compiler: Lower fn call arg spans down to MIR
To enable improved accuracy of diagnostics in upcoming commits.
This commit is contained in:
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18e12dcf6b
commit
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@ -11,6 +11,7 @@
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use rustc_middle::middle::codegen_fn_attrs::CodegenFnAttrFlags;
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use rustc_middle::ty::layout::FnAbiOf;
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use rustc_session::Session;
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use rustc_span::source_map::Spanned;
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use rustc_target::abi::call::{Conv, FnAbi};
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use rustc_target::spec::abi::Abi;
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@ -360,7 +361,7 @@ pub(crate) fn codegen_terminator_call<'tcx>(
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fx: &mut FunctionCx<'_, '_, 'tcx>,
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source_info: mir::SourceInfo,
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func: &Operand<'tcx>,
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args: &[Operand<'tcx>],
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args: &[Spanned<Operand<'tcx>>],
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destination: Place<'tcx>,
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target: Option<BasicBlock>,
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) {
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@ -415,7 +416,7 @@ pub(crate) fn codegen_terminator_call<'tcx>(
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let extra_args = &args[fn_sig.inputs().skip_binder().len()..];
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let extra_args = fx.tcx.mk_type_list_from_iter(
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extra_args.iter().map(|op_arg| fx.monomorphize(op_arg.ty(fx.mir, fx.tcx))),
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extra_args.iter().map(|op_arg| fx.monomorphize(op_arg.node.ty(fx.mir, fx.tcx))),
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);
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let fn_abi = if let Some(instance) = instance {
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RevealAllLayoutCx(fx.tcx).fn_abi_of_instance(instance, extra_args)
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@ -440,10 +441,10 @@ pub(crate) fn codegen_terminator_call<'tcx>(
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// Unpack arguments tuple for closures
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let mut args = if fn_sig.abi() == Abi::RustCall {
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let (self_arg, pack_arg) = match args {
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[pack_arg] => (None, codegen_call_argument_operand(fx, pack_arg)),
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[pack_arg] => (None, codegen_call_argument_operand(fx, &pack_arg.node)),
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[self_arg, pack_arg] => (
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Some(codegen_call_argument_operand(fx, self_arg)),
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codegen_call_argument_operand(fx, pack_arg),
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Some(codegen_call_argument_operand(fx, &self_arg.node)),
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codegen_call_argument_operand(fx, &pack_arg.node),
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),
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_ => panic!("rust-call abi requires one or two arguments"),
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};
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@ -463,7 +464,7 @@ pub(crate) fn codegen_terminator_call<'tcx>(
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}
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args
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} else {
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args.iter().map(|arg| codegen_call_argument_operand(fx, arg)).collect::<Vec<_>>()
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args.iter().map(|arg| codegen_call_argument_operand(fx, &arg.node)).collect::<Vec<_>>()
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};
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// Pass the caller location for `#[track_caller]`.
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@ -7,7 +7,7 @@ pub(crate) fn codegen_llvm_intrinsic_call<'tcx>(
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fx: &mut FunctionCx<'_, '_, 'tcx>,
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intrinsic: &str,
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generic_args: GenericArgsRef<'tcx>,
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args: &[mir::Operand<'tcx>],
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args: &[Spanned<mir::Operand<'tcx>>],
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ret: CPlace<'tcx>,
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target: Option<BasicBlock>,
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span: Span,
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@ -7,7 +7,7 @@ pub(crate) fn codegen_aarch64_llvm_intrinsic_call<'tcx>(
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fx: &mut FunctionCx<'_, '_, 'tcx>,
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intrinsic: &str,
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_args: GenericArgsRef<'tcx>,
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args: &[mir::Operand<'tcx>],
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args: &[Spanned<mir::Operand<'tcx>>],
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ret: CPlace<'tcx>,
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target: Option<BasicBlock>,
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) {
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@ -11,7 +11,7 @@ pub(crate) fn codegen_x86_llvm_intrinsic_call<'tcx>(
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fx: &mut FunctionCx<'_, '_, 'tcx>,
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intrinsic: &str,
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_args: GenericArgsRef<'tcx>,
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args: &[mir::Operand<'tcx>],
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args: &[Spanned<mir::Operand<'tcx>>],
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ret: CPlace<'tcx>,
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target: Option<BasicBlock>,
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span: Span,
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@ -175,9 +175,9 @@ pub(crate) fn codegen_x86_llvm_intrinsic_call<'tcx>(
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[x, y, kind] => (x, y, kind),
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_ => bug!("wrong number of args for intrinsic {intrinsic}"),
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};
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let x = codegen_operand(fx, x);
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let y = codegen_operand(fx, y);
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let kind = match kind {
