Move entirety of prologue_epilogue logic to abi module.
This commit is contained in:
committed by
Jakob Stoklund Olesen
parent
0fb59dc589
commit
694658b949
@@ -1,13 +1,18 @@
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//! Intel ABI implementation.
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use ir;
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use isa::{RegClass, RegUnit};
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use isa::{RegClass, RegUnit, TargetIsa};
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use regalloc::AllocatableSet;
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use settings as shared_settings;
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use super::registers::{GPR, FPR, RU};
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use abi::{ArgAction, ValueConversion, ArgAssigner, legalize_args};
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use ir::{AbiParam, ArgumentPurpose, ArgumentLoc, ArgumentExtension, CallConv};
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use ir::{AbiParam, ArgumentPurpose, ArgumentLoc, ArgumentExtension, CallConv, InstBuilder};
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use ir::immediates::Imm64;
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use stack_layout::layout_stack;
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use std::i32;
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use cursor::{Cursor, EncCursor};
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use result;
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/// Argument registers for x86-64
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static ARG_GPRS: [RU; 6] = [RU::rdi, RU::rsi, RU::rdx, RU::rcx, RU::r8, RU::r9];
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@@ -154,6 +159,7 @@ pub fn allocatable_registers(
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regs
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}
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/// Get the set of callee-saved registers.
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pub fn callee_saved_registers(flags: &shared_settings::Flags) -> &'static [RU] {
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if flags.is_64bit() {
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&[RU::rbx, RU::r12, RU::r13, RU::r14, RU::r15]
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@@ -161,3 +167,130 @@ pub fn callee_saved_registers(flags: &shared_settings::Flags) -> &'static [RU] {
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&[RU::rbx, RU::rsi, RU::rdi]
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}
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}
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/// Insert a System V-compatible prologue and epilogue.
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pub fn prologue_epilogue(func: &mut ir::Function, isa: &TargetIsa) -> result::CtonResult {
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let word_size = if isa.flags().is_64bit() { 8 } else { 4 };
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let csr_type = if isa.flags().is_64bit() {
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ir::types::I64
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} else {
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ir::types::I32
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};
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let csrs = callee_saved_registers(isa.flags());
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let csr_stack_size = ((csrs.len() + 1) * word_size as usize) as i32;
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func.create_stack_slot(ir::StackSlotData {
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kind: ir::StackSlotKind::IncomingArg,
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size: csr_stack_size as u32,
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offset: -csr_stack_size,
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});
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let total_stack_size = layout_stack(&mut func.stack_slots, word_size)? as i32;
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let local_stack_size = (total_stack_size - csr_stack_size) as i64;
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// Add CSRs to function signature
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let fp_arg = ir::AbiParam::special_reg(
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csr_type,
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ir::ArgumentPurpose::FramePointer,
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RU::rbp as RegUnit,
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);
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func.signature.params.push(fp_arg);
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func.signature.returns.push(fp_arg);
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for csr in csrs.iter() {
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let csr_arg =
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ir::AbiParam::special_reg(csr_type, ir::ArgumentPurpose::CalleeSaved, *csr as RegUnit);
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func.signature.params.push(csr_arg);
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func.signature.returns.push(csr_arg);
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}
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// Finally, insert the prologue and epilogues
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let entry_ebb = func.layout.entry_block().expect("missing entry block");
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let mut pos = EncCursor::new(func, isa).at_first_insertion_point(entry_ebb);
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insert_prologue(&mut pos, local_stack_size, csr_type, csrs);
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insert_epilogues(&mut pos, local_stack_size, csr_type, csrs);
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Ok(())
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}
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/// Insert the prologue for a given function.
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fn insert_prologue(
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pos: &mut EncCursor,
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stack_size: i64,
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csr_type: ir::types::Type,
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csrs: &'static [RU],
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) {
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// Append param to entry EBB
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let ebb = pos.current_ebb().expect("missing ebb under cursor");
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let fp = pos.func.dfg.append_ebb_param(ebb, csr_type);
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pos.func.locations[fp] = ir::ValueLoc::Reg(RU::rbp as RegUnit);
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pos.ins().x86_push(fp);
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pos.ins().copy_special(
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RU::rsp as RegUnit,
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RU::rbp as RegUnit,
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);
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if stack_size > 0 {
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pos.ins().adjust_sp_imm(Imm64::new(-stack_size));
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}
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for reg in csrs.iter() {
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// Append param to entry EBB
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let csr_arg = pos.func.dfg.append_ebb_param(ebb, csr_type);
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// Assign it a location
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pos.func.locations[csr_arg] = ir::ValueLoc::Reg(*reg as RegUnit);
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// Remember it so we can push it momentarily
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pos.ins().x86_push(csr_arg);
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}
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}
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/// Find all `return` instructions and insert epilogues before them.
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fn insert_epilogues(
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pos: &mut EncCursor,
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stack_size: i64,
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csr_type: ir::types::Type,
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csrs: &'static [RU],
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) {
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while let Some(ebb) = pos.next_ebb() {
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pos.goto_last_inst(ebb);
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if let Some(inst) = pos.current_inst() {
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if pos.func.dfg[inst].opcode().is_return() {
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insert_epilogue(inst, stack_size, pos, csr_type, csrs);
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}
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}
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}
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}
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/// Insert an epilogue given a specific `return` instruction.
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fn insert_epilogue(
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inst: ir::Inst,
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stack_size: i64,
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pos: &mut EncCursor,
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csr_type: ir::types::Type,
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csrs: &'static [RU],
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) {
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if stack_size > 0 {
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pos.ins().adjust_sp_imm(Imm64::new(stack_size));
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}
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// Pop all the callee-saved registers, stepping backward each time to
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// preserve the correct order.
