| ... | ... | @@ -21,7 +21,7 @@ const Emit = @import("Emit.zig"); |
| 21 | 21 | const Liveness = @import("../../Liveness.zig"); |
| 22 | 22 | const Mir = @import("Mir.zig"); |
| 23 | 23 | const Module = @import("../../Module.zig"); |
| 24 | | const RegisterManager = @import("../../register_manager.zig").RegisterManager; |
| 24 | const RegisterManagerFn = @import("../../register_manager.zig").RegisterManager; |
| 25 | 25 | const Target = std.Target; |
| 26 | 26 | const Type = @import("../../type.zig").Type; |
| 27 | 27 | const TypedValue = @import("../../TypedValue.zig"); |
| ... | ... | @@ -33,6 +33,8 @@ const InnerError = error{ |
| 33 | 33 | CodegenFail, |
| 34 | 34 | }; |
| 35 | 35 | |
| 36 | const RegisterManager = RegisterManagerFn(Self, Register, &callee_preserved_regs); |
| 37 | |
| 36 | 38 | gpa: Allocator, |
| 37 | 39 | air: Air, |
| 38 | 40 | liveness: Liveness, |
| ... | ... | @@ -73,7 +75,7 @@ branch_stack: *std.ArrayList(Branch), |
| 73 | 75 | // Key is the block instruction |
| 74 | 76 | blocks: std.AutoHashMapUnmanaged(Air.Inst.Index, BlockData) = .{}, |
| 75 | 77 | |
| 76 | | register_manager: RegisterManager(Self, Register, &callee_preserved_regs) = .{}, |
| 78 | register_manager: RegisterManager = .{}, |
| 77 | 79 | /// Maps offset to what is stored there. |
| 78 | 80 | stack: std.AutoHashMapUnmanaged(u32, StackAllocation) = .{}, |
| 79 | 81 | |
| ... | ... | @@ -169,6 +171,24 @@ pub const MCValue = union(enum) { |
| 169 | 171 | else => false, |
| 170 | 172 | }; |
| 171 | 173 | } |
| 174 | |
| 175 | fn freezeIfRegister(mcv: MCValue, mgr: *RegisterManager) void { |
| 176 | switch (mcv) { |
| 177 | .register => |reg| { |
| 178 | mgr.freezeRegs(&.{reg}); |
| 179 | }, |
| 180 | else => {}, |
| 181 | } |
| 182 | } |
| 183 | |
| 184 | fn unfreezeIfRegister(mcv: MCValue, mgr: *RegisterManager) void { |
| 185 | switch (mcv) { |
| 186 | .register => |reg| { |
| 187 | mgr.unfreezeRegs(&.{reg}); |
| 188 | }, |
| 189 | else => {}, |
| 190 | } |
| 191 | } |
| 172 | 192 | }; |
| 173 | 193 | |
| 174 | 194 | const Branch = struct { |
| ... | ... | @@ -836,20 +856,6 @@ fn copyToNewRegister(self: *Self, reg_owner: Air.Inst.Index, ty: Type, mcv: MCVa |
| 836 | 856 | return MCValue{ .register = reg }; |
| 837 | 857 | } |
| 838 | 858 | |
| 839 | | /// Like `copyToNewRegister` but allows to specify a list of excluded registers which |
| 840 | | /// will not be selected for allocation. This can be done via `exceptions` slice. |
| 841 | | fn copyToNewRegisterWithExceptions( |
| 842 | | self: *Self, |
| 843 | | reg_owner: Air.Inst.Index, |
| 844 | | ty: Type, |
| 845 | | mcv: MCValue, |
| 846 | | exceptions: []const Register, |
| 847 | | ) !MCValue { |
| 848 | | const reg = try self.register_manager.allocReg(reg_owner, exceptions); |
| 849 | | try self.genSetReg(ty, reg, mcv); |
| 850 | | return MCValue{ .register = reg }; |
| 851 | | } |
| 852 | | |
| 853 | 859 | fn airAlloc(self: *Self, inst: Air.Inst.Index) !void { |
