38#include <visp3/core/vpConfig.h>
39#include <visp3/core/vpEndian.h>
41#if defined(VISP_HAVE_CATCH2) && \
42 (defined(_WIN32) || (defined(__unix__) || defined(__unix) || (defined(__APPLE__) && defined(__MACH__)))) && \
43 defined(VISP_LITTLE_ENDIAN) && defined(VISP_HAVE_MINIZ) && defined(VISP_HAVE_WORKING_REGEX)
45#include <catch_amalgamated.hpp>
49#include <visp3/core/vpIoTools.h>
50#include <visp3/core/vpImage.h>
52#ifdef ENABLE_VISP_NAMESPACE
58std::string createTmpDir()
63 return directory_filename;
67TEST_CASE(
"Test visp::cnpy::npy_load/npz_save",
"[visp::cnpy I/O]")
69 std::string directory_filename = createTmpDir();
71 std::string npz_filename = directory_filename +
"/test_npz_read_write.npz";
73 SECTION(
"Read/Save string data")
75 const std::string save_string =
"Open Source Visual Servoing Platform";
76 std::vector<char> vec_save_string(save_string.begin(), save_string.end());
77 const std::string identifier =
"String";
78 visp::cnpy::npz_save(npz_filename, identifier, &vec_save_string[0], { vec_save_string.size() },
"w");
81 REQUIRE(npz_data.find(identifier) != npz_data.end());
84 std::vector<char> vec_arr_string_data = arr_string_data.
as_vec<
char>();
88 const std::string read_string(vec_arr_string_data.begin(), vec_arr_string_data.end());
89 CHECK(save_string == read_string);
93 std::vector<char> vec_arr_string_data_direct = arr_string_data_direct.
as_vec<
char>();
95 const std::string read_string_direct(vec_arr_string_data_direct.begin(), vec_arr_string_data_direct.end());
96 CHECK(read_string_direct == read_string);
99 SECTION(
"Read/Save multi-dimensional array")
101 const std::string identifier =
"Array";
103 std::vector<int> save_vec_copy;
105 std::vector<int> save_vec;
106 save_vec.reserve(height*width*channels);
107 for (
int i = 0; i < static_cast<int>(height*width*channels); ++
i) {
108 save_vec.push_back(i);
112 save_vec_copy = save_vec;
117 REQUIRE(npz_data.find(identifier) != npz_data.end());
120 std::vector<int> read_vec = arr_vec_data.
as_vec<
int>();
122 REQUIRE(save_vec_copy.size() == read_vec.size());
123 for (
size_t i = 0;
i < read_vec.size(); ++
i) {
124 CHECK(save_vec_copy[i] == read_vec[i]);
129 std::vector<int> read_vec_direct = arr_vec_data_direct.
as_vec<
int>();
131 REQUIRE(read_vec_direct.size() == read_vec.size());
132 for (
size_t i = 0;
i < read_vec.size(); ++
i) {
133 CHECK(read_vec_direct[i] == read_vec[i]);
138 SECTION(
"Read/Save vpImage<vpRGBa>")
142 CHECK(
sizeof(
vpRGBa) == (4 *
sizeof(
unsigned char)));
144 const std::string identifier =
"vpImage<vpRGBa>";
148 for (
unsigned int i = 0;
i < I_save.getRows();
i++) {
149 for (
unsigned int j = 0;
j < I_save.getCols();
j++) {
150 I_save[
i][
j].R = 4 * (
i*I_save.getCols() + j) + 0;
151 I_save[
i][
j].G = 4 * (
i*I_save.getCols() + j) + 1;
152 I_save[
i][
j].B = 4 * (
i*I_save.getCols() + j) + 2;
153 I_save[
i][
j].A = 4 * (
i*I_save.getCols() + j) + 3;
157 visp::cnpy::npz_save(npz_filename, identifier, &I_save.bitmap[0], { I_save.getRows(), I_save.getCols() },
"a");
158 I_save_copy = I_save;
163 REQUIRE(npz_data.find(identifier) != npz_data.end());
166 const bool copy_data =
false;
168 static_cast<unsigned int>(arr_vec_data.
