scilab: new generic test li_std_sequence_container_typemaps (for STL vector, list, ...)
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118
Examples/test-suite/li_std_sequence_container_typemaps.i
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118
Examples/test-suite/li_std_sequence_container_typemaps.i
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%module li_std_sequence_container_typemaps
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%include stl.i
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%{
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#include <vector>
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#include <list>
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#include <deque>
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#include <iostream>
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#include <iterator>
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#include <algorithm>
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#include <numeric>
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%}
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%inline %{
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class ClassA
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{
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public:
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ClassA() : a(0) {}
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ClassA(int _a) : a(_a) {}
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ClassA(const ClassA& c) : a(c.a) {}
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int a;
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};
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typedef ClassA* ClassAPtr;
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namespace std {
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template<typename T> T binaryOperation(T x, T y) {
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return x + y;
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}
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template<> bool binaryOperation(bool x, bool y) {
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return x | y;
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}
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template<> ClassAPtr binaryOperation(ClassAPtr x, ClassAPtr y) {
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x->a += y->a;
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return x;
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}
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template<typename SeqCont>
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struct sequence_container {
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typedef typename SeqCont::value_type value_type;
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static SeqCont ret_container(const int size, const value_type value) {
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return SeqCont(size, value);
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}
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static value_type val_container(const SeqCont container) {
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return std::accumulate(container.begin(), container.end(), container.front(),
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binaryOperation<value_type>);
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}
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static value_type ref_container(const SeqCont& container) {
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return std::accumulate(container.begin(), container.end(), container.front(),
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binaryOperation<value_type>);
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}
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/*SeqCont ret_val_containers(const SeqCont container,
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const SeqCont other_container) {
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SeqCont out_container(container);
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out_container.insert(out_container.end(), other_container.begin(),
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other_container.end());
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return out_container;
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}*/
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};
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template<typename T>
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std::vector<T> ret_vector(const int size, const T value) {
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return sequence_container<std::vector<T> >::ret_container(size, value);
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}
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template<typename T>
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T val_vector(const std::vector<T> container) {
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return sequence_container<std::vector<T> >::val_container(container);
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}
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template<typename T>
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T ref_vector(const std::vector<T>& container) {
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return sequence_container<std::vector<T> >::ref_container(container);
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}
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template<typename T>
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std::list<T> ret_list(const int size, const T value) {
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return sequence_container<std::list<T> >::ret_container(size, value);
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}
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template<typename T>
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T val_list(const std::list<T> container) {
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return sequence_container<std::list<T> >::val_container(container);
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}
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template<typename T>
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T ref_list(const std::list<T>& container) {
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return sequence_container<std::list<T> >::ref_container(container);
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}
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}
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%}
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%define instantiate_containers_templates(TYPE...)
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namespace std
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{
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%template(TYPE ##_## vector) std::vector<TYPE >;
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%template(ret_ ## TYPE ##_## vector) ret_vector<TYPE>;
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%template(val_ ## TYPE ##_## vector) val_vector<TYPE>;
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%template(ref_ ## TYPE ##_## vector) ref_vector<TYPE>;
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%template(TYPE ##_## list) std::list<TYPE >;
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%template(ret_ ## TYPE ##_## list) ret_list<TYPE>;
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%template(val_ ## TYPE ##_## list) val_list<TYPE>;
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%template(ref_ ## TYPE ##_## list) ref_list<TYPE>;
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}
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%enddef
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instantiate_containers_templates(int)
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instantiate_containers_templates(double)
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instantiate_containers_templates(bool)
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instantiate_containers_templates(string)
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instantiate_containers_templates(ClassAPtr)
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@ -17,6 +17,7 @@ C_TEST_CASES += \
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CPP_STD_TEST_CASES += \
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CPP_STD_TEST_CASES += \
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primitive_types \
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primitive_types \
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inout \
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inout \
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li_std_sequence_container_typemaps \
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TEST_DIR = $*.dir
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TEST_DIR = $*.dir
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RUNME_SCRIPT = $(srcdir)/$(SCRIPTPREFIX)$*$(SCRIPTSUFFIX)
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RUNME_SCRIPT = $(srcdir)/$(SCRIPTPREFIX)$*$(SCRIPTSUFFIX)
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@ -0,0 +1,101 @@
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// test STL sequence containers typemaps
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exec("swigtest.start", -1);
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// test sequence containers of pointers
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// -container: type of container: "vector", "list"...
