Generate code to load a crate's tests into the std test runner. Issue #428
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09982784c6
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2 changed files with 233 additions and 52 deletions
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@ -10,9 +10,9 @@ export modify_for_testing;
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type node_id_gen = @fn() -> ast::node_id;
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type test_ctxt = rec(node_id_gen next_node_id,
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mutable ast::ident[] path,
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mutable ast::ident[][] testfns);
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type test_ctxt = @rec(node_id_gen next_node_id,
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mutable ast::ident[] path,
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mutable ast::ident[][] testfns);
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// Traverse the crate, collecting all the test functions, eliding any
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// existing main functions, and synthesizing a main test harness
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@ -30,9 +30,9 @@ fn modify_for_testing(@ast::crate crate) -> @ast::crate {
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ret this_node_id;
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} (next_node_id);
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let test_ctxt cx = rec(next_node_id = next_node_id_fn,
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mutable path = ~[],
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mutable testfns = ~[]);
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let test_ctxt cx = @rec(next_node_id = next_node_id_fn,
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mutable path = ~[],
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mutable testfns = ~[]);
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auto precursor = rec(fold_crate = bind fold_crate(cx, _, _),
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fold_item = bind fold_item(cx, _, _)
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@ -55,51 +55,6 @@ fn fold_crate(&test_ctxt cx, &ast::crate_ c,
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with folded);
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}
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fn add_test_module(&test_ctxt cx, &ast::_mod m) -> ast::_mod {
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auto testmod = mk_test_module(cx);
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ret rec(items=m.items + ~[testmod] with m);
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}
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fn mk_test_module(&test_ctxt cx) -> @ast::item {
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auto mainfn = mk_main(cx);
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let ast::_mod testmod = rec(view_items=~[], items=~[mainfn]);
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auto item_ = ast::item_mod(testmod);
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let ast::item item = rec(ident = "__test",
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attrs = ~[],
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id = cx.next_node_id(),
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node = item_,
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span = rec(lo=0u, hi=0u));
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ret @item;
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}
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fn mk_main(&test_ctxt cx) -> @ast::item {
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auto ret_ty = @rec(node=ast::ty_nil,
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span=rec(lo=0u, hi=0u));
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let ast::fn_decl decl = rec(inputs = ~[],
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output = ret_ty,
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purity = ast::impure_fn,
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cf = ast::return,
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constraints = ~[]);
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auto proto = ast::proto_fn;
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let ast::block_ body_ = rec(stmts = ~[],
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expr = option::none,
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id = cx.next_node_id());
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auto body = rec(node = body_, span = rec(lo=0u, hi=0u));
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auto fn_ = rec(decl = decl,
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proto = proto,
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body = body);
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auto item_ = ast::item_fn(fn_, ~[]);
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let ast::item item = rec(ident = "main",
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attrs = ~[],
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id = cx.next_node_id(),
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node = item_,
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span = rec(lo=0u, hi=0u));
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ret @item;
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}
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fn fold_item(&test_ctxt cx, &@ast::item i,
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fold::ast_fold fld) -> @ast::item {
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@ -110,6 +65,7 @@ fn fold_item(&test_ctxt cx, &@ast::item i,
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if (is_test_fn(i)) {
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log "this is a test function";
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cx.testfns += ~[cx.path];
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log #fmt("have %u test functions", ivec::len(cx.testfns));
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}
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auto res = fold::noop_fold_item(i, fld);
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@ -136,6 +92,231 @@ fn is_test_fn(&@ast::item i) -> bool {
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ret has_test_attr && has_test_signature(i);
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}
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fn add_test_module(&test_ctxt cx, &ast::_mod m) -> ast::_mod {
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auto testmod = mk_test_module(cx);
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ret rec(items=m.items + ~[testmod] with m);
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}
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/*
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We're going to be building a module that looks more or less like:
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mod __test {
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fn main(vec[str] args) -> int {
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std::test::test_main(args, tests())
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}
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fn tests() -> std::test::test_desc[] {
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... the list of tests in the crate ...