shape[1]), copy_data);
170 CHECK(I_save_copy.
getSize() == I_read.getSize());
171 CHECK(I_save_copy == I_read);
176 static_cast<unsigned int>(arr_vec_data_direct.
shape[1]), copy_data);
178 CHECK(I_read.getSize() == I_read_direct.getSize());
179 CHECK(I_read == I_read_direct);
183 SECTION(
"Read/Save std::complex<double>")
192#if (VISP_CXX_STANDARD > VISP_CXX_STANDARD_11)
193 CHECK(std::is_trivially_copyable<std::complex<double>>::value ==
true);
198 const std::string identifier =
"std::complex<double>";
199 std::complex<double> complex_data_copy;
201 std::complex<double> complex_data(99, 3.14);
203 complex_data_copy = complex_data;
208 REQUIRE(npz_data.find(identifier) != npz_data.end());
211 std::complex<double> complex_data_read = *arr_vec_data.
data<std::complex<double>>();
213 CHECK(complex_data_copy.real() == complex_data_read.real());
214 CHECK(complex_data_copy.imag() == complex_data_read.imag());
218 std::complex<double> complex_data_read_direct = *arr_vec_data.
data<std::complex<double>>();
220 CHECK(complex_data_read_direct.real() == complex_data_read.real());
221 CHECK(complex_data_read_direct.imag() == complex_data_read.imag());
225 SECTION(
"Read/Save std::vector<std::complex<double>>")
227 const std::string identifier =
"std::vector<std::complex<double>>";
228 std::vector<std::complex<double>> vec_complex_data_copy;
230 std::vector<std::complex<double>> vec_complex_data;
231 std::complex<double> complex_data(99, 3.14);
232 vec_complex_data.push_back(complex_data);
234 complex_data.real(-77.12);
235 complex_data.imag(-100.95);
236 vec_complex_data.push_back(complex_data);
238 visp::cnpy::npz_save(npz_filename, identifier, &vec_complex_data[0], { vec_complex_data.size() },
"a");
239 vec_complex_data_copy = vec_complex_data;
244 REQUIRE(npz_data.find(identifier) != npz_data.end());
247 std::vector<std::complex<double>> vec_complex_data_read = arr_vec_data.
as_vec<std::complex<double>>();
249 REQUIRE(vec_complex_data_copy.size() == vec_complex_data_read.size());
250 for (
size_t i = 0;
i < vec_complex_data_copy.size();
i++) {
251 CHECK(vec_complex_data_copy[i].real() == vec_complex_data_read[i].real());
252 CHECK(vec_complex_data_copy[i].imag() == vec_complex_data_read[i].imag());
257 std::vector<std::complex<double>> vec_complex_data_read_direct = arr_vec_data_direct.
as_vec<std::complex<double>>();
259 REQUIRE(vec_complex_data_read_direct.size() == vec_complex_data_read.size());
260 for (
size_t i = 0;
i < vec_complex_data_read_direct.size();
i++) {
261 CHECK(vec_complex_data_read_direct[i].real() == vec_complex_data_read[i].real());
262 CHECK(vec_complex_data_read_direct[i].imag() == vec_complex_data_read[i].imag());
267 SECTION(
"Read/Save vpHomogeneousMatrix")
269 const std::string identifier =
"vpHomogeneousMatrix";
275 visp::cnpy::npz_save(npz_filename, identifier, &cMo_save.data[0], { cMo_save.getRows(), cMo_save.getCols() },
"a");
276 cMo_save_copy = cMo_save;
281 REQUIRE(npz_data.find(identifier) != npz_data.end());
287 CHECK(cMo_save_copy == cMo_read);
293 CHECK(cMo_read_direct == cMo_read);
297 SECTION(
"Read/Save std::vector<vpHomogeneousMatrix>")
299 const std::string identifier =
"std::vector<vpHomogeneousMatrix>";
300 std::vector<vpHomogeneousMatrix> vec_cMo_save_copy;
302 std::vector<double> vec_cMo_save;
303 for (
size_t i = 0;
i < 5;
i++) {
305 vec_cMo_save_copy.push_back(cMo_save);
306 vec_cMo_save.insert(vec_cMo_save.end(), cMo_save.data, cMo_save.data+cMo_save.size());
310 visp::cnpy::npz_save(npz_filename, identifier, &vec_cMo_save[0], { vec_cMo_save.size()/16, 16 },
"a");
315 REQUIRE(npz_data.find(identifier) != npz_data.end());
318 std::vector<double> vec_cMo_read = arr_vec_data.
