |
| 886 | self.register_manager.getRegAssumeFree(reg, inst); | 838 | // that operand died and was a register, it |
| 887 | } | 839 | // was freed by processDeath. We have to |
| | 840 | // "re-allocate" the register. |
| | 841 | if (self.register_manager.isRegFree(reg)) { |
| | 842 | self.register_manager.getRegAssumeFree(reg, inst); |
| | 843 | } |
| | 844 | }, |
| | 845 | else => {}, |
| 888 | } | 846 | } |
| 889 | } | 847 | } |
| 890 | self.finishAirBookkeeping(); | 848 | self.finishAirBookkeeping(); |
| ... | @@ -955,7 +913,15 @@ pub fn spillInstruction(self: *Self, reg: Register, inst: Air.Inst.Index) !void | ... | @@ -955,7 +913,15 @@ pub fn spillInstruction(self: *Self, reg: Register, inst: Air.Inst.Index) !void |
| 955 | const stack_mcv = try self.allocRegOrMem(inst, false); | 913 | const stack_mcv = try self.allocRegOrMem(inst, false); |
| 956 | log.debug("spilling {d} to stack mcv {any}", .{ inst, stack_mcv }); | 914 | log.debug("spilling {d} to stack mcv {any}", .{ inst, stack_mcv }); |
| 957 | const reg_mcv = self.getResolvedInstValue(inst); | 915 | const reg_mcv = self.getResolvedInstValue(inst); |
| 958 | assert(reg.to64() == reg_mcv.asRegister().?.to64()); | 916 | switch (reg_mcv) { |
| | 917 | .register, |
| | 918 | .register_overflow_unsigned, |
| | 919 | .register_overflow_signed, |
| | 920 | => |other| { |
| | 921 | assert(reg.to64() == other.to64()); |
| | 922 | }, |
| | 923 | else => {}, |
| | 924 | } |
| 959 | const branch = &self.branch_stack.items[self.branch_stack.items.len - 1]; | 925 | const branch = &self.branch_stack.items[self.branch_stack.items.len - 1]; |
| 960 | try branch.inst_table.put(self.gpa, inst, stack_mcv); | 926 | try branch.inst_table.put(self.gpa, inst, stack_mcv); |
| 961 | try self.genSetStack(self.air.typeOfIndex(inst), stack_mcv.stack_offset, reg_mcv, .{}); | 927 | try self.genSetStack(self.air.typeOfIndex(inst), stack_mcv.stack_offset, reg_mcv, .{}); |
| ... | @@ -964,18 +930,32 @@ pub fn spillInstruction(self: *Self, reg: Register, inst: Air.Inst.Index) !void | ... | @@ -964,18 +930,32 @@ pub fn spillInstruction(self: *Self, reg: Register, inst: Air.Inst.Index) !void |
| 964 | pub fn spillCompareFlagsIfOccupied(self: *Self) !void { | 930 | pub fn spillCompareFlagsIfOccupied(self: *Self) !void { |
| 965 | if (self.compare_flags_inst) |inst_to_save| { | 931 | if (self.compare_flags_inst) |inst_to_save| { |
| 966 | const mcv = self.getResolvedInstValue(inst_to_save); | 932 | const mcv = self.getResolvedInstValue(inst_to_save); |
| 967 | assert(mcv.usesCompareFlags()); | 933 | const new_mcv = switch (mcv) { |
| | 934 | .register_overflow_signed, |
| | 935 | .register_overflow_unsigned, |
| | 936 | => try self.allocRegOrMem(inst_to_save, false), |
| | 937 | .compare_flags_signed, |
| | 938 | .compare_flags_unsigned, |
| | 939 | => try self.allocRegOrMem(inst_to_save, true), |
| | 940 | else => unreachable, |
| | 941 | }; |
| 968 | | 942 | |
| 969 | const new_mcv = try self.allocRegOrMem(inst_to_save, !mcv.isRegister()); | | |
| 970 | try self.setRegOrMem(self.air.typeOfIndex(inst_to_save), new_mcv, mcv); | 943 | try self.setRegOrMem(self.air.typeOfIndex(inst_to_save), new_mcv, mcv); |
| 971 | log.debug("spilling {d} to mcv {any}", .{ inst_to_save, new_mcv }); | 944 | log.debug("spilling {d} to mcv {any}", .{ inst_to_save, new_mcv }); |
| | 945 | |
| 972 | const branch = &self.branch_stack.items[self.branch_stack.items.len - 1]; | 946 | const branch = &self.branch_stack.items[self.branch_stack.items.len - 1]; |
| 973 | try branch.inst_table.put(self.gpa, inst_to_save, new_mcv); | 947 | try branch.inst_table.put(self.gpa, inst_to_save, new_mcv); |
| 974 | | 948 | |
| 975 | self.compare_flags_inst = null; | 949 | self.compare_flags_inst = null; |
| | 950 | |
| 976 | // TODO consolidate with register manager and spillInstruction | 951 | // TODO consolidate with register manager and spillInstruction |
| 977 | // this call should really belong in the register manager! | 952 | // this call should really belong in the register manager! |
| 978 | if (mcv.isRegister()) self.register_manager.freeReg(mcv.asRegister().?); | 953 | switch (mcv) { |
| | 954 | .register_overflow_signed, |
| | 955 | .register_overflow_unsigned, |
| | 956 | => |reg| self.register_manager.freeReg(reg), |
| | 957 | else => {}, |
| | 958 | } |
| 979 | } | 959 | } |
| 980 | } | 960 | } |
| 981 | | 961 | |
| ... | @@ -1043,8 +1023,11 @@ fn airIntCast(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1043,8 +1023,11 @@ fn airIntCast(self: *Self, inst: Air.Inst.Index) !void { |
| 1043 | return self.fail("TODO implement intCast for abi sizes larger than 8", .{}); | 1023 | return self.fail("TODO implement intCast for abi sizes larger than 8", .{}); |
| 1044 | } | 1024 | } |
| 1045 | | 1025 | |
| 1046 | operand.freezeIfRegister(&self.register_manager); | 1026 | const operand_lock: ?RegisterLock = switch (operand) { |
| 1047 | defer operand.unfreezeIfRegister(&self.register_manager); | 1027 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 1028 | else => null, |
| | 1029 | }; |
| | 1030 | defer if (operand_lock) |lock| self.register_manager.unlockReg(lock); |
| 1048 | | 1031 | |
| 1049 | const reg = try self.register_manager.allocReg(inst); | 1032 | const reg = try self.register_manager.allocReg(inst); |
| 1050 | try self.genSetReg(dest_ty, reg, .{ .immediate = 0 }); | 1033 | try self.genSetReg(dest_ty, reg, .{ .immediate = 0 }); |
| ... | @@ -1071,8 +1054,11 @@ fn airTrunc(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1071,8 +1054,11 @@ fn airTrunc(self: *Self, inst: Air.Inst.Index) !void { |
| 1071 | return self.fail("TODO implement trunc for abi sizes larger than 8", .{}); | 1054 | return self.fail("TODO implement trunc for abi sizes larger than 8", .{}); |
| 1072 | } | 1055 | } |
| 1073 | | 1056 | |
| 1074 | operand.freezeIfRegister(&self.register_manager); | 1057 | const operand_lock: ?RegisterLock = switch (operand) { |
| 1075 | defer operand.unfreezeIfRegister(&self.register_manager); | 1058 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 1059 | else => null, |
| | 1060 | }; |
| | 1061 | defer if (operand_lock) |lock| self.register_manager.unlockReg(lock); |
| 1076 | | 1062 | |
| 1077 | const reg: Register = blk: { | 1063 | const reg: Register = blk: { |
| 1078 | if (operand.isRegister()) { | 1064 | if (operand.isRegister()) { |
| ... | @@ -1156,16 +1142,22 @@ fn airMin(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1156,16 +1142,22 @@ fn airMin(self: *Self, inst: Air.Inst.Index) !void { |
| 1156 | // TODO improve by checking if any operand can be reused. | 1142 | // TODO improve by checking if any operand can be reused. |
| 1157 | // TODO audit register allocation | 1143 | // TODO audit register allocation |
| 1158 | const lhs = try self.resolveInst(bin_op.lhs); | 1144 | const lhs = try self.resolveInst(bin_op.lhs); |
| 1159 | lhs.freezeIfRegister(&self.register_manager); | 1145 | const lhs_lock: ?RegisterLock = switch (lhs) { |
| 1160 | defer lhs.unfreezeIfRegister(&self.register_manager); | 1146 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 1147 | else => null, |
| | 1148 | }; |
| | 1149 | defer if (lhs_lock) |lock| self.register_manager.unlockReg(lock); |
| 1161 | | 1150 | |
| 1162 | const lhs_reg = try self.copyToTmpRegister(ty, lhs); | 1151 | const lhs_reg = try self.copyToTmpRegister(ty, lhs); |
| 1163 | self.register_manager.freezeRegs(&.{lhs_reg}); | 1152 | const lhs_reg_lock = self.register_manager.lockRegAssumeUnused(lhs_reg); |
| 1164 | defer self.register_manager.unfreezeRegs(&.{lhs_reg}); | 1153 | defer self.register_manager.unlockReg(lhs_reg_lock); |
| 1165 | | 1154 | |
| 1166 | const rhs_mcv = try self.limitImmediateType(bin_op.rhs, i32); | 1155 | const rhs_mcv = try self.limitImmediateType(bin_op.rhs, i32); |
| 1167 | rhs_mcv.freezeIfRegister(&self.register_manager); | 1156 | const rhs_lock: ?RegisterLock = switch (rhs_mcv) { |
| 1168 | defer rhs_mcv.unfreezeIfRegister(&self.register_manager); | 1157 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 1158 | else => null, |
| | 1159 | }; |
| | 1160 | defer if (rhs_lock) |lock| self.register_manager.unlockReg(lock); |
| 1169 | | 1161 | |
| 1170 | try self.genBinMathOpMir(.cmp, ty, .{ .register = lhs_reg }, rhs_mcv); | 1162 | try self.genBinMathOpMir(.cmp, ty, .{ .register = lhs_reg }, rhs_mcv); |
| 1171 | | 1163 | |
| ... | @@ -1200,28 +1192,37 @@ fn genPtrBinMathOp(self: *Self, inst: Air.Inst.Index, op_lhs: Air.Inst.Ref, op_r | ... | @@ -1200,28 +1192,37 @@ fn genPtrBinMathOp(self: *Self, inst: Air.Inst.Index, op_lhs: Air.Inst.Ref, op_r |
| 1200 | const offset = try self.resolveInst(op_rhs); | 1192 | const offset = try self.resolveInst(op_rhs); |
| 1201 | const offset_ty = self.air.typeOf(op_rhs); | 1193 | const offset_ty = self.air.typeOf(op_rhs); |
| 1202 | | 1194 | |
| 1203 | offset.freezeIfRegister(&self.register_manager); | 1195 | const offset_lock: ?RegisterLock = switch (offset) { |
| 1204 | defer offset.unfreezeIfRegister(&self.register_manager); | 1196 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 1197 | else => null, |
| | 1198 | }; |
| | 1199 | defer if (offset_lock) |lock| self.register_manager.unlockReg(lock); |
| 1205 | | 1200 | |
| 1206 | const dst_mcv = blk: { | 1201 | const dst_mcv: MCValue = blk: { |
| 1207 | if (self.reuseOperand(inst, op_lhs, 0, ptr)) { | 1202 | if (self.reuseOperand(inst, op_lhs, 0, ptr)) { |
| 1208 | if (ptr.isMemory() or ptr.isRegister()) break :blk ptr; | 1203 | if (ptr.isMemory() or ptr.isRegister()) break :blk ptr; |
| 1209 | } | 1204 | } |
| 1210 | break :blk MCValue{ .register = try self.copyToTmpRegister(dst_ty, ptr) }; | 1205 | break :blk MCValue{ .register = try self.copyToTmpRegister(dst_ty, ptr) }; |
| 1211 | }; | 1206 | }; |
| 1212 | | 1207 | |
| 1213 | dst_mcv.freezeIfRegister(&self.register_manager); | 1208 | const dst_mcv_lock: ?RegisterLock = switch (dst_mcv) { |
| 1214 | defer dst_mcv.unfreezeIfRegister(&self.register_manager); | 1209 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 1210 | else => null, |
| | 1211 | }; |
| | 1212 | defer if (dst_mcv_lock) |lock| self.register_manager.unlockReg(lock); |
| 1215 | | 1213 | |
| 1216 | const offset_mcv = blk: { | 1214 | const offset_mcv: MCValue = blk: { |
| 1217 | if (self.reuseOperand(inst, op_rhs, 1, offset)) { | 1215 | if (self.reuseOperand(inst, op_rhs, 1, offset)) { |
| 1218 | if (offset.isRegister()) break :blk offset; | 1216 | if (offset.isRegister()) break :blk offset; |
| 1219 | } | 1217 | } |
| 1220 | break :blk MCValue{ .register = try self.copyToTmpRegister(offset_ty, offset) }; | 1218 | break :blk MCValue{ .register = try self.copyToTmpRegister(offset_ty, offset) }; |
| 1221 | }; | 1219 | }; |
| 1222 | | 1220 | |
| 1223 | offset_mcv.freezeIfRegister(&self.register_manager); | 1221 | const offset_mcv_lock: ?RegisterLock = switch (offset_mcv) { |
| 1224 | defer offset_mcv.unfreezeIfRegister(&self.register_manager); | 1222 | .register => |reg| self.register_manager.lockReg(reg), |
| | 1223 | else => null, |
| | 1224 | }; |
| | 1225 | defer if (offset_mcv_lock) |lock| self.register_manager.unlockReg(lock); |
| 1225 | | 1226 | |
| 1226 | try self.genIntMulComplexOpMir(offset_ty, offset_mcv, .{ .immediate = elem_size }); | 1227 | try self.genIntMulComplexOpMir(offset_ty, offset_mcv, .{ .immediate = elem_size }); |
| 1227 | | 1228 | |
| ... | @@ -1306,30 +1307,40 @@ fn genSubOp(self: *Self, inst: Air.Inst.Index, op_lhs: Air.Inst.Ref, op_rhs: Air | ... | @@ -1306,30 +1307,40 @@ fn genSubOp(self: *Self, inst: Air.Inst.Index, op_lhs: Air.Inst.Ref, op_rhs: Air |
| 1306 | const dst_ty = self.air.typeOf(op_lhs); | 1307 | const dst_ty = self.air.typeOf(op_lhs); |
| 1307 | | 1308 | |
| 1308 | const lhs = try self.resolveInst(op_lhs); | 1309 | const lhs = try self.resolveInst(op_lhs); |
| 1309 | lhs.freezeIfRegister(&self.register_manager); | 1310 | const lhs_lock: ?RegisterLock = switch (lhs) { |
| 1310 | defer lhs.unfreezeIfRegister(&self.register_manager); | 1311 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 1312 | else => null, |
| | 1313 | }; |
| | 1314 | defer if (lhs_lock) |lock| self.register_manager.unlockReg(lock); |
| 1311 | | 1315 | |
| 1312 | const rhs = try self.resolveInst(op_rhs); | 1316 | const rhs = try self.resolveInst(op_rhs); |
| 1313 | rhs.freezeIfRegister(&self.register_manager); | 1317 | const rhs_lock: ?RegisterLock = switch (rhs) { |
| 1314 | defer rhs.unfreezeIfRegister(&self.register_manager); | 1318 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 1319 | else => null, |
| | 1320 | }; |
| | 1321 | defer if (rhs_lock) |lock| self.register_manager.unlockReg(lock); |
| 1315 | | 1322 | |
| 1316 | const dst_mcv = blk: { | 1323 | const dst_mcv: MCValue = blk: { |
| 1317 | if (self.reuseOperand(inst, op_lhs, 0, lhs) and lhs.isRegister()) { | 1324 | if (self.reuseOperand(inst, op_lhs, 0, lhs) and lhs.isRegister()) { |
| 1318 | break :blk lhs; | 1325 | break :blk lhs; |
| 1319 | } | 1326 | } |
| 1320 | break :blk try self.copyToRegisterWithInstTracking(inst, dst_ty, lhs); | 1327 | break :blk try self.copyToRegisterWithInstTracking(inst, dst_ty, lhs); |
| 1321 | }; | 1328 | }; |
| | 1329 | const dst_mcv_lock: ?RegisterLock = switch (dst_mcv) { |
| | 1330 | .register => |reg| self.register_manager.lockReg(reg), |
| | 1331 | else => null, |
| | 1332 | }; |
| | 1333 | defer if (dst_mcv_lock) |lock| self.register_manager.unlockReg(lock); |
| 1322 | | 1334 | |
| 1323 | dst_mcv.freezeIfRegister(&self.register_manager); | 1335 | const rhs_mcv: MCValue = blk: { |
| 1324 | defer dst_mcv.unfreezeIfRegister(&self.register_manager); | | |
| 1325 | | | |
| 1326 | const rhs_mcv = blk: { | | |