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let x = codegen_operand(fx, &x.node);
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let y = codegen_operand(fx, &y.node);
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let kind = match &kind.node {
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Operand::Constant(const_) => crate::constant::eval_mir_constant(fx, const_).0,
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Operand::Copy(_) | Operand::Move(_) => unreachable!("{kind:?}"),
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};
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@ -287,8 +287,8 @@ pub(crate) fn codegen_x86_llvm_intrinsic_call<'tcx>(
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[a, b] => (a, b),
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_ => bug!("wrong number of args for intrinsic {intrinsic}"),
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};
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let a = codegen_operand(fx, a);
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let b = codegen_operand(fx, b);
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let a = codegen_operand(fx, &a.node);
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let b = codegen_operand(fx, &b.node);
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// Based on the pseudocode at https://github.com/rust-lang/stdarch/blob/1cfbca8b38fd9b4282b2f054f61c6ca69fc7ce29/crates/core_arch/src/x86/avx2.rs#L2319-L2332
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let zero = fx.bcx.ins().iconst(types::I8, 0);
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@ -325,9 +325,9 @@ pub(crate) fn codegen_x86_llvm_intrinsic_call<'tcx>(
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[a, b, imm8] => (a, b, imm8),
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_ => bug!("wrong number of args for intrinsic {intrinsic}"),
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};
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let a = codegen_operand(fx, a);
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let b = codegen_operand(fx, b);
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let imm8 = codegen_operand(fx, imm8).load_scalar(fx);
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let a = codegen_operand(fx, &a.node);
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let b = codegen_operand(fx, &b.node);
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let imm8 = codegen_operand(fx, &imm8.node).load_scalar(fx);
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let a_low = a.value_typed_lane(fx, fx.tcx.types.u128, 0).load_scalar(fx);
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let a_high = a.value_typed_lane(fx, fx.tcx.types.u128, 1).load_scalar(fx);
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@ -956,14 +956,14 @@ fn select4(
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let b = b.load_scalar(fx);
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let lb = lb.load_scalar(fx);
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let imm8 = if let Some(imm8) = crate::constant::mir_operand_get_const_val(fx, &args[4])
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{
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imm8
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} else {
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fx.tcx
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.dcx()
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.span_fatal(span, "Index argument for `_mm_cmpestri` is not a constant");
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};
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let imm8 =
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if let Some(imm8) = crate::constant::mir_operand_get_const_val(fx, &args[4].node) {
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imm8
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} else {
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fx.tcx
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.dcx()
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.span_fatal(span, "Index argument for `_mm_cmpestri` is not a constant");
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};
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let imm8 = imm8.try_to_u8().unwrap_or_else(|_| panic!("kind not scalar: {:?}", imm8));
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@ -1009,14 +1009,14 @@ fn select4(
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let b = b.load_scalar(fx);
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let lb = lb.load_scalar(fx);
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let imm8 = if let Some(imm8) = crate::constant::mir_operand_get_const_val(fx, &args[4])
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{
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imm8
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} else {
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fx.tcx
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.dcx()
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.span_fatal(span, "Index argument for `_mm_cmpestrm` is not a constant");
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};
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let imm8 =
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if let Some(imm8) = crate::constant::mir_operand_get_const_val(fx, &args[4].node) {
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imm8
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} else {
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fx.tcx
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.dcx()
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.span_fatal(span, "Index argument for `_mm_cmpestrm` is not a constant");
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};
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let imm8 = imm8.try_to_u8().unwrap_or_else(|_| panic!("kind not scalar: {:?}", imm8));
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@ -1056,15 +1056,15 @@ fn select4(
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let a = a.load_scalar(fx);
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let b = b.load_scalar(fx);
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let imm8 = if let Some(imm8) = crate::constant::mir_operand_get_const_val(fx, &args[2])
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{
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imm8
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} else {
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fx.tcx.dcx().span_fatal(
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span,
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"Index argument for `_mm_clmulepi64_si128` is not a constant",
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);
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};
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let imm8 =
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if let Some(imm8) = crate::constant::mir_operand_get_const_val(fx, &args[2].node) {
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imm8
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} else {
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fx.tcx.dcx().span_fatal(
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span,