as_vec<
double>();
319 REQUIRE(vec_cMo_save_copy.size() == arr_vec_data.
shape[0]);
321 for (
size_t i = 0;
i < arr_vec_data.
shape[0];
i++) {
322 std::vector<double>::const_iterator first = vec_cMo_read.begin() +
i*arr_vec_data.
shape[1];
323 std::vector<double>::const_iterator last = first + arr_vec_data.
shape[1];
324 std::vector<double> subvec_cMo_read(first, last);
327 CHECK(vec_cMo_save_copy[i] == cMo_read);
332 std::vector<double> vec_cMo_read_direct = arr_vec_data_direct.
as_vec<
double>();
333 REQUIRE(arr_vec_data_direct.
shape.size() == arr_vec_data.
shape.size());
334 REQUIRE(arr_vec_data_direct.
shape[0] == arr_vec_data.
shape[0]);
336 for (
size_t i = 0;
i < arr_vec_data_direct.
shape[0];
i++) {
337 std::vector<double>::const_iterator first = vec_cMo_read_direct.begin() +
i*arr_vec_data_direct.
shape[1];
338 std::vector<double>::const_iterator last = first + arr_vec_data_direct.
shape[1];
339 std::vector<double> subvec_cMo_read_direct(first, last);
342 CHECK(vec_cMo_save_copy[i] == cMo_read_direct);
352using BasicTypes = std::tuple<uint8_t, int8_t, uint16_t, int16_t, uint32_t, int32_t, uint64_t, int64_t, float, double>;
353TEMPLATE_LIST_TEST_CASE(
"Test visp::cnpy::npy_load/npz_save",
"[BasicTypes][list]", BasicTypes)
355 std::string directory_filename = createTmpDir();
357 std::string npz_filename = directory_filename +
"/test_npz_read_write.npz";
359 std::string identifier =
"data";
360 TestType save_data_copy;
362 TestType save_data = std::numeric_limits<TestType>::min();
364 save_data_copy = save_data;
368 REQUIRE(npz_data.find(identifier) != npz_data.end());
371 CHECK(save_data_copy == read_data);
375 TestType read_data_direct = *arr_data_direct.
data<TestType>();
376 CHECK(read_data_direct == read_data);
379 identifier =
"data2";
381 TestType save_data = std::numeric_limits<TestType>::max();
383 save_data_copy = save_data;