| 1327 | if (rhs.isMemory() or rhs.isRegister()) break :blk rhs; | 1336 | if (rhs.isMemory() or rhs.isRegister()) break :blk rhs; |
| 1328 | break :blk MCValue{ .register = try self.copyToTmpRegister(dst_ty, rhs) }; | 1337 | break :blk MCValue{ .register = try self.copyToTmpRegister(dst_ty, rhs) }; |
| 1329 | }; | 1338 | }; |
| 1330 | | 1339 | const rhs_mcv_lock: ?RegisterLock = switch (rhs_mcv) { |
| 1331 | rhs_mcv.freezeIfRegister(&self.register_manager); | 1340 | .register => |reg| self.register_manager.lockReg(reg), |
| 1332 | defer rhs_mcv.unfreezeIfRegister(&self.register_manager); | 1341 | else => null, |
| | 1342 | }; |
| | 1343 | defer if (rhs_mcv_lock) |lock| self.register_manager.unlockReg(lock); |
| 1333 | | 1344 | |
| 1334 | try self.genBinMathOpMir(.sub, dst_ty, dst_mcv, rhs_mcv); | 1345 | try self.genBinMathOpMir(.sub, dst_ty, dst_mcv, rhs_mcv); |
| 1335 | | 1346 | |
| ... | @@ -1366,8 +1377,10 @@ fn airMul(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1366,8 +1377,10 @@ fn airMul(self: *Self, inst: Air.Inst.Index) !void { |
| 1366 | // Spill .rax and .rdx upfront to ensure we don't spill the operands too late. | 1377 | // Spill .rax and .rdx upfront to ensure we don't spill the operands too late. |
| 1367 | try self.register_manager.getReg(.rax, inst); | 1378 | try self.register_manager.getReg(.rax, inst); |
| 1368 | try self.register_manager.getReg(.rdx, null); | 1379 | try self.register_manager.getReg(.rdx, null); |
| 1369 | self.register_manager.freezeRegs(&.{ .rax, .rdx }); | 1380 | const reg_locks = self.register_manager.lockRegsAssumeUnused(2, .{ .rax, .rdx }); |
| 1370 | defer self.register_manager.unfreezeRegs(&.{ .rax, .rdx }); | 1381 | defer for (reg_locks) |reg| { |
| | 1382 | self.register_manager.unlockReg(reg); |
| | 1383 | }; |
| 1371 | | 1384 | |
| 1372 | const lhs = try self.resolveInst(bin_op.lhs); | 1385 | const lhs = try self.resolveInst(bin_op.lhs); |
| 1373 | const rhs = try self.resolveInst(bin_op.rhs); | 1386 | const rhs = try self.resolveInst(bin_op.rhs); |
| ... | @@ -1458,9 +1471,13 @@ fn airSubWithOverflow(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1458,9 +1471,13 @@ fn airSubWithOverflow(self: *Self, inst: Air.Inst.Index) !void { |
| 1458 | fn airMulWithOverflow(self: *Self, inst: Air.Inst.Index) !void { | 1471 | fn airMulWithOverflow(self: *Self, inst: Air.Inst.Index) !void { |
| 1459 | const ty_pl = self.air.instructions.items(.data)[inst].ty_pl; | 1472 | const ty_pl = self.air.instructions.items(.data)[inst].ty_pl; |
| 1460 | const bin_op = self.air.extraData(Air.Bin, ty_pl.payload).data; | 1473 | const bin_op = self.air.extraData(Air.Bin, ty_pl.payload).data; |
| 1461 | const result = if (self.liveness.isUnused(inst)) .dead else result: { | | |
| 1462 | const ty = self.air.typeOf(bin_op.lhs); | | |
| 1463 | | 1474 | |
| | 1475 | if (self.liveness.isUnused(inst)) { |
| | 1476 | return self.finishAir(inst, .dead, .{ bin_op.lhs, bin_op.rhs, .none }); |
| | 1477 | } |
| | 1478 | |
| | 1479 | const ty = self.air.typeOf(bin_op.lhs); |
| | 1480 | const result: MCValue = result: { |
| 1464 | switch (ty.zigTypeTag()) { | 1481 | switch (ty.zigTypeTag()) { |
| 1465 | .Vector => return self.fail("TODO implement mul_with_overflow for Vector type", .{}), | 1482 | .Vector => return self.fail("TODO implement mul_with_overflow for Vector type", .{}), |
| 1466 | .Int => { | 1483 | .Int => { |
| ... | @@ -1477,8 +1494,10 @@ fn airMulWithOverflow(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1477,8 +1494,10 @@ fn airMulWithOverflow(self: *Self, inst: Air.Inst.Index) !void { |
| 1477 | // Spill .rax and .rdx upfront to ensure we don't spill the operands too late. | 1494 | // Spill .rax and .rdx upfront to ensure we don't spill the operands too late. |
| 1478 | try self.register_manager.getReg(.rax, inst); | 1495 | try self.register_manager.getReg(.rax, inst); |
| 1479 | try self.register_manager.getReg(.rdx, null); | 1496 | try self.register_manager.getReg(.rdx, null); |
| 1480 | self.register_manager.freezeRegs(&.{ .rax, .rdx }); | 1497 | const reg_locks = self.register_manager.lockRegsAssumeUnused(2, .{ .rax, .rdx }); |
| 1481 | defer self.register_manager.unfreezeRegs(&.{ .rax, .rdx }); | 1498 | defer for (reg_locks) |reg| { |
| | 1499 | self.register_manager.unlockReg(reg); |
| | 1500 | }; |
| 1482 | | 1501 | |
| 1483 | const lhs = try self.resolveInst(bin_op.lhs); | 1502 | const lhs = try self.resolveInst(bin_op.lhs); |
| 1484 | const rhs = try self.resolveInst(bin_op.rhs); | 1503 | const rhs = try self.resolveInst(bin_op.rhs); |
| ... | @@ -1504,21 +1523,28 @@ fn airMulWithOverflow(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1504,21 +1523,28 @@ fn airMulWithOverflow(self: *Self, inst: Air.Inst.Index) !void { |
| 1504 | const lhs = try self.resolveInst(bin_op.lhs); | 1523 | const lhs = try self.resolveInst(bin_op.lhs); |
| 1505 | const rhs = try self.resolveInst(bin_op.rhs); | 1524 | const rhs = try self.resolveInst(bin_op.rhs); |
| 1506 | | 1525 | |
| 1507 | rhs.freezeIfRegister(&self.register_manager); | 1526 | const rhs_lock: ?RegisterLock = switch (rhs) { |
| 1508 | defer rhs.unfreezeIfRegister(&self.register_manager); | 1527 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 1528 | else => null, |
| | 1529 | }; |
| | 1530 | defer if (rhs_lock) |lock| self.register_manager.unlockReg(lock); |
| 1509 | | 1531 | |
| 1510 | const dst_reg: Register = blk: { | 1532 | const dst_reg: Register = blk: { |
| 1511 | if (lhs.isRegister()) break :blk lhs.register; | 1533 | if (lhs.isRegister()) break :blk lhs.register; |
| 1512 | break :blk try self.copyToTmpRegister(ty, lhs); | 1534 | break :blk try self.copyToTmpRegister(ty, lhs); |
| 1513 | }; | 1535 | }; |
| 1514 | self.register_manager.freezeRegs(&.{dst_reg}); | 1536 | const dst_reg_lock = self.register_manager.lockRegAssumeUnused(dst_reg); |
| | 1537 | defer self.register_manager.unlockReg(dst_reg_lock); |
| 1515 | | 1538 | |
| 1516 | const rhs_mcv = blk: { | 1539 | const rhs_mcv: MCValue = blk: { |
| 1517 | if (rhs.isRegister() or rhs.isMemory()) break :blk rhs; | 1540 | if (rhs.isRegister() or rhs.isMemory()) break :blk rhs; |
| 1518 | break :blk MCValue{ .register = try self.copyToTmpRegister(ty, rhs) }; | 1541 | break :blk MCValue{ .register = try self.copyToTmpRegister(ty, rhs) }; |
| 1519 | }; | 1542 | }; |
| 1520 | rhs_mcv.freezeIfRegister(&self.register_manager); | 1543 | const rhs_mcv_lock: ?RegisterLock = switch (rhs_mcv) { |
| 1521 | defer rhs_mcv.unfreezeIfRegister(&self.register_manager); | 1544 | .register => |reg| self.register_manager.lockReg(reg), |
| | 1545 | else => null, |
| | 1546 | }; |
| | 1547 | defer if (rhs_mcv_lock) |lock| self.register_manager.unlockReg(lock); |
| 1522 | | 1548 | |
| 1523 | try self.genIntMulComplexOpMir(Type.isize, .{ .register = dst_reg }, rhs_mcv); | 1549 | try self.genIntMulComplexOpMir(Type.isize, .{ .register = dst_reg }, rhs_mcv); |
| 1524 | | 1550 | |
| ... | @@ -1528,8 +1554,10 @@ fn airMulWithOverflow(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1528,8 +1554,10 @@ fn airMulWithOverflow(self: *Self, inst: Air.Inst.Index) !void { |
| 1528 | // Spill .rax and .rdx upfront to ensure we don't spill the operands too late. | 1554 | // Spill .rax and .rdx upfront to ensure we don't spill the operands too late. |
| 1529 | try self.register_manager.getReg(.rax, null); | 1555 | try self.register_manager.getReg(.rax, null); |
| 1530 | try self.register_manager.getReg(.rdx, null); | 1556 | try self.register_manager.getReg(.rdx, null); |
| 1531 | self.register_manager.freezeRegs(&.{ .rax, .rdx }); | 1557 | const reg_locks = self.register_manager.lockRegsAssumeUnused(2, .{ .rax, .rdx }); |
| 1532 | defer self.register_manager.unfreezeRegs(&.{.rdx}); | 1558 | defer for (reg_locks) |reg| { |
| | 1559 | self.register_manager.unlockReg(reg); |
| | 1560 | }; |
| 1533 | | 1561 | |
| 1534 | const lhs = try self.resolveInst(bin_op.lhs); | 1562 | const lhs = try self.resolveInst(bin_op.lhs); |
| 1535 | const rhs = try self.resolveInst(bin_op.rhs); | 1563 | const rhs = try self.resolveInst(bin_op.rhs); |
| ... | @@ -1540,7 +1568,8 @@ fn airMulWithOverflow(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1540,7 +1568,8 @@ fn airMulWithOverflow(self: *Self, inst: Air.Inst.Index) !void { |
| 1540 | }, | 1568 | }, |
| 1541 | } | 1569 | } |
| 1542 | }; | 1570 | }; |
| 1543 | defer self.register_manager.unfreezeRegs(&.{dst_reg}); | 1571 | const dst_reg_lock = self.register_manager.lockRegAssumeUnused(dst_reg); |
| | 1572 | defer self.register_manager.unlockReg(dst_reg_lock); |
| 1544 | | 1573 | |
| 1545 | const tuple_ty = self.air.typeOfIndex(inst); | 1574 | const tuple_ty = self.air.typeOfIndex(inst); |
| 1546 | const tuple_size = @intCast(u32, tuple_ty.abiSize(self.target.*)); | 1575 | const tuple_size = @intCast(u32, tuple_ty.abiSize(self.target.*)); |
| ... | @@ -1554,8 +1583,10 @@ fn airMulWithOverflow(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1554,8 +1583,10 @@ fn airMulWithOverflow(self: *Self, inst: Air.Inst.Index) !void { |
| 1554 | }; | 1583 | }; |
| 1555 | | 1584 | |
| 1556 | const temp_regs = try self.register_manager.allocRegs(3, .{ null, null, null }); | 1585 | const temp_regs = try self.register_manager.allocRegs(3, .{ null, null, null }); |
| 1557 | self.register_manager.freezeRegs(&temp_regs); | 1586 | const temp_regs_locks = self.register_manager.lockRegsAssumeUnused(3, temp_regs); |
| 1558 | defer self.register_manager.unfreezeRegs(&temp_regs); | 1587 | defer for (temp_regs_locks) |reg| { |
| | 1588 | self.register_manager.unlockReg(reg); |
| | 1589 | }; |
| 1559 | | 1590 | |
| 1560 | const overflow_reg = temp_regs[0]; | 1591 | const overflow_reg = temp_regs[0]; |
| 1561 | const flags: u2 = switch (int_info.signedness) { | 1592 | const flags: u2 = switch (int_info.signedness) { |
| ... | @@ -1699,18 +1730,19 @@ fn genIntMulDivOpMir( | ... | @@ -1699,18 +1730,19 @@ fn genIntMulDivOpMir( |
| 1699 | /// Clobbers .rax and .rdx registers. | 1730 | /// Clobbers .rax and .rdx registers. |
| 1700 | fn genInlineIntDivFloor(self: *Self, ty: Type, lhs: MCValue, rhs: MCValue) !MCValue { | 1731 | fn genInlineIntDivFloor(self: *Self, ty: Type, lhs: MCValue, rhs: MCValue) !MCValue { |
| 1701 | const signedness = ty.intInfo(self.target.*).signedness; | 1732 | const signedness = ty.intInfo(self.target.*).signedness; |
| 1702 | const dividend = switch (lhs) { | 1733 | const dividend: Register = switch (lhs) { |
| 1703 | .register => |reg| reg, | 1734 | .register => |reg| reg, |
| 1704 | else => try self.copyToTmpRegister(ty, lhs), | 1735 | else => try self.copyToTmpRegister(ty, lhs), |
| 1705 | }; | 1736 | }; |
| 1706 | self.register_manager.freezeRegs(&.{dividend}); | 1737 | const dividend_lock = self.register_manager.lockReg(dividend); |
| | 1738 | defer if (dividend_lock) |lock| self.register_manager.unlockReg(lock); |
| 1707 | | 1739 | |
| 1708 | const divisor = switch (rhs) { | 1740 | const divisor: Register = switch (rhs) { |
| 1709 | .register => |reg| reg, | 1741 | .register => |reg| reg, |
| 1710 | else => try self.copyToTmpRegister(ty, rhs), | 1742 | else => try self.copyToTmpRegister(ty, rhs), |
| 1711 | }; | 1743 | }; |
| 1712 | self.register_manager.freezeRegs(&.{divisor}); | 1744 | const divisor_lock = self.register_manager.lockReg(divisor); |
| 1713 | defer self.register_manager.unfreezeRegs(&.{ dividend, divisor }); | 1745 | defer if (divisor_lock) |lock| self.register_manager.unlockReg(lock); |
| 1714 | | 1746 | |
| 1715 | try self.genIntMulDivOpMir(switch (signedness) { | 1747 | try self.genIntMulDivOpMir(switch (signedness) { |
| 1716 | .signed => .idiv, | 1748 | .signed => .idiv, |
| ... | @@ -1755,54 +1787,71 @@ fn genInlineIntDivFloor(self: *Self, ty: Type, lhs: MCValue, rhs: MCValue) !MCVa | ... | @@ -1755,54 +1787,71 @@ fn genInlineIntDivFloor(self: *Self, ty: Type, lhs: MCValue, rhs: MCValue) !MCVa |
| 1755 | | 1787 | |
| 1756 | fn airDiv(self: *Self, inst: Air.Inst.Index) !void { | 1788 | fn airDiv(self: *Self, inst: Air.Inst.Index) !void { |
| 1757 | const bin_op = self.air.instructions.items(.data)[inst].bin_op; | 1789 | const bin_op = self.air.instructions.items(.data)[inst].bin_op; |
| 1758 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { | | |
| 1759 | const tag = self.air.instructions.items(.tag)[inst]; | | |
| 1760 | const ty = self.air.typeOfIndex(inst); | | |
| 1761 | | 1790 | |
| 1762 | if (ty.zigTypeTag() != .Int) { | 1791 | if (self.liveness.isUnused(inst)) { |
| 1763 | return self.fail("TODO implement {} for operands of dst type {}", .{ tag, ty.zigTypeTag() }); | 1792 | return self.finishAir(inst, .dead, .{ bin_op.lhs, bin_op.rhs, .none }); |
| 1764 | } | 1793 | } |
| | 1794 | |
| | 1795 | const tag = self.air.instructions.items(.tag)[inst]; |
| | 1796 | const ty = self.air.typeOfIndex(inst); |
| 1765 | | 1797 | |
| 1766 | if (tag == .div_float) { | 1798 | if (ty.zigTypeTag() != .Int) { |
| 1767 | return self.fail("TODO implement {}", .{tag}); | 1799 | return self.fail("TODO implement {} for operands of dst type {}", .{ tag, ty.zigTypeTag() }); |
| | 1800 | } |
| | 1801 | |
| | 1802 | if (tag == .div_float) { |
| | 1803 | return self.fail("TODO implement {}", .{tag}); |
| | 1804 | } |
| | 1805 | |
| | 1806 | const signedness = ty.intInfo(self.target.*).signedness; |
| | 1807 | |
| | 1808 | // Spill .rax and .rdx upfront to ensure we don't spill the operands too late. |
| | 1809 | const track_rax: ?Air.Inst.Index = blk: { |
| | 1810 | if (signedness == .unsigned) break :blk inst; |
| | 1811 | switch (tag) { |
| | 1812 | .div_exact, .div_trunc => break :blk inst, |
| | 1813 | else => break :blk null, |
| 1768 | } | 1814 | } |
| | 1815 | }; |
