Merge branch 'master' into cpp17-hexadecimal-floating-literals

This commit is contained in:
William S Fulton 2019-02-15 18:57:25 +00:00 • committed by GitHub
commit b0f105fa9f
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113 changed files with 1848 additions and 295 deletions

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@ -576,7 +576,7 @@ CPP11_TEST_CASES += \
cpp11_initializer_list \
cpp11_initializer_list_extend \
cpp11_lambda_functions \
cpp11_li_std_array \
cpp11_std_array \
cpp11_noexcept \
cpp11_null_pointer_constant \
cpp11_raw_string_literals \

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@ -1,4 +1,4 @@
%module cpp11_li_std_array
%module cpp11_std_array
#if defined(SWIGPYTHON) || defined(SWIGRUBY) || defined(SWIGJAVA) || defined(SWIGCSHARP)

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@ -1,5 +1,7 @@
%module cpp11_std_unordered_map
%include <std_string.i>
%include <std_unordered_map.i>
%template(UnorderedMapIntInt) std::unordered_map<int, int>;
%template(UnorderedMapStringInt) std::unordered_map<std::string, int>;

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@ -1,5 +1,7 @@
%module cpp11_std_unordered_set
%include <std_string.i>
%include <std_unordered_set.i>
%template(UnorderedSetInt) std::unordered_set<int>;
%template(UnorderedSetString) std::unordered_set<std::string>;

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@ -1,8 +1,8 @@
// This test tests all the methods in the C# collection wrapper
using System;
using cpp11_li_std_arrayNamespace;
using cpp11_std_arrayNamespace;
public class cpp11_li_std_array_runme
public class cpp11_std_array_runme
{
private static ArrayInt6 ToArray6(int[] a)
{
@ -37,24 +37,24 @@ public class cpp11_li_std_array_runme
compareContainers(ai, vals);
// Check return
compareContainers(cpp11_li_std_array.arrayOutVal(), new int[] { -2, -1, 0, 0, 1, 2 });
compareContainers(cpp11_li_std_array.arrayOutConstRef(), new int[] { -2, -1, 0, 0, 1, 2 });
compareContainers(cpp11_li_std_array.arrayOutRef(), new int[] { -2, -1, 0, 0, 1, 2 });
compareContainers(cpp11_li_std_array.arrayOutPtr(), new int[] { -2, -1, 0, 0, 1, 2 });
compareContainers(cpp11_std_array.arrayOutVal(), new int[] { -2, -1, 0, 0, 1, 2 });
compareContainers(cpp11_std_array.arrayOutConstRef(), new int[] { -2, -1, 0, 0, 1, 2 });
compareContainers(cpp11_std_array.arrayOutRef(), new int[] { -2, -1, 0, 0, 1, 2 });
compareContainers(cpp11_std_array.arrayOutPtr(), new int[] { -2, -1, 0, 0, 1, 2 });
// Check passing arguments
ai = cpp11_li_std_array.arrayInVal(ToArray6(new int[] { 9, 8, 7, 6, 5, 4 }));
ai = cpp11_std_array.arrayInVal(ToArray6(new int[] { 9, 8, 7, 6, 5, 4 }));
compareContainers(ai, new int[] { 90, 80, 70, 60, 50, 40 });
ai = cpp11_li_std_array.arrayInConstRef(ToArray6(new int[] { 9, 8, 7, 6, 5, 4 }));
ai = cpp11_std_array.arrayInConstRef(ToArray6(new int[] { 9, 8, 7, 6, 5, 4 }));
compareContainers(ai, new int[] { 90, 80, 70, 60, 50, 40 });
ai = new ArrayInt6(ToArray6(new int[] { 9, 8, 7, 6, 5, 4 }));
cpp11_li_std_array.arrayInRef(ai);
cpp11_std_array.arrayInRef(ai);
compareContainers(ai, new int[] { 90, 80, 70, 60, 50, 40 });
ai = new ArrayInt6(ToArray6(new int[] { 9, 8, 7, 6, 5, 4 }));
cpp11_li_std_array.arrayInPtr(ai);
cpp11_std_array.arrayInPtr(ai);
compareContainers(ai, new int[] { 90, 80, 70, 60, 50, 40 });
// fill