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let fp_ret = pos.ins().x86_pop(csr_type);
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pos.prev_inst();
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pos.func.locations[fp_ret] = ir::ValueLoc::Reg(RU::rbp as RegUnit);
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pos.func.dfg.append_inst_arg(inst, fp_ret);
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for reg in csrs.iter() {
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let csr_ret = pos.ins().x86_pop(csr_type);
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pos.prev_inst();
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pos.func.locations[csr_ret] = ir::ValueLoc::Reg(*reg as RegUnit);
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pos.func.dfg.append_inst_arg(inst, csr_ret);
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}
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}
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@@ -10,15 +10,10 @@ use binemit::{CodeSink, MemoryCodeSink, emit_function};
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use super::super::settings as shared_settings;
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use isa::enc_tables::{self as shared_enc_tables, lookup_enclist, Encodings};
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use isa::Builder as IsaBuilder;
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use isa::{TargetIsa, RegInfo, RegClass, EncInfo, RegUnit};
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use self::registers::RU;
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use isa::{TargetIsa, RegInfo, RegClass, EncInfo};
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use ir;
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use regalloc;
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use result;
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use ir::InstBuilder;
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use ir::immediates::Imm64;
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use stack_layout::layout_stack;
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use cursor::{Cursor, EncCursor};
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#[allow(dead_code)]
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@@ -120,120 +115,6 @@ impl TargetIsa for Isa {
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}
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fn prologue_epilogue(&self, func: &mut ir::Function) -> result::CtonResult {
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let word_size = if self.flags().is_64bit() { 8 } else { 4 };
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let csr_type = if self.flags().is_64bit() {
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ir::types::I64
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} else {
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ir::types::I32
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};
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let csrs = abi::callee_saved_registers(&self.shared_flags);
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let csr_stack_size = ((csrs.len() + 1) * word_size as usize) as i32;
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func.create_stack_slot(ir::StackSlotData {
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kind: ir::StackSlotKind::IncomingArg,
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size: csr_stack_size as u32,
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offset: -csr_stack_size,
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});
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let total_stack_size = layout_stack(&mut func.stack_slots, word_size)? as i32;
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let local_stack_size = (total_stack_size - csr_stack_size) as i64;
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// Add CSRs to function signature
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let fp_arg = ir::AbiParam::special_reg(
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csr_type,
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ir::ArgumentPurpose::FramePointer,
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RU::rbp as RegUnit,
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);
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func.signature.params.push(fp_arg);
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func.signature.returns.push(fp_arg);
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for csr in csrs.iter() {
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let csr_arg = ir::AbiParam::special_reg(
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csr_type,
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ir::ArgumentPurpose::CalleeSaved,
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*csr as RegUnit,
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);
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func.signature.params.push(csr_arg);
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func.signature.returns.push(csr_arg);
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}
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let entry_ebb = func.layout.entry_block().expect("missing entry block");
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let mut pos = EncCursor::new(func, self).at_first_insertion_point(entry_ebb);
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self.insert_prologue(&mut pos, local_stack_size, csr_type);
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self.insert_epilogues(&mut pos, local_stack_size, csr_type);
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Ok(())
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}
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}
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impl Isa {
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fn insert_prologue(&self, pos: &mut EncCursor, stack_size: i64, csr_type: ir::types::Type) {
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// Append param to entry EBB
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let ebb = pos.current_ebb().expect("missing ebb under cursor");
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let fp = pos.func.dfg.append_ebb_param(ebb, csr_type);
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pos.func.locations[fp] = ir::ValueLoc::Reg(RU::rbp as RegUnit);
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pos.ins().x86_push(fp);
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pos.ins().copy_special(
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RU::rsp as RegUnit,
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RU::rbp as RegUnit,
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);
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if stack_size > 0 {
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pos.ins().adjust_sp_imm(Imm64::new(-stack_size));
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}
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let csrs = abi::callee_saved_registers(&self.shared_flags);
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for reg in csrs.iter() {
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// Append param to entry EBB
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let csr_arg = pos.func.dfg.append_ebb_param(ebb, csr_type);
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// Assign it a location
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pos.func.locations[csr_arg] = ir::ValueLoc::Reg(*reg as RegUnit);
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// Remember it so we can push it momentarily
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pos.ins().x86_push(csr_arg);
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}
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}
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fn insert_epilogues(&self, pos: &mut EncCursor, stack_size: i64, csr_type: ir::types::Type) {
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while let Some(ebb) = pos.next_ebb() {
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pos.goto_last_inst(ebb);
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if let Some(inst) = pos.current_inst() {
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if pos.func.dfg[inst].opcode().is_return() {
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self.insert_epilogue(inst, stack_size, pos, csr_type);
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}
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}
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}
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}
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fn insert_epilogue(
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&self,
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inst: ir::Inst,
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stack_size: i64,
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pos: &mut EncCursor,
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csr_type: ir::types::Type,
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) {
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if stack_size > 0 {
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pos.ins().adjust_sp_imm(Imm64::new(stack_size));
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}
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let fp_ret = pos.ins().x86_pop(csr_type);
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pos.prev_inst();
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pos.func.locations[fp_ret] = ir::ValueLoc::Reg(RU::rbp as RegUnit);
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pos.func.dfg.append_inst_arg(inst, fp_ret);
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let csrs = abi::callee_saved_registers(&self.shared_flags);
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for reg in csrs.iter() {
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let csr_ret = pos.ins().x86_pop(csr_type);
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pos.prev_inst();
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pos.func.locations[csr_ret] = ir::ValueLoc::Reg(*reg as RegUnit);
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pos.func.dfg.append_inst_arg(inst, csr_ret);
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}
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abi::prologue_epilogue(func, self)
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}
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}
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