| | 1816 | try self.register_manager.getReg(.rax, track_rax); |
| | 1817 | try self.register_manager.getReg(.rdx, null); |
| | 1818 | const reg_locks = self.register_manager.lockRegsAssumeUnused(2, .{ .rax, .rdx }); |
| | 1819 | defer for (reg_locks) |reg| { |
| | 1820 | self.register_manager.unlockReg(reg); |
| | 1821 | }; |
| 1769 | | 1822 | |
| 1770 | const signedness = ty.intInfo(self.target.*).signedness; | 1823 | const lhs = try self.resolveInst(bin_op.lhs); |
| | 1824 | const lhs_lock: ?RegisterLock = switch (lhs) { |
| | 1825 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 1826 | else => null, |
| | 1827 | }; |
| | 1828 | defer if (lhs_lock) |lock| self.register_manager.unlockReg(lock); |
| 1771 | | 1829 | |
| 1772 | // Spill .rax and .rdx upfront to ensure we don't spill the operands too late. | 1830 | const rhs: MCValue = blk: { |
| 1773 | const track_rax: ?Air.Inst.Index = blk: { | 1831 | const rhs = try self.resolveInst(bin_op.rhs); |
| 1774 | if (signedness == .unsigned) break :blk inst; | 1832 | if (signedness == .signed) { |
| 1775 | switch (tag) { | 1833 | switch (tag) { |
| 1776 | .div_exact, .div_trunc => break :blk inst, | 1834 | .div_floor => { |
| 1777 | else => break :blk null, | 1835 | const rhs_lock: ?RegisterLock = switch (rhs) { |
| 1778 | } | 1836 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| 1779 | }; | 1837 | else => null, |
| 1780 | try self.register_manager.getReg(.rax, track_rax); | 1838 | }; |
| 1781 | try self.register_manager.getReg(.rdx, null); | 1839 | defer if (rhs_lock) |lock| self.register_manager.unlockReg(lock); |
| 1782 | self.register_manager.freezeRegs(&.{ .rax, .rdx }); | | |
| 1783 | defer self.register_manager.unfreezeRegs(&.{ .rax, .rdx }); | | |
| 1784 | | 1840 | |
| 1785 | const lhs = try self.resolveInst(bin_op.lhs); | 1841 | break :blk try self.copyToRegisterWithInstTracking(inst, ty, rhs); |
| 1786 | lhs.freezeIfRegister(&self.register_manager); | 1842 | }, |
| 1787 | defer lhs.unfreezeIfRegister(&self.register_manager); | 1843 | else => {}, |
| 1788 | | | |
| 1789 | const rhs = blk: { | | |
| 1790 | const rhs = try self.resolveInst(bin_op.rhs); | | |
| 1791 | if (signedness == .signed) { | | |
| 1792 | switch (tag) { | | |
| 1793 | .div_floor => { | | |
| 1794 | rhs.freezeIfRegister(&self.register_manager); | | |
| 1795 | defer rhs.unfreezeIfRegister(&self.register_manager); | | |
| 1796 | break :blk try self.copyToRegisterWithInstTracking(inst, ty, rhs); | | |
| 1797 | }, | | |
| 1798 | else => {}, | | |
| 1799 | } | | |
| 1800 | } | 1844 | } |
| 1801 | break :blk rhs; | 1845 | } |
| 1802 | }; | 1846 | break :blk rhs; |
| 1803 | rhs.freezeIfRegister(&self.register_manager); | 1847 | }; |
| 1804 | defer rhs.unfreezeIfRegister(&self.register_manager); | 1848 | const rhs_lock: ?RegisterLock = switch (rhs) { |
| | 1849 | .register => |reg| self.register_manager.lockReg(reg), |
| | 1850 | else => null, |
| | 1851 | }; |
| | 1852 | defer if (rhs_lock) |lock| self.register_manager.unlockReg(lock); |
| 1805 | | 1853 | |
| | 1854 | const result: MCValue = result: { |
| 1806 | if (signedness == .unsigned) { | 1855 | if (signedness == .unsigned) { |
| 1807 | try self.genIntMulDivOpMir(.div, ty, signedness, lhs, rhs); | 1856 | try self.genIntMulDivOpMir(.div, ty, signedness, lhs, rhs); |
| 1808 | break :result MCValue{ .register = .rax }; | 1857 | break :result MCValue{ .register = .rax }; |
| ... | @@ -1822,53 +1871,67 @@ fn airDiv(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1822,53 +1871,67 @@ fn airDiv(self: *Self, inst: Air.Inst.Index) !void { |
| 1822 | else => unreachable, | 1871 | else => unreachable, |
| 1823 | } | 1872 | } |
| 1824 | }; | 1873 | }; |
| | 1874 | |
| 1825 | return self.finishAir(inst, result, .{ bin_op.lhs, bin_op.rhs, .none }); | 1875 | return self.finishAir(inst, result, .{ bin_op.lhs, bin_op.rhs, .none }); |
| 1826 | } | 1876 | } |
| 1827 | | 1877 | |
| 1828 | fn airRem(self: *Self, inst: Air.Inst.Index) !void { | 1878 | fn airRem(self: *Self, inst: Air.Inst.Index) !void { |
| 1829 | const bin_op = self.air.instructions.items(.data)[inst].bin_op; | 1879 | const bin_op = self.air.instructions.items(.data)[inst].bin_op; |
| 1830 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { | | |
| 1831 | const ty = self.air.typeOfIndex(inst); | | |
| 1832 | if (ty.zigTypeTag() != .Int) { | | |
| 1833 | return self.fail("TODO implement .rem for operands of dst type {}", .{ty.zigTypeTag()}); | | |
| 1834 | } | | |
| 1835 | // Spill .rax and .rdx upfront to ensure we don't spill the operands too late. | | |
| 1836 | try self.register_manager.getReg(.rax, null); | | |
| 1837 | try self.register_manager.getReg(.rdx, inst); | | |
| 1838 | self.register_manager.freezeRegs(&.{ .rax, .rdx }); | | |
| 1839 | defer self.register_manager.unfreezeRegs(&.{ .rax, .rdx }); | | |
| 1840 | | | |
| 1841 | const lhs = try self.resolveInst(bin_op.lhs); | | |
| 1842 | const rhs = try self.resolveInst(bin_op.rhs); | | |
| 1843 | | 1880 | |
| 1844 | const signedness = ty.intInfo(self.target.*).signedness; | 1881 | if (self.liveness.isUnused(inst)) { |
| 1845 | try self.genIntMulDivOpMir(switch (signedness) { | 1882 | return self.finishAir(inst, .dead, .{ bin_op.lhs, bin_op.rhs, .none }); |
| 1846 | .signed => .idiv, | 1883 | } |
| 1847 | .unsigned => .div, | 1884 | const ty = self.air.typeOfIndex(inst); |
| 1848 | }, ty, signedness, lhs, rhs); | 1885 | if (ty.zigTypeTag() != .Int) { |
| 1849 | break :result MCValue{ .register = .rdx }; | 1886 | return self.fail("TODO implement .rem for operands of dst type {}", .{ty.zigTypeTag()}); |
| | 1887 | } |
| | 1888 | // Spill .rax and .rdx upfront to ensure we don't spill the operands too late. |
| | 1889 | try self.register_manager.getReg(.rax, null); |
| | 1890 | try self.register_manager.getReg(.rdx, inst); |
| | 1891 | const reg_locks = self.register_manager.lockRegsAssumeUnused(2, .{ .rax, .rdx }); |
| | 1892 | defer for (reg_locks) |reg| { |
| | 1893 | self.register_manager.unlockReg(reg); |
| 1850 | }; | 1894 | }; |
| | 1895 | |
| | 1896 | const lhs = try self.resolveInst(bin_op.lhs); |
| | 1897 | const rhs = try self.resolveInst(bin_op.rhs); |
| | 1898 | |
| | 1899 | const signedness = ty.intInfo(self.target.*).signedness; |
| | 1900 | try self.genIntMulDivOpMir(switch (signedness) { |
| | 1901 | .signed => .idiv, |
| | 1902 | .unsigned => .div, |
| | 1903 | }, ty, signedness, lhs, rhs); |
| | 1904 | |
| | 1905 | const result: MCValue = .{ .register = .rdx }; |
| | 1906 | |
| 1851 | return self.finishAir(inst, result, .{ bin_op.lhs, bin_op.rhs, .none }); | 1907 | return self.finishAir(inst, result, .{ bin_op.lhs, bin_op.rhs, .none }); |
| 1852 | } | 1908 | } |
| 1853 | | 1909 | |
| 1854 | fn airMod(self: *Self, inst: Air.Inst.Index) !void { | 1910 | fn airMod(self: *Self, inst: Air.Inst.Index) !void { |
| 1855 | const bin_op = self.air.instructions.items(.data)[inst].bin_op; | 1911 | const bin_op = self.air.instructions.items(.data)[inst].bin_op; |
| 1856 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { | | |
| 1857 | const ty = self.air.typeOfIndex(inst); | | |
| 1858 | if (ty.zigTypeTag() != .Int) { | | |
| 1859 | return self.fail("TODO implement .mod for operands of dst type {}", .{ty.zigTypeTag()}); | | |
| 1860 | } | | |
| 1861 | const signedness = ty.intInfo(self.target.*).signedness; | | |
| 1862 | | 1912 | |
| 1863 | // Spill .rax and .rdx upfront to ensure we don't spill the operands too late. | 1913 | if (self.liveness.isUnused(inst)) { |
| 1864 | try self.register_manager.getReg(.rax, null); | 1914 | return self.finishAir(inst, .dead, .{ bin_op.lhs, bin_op.rhs, .none }); |
| 1865 | try self.register_manager.getReg(.rdx, if (signedness == .unsigned) inst else null); | 1915 | } |
| 1866 | self.register_manager.freezeRegs(&.{ .rax, .rdx }); | | |
| 1867 | defer self.register_manager.unfreezeRegs(&.{ .rax, .rdx }); | | |
| 1868 | | 1916 | |
| 1869 | const lhs = try self.resolveInst(bin_op.lhs); | 1917 | const ty = self.air.typeOfIndex(inst); |
| 1870 | const rhs = try self.resolveInst(bin_op.rhs); | 1918 | if (ty.zigTypeTag() != .Int) { |
| | 1919 | return self.fail("TODO implement .mod for operands of dst type {}", .{ty.zigTypeTag()}); |
| | 1920 | } |
| | 1921 | const signedness = ty.intInfo(self.target.*).signedness; |
| | 1922 | |
| | 1923 | // Spill .rax and .rdx upfront to ensure we don't spill the operands too late. |
| | 1924 | try self.register_manager.getReg(.rax, null); |
| | 1925 | try self.register_manager.getReg(.rdx, if (signedness == .unsigned) inst else null); |
| | 1926 | const reg_locks = self.register_manager.lockRegsAssumeUnused(2, .{ .rax, .rdx }); |
| | 1927 | defer for (reg_locks) |reg| { |
| | 1928 | self.register_manager.unlockReg(reg); |
| | 1929 | }; |
| | 1930 | |
| | 1931 | const lhs = try self.resolveInst(bin_op.lhs); |
| | 1932 | const rhs = try self.resolveInst(bin_op.rhs); |
| 1871 | | 1933 | |
| | 1934 | const result: MCValue = result: { |
| 1872 | switch (signedness) { | 1935 | switch (signedness) { |
| 1873 | .unsigned => { | 1936 | .unsigned => { |
| 1874 | try self.genIntMulDivOpMir(switch (signedness) { | 1937 | try self.genIntMulDivOpMir(switch (signedness) { |
| ... | @@ -1888,6 +1951,7 @@ fn airMod(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1888,6 +1951,7 @@ fn airMod(self: *Self, inst: Air.Inst.Index) !void { |
| 1888 | }, | 1951 | }, |
| 1889 | } | 1952 | } |
| 1890 | }; | 1953 | }; |
| | 1954 | |
| 1891 | return self.finishAir(inst, result, .{ bin_op.lhs, bin_op.rhs, .none }); | 1955 | return self.finishAir(inst, result, .{ bin_op.lhs, bin_op.rhs, .none }); |
| 1892 | } | 1956 | } |
| 1893 | | 1957 | |
| ... | @@ -1954,12 +2018,15 @@ fn airShl(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -1954,12 +2018,15 @@ fn airShl(self: *Self, inst: Air.Inst.Index) !void { |
| 1954 | try self.register_manager.getReg(.rcx, null); | 2018 | try self.register_manager.getReg(.rcx, null); |
| 1955 | try self.genSetReg(shift_ty, .rcx, shift); | 2019 | try self.genSetReg(shift_ty, .rcx, shift); |
| 1956 | } | 2020 | } |
| 1957 | self.register_manager.freezeRegs(&.{.rcx}); | 2021 | const rcx_lock = self.register_manager.lockRegAssumeUnused(.rcx); |
| 1958 | defer self.register_manager.unfreezeRegs(&.{.rcx}); | 2022 | defer self.register_manager.unlockReg(rcx_lock); |
| 1959 | | 2023 | |
| 1960 | const value = try self.resolveInst(bin_op.lhs); | 2024 | const value = try self.resolveInst(bin_op.lhs); |
| 1961 | value.freezeIfRegister(&self.register_manager); | 2025 | const value_lock: ?RegisterLock = switch (value) { |
| 1962 | defer value.unfreezeIfRegister(&self.register_manager); | 2026 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 2027 | else => null, |
| | 2028 | }; |
| | 2029 | defer if (value_lock) |lock| self.register_manager.unlockReg(lock); |
| 1963 | | 2030 | |
| 1964 | const dst_mcv = try self.copyToRegisterWithInstTracking(inst, ty, value); | 2031 | const dst_mcv = try self.copyToRegisterWithInstTracking(inst, ty, value); |
| 1965 | _ = try self.addInst(.{ | 2032 | _ = try self.addInst(.{ |
| ... | @@ -2055,8 +2122,11 @@ fn airUnwrapErrErr(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -2055,8 +2122,11 @@ fn airUnwrapErrErr(self: *Self, inst: Air.Inst.Index) !void { |
| 2055 | const err_ty = err_union_ty.errorUnionSet(); | 2122 | const err_ty = err_union_ty.errorUnionSet(); |
| 2056 | const payload_ty = err_union_ty.errorUnionPayload(); | 2123 | const payload_ty = err_union_ty.errorUnionPayload(); |
| 2057 | const operand = try self.resolveInst(ty_op.operand); | 2124 | const operand = try self.resolveInst(ty_op.operand); |
| 2058 | operand.freezeIfRegister(&self.register_manager); | 2125 | const operand_lock: ?RegisterLock = switch (operand) { |
| 2059 | defer operand.unfreezeIfRegister(&self.register_manager); | 2126 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 2127 | else => null, |
| | 2128 | }; |
| | 2129 | defer if (operand_lock) |lock| self.register_manager.unlockReg(lock); |
| 2060 | | 2130 | |
| 2061 | const result: MCValue = result: { | 2131 | const result: MCValue = result: { |
| 2062 | if (!payload_ty.hasRuntimeBits()) break :result operand; | 2132 | if (!payload_ty.hasRuntimeBits()) break :result operand; |
| ... | @@ -2085,8 +2155,11 @@ fn airUnwrapErrPayload(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -2085,8 +2155,11 @@ fn airUnwrapErrPayload(self: *Self, inst: Air.Inst.Index) !void { |
| 2085 | if (!payload_ty.hasRuntimeBits()) break :result MCValue.none; | 2155 | if (!payload_ty.hasRuntimeBits()) break :result MCValue.none; |
| 2086 | | 2156 | |
| 2087 | const operand = try self.resolveInst(ty_op.operand); | 2157 | const operand = try self.resolveInst(ty_op.operand); |
| 2088 | operand.freezeIfRegister(&self.register_manager); | 2158 | const operand_lock: ?RegisterLock = switch (operand) { |
| 2089 | defer operand.unfreezeIfRegister(&self.register_manager); | 2159 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 2160 | else => null, |
| | 2161 | }; |
| | 2162 | defer if (operand_lock) |lock| self.register_manager.unlockReg(lock); |
| 2090 | | 2163 | |
| 2091 | const abi_align = err_union_ty.abiAlignment(self.target.*); | 2164 | const abi_align = err_union_ty.abiAlignment(self.target.*); |
| 2092 | const err_ty = err_union_ty.errorUnionSet(); | 2165 | const err_ty = err_union_ty.errorUnionSet(); |
| ... | @@ -2154,8 +2227,11 @@ fn airWrapOptional(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -2154,8 +2227,11 @@ fn airWrapOptional(self: *Self, inst: Air.Inst.Index) !void { |
| 2154 | | 2227 | |
| 2155 | const optional_ty = self.air.typeOfIndex(inst); | 2228 | const optional_ty = self.air.typeOfIndex(inst); |
