Files
rdkit/Code/RDGeneral/testDict.cpp
Paolo Tosco c08ea49bda - enable building DLLs on Windows (#1861)
* - enable building DLLs on Windows

* - export.h and test.h are now auto-generated by CMake
2018-05-16 08:42:41 +02:00

732 lines
19 KiB
C++

//
// Copyright 2001-2008 Randal M. Henne, Greg Landrum and
// Rational Discovery LLC
//
// @@ All Rights Reserved @@
// This file is part of the RDKit.
// The contents are covered by the terms of the BSD license
// which is included in the file license.txt, found at the root
// of the RDKit source tree.
//
//
#include <RDBoost/test.h>
#include "types.h"
#include <RDGeneral/Invariant.h>
#include <RDGeneral/RDAny.h>
#include <RDGeneral/Dict.h>
#include <RDGeneral/RDLog.h>
#include <RDGeneral/utils.h>
#include <boost/shared_ptr.hpp>
#include <vector>
#include <ctime>
using namespace RDKit;
using namespace std;
struct Foo {
int bar;
float baz;
~Foo() { std::cerr << "deleted!" << std::endl; }
};
void testGithub940() {
BOOST_LOG(rdErrorLog)
<< "Testing Github940: property dictionaries leaking memory" << std::endl;
// a couple small tests to check for memory leaks. Only useful with valgrind
{ // tests computed props
STR_VECT computed;
auto *d = new Dict();
d->setVal(RDKit::detail::computedPropName, computed);
computed.push_back("foo");
d->setVal(RDKit::detail::computedPropName, computed);
delete d;
}
{ // tests computed props
STR_VECT computed;
auto *d = new Dict();
d->setVal(RDKit::detail::computedPropName, computed);
computed.push_back("foo");
d->setVal(RDKit::detail::computedPropName, computed);
d->clearVal(RDKit::detail::computedPropName);
delete d;
}
BOOST_LOG(rdErrorLog) << "\tdone" << std::endl;
}
void testRDAny() {
std::cerr << "Testing RDValue" << std::endl;
{ RDAny v(-2147450880); }
{
int vi = 0;
RDValue v(0);
for (int i = 0; i < 100; ++i) {
vi += i;
v = rdvalue_cast<int>(v) + i;
TEST_ASSERT(vi == rdvalue_cast<int>(v));
}
}
std::cerr << "Testing RDAny" << std::endl;
{
RDAny a(1);
RDAny b = a;
TEST_ASSERT(rdany_cast<int>(a) == 1);
TEST_ASSERT(rdany_cast<int>(b) == 1);
}
{
RDAny a(1);
RDAny b = a;
TEST_ASSERT(rdany_cast<int>(a) == 1);
TEST_ASSERT(rdany_cast<int>(b) == rdany_cast<int>(a));
std::map<std::string, RDAny> foo;
foo["foo"] = a;
foo["bar"] = std::string("This is a test");
TEST_ASSERT(rdany_cast<int>(foo["foo"]) == 1);
TEST_ASSERT(rdany_cast<int>(foo["foo"]) == rdany_cast<int>(a));
TEST_ASSERT(rdany_cast<std::string>(foo["bar"]) == "This is a test");
}
{
bool a = true;
RDValue v(a);
TEST_ASSERT(rdvalue_cast<bool>(v) == true);
v = (int)10;
TEST_ASSERT(rdvalue_cast<int>(v) == 10);
}
{
Dict d;
bool a = true;
d.setVal("foo", a);
d.getVal<bool>("foo");
}
{ // tests computed props
STR_VECT computed;
Dict d;
d.setVal(RDKit::detail::computedPropName, computed);
computed.push_back("foo");