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// -value, count: value to store count times in container
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// -expected_accumulate_value: expected value of an accumulation function
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// computed on the container
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function testSequenceContainerPtr(container, count, value, expected_accumulate_value)
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// test sequence container returned from fonction (expected a list)
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classAPtr = new_ClassA(value);
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cmd = msprintf("l = ret_ClassAPtr_%s(count, classAPtr);", container);
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ierr = execstr(cmd, "errcatch");
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if ierr <> 0 then swigtesterror(); end
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if ~exists('l') | (size(l) <> count) | (ClassA_a_get(l(1)) <> value) then swigtesterror(); end
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l2 = l;
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// test sequence container passed as value of function
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cmd = msprintf("classAPtr = val_ClassAPtr_%s(l);", container);
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ierr = execstr(cmd, "errcatch");
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if ierr <> 0 then swigtesterror(); end
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if ClassA_a_get(classAPtr) <> expected_accumulate_value then swigtesterror(); end
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// recreate a container
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classAPtr = new_ClassA(value);
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cmd = msprintf("l = ret_ClassAPtr_%s(count, classAPtr);", container);
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ierr = execstr(cmd, "errcatch");
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if ierr <> 0 then swigtesterror(); end
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if ~exists('l') | (size(l) <> count) | (ClassA_a_get(l(1)) <> value) then swigtesterror(); end
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// test sequence container passed as refererence of function
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cmd = msprintf("classAPtr = ref_ClassAPtr_%s(l);", container);
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ierr = execstr(cmd, "errcatch");
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if ierr <> 0 then swigtesterror(); end
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if ClassA_a_get(classAPtr) <> expected_accumulate_value then swigtesterror(); end
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endfunction
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// test sequence containers of primitive type
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// -container: type of container: "vector", "list"...
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// -value_type: type of element stored in container: "int", ...
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// -value, count: value to store count times in container
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// -expected_accumulate_value: expected value of an accumulation function
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// computed on the container
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function testSequenceContainer(container, value_type, value, count, expected_accumulate_value)
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// test sequence container returned from fonction (expect a row matrix)
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if value_type = "string"
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cmd = msprintf("c = ret_%s_%s(count, ''%s'');", value_type, container, value);
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elseif value_type = "bool" then
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cmd = msprintf("c = ret_%s_%s(count, %s);", value_type, container, "%"+string(value));
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else
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cmd = msprintf("c = ret_%s_%s(count, %d);", value_type, container, value);
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end
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ierr = execstr(cmd, "errcatch");
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if ierr <> 0 then swigtesterror(); end
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if ~isdef('c') | c <> repmat(value, 1, count) then swigtesterror(); end
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// test sequence container passed as value of function
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cmd = msprintf("s = val_%s_%s(c);", value_type, container);
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ierr = execstr(cmd, "errcatch");
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if ierr <> 0 then swigtesterror(); end
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if s <> expected_accumulate_value then swigtesterror(); end
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// test sequence container passed as matrix as value of function
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//m = repmat(value, 1, count);
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//cmd = msprintf("s = val_%s_%s(m);", value_type, container);
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//ierr = execstr(cmd, "errcatch");
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//if ierr <> 0 then swigtesterror(); end
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//if s <> expected_accumulate_value then swigtesterror(); end
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// test sequence container passed as reference of function
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cmd = msprintf("s = ref_%s_%s(c);", value_type, container);
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ierr = execstr(cmd, "errcatch");
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if ierr <> 0 then swigtesterror(); end
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if s <> expected_accumulate_value then swigtesterror(); end
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// test sequence container passed as matrix as reference of function
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//m = repmat(value, 1, count);
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//cmd = msprintf("s = val_%s_%s(m);", value_type, container);
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//ierr = execstr(cmd, "errcatch");
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//if ierr <> 0 then swigtesterror(); end
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//if s <> expected_accumulate_value then swigtesterror(); end
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endfunction
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// test vector
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testSequenceContainer("vector", "int", 2, 4, 10);
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testSequenceContainer("vector", "double", 2., 3., 8.);
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testSequenceContainer("vector", "string", "a", 4, "aaaaa");
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testSequenceContainer("vector", "bool", %T, 2, %T);
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testSequenceContainerPtr("vector", 1, 3, 6.0);
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// test list
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testSequenceContainer("list", "int", 2, 3, 8);
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testSequenceContainer("list", "double", 2., 4., 10.);
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testSequenceContainer("list", "string", "a", 4, "aaaaa");
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testSequenceContainer("list", "bool", %T, 2, %T);
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testSequenceContainerPtr("list", 1, 3, 6.0);
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exec("swigtest.quit", -1);
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