| 2156 | const operand = try self.resolveInst(ty_op.operand); | 2229 | const operand = try self.resolveInst(ty_op.operand); |
| 2157 | operand.freezeIfRegister(&self.register_manager); | 2230 | const operand_lock: ?RegisterLock = switch (operand) { |
| 2158 | defer operand.unfreezeIfRegister(&self.register_manager); | 2231 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 2232 | else => null, |
| | 2233 | }; |
| | 2234 | defer if (operand_lock) |lock| self.register_manager.unlockReg(lock); |
| 2159 | | 2235 | |
| 2160 | if (optional_ty.isPtrLikeOptional()) { | 2236 | if (optional_ty.isPtrLikeOptional()) { |
| 2161 | // TODO should we check if we can reuse the operand? | 2237 | // TODO should we check if we can reuse the operand? |
| ... | @@ -2288,8 +2364,11 @@ fn elemOffset(self: *Self, index_ty: Type, index: MCValue, elem_size: u64) !Regi | ... | @@ -2288,8 +2364,11 @@ fn elemOffset(self: *Self, index_ty: Type, index: MCValue, elem_size: u64) !Regi |
| 2288 | fn genSliceElemPtr(self: *Self, lhs: Air.Inst.Ref, rhs: Air.Inst.Ref) !MCValue { | 2364 | fn genSliceElemPtr(self: *Self, lhs: Air.Inst.Ref, rhs: Air.Inst.Ref) !MCValue { |
| 2289 | const slice_ty = self.air.typeOf(lhs); | 2365 | const slice_ty = self.air.typeOf(lhs); |
| 2290 | const slice_mcv = try self.resolveInst(lhs); | 2366 | const slice_mcv = try self.resolveInst(lhs); |
| 2291 | slice_mcv.freezeIfRegister(&self.register_manager); | 2367 | const slice_mcv_lock: ?RegisterLock = switch (slice_mcv) { |
| 2292 | defer slice_mcv.unfreezeIfRegister(&self.register_manager); | 2368 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 2369 | else => null, |
| | 2370 | }; |
| | 2371 | defer if (slice_mcv_lock) |lock| self.register_manager.unlockReg(lock); |
| 2293 | | 2372 | |
| 2294 | const elem_ty = slice_ty.childType(); | 2373 | const elem_ty = slice_ty.childType(); |
| 2295 | const elem_size = elem_ty.abiSize(self.target.*); | 2374 | const elem_size = elem_ty.abiSize(self.target.*); |
| ... | @@ -2298,12 +2377,15 @@ fn genSliceElemPtr(self: *Self, lhs: Air.Inst.Ref, rhs: Air.Inst.Ref) !MCValue { | ... | @@ -2298,12 +2377,15 @@ fn genSliceElemPtr(self: *Self, lhs: Air.Inst.Ref, rhs: Air.Inst.Ref) !MCValue { |
| 2298 | | 2377 | |
| 2299 | const index_ty = self.air.typeOf(rhs); | 2378 | const index_ty = self.air.typeOf(rhs); |
| 2300 | const index_mcv = try self.resolveInst(rhs); | 2379 | const index_mcv = try self.resolveInst(rhs); |
| 2301 | index_mcv.freezeIfRegister(&self.register_manager); | 2380 | const index_mcv_lock: ?RegisterLock = switch (index_mcv) { |
| 2302 | defer index_mcv.unfreezeIfRegister(&self.register_manager); | 2381 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 2382 | else => null, |
| | 2383 | }; |
| | 2384 | defer if (index_mcv_lock) |lock| self.register_manager.unlockReg(lock); |
| 2303 | | 2385 | |
| 2304 | const offset_reg = try self.elemOffset(index_ty, index_mcv, elem_size); | 2386 | const offset_reg = try self.elemOffset(index_ty, index_mcv, elem_size); |
| 2305 | self.register_manager.freezeRegs(&.{offset_reg}); | 2387 | const offset_reg_lock = self.register_manager.lockRegAssumeUnused(offset_reg); |
| 2306 | defer self.register_manager.unfreezeRegs(&.{offset_reg}); | 2388 | defer self.register_manager.unlockReg(offset_reg_lock); |
| 2307 | | 2389 | |
| 2308 | const addr_reg = try self.register_manager.allocReg(null); | 2390 | const addr_reg = try self.register_manager.allocReg(null); |
| 2309 | switch (slice_mcv) { | 2391 | switch (slice_mcv) { |
| ... | @@ -2356,98 +2438,119 @@ fn airSliceElemPtr(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -2356,98 +2438,119 @@ fn airSliceElemPtr(self: *Self, inst: Air.Inst.Index) !void { |
| 2356 | | 2438 | |
| 2357 | fn airArrayElemVal(self: *Self, inst: Air.Inst.Index) !void { | 2439 | fn airArrayElemVal(self: *Self, inst: Air.Inst.Index) !void { |
| 2358 | const bin_op = self.air.instructions.items(.data)[inst].bin_op; | 2440 | const bin_op = self.air.instructions.items(.data)[inst].bin_op; |
| 2359 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { | | |
| 2360 | const array_ty = self.air.typeOf(bin_op.lhs); | | |
| 2361 | const array = try self.resolveInst(bin_op.lhs); | | |
| 2362 | array.freezeIfRegister(&self.register_manager); | | |
| 2363 | defer array.unfreezeIfRegister(&self.register_manager); | | |
| 2364 | | | |
| 2365 | const elem_ty = array_ty.childType(); | | |
| 2366 | const elem_abi_size = elem_ty.abiSize(self.target.*); | | |
| 2367 | | 2441 | |
| 2368 | const index_ty = self.air.typeOf(bin_op.rhs); | 2442 | if (self.liveness.isUnused(inst)) { |
| 2369 | const index = try self.resolveInst(bin_op.rhs); | 2443 | return self.finishAir(inst, .dead, .{ bin_op.lhs, bin_op.rhs, .none }); |
| 2370 | index.freezeIfRegister(&self.register_manager); | 2444 | } |
| 2371 | defer index.unfreezeIfRegister(&self.register_manager); | | |
| 2372 | | 2445 | |
| 2373 | const offset_reg = try self.elemOffset(index_ty, index, elem_abi_size); | 2446 | const array_ty = self.air.typeOf(bin_op.lhs); |
| 2374 | self.register_manager.freezeRegs(&.{offset_reg}); | 2447 | const array = try self.resolveInst(bin_op.lhs); |
| 2375 | defer self.register_manager.unfreezeRegs(&.{offset_reg}); | 2448 | const array_lock: ?RegisterLock = switch (array) { |
| | 2449 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 2450 | else => null, |
| | 2451 | }; |
| | 2452 | defer if (array_lock) |lock| self.register_manager.unlockReg(lock); |
| 2376 | | 2453 | |
| 2377 | const addr_reg = try self.register_manager.allocReg(null); | 2454 | const elem_ty = array_ty.childType(); |
| 2378 | switch (array) { | 2455 | const elem_abi_size = elem_ty.abiSize(self.target.*); |
| 2379 | .register => { | | |
| 2380 | const off = @intCast(i32, try self.allocMem( | | |
| 2381 | inst, | | |
| 2382 | @intCast(u32, array_ty.abiSize(self.target.*)), | | |
| 2383 | array_ty.abiAlignment(self.target.*), | | |
| 2384 | )); | | |
| 2385 | try self.genSetStack(array_ty, off, array, .{}); | | |
| 2386 | // lea reg, [rbp] | | |
| 2387 | _ = try self.addInst(.{ | | |
| 2388 | .tag = .lea, | | |
| 2389 | .ops = (Mir.Ops{ | | |
| 2390 | .reg1 = addr_reg.to64(), | | |
| 2391 | .reg2 = .rbp, | | |
| 2392 | }).encode(), | | |
| 2393 | .data = .{ .imm = @bitCast(u32, -off) }, | | |
| 2394 | }); | | |
| 2395 | }, | | |
| 2396 | .stack_offset => |off| { | | |
| 2397 | // lea reg, [rbp] | | |
| 2398 | _ = try self.addInst(.{ | | |
| 2399 | .tag = .lea, | | |
| 2400 | .ops = (Mir.Ops{ | | |
| 2401 | .reg1 = addr_reg.to64(), | | |
| 2402 | .reg2 = .rbp, | | |
| 2403 | }).encode(), | | |
| 2404 | .data = .{ .imm = @bitCast(u32, -off) }, | | |
| 2405 | }); | | |
| 2406 | }, | | |
| 2407 | .memory, | | |
| 2408 | .got_load, | | |
| 2409 | .direct_load, | | |
| 2410 | => { | | |
| 2411 | try self.loadMemPtrIntoRegister(addr_reg, Type.usize, array); | | |
| 2412 | }, | | |
| 2413 | else => return self.fail("TODO implement array_elem_val when array is {}", .{array}), | | |
| 2414 | } | | |
| 2415 | | 2456 | |
| 2416 | // TODO we could allocate register here, but need to expect addr register and potentially | 2457 | const index_ty = self.air.typeOf(bin_op.rhs); |
| 2417 | // offset register. | 2458 | const index = try self.resolveInst(bin_op.rhs); |
| 2418 | const dst_mcv = try self.allocRegOrMem(inst, false); | 2459 | const index_lock: ?RegisterLock = switch (index) { |
| 2419 | try self.genBinMathOpMir(.add, Type.usize, .{ .register = addr_reg }, .{ .register = offset_reg }); | 2460 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| 2420 | try self.load(dst_mcv, .{ .register = addr_reg.to64() }, array_ty); | 2461 | else => null, |
| 2421 | break :result dst_mcv; | | |
| 2422 | }; | 2462 | }; |
| 2423 | return self.finishAir(inst, result, .{ bin_op.lhs, bin_op.rhs, .none }); | 2463 | defer if (index_lock) |lock| self.register_manager.unlockReg(lock); |
| | 2464 | |
| | 2465 | const offset_reg = try self.elemOffset(index_ty, index, elem_abi_size); |
| | 2466 | const offset_reg_lock = self.register_manager.lockRegAssumeUnused(offset_reg); |
| | 2467 | defer self.register_manager.unlockReg(offset_reg_lock); |
| | 2468 | |
| | 2469 | const addr_reg = try self.register_manager.allocReg(null); |
| | 2470 | switch (array) { |
| | 2471 | .register => { |
| | 2472 | const off = @intCast(i32, try self.allocMem( |
| | 2473 | inst, |
| | 2474 | @intCast(u32, array_ty.abiSize(self.target.*)), |
| | 2475 | array_ty.abiAlignment(self.target.*), |
| | 2476 | )); |
| | 2477 | try self.genSetStack(array_ty, off, array, .{}); |
| | 2478 | // lea reg, [rbp] |
| | 2479 | _ = try self.addInst(.{ |
| | 2480 | .tag = .lea, |
| | 2481 | .ops = (Mir.Ops{ |
| | 2482 | .reg1 = addr_reg.to64(), |
| | 2483 | .reg2 = .rbp, |
| | 2484 | }).encode(), |
| | 2485 | .data = .{ .imm = @bitCast(u32, -off) }, |
| | 2486 | }); |
| | 2487 | }, |
| | 2488 | .stack_offset => |off| { |
| | 2489 | // lea reg, [rbp] |
| | 2490 | _ = try self.addInst(.{ |
| | 2491 | .tag = .lea, |
| | 2492 | .ops = (Mir.Ops{ |
| | 2493 | .reg1 = addr_reg.to64(), |
| | 2494 | .reg2 = .rbp, |
| | 2495 | }).encode(), |
| | 2496 | .data = .{ .imm = @bitCast(u32, -off) }, |
| | 2497 | }); |
| | 2498 | }, |
| | 2499 | .memory, |
| | 2500 | .got_load, |
| | 2501 | .direct_load, |
| | 2502 | => { |
| | 2503 | try self.loadMemPtrIntoRegister(addr_reg, Type.usize, array); |
| | 2504 | }, |
| | 2505 | else => return self.fail("TODO implement array_elem_val when array is {}", .{array}), |
| | 2506 | } |
| | 2507 | |
| | 2508 | // TODO we could allocate register here, but need to expect addr register and potentially |
| | 2509 | // offset register. |
| | 2510 | const dst_mcv = try self.allocRegOrMem(inst, false); |
| | 2511 | try self.genBinMathOpMir(.add, Type.usize, .{ .register = addr_reg }, .{ .register = offset_reg }); |
| | 2512 | try self.load(dst_mcv, .{ .register = addr_reg.to64() }, array_ty); |
| | 2513 | |
| | 2514 | return self.finishAir(inst, dst_mcv, .{ bin_op.lhs, bin_op.rhs, .none }); |
| 2424 | } | 2515 | } |
| 2425 | | 2516 | |
| 2426 | fn airPtrElemVal(self: *Self, inst: Air.Inst.Index) !void { | 2517 | fn airPtrElemVal(self: *Self, inst: Air.Inst.Index) !void { |
| 2427 | const is_volatile = false; // TODO | 2518 | const is_volatile = false; // TODO |
| 2428 | const bin_op = self.air.instructions.items(.data)[inst].bin_op; | 2519 | const bin_op = self.air.instructions.items(.data)[inst].bin_op; |
| 2429 | const result: MCValue = if (!is_volatile and self.liveness.isUnused(inst)) .dead else result: { | 2520 | |
| 2430 | // this is identical to the `airPtrElemPtr` codegen expect here an | 2521 | if (!is_volatile and self.liveness.isUnused(inst)) { |
| 2431 | // additional `mov` is needed at the end to get the actual value | 2522 | return self.finishAir(inst, .dead, .{ bin_op.lhs, bin_op.rhs, .none }); |
| 2432 | | 2523 | } |
| 2433 | const ptr_ty = self.air.typeOf(bin_op.lhs); | 2524 | |
| 2434 | const ptr = try self.resolveInst(bin_op.lhs); | 2525 | // this is identical to the `airPtrElemPtr` codegen expect here an |
| 2435 | ptr.freezeIfRegister(&self.register_manager); | 2526 | // additional `mov` is needed at the end to get the actual value |
| 2436 | defer ptr.unfreezeIfRegister(&self.register_manager); | 2527 | |
| 2437 | | 2528 | const ptr_ty = self.air.typeOf(bin_op.lhs); |
| 2438 | const elem_ty = ptr_ty.elemType2(); | 2529 | const ptr = try self.resolveInst(bin_op.lhs); |
| 2439 | const elem_abi_size = elem_ty.abiSize(self.target.*); | 2530 | const ptr_lock: ?RegisterLock = switch (ptr) { |
| 2440 | const index_ty = self.air.typeOf(bin_op.rhs); | 2531 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| 2441 | const index = try self.resolveInst(bin_op.rhs); | 2532 | else => null, |
| 2442 | index.freezeIfRegister(&self.register_manager); | 2533 | }; |
| 2443 | defer index.unfreezeIfRegister(&self.register_manager); | 2534 | defer if (ptr_lock) |lock| self.register_manager.unlockReg(lock); |
| 2444 | | 2535 | |
| 2445 | const offset_reg = try self.elemOffset(index_ty, index, elem_abi_size); | 2536 | const elem_ty = ptr_ty.elemType2(); |
| 2446 | self.register_manager.freezeRegs(&.{offset_reg}); | 2537 | const elem_abi_size = elem_ty.abiSize(self.target.*); |
| 2447 | defer self.register_manager.unfreezeRegs(&.{offset_reg}); | 2538 | const index_ty = self.air.typeOf(bin_op.rhs); |
| 2448 | | 2539 | const index = try self.resolveInst(bin_op.rhs); |
| 2449 | const dst_mcv = try self.copyToRegisterWithInstTracking(inst, ptr_ty, ptr); | 2540 | const index_lock: ?RegisterLock = switch (index) { |
| 2450 | try self.genBinMathOpMir(.add, ptr_ty, dst_mcv, .{ .register = offset_reg }); | 2541 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 2542 | else => null, |
| | 2543 | }; |
| | 2544 | defer if (index_lock) |lock| self.register_manager.unlockReg(lock); |
| | 2545 | |
| | 2546 | const offset_reg = try self.elemOffset(index_ty, index, elem_abi_size); |
| | 2547 | const offset_reg_lock = self.register_manager.lockRegAssumeUnused(offset_reg); |
| | 2548 | defer self.register_manager.unlockReg(offset_reg_lock); |
| | 2549 | |
| | 2550 | const dst_mcv = try self.copyToRegisterWithInstTracking(inst, ptr_ty, ptr); |
| | 2551 | try self.genBinMathOpMir(.add, ptr_ty, dst_mcv, .{ .register = offset_reg }); |
| | 2552 | |
| | 2553 | const result: MCValue = result: { |
| 2451 | if (elem_abi_size > 8) { | 2554 | if (elem_abi_size > 8) { |
| 2452 | return self.fail("TODO copy value with size {} from pointer", .{elem_abi_size}); | 2555 | return self.fail("TODO copy value with size {} from pointer", .{elem_abi_size}); |
| 2453 | } else { | 2556 | } else { |