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"Index argument for `_mm_clmulepi64_si128` is not a constant",
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);
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};
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let imm8 = imm8.try_to_u8().unwrap_or_else(|_| panic!("kind not scalar: {:?}", imm8));
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@ -1093,15 +1093,15 @@ fn select4(
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let a = a.load_scalar(fx);
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let imm8 = if let Some(imm8) = crate::constant::mir_operand_get_const_val(fx, &args[1])
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{
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imm8
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} else {
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fx.tcx.dcx().span_fatal(
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span,
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"Index argument for `_mm_aeskeygenassist_si128` is not a constant",
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);
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};
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let imm8 =
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if let Some(imm8) = crate::constant::mir_operand_get_const_val(fx, &args[1].node) {
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imm8
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} else {
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fx.tcx.dcx().span_fatal(
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span,
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"Index argument for `_mm_aeskeygenassist_si128` is not a constant",
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);
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};
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let imm8 = imm8.try_to_u8().unwrap_or_else(|_| panic!("kind not scalar: {:?}", imm8));
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@ -5,7 +5,7 @@ macro_rules! intrinsic_args {
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($fx:expr, $args:expr => ($($arg:tt),*); $intrinsic:expr) => {
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#[allow(unused_parens)]
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let ($($arg),*) = if let [$($arg),*] = $args {
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($(codegen_operand($fx, $arg)),*)
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($(codegen_operand($fx, &($arg).node)),*)
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} else {
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$crate::intrinsics::bug_on_incorrect_arg_count($intrinsic);
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};
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@ -22,6 +22,7 @@ macro_rules! intrinsic_args {
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use rustc_middle::ty::layout::{HasParamEnv, ValidityRequirement};
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use rustc_middle::ty::print::{with_no_trimmed_paths, with_no_visible_paths};
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use rustc_middle::ty::GenericArgsRef;
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use rustc_span::source_map::Spanned;
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use rustc_span::symbol::{kw, sym, Symbol};
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pub(crate) use self::llvm::codegen_llvm_intrinsic_call;
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@ -263,7 +264,7 @@ fn bool_to_zero_or_max_uint<'tcx>(
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pub(crate) fn codegen_intrinsic_call<'tcx>(
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fx: &mut FunctionCx<'_, '_, 'tcx>,
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instance: Instance<'tcx>,
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args: &[mir::Operand<'tcx>],
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args: &[Spanned<mir::Operand<'tcx>>],
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destination: CPlace<'tcx>,
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target: Option<BasicBlock>,
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source_info: mir::SourceInfo,
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@ -301,7 +302,7 @@ pub(crate) fn codegen_intrinsic_call<'tcx>(
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fn codegen_float_intrinsic_call<'tcx>(
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fx: &mut FunctionCx<'_, '_, 'tcx>,
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intrinsic: Symbol,
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args: &[mir::Operand<'tcx>],
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args: &[Spanned<mir::Operand<'tcx>>],
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ret: CPlace<'tcx>,
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) -> bool {
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let (name, arg_count, ty, clif_ty) = match intrinsic {
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@ -353,18 +354,21 @@ fn codegen_float_intrinsic_call<'tcx>(
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let (a, b, c);
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let args = match args {
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[x] => {
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a = [codegen_operand(fx, x).load_scalar(fx)];
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a = [codegen_operand(fx, &x.node).load_scalar(fx)];
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&a as &[_]
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}
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[x, y] => {
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b = [codegen_operand(fx, x).load_scalar(fx), codegen_operand(fx, y).load_scalar(fx)];
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b = [
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codegen_operand(fx, &x.node).load_scalar(fx),
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codegen_operand(fx, &y.node).load_scalar(fx),
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];
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&b
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}
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[x, y, z] => {
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c = [
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codegen_operand(fx, x).load_scalar(fx),
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codegen_operand(fx, y).load_scalar(fx),
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codegen_operand(fx, z).load_scalar(fx),
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codegen_operand(fx, &x.node).load_scalar(fx),
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codegen_operand(fx, &y.node).load_scalar(fx),
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codegen_operand(fx, &z.node).load_scalar(fx),
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];
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&c
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}
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@ -422,7 +426,7 @@ fn codegen_regular_intrinsic_call<'tcx>(
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instance: Instance<'tcx>,
