@@ -730,6 +730,14 @@ fn fn_abi_adjust_for_abi<'tcx>(
730730
731731 match arg. layout . abi {
732732 Abi :: Aggregate { .. } => { }
733+ Abi :: ScalarPair ( ..) => {
734+ // FIXME: It is strange that small struct optimizations are enabled
735+ // for 3-fields and more, but disabled for 2-fields (represented by ScalarPair)
736+ // Here 2-fields optimizations are enabled only for return value
737+ if !tcx. sess . opts . unstable_opts . reg_struct_return || arg_idx. is_some ( ) {
738+ return ;
739+ }
740+ }
733741
734742 // This is a fun case! The gist of what this is doing is
735743 // that we want callers and callees to always agree on the
@@ -761,12 +769,22 @@ fn fn_abi_adjust_for_abi<'tcx>(
761769 }
762770 // Compute `Aggregate` ABI.
763771
764- let is_indirect_not_on_stack =
765- matches ! ( arg. mode, PassMode :: Indirect { on_stack: false , .. } ) ;
766- assert ! ( is_indirect_not_on_stack, "{:?}" , arg) ;
772+ let is_indirect_not_on_stack = ! matches ! ( arg . layout . abi , Abi :: Aggregate { .. } )
773+ || matches ! ( arg. mode, PassMode :: Indirect { on_stack: false , .. } ) ;
774+ assert ! ( is_indirect_not_on_stack, "is_indirect_not_on_stack: {:?}" , arg) ;
767775
768776 let size = arg. layout . size ;
769- if !arg. layout . is_unsized ( ) && size <= Pointer ( AddressSpace :: DATA ) . size ( cx) {
777+ let ptr_size = Pointer ( AddressSpace :: DATA ) . size ( cx) ;
778+
779+ // In x86 we may return 2x pointer sized struct as i64
780+ let reg_struct_return_case = tcx. sess . target . arch == "x86"
781+ && arg_idx. is_none ( )
782+ && tcx. sess . opts . unstable_opts . reg_struct_return
783+ && abi != SpecAbi :: RustIntrinsic ;
784+
785+ if !arg. layout . is_unsized ( )
786+ && ( size <= ptr_size || ( reg_struct_return_case && ( size <= 2 * ptr_size) ) )
787+ {
770788 // We want to pass small aggregates as immediates, but using
771789 // an LLVM aggregate type for this leads to bad optimizations,
772790 // so we pick an appropriately sized integer type instead.
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