| ... | @@ -2464,34 +2567,44 @@ fn airPtrElemVal(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -2464,34 +2567,44 @@ fn airPtrElemVal(self: *Self, inst: Air.Inst.Index) !void { |
| 2464 | break :result .{ .register = registerAlias(dst_mcv.register, @intCast(u32, elem_abi_size)) }; | 2567 | break :result .{ .register = registerAlias(dst_mcv.register, @intCast(u32, elem_abi_size)) }; |
| 2465 | } | 2568 | } |
| 2466 | }; | 2569 | }; |
| | 2570 | |
| 2467 | return self.finishAir(inst, result, .{ bin_op.lhs, bin_op.rhs, .none }); | 2571 | return self.finishAir(inst, result, .{ bin_op.lhs, bin_op.rhs, .none }); |
| 2468 | } | 2572 | } |
| 2469 | | 2573 | |
| 2470 | fn airPtrElemPtr(self: *Self, inst: Air.Inst.Index) !void { | 2574 | fn airPtrElemPtr(self: *Self, inst: Air.Inst.Index) !void { |
| 2471 | const ty_pl = self.air.instructions.items(.data)[inst].ty_pl; | 2575 | const ty_pl = self.air.instructions.items(.data)[inst].ty_pl; |
| 2472 | const extra = self.air.extraData(Air.Bin, ty_pl.payload).data; | 2576 | const extra = self.air.extraData(Air.Bin, ty_pl.payload).data; |
| 2473 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { | 2577 | |
| 2474 | const ptr_ty = self.air.typeOf(extra.lhs); | 2578 | if (self.liveness.isUnused(inst)) { |
| 2475 | const ptr = try self.resolveInst(extra.lhs); | 2579 | return self.finishAir(inst, .dead, .{ extra.lhs, extra.rhs, .none }); |
| 2476 | ptr.freezeIfRegister(&self.register_manager); | 2580 | } |
| 2477 | defer ptr.unfreezeIfRegister(&self.register_manager); | 2581 | |
| 2478 | | 2582 | const ptr_ty = self.air.typeOf(extra.lhs); |
| 2479 | const elem_ty = ptr_ty.elemType2(); | 2583 | const ptr = try self.resolveInst(extra.lhs); |
| 2480 | const elem_abi_size = elem_ty.abiSize(self.target.*); | 2584 | const ptr_lock: ?RegisterLock = switch (ptr) { |
| 2481 | const index_ty = self.air.typeOf(extra.rhs); | 2585 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| 2482 | const index = try self.resolveInst(extra.rhs); | 2586 | else => null, |
| 2483 | index.freezeIfRegister(&self.register_manager); | | |
| 2484 | defer index.unfreezeIfRegister(&self.register_manager); | | |
| 2485 | | | |
| 2486 | const offset_reg = try self.elemOffset(index_ty, index, elem_abi_size); | | |
| 2487 | self.register_manager.freezeRegs(&.{offset_reg}); | | |
| 2488 | defer self.register_manager.unfreezeRegs(&.{offset_reg}); | | |
| 2489 | | | |
| 2490 | const dst_mcv = try self.copyToRegisterWithInstTracking(inst, ptr_ty, ptr); | | |
| 2491 | try self.genBinMathOpMir(.add, ptr_ty, dst_mcv, .{ .register = offset_reg }); | | |
| 2492 | break :result dst_mcv; | | |
| 2493 | }; | 2587 | }; |
| 2494 | return self.finishAir(inst, result, .{ extra.lhs, extra.rhs, .none }); | 2588 | defer if (ptr_lock) |lock| self.register_manager.unlockReg(lock); |
| | 2589 | |
| | 2590 | const elem_ty = ptr_ty.elemType2(); |
| | 2591 | const elem_abi_size = elem_ty.abiSize(self.target.*); |
| | 2592 | const index_ty = self.air.typeOf(extra.rhs); |
| | 2593 | const index = try self.resolveInst(extra.rhs); |
| | 2594 | const index_lock: ?RegisterLock = switch (index) { |
| | 2595 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 2596 | else => null, |
| | 2597 | }; |
| | 2598 | defer if (index_lock) |lock| self.register_manager.unlockReg(lock); |
| | 2599 | |
| | 2600 | const offset_reg = try self.elemOffset(index_ty, index, elem_abi_size); |
| | 2601 | const offset_reg_lock = self.register_manager.lockRegAssumeUnused(offset_reg); |
| | 2602 | defer self.register_manager.unlockReg(offset_reg_lock); |
| | 2603 | |
| | 2604 | const dst_mcv = try self.copyToRegisterWithInstTracking(inst, ptr_ty, ptr); |
| | 2605 | try self.genBinMathOpMir(.add, ptr_ty, dst_mcv, .{ .register = offset_reg }); |
| | 2606 | |
| | 2607 | return self.finishAir(inst, dst_mcv, .{ extra.lhs, extra.rhs, .none }); |
| 2495 | } | 2608 | } |
| 2496 | | 2609 | |
| 2497 | fn airSetUnionTag(self: *Self, inst: Air.Inst.Index) !void { | 2610 | fn airSetUnionTag(self: *Self, inst: Air.Inst.Index) !void { |
| ... | @@ -2506,12 +2619,18 @@ fn airSetUnionTag(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -2506,12 +2619,18 @@ fn airSetUnionTag(self: *Self, inst: Air.Inst.Index) !void { |
| 2506 | } | 2619 | } |
| 2507 | | 2620 | |
| 2508 | const ptr = try self.resolveInst(bin_op.lhs); | 2621 | const ptr = try self.resolveInst(bin_op.lhs); |
| 2509 | ptr.freezeIfRegister(&self.register_manager); | 2622 | const ptr_lock: ?RegisterLock = switch (ptr) { |
| 2510 | defer ptr.unfreezeIfRegister(&self.register_manager); | 2623 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 2624 | else => null, |
| | 2625 | }; |
| | 2626 | defer if (ptr_lock) |lock| self.register_manager.unlockReg(lock); |
| 2511 | | 2627 | |
| 2512 | const tag = try self.resolveInst(bin_op.rhs); | 2628 | const tag = try self.resolveInst(bin_op.rhs); |
| 2513 | tag.freezeIfRegister(&self.register_manager); | 2629 | const tag_lock: ?RegisterLock = switch (tag) { |
| 2514 | defer tag.unfreezeIfRegister(&self.register_manager); | 2630 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 2631 | else => null, |
| | 2632 | }; |
| | 2633 | defer if (tag_lock) |lock| self.register_manager.unlockReg(lock); |
| 2515 | | 2634 | |
| 2516 | const adjusted_ptr: MCValue = if (layout.payload_size > 0 and layout.tag_align < layout.payload_align) blk: { | 2635 | const adjusted_ptr: MCValue = if (layout.payload_size > 0 and layout.tag_align < layout.payload_align) blk: { |
| 2517 | // TODO reusing the operand | 2636 | // TODO reusing the operand |
| ... | @@ -2541,8 +2660,11 @@ fn airGetUnionTag(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -2541,8 +2660,11 @@ fn airGetUnionTag(self: *Self, inst: Air.Inst.Index) !void { |
| 2541 | | 2660 | |
| 2542 | // TODO reusing the operand | 2661 | // TODO reusing the operand |
| 2543 | const operand = try self.resolveInst(ty_op.operand); | 2662 | const operand = try self.resolveInst(ty_op.operand); |
| 2544 | operand.freezeIfRegister(&self.register_manager); | 2663 | const operand_lock: ?RegisterLock = switch (operand) { |
| 2545 | defer operand.unfreezeIfRegister(&self.register_manager); | 2664 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 2665 | else => null, |
| | 2666 | }; |
| | 2667 | defer if (operand_lock) |lock| self.register_manager.unlockReg(lock); |
| 2546 | | 2668 | |
| 2547 | const tag_abi_size = tag_ty.abiSize(self.target.*); | 2669 | const tag_abi_size = tag_ty.abiSize(self.target.*); |
| 2548 | const dst_mcv: MCValue = blk: { | 2670 | const dst_mcv: MCValue = blk: { |
| ... | @@ -2689,8 +2811,8 @@ fn load(self: *Self, dst_mcv: MCValue, ptr: MCValue, ptr_ty: Type) InnerError!vo | ... | @@ -2689,8 +2811,8 @@ fn load(self: *Self, dst_mcv: MCValue, ptr: MCValue, ptr_ty: Type) InnerError!vo |
| 2689 | try self.setRegOrMem(elem_ty, dst_mcv, .{ .stack_offset = off }); | 2811 | try self.setRegOrMem(elem_ty, dst_mcv, .{ .stack_offset = off }); |
| 2690 | }, | 2812 | }, |
| 2691 | .register => |reg| { | 2813 | .register => |reg| { |
| 2692 | self.register_manager.freezeRegs(&.{reg}); | 2814 | const reg_lock = self.register_manager.lockReg(reg); |
| 2693 | defer self.register_manager.unfreezeRegs(&.{reg}); | 2815 | defer if (reg_lock) |lock| self.register_manager.unlockReg(lock); |
| 2694 | | 2816 | |
| 2695 | switch (dst_mcv) { | 2817 | switch (dst_mcv) { |
| 2696 | .dead => unreachable, | 2818 | .dead => unreachable, |
| ... | @@ -2815,8 +2937,8 @@ fn store(self: *Self, ptr: MCValue, value: MCValue, ptr_ty: Type, value_ty: Type | ... | @@ -2815,8 +2937,8 @@ fn store(self: *Self, ptr: MCValue, value: MCValue, ptr_ty: Type, value_ty: Type |
| 2815 | try self.genSetStack(value_ty, off, value, .{}); | 2937 | try self.genSetStack(value_ty, off, value, .{}); |
| 2816 | }, | 2938 | }, |
| 2817 | .register => |reg| { | 2939 | .register => |reg| { |
| 2818 | self.register_manager.freezeRegs(&.{reg}); | 2940 | const reg_lock = self.register_manager.lockReg(reg); |
| 2819 | defer self.register_manager.unfreezeRegs(&.{reg}); | 2941 | defer if (reg_lock) |lock| self.register_manager.unlockReg(lock); |
| 2820 | | 2942 | |
| 2821 | switch (value) { | 2943 | switch (value) { |
| 2822 | .none => unreachable, | 2944 | .none => unreachable, |
| ... | @@ -2906,12 +3028,15 @@ fn store(self: *Self, ptr: MCValue, value: MCValue, ptr_ty: Type, value_ty: Type | ... | @@ -2906,12 +3028,15 @@ fn store(self: *Self, ptr: MCValue, value: MCValue, ptr_ty: Type, value_ty: Type |
| 2906 | .direct_load, | 3028 | .direct_load, |
| 2907 | .memory, | 3029 | .memory, |
| 2908 | => { | 3030 | => { |
| 2909 | value.freezeIfRegister(&self.register_manager); | 3031 | const value_lock: ?RegisterLock = switch (value) { |
| 2910 | defer value.unfreezeIfRegister(&self.register_manager); | 3032 | .register => |reg| self.register_manager.lockReg(reg), |
| | 3033 | else => null, |
| | 3034 | }; |
| | 3035 | defer if (value_lock) |lock| self.register_manager.unlockReg(lock); |
| 2911 | | 3036 | |
| 2912 | const addr_reg = try self.register_manager.allocReg(null); | 3037 | const addr_reg = try self.register_manager.allocReg(null); |
| 2913 | self.register_manager.freezeRegs(&.{addr_reg}); | 3038 | const addr_reg_lock = self.register_manager.lockRegAssumeUnused(addr_reg); |
| 2914 | defer self.register_manager.unfreezeRegs(&.{addr_reg}); | 3039 | defer self.register_manager.unlockReg(addr_reg_lock); |
| 2915 | | 3040 | |
| 2916 | try self.loadMemPtrIntoRegister(addr_reg, ptr_ty, ptr); | 3041 | try self.loadMemPtrIntoRegister(addr_reg, ptr_ty, ptr); |
| 2917 | | 3042 | |
| ... | @@ -2982,8 +3107,8 @@ fn store(self: *Self, ptr: MCValue, value: MCValue, ptr_ty: Type, value_ty: Type | ... | @@ -2982,8 +3107,8 @@ fn store(self: *Self, ptr: MCValue, value: MCValue, ptr_ty: Type, value_ty: Type |
| 2982 | => { | 3107 | => { |
| 2983 | if (abi_size <= 8) { | 3108 | if (abi_size <= 8) { |
| 2984 | const tmp_reg = try self.register_manager.allocReg(null); | 3109 | const tmp_reg = try self.register_manager.allocReg(null); |
| 2985 | self.register_manager.freezeRegs(&.{tmp_reg}); | 3110 | const tmp_reg_lock = self.register_manager.lockRegAssumeUnused(tmp_reg); |
| 2986 | defer self.register_manager.unfreezeRegs(&.{tmp_reg}); | 3111 | defer self.register_manager.unlockReg(tmp_reg_lock); |
| 2987 | | 3112 | |
| 2988 | try self.loadMemPtrIntoRegister(tmp_reg, value_ty, value); | 3113 | try self.loadMemPtrIntoRegister(tmp_reg, value_ty, value); |
| 2989 | | 3114 | |
| ... | @@ -3073,8 +3198,8 @@ fn structFieldPtr(self: *Self, inst: Air.Inst.Index, operand: Air.Inst.Ref, inde | ... | @@ -3073,8 +3198,8 @@ fn structFieldPtr(self: *Self, inst: Air.Inst.Index, operand: Air.Inst.Ref, inde |
| 3073 | const offset_reg = try self.copyToTmpRegister(ptr_ty, .{ | 3198 | const offset_reg = try self.copyToTmpRegister(ptr_ty, .{ |
| 3074 | .immediate = struct_field_offset, | 3199 | .immediate = struct_field_offset, |
| 3075 | }); | 3200 | }); |
| 3076 | self.register_manager.freezeRegs(&.{offset_reg}); | 3201 | const offset_reg_lock = self.register_manager.lockRegAssumeUnused(offset_reg); |
| 3077 | defer self.register_manager.unfreezeRegs(&.{offset_reg}); | 3202 | defer self.register_manager.unlockReg(offset_reg_lock); |
| 3078 | | 3203 | |
| 3079 | const dst_mcv = try self.copyToRegisterWithInstTracking(inst, ptr_ty, mcv); | 3204 | const dst_mcv = try self.copyToRegisterWithInstTracking(inst, ptr_ty, mcv); |
| 3080 | try self.genBinMathOpMir(.add, ptr_ty, dst_mcv, .{ .register = offset_reg }); | 3205 | try self.genBinMathOpMir(.add, ptr_ty, dst_mcv, .{ .register = offset_reg }); |
| ... | @@ -3085,24 +3210,27 @@ fn structFieldPtr(self: *Self, inst: Air.Inst.Index, operand: Air.Inst.Ref, inde | ... | @@ -3085,24 +3210,27 @@ fn structFieldPtr(self: *Self, inst: Air.Inst.Index, operand: Air.Inst.Ref, inde |
| 3085 | break :result MCValue{ .ptr_stack_offset = ptr_stack_offset }; | 3210 | break :result MCValue{ .ptr_stack_offset = ptr_stack_offset }; |
| 3086 | }, | 3211 | }, |
| 3087 | .register => |reg| { | 3212 | .register => |reg| { |
| | 3213 | const reg_lock = self.register_manager.lockRegAssumeUnused(reg); |
| | 3214 | defer self.register_manager.unlockReg(reg_lock); |
| | 3215 | |
| 3088 | const offset_reg = try self.copyToTmpRegister(ptr_ty, .{ | 3216 | const offset_reg = try self.copyToTmpRegister(ptr_ty, .{ |
| 3089 | .immediate = struct_field_offset, | 3217 | .immediate = struct_field_offset, |
| 3090 | }); | 3218 | }); |
| 3091 | self.register_manager.freezeRegs(&.{offset_reg}); | 3219 | const offset_reg_lock = self.register_manager.lockRegAssumeUnused(offset_reg); |
| 3092 | defer self.register_manager.unfreezeRegs(&.{offset_reg}); | 3220 | defer self.register_manager.unlockReg(offset_reg_lock); |
| 3093 | | 3221 | |
| 3094 | const can_reuse_operand = self.reuseOperand(inst, operand, 0, mcv); | 3222 | const can_reuse_operand = self.reuseOperand(inst, operand, 0, mcv); |
| 3095 | const result_reg = blk: { | 3223 | const result_reg: Register = blk: { |
| 3096 | if (can_reuse_operand) { | 3224 | if (can_reuse_operand) { |
| 3097 | break :blk reg; | 3225 | break :blk reg; |
| 3098 | } else { | 3226 | } else { |
| 3099 | self.register_manager.freezeRegs(&.{reg}); | | |
| 3100 | const result_reg = try self.register_manager.allocReg(inst); | 3227 | const result_reg = try self.register_manager.allocReg(inst); |
| 3101 | try self.genSetReg(ptr_ty, result_reg, mcv); | 3228 | try self.genSetReg(ptr_ty, result_reg, mcv); |
| 3102 | break :blk result_reg; | 3229 | break :blk result_reg; |
| 3103 | } | 3230 | } |
| 3104 | }; | 3231 | }; |
| 3105 | defer if (!can_reuse_operand) self.register_manager.unfreezeRegs(&.{reg}); | 3232 | const result_reg_lock = self.register_manager.lockReg(result_reg); |
| | 3233 | defer if (result_reg_lock) |lock| self.register_manager.unlockReg(lock); |