| 854 | 860 | const stack_offset = try self.allocMemPtr(inst); |
| 855 | 861 | return self.finishAir(inst, .{ .ptr_stack_offset = @intCast(i32, stack_offset) }, .{ .none, .none, .none }); |
| ... | ... | @@ -897,8 +903,9 @@ fn airIntCast(self: *Self, inst: Air.Inst.Index) !void { |
| 897 | 903 | return self.fail("TODO implement intCast for abi sizes larger than 8", .{}); |
| 898 | 904 | } |
| 899 | 905 | |
| 900 | | if (operand.isRegister()) self.register_manager.freezeRegs(&.{operand.register}); |
| 901 | | defer if (operand.isRegister()) self.register_manager.unfreezeRegs(&.{operand.register}); |
| 906 | operand.freezeIfRegister(&self.register_manager); |
| 907 | defer operand.unfreezeIfRegister(&self.register_manager); |
| 908 | |
| 902 | 909 | break :blk try self.copyToNewRegister(inst, dest_ty, operand); |
| 903 | 910 | }; |
| 904 | 911 | |
| ... | ... | @@ -1366,8 +1373,7 @@ fn airPtrSlicePtrPtr(self: *Self, inst: Air.Inst.Index) !void { |
| 1366 | 1373 | } |
| 1367 | 1374 | |
| 1368 | 1375 | fn elemOffset(self: *Self, index_ty: Type, index: MCValue, elem_size: u64) !Register { |
| 1369 | | const reg = try self.register_manager.allocReg(null, &.{}); |
| 1370 | | try self.genSetReg(index_ty, reg, index); |
| 1376 | const reg = try self.copyToTmpRegister(index_ty, index); |
| 1371 | 1377 | try self.genIMulOpMir(index_ty, .{ .register = reg }, .{ .immediate = elem_size }); |
| 1372 | 1378 | return reg; |
| 1373 | 1379 | } |
| ... | ... | @@ -1376,16 +1382,26 @@ fn airSliceElemVal(self: *Self, inst: Air.Inst.Index) !void { |
| 1376 | 1382 | const is_volatile = false; // TODO |
| 1377 | 1383 | const bin_op = self.air.instructions.items(.data)[inst].bin_op; |
| 1378 | 1384 | const result: MCValue = if (!is_volatile and self.liveness.isUnused(inst)) .dead else result: { |
| 1379 | | const slice_mcv = try self.resolveInst(bin_op.lhs); |
| 1380 | 1385 | const slice_ty = self.air.typeOf(bin_op.lhs); |
| 1386 | const slice_mcv = try self.resolveInst(bin_op.lhs); |
| 1387 | slice_mcv.freezeIfRegister(&self.register_manager); |
| 1388 | defer slice_mcv.unfreezeIfRegister(&self.register_manager); |
| 1389 | |
| 1381 | 1390 | const elem_ty = slice_ty.childType(); |
| 1382 | 1391 | const elem_size = elem_ty.abiSize(self.target.*); |
| 1383 | 1392 | var buf: Type.SlicePtrFieldTypeBuffer = undefined; |
| 1384 | 1393 | const slice_ptr_field_type = slice_ty.slicePtrFieldType(&buf); |
| 1394 | |
| 1385 | 1395 | const index_ty = self.air.typeOf(bin_op.rhs); |
| 1386 | 1396 | const index_mcv = try self.resolveInst(bin_op.rhs); |
| 1397 | index_mcv.freezeIfRegister(&self.register_manager); |
| 1398 | defer index_mcv.unfreezeIfRegister(&self.register_manager); |
| 1399 | |
| 1387 | 1400 | const offset_reg = try self.elemOffset(index_ty, index_mcv, elem_size); |
| 1388 | | const addr_reg = try self.register_manager.allocReg(null, &.{offset_reg}); |
| 1401 | self.register_manager.freezeRegs(&.{offset_reg}); |
| 1402 | defer self.register_manager.unfreezeRegs(&.{offset_reg}); |
| 1403 | |