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@ -44,6 +44,8 @@ CPP_TEST_CASES = \
java_typemaps_proxy \
java_typemaps_typewrapper \
li_std_list \
li_std_map \
li_std_set \
# li_boost_intrusive_ptr
CPP11_TEST_CASES = \
@ -51,6 +53,8 @@ CPP11_TEST_CASES = \
cpp11_shared_ptr_nullptr_in_containers \
cpp11_shared_ptr_overload \
cpp11_shared_ptr_upcast \
cpp11_std_unordered_map \
cpp11_std_unordered_set \
cpp11_strongly_typed_enumerations_simple \
DOXYGEN_TEST_CASES := \

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@ -1,10 +1,10 @@
import cpp11_li_std_array.*;
import cpp11_std_array.*;
public class cpp11_li_std_array_runme {
public class cpp11_std_array_runme {
static {
try {
System.loadLibrary("cpp11_li_std_array");
System.loadLibrary("cpp11_std_array");
} catch (UnsatisfiedLinkError e) {
System.err.println("Native code library failed to load. See the chapter on Dynamic Linking Problems in the SWIG Java documentation for help.\n" + e);
System.exit(1);
@ -43,24 +43,24 @@ public class cpp11_li_std_array_runme {
compareContainers(ai, vals);
// Check return
compareContainers(cpp11_li_std_array.arrayOutVal(), new int[] {-2, -1, 0, 0, 1, 2});
compareContainers(cpp11_li_std_array.arrayOutConstRef(), new int[] {-2, -1, 0, 0, 1, 2});
compareContainers(cpp11_li_std_array.arrayOutRef(), new int[] {-2, -1, 0, 0, 1, 2});
compareContainers(cpp11_li_std_array.arrayOutPtr(), new int[] {-2, -1, 0, 0, 1, 2});
compareContainers(cpp11_std_array.arrayOutVal(), new int[] {-2, -1, 0, 0, 1, 2});
compareContainers(cpp11_std_array.arrayOutConstRef(), new int[] {-2, -1, 0, 0, 1, 2});
compareContainers(cpp11_std_array.arrayOutRef(), new int[] {-2, -1, 0, 0, 1, 2});
compareContainers(cpp11_std_array.arrayOutPtr(), new int[] {-2, -1, 0, 0, 1, 2});
// Check passing arguments
ai = cpp11_li_std_array.arrayInVal(ToArray6(new int[] {9, 8, 7, 6, 5, 4}));
ai = cpp11_std_array.arrayInVal(ToArray6(new int[] {9, 8, 7, 6, 5, 4}));
compareContainers(ai, new int[] {90, 80, 70, 60, 50, 40});
ai = cpp11_li_std_array.arrayInConstRef(ToArray6(new int[] {9, 8, 7, 6, 5, 4}));
ai = cpp11_std_array.arrayInConstRef(ToArray6(new int[] {9, 8, 7, 6, 5, 4}));
compareContainers(ai, new int[] {90, 80, 70, 60, 50, 40});
ai = new ArrayInt6(ToArray6(new int[] {9, 8, 7, 6, 5, 4}));
cpp11_li_std_array.arrayInRef(ai);
cpp11_std_array.arrayInRef(ai);
compareContainers(ai, new int[] {90, 80, 70, 60, 50, 40});
ai = new ArrayInt6(ToArray6(new int[] {9, 8, 7, 6, 5, 4}));
cpp11_li_std_array.arrayInPtr(ai);
cpp11_std_array.arrayInPtr(ai);
compareContainers(ai, new int[] {90, 80, 70, 60, 50, 40});
// fill