| 3106 | | 3234 | |
| 3107 | try self.genBinMathOpMir(.add, ptr_ty, .{ .register = result_reg }, .{ .register = offset_reg }); | 3235 | try self.genBinMathOpMir(.add, ptr_ty, .{ .register = result_reg }, .{ .register = offset_reg }); |
| 3108 | break :result MCValue{ .register = result_reg }; | 3236 | break :result MCValue{ .register = result_reg }; |
| ... | @@ -3118,22 +3246,27 @@ fn airStructFieldVal(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -3118,22 +3246,27 @@ fn airStructFieldVal(self: *Self, inst: Air.Inst.Index) !void { |
| 3118 | const extra = self.air.extraData(Air.StructField, ty_pl.payload).data; | 3246 | const extra = self.air.extraData(Air.StructField, ty_pl.payload).data; |
| 3119 | const operand = extra.struct_operand; | 3247 | const operand = extra.struct_operand; |
| 3120 | const index = extra.field_index; | 3248 | const index = extra.field_index; |
| 3121 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { | | |
| 3122 | const mcv = try self.resolveInst(operand); | | |
| 3123 | const struct_ty = self.air.typeOf(operand); | | |
| 3124 | const struct_field_offset = struct_ty.structFieldOffset(index, self.target.*); | | |
| 3125 | const struct_field_ty = struct_ty.structFieldType(index); | | |
| 3126 | | 3249 | |
| | 3250 | if (self.liveness.isUnused(inst)) { |
| | 3251 | return self.finishAir(inst, .dead, .{ extra.struct_operand, .none, .none }); |
| | 3252 | } |
| | 3253 | |
| | 3254 | const mcv = try self.resolveInst(operand); |
| | 3255 | const struct_ty = self.air.typeOf(operand); |
| | 3256 | const struct_field_offset = struct_ty.structFieldOffset(index, self.target.*); |
| | 3257 | const struct_field_ty = struct_ty.structFieldType(index); |
| | 3258 | |
| | 3259 | const result: MCValue = result: { |
| 3127 | switch (mcv) { | 3260 | switch (mcv) { |
| 3128 | .stack_offset => |off| { | 3261 | .stack_offset => |off| { |
| 3129 | const stack_offset = off - @intCast(i32, struct_field_offset); | 3262 | const stack_offset = off - @intCast(i32, struct_field_offset); |
| 3130 | break :result MCValue{ .stack_offset = stack_offset }; | 3263 | break :result MCValue{ .stack_offset = stack_offset }; |
| 3131 | }, | 3264 | }, |
| 3132 | .register => |reg| { | 3265 | .register => |reg| { |
| 3133 | self.register_manager.freezeRegs(&.{reg}); | 3266 | const reg_lock = self.register_manager.lockRegAssumeUnused(reg); |
| 3134 | defer self.register_manager.unfreezeRegs(&.{reg}); | 3267 | defer self.register_manager.unlockReg(reg_lock); |
| 3135 | | 3268 | |
| 3136 | const dst_mcv = blk: { | 3269 | const dst_mcv: MCValue = blk: { |
| 3137 | if (self.reuseOperand(inst, operand, 0, mcv)) { | 3270 | if (self.reuseOperand(inst, operand, 0, mcv)) { |
| 3138 | break :blk mcv; | 3271 | break :blk mcv; |
| 3139 | } else { | 3272 | } else { |
| ... | @@ -3143,8 +3276,11 @@ fn airStructFieldVal(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -3143,8 +3276,11 @@ fn airStructFieldVal(self: *Self, inst: Air.Inst.Index) !void { |
| 3143 | break :blk dst_mcv; | 3276 | break :blk dst_mcv; |
| 3144 | } | 3277 | } |
| 3145 | }; | 3278 | }; |
| 3146 | dst_mcv.freezeIfRegister(&self.register_manager); | 3279 | const dst_mcv_lock: ?RegisterLock = switch (dst_mcv) { |
| 3147 | defer dst_mcv.unfreezeIfRegister(&self.register_manager); | 3280 | .register => |a_reg| self.register_manager.lockReg(a_reg), |
| | 3281 | else => null, |
| | 3282 | }; |
| | 3283 | defer if (dst_mcv_lock) |lock| self.register_manager.unlockReg(lock); |
| 3148 | | 3284 | |
| 3149 | // Shift by struct_field_offset. | 3285 | // Shift by struct_field_offset. |
| 3150 | const shift = @intCast(u8, struct_field_offset * @sizeOf(usize)); | 3286 | const shift = @intCast(u8, struct_field_offset * @sizeOf(usize)); |
| ... | @@ -3186,8 +3322,8 @@ fn airStructFieldVal(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -3186,8 +3322,8 @@ fn airStructFieldVal(self: *Self, inst: Air.Inst.Index) !void { |
| 3186 | }, | 3322 | }, |
| 3187 | 1 => { | 3323 | 1 => { |
| 3188 | // Get overflow bit. | 3324 | // Get overflow bit. |
| 3189 | mcv.freezeIfRegister(&self.register_manager); | 3325 | const reg_lock = self.register_manager.lockRegAssumeUnused(reg); |
| 3190 | defer mcv.unfreezeIfRegister(&self.register_manager); | 3326 | defer self.register_manager.unlockReg(reg_lock); |
| 3191 | | 3327 | |
| 3192 | const dst_reg = try self.register_manager.allocReg(inst); | 3328 | const dst_reg = try self.register_manager.allocReg(inst); |
| 3193 | const flags: u2 = switch (mcv) { | 3329 | const flags: u2 = switch (mcv) { |
| ... | @@ -3229,15 +3365,21 @@ fn genBinMathOp(self: *Self, inst: Air.Inst.Index, op_lhs: Air.Inst.Ref, op_rhs: | ... | @@ -3229,15 +3365,21 @@ fn genBinMathOp(self: *Self, inst: Air.Inst.Index, op_lhs: Air.Inst.Ref, op_rhs: |
| 3229 | const dst_ty = self.air.typeOf(op_lhs); | 3365 | const dst_ty = self.air.typeOf(op_lhs); |
| 3230 | | 3366 | |
| 3231 | const lhs = try self.resolveInst(op_lhs); | 3367 | const lhs = try self.resolveInst(op_lhs); |
| 3232 | lhs.freezeIfRegister(&self.register_manager); | 3368 | const lhs_lock: ?RegisterLock = switch (lhs) { |
| 3233 | defer lhs.unfreezeIfRegister(&self.register_manager); | 3369 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 3370 | else => null, |
| | 3371 | }; |
| | 3372 | defer if (lhs_lock) |lock| self.register_manager.unlockReg(lock); |
| 3234 | | 3373 | |
| 3235 | const rhs = try self.resolveInst(op_rhs); | 3374 | const rhs = try self.resolveInst(op_rhs); |
| 3236 | rhs.freezeIfRegister(&self.register_manager); | 3375 | const rhs_lock: ?RegisterLock = switch (rhs) { |
| 3237 | defer rhs.unfreezeIfRegister(&self.register_manager); | 3376 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 3377 | else => null, |
| | 3378 | }; |
| | 3379 | defer if (rhs_lock) |lock| self.register_manager.unlockReg(lock); |
| 3238 | | 3380 | |
| 3239 | var flipped: bool = false; | 3381 | var flipped: bool = false; |
| 3240 | const dst_mcv = blk: { | 3382 | const dst_mcv: MCValue = blk: { |
| 3241 | if (self.reuseOperand(inst, op_lhs, 0, lhs) and lhs.isRegister()) { | 3383 | if (self.reuseOperand(inst, op_lhs, 0, lhs) and lhs.isRegister()) { |
| 3242 | break :blk lhs; | 3384 | break :blk lhs; |
| 3243 | } | 3385 | } |
| ... | @@ -3247,16 +3389,22 @@ fn genBinMathOp(self: *Self, inst: Air.Inst.Index, op_lhs: Air.Inst.Ref, op_rhs: | ... | @@ -3247,16 +3389,22 @@ fn genBinMathOp(self: *Self, inst: Air.Inst.Index, op_lhs: Air.Inst.Ref, op_rhs: |
| 3247 | } | 3389 | } |
| 3248 | break :blk try self.copyToRegisterWithInstTracking(inst, dst_ty, lhs); | 3390 | break :blk try self.copyToRegisterWithInstTracking(inst, dst_ty, lhs); |
| 3249 | }; | 3391 | }; |
| 3250 | dst_mcv.freezeIfRegister(&self.register_manager); | 3392 | const dst_mcv_lock: ?RegisterLock = switch (dst_mcv) { |
| 3251 | defer dst_mcv.unfreezeIfRegister(&self.register_manager); | 3393 | .register => |reg| self.register_manager.lockReg(reg), |
| | 3394 | else => null, |
| | 3395 | }; |
| | 3396 | defer if (dst_mcv_lock) |lock| self.register_manager.unlockReg(lock); |
| 3252 | | 3397 | |
| 3253 | const src_mcv = blk: { | 3398 | const src_mcv: MCValue = blk: { |
| 3254 | const mcv = if (flipped) lhs else rhs; | 3399 | const mcv = if (flipped) lhs else rhs; |
| 3255 | if (mcv.isRegister() or mcv.isMemory()) break :blk mcv; | 3400 | if (mcv.isRegister() or mcv.isMemory()) break :blk mcv; |
| 3256 | break :blk MCValue{ .register = try self.copyToTmpRegister(dst_ty, mcv) }; | 3401 | break :blk MCValue{ .register = try self.copyToTmpRegister(dst_ty, mcv) }; |
| 3257 | }; | 3402 | }; |
| 3258 | src_mcv.freezeIfRegister(&self.register_manager); | 3403 | const src_mcv_lock: ?RegisterLock = switch (src_mcv) { |
| 3259 | defer src_mcv.unfreezeIfRegister(&self.register_manager); | 3404 | .register => |reg| self.register_manager.lockReg(reg), |
| | 3405 | else => null, |
| | 3406 | }; |
| | 3407 | defer if (src_mcv_lock) |lock| self.register_manager.unlockReg(lock); |
| 3260 | | 3408 | |
| 3261 | const tag = self.air.instructions.items(.tag)[inst]; | 3409 | const tag = self.air.instructions.items(.tag)[inst]; |
| 3262 | switch (tag) { | 3410 | switch (tag) { |
| ... | @@ -3287,8 +3435,9 @@ fn genBinMathOpMir(self: *Self, mir_tag: Mir.Inst.Tag, dst_ty: Type, dst_mcv: MC | ... | @@ -3287,8 +3435,9 @@ fn genBinMathOpMir(self: *Self, mir_tag: Mir.Inst.Tag, dst_ty: Type, dst_mcv: MC |
| 3287 | .register_overflow_unsigned => unreachable, | 3435 | .register_overflow_unsigned => unreachable, |
| 3288 | .register_overflow_signed => unreachable, | 3436 | .register_overflow_signed => unreachable, |
| 3289 | .ptr_stack_offset => { | 3437 | .ptr_stack_offset => { |
| 3290 | self.register_manager.freezeRegs(&.{dst_reg}); | 3438 | const dst_reg_lock = self.register_manager.lockReg(dst_reg); |
| 3291 | defer self.register_manager.unfreezeRegs(&.{dst_reg}); | 3439 | defer if (dst_reg_lock) |lock| self.register_manager.unlockReg(lock); |
| | 3440 | |
| 3292 | const reg = try self.copyToTmpRegister(dst_ty, src_mcv); | 3441 | const reg = try self.copyToTmpRegister(dst_ty, src_mcv); |
| 3293 | return self.genBinMathOpMir(mir_tag, dst_ty, dst_mcv, .{ .register = reg }); | 3442 | return self.genBinMathOpMir(mir_tag, dst_ty, dst_mcv, .{ .register = reg }); |
| 3294 | }, | 3443 | }, |
| ... | @@ -3318,8 +3467,9 @@ fn genBinMathOpMir(self: *Self, mir_tag: Mir.Inst.Tag, dst_ty: Type, dst_mcv: MC | ... | @@ -3318,8 +3467,9 @@ fn genBinMathOpMir(self: *Self, mir_tag: Mir.Inst.Tag, dst_ty: Type, dst_mcv: MC |
| 3318 | .compare_flags_unsigned, | 3467 | .compare_flags_unsigned, |
| 3319 | => { | 3468 | => { |
| 3320 | assert(abi_size <= 8); | 3469 | assert(abi_size <= 8); |
| 3321 | self.register_manager.freezeRegs(&.{dst_reg}); | 3470 | const dst_reg_lock = self.register_manager.lockReg(dst_reg); |
| 3322 | defer self.register_manager.unfreezeRegs(&.{dst_reg}); | 3471 | defer if (dst_reg_lock) |lock| self.register_manager.unlockReg(lock); |
| | 3472 | |
| 3323 | const reg = try self.copyToTmpRegister(dst_ty, src_mcv); | 3473 | const reg = try self.copyToTmpRegister(dst_ty, src_mcv); |
| 3324 | return self.genBinMathOpMir(mir_tag, dst_ty, dst_mcv, .{ .register = reg }); | 3474 | return self.genBinMathOpMir(mir_tag, dst_ty, dst_mcv, .{ .register = reg }); |
| 3325 | }, | 3475 | }, |
| ... | @@ -3659,20 +3809,25 @@ fn airCall(self: *Self, inst: Air.Inst.Index, modifier: std.builtin.CallOptions. | ... | @@ -3659,20 +3809,25 @@ fn airCall(self: *Self, inst: Air.Inst.Index, modifier: std.builtin.CallOptions. |
| 3659 | try self.register_manager.getReg(reg, null); | 3809 | try self.register_manager.getReg(reg, null); |
| 3660 | } | 3810 | } |
| 3661 | | 3811 | |
| 3662 | if (info.return_value == .stack_offset) { | 3812 | const rdi_lock: ?RegisterLock = blk: { |
| 3663 | const ret_ty = fn_ty.fnReturnType(); | 3813 | if (info.return_value == .stack_offset) { |
| 3664 | const ret_abi_size = @intCast(u32, ret_ty.abiSize(self.target.*)); | 3814 | const ret_ty = fn_ty.fnReturnType(); |
| 3665 | const ret_abi_align = @intCast(u32, ret_ty.abiAlignment(self.target.*)); | 3815 | const ret_abi_size = @intCast(u32, ret_ty.abiSize(self.target.*)); |
| 3666 | const stack_offset = @intCast(i32, try self.allocMem(inst, ret_abi_size, ret_abi_align)); | 3816 | const ret_abi_align = @intCast(u32, ret_ty.abiAlignment(self.target.*)); |
| 3667 | log.debug("airCall: return value on stack at offset {}", .{stack_offset}); | 3817 | const stack_offset = @intCast(i32, try self.allocMem(inst, ret_abi_size, ret_abi_align)); |
| | 3818 | log.debug("airCall: return value on stack at offset {}", .{stack_offset}); |
| 3668 | | 3819 | |
| 3669 | try self.register_manager.getReg(.rdi, null); | 3820 | try self.register_manager.getReg(.rdi, null); |
| 3670 | try self.genSetReg(Type.usize, .rdi, .{ .ptr_stack_offset = stack_offset }); | 3821 | try self.genSetReg(Type.usize, .rdi, .{ .ptr_stack_offset = stack_offset }); |
| 3671 | self.register_manager.freezeRegs(&.{.rdi}); | 3822 | const rdi_lock = self.register_manager.lockRegAssumeUnused(.rdi); |
| 3672 | | 3823 | |
| 3673 | info.return_value.stack_offset = stack_offset; | 3824 | info.return_value.stack_offset = stack_offset; |
| 3674 | } | 3825 | |
| 3675 | defer if (info.return_value == .stack_offset) self.register_manager.unfreezeRegs(&.{.rdi}); | 3826 | break :blk rdi_lock; |
| | 3827 | } |
| | 3828 | break :blk null; |
| | 3829 | }; |
| | 3830 | defer if (rdi_lock) |lock| self.register_manager.unlockReg(lock); |
| 3676 | | 3831 | |
| 3677 | for (args) |arg, arg_i| { | 3832 | for (args) |arg, arg_i| { |
| 3678 | const mc_arg = info.args[arg_i]; | 3833 | const mc_arg = info.args[arg_i]; |
| ... | @@ -3891,11 +4046,10 @@ fn airRet(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -3891,11 +4046,10 @@ fn airRet(self: *Self, inst: Air.Inst.Index) !void { |
| 3891 | const ret_ty = self.fn_type.fnReturnType(); | 4046 | const ret_ty = self.fn_type.fnReturnType(); |
| 3892 | switch (self.ret_mcv) { | 4047 | switch (self.ret_mcv) { |
| 3893 | .stack_offset => { | 4048 | .stack_offset => { |
| 3894 | self.register_manager.freezeRegs(&.{ .rax, .rcx }); | | |
| 3895 | defer self.register_manager.unfreezeRegs(&.{ .rax, .rcx }); | | |
| 3896 | const reg = try self.copyToTmpRegister(Type.usize, self.ret_mcv); | 4049 | const reg = try self.copyToTmpRegister(Type.usize, self.ret_mcv); |
| 3897 | self.register_manager.freezeRegs(&.{reg}); | 4050 | const reg_lock = self.register_manager.lockRegAssumeUnused(reg); |
| 3898 | defer self.register_manager.unfreezeRegs(&.{reg}); | 4051 | defer self.register_manager.unlockReg(reg_lock); |
| | 4052 | |