387 REQUIRE(npz_data.find(identifier) != npz_data.end());
390 CHECK(save_data_copy == read_data);
394 TestType read_data_direct = *arr_data_direct.
data<TestType>();
395 CHECK(read_data_direct == read_data);
399 REQUIRE(npz_data.find(identifier) != npz_data.end());
402 CHECK(save_data_copy == read_data);
409#if defined(VISP_HAVE_DATASET) && (VISP_HAVE_DATASET_VERSION >= 0x030703)
412void loadData(
const std::string &npz_filename,
413 bool &false_data,
bool &true_data, uint32_t &uint32_data, int64_t &int64_data,
414 float &float_data,
double &double_data, std::string &string_data, std::complex<double> &complex_data,
415 std::vector<int> &vec_int, std::vector<float> &vec_flt, std::vector<std::string> &vec_string,
416 std::vector<std::complex<float>> &vec_complex,
bool has_complex)
418 const std::string bool_false_identifier =
"My bool false data";
419 const std::string bool_true_identifier =
"My bool true data";
420 const std::string uint32_identifier =
"My uint32 data";
421 const std::string int64_identifier =
"My int64 data";
422 const std::string float_identifier =
"My float data";
423 const std::string double_identifier =
"My double data";
424 const std::string string_identifier =
"My string data";
425 const std::string complex_identifier =
"My complex data";
426 const std::string matrix_int_identifier =
"My int matrix data";
427 const std::string matrix_flt_identifier =
"My float matrix data";
428 const std::string matrix_string_identifier =
"My string matrix data";
429 const std::string vec_complex_identifier =
"My complex vector data";
432 visp::cnpy::npz_t::iterator it_bool_false = npz_data.find(bool_false_identifier);
433 visp::cnpy::npz_t::iterator it_bool_true = npz_data.find(bool_true_identifier);
434 visp::cnpy::npz_t::iterator it_uint32 = npz_data.find(uint32_identifier);
435 visp::cnpy::npz_t::iterator it_int64 = npz_data.find(int64_identifier);
436 visp::cnpy::npz_t::iterator it_float = npz_data.find(float_identifier);
437 visp::cnpy::npz_t::iterator it_double = npz_data.find(double_identifier);
438 visp::cnpy::npz_t::iterator it_string = npz_data.find(string_identifier);
439 visp::cnpy::npz_t::iterator it_matrix_int = npz_data.find(matrix_int_identifier);
440 visp::cnpy::npz_t::iterator it_matrix_flt = npz_data.find(matrix_flt_identifier);
441 visp::cnpy::npz_t::iterator it_matrix_string = npz_data.find(matrix_string_identifier);
443 REQUIRE(it_bool_false != npz_data.end());
444 REQUIRE(it_bool_true != npz_data.end());
445 REQUIRE(it_uint32 != npz_data.end());
446 REQUIRE(it_int64 != npz_data.end());
447 REQUIRE(it_float != npz_data.end());
448 REQUIRE(it_double != npz_data.end());
449 REQUIRE(it_string != npz_data.end());
450 REQUIRE(it_matrix_int != npz_data.end());
451 REQUIRE(it_matrix_flt != npz_data.end());
452 REQUIRE(it_matrix_string != npz_data.end());
465 false_data = *arr_data_bool_false.
data<
bool>();
466 true_data = *arr_data_bool_true.
data<
bool>();
467 uint32_data = *arr_data_uint32.
data<uint32_t>();
468 int64_data = *arr_data_int64.
data<int64_t>();
469 float_data = *arr_data_float.
data<
float>();
470 double_data = *arr_data_double.
data<
double>();
473 vec_int = arr_data_matrix_int.
as_vec<
int>();
474 vec_flt = arr_data_matrix_flt.
as_vec<
float>();
478 visp::cnpy::npz_t::iterator it_complex = npz_data.find(complex_identifier);
479 REQUIRE(it_complex != npz_data.end());
481 complex_data = *arr_data_complex.
data<std::complex<double>>();
483 visp::cnpy::npz_t::iterator it_vec_complex = npz_data.find(vec_complex_identifier);
484 REQUIRE(it_vec_complex != npz_data.end());
486 vec_complex = arr_data_vec_complex.
