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Revert "add scoped vector unit test (#7307)"

This reverts commit 2ae3d87b21.
This commit is contained in:
Nikolaj Bjorner 2024-07-30 11:33:36 -07:00 committed by GitHub
parent 2ae3d87b21
commit 187c2c6cae
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GPG key ID: B5690EEEBB952194
5 changed files with 44 additions and 180 deletions

View file

@ -106,7 +106,6 @@ add_executable(test-z3
sat_lookahead.cpp
sat_user_scope.cpp
scoped_timer.cpp
scoped_vector.cpp
simple_parser.cpp
simplex.cpp
simplifier.cpp

View file

@ -15,6 +15,7 @@ Author:
--*/
#include <cassert>
#include <iostream>
#include "util/dlist.h"
@ -29,28 +30,28 @@ public:
// Test the prev() method
void test_prev() {
TestNode node(1);
SASSERT(node.prev() == &node);
assert(node.prev() == &node);
std::cout << "test_prev passed." << std::endl;
}
// Test the next() method
void test_next() {
TestNode node(1);
SASSERT(node.next() == &node);
assert(node.next() == &node);
std::cout << "test_next passed." << std::endl;
}
// Test the const prev() method
void test_const_prev() {
const TestNode node(1);
SASSERT(node.prev() == &node);
assert(node.prev() == &node);
std::cout << "test_const_prev passed." << std::endl;
}
// Test the const next() method
void test_const_next() {
const TestNode node(1);
SASSERT(node.next() == &node);
assert(node.next() == &node);
std::cout << "test_const_next passed." << std::endl;
}
@ -58,9 +59,9 @@ void test_const_next() {
void test_init() {
TestNode node(1);
node.init(&node);
SASSERT(node.next() == &node);
SASSERT(node.prev() == &node);
SASSERT(node.invariant());
assert(node.next() == &node);
assert(node.prev() == &node);
assert(node.invariant());
std::cout << "test_init passed." << std::endl;
}
@ -70,10 +71,10 @@ void test_pop() {
TestNode node1(1);
TestNode::push_to_front(list, &node1);
TestNode* popped = TestNode::pop(list);
SASSERT(popped == &node1);
SASSERT(list == nullptr);
SASSERT(popped->next() == popped);
SASSERT(popped->prev() == popped);
assert(popped == &node1);
assert(list == nullptr);
assert(popped->next() == popped);
assert(popped->prev() == popped);
std::cout << "test_pop passed." << std::endl;
}
@ -82,12 +83,12 @@ void test_insert_after() {
TestNode node1(1);
TestNode node2(2);
node1.insert_after(&node2);
SASSERT(node1.next() == &node2);
SASSERT(node2.prev() == &node1);
SASSERT(node1.prev() == &node2);
SASSERT(node2.next() == &node1);
SASSERT(node1.invariant());
SASSERT(node2.invariant());
assert(node1.next() == &node2);
assert(node2.prev() == &node1);
assert(node1.prev() == &node2);
assert(node2.next() == &node1);
assert(node1.invariant());
assert(node2.invariant());
std::cout << "test_insert_after passed." << std::endl;
}
@ -96,12 +97,12 @@ void test_insert_before() {
TestNode node1(1);
TestNode node2(2);
node1.insert_before(&node2);
SASSERT(node1.prev() == &node2);
SASSERT(node2.next() == &node1);
SASSERT(node1.next() == &node2);
SASSERT(node2.prev() == &node1);
SASSERT(node1.invariant());
SASSERT(node2.invariant());
assert(node1.prev() == &node2);
assert(node2.next() == &node1);
assert(node1.next() == &node2);
assert(node2.prev() == &node1);
assert(node1.invariant());
assert(node2.invariant());
std::cout << "test_insert_before passed." << std::endl;
}
@ -113,9 +114,11 @@ void test_remove_from() {
TestNode::push_to_front(list, &node1);
TestNode::push_to_front(list, &node2);
TestNode::remove_from(list, &node1);
SASSERT(list == &node2);
SASSERT(node2.next() == &node2);
SASSERT(node2.prev() == &node2);
assert(list == &node2);
assert(node2.next() == &node2);
assert(node2.prev() == &node2);
assert(node1.next() == &node1);
assert(node1.prev() == &node1);
std::cout << "test_remove_from passed." << std::endl;
}
@ -124,9 +127,9 @@ void test_push_to_front() {
TestNode* list = nullptr;
TestNode node1(1);
TestNode::push_to_front(list, &node1);
SASSERT(list == &node1);
SASSERT(node1.next() == &node1);
SASSERT(node1.prev() == &node1);
assert(list == &node1);
assert(node1.next() == &node1);
assert(node1.prev() == &node1);
std::cout << "test_push_to_front passed." << std::endl;
}
@ -134,20 +137,20 @@ void test_push_to_front() {
void test_detach() {
TestNode node(1);
TestNode::detach(&node);
SASSERT(node.next() == &node);
SASSERT(node.prev() == &node);
SASSERT(node.invariant());
assert(node.next() == &node);
assert(node.prev() == &node);
assert(node.invariant());
std::cout << "test_detach passed." << std::endl;
}
// Test the invariant() method
void test_invariant() {
TestNode node1(1);
SASSERT(node1.invariant());
assert(node1.invariant());
TestNode node2(2);
node1.insert_after(&node2);
SASSERT(node1.invariant());
SASSERT(node2.invariant());
assert(node1.invariant());
assert(node2.invariant());
std::cout << "test_invariant passed." << std::endl;
}
@ -158,10 +161,10 @@ void test_contains() {
TestNode node2(2);
TestNode::push_to_front(list, &node1);
TestNode::push_to_front(list, &node2);
SASSERT(TestNode::contains(list, &node1));
SASSERT(TestNode::contains(list, &node2));
assert(TestNode::contains(list, &node1));
assert(TestNode::contains(list, &node2));
TestNode node3(3);
SASSERT(!TestNode::contains(list, &node3));
assert(!TestNode::contains(list, &node3));
std::cout << "test_contains passed." << std::endl;
}