d.setVal(RDKit::detail::computedPropName, computed);
STR_VECT computed2 = d.getVal<STR_VECT>(RDKit::detail::computedPropName);
TEST_ASSERT(computed2[0] == "foo");
Dict d2(d);
computed2 = d2.getVal<STR_VECT>(RDKit::detail::computedPropName);
TEST_ASSERT(computed2[0] == "foo");
}
{
Dict d;
// int v=1;
// d.setVal("foo", v);
// TEST_ASSERT(d.getVal<int>("foo") == 1, "bad getval");
std::vector<int> fooV;
fooV.resize(3);
fooV[0] = 1;
fooV[1] = 2;
fooV[2] = 3;
if (0) {
std::vector<int> fooV2;
std::cerr << "send int vect" << std::endl;
RDAny a(fooV);
std::cerr << "retrieve int vect" << std::endl;
fooV2 = rdany_cast<std::vector<int>>(a);
TEST_ASSERT(fooV == fooV2);
}
{
std::vector<int> fooV2;
std::cerr << "dict set int vect" << std::endl;
d.setVal("bar", fooV);
std::cerr << "dict get int vect" << std::endl;
d.getVal("bar", fooV2);
TEST_ASSERT(fooV == fooV2);
}
}
{
std::vector<int> v;
for (int i = 0; i < 4; ++i) v.push_back(i);
RDAny foo(v);
RDAny bar = foo;
RDAny baz(foo);
for (int i = 0; i < 4; ++i) {
TEST_ASSERT(rdany_cast<std::vector<int>>(foo)[i] == i);
TEST_ASSERT(rdany_cast<std::vector<int>>(bar)[i] == i);
TEST_ASSERT(rdany_cast<std::vector<int>>(baz)[i] == i);
}
}
{
std::vector<double> v;
for (double i = 0; i < 4; ++i) v.push_back(i);
RDAny foo(v);
for (int i = 0; i < 4; ++i) {
TEST_ASSERT(rdany_cast<std::vector<double>>(foo)[i] == i);
}
RDAny b = foo;
for (int i = 0; i < 4; ++i) {
TEST_ASSERT(rdany_cast<std::vector<double>>(b)[i] == i);
}
}
const int loops = 10000000;
{
std::clock_t clock1 = std::clock();
boost::any v;
for (int i = 0; i < loops; ++i) {
v = i;
}
std::clock_t clock2 = std::clock();
std::cout << "static boost any:"
<< (double)(clock2 - clock1) / CLOCKS_PER_SEC << " s"
<< std::endl;
}
{
std::clock_t clock1 = std::clock();
boost::any *v = nullptr, *vv;
for (int i = 0; i < loops; ++i) {
vv = new boost::any(v ? boost::any_cast<int>(*v) + i : i);
delete v;
v = vv;
}
delete vv;
std::clock_t clock2 = std::clock();
std::cout << "dynamic boost any:"
<< (double)(clock2 - clock1) / CLOCKS_PER_SEC << " s"
<< std::endl;
}
{
std::clock_t clock1 = std::clock();
RDAny v;
for (int i = 0; i < loops; ++i) {
v = i;
}
std::clock_t clock2 = std::clock();
std::cout << "static RDAny:" << (double)(clock2 - clock1) / CLOCKS_PER_SEC
<< " s" << std::endl;
}
{
std::clock_t clock1 = std::clock();
RDAny *v = nullptr, *vv;
for (int i = 0; i < loops; ++i) {
vv = new RDAny(v ? rdany_cast<int>(*v) + i : i);
delete v;
v = vv;
}
delete vv;
std::clock_t clock2 = std::clock();
std::cout << "dynamic RDAny:" << (double)(clock2 - clock1) / CLOCKS_PER_SEC
<< " s" << std::endl;
}
{
std::clock_t clock1 = std::clock();
RDValue v;
for (int i = 0; i < loops; ++i) {
v = i;
}
std::clock_t clock2 = std::clock();
std::cout << "static RDValue:" << (double)(clock2 - clock1) / CLOCKS_PER_SEC