as_vec<std::complex<float>>();
490void getNpzGroundTruth(
bool >_bool_false,
bool >_bool_true, uint32_t >_uint32_data, int64_t >_int64_data,
491 float >_float_data,
double >_double_data, std::string >_string_data, std::complex<double> >_complex_data,
492 std::vector<int> >_vec_int, std::vector<float> >_vec_flt, std::vector<std::string> >_vec_string,
493 std::vector<std::complex<float>> >_vec_complex_data)
496 gt_bool_false =
false;
499 gt_int64_data = -123456;
500 gt_float_data = -456.51f;
501 gt_double_data = 3.14;
502 gt_string_data =
"ViSP: Open source Visual Servoing Platform";
504 gt_complex_data = std::complex<double>(gt_float_data, gt_double_data);
506 for (
int i = 0; i < static_cast<int>(height*width*channels); ++
i) {
507 gt_vec_int.push_back(i);
508 gt_vec_flt.push_back(i);
511 gt_vec_string.push_back(
"ViSP ");
512 gt_vec_string.push_back(
"for ");
513 gt_vec_string.push_back(
"visual servoing: ");
514 gt_vec_string.push_back(
"a generic software platform ");
515 gt_vec_string.push_back(
"with a wide class of ");
516 gt_vec_string.push_back(
"robot control skills");
518 for (
int i = 0;
i < 3;
i++) {
519 gt_vec_complex_data.push_back(std::complex<float>(gt_complex_data.real()*(i+1), gt_complex_data.imag()*2*(i+1)));
524TEST_CASE(
"Test little-endian / big-endian npz loading",
"[visp::cnpy I/O]")
526 const bool has_complex =
true;
527 SECTION(
"Check little-endian correctness for npz loading")
530 "npz/visp_cnpy/visp_npz_test_data_cnpy_LE.npz");
533 bool gt_bool_false, gt_bool_true;
534 uint32_t gt_uint32_data;
535 int64_t gt_int64_data;
537 double gt_double_data;
538 std::string gt_string_data;
539 std::complex<double> gt_complex_data;
540 std::vector<int> gt_vec_int;
541 std::vector<float> gt_vec_flt;
542 std::vector<std::string> gt_vec_string;
543 std::vector<std::complex<float>> gt_vec_complex_data;
544 getNpzGroundTruth(gt_bool_false, gt_bool_true, gt_uint32_data, gt_int64_data, gt_float_data, gt_double_data,
545 gt_string_data, gt_complex_data, gt_vec_int, gt_vec_flt, gt_vec_string, gt_vec_complex_data);
548 bool b_false =
false, b_true =
false;
549 uint32_t uint32_data = 0;
550 int64_t int64_data = 0;
551 float float_data = 0;
552 double double_data = 0;
553 std::string string_data =
"";
554 std::complex<double> complex_data;
555 std::vector<int> vec_int;
556 std::vector<float> vec_flt;
557 std::vector<std::string> vec_string;
558 std::vector<std::complex<float>> vec_complex_data;
559 loadData(npz_filename, b_false, b_true, uint32_data, int64_data, float_data, double_data, string_data,
560 complex_data, vec_int, vec_flt, vec_string, vec_complex_data, has_complex);
562 CHECK(b_false == gt_bool_false);
563 CHECK(b_true == gt_bool_true);
564 CHECK(uint32_data == gt_uint32_data);
565 CHECK(int64_data == gt_int64_data);
566 CHECK(float_data == gt_float_data);
567 CHECK(double_data == gt_double_data);
568 CHECK(string_data == gt_string_data);
569 CHECK(complex_data.real() == gt_complex_data.real());
570 CHECK(complex_data.imag() == gt_complex_data.imag());
572 REQUIRE(gt_vec_int.size() == gt_vec_flt.size());
573 REQUIRE(gt_vec_int.size() == vec_int.size());
574 REQUIRE(gt_vec_int.size() == vec_flt.size());
575 for (
size_t i = 0;
i < gt_vec_int.size();
i++) {
576 REQUIRE(gt_vec_int[i] == vec_int[i]);
577 REQUIRE(gt_vec_flt[i] == vec_flt[i]);
580 REQUIRE(gt_vec_string.size() == vec_string.size());
581 for (
size_t i = 0;
i < gt_vec_string.size();
i++) {
582 REQUIRE(gt_vec_string[i] == vec_string[i]);
