if (CalleeF->isIntrinsic())
return false;
+ // Attempting to transform inline assembly will result in something like:
+ // call void @__invoke_void(void ()* asm ...)
+ // which is invalid because inline assembly blocks do not have addresses
+ // and can't be passed by pointer. The result is a crash with illegal IR.
+ if (isa<InlineAsm>(Callee))
+ return false;
+
// The reason we include malloc/free here is to exclude the malloc/free
// calls generated in setjmp prep / cleanup routines.
Function *SetjmpF = M.getFunction("setjmp");
; CHECK-NEXT: call void @emscripten_longjmp_jmpbuf(%struct.__jmp_buf_tag* %[[ARRAYDECAY]], i32 5) #1
}
+; Test inline asm handling
+define hidden void @inline_asm() #0 {
+; CHECK-LABEL: @inline_asm
+entry:
+ %env = alloca [1 x %struct.__jmp_buf_tag], align 16
+ %arraydecay = getelementptr inbounds [1 x %struct.__jmp_buf_tag], [1 x %struct.__jmp_buf_tag]* %env, i32 0, i32 0
+ %call = call i32 @setjmp(%struct.__jmp_buf_tag* %arraydecay) #4
+ %cmp = icmp eq i32 %call, 0
+ br i1 %cmp, label %if.then, label %if.else
+
+if.then: ; preds = %entry
+; CHECK: call void asm sideeffect "", ""()
+ call void asm sideeffect "", ""()
+ %arraydecay1 = getelementptr inbounds [1 x %struct.__jmp_buf_tag], [1 x %struct.__jmp_buf_tag]* %env, i32 0, i32 0
+ call void @longjmp(%struct.__jmp_buf_tag* %arraydecay1, i32 1) #5
+ unreachable
+
+if.else: ; preds = %entry
+ ret void
+}
+
declare void @foo()
; Function Attrs: returns_twice
declare i32 @setjmp(%struct.__jmp_buf_tag*) #0