| 3899 | try self.genSetStack(ret_ty, 0, operand, .{ | 4053 | try self.genSetStack(ret_ty, 0, operand, .{ |
| 3900 | .source_stack_base = .rbp, | 4054 | .source_stack_base = .rbp, |
| 3901 | .dest_stack_base = reg, | 4055 | .dest_stack_base = reg, |
| ... | @@ -3926,11 +4080,10 @@ fn airRetLoad(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -3926,11 +4080,10 @@ fn airRetLoad(self: *Self, inst: Air.Inst.Index) !void { |
| 3926 | const elem_ty = ptr_ty.elemType(); | 4080 | const elem_ty = ptr_ty.elemType(); |
| 3927 | switch (self.ret_mcv) { | 4081 | switch (self.ret_mcv) { |
| 3928 | .stack_offset => { | 4082 | .stack_offset => { |
| 3929 | self.register_manager.freezeRegs(&.{ .rax, .rcx }); | | |
| 3930 | defer self.register_manager.unfreezeRegs(&.{ .rax, .rcx }); | | |
| 3931 | const reg = try self.copyToTmpRegister(Type.usize, self.ret_mcv); | 4083 | const reg = try self.copyToTmpRegister(Type.usize, self.ret_mcv); |
| 3932 | self.register_manager.freezeRegs(&.{reg}); | 4084 | const reg_lock = self.register_manager.lockRegAssumeUnused(reg); |
| 3933 | defer self.register_manager.unfreezeRegs(&.{reg}); | 4085 | defer self.register_manager.unlockReg(reg_lock); |
| | 4086 | |
| 3934 | try self.genInlineMemcpy(.{ .stack_offset = 0 }, ptr, .{ .immediate = elem_ty.abiSize(self.target.*) }, .{ | 4087 | try self.genInlineMemcpy(.{ .stack_offset = 0 }, ptr, .{ .immediate = elem_ty.abiSize(self.target.*) }, .{ |
| 3935 | .source_stack_base = .rbp, | 4088 | .source_stack_base = .rbp, |
| 3936 | .dest_stack_base = reg, | 4089 | .dest_stack_base = reg, |
| ... | @@ -3980,12 +4133,15 @@ fn airCmp(self: *Self, inst: Air.Inst.Index, op: math.CompareOperator) !void { | ... | @@ -3980,12 +4133,15 @@ fn airCmp(self: *Self, inst: Air.Inst.Index, op: math.CompareOperator) !void { |
| 3980 | // Source operand can be an immediate, 8 bits or 32 bits. | 4133 | // Source operand can be an immediate, 8 bits or 32 bits. |
| 3981 | // TODO look into reusing the operand | 4134 | // TODO look into reusing the operand |
| 3982 | const lhs = try self.resolveInst(bin_op.lhs); | 4135 | const lhs = try self.resolveInst(bin_op.lhs); |
| 3983 | lhs.freezeIfRegister(&self.register_manager); | 4136 | const lhs_lock: ?RegisterLock = switch (lhs) { |
| 3984 | defer lhs.unfreezeIfRegister(&self.register_manager); | 4137 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 4138 | else => null, |
| | 4139 | }; |
| | 4140 | defer if (lhs_lock) |lock| self.register_manager.unlockReg(lock); |
| 3985 | | 4141 | |
| 3986 | const dst_reg = try self.copyToTmpRegister(ty, lhs); | 4142 | const dst_reg = try self.copyToTmpRegister(ty, lhs); |
| 3987 | self.register_manager.freezeRegs(&.{dst_reg}); | 4143 | const dst_reg_lock = self.register_manager.lockRegAssumeUnused(dst_reg); |
| 3988 | defer self.register_manager.unfreezeRegs(&.{dst_reg}); | 4144 | defer self.register_manager.unlockReg(dst_reg_lock); |
| 3989 | | 4145 | |
| 3990 | const dst_mcv = MCValue{ .register = dst_reg }; | 4146 | const dst_mcv = MCValue{ .register = dst_reg }; |
| 3991 | | 4147 | |
| ... | @@ -4446,22 +4602,31 @@ fn airIsNull(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -4446,22 +4602,31 @@ fn airIsNull(self: *Self, inst: Air.Inst.Index) !void { |
| 4446 | | 4602 | |
| 4447 | fn airIsNullPtr(self: *Self, inst: Air.Inst.Index) !void { | 4603 | fn airIsNullPtr(self: *Self, inst: Air.Inst.Index) !void { |
| 4448 | const un_op = self.air.instructions.items(.data)[inst].un_op; | 4604 | const un_op = self.air.instructions.items(.data)[inst].un_op; |
| 4449 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { | 4605 | |
| 4450 | const operand_ptr = try self.resolveInst(un_op); | 4606 | if (self.liveness.isUnused(inst)) { |
| 4451 | operand_ptr.freezeIfRegister(&self.register_manager); | 4607 | return self.finishAir(inst, .dead, .{ un_op, .none, .none }); |
| 4452 | defer operand_ptr.unfreezeIfRegister(&self.register_manager); | 4608 | } |
| 4453 | const operand: MCValue = blk: { | 4609 | |
| 4454 | if (self.reuseOperand(inst, un_op, 0, operand_ptr)) { | 4610 | const operand_ptr = try self.resolveInst(un_op); |
| 4455 | // The MCValue that holds the pointer can be re-used as the value. | 4611 | const operand_ptr_lock: ?RegisterLock = switch (operand_ptr) { |
| 4456 | break :blk operand_ptr; | 4612 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| 4457 | } else { | 4613 | else => null, |
| 4458 | break :blk try self.allocRegOrMem(inst, true); | 4614 | }; |
| 4459 | } | 4615 | defer if (operand_ptr_lock) |lock| self.register_manager.unlockReg(lock); |
| 4460 | }; | 4616 | |
| 4461 | const ptr_ty = self.air.typeOf(un_op); | 4617 | const operand: MCValue = blk: { |
| 4462 | try self.load(operand, operand_ptr, ptr_ty); | 4618 | if (self.reuseOperand(inst, un_op, 0, operand_ptr)) { |
| 4463 | break :result try self.isNull(inst, ptr_ty.elemType(), operand); | 4619 | // The MCValue that holds the pointer can be re-used as the value. |
| | 4620 | break :blk operand_ptr; |
| | 4621 | } else { |
| | 4622 | break :blk try self.allocRegOrMem(inst, true); |
| | 4623 | } |
| 4464 | }; | 4624 | }; |
| | 4625 | const ptr_ty = self.air.typeOf(un_op); |
| | 4626 | try self.load(operand, operand_ptr, ptr_ty); |
| | 4627 | |
| | 4628 | const result = try self.isNull(inst, ptr_ty.elemType(), operand); |
| | 4629 | |
| 4465 | return self.finishAir(inst, result, .{ un_op, .none, .none }); | 4630 | return self.finishAir(inst, result, .{ un_op, .none, .none }); |
| 4466 | } | 4631 | } |
| 4467 | | 4632 | |
| ... | @@ -4477,22 +4642,31 @@ fn airIsNonNull(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -4477,22 +4642,31 @@ fn airIsNonNull(self: *Self, inst: Air.Inst.Index) !void { |
| 4477 | | 4642 | |
| 4478 | fn airIsNonNullPtr(self: *Self, inst: Air.Inst.Index) !void { | 4643 | fn airIsNonNullPtr(self: *Self, inst: Air.Inst.Index) !void { |
| 4479 | const un_op = self.air.instructions.items(.data)[inst].un_op; | 4644 | const un_op = self.air.instructions.items(.data)[inst].un_op; |
| 4480 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { | 4645 | |
| 4481 | const operand_ptr = try self.resolveInst(un_op); | 4646 | if (self.liveness.isUnused(inst)) { |
| 4482 | operand_ptr.freezeIfRegister(&self.register_manager); | 4647 | return self.finishAir(inst, .dead, .{ un_op, .none, .none }); |
| 4483 | defer operand_ptr.unfreezeIfRegister(&self.register_manager); | 4648 | } |
| 4484 | const operand: MCValue = blk: { | 4649 | |
| 4485 | if (self.reuseOperand(inst, un_op, 0, operand_ptr)) { | 4650 | const operand_ptr = try self.resolveInst(un_op); |
| 4486 | // The MCValue that holds the pointer can be re-used as the value. | 4651 | const operand_ptr_lock: ?RegisterLock = switch (operand_ptr) { |
| 4487 | break :blk operand_ptr; | 4652 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| 4488 | } else { | 4653 | else => null, |
| 4489 | break :blk try self.allocRegOrMem(inst, true); | 4654 | }; |
| 4490 | } | 4655 | defer if (operand_ptr_lock) |lock| self.register_manager.unlockReg(lock); |
| 4491 | }; | 4656 | |
| 4492 | const ptr_ty = self.air.typeOf(un_op); | 4657 | const operand: MCValue = blk: { |
| 4493 | try self.load(operand, operand_ptr, ptr_ty); | 4658 | if (self.reuseOperand(inst, un_op, 0, operand_ptr)) { |
| 4494 | break :result try self.isNonNull(inst, ptr_ty.elemType(), operand); | 4659 | // The MCValue that holds the pointer can be re-used as the value. |
| | 4660 | break :blk operand_ptr; |
| | 4661 | } else { |
| | 4662 | break :blk try self.allocRegOrMem(inst, true); |
| | 4663 | } |
| 4495 | }; | 4664 | }; |
| | 4665 | const ptr_ty = self.air.typeOf(un_op); |
| | 4666 | try self.load(operand, operand_ptr, ptr_ty); |
| | 4667 | |
| | 4668 | const result = try self.isNonNull(inst, ptr_ty.elemType(), operand); |
| | 4669 | |
| 4496 | return self.finishAir(inst, result, .{ un_op, .none, .none }); | 4670 | return self.finishAir(inst, result, .{ un_op, .none, .none }); |
| 4497 | } | 4671 | } |
| 4498 | | 4672 | |
| ... | @@ -4508,22 +4682,31 @@ fn airIsErr(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -4508,22 +4682,31 @@ fn airIsErr(self: *Self, inst: Air.Inst.Index) !void { |
| 4508 | | 4682 | |
| 4509 | fn airIsErrPtr(self: *Self, inst: Air.Inst.Index) !void { | 4683 | fn airIsErrPtr(self: *Self, inst: Air.Inst.Index) !void { |
| 4510 | const un_op = self.air.instructions.items(.data)[inst].un_op; | 4684 | const un_op = self.air.instructions.items(.data)[inst].un_op; |
| 4511 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { | 4685 | |
| 4512 | const operand_ptr = try self.resolveInst(un_op); | 4686 | if (self.liveness.isUnused(inst)) { |
| 4513 | operand_ptr.freezeIfRegister(&self.register_manager); | 4687 | return self.finishAir(inst, .dead, .{ un_op, .none, .none }); |
| 4514 | defer operand_ptr.unfreezeIfRegister(&self.register_manager); | 4688 | } |
| 4515 | const operand: MCValue = blk: { | 4689 | |
| 4516 | if (self.reuseOperand(inst, un_op, 0, operand_ptr)) { | 4690 | const operand_ptr = try self.resolveInst(un_op); |
| 4517 | // The MCValue that holds the pointer can be re-used as the value. | 4691 | const operand_ptr_lock: ?RegisterLock = switch (operand_ptr) { |
| 4518 | break :blk operand_ptr; | 4692 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| 4519 | } else { | 4693 | else => null, |
| 4520 | break :blk try self.allocRegOrMem(inst, true); | | |
| 4521 | } | | |
| 4522 | }; | | |
| 4523 | const ptr_ty = self.air.typeOf(un_op); | | |
| 4524 | try self.load(operand, operand_ptr, ptr_ty); | | |
| 4525 | break :result try self.isErr(inst, ptr_ty.elemType(), operand); | | |
| 4526 | }; | 4694 | }; |
| | 4695 | defer if (operand_ptr_lock) |lock| self.register_manager.unlockReg(lock); |
| | 4696 | |
| | 4697 | const operand: MCValue = blk: { |
| | 4698 | if (self.reuseOperand(inst, un_op, 0, operand_ptr)) { |
| | 4699 | // The MCValue that holds the pointer can be re-used as the value. |
| | 4700 | break :blk operand_ptr; |
| | 4701 | } else { |
| | 4702 | break :blk try self.allocRegOrMem(inst, true); |
| | 4703 | } |
| | 4704 | }; |
| | 4705 | const ptr_ty = self.air.typeOf(un_op); |
| | 4706 | try self.load(operand, operand_ptr, ptr_ty); |
| | 4707 | |
| | 4708 | const result = try self.isErr(inst, ptr_ty.elemType(), operand); |
| | 4709 | |
| 4527 | return self.finishAir(inst, result, .{ un_op, .none, .none }); | 4710 | return self.finishAir(inst, result, .{ un_op, .none, .none }); |
| 4528 | } | 4711 | } |
| 4529 | | 4712 | |
| ... | @@ -4539,22 +4722,31 @@ fn airIsNonErr(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -4539,22 +4722,31 @@ fn airIsNonErr(self: *Self, inst: Air.Inst.Index) !void { |
| 4539 | | 4722 | |
| 4540 | fn airIsNonErrPtr(self: *Self, inst: Air.Inst.Index) !void { | 4723 | fn airIsNonErrPtr(self: *Self, inst: Air.Inst.Index) !void { |
| 4541 | const un_op = self.air.instructions.items(.data)[inst].un_op; | 4724 | const un_op = self.air.instructions.items(.data)[inst].un_op; |
| 4542 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { | 4725 | |
| 4543 | const operand_ptr = try self.resolveInst(un_op); | 4726 | if (self.liveness.isUnused(inst)) { |
| 4544 | operand_ptr.freezeIfRegister(&self.register_manager); | 4727 | return self.finishAir(inst, .dead, .{ un_op, .none, .none }); |
| 4545 | defer operand_ptr.unfreezeIfRegister(&self.register_manager); | 4728 | } |
| 4546 | const operand: MCValue = blk: { | 4729 | |
| 4547 | if (self.reuseOperand(inst, un_op, 0, operand_ptr)) { | 4730 | const operand_ptr = try self.resolveInst(un_op); |
| 4548 | // The MCValue that holds the pointer can be re-used as the value. | 4731 | const operand_ptr_lock: ?RegisterLock = switch (operand_ptr) { |
| 4549 | break :blk operand_ptr; | 4732 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| 4550 | } else { | 4733 | else => null, |
| 4551 | break :blk try self.allocRegOrMem(inst, true); | 4734 | }; |
| 4552 | } | 4735 | defer if (operand_ptr_lock) |lock| self.register_manager.unlockReg(lock); |
| 4553 | }; | 4736 | |
| 4554 | const ptr_ty = self.air.typeOf(un_op); | 4737 | const operand: MCValue = blk: { |
| 4555 | try self.load(operand, operand_ptr, ptr_ty); | 4738 | if (self.reuseOperand(inst, un_op, 0, operand_ptr)) { |
| 4556 | break :result try self.isNonErr(inst, ptr_ty.elemType(), operand); | 4739 | // The MCValue that holds the pointer can be re-used as the value. |
| | 4740 | break :blk operand_ptr; |
| | 4741 | } else { |
| | 4742 | break :blk try self.allocRegOrMem(inst, true); |
| | 4743 | } |
| 4557 | }; | 4744 | }; |
| | 4745 | const ptr_ty = self.air.typeOf(un_op); |
| | 4746 | try self.load(operand, operand_ptr, ptr_ty); |
| | 4747 | |
| | 4748 | const result = try self.isNonErr(inst, ptr_ty.elemType(), operand); |
| | 4749 | |
| 4558 | return self.finishAir(inst, result, .{ un_op, .none, .none }); | 4750 | return self.finishAir(inst, result, .{ un_op, .none, .none }); |
| 4559 | } | 4751 | } |
| 4560 | | 4752 | |
| ... | @@ -4610,8 +4802,8 @@ fn genCondSwitchMir(self: *Self, ty: Type, condition: MCValue, case: MCValue) !u | ... | @@ -4610,8 +4802,8 @@ fn genCondSwitchMir(self: *Self, ty: Type, condition: MCValue, case: MCValue) !u |
| 4610 | .register => |cond_reg| { | 4802 | .register => |cond_reg| { |
| 4611 | try self.spillCompareFlagsIfOccupied(); | 4803 | try self.spillCompareFlagsIfOccupied(); |
| 4612 | | 4804 | |
| 4613 | self.register_manager.freezeRegs(&.{cond_reg}); | 4805 | const cond_reg_lock = self.register_manager.lockReg(cond_reg); |
| 4614 | defer self.register_manager.unfreezeRegs(&.{cond_reg}); | 4806 | defer if (cond_reg_lock) |lock| self.register_manager.unlockReg(lock); |
| 4615 | | 4807 | |
| 4616 | switch (case) { | 4808 | switch (case) { |