585 REQUIRE(gt_vec_complex_data.size() == vec_complex_data.size());
586 for (
size_t i = 0;
i < gt_vec_complex_data.size();
i++) {
587 REQUIRE(vec_complex_data[i].real() == gt_vec_complex_data[i].real());
588 REQUIRE(vec_complex_data[i].imag() == gt_vec_complex_data[i].imag());
592 SECTION(
"Check little-endian vs big_endian correctness for npz loading")
595 "npz/visp_cnpy/visp_npz_test_data_cnpy_LE.npz");
597 "npz/visp_cnpy/visp_npz_test_data_cnpy_BE.npz");
602 bool b_data_false_LE, b_data_false_BE;
603 bool b_data_true_LE, b_data_true_BE;
604 uint32_t uint32_data_LE, uint32_data_BE;
605 int64_t int64_data_LE, int64_data_BE;
606 float float_data_LE, float_data_BE;
607 double double_data_LE, double_data_BE;
608 std::string string_data_LE, string_data_BE;
609 std::complex<double> complex_data_LE, complex_data_BE;
610 std::vector<int> vec_int_LE, vec_int_BE;
611 std::vector<float> vec_flt_LE, vec_flt_BE;
612 std::vector<std::string> vec_string_LE, vec_string_BE;
613 std::vector<std::complex<float>> vec_complex_data_LE, vec_complex_data_BE;
615 loadData(npz_filename_LE, b_data_false_LE, b_data_true_LE, uint32_data_LE, int64_data_LE, float_data_LE,
616 double_data_LE, string_data_LE, complex_data_LE, vec_int_LE, vec_flt_LE, vec_string_LE, vec_complex_data_LE, has_complex);
618 loadData(npz_filename_BE, b_data_false_BE, b_data_true_BE, uint32_data_BE, int64_data_BE, float_data_BE,
619 double_data_BE, string_data_BE, complex_data_BE, vec_int_BE, vec_flt_BE, vec_string_BE, vec_complex_data_BE, has_complex);
621 CHECK(b_data_false_LE == b_data_false_BE);
622 CHECK(b_data_true_LE == b_data_true_BE);
623 CHECK(uint32_data_LE == uint32_data_BE);
624 CHECK(int64_data_LE == int64_data_BE);
625 CHECK(float_data_LE == float_data_BE);
626 CHECK(double_data_LE == double_data_BE);
627 CHECK(string_data_LE == string_data_BE);
628 CHECK(complex_data_LE.real() == complex_data_BE.real());
629 CHECK(complex_data_LE.imag() == complex_data_BE.imag());
631 REQUIRE(vec_int_LE.size() == vec_flt_LE.size());
632 REQUIRE(vec_int_LE.size() == vec_int_BE.size());
633 REQUIRE(vec_int_LE.size() == vec_flt_BE.size());
634 for (
size_t i = 0;
i < vec_int_LE.size();
i++) {
635 CHECK(vec_int_LE[i] == vec_int_BE[i]);
636 CHECK(vec_flt_LE[i] == vec_flt_BE[i]);
639 REQUIRE(vec_string_LE.size() == vec_string_BE.size());
640 for (
size_t i = 0;
i < vec_string_LE.size();
i++) {
641 CHECK(vec_string_LE[i] == vec_string_BE[i]);
644 REQUIRE(vec_complex_data_LE.size() == vec_complex_data_BE.size());
645 for (
size_t i = 0;
i < vec_complex_data_LE.size();
i++) {
646 CHECK(vec_complex_data_LE[i].real() == vec_complex_data_LE[i].real());
647 CHECK(vec_complex_data_LE[i].imag() == vec_complex_data_LE[i].imag());
652TEST_CASE(
"Test loading correctness wrt. NumPy generated npz",
"[visp::cnpy I/O]")
654 const bool has_complex =
false;
657 bool gt_bool_false, gt_bool_true;
658 uint32_t gt_uint32_data;
659 int64_t gt_int64_data;
661 double gt_double_data;
662 std::string gt_string_data;
663 std::complex<double> gt_complex_data;
664 std::vector<int> gt_vec_int;
665 std::vector<float> gt_vec_flt;
666 std::vector<std::string> gt_vec_string;
667 std::vector<std::complex<float>> gt_vec_complex_data;
668 getNpzGroundTruth(gt_bool_false, gt_bool_true, gt_uint32_data, gt_int64_data, gt_float_data, gt_double_data,
669 gt_string_data, gt_complex_data, gt_vec_int, gt_vec_flt, gt_vec_string, gt_vec_complex_data);
671 SECTION(
"Check little-endian correctness")
674 "npz/numpy/visp_npz_test_data_numpy_LE.npz");
676 bool bool_false =