<< " s" << std::endl;
}
{
std::clock_t clock1 = std::clock();
RDValue v(0);
for (int i = 0; i < loops; ++i) {
v = RDValue(rdvalue_cast<int>(v) + i);
}
std::clock_t clock2 = std::clock();
std::cout << "dynamic RDValue:"
<< (double)(clock2 - clock1) / CLOCKS_PER_SEC << " s"
<< std::endl;
}
{ // checks replacement with vector
RDAny vv(2.0);
TEST_ASSERT(rdany_cast<double>(vv) == 2.0);
std::vector<int> vect;
vect.push_back(1);
vv = vect;
TEST_ASSERT(rdany_cast<std::vector<int>>(vv)[0] == 1);
// tests copy
RDAny vvv(vv);
TEST_ASSERT(rdany_cast<std::vector<int>>(vvv)[0] == 1);
}
{
// Checks fallback to Any
std::vector<std::pair<int, int>> pvect;
pvect.push_back(std::make_pair<int, int>(2, 2));
boost::any any1(pvect);
boost::any_cast<std::vector<std::pair<int, int>>>(any1);
boost::any_cast<std::vector<std::pair<int, int>> &>(any1);
boost::any_cast<const std::vector<std::pair<int, int>> &>(any1);
RDAny vv(pvect);
boost::any &any = rdany_cast<boost::any &>(vv);
boost::any_cast<std::vector<std::pair<int, int>>>(any);
boost::any_cast<std::vector<std::pair<int, int>> &>(any);
boost::any_cast<const std::vector<std::pair<int, int>> &>(any);
const std::vector<std::pair<int, int>> &pv =
rdany_cast<std::vector<std::pair<int, int>>>(vv);
TEST_ASSERT(pv[0].first == 2);
RDAny vvv(vv);
TEST_ASSERT(
(rdany_cast<std::vector<std::pair<int, int>>>(vvv)[0].first == 2));
}
{
// Check pointers -- RDAny doesn't delete these, must do them manually
auto *p = new std::vector<int>();
p->push_back(100);
RDAny v(p);
RDAny vv(v);
try {
rdany_cast<std::vector<int>>(v);
#ifndef UNSAFE_RDVALUE
PRECONDITION(0, "Should throw bad cast");
#endif
} catch (boost::bad_any_cast &e) {
}
TEST_ASSERT((*rdany_cast<std::vector<int> *>(vv))[0] == 100);
TEST_ASSERT((*rdany_cast<std::vector<int> *>((const RDAny &)vv))[0] == 100);
delete p;
auto *m = new std::map<int, int>();
(*m)[0] = 1;
RDAny mv(m);
// leaks
std::map<int, int> *anym = rdany_cast<std::map<int, int> *>(mv);
TEST_ASSERT(anym->find(0) != anym->end());
delete anym;
}
{
// check shared ptrs -- boost::any deletes these :)
typedef boost::shared_ptr<std::vector<int>> vptr;
vptr p(new std::vector<int>());
p->push_back(100);
RDAny v(p);
RDAny vv(v);
TEST_ASSERT((*rdany_cast<vptr>(v))[0] == 100);
TEST_ASSERT((*rdany_cast<vptr>(vv))[0] == 100);
TEST_ASSERT((*rdany_cast<vptr>((const RDAny &)vv))[0] == 100);
typedef boost::shared_ptr<std::map<int, int>> mptr;
mptr m(new std::map<int, int>());
(*m)[0] = 1;
RDAny mv(m);
// leaks
mptr anym = rdany_cast<mptr>(mv);
TEST_ASSERT(anym->find(0) != anym->end());
RDAny any3(boost::shared_ptr<Foo>(new Foo));
TEST_ASSERT(any3.m_value.getTag() == RDTypeTag::AnyTag);
}
}
class DictCon {
public:
DictCon() { d.reset(); };
DictCon(const DictCon &other) { d = other.d; };