| 1404 | const addr_reg = try self.register_manager.allocReg(null, &.{}); |
| 1389 | 1405 | switch (slice_mcv) { |
| 1390 | 1406 | .stack_offset => |off| { |
| 1391 | 1407 | // mov reg, [rbp - 8] |
| ... | ... | @@ -1401,7 +1417,7 @@ fn airSliceElemVal(self: *Self, inst: Air.Inst.Index) !void { |
| 1401 | 1417 | }, |
| 1402 | 1418 | else => return self.fail("TODO implement slice_elem_val when slice is {}", .{slice_mcv}), |
| 1403 | 1419 | } |
| 1404 | | // TODO we could allocate register here, but need to except addr register and potentially |
| 1420 | // TODO we could allocate register here, but need to expect addr register and potentially |
| 1405 | 1421 | // offset register. |
| 1406 | 1422 | const dst_mcv = try self.allocRegOrMem(inst, false); |
| 1407 | 1423 | try self.genBinMathOpMir(.add, slice_ptr_field_type, .{ .register = addr_reg.to64() }, .{ |
| ... | ... | @@ -1427,14 +1443,23 @@ fn airArrayElemVal(self: *Self, inst: Air.Inst.Index) !void { |
| 1427 | 1443 | const bin_op = self.air.instructions.items(.data)[inst].bin_op; |
| 1428 | 1444 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { |
| 1429 | 1445 | const array_ty = self.air.typeOf(bin_op.lhs); |
| 1430 | | const array = try self.resolveInst(bin_op.lhs); |
| 1431 | 1446 | const array_abi_size = array_ty.abiSize(self.target.*); |
| 1447 | const array = try self.resolveInst(bin_op.lhs); |
| 1448 | array.freezeIfRegister(&self.register_manager); |
| 1449 | defer array.unfreezeIfRegister(&self.register_manager); |
| 1450 | |
| 1432 | 1451 | const elem_ty = array_ty.childType(); |
| 1433 | 1452 | const elem_abi_size = elem_ty.abiSize(self.target.*); |
| 1434 | 1453 | const index_ty = self.air.typeOf(bin_op.rhs); |
| 1435 | 1454 | const index = try self.resolveInst(bin_op.rhs); |
| 1455 | index.freezeIfRegister(&self.register_manager); |
| 1456 | defer index.unfreezeIfRegister(&self.register_manager); |
| 1457 | |
| 1436 | 1458 | const offset_reg = try self.elemOffset(index_ty, index, elem_abi_size); |
| 1437 | | const addr_reg = try self.register_manager.allocReg(null, &.{offset_reg}); |
| 1459 | self.register_manager.freezeRegs(&.{offset_reg}); |
| 1460 | defer self.register_manager.unfreezeRegs(&.{offset_reg}); |
| 1461 | |
| 1462 | const addr_reg = try self.register_manager.allocReg(null, &.{}); |
| 1438 | 1463 | switch (array) { |
| 1439 | 1464 | .stack_offset => |off| { |
| 1440 | 1465 | // lea reg, [rbp] |
| ... | ... | @@ -1449,7 +1474,7 @@ fn airArrayElemVal(self: *Self, inst: Air.Inst.Index) !void { |
| 1449 | 1474 | }, |
| 1450 | 1475 | else => return self.fail("TODO implement array_elem_val when array is {}", .{array}), |
| 1451 | 1476 | } |
| 1452 | | // TODO we could allocate register here, but need to except addr register and potentially |
| 1477 | // TODO we could allocate register here, but need to expect addr register and potentially |
| 1453 | 1478 | // offset register. |
| 1454 | 1479 | const dst_mcv = try self.allocRegOrMem(inst, false); |
