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@ -387,12 +387,32 @@ impl ABIBody for X64ABIBody { |
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unimplemented!("store_stackslot") |
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} |
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fn load_spillslot(&self, _slot: SpillSlot, _ty: Type, _into_reg: Writable<Reg>) -> Inst { |
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unimplemented!("load_spillslot") |
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fn load_spillslot(&self, slot: SpillSlot, ty: Type, into_reg: Writable<Reg>) -> Inst { |
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// Offset from beginning of spillslot area, which is at nominal-SP + stackslots_size.
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let islot = slot.get() as i64; |
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let spill_off = islot * 8; |
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let sp_off = self.stack_slots_size as i64 + spill_off; |
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debug_assert!(sp_off <= u32::max_value() as i64, "large spill offsets NYI"); |
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trace!("load_spillslot: slot {:?} -> sp_off {}", slot, sp_off); |
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load_stack( |
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SyntheticAmode::nominal_sp_offset(sp_off as u32), |
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into_reg, |
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ty, |
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) |
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} |
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fn store_spillslot(&self, _slot: SpillSlot, _ty: Type, _from_reg: Reg) -> Inst { |
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unimplemented!("store_spillslot") |
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fn store_spillslot(&self, slot: SpillSlot, ty: Type, from_reg: Reg) -> Inst { |
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// Offset from beginning of spillslot area, which is at nominal-SP + stackslots_size.
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let islot = slot.get() as i64; |
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let spill_off = islot * 8; |
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let sp_off = self.stack_slots_size as i64 + spill_off; |
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debug_assert!(sp_off <= u32::max_value() as i64, "large spill offsets NYI"); |
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trace!("store_spillslot: slot {:?} -> sp_off {}", slot, sp_off); |
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store_stack( |
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SyntheticAmode::nominal_sp_offset(sp_off as u32), |
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from_reg, |
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ty, |
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) |
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} |
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fn gen_prologue(&mut self) -> Vec<Inst> { |
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@ -543,12 +563,12 @@ impl ABIBody for X64ABIBody { |
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} |
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} |
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fn gen_spill(&self, _to_slot: SpillSlot, _from_reg: RealReg, _ty: Type) -> Inst { |
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unimplemented!() |
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fn gen_spill(&self, to_slot: SpillSlot, from_reg: RealReg, ty: Type) -> Inst { |
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self.store_spillslot(to_slot, ty, from_reg.to_reg()) |
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} |
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fn gen_reload(&self, _to_reg: Writable<RealReg>, _from_slot: SpillSlot, _ty: Type) -> Inst { |
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unimplemented!() |
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fn gen_reload(&self, to_reg: Writable<RealReg>, from_slot: SpillSlot, ty: Type) -> Inst { |
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self.load_spillslot(from_slot, ty, to_reg.map(|r| r.to_reg())) |
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} |
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} |
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@ -828,7 +848,7 @@ fn adjust_stack<C: LowerCtx<I = Inst>>(ctx: &mut C, amount: u64, is_sub: bool) { |
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} |
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} |
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fn load_stack(mem: Amode, into_reg: Writable<Reg>, ty: Type) -> Inst { |
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fn load_stack(mem: impl Into<SyntheticAmode>, into_reg: Writable<Reg>, ty: Type) -> Inst { |
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let ext_mode = match ty { |
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types::B1 | types::B8 | types::I8 => Some(ExtMode::BQ), |
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types::B16 | types::I16 => Some(ExtMode::WQ), |
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@ -839,13 +859,14 @@ fn load_stack(mem: Amode, into_reg: Writable<Reg>, ty: Type) -> Inst { |
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_ => unimplemented!("load_stack({})", ty), |
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}; |
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let mem = mem.into(); |
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match ext_mode { |
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Some(ext_mode) => Inst::movsx_rm_r(ext_mode, RegMem::mem(mem), into_reg), |
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None => Inst::mov64_m_r(mem, into_reg), |
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} |
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} |
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fn store_stack(mem: Amode, from_reg: Reg, ty: Type) -> Inst { |
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fn store_stack(mem: impl Into<SyntheticAmode>, from_reg: Reg, ty: Type) -> Inst { |
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let (is_int, size) = match ty { |
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types::B1 | types::B8 | types::I8 => (true, 1), |
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types::B16 | types::I16 => (true, 2), |
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@ -855,6 +876,7 @@ fn store_stack(mem: Amode, from_reg: Reg, ty: Type) -> Inst { |
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types::F64 => (false, 8), |
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_ => unimplemented!("store_stack({})", ty), |
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}; |
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let mem = mem.into(); |
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if is_int { |
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Inst::mov_r_m(size, from_reg, mem) |
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} else { |
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