DictCon &operator=(const DictCon &other) {
d = other.d;
return *this;
};
Dict *getDict() { return &d; };
private:
Dict d;
};
void testStringVals() {
BOOST_LOG(rdErrorLog) << "-------------------------------------" << std::endl;
BOOST_LOG(rdErrorLog) << "Testing String Pickle Roundtrips." << std::endl;
{
Dict d;
std::string sv;
sv = "1";
d.setVal("foo", sv);
int iv;
d.getVal("foo", iv);
TEST_ASSERT(iv == 1);
}
{
Dict d;
d.setVal("foo", "1");
int iv;
d.getVal("foo", iv);
TEST_ASSERT(iv == 1);
}
{
Dict d;
std::string sv;
sv = "1.3";
d.setVal("foo", sv);
double dv;
d.getVal("foo", dv);
TEST_ASSERT(feq(dv, 1.3));
}
BOOST_LOG(rdErrorLog) << "\tdone" << std::endl;
}
void testVectToString() {
BOOST_LOG(rdErrorLog) << "-------------------------------------" << std::endl;
BOOST_LOG(rdErrorLog) << "Testing conversion of vect to string." << std::endl;
{
Dict d;
std::vector<int> v;
v.push_back(1);
v.push_back(0);
d.setVal("foo", v);
std::string sv;
d.getVal("foo", sv);
TEST_ASSERT(sv == "[1,0,]");
}
{
Dict d;
std::vector<unsigned int> v;
v.push_back(1);
v.push_back(0);
d.setVal("foo", v);
std::string sv;
d.getVal("foo", sv);
TEST_ASSERT(sv == "[1,0,]");
}
{
Dict d;
std::vector<double> v;
v.push_back(1.2);
v.push_back(0);
d.setVal("foo", v);
std::string sv;
d.getVal("foo", sv);
std::cerr << sv << std::endl;
TEST_ASSERT(sv == "[1.2,0,]");
}
{
Dict d;
std::vector<float> v;
v.push_back(10001.f);
v.push_back(0);
d.setVal("foo", v);
std::string sv;
d.getVal("foo", sv);
std::cerr << sv << std::endl;
TEST_ASSERT(sv == "[10001,0,]");
}
BOOST_LOG(rdErrorLog) << "\tdone" << std::endl;
}
void testConstReturns() {
BOOST_LOG(rdErrorLog) << "-------------------------------------" << std::endl;
BOOST_LOG(rdErrorLog) << "Testing returning const references." << std::endl;
{
std::string v = "foo";
RDAny anyv(v);
std::string tgt = rdany_cast<std::string>(anyv);
const std::string &ctgt = rdany_cast<std::string>(anyv);
TEST_ASSERT(ctgt != "");
}
{
Dict d;
std::string v = "foo";
d.setVal("foo", v);
// const std::string nv=d.getVal<const std::string &>("foo");
std::string nv = d.getVal<std::string>("foo");
TEST_ASSERT(nv == "foo");
}
#if 0
{
Dict d;
std::string v="foo";
d.setVal("foo",v);
double ls=0;
BOOST_LOG(rdErrorLog) << "copy" << std::endl;
for(int i=0;i<100000000;++i){
std::string nv=d.getVal<std::string>("foo");
ls+= nv.size();
}
BOOST_LOG(rdErrorLog) << "done: "<<ls << std::endl;
ls=0;
BOOST_LOG(rdErrorLog) << "ref" << std::endl;
for(int i=0;i<100000000;++i){
const std::string &nv=d.getVal<std::string>("foo");
ls+= nv.size();
}
BOOST_LOG(rdErrorLog) << "done: "<<ls << std::endl;
//std::string nv=d.getVal<std::string>("foo");
}
#else
{
// int nreps=100000000;
int nreps = 100000;
Dict d;
std::string v = "foo";
RDAny anyv(v);
d.setVal("foo", v);
std::clock_t start, end;