| 1455 | 1480 | try self.genBinMathOpMir(.add, array_ty, .{ .register = addr_reg.to64() }, .{ .register = offset_reg.to64() }); |
| ... | ... | @@ -1475,12 +1500,17 @@ fn airPtrElemPtr(self: *Self, inst: Air.Inst.Index) !void { |
| 1475 | 1500 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { |
| 1476 | 1501 | const ptr_ty = self.air.typeOf(extra.lhs); |
| 1477 | 1502 | const ptr = try self.resolveInst(extra.lhs); |
| 1503 | ptr.freezeIfRegister(&self.register_manager); |
| 1504 | defer ptr.unfreezeIfRegister(&self.register_manager); |
| 1505 | |
| 1478 | 1506 | const elem_ty = ptr_ty.elemType2(); |
| 1479 | 1507 | const elem_abi_size = elem_ty.abiSize(self.target.*); |
| 1480 | 1508 | const index_ty = self.air.typeOf(extra.rhs); |
| 1481 | 1509 | const index = try self.resolveInst(extra.rhs); |
| 1482 | | const offset_reg = try self.elemOffset(index_ty, index, elem_abi_size); |
| 1510 | index.freezeIfRegister(&self.register_manager); |
| 1511 | defer index.unfreezeIfRegister(&self.register_manager); |
| 1483 | 1512 | |
| 1513 | const offset_reg = try self.elemOffset(index_ty, index, elem_abi_size); |
| 1484 | 1514 | self.register_manager.freezeRegs(&.{offset_reg}); |
| 1485 | 1515 | defer self.register_manager.unfreezeRegs(&.{offset_reg}); |
| 1486 | 1516 | |
| ... | ... | @@ -1587,6 +1617,9 @@ fn load(self: *Self, dst_mcv: MCValue, ptr: MCValue, ptr_ty: Type) InnerError!vo |
| 1587 | 1617 | return self.fail("TODO implement loading from MCValue.embedded_in_code", .{}); |
| 1588 | 1618 | }, |
| 1589 | 1619 | .register => |reg| { |
| 1620 | self.register_manager.freezeRegs(&.{reg}); |
| 1621 | defer self.register_manager.unfreezeRegs(&.{reg}); |
| 1622 | |
| 1590 | 1623 | switch (dst_mcv) { |
| 1591 | 1624 | .dead => unreachable, |
| 1592 | 1625 | .undef => unreachable, |
| ... | ... | @@ -1607,16 +1640,15 @@ fn load(self: *Self, dst_mcv: MCValue, ptr: MCValue, ptr_ty: Type) InnerError!vo |
| 1607 | 1640 | }, |
| 1608 | 1641 | .stack_offset => |off| { |
| 1609 | 1642 | if (abi_size <= 8) { |
| 1610 | | const tmp_reg = try self.register_manager.allocReg(null, &.{reg}); |
| 1643 | const tmp_reg = try self.register_manager.allocReg(null, &.{}); |
| 1611 | 1644 | try self.load(.{ .register = tmp_reg }, ptr, ptr_ty); |
| 1612 | 1645 | return self.genSetStack(elem_ty, off, MCValue{ .register = tmp_reg }); |
| 1613 | 1646 | } |
| 1614 | 1647 | |
| 1615 | | const regs = try self.register_manager.allocRegs( |
| 1616 | | 3, |
| 1617 | | .{ null, null, null }, |
| 1618 | | &.{ reg, .rax, .rcx }, |
| 1619 | | ); |
| 1648 | self.register_manager.freezeRegs(&.{ .rax, .rcx }); |
| 1649 | defer self.register_manager.unfreezeRegs(&.{ .rax, .rcx }); |
| 1650 | |
| 1651 | const regs = try self.register_manager.allocRegs(3, .{ null, null, null }, &.{}); |
| 1620 | 1652 | const addr_reg = regs[0]; |
| 1621 | 1653 | const count_reg = regs[1]; |
| 1622 | 1654 | const tmp_reg = regs[2]; |
| ... | ... | @@ -1634,7 +1666,7 @@ fn load(self: *Self, dst_mcv: MCValue, ptr: MCValue, ptr_ty: Type) InnerError!vo |