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@ -0,0 +1,122 @@
import cpp11_std_unordered_map.*;
public class cpp11_std_unordered_map_runme {
static {
try {
System.loadLibrary("cpp11_std_unordered_map");
} catch (UnsatisfiedLinkError e) {
System.err.println("Native code library failed to load. See the chapter on Dynamic Linking Problems in the SWIG Java documentation for help.\n" + e);
System.exit(1);
}
}
public static void checkThat(boolean mustBeTrue) throws Throwable {
if (!mustBeTrue) {
// Index [2], since this function is one hop away from main, and [1] is the current method.
throw new RuntimeException("Test failed at line number " + Thread.currentThread().getStackTrace()[2].getLineNumber());
}
}
public static void main(String argv[]) throws Throwable
{
java.util.AbstractMap<String, Integer> sim = new UnorderedMapStringInt();
java.util.AbstractMap<Integer, Integer> iim = new UnorderedMapIntInt();
checkThat(sim.isEmpty());
checkThat(iim.isEmpty());
checkThat(sim.size() == 0);
checkThat(iim.size() == 0);
checkThat(sim.get("key") == null);
checkThat(iim.get(1) == null);
checkThat(!sim.containsKey("key"));
checkThat(!iim.containsKey(1));
checkThat(sim.put("key", 2) == null);
checkThat(iim.put(1, 2) == null);
checkThat(sim.size() == 1);
checkThat(iim.size() == 1);
checkThat(!sim.isEmpty());
checkThat(!iim.isEmpty());
checkThat(sim.get("key") == 2);
checkThat(iim.get(1) == 2);
checkThat(sim.remove("key") == 2);
checkThat(iim.remove(1) == 2);
checkThat(sim.isEmpty());
checkThat(iim.isEmpty());
checkThat(sim.size() == 0);
checkThat(iim.size() == 0);
checkThat(sim.get("key") == null);
checkThat(iim.get(1) == null);
checkThat(sim.remove("key") == null);
checkThat(iim.remove(1) == null);
checkThat(sim.put("key", 2) == null);
checkThat(iim.put(1, 2) == null);
sim.clear();
iim.clear();
checkThat(sim.isEmpty());
checkThat(iim.isEmpty());
checkThat(sim.put("key1", 1) == null);
checkThat(iim.put(1, 1) == null);
checkThat(sim.put("key2", 2) == null);
checkThat(iim.put(2, 2) == null);
checkThat(sim.size() == 2);
checkThat(iim.size() == 2);
checkThat(sim.get("key1") == 1);
checkThat(iim.get(1) == 1);
checkThat(sim.get("key2") == 2);
checkThat(iim.get(2) == 2);
checkThat(sim.put("key1", 3) == 1);
checkThat(iim.put(1, 3) == 1);
checkThat(sim.size() == 2);
checkThat(iim.size() == 2);
checkThat(sim.get("key1") == 3);
checkThat(iim.get(1) == 3);
java.util.Set<java.util.Map.Entry<String, Integer>> sim_es = sim.entrySet();
java.util.Map<String, Integer> sim_default = new java.util.HashMap<String, Integer>();
sim_default.put("key1", 3);
sim_default.put("key2", 2);
java.util.Set<java.util.Map.Entry<String, Integer>> sim_es_default = sim_default.entrySet();
checkThat(sim_es.size() == sim_es_default.size());
for (java.util.Map.Entry<String, Integer> entry : sim_es) {
checkThat(sim_es_default.contains(entry));
checkThat(sim_default.containsKey(entry.getKey()));
checkThat(sim_default.containsValue(entry.getValue()));
Integer oldValue = entry.getValue();
entry.setValue(oldValue + 1);
checkThat(sim.get(entry.getKey()) == (oldValue + 1));
}
java.util.Set<java.util.Map.Entry<Integer, Integer>> iim_es = iim.entrySet();
java.util.Map<Integer, Integer> iim_default = new java.util.HashMap<Integer, Integer>();
iim_default.put(1, 3);
iim_default.put(2, 2);
java.util.Set<java.util.Map.Entry<Integer, Integer>> iim_es_default = iim_default.entrySet();
checkThat(iim_es.size() == iim_es_default.size());
for (java.util.Map.Entry<Integer, Integer> entry : iim_es) {
checkThat(iim_es_default.contains(entry));
checkThat(iim_default.containsKey(entry.getKey()));
checkThat(iim_default.containsValue(entry.getValue()));
Integer oldValue = entry.getValue();
entry.setValue(oldValue + 1);
checkThat(iim.get(entry.getKey()) == (oldValue + 1));
}
}
}