| 4617 | .none => unreachable, | 4809 | .none => unreachable, |
| ... | @@ -4670,8 +4862,8 @@ fn genCondSwitchMir(self: *Self, ty: Type, condition: MCValue, case: MCValue) !u | ... | @@ -4670,8 +4862,8 @@ fn genCondSwitchMir(self: *Self, ty: Type, condition: MCValue, case: MCValue) !u |
| 4670 | | 4862 | |
| 4671 | if (abi_size <= 8) { | 4863 | if (abi_size <= 8) { |
| 4672 | const reg = try self.copyToTmpRegister(ty, condition); | 4864 | const reg = try self.copyToTmpRegister(ty, condition); |
| 4673 | self.register_manager.freezeRegs(&.{reg}); | 4865 | const reg_lock = self.register_manager.lockRegAssumeUnused(reg); |
| 4674 | defer self.register_manager.unfreezeRegs(&.{reg}); | 4866 | defer self.register_manager.unlockReg(reg_lock); |
| 4675 | return self.genCondSwitchMir(ty, .{ .register = reg }, case); | 4867 | return self.genCondSwitchMir(ty, .{ .register = reg }, case); |
| 4676 | } | 4868 | } |
| 4677 | | 4869 | |
| ... | @@ -5158,8 +5350,8 @@ fn genSetStack(self: *Self, ty: Type, stack_offset: i32, mcv: MCValue, opts: Inl | ... | @@ -5158,8 +5350,8 @@ fn genSetStack(self: *Self, ty: Type, stack_offset: i32, mcv: MCValue, opts: Inl |
| 5158 | .register_overflow_unsigned, | 5350 | .register_overflow_unsigned, |
| 5159 | .register_overflow_signed, | 5351 | .register_overflow_signed, |
| 5160 | => |reg| { | 5352 | => |reg| { |
| 5161 | self.register_manager.freezeRegs(&.{reg}); | 5353 | const reg_lock = self.register_manager.lockReg(reg); |
| 5162 | defer self.register_manager.unfreezeRegs(&.{reg}); | 5354 | defer if (reg_lock) |lock| self.register_manager.unlockReg(lock); |
| 5163 | | 5355 | |
| 5164 | const wrapped_ty = ty.structFieldType(0); | 5356 | const wrapped_ty = ty.structFieldType(0); |
| 5165 | try self.genSetStack(wrapped_ty, stack_offset, .{ .register = reg }, .{}); | 5357 | try self.genSetStack(wrapped_ty, stack_offset, .{ .register = reg }, .{}); |
| ... | @@ -5260,8 +5452,8 @@ fn genSetStack(self: *Self, ty: Type, stack_offset: i32, mcv: MCValue, opts: Inl | ... | @@ -5260,8 +5452,8 @@ fn genSetStack(self: *Self, ty: Type, stack_offset: i32, mcv: MCValue, opts: Inl |
| 5260 | | 5452 | |
| 5261 | const base_reg = opts.dest_stack_base orelse .rbp; | 5453 | const base_reg = opts.dest_stack_base orelse .rbp; |
| 5262 | if (!math.isPowerOfTwo(abi_size)) { | 5454 | if (!math.isPowerOfTwo(abi_size)) { |
| 5263 | self.register_manager.freezeRegs(&.{reg}); | 5455 | const reg_lock = self.register_manager.lockReg(reg); |
| 5264 | defer self.register_manager.unfreezeRegs(&.{reg}); | 5456 | defer if (reg_lock) |lock| self.register_manager.unlockReg(lock); |
| 5265 | | 5457 | |
| 5266 | const tmp_reg = try self.copyToTmpRegister(ty, mcv); | 5458 | const tmp_reg = try self.copyToTmpRegister(ty, mcv); |
| 5267 | | 5459 | |
| ... | @@ -5350,13 +5542,25 @@ fn genInlineMemcpy( | ... | @@ -5350,13 +5542,25 @@ fn genInlineMemcpy( |
| 5350 | len: MCValue, | 5542 | len: MCValue, |
| 5351 | opts: InlineMemcpyOpts, | 5543 | opts: InlineMemcpyOpts, |
| 5352 | ) InnerError!void { | 5544 | ) InnerError!void { |
| 5353 | self.register_manager.freezeRegs(&.{ .rax, .rcx }); | 5545 | try self.register_manager.getReg(.rax, null); |
| | 5546 | try self.register_manager.getReg(.rcx, null); |
| 5354 | | 5547 | |
| 5355 | if (opts.source_stack_base) |reg| self.register_manager.freezeRegs(&.{reg}); | 5548 | const reg_locks = self.register_manager.lockRegsAssumeUnused(2, .{ .rax, .rcx }); |
| 5356 | defer if (opts.source_stack_base) |reg| self.register_manager.unfreezeRegs(&.{reg}); | 5549 | defer for (reg_locks) |lock| { |
| | 5550 | self.register_manager.unlockReg(lock); |
| | 5551 | }; |
| | 5552 | |
| | 5553 | const ssbase_lock: ?RegisterLock = if (opts.source_stack_base) |reg| |
| | 5554 | self.register_manager.lockReg(reg) |
| | 5555 | else |
| | 5556 | null; |
| | 5557 | defer if (ssbase_lock) |reg| self.register_manager.unlockReg(reg); |
| 5357 | | 5558 | |
| 5358 | if (opts.dest_stack_base) |reg| self.register_manager.freezeRegs(&.{reg}); | 5559 | const dsbase_lock: ?RegisterLock = if (opts.dest_stack_base) |reg| |
| 5359 | defer if (opts.dest_stack_base) |reg| self.register_manager.unfreezeRegs(&.{reg}); | 5560 | self.register_manager.lockReg(reg) |
| | 5561 | else |
| | 5562 | null; |
| | 5563 | defer if (dsbase_lock) |lock| self.register_manager.unlockReg(lock); |
| 5360 | | 5564 | |
| 5361 | const dst_addr_reg = try self.register_manager.allocReg(null); | 5565 | const dst_addr_reg = try self.register_manager.allocReg(null); |
| 5362 | switch (dst_ptr) { | 5566 | switch (dst_ptr) { |
| ... | @@ -5390,8 +5594,8 @@ fn genInlineMemcpy( | ... | @@ -5390,8 +5594,8 @@ fn genInlineMemcpy( |
| 5390 | return self.fail("TODO implement memcpy for setting stack when dest is {}", .{dst_ptr}); | 5594 | return self.fail("TODO implement memcpy for setting stack when dest is {}", .{dst_ptr}); |
| 5391 | }, | 5595 | }, |
| 5392 | } | 5596 | } |
| 5393 | self.register_manager.freezeRegs(&.{dst_addr_reg}); | 5597 | const dst_addr_reg_lock = self.register_manager.lockRegAssumeUnused(dst_addr_reg); |
| 5394 | defer self.register_manager.unfreezeRegs(&.{dst_addr_reg}); | 5598 | defer self.register_manager.unlockReg(dst_addr_reg_lock); |
| 5395 | | 5599 | |
| 5396 | const src_addr_reg = try self.register_manager.allocReg(null); | 5600 | const src_addr_reg = try self.register_manager.allocReg(null); |
| 5397 | switch (src_ptr) { | 5601 | switch (src_ptr) { |
| ... | @@ -5425,18 +5629,13 @@ fn genInlineMemcpy( | ... | @@ -5425,18 +5629,13 @@ fn genInlineMemcpy( |
| 5425 | return self.fail("TODO implement memcpy for setting stack when src is {}", .{src_ptr}); | 5629 | return self.fail("TODO implement memcpy for setting stack when src is {}", .{src_ptr}); |
| 5426 | }, | 5630 | }, |
| 5427 | } | 5631 | } |
| 5428 | self.register_manager.freezeRegs(&.{src_addr_reg}); | 5632 | const src_addr_reg_lock = self.register_manager.lockRegAssumeUnused(src_addr_reg); |
| 5429 | defer self.register_manager.unfreezeRegs(&.{src_addr_reg}); | 5633 | defer self.register_manager.unlockReg(src_addr_reg_lock); |
| 5430 | | 5634 | |
| 5431 | const regs = try self.register_manager.allocRegs(2, .{ null, null }); | 5635 | const regs = try self.register_manager.allocRegs(2, .{ null, null }); |
| 5432 | const count_reg = regs[0].to64(); | 5636 | const count_reg = regs[0].to64(); |
| 5433 | const tmp_reg = regs[1].to8(); | 5637 | const tmp_reg = regs[1].to8(); |
| 5434 | | 5638 | |
| 5435 | self.register_manager.unfreezeRegs(&.{ .rax, .rcx }); | | |
| 5436 | | | |
| 5437 | try self.register_manager.getReg(.rax, null); | | |
| 5438 | try self.register_manager.getReg(.rcx, null); | | |
| 5439 | | | |
| 5440 | try self.genSetReg(Type.usize, count_reg, len); | 5639 | try self.genSetReg(Type.usize, count_reg, len); |
| 5441 | | 5640 | |
| 5442 | // mov rcx, 0 | 5641 | // mov rcx, 0 |
| ... | @@ -5540,7 +5739,9 @@ fn genInlineMemset( | ... | @@ -5540,7 +5739,9 @@ fn genInlineMemset( |
| 5540 | len: MCValue, | 5739 | len: MCValue, |
| 5541 | opts: InlineMemcpyOpts, | 5740 | opts: InlineMemcpyOpts, |
| 5542 | ) InnerError!void { | 5741 | ) InnerError!void { |
| 5543 | self.register_manager.freezeRegs(&.{.rax}); | 5742 | try self.register_manager.getReg(.rax, null); |
| | 5743 | const rax_lock = self.register_manager.lockRegAssumeUnused(.rax); |
| | 5744 | defer self.register_manager.unlockReg(rax_lock); |
| 5544 | | 5745 | |
| 5545 | const addr_reg = try self.register_manager.allocReg(null); | 5746 | const addr_reg = try self.register_manager.allocReg(null); |
| 5546 | switch (dst_ptr) { | 5747 | switch (dst_ptr) { |
| ... | @@ -5574,11 +5775,8 @@ fn genInlineMemset( | ... | @@ -5574,11 +5775,8 @@ fn genInlineMemset( |
| 5574 | return self.fail("TODO implement memcpy for setting stack when dest is {}", .{dst_ptr}); | 5775 | return self.fail("TODO implement memcpy for setting stack when dest is {}", .{dst_ptr}); |
| 5575 | }, | 5776 | }, |
| 5576 | } | 5777 | } |
| 5577 | self.register_manager.freezeRegs(&.{addr_reg}); | 5778 | const addr_reg_lock = self.register_manager.lockRegAssumeUnused(addr_reg); |
| 5578 | defer self.register_manager.unfreezeRegs(&.{addr_reg}); | 5779 | defer self.register_manager.unlockReg(addr_reg_lock); |
| 5579 | | | |
| 5580 | self.register_manager.unfreezeRegs(&.{.rax}); | | |
| 5581 | try self.register_manager.getReg(.rax, null); | | |
| 5582 | | 5780 | |
| 5583 | try self.genSetReg(Type.usize, .rax, len); | 5781 | try self.genSetReg(Type.usize, .rax, len); |
| 5584 | try self.genBinMathOpMir(.sub, Type.usize, .{ .register = .rax }, .{ .immediate = 1 }); | 5782 | try self.genBinMathOpMir(.sub, Type.usize, .{ .register = .rax }, .{ .immediate = 1 }); |
| ... | @@ -6017,16 +6215,25 @@ fn airMemset(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -6017,16 +6215,25 @@ fn airMemset(self: *Self, inst: Air.Inst.Index) !void { |
| 6017 | const extra = self.air.extraData(Air.Bin, pl_op.payload).data; | 6215 | const extra = self.air.extraData(Air.Bin, pl_op.payload).data; |
| 6018 | | 6216 | |
| 6019 | const dst_ptr = try self.resolveInst(pl_op.operand); | 6217 | const dst_ptr = try self.resolveInst(pl_op.operand); |
| 6020 | dst_ptr.freezeIfRegister(&self.register_manager); | 6218 | const dst_ptr_lock: ?RegisterLock = switch (dst_ptr) { |
| 6021 | defer dst_ptr.unfreezeIfRegister(&self.register_manager); | 6219 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 6220 | else => null, |
| | 6221 | }; |
| | 6222 | defer if (dst_ptr_lock) |lock| self.register_manager.unlockReg(lock); |
| 6022 | | 6223 | |
| 6023 | const src_val = try self.resolveInst(extra.lhs); | 6224 | const src_val = try self.resolveInst(extra.lhs); |
| 6024 | src_val.freezeIfRegister(&self.register_manager); | 6225 | const src_val_lock: ?RegisterLock = switch (src_val) { |
| 6025 | defer src_val.unfreezeIfRegister(&self.register_manager); | 6226 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 6227 | else => null, |
| | 6228 | }; |
| | 6229 | defer if (src_val_lock) |lock| self.register_manager.unlockReg(lock); |
| 6026 | | 6230 | |
| 6027 | const len = try self.resolveInst(extra.rhs); | 6231 | const len = try self.resolveInst(extra.rhs); |
| 6028 | len.freezeIfRegister(&self.register_manager); | 6232 | const len_lock: ?RegisterLock = switch (len) { |
| 6029 | defer len.unfreezeIfRegister(&self.register_manager); | 6233 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 6234 | else => null, |
| | 6235 | }; |
| | 6236 | defer if (len_lock) |lock| self.register_manager.unlockReg(lock); |
| 6030 | | 6237 | |
| 6031 | try self.genInlineMemset(dst_ptr, src_val, len, .{}); | 6238 | try self.genInlineMemset(dst_ptr, src_val, len, .{}); |
| 6032 | | 6239 | |
| ... | @@ -6038,17 +6245,26 @@ fn airMemcpy(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -6038,17 +6245,26 @@ fn airMemcpy(self: *Self, inst: Air.Inst.Index) !void { |
| 6038 | const extra = self.air.extraData(Air.Bin, pl_op.payload).data; | 6245 | const extra = self.air.extraData(Air.Bin, pl_op.payload).data; |
| 6039 | | 6246 | |
| 6040 | const dst_ptr = try self.resolveInst(pl_op.operand); | 6247 | const dst_ptr = try self.resolveInst(pl_op.operand); |
| 6041 | dst_ptr.freezeIfRegister(&self.register_manager); | 6248 | const dst_ptr_lock: ?RegisterLock = switch (dst_ptr) { |
| 6042 | defer dst_ptr.unfreezeIfRegister(&self.register_manager); | 6249 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 6250 | else => null, |
| | 6251 | }; |
| | 6252 | defer if (dst_ptr_lock) |lock| self.register_manager.unlockReg(lock); |
| 6043 | | 6253 | |
| 6044 | const src_ty = self.air.typeOf(extra.lhs); | 6254 | const src_ty = self.air.typeOf(extra.lhs); |
| 6045 | const src_ptr = try self.resolveInst(extra.lhs); | 6255 | const src_ptr = try self.resolveInst(extra.lhs); |
| 6046 | src_ptr.freezeIfRegister(&self.register_manager); | 6256 | const src_ptr_lock: ?RegisterLock = switch (src_ptr) { |
| 6047 | defer src_ptr.unfreezeIfRegister(&self.register_manager); | 6257 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 6258 | else => null, |
| | 6259 | }; |
| | 6260 | defer if (src_ptr_lock) |lock| self.register_manager.unlockReg(lock); |
| 6048 | | 6261 | |
| 6049 | const len = try self.resolveInst(extra.rhs); | 6262 | const len = try self.resolveInst(extra.rhs); |
| 6050 | len.freezeIfRegister(&self.register_manager); | 6263 | const len_lock: ?RegisterLock = switch (len) { |
| 6051 | defer len.unfreezeIfRegister(&self.register_manager); | 6264 | .register => |reg| self.register_manager.lockRegAssumeUnused(reg), |
| | 6265 | else => null, |
| | 6266 | }; |
| | 6267 | defer if (len_lock) |lock| self.register_manager.unlockReg(lock); |
| 6052 | | 6268 | |
| 6053 | // TODO Is this the only condition for pointer dereference for memcpy? | 6269 | // TODO Is this the only condition for pointer dereference for memcpy? |
| 6054 | const src: MCValue = blk: { | 6270 | const src: MCValue = blk: { |
| ... | @@ -6070,8 +6286,11 @@ fn airMemcpy(self: *Self, inst: Air.Inst.Index) !void { | ... | @@ -6070,8 +6286,11 @@ fn airMemcpy(self: *Self, inst: Air.Inst.Index) !void { |
| 6070 | else => break :blk src_ptr, | 6286 | else => break :blk src_ptr, |
| 6071 | } | 6287 | } |
| 6072 | }; | 6288 | }; |
| 6073 | src.freezeIfRegister(&self.register_manager); | 6289 | const src_lock: ?RegisterLock = switch (src) { |
| 6074 | defer src.unfreezeIfRegister(&self.register_manager); | 6290 | .register => |reg| self.register_manager.lockReg(reg), |
| | 6291 | else => null, |
| | 6292 | }; |
| | 6293 | defer if (src_lock) |lock| self.register_manager.unlockReg(lock); |
| 6075 | | 6294 | |
| 6076 | try self.genInlineMemcpy(dst_ptr, src, len, .{}); | 6295 | try self.genInlineMemcpy(dst_ptr, src, len, .{}); |
| 6077 | | 6296 | |