| 1634 | 1666 | try self.register_manager.getReg(.rcx, null); |
| 1635 | 1667 | |
| 1636 | 1668 | // TODO allow for abi size to be u64 |
| 1637 | | try self.genSetReg(Type.initTag(.u32), count_reg, .{ .immediate = @intCast(u32, abi_size) }); |
| 1669 | try self.genSetReg(Type.u32, count_reg, .{ .immediate = @intCast(u32, abi_size) }); |
| 1638 | 1670 | |
| 1639 | 1671 | return self.genInlineMemcpy( |
| 1640 | 1672 | -(off + @intCast(i32, abi_size)), |
| ... | ... | @@ -1786,8 +1818,8 @@ fn store(self: *Self, ptr: MCValue, value: MCValue, ptr_ty: Type, value_ty: Type |
| 1786 | 1818 | // TODO: in case the address fits in an imm32 we can use [ds:imm32] |
| 1787 | 1819 | // instead of wasting an instruction copying the address to a register |
| 1788 | 1820 | |
| 1789 | | if (value.isRegister()) self.register_manager.freezeRegs(&.{value.register}); |
| 1790 | | defer if (value.isRegister()) self.register_manager.unfreezeRegs(&.{value.register}); |
| 1821 | value.freezeIfRegister(&self.register_manager); |
| 1822 | defer value.unfreezeIfRegister(&self.register_manager); |
| 1791 | 1823 | |
| 1792 | 1824 | const addr_reg = try self.copyToTmpRegister(ptr_ty, .{ .immediate = addr }); |
| 1793 | 1825 | // to get the actual address of the value we want to modify we have to go through the GOT |
| ... | ... | @@ -2012,22 +2044,16 @@ fn genBinMathOp(self: *Self, inst: Air.Inst.Index, op_lhs: Air.Inst.Ref, op_rhs: |
| 2012 | 2044 | } |
| 2013 | 2045 | } else { |
| 2014 | 2046 | if (lhs.isMemory()) { |
| 2015 | | dst_mcv = if (rhs.isRegister()) |
| 2016 | | // If the allocated register is the same as the rhs register, don't allocate that one |
| 2017 | | // and instead spill a subsequent one. Otherwise, this can result in a miscompilation |
| 2018 | | // in the presence of several binary operations performed in a single block. |
| 2019 | | try self.copyToNewRegisterWithExceptions(inst, dst_ty, lhs, &.{rhs.register}) |
| 2020 | | else |
| 2021 | | try self.copyToNewRegister(inst, dst_ty, lhs); |
| 2047 | rhs.freezeIfRegister(&self.register_manager); |
| 2048 | defer rhs.unfreezeIfRegister(&self.register_manager); |
| 2049 | |
| 2050 | dst_mcv = try self.copyToNewRegister(inst, dst_ty, lhs); |
| 2022 | 2051 | src_mcv = rhs; |
| 2023 | 2052 | } else { |
| 2024 | | dst_mcv = if (lhs.isRegister()) |
| 2025 | | // If the allocated register is the same as the rhs register, don't allocate that one |
| 2026 | | // and instead spill a subsequent one. Otherwise, this can result in a miscompilation |
| 2027 | | // in the presence of several binary operations performed in a single block. |
| 2028 | | try self.copyToNewRegisterWithExceptions(inst, dst_ty, rhs, &.{lhs.register}) |
| 2029 | | else |
| 2030 | | try self.copyToNewRegister(inst, dst_ty, rhs); |
| 2053 | lhs.freezeIfRegister(&self.register_manager); |
| 2054 | defer lhs.unfreezeIfRegister(&self.register_manager); |
| 2055 | |
| 2056 | dst_mcv = try self.copyToNewRegister(inst, dst_ty, rhs); |