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@ -0,0 +1,75 @@
import cpp11_std_unordered_set.*;
public class cpp11_std_unordered_set_runme {
static {
try {
System.loadLibrary("cpp11_std_unordered_set");
} catch (UnsatisfiedLinkError e) {
System.err.println("Native code library failed to load. See the chapter on Dynamic Linking Problems in the SWIG Java documentation for help.\n" + e);
System.exit(1);
}
}
public static void checkThat(boolean mustBeTrue) throws Throwable {
if (!mustBeTrue) {
// Index [2], since this function is one hop away from main, and [1] is the current method.
throw new RuntimeException("Test failed at line number " + Thread.currentThread().getStackTrace()[2].getLineNumber());
}
}
public static void main(String argv[]) throws Throwable
{
java.util.AbstractSet<String> ss = new UnorderedSetString();
checkThat(ss.isEmpty());
checkThat(!ss.contains("key"));
checkThat(!ss.remove("key"));
checkThat(ss.add("key"));
checkThat(!ss.add("key"));
checkThat(ss.contains("key"));
checkThat(ss.remove("key"));
checkThat(ss.isEmpty());
checkThat(ss.size() == 0);
checkThat(ss.add("key1"));
checkThat(ss.add("key2"));
checkThat(ss.add("key3"));
checkThat(ss.size() == 3);
ss.clear();
checkThat(ss.isEmpty());
checkThat(ss.size() == 0);
checkThat(ss.addAll(java.util.Arrays.asList("one", "two", "three")));
checkThat(ss.size() == 3);
checkThat(ss.contains("one"));
checkThat(!ss.contains("four"));
checkThat(ss.containsAll(java.util.Arrays.asList("one", "two", "three")));
checkThat(ss.containsAll(java.util.Arrays.asList("one", "two")));
checkThat(!ss.containsAll(java.util.Arrays.asList("one", "two", "four")));
checkThat(!ss.containsAll(java.util.Arrays.asList("one", "two", "three", "four")));
checkThat(!ss.addAll(java.util.Arrays.asList("one", "two", "three")));
java.util.Set<String> found = new java.util.HashSet<String>();
java.util.Iterator<String> itr = ss.iterator();
while (itr.hasNext()) {
found.add(itr.next());
}
checkThat(ss.containsAll(found));
checkThat(found.containsAll(ss));
java.util.AbstractSet<String> ss2 = new UnorderedSetString(ss);
checkThat(ss2.containsAll(ss));
checkThat(ss.containsAll(ss2));
checkThat(!ss.removeAll(java.util.Arrays.asList("five", "four")));
checkThat(ss.removeAll(found));
checkThat(ss.isEmpty());
checkThat(ss.size() == 0);
}
}