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}
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}
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*/
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fn mk_test_module(&test_ctxt cx) -> @ast::item {
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// A function that generates a vector of test descriptors to feed to the
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// test runner
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auto testsfn = mk_tests(cx);
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// The synthesized main function which will call the console test runner
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// with our list of tests
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auto mainfn = mk_main(cx);
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let ast::_mod testmod = rec(view_items=~[],
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items=~[mainfn, testsfn]);
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auto item_ = ast::item_mod(testmod);
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let ast::item item = rec(ident = "__test",
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attrs = ~[],
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id = cx.next_node_id(),
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node = item_,
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span = rec(lo=0u, hi=0u));
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ret @item;
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}
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fn nospan[T](&T t) -> ast::spanned[T] {
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ret rec(node=t,
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span=rec(lo=0u,hi=0u));
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}
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fn mk_tests(&test_ctxt cx) -> @ast::item {
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auto ret_ty = mk_test_desc_ivec_ty();
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let ast::fn_decl decl = rec(inputs = ~[],
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output = ret_ty,
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purity = ast::impure_fn,
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cf = ast::return,
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constraints = ~[]);
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auto proto = ast::proto_fn;
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// The vector of test_descs for this crate
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auto test_descs = mk_test_desc_vec(cx);
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let ast::block_ body_= rec(stmts = ~[],
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expr = option::some(test_descs),
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id = cx.next_node_id());
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auto body = nospan(body_);
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auto fn_ = rec(decl = decl,
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proto = proto,
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body = body);
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auto item_ = ast::item_fn(fn_, ~[]);
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let ast::item item = rec(ident = "tests",
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attrs = ~[],
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id = cx.next_node_id(),
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node = item_,
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span = rec(lo=0u, hi=0u));
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ret @item;
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}
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fn empty_fn_ty() -> ast::ty {
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auto proto = ast::proto_fn;
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auto input_ty = ~[];
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auto ret_ty = @nospan(ast::ty_nil);
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auto cf = ast::return;
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auto constrs = ~[];
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ret nospan(ast::ty_fn(proto, input_ty, ret_ty, cf, constrs));
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}
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// The ast::ty of std::test::test_desc
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fn mk_test_desc_ivec_ty() -> @ast::ty {
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// Oh this is brutal to build by hand
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let ast::mt name_mt = rec(ty = @nospan(ast::ty_str),
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mut = ast::imm);
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let ast::mt fn_mt = rec(ty = @empty_fn_ty(),
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mut = ast::imm);
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let ast::ty_field_ name_ty_field_ = rec(ident = "name",
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mt = name_mt);
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let ast::ty_field_ fn_ty_field_ = rec(ident = "fn",
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mt = fn_mt);
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let ast::ty_field[] test_desc_fields = ~[nospan(name_ty_field_),
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nospan(fn_ty_field_)];
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let ast::ty test_desc_ty = nospan(ast::ty_rec(test_desc_fields));
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let ast::mt ivec_mt = rec(ty = @test_desc_ty,
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mut = ast::imm);
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ret @nospan(ast::ty_ivec(ivec_mt));
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}
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fn mk_test_desc_vec(&test_ctxt cx) -> @ast::expr {
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log #fmt("building test vector from %u tests",
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ivec::len(cx.testfns));
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auto descs = ~[];
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for (ast::ident[] testpath in cx.testfns) {
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log #fmt("encoding %s", ast::path_name_i(testpath));
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auto path = testpath;
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descs += ~[mk_test_desc_rec(cx, path)];
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}
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ret @rec(id = cx.next_node_id(),
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node = ast::expr_vec(descs, ast::imm, ast::sk_unique),
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span = rec(lo=0u,hi=0u));
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}
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fn mk_test_desc_rec(&test_ctxt cx, ast::ident[] path) -> @ast::expr {
