forked from M-Labs/nac3
fix ternary if (#250)
Use store and load to handle if expression as the blocks might be changed when generating sub-expressions. Reviewed-on: M-Labs/nac3#250 Co-authored-by: ychenfo <yc@m-labs.hk> Co-committed-by: ychenfo <yc@m-labs.hk>
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@ -1226,21 +1226,44 @@ pub fn gen_expr<'ctx, 'a, G: CodeGenerator>(
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.unwrap()
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.unwrap()
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.to_basic_value_enum(ctx, generator)?
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.to_basic_value_enum(ctx, generator)?
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.into_int_value();
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.into_int_value();
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let body_ty = body.custom.unwrap();
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let is_none = ctx.unifier.get_representative(body_ty) == ctx.primitives.none;
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let result = if !is_none {
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let llvm_ty = ctx.get_llvm_type(generator, body_ty);
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Some(ctx.builder.build_alloca(llvm_ty, "if_exp_result"))
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} else {
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None
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};
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let current = ctx.builder.get_insert_block().unwrap().get_parent().unwrap();
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let current = ctx.builder.get_insert_block().unwrap().get_parent().unwrap();
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let then_bb = ctx.ctx.append_basic_block(current, "then");
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let then_bb = ctx.ctx.append_basic_block(current, "then");
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let else_bb = ctx.ctx.append_basic_block(current, "else");
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let else_bb = ctx.ctx.append_basic_block(current, "else");
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let cont_bb = ctx.ctx.append_basic_block(current, "cont");
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let cont_bb = ctx.ctx.append_basic_block(current, "cont");
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ctx.builder.build_conditional_branch(test, then_bb, else_bb);
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ctx.builder.build_conditional_branch(test, then_bb, else_bb);
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ctx.builder.position_at_end(then_bb);
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ctx.builder.position_at_end(then_bb);
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let a = generator.gen_expr(ctx, body)?.unwrap().to_basic_value_enum(ctx, generator)?;
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let a = generator.gen_expr(ctx, body)?;
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match result {
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None => None,
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Some(v) => {
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let a = a.unwrap().to_basic_value_enum(ctx, generator)?;
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Some(ctx.builder.build_store(v, a))
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}
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};
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ctx.builder.build_unconditional_branch(cont_bb);
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ctx.builder.build_unconditional_branch(cont_bb);
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ctx.builder.position_at_end(else_bb);
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ctx.builder.position_at_end(else_bb);
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let b = generator.gen_expr(ctx, orelse)?.unwrap().to_basic_value_enum(ctx, generator)?;
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let b = generator.gen_expr(ctx, orelse)?;
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match result {
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None => None,
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Some(v) => {
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let b = b.unwrap().to_basic_value_enum(ctx, generator)?;
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Some(ctx.builder.build_store(v, b))
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}
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};
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ctx.builder.build_unconditional_branch(cont_bb);
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ctx.builder.build_unconditional_branch(cont_bb);
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ctx.builder.position_at_end(cont_bb);
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ctx.builder.position_at_end(cont_bb);
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let phi = ctx.builder.build_phi(a.get_type(), "ifexpr");
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match result {
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phi.add_incoming(&[(&a, then_bb), (&b, else_bb)]);
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None => return Ok(None),
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phi.as_basic_value().into()
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Some(v) => return Ok(Some(ctx.builder.build_load(v, "if_exp_val_load").into()))
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}
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}
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}
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ExprKind::Call { func, args, keywords } => {
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ExprKind::Call { func, args, keywords } => {
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let mut params = args
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let mut params = args
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@ -180,13 +180,22 @@ fn test_primitives() {
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let expected = indoc! {"
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let expected = indoc! {"
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; ModuleID = 'test'
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; ModuleID = 'test'
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source_filename = \"test\"
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source_filename = \"test\"
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define i32 @testing(i32 %0, i32 %1) {
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define i32 @testing(i32 %0, i32 %1) {
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init:
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init:
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%add = add i32 %0, %1
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%add = add i32 %0, %1
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%cmp = icmp eq i32 %add, 1
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%cmp = icmp eq i32 %add, 1
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%ifexpr = select i1 %cmp, i32 %0, i32 0
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br i1 %cmp, label %then, label %else
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ret i32 %ifexpr
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then: ; preds = %init
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br label %cont
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else: ; preds = %init
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br label %cont
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cont: ; preds = %else, %then
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%if_exp_result.0 = phi i32 [ %0, %then ], [ 0, %else ]
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ret i32 %if_exp_result.0
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}
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}
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"}
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"}
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.trim();
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.trim();
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