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@ -0,0 +1,122 @@
import li_std_map.*;
public class li_std_map_runme {
static {
try {
System.loadLibrary("li_std_map");
} catch (UnsatisfiedLinkError e) {
System.err.println("Native code library failed to load. See the chapter on Dynamic Linking Problems in the SWIG Java documentation for help.\n" + e);
System.exit(1);
}
}
public static void checkThat(boolean mustBeTrue) throws Throwable {
if (!mustBeTrue) {
// Index [2], since this function is one hop away from main, and [1] is the current method.
throw new RuntimeException("Test failed at line number " + Thread.currentThread().getStackTrace()[2].getLineNumber());
}
}
public static void main(String argv[]) throws Throwable
{
java.util.AbstractMap<String, Integer> sim = new StringIntMap();
java.util.AbstractMap<Integer, Integer> iim = new IntIntMap();
checkThat(sim.isEmpty());
checkThat(iim.isEmpty());
checkThat(sim.size() == 0);
checkThat(iim.size() == 0);
checkThat(sim.get("key") == null);
checkThat(iim.get(1) == null);
checkThat(!sim.containsKey("key"));
checkThat(!iim.containsKey(1));
checkThat(sim.put("key", 2) == null);
checkThat(iim.put(1, 2) == null);
checkThat(sim.size() == 1);
checkThat(iim.size() == 1);
checkThat(!sim.isEmpty());
checkThat(!iim.isEmpty());
checkThat(sim.get("key") == 2);
checkThat(iim.get(1) == 2);
checkThat(sim.remove("key") == 2);
checkThat(iim.remove(1) == 2);
checkThat(sim.isEmpty());
checkThat(iim.isEmpty());
checkThat(sim.size() == 0);
checkThat(iim.size() == 0);
checkThat(sim.get("key") == null);
checkThat(iim.get(1) == null);
checkThat(sim.remove("key") == null);
checkThat(iim.remove(1) == null);
checkThat(sim.put("key", 2) == null);
checkThat(iim.put(1, 2) == null);
sim.clear();
iim.clear();
checkThat(sim.isEmpty());
checkThat(iim.isEmpty());
checkThat(sim.put("key1", 1) == null);
checkThat(iim.put(1, 1) == null);
checkThat(sim.put("key2", 2) == null);
checkThat(iim.put(2, 2) == null);
checkThat(sim.size() == 2);
checkThat(iim.size() == 2);
checkThat(sim.get("key1") == 1);
checkThat(iim.get(1) == 1);
checkThat(sim.get("key2") == 2);
checkThat(iim.get(2) == 2);
checkThat(sim.put("key1", 3) == 1);
checkThat(iim.put(1, 3) == 1);
checkThat(sim.size() == 2);
checkThat(iim.size() == 2);
checkThat(sim.get("key1") == 3);
checkThat(iim.get(1) == 3);
java.util.Set<java.util.Map.Entry<String, Integer>> sim_es = sim.entrySet();
java.util.Map<String, Integer> sim_default = new java.util.HashMap<String, Integer>();
sim_default.put("key1", 3);
sim_default.put("key2", 2);
java.util.Set<java.util.Map.Entry<String, Integer>> sim_es_default = sim_default.entrySet();
checkThat(sim_es.size() == sim_es_default.size());
for (java.util.Map.Entry<String, Integer> entry : sim_es) {
checkThat(sim_es_default.contains(entry));
checkThat(sim_default.containsKey(entry.getKey()));
checkThat(sim_default.containsValue(entry.getValue()));
Integer oldValue = entry.getValue();
entry.setValue(oldValue + 1);
checkThat(sim.get(entry.getKey()) == (oldValue + 1));
}
java.util.Set<java.util.Map.Entry<Integer, Integer>> iim_es = iim.entrySet();
java.util.Map<Integer, Integer> iim_default = new java.util.HashMap<Integer, Integer>();
iim_default.put(1, 3);
iim_default.put(2, 2);
java.util.Set<java.util.Map.Entry<Integer, Integer>> iim_es_default = iim_default.entrySet();
checkThat(iim_es.size() == iim_es_default.size());
for (java.util.Map.Entry<Integer, Integer> entry : iim_es) {
checkThat(iim_es_default.contains(entry));
checkThat(iim_default.containsKey(entry.getKey()));
checkThat(iim_default.containsValue(entry.getValue()));
Integer oldValue = entry.getValue();
entry.setValue(oldValue + 1);
checkThat(iim.get(entry.getKey()) == (oldValue + 1));
}
}
}

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@ -0,0 +1,75 @@
import li_std_set.*;
public class li_std_set_runme {
static {
try {
System.loadLibrary("li_std_set");
} catch (UnsatisfiedLinkError e) {
System.err.println("Native code library failed to load. See the chapter on Dynamic Linking Problems in the SWIG Java documentation for help.\n" + e);
System.exit(1);
}
}
public static void checkThat(boolean mustBeTrue) throws Throwable {
if (!mustBeTrue) {
// Index [2], since this function is one hop away from main, and [1] is the current method.
throw new RuntimeException("Test failed at line number " + Thread.currentThread().getStackTrace()[2].getLineNumber());
}
}
public static void main(String argv[]) throws Throwable
{
java.util.AbstractSet<String> ss = new StringSet();
checkThat(ss.isEmpty());
checkThat(!ss.contains("key"));
checkThat(!ss.remove("key"));
checkThat(ss.add("key"));
checkThat(!ss.add("key"));
checkThat(ss.contains("key"));
checkThat(ss.remove("key"));
checkThat(ss.isEmpty());
checkThat(ss.size() == 0);
checkThat(ss.add("key1"));
checkThat(ss.add("key2"));
checkThat(ss.add("key3"));
checkThat(ss.size() == 3);
ss.clear();
checkThat(ss.isEmpty());
checkThat(ss.size() == 0);
checkThat(ss.addAll(java.util.Arrays.asList("one", "two", "three")));
checkThat(ss.size() == 3);
checkThat(ss.contains("one"));
checkThat(!ss.contains("four"));
checkThat(ss.containsAll(java.util.Arrays.asList("one", "two", "three")));
checkThat(ss.containsAll(java.util.Arrays.asList("one", "two")));
checkThat(!ss.containsAll(java.util.Arrays.asList("one", "two", "four")));
checkThat(!ss.containsAll(java.util.Arrays.asList("one", "two", "three", "four")));
checkThat(!ss.addAll(java.util.Arrays.asList("one", "two", "three")));
java.util.Set<String> found = new java.util.HashSet<String>();
java.util.Iterator<String> itr = ss.iterator();
while (itr.hasNext()) {
found.add(itr.next());
}
checkThat(ss.containsAll(found));
checkThat(found.containsAll(ss));
java.util.AbstractSet<String> ss2 = new StringSet(ss);
checkThat(ss2.containsAll(ss));
checkThat(ss.containsAll(ss2));
checkThat(!ss.removeAll(java.util.Arrays.asList("five", "four")));
checkThat(ss.removeAll(found));
checkThat(ss.isEmpty());
checkThat(ss.size() == 0);
}
}