| 2031 | 2057 | src_mcv = lhs; |
| 2032 | 2058 | } |
| 2033 | 2059 | } |
| ... | ... | @@ -2039,7 +2065,11 @@ fn genBinMathOp(self: *Self, inst: Air.Inst.Index, op_lhs: Air.Inst.Ref, op_rhs: |
| 2039 | 2065 | switch (src_mcv) { |
| 2040 | 2066 | .immediate => |imm| { |
| 2041 | 2067 | if (imm > math.maxInt(u31)) { |
| 2042 | | src_mcv = MCValue{ .register = try self.copyToTmpRegister(Type.initTag(.u64), src_mcv) }; |
| 2068 | dst_mcv.freezeIfRegister(&self.register_manager); |
| 2069 | defer dst_mcv.unfreezeIfRegister(&self.register_manager); |
| 2070 | |
| 2071 | const tmp_reg = try self.copyToTmpRegister(Type.u64, src_mcv); |
| 2072 | src_mcv = MCValue{ .register = tmp_reg }; |
| 2043 | 2073 | } |
| 2044 | 2074 | }, |
| 2045 | 2075 | else => {}, |
| ... | ... | @@ -2901,6 +2931,8 @@ fn airIsNullPtr(self: *Self, inst: Air.Inst.Index) !void { |
| 2901 | 2931 | const un_op = self.air.instructions.items(.data)[inst].un_op; |
| 2902 | 2932 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { |
| 2903 | 2933 | const operand_ptr = try self.resolveInst(un_op); |
| 2934 | operand_ptr.freezeIfRegister(&self.register_manager); |
| 2935 | defer operand_ptr.unfreezeIfRegister(&self.register_manager); |
| 2904 | 2936 | const operand: MCValue = blk: { |
| 2905 | 2937 | if (self.reuseOperand(inst, un_op, 0, operand_ptr)) { |
| 2906 | 2938 | // The MCValue that holds the pointer can be re-used as the value. |
| ... | ... | @@ -2930,6 +2962,8 @@ fn airIsNonNullPtr(self: *Self, inst: Air.Inst.Index) !void { |
| 2930 | 2962 | const un_op = self.air.instructions.items(.data)[inst].un_op; |
| 2931 | 2963 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { |
| 2932 | 2964 | const operand_ptr = try self.resolveInst(un_op); |
| 2965 | operand_ptr.freezeIfRegister(&self.register_manager); |
| 2966 | defer operand_ptr.unfreezeIfRegister(&self.register_manager); |
| 2933 | 2967 | const operand: MCValue = blk: { |
| 2934 | 2968 | if (self.reuseOperand(inst, un_op, 0, operand_ptr)) { |
| 2935 | 2969 | // The MCValue that holds the pointer can be re-used as the value. |
| ... | ... | @@ -2959,6 +2993,8 @@ fn airIsErrPtr(self: *Self, inst: Air.Inst.Index) !void { |
| 2959 | 2993 | const un_op = self.air.instructions.items(.data)[inst].un_op; |
| 2960 | 2994 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { |
| 2961 | 2995 | const operand_ptr = try self.resolveInst(un_op); |
| 2996 | operand_ptr.freezeIfRegister(&self.register_manager); |
| 2997 | defer operand_ptr.unfreezeIfRegister(&self.register_manager); |
| 2962 | 2998 | const operand: MCValue = blk: { |
| 2963 | 2999 | if (self.reuseOperand(inst, un_op, 0, operand_ptr)) { |
| 2964 | 3000 | // The MCValue that holds the pointer can be re-used as the value. |
| ... | ... | @@ -2988,6 +3024,8 @@ fn airIsNonErrPtr(self: *Self, inst: Air.Inst.Index) !void { |
| 2988 | 3024 | const un_op = self.air.instructions.items(.data)[inst].un_op; |
| 2989 | 3025 | const result: MCValue = if (self.liveness.isUnused(inst)) .dead else result: { |