double ls = 0;
BOOST_LOG(rdErrorLog) << "any cast" << std::endl;
start = std::clock();
for (int i = 0; i < nreps; ++i) {
const std::string &nv = rdany_cast<std::string>(anyv);
ls += nv.size();
}
end = std::clock();
BOOST_LOG(rdErrorLog) << "done: "
<< (end - start) / (double)(CLOCKS_PER_SEC) << " "
<< ls << std::endl;
ls = 0;
BOOST_LOG(rdErrorLog) << "copy" << std::endl;
start = std::clock();
for (int i = 0; i < nreps; ++i) {
std::string nv = rdany_cast<std::string>(anyv);
ls += nv.size();
}
end = std::clock();
BOOST_LOG(rdErrorLog) << "done: "
<< (end - start) / (double)(CLOCKS_PER_SEC) << " "
<< ls << std::endl;
ls = 0;
BOOST_LOG(rdErrorLog) << "ref" << std::endl;
start = std::clock();
for (int i = 0; i < nreps; ++i) {
const std::string &nv = rdany_cast<std::string>(anyv);
ls += nv.size();
}
end = std::clock();
BOOST_LOG(rdErrorLog) << "done: "
<< (end - start) / (double)(CLOCKS_PER_SEC) << " "
<< ls << std::endl;
ls = 0;
BOOST_LOG(rdErrorLog) << "dict" << std::endl;
start = std::clock();
for (int i = 0; i < nreps; ++i) {
const std::string &nv = d.getVal<std::string>("foo");
ls += nv.size();
}
end = std::clock();
BOOST_LOG(rdErrorLog) << "done: "
<< (end - start) / (double)(CLOCKS_PER_SEC) << " "
<< ls << std::endl;
ls = 0;
BOOST_LOG(rdErrorLog) << "ref with hasVal" << std::endl;
start = std::clock();
std::string k = "foo";
for (int i = 0; i < nreps; ++i) {
if (d.hasVal(k)) {
const std::string &nv = rdany_cast<std::string>(anyv);
ls += nv.size();
}
}
end = std::clock();
BOOST_LOG(rdErrorLog) << "done: "
<< (end - start) / (double)(CLOCKS_PER_SEC) << " "
<< ls << std::endl;
// std::string nv=d.getVal<std::string>("foo");
}
#endif
BOOST_LOG(rdErrorLog) << "\tdone" << std::endl;
}
void testUpdate() {
BOOST_LOG(rdErrorLog) << "-------------------------------------" << std::endl;
BOOST_LOG(rdErrorLog) << "Testing dict update." << std::endl;
{
Dict d;
std::string sv;
sv = "1.3";
d.setVal("foo", sv);
double dv = 3.0;
d.setVal("foo2", dv);
std::vector<int> f;
f.push_back(1);
f.push_back(2);
d.setVal("foo3", f);
Dict d2;
d2.update(d);
TEST_ASSERT(d.getVal<std::string>("foo") == d2.getVal<std::string>("foo"));
TEST_ASSERT(d.getVal<double>("foo2") == d2.getVal<double>("foo2"));
TEST_ASSERT(d.getVal<std::vector<int>>("foo3") ==
d2.getVal<std::vector<int>>("foo3"));
}
{ // a few tests to make sure copying/updating with nonPOD data is ok
Dict d;
std::string sv;
sv = "1.3";
d.setVal("foo", sv);
double dv = 3.0;
d.setVal("foo2", dv);
std::vector<int> f;
f.push_back(1);
f.push_back(2);
d.setVal("foo3", f);
{
Dict d2;
d2.setVal("foo", 1);
d2.update(d, true);
TEST_ASSERT(d2.getVal<std::string>("foo") == "1.3");
TEST_ASSERT(d.getVal<double>("foo2") == d2.getVal<double>("foo2"));
TEST_ASSERT(d.getVal<std::vector<int>>("foo3") ==
d2.getVal<std::vector<int>>("foo3"));