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@ -1,5 +1,5 @@
/*
* a test of set containers.
* a test of set containers.
* Languages should define swig::LANGUAGE_OBJ to be
* an entity of their native pointer type which can be
* included in a STL container.
@ -13,22 +13,23 @@
%include <std_string.i>
%include <std_set.i>
%include <std_multiset.i>
%include <std_vector.i>
%template(set_string) std::set<std::string>;
%template(set_int) std::multiset<int>;
%template(v_int) std::vector<int>;
// Use language macros since Java doesn't have multiset support (yet)
// and uses different naming conventions.
#if defined(SWIGRUBY) || defined(SWIGPYTHON)
%include <std_multiset.i>
%template(set_int) std::multiset<int>;
%template(v_int) std::vector<int>;
%template(set_string) std::set<std::string>;
#elif defined(SWIGJAVA)
%template(StringSet) std::set<std::string>;
#endif
#if defined(SWIGRUBY)
%template(LanguageSet) std::set<swig::LANGUAGE_OBJ>;
%template(LanguageSet) std::set<swig::LANGUAGE_OBJ>;
#endif
#if defined(SWIGPYTHON)
%template(pyset) std::set<swig::SwigPtr_PyObject>;
%template(pyset) std::set<swig::SwigPtr_PyObject>;
#endif

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@ -129,6 +129,7 @@ std::vector<std::string> vecStr(std::vector<std::string> v) {
double *makeDoublePtr(double v) { return new double(v); }
int extractInt(int *p) { return *p; }
short extractConstShort(const short *p) { return *p; }
short extractConstShort2(std::vector<const short *>::value_type p) { return *p; }
%}
%template(pyvector) std::vector<swig::SwigPtr_PyObject>;

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@ -15,6 +15,19 @@ using namespace std;
int* makeIntPtr(int v) {
return new int(v);
}
std::vector<int *>::value_type makeIntPtr2(int v) {
return new int(v);
}
int getIntValue(int *p) {
return *p;
}
int getIntValue2(std::vector<int *>::const_reference p) {
return *p;
}
int getIntValue3(std::vector<int *>::reference p) {
return *p;
}
double* makeDoublePtr(double v) {
return new double(v);
}

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@ -1,4 +1,4 @@
from cpp11_li_std_array import *
from cpp11_std_array import *
import sys

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@ -173,3 +173,11 @@ if extractConstShort(vcs[0]) != 111:
if extractConstShort(vcs[1]) != 222:
raise RuntimeError
for p in vcs[0:1]:
if extractConstShort2(p) != 111:
raise RuntimeError
for p in vcs[1:2]:
if extractConstShort2(p) != 222:
raise RuntimeError

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@ -4,12 +4,20 @@ def check(val1, val2):
if val1 != val2:
raise RuntimeError("Values are not the same %s %s" % (val1, val2))
ip1 = makeIntPtr(11)
ip2 = makeIntPtr(22)
ip2 = makeIntPtr2(22)
vi = IntPtrVector((ip1, ip2))
check(getValueFromVector(vi, 0), 11)
check(getValueFromVector(vi, 1), 22)
check(getIntValue(vi[0]), 11)
check(getIntValue(vi[1]), 22)
check(getIntValue2(vi[0]), 11)
check(getIntValue2(vi[1]), 22)
ipp = makeIntPtrPtr(vi[0])
check(getIntValue3(ipp), 11) # Note: getIntValue3 takes int**
vA = APtrVector([makeA(33), makeA(34)])
check(getVectorValueA(vA, 0), 33)

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@ -9,9 +9,9 @@
require 'swig_assert'
require 'cpp11_li_std_array'
require 'cpp11_std_array'
include Cpp11_li_std_array
include Cpp11_std_array
def failed(a, b, msg)