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let ast::lit name_lit = nospan(ast::lit_str(ast::path_name_i(path),
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ast::sk_rc));
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let ast::expr name_expr = rec(id = cx.next_node_id(),
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node = ast::expr_lit(@name_lit),
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span = rec(lo=0u, hi=0u));
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let ast::field name_field = nospan(rec(mut = ast::imm,
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ident = "name",
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expr = @name_expr));
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let ast::path fn_path = nospan(rec(idents = path,
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types = ~[]));
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let ast::expr fn_expr = rec(id = cx.next_node_id(),
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node = ast::expr_path(fn_path),
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span = rec(lo=0u, hi=0u));
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let ast::field fn_field = nospan(rec(mut = ast::imm,
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ident = "fn",
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expr = @fn_expr));
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let ast::expr_ desc_rec_ = ast::expr_rec(~[name_field, fn_field],
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option::none);
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let ast::expr desc_rec = rec(id = cx.next_node_id(),
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node = desc_rec_,
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span = rec(lo=0u, hi=0u));
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ret @desc_rec;
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}
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fn mk_main(&test_ctxt cx) -> @ast::item {
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auto ret_ty = @rec(node=ast::ty_int,
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span=rec(lo=0u, hi=0u));
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let ast::fn_decl decl = rec(inputs = ~[],
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output = ret_ty,
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purity = ast::impure_fn,
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cf = ast::return,
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constraints = ~[]);
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auto proto = ast::proto_fn;
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auto test_main_call_expr = mk_test_main_call(cx);
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let ast::block_ body_ = rec(stmts = ~[],
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expr = option::some(test_main_call_expr),
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id = cx.next_node_id());
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auto body = rec(node = body_, span = rec(lo=0u, hi=0u));
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auto fn_ = rec(decl = decl,
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proto = proto,
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body = body);
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auto item_ = ast::item_fn(fn_, ~[]);
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let ast::item item = rec(ident = "main",
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attrs = ~[],
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id = cx.next_node_id(),
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node = item_,
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span = rec(lo=0u, hi=0u));
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ret @item;
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}
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fn mk_test_main_call(&test_ctxt cx) -> @ast::expr {
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let ast::path test_path = nospan(rec(idents = ~["tests"],
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types = ~[]));
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let ast::expr_ test_path_expr_ = ast::expr_path(test_path);
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let ast::expr test_path_expr = rec(id = cx.next_node_id(),
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node = test_path_expr_,
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span = rec(lo=0u, hi=0u));
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let ast::expr_ test_call_expr_ = ast::expr_call(@test_path_expr, ~[]);
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let ast::expr test_call_expr = rec(id = cx.next_node_id(),
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node = test_call_expr_,
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span = rec(lo=0u, hi=0u));
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let ast::path test_main_path = nospan(rec(idents = ~["std",
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"test",
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"test_main"],
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types = ~[]));
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let ast::expr_ test_main_path_expr_
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= ast::expr_path(test_main_path);
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let ast::expr test_main_path_expr = rec(id = cx.next_node_id(),
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node = test_main_path_expr_,
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span = rec(lo=0u, hi=0u));
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let ast::expr_ test_main_call_expr_
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= ast::expr_call(@test_main_path_expr, ~[@test_call_expr]);
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let ast::expr test_main_call_expr = rec(id = cx.next_node_id(),
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node = test_main_call_expr_,
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span = rec(lo=0u, hi=0u));
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ret @test_main_call_expr;
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}
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// Local Variables:
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// mode: rust
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// fill-column: 78;
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@ -27,7 +27,7 @@ type test_desc = rec(test_name name,
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// The default console test runner. It accepts the command line
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// arguments and a vector of test_descs (generated at compile time).
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fn test_main(&vec[str] args, &test_desc[] tests) -> int {
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fn test_main(&test_desc[] tests) -> int {
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if (run_tests(tests)) {
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ret 0;
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} else {
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