}
{
Dict d2 = d;
d2.setVal("foo", 1);
TEST_ASSERT(1 == d2.getVal<int>("foo"));
TEST_ASSERT(d.getVal<double>("foo2") == d2.getVal<double>("foo2"));
TEST_ASSERT(d.getVal<std::vector<int>>("foo3") ==
d2.getVal<std::vector<int>>("foo3"));
}
{
Dict d2(d);
TEST_ASSERT(d.getVal<double>("foo2") == d2.getVal<double>("foo2"));
TEST_ASSERT(d.getVal<std::vector<int>>("foo3") ==
d2.getVal<std::vector<int>>("foo3"));
}
}
BOOST_LOG(rdErrorLog) << "\tdone" << std::endl;
}
int main() {
RDLog::InitLogs();
testGithub940();
#if 1
testRDAny();
Dict d;
INT_VECT fooV;
fooV.resize(3);
BOOST_LOG(rdInfoLog) << "dict test" << std::endl;
TEST_ASSERT(!d.hasVal("foo"));
int x = 1;
d.setVal("foo", x);
TEST_ASSERT(d.hasVal("foo"));
TEST_ASSERT(!d.hasVal("bar"));
int v, v2;
d.getVal("foo", v);
TEST_ASSERT(v == 1);
v2 = d.getVal<int>("foo");
TEST_ASSERT(v2 == v);
d.setVal("bar", fooV);
d.getVal("foo", v);
TEST_ASSERT(v == 1);
v2 = d.getVal<int>("foo");
TEST_ASSERT(v2 == v);
INT_VECT fooV2, fooV3;
d.getVal("bar", fooV2);
fooV3 = d.getVal<INT_VECT>("bar");
TEST_ASSERT(fooV == fooV2);
TEST_ASSERT(fooV2 == fooV3);
VECT_INT_VECT fooV4;
fooV4.resize(3);
TEST_ASSERT(!d.hasVal("baz"));
d.setVal("baz", fooV4);
TEST_ASSERT(d.hasVal("baz"));
DictCon dc1;
TEST_ASSERT(!dc1.getDict()->hasVal("foo"));
int y = 1;
dc1.getDict()->setVal("foo", y);
TEST_ASSERT(dc1.getDict()->hasVal("foo"));
TEST_ASSERT(!dc1.getDict()->hasVal("bar"));
dc1.getDict()->setVal("bar", fooV);
dc1.getDict()->getVal("foo", v);
TEST_ASSERT(v == 1);
dc1.getDict()->getVal("bar", fooV2);
TEST_ASSERT(fooV == fooV2);
fooV4.resize(3);
TEST_ASSERT(!dc1.getDict()->hasVal("baz"));
dc1.getDict()->setVal("baz", fooV4);
TEST_ASSERT(dc1.getDict()->hasVal("baz"));
dc1.getDict()->reset();
DictCon dc2 = dc1;
TEST_ASSERT(!dc2.getDict()->hasVal("foo"));
int z = 1;
dc2.getDict()->setVal("foo", z);
TEST_ASSERT(dc2.getDict()->hasVal("foo"));
TEST_ASSERT(!dc2.getDict()->hasVal("bar"));
dc2.getDict()->setVal("bar", fooV);
dc2.getDict()->getVal("foo", v);
TEST_ASSERT(v == 1);
dc2.getDict()->getVal("bar", fooV2);
TEST_ASSERT(fooV == fooV2);
fooV4.resize(3);
TEST_ASSERT(!dc2.getDict()->hasVal("baz"));
dc2.getDict()->setVal("baz", fooV4);
TEST_ASSERT(dc2.getDict()->hasVal("baz"));
DictCon dc3(dc2);
TEST_ASSERT(dc3.getDict()->hasVal("foo"));
dc3.getDict()->getVal("foo", v);
TEST_ASSERT(v == 1);
dc3.getDict()->getVal("bar", fooV2);
TEST_ASSERT(fooV == fooV2);
fooV4.resize(3);
TEST_ASSERT(dc3.getDict()->hasVal("baz"));
TEST_ASSERT(dc3.getDict()->hasVal("foo"));
dc3.getDict()->getVal("foo", v);
TEST_ASSERT(v == 1);
dc3.getDict()->getVal("bar", fooV2);
TEST_ASSERT(fooV == fooV2);
fooV4.resize(3);
TEST_ASSERT(dc3.getDict()->hasVal("baz"));
testStringVals();
testVectToString();
#endif
testConstReturns();
testUpdate();
return 0;
}