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intrinsic: Symbol,
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generic_args: GenericArgsRef<'tcx>,
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args: &[mir::Operand<'tcx>],
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args: &[Spanned<mir::Operand<'tcx>>],
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ret: CPlace<'tcx>,
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destination: Option<BasicBlock>,
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source_info: mir::SourceInfo,
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@ -21,7 +21,7 @@ pub(super) fn codegen_simd_intrinsic_call<'tcx>(
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fx: &mut FunctionCx<'_, '_, 'tcx>,
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intrinsic: Symbol,
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generic_args: GenericArgsRef<'tcx>,
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args: &[mir::Operand<'tcx>],
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args: &[Spanned<mir::Operand<'tcx>>],
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ret: CPlace<'tcx>,
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target: BasicBlock,
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span: Span,
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@ -121,8 +121,8 @@ pub(super) fn codegen_simd_intrinsic_call<'tcx>(
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let [x, y] = args else {
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bug!("wrong number of args for intrinsic {intrinsic}");
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};
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let x = codegen_operand(fx, x);
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let y = codegen_operand(fx, y);
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let x = codegen_operand(fx, &x.node);
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let y = codegen_operand(fx, &y.node);
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if !x.layout().ty.is_simd() {
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report_simd_type_validation_error(fx, intrinsic, span, x.layout().ty);
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@ -172,8 +172,8 @@ pub(super) fn codegen_simd_intrinsic_call<'tcx>(
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bug!("wrong number of args for intrinsic {intrinsic}");
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}
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};
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let x = codegen_operand(fx, x);
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let y = codegen_operand(fx, y);
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let x = codegen_operand(fx, &x.node);
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let y = codegen_operand(fx, &y.node);
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if !x.layout().ty.is_simd() {
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report_simd_type_validation_error(fx, intrinsic, span, x.layout().ty);
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@ -182,7 +182,7 @@ pub(super) fn codegen_simd_intrinsic_call<'tcx>(
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// Make sure this is actually an array, since typeck only checks the length-suffixed
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// version of this intrinsic.
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let idx_ty = fx.monomorphize(idx.ty(fx.mir, fx.tcx));
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let idx_ty = fx.monomorphize(idx.node.ty(fx.mir, fx.tcx));
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let n: u16 = match idx_ty.kind() {
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ty::Array(ty, len) if matches!(ty.kind(), ty::Uint(ty::UintTy::U32)) => len
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.try_eval_target_usize(fx.tcx, ty::ParamEnv::reveal_all())
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@ -215,7 +215,7 @@ pub(super) fn codegen_simd_intrinsic_call<'tcx>(
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let indexes = {
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use rustc_middle::mir::interpret::*;
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let idx_const = match idx {
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let idx_const = match &idx.node {
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Operand::Constant(const_) => crate::constant::eval_mir_constant(fx, const_).0,
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Operand::Copy(_) | Operand::Move(_) => unreachable!("{idx:?}"),
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};
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@ -269,12 +269,12 @@ pub(super) fn codegen_simd_intrinsic_call<'tcx>(
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bug!("wrong number of args for intrinsic {intrinsic}");
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}
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};
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let base = codegen_operand(fx, base);
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let val = codegen_operand(fx, val);
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let base = codegen_operand(fx, &base.node);
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let val = codegen_operand(fx, &val.node);
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// FIXME validate
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let idx_const = if let Some(idx_const) =
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crate::constant::mir_operand_get_const_val(fx, idx)
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crate::constant::mir_operand_get_const_val(fx, &idx.node)
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{
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idx_const
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} else {
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@ -304,7 +304,7 @@ pub(super) fn codegen_simd_intrinsic_call<'tcx>(
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bug!("wrong number of args for intrinsic {intrinsic}");
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}
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};
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let v = codegen_operand(fx, v);
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let v = codegen_operand(fx, &v.node);
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if !v.layout().ty.is_simd() {
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report_simd_type_validation_error(fx, intrinsic, span, v.layout().ty);
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@ -312,7 +312,7 @@ pub(super) fn codegen_simd_intrinsic_call<'tcx>(
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}
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let idx_const = if let Some(idx_const) =
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crate::constant::mir_operand_get_const_val(fx, idx)
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crate::constant::mir_operand_get_const_val(fx, &idx.node)
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{
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idx_const
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} else {
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