false, bool_true =
false;
677 uint32_t uint32_data = 0;
678 int64_t int64_data = 0;
681 std::string string_data;
682 std::complex<double> complex_data;
683 std::vector<int> vec_int;
684 std::vector<float> vec_flt;
685 std::vector<std::string> vec_string;
686 std::vector<std::complex<float>> vec_complex_data;
688 loadData(npz_filename, bool_false, bool_true, uint32_data, int64_data, float_data, double_data, string_data,
689 complex_data, vec_int, vec_flt, vec_string, vec_complex_data, has_complex);
691 CHECK(bool_false == gt_bool_false);
692 CHECK(bool_true == gt_bool_true);
693 CHECK(uint32_data == gt_uint32_data);
694 CHECK(int64_data == gt_int64_data);
695 CHECK(float_data == gt_float_data);
696 CHECK(double_data == gt_double_data);
697 CHECK(string_data == gt_string_data);
699 REQUIRE(gt_vec_int.size() == gt_vec_flt.size());
700 REQUIRE(gt_vec_int.size() == vec_int.size());
701 REQUIRE(gt_vec_int.size() == vec_flt.size());
702 for (
size_t i = 0;
i < gt_vec_int.size();
i++) {
703 CHECK(gt_vec_int[i] == vec_int[i]);
704 CHECK(gt_vec_flt[i] == vec_flt[i]);
706 REQUIRE(gt_vec_string.size() == vec_string.size());
707 for (
size_t i = 0;
i < gt_vec_string.size();
i++) {
708 CHECK(gt_vec_string[i] == vec_string[i]);
712 SECTION(
"Check big-endian correctness")
715 "npz/numpy/visp_npz_test_data_numpy_BE.npz");
717 bool bool_false =
false, bool_true =
false;
718 uint32_t uint32_data = 0;
719 int64_t int64_data = 0;
722 std::string string_data;
723 std::complex<double> complex_data;
724 std::vector<int> vec_int;
725 std::vector<float> vec_flt;
726 std::vector<std::string> vec_string;
727 std::vector<std::complex<float>> vec_complex_data;
729 loadData(npz_filename, bool_false, bool_true, uint32_data, int64_data, float_data, double_data, string_data,
730 complex_data, vec_int, vec_flt, vec_string, vec_complex_data, has_complex);
732 CHECK(bool_false == gt_bool_false);
733 CHECK(bool_true == gt_bool_true);
734 CHECK(uint32_data == gt_uint32_data);
735 CHECK(int64_data == gt_int64_data);
736 CHECK(float_data == gt_float_data);
737 CHECK(double_data == gt_double_data);
738 CHECK(string_data == gt_string_data);
740 REQUIRE(gt_vec_int.size() == gt_vec_flt.size());
741 REQUIRE(gt_vec_int.size() == vec_int.size());
742 REQUIRE(gt_vec_int.size() == vec_flt.size());
743 for (
size_t i = 0;
i < gt_vec_int.size();
i++) {
744 CHECK(gt_vec_int[i] == vec_int[i]);
745 CHECK(gt_vec_flt[i] == vec_flt[i]);
748 REQUIRE(gt_vec_string.size() == vec_string.size());
749 for (
size_t i = 0;
i < gt_vec_string.size();
i++) {
750 CHECK(gt_vec_string[i] == vec_string[i]);
756int main(
int argc,
char *argv[])
758 Catch::Session session;
759 session.applyCommandLine(argc, argv);
760 int numFailed = session.run();
765int main() {
return EXIT_SUCCESS; }
Implementation of an homogeneous matrix and operations on such kind of matrices.
Definition of the vpImage class member functions.
unsigned int getSize() const
Implementation of a rotation vector as axis-angle minimal representation.
Class that consider the case of a translation vector.
read_data(CameraParameters|None cam_depth, ImageGray I, rs.pipeline pipe)
VISP_EXPORT npz_t npz_load(const std::string &fname)
std::map< std::string, NpyArray > npz_t
VISP_EXPORT void npz_save(const std::string &zipname, std::string fname, const std::vector< std::string > &data_vec, const std::vector< size_t > &shape, const std::string &mode="w")
std::vector< size_t > shape
std::vector< T > as_vec() const
std::vector< std::string > as_utf8_string_vec() const