forked from AbleOS/ableos
adding imm operations is come cases
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2dff9f7244
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ca1d471646
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@ -1231,6 +1231,7 @@ impl<'a> Codegen<'a> {
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let lsize = self.size_of(left.ty);
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let lsize = self.size_of(left.ty);
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let ty = ctx.ty().unwrap_or(left.ty);
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let ty = ctx.ty().unwrap_or(left.ty);
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let lhs = match std::mem::take(&mut ctx).loc() {
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let lhs = match std::mem::take(&mut ctx).loc() {
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Some(Loc::RegRef(reg)) if Loc::RegRef(reg) == left.loc => LinReg(reg, None),
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Some(Loc::RegRef(reg)) if Loc::RegRef(reg) == left.loc => LinReg(reg, None),
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Some(loc) => {
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Some(loc) => {
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@ -1241,12 +1242,30 @@ impl<'a> Codegen<'a> {
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};
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};
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let right = self.expr_ctx(right, Ctx::Inferred(left.ty))?;
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let right = self.expr_ctx(right, Ctx::Inferred(left.ty))?;
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let rsize = self.size_of(right.ty);
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let rsize = self.size_of(right.ty);
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let rhs = self.loc_to_reg(right.loc, rsize);
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let ty = self.assert_ty(expr.pos(), left.ty, right.ty);
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let ty = self.assert_ty(expr.pos(), left.ty, right.ty);
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let size = self.size_of(ty);
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let size = self.size_of(ty);
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let signed = bt::is_signed(ty);
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let signed = bt::is_signed(ty);
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if let Loc::Imm(mut imm) = right.loc
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&& let Some(oper) = Self::imm_math_op(op, signed, size, false)
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{
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if matches!(op, T::Add | T::Sub) {
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if bt::is_pointer(left.ty) {
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let size = self.size_of(self.pointers[ty as usize]);
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imm *= size;
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}
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}
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self.code.encode(oper(lhs.0, lhs.0, imm));
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break 'ops Some(Value {
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ty,
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loc: Loc::Reg(lhs),
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});
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}
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let rhs = self.loc_to_reg(right.loc, rsize);
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log::dbg!(
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log::dbg!(
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"binop: {} {} {}",
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"binop: {} {} {}",
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self.display_ty(ty),
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self.display_ty(ty),
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@ -1358,6 +1377,45 @@ impl<'a> Codegen<'a> {
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Some(ops[size.ilog2() as usize])
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Some(ops[size.ilog2() as usize])
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}
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}
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fn imm_math_op(
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op: T,
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signed: bool,
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size: u64,
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first_imm: bool,
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) -> Option<fn(u8, u8, u64) -> (usize, [u8; instrs::MAX_SIZE])> {
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use instrs as i;
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macro_rules! def_op {
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($name:ident |$a:ident, $b:ident, $c:ident| $($tt:tt)*) => {
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macro_rules! $name {
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($$($$op:ident),*) => {
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[$$(
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|$a, $b, $c: u64| i::$$op($($tt)*),
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)*]
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}
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}
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};
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}
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def_op!(basic_op | a, b, c | a, b, c as _);
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def_op!(sub_op | a, b, c | b, a, c.wrapping_neg() as _);
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let ops = match op {
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T::Add => basic_op!(addi8, addi16, addi32, addi64),
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T::Sub if !first_imm => sub_op!(addi8, addi16, addi32, addi64),
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T::Mul => basic_op!(muli8, muli16, muli32, muli64),
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T::Band => return Some(i::andi),
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T::Bor => return Some(i::ori),
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T::Xor => return Some(i::xori),
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T::Shr if signed && !first_imm => basic_op!(srui8, srui16, srui32, srui64),
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T::Shr if !first_imm => basic_op!(srui8, srui16, srui32, srui64),
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T::Shl if !first_imm => basic_op!(slui8, slui16, slui32, slui64),
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_ => return None,
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};
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Some(ops[size.ilog2() as usize])
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}
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fn struct_op(&mut self, op: T, ty: Type, ctx: Ctx, left: Loc, right: Loc) -> Option<Value> {
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fn struct_op(&mut self, op: T, ty: Type, ctx: Ctx, left: Loc, right: Loc) -> Option<Value> {
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if let TypeKind::Struct(stuct) = TypeKind::from_ty(ty) {
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if let TypeKind::Struct(stuct) = TypeKind::from_ty(ty) {
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let dst = match ctx {
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let dst = match ctx {
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@ -1380,9 +1438,22 @@ impl<'a> Codegen<'a> {
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}
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}
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let size = self.size_of(ty);
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let size = self.size_of(ty);
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let (lhs, owned) = self.loc_to_reg_ref(&left, size);
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let rhs = self.loc_to_reg(right, size);
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let signed = bt::is_signed(ty);
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let signed = bt::is_signed(ty);
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let (lhs, owned) = self.loc_to_reg_ref(&left, size);
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if let Loc::Imm(imm) = right
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&& let Some(op) = Self::imm_math_op(op, signed, size, false)
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{
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self.code.encode(op(lhs, lhs, imm));
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return if let Ctx::Dest(dest) = ctx {
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self.assign(dest.ty, dest.loc, owned.map_or(Loc::RegRef(lhs), Loc::Reg));
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Some(Value::VOID)
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} else {
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Some(Value::new(ty, owned.map_or(Loc::RegRef(lhs), Loc::Reg)))
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};
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}
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let rhs = self.loc_to_reg(right, size);
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if let Some(op) = Self::math_op(op, signed, size) {
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if let Some(op) = Self::math_op(op, signed, size) {
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self.code.encode(op(lhs, lhs, rhs.0));
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self.code.encode(op(lhs, lhs, rhs.0));
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