View file

@ -269,5 +269,4 @@ int main(int argc, char ** argv) {
TST(euf_bv_plugin);
TST(euf_arith_plugin);
TST(sls_test);
TST(scoped_vector);
}

View file

@ -1,99 +0,0 @@
#include <iostream>
#include "util/scoped_vector.h"
void test_push_back_and_access() {
scoped_vector<int> sv;
sv.push_back(10);
sv.push_back(20);
SASSERT(sv.size() == 2);
SASSERT(sv[0] == 10);
SASSERT(sv[1] == 20);
std::cout << "test_push_back_and_access passed." << std::endl;
}
void test_scopes() {
scoped_vector<int> sv;
sv.push_back(10);
sv.push_back(20);
sv.push_scope();
sv.push_back(30);
sv.push_back(40);
SASSERT(sv.size() == 4);
SASSERT(sv[2] == 30);
SASSERT(sv[3] == 40);
sv.pop_scope(1);
std::cout << "test_scopes passed." << std::endl;
SASSERT(sv.size() == 2);
SASSERT(sv[0] == 10);
SASSERT(sv[1] == 20);
std::cout << "test_scopes passed." << std::endl;
}
void test_set() {
scoped_vector<int> sv;
sv.push_back(10);
sv.push_back(20);
sv.set(0, 30);
sv.set(1, 40);
SASSERT(sv.size() == 2);
SASSERT(sv[0] == 30);
SASSERT(sv[1] == 40);
sv.push_scope();
sv.set(0, 50);
SASSERT(sv[0] == 50);
sv.pop_scope(1);
SASSERT(sv[0] == 30);
std::cout << "test_set passed." << std::endl;
}
void test_pop_back() {
scoped_vector<int> sv;
sv.push_back(10);
sv.push_back(20);
SASSERT(sv.size() == 2);
sv.pop_back();
SASSERT(sv.size() == 1);
SASSERT(sv[0] == 10);
sv.pop_back();
SASSERT(sv.size() == 0);
std::cout << "test_pop_back passed." << std::endl;
}
void test_erase_and_swap() {
scoped_vector<int> sv;
sv.push_back(10);
sv.push_back(20);
sv.push_back(30);
sv.erase_and_swap(1);
SASSERT(sv.size() == 2);
SASSERT(sv[0] == 10);
SASSERT(sv[1] == 30);
std::cout << "test_erase_and_swap passed." << std::endl;
}
void tst_scoped_vector() {
test_push_back_and_access();
test_scopes();
test_set();
test_pop_back();
test_erase_and_swap();
std::cout << "All tests passed." << std::endl;
}

View file

@ -176,46 +176,8 @@ private:
}
bool invariant() const {
if (!(m_size <= m_elems.size() && m_elems_start <= m_elems.size()))
return false;
// Check that source and destination trails have the same length.
if (m_src.size() != m_dst.size())
return false;
// The size of m_src, m_dst, and m_src_lim should be consistent with the scope stack.
if (m_src_lim.size() != m_sizes.size() || m_src.size() != m_dst.size())
return false;
// m_elems_lim stores the past sizes of m_elems for each scope. Each element in m_elems_lim should be
// within bounds and in non-decreasing order.
for (unsigned i = 1; i < m_elems_lim.size(); ++i) {
if (m_elems_lim[i - 1] > m_elems_lim[i]) return false;
}
// m_sizes tracks the size of the vector at each scope level.
// Each element in m_sizes should be non-decreasing and within the size of m_elems.
for (unsigned i = 1; i < m_sizes.size(); ++i) {
if (m_sizes[i - 1] > m_sizes[i])
return false;
}
// The m_src and m_dst vectors should have the same size and should contain valid indices.
if (m_src.size() != m_dst.size()) return false;
for (unsigned i = 0; i < m_src.size(); ++i) {
if (m_src[i] >= m_index.size() || m_dst[i] >= m_elems.size()) return false;
}
// The size of m_src_lim should be less than or equal to the size of m_sizes and store valid indices.
if (m_src_lim.size() > m_sizes.size()) return false;
for (unsigned elem : m_src_lim) {
if (elem > m_src.size()) return false;
}
return true;
return
m_size <= m_elems.size() &&
m_elems_start <= m_elems.size();
}
};