Test the deque some more.
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@ -39,6 +39,158 @@ fn test_simple() {
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* segfault. */
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}
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fn main() {
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test_simple();
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fn test_boxes(@int a, @int b, @int c, @int d) {
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let deque.t[@int] deq = deque.create[@int]();
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check (deq.size() == 0u);
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deq.add_front(a);
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deq.add_front(b);
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deq.add_back(c);
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check (deq.size() == 3u);
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deq.add_back(d);
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check (deq.size() == 4u);
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check (deq.peek_front() == b);
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check (deq.peek_back() == d);
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check (deq.pop_front() == b);
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check (deq.pop_back() == d);
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check (deq.pop_back() == c);
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check (deq.pop_back() == a);
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/* FIXME (issue #138): Test d.get() once it no longer causes
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* segfault. */
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}
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type eqfn[T] = fn(&T a, &T b) -> bool;
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fn test_parameterized[T](eqfn[T] e, &T a, &T b, &T c, &T d) {
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let deque.t[T] deq = deque.create[T]();
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check (deq.size() == 0u);
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deq.add_front(a);
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deq.add_front(b);
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deq.add_back(c);
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check (deq.size() == 3u);
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deq.add_back(d);
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check (deq.size() == 4u);
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check (e(deq.peek_front(), b));
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check (e(deq.peek_back(), d));
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check (e(deq.pop_front(), b));
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check (e(deq.pop_back(), d));
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check (e(deq.pop_back(), c));
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check (e(deq.pop_back(), a));
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/* FIXME (issue #138): Test d.get() once it no longer causes
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* segfault. */
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}
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type taggy = tag(one(int), two(int, int), three(int, int, int));
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type taggypar[T] = tag(onepar(int),
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twopar(int, int),
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threepar(int, int, int));
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fn main() {
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fn inteq(&int a, &int b) -> bool {
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ret a == b;
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}
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fn intboxeq(&@int a, &@int b) -> bool {
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ret a == b;
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}
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fn taggyeq(&taggy a, &taggy b) -> bool {
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alt (a) {
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case (one(a1)) {
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alt (b) {
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case (one(b1)) { ret a1 == b1; }
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case (_) { ret false; }
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}
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}
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case (two(a1, a2)) {
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alt (b) {
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case (two(b1, b2)) { ret (a1 == b1 && a2 == b2); }
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case (_) { ret false; }
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}
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}
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case (three(a1, a2, a3)) {
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alt (b) {
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case (three(b1, b2, b3)) { ret (a1 == b1 && a2 == b2 && a3 == b3); }
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case (_) { ret false; }
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}
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}
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}
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}
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fn taggypareq[T](&taggypar[T] a, &taggypar[T] b) -> bool {
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alt (a) {
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case (onepar[T](a1)) {
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alt (b) {
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case (onepar[T](b1)) { ret a1 == b1; }
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case (_) { ret false; }
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}
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}
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case (twopar[T](a1, a2)) {
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alt (b) {
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case (twopar[T](b1, b2)) { ret (a1 == b1 && a2 == b2); }
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case (_) { ret false; }
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}
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}
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case (threepar[T](a1, a2, a3)) {
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alt (b) {
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case (threepar[T](b1, b2, b3)) {
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ret (a1 == b1 && a2 == b2 && a3 == b3);
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}
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case (_) { ret false; }
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}
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}
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}
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}
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log "test simple";
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test_simple();
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/*
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* FIXME: Causes "Invalid read of size 4" under valgrind.
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log "test boxes";
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test_boxes(@5, @72, @64, @175);
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*/
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log "test parameterized: int";
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let eqfn[int] eq1 = bind inteq(_, _);
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test_parameterized[int](eq1, 5, 72, 64, 175);
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/*
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* FIXME: Appears to segfault after an upcall_grow_task
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log "test parameterized: @int";
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let eqfn[@int] eq2 = bind intboxeq(_, _);
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test_parameterized[@int](eq2, @5, @72, @64, @175);
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*/
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log "test parameterized: taggy";
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let eqfn[taggy] eq3 = bind taggyeq(_, _);
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test_parameterized[taggy](eq3,
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one(1), two(1, 2), three(1, 2, 3), two(17, 42));
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/*
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* FIXME: Segfault.
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log "test parameterized: taggypar[int]";
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let eqfn[taggypar[int]] eq4 = bind taggypareq[int](_, _);
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test_parameterized[taggypar[int]](eq4,
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onepar[int](1),
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twopar[int](1, 2),
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threepar[int](1, 2, 3),
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twopar[int](17, 42));
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*/
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log "done";
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}
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