| 2990 | 3026 | const operand_ptr = try self.resolveInst(un_op); |
| 3027 | operand_ptr.freezeIfRegister(&self.register_manager); |
| 3028 | defer operand_ptr.unfreezeIfRegister(&self.register_manager); |
| 2991 | 3029 | const operand: MCValue = blk: { |
| 2992 | 3030 | if (self.reuseOperand(inst, un_op, 0, operand_ptr)) { |
| 2993 | 3031 | // The MCValue that holds the pointer can be re-used as the value. |
| ... | ... | @@ -3345,7 +3383,10 @@ fn genSetStackArg(self: *Self, ty: Type, stack_offset: i32, mcv: MCValue) InnerE |
| 3345 | 3383 | return self.genSetStackArg(ty, stack_offset, MCValue{ .register = reg }); |
| 3346 | 3384 | } |
| 3347 | 3385 | |
| 3348 | | const regs = try self.register_manager.allocRegs(3, .{ null, null, null }, &.{ .rax, .rcx }); |
| 3386 | self.register_manager.freezeRegs(&.{ .rax, .rcx }); |
| 3387 | defer self.register_manager.unfreezeRegs(&.{ .rax, .rcx }); |
| 3388 | |
| 3389 | const regs = try self.register_manager.allocRegs(3, .{ null, null, null }, &.{}); |
| 3349 | 3390 | const addr_reg = regs[0]; |
| 3350 | 3391 | const count_reg = regs[1]; |
| 3351 | 3392 | const tmp_reg = regs[2]; |
| ... | ... | @@ -3363,7 +3404,7 @@ fn genSetStackArg(self: *Self, ty: Type, stack_offset: i32, mcv: MCValue) InnerE |
| 3363 | 3404 | }); |
| 3364 | 3405 | |
| 3365 | 3406 | // TODO allow for abi_size to be u64 |
| 3366 | | try self.genSetReg(Type.initTag(.u32), count_reg, .{ .immediate = @intCast(u32, abi_size) }); |
| 3407 | try self.genSetReg(Type.u32, count_reg, .{ .immediate = @intCast(u32, abi_size) }); |
| 3367 | 3408 | try self.genInlineMemcpy( |
| 3368 | 3409 | -(stack_offset + @intCast(i32, abi_size)), |
| 3369 | 3410 | .rsp, |
| ... | ... | @@ -3510,7 +3551,10 @@ fn genSetStack(self: *Self, ty: Type, stack_offset: i32, mcv: MCValue) InnerErro |
| 3510 | 3551 | return self.genSetStack(ty, stack_offset, MCValue{ .register = reg }); |
| 3511 | 3552 | } |
| 3512 | 3553 | |
| 3513 | | const regs = try self.register_manager.allocRegs(3, .{ null, null, null }, &.{ .rax, .rcx, .rbp }); |
| 3554 | self.register_manager.freezeRegs(&.{ .rax, .rcx, .rbp }); |
| 3555 | defer self.register_manager.unfreezeRegs(&.{ .rax, .rcx, .rbp }); |
| 3556 | |
| 3557 | const regs = try self.register_manager.allocRegs(3, .{ null, null, null }, &.{}); |
| 3514 | 3558 | const addr_reg = regs[0]; |
| 3515 | 3559 | const count_reg = regs[1]; |
| 3516 | 3560 | const tmp_reg = regs[2]; |
| ... | ... | @@ -3528,7 +3572,7 @@ fn genSetStack(self: *Self, ty: Type, stack_offset: i32, mcv: MCValue) InnerErro |
| 3528 | 3572 | }); |
| 3529 | 3573 | |
| 3530 | 3574 | // TODO allow for abi_size to be u64 |
| 3531 | | try self.genSetReg(Type.initTag(.u32), count_reg, .{ .immediate = @intCast(u32, abi_size) }); |
| 3575 | try self.genSetReg(Type.u32, count_reg, .{ .immediate = @intCast(u32, abi_size) }); |
| 3532 | 3576 | |
| 3533 | 3577 | return self.genInlineMemcpy( |
| 3534 | 3578 | -(stack_offset + @intCast(i32, abi_size)), |