Packages
evision
1.0.0-rc.0
1.0.1-rc.0
1.0.0
1.0.0-rc.0
0.2.17
0.2.17-rc2
0.2.17-rc1
0.2.16
0.2.16-pre.2
0.2.16-pre
0.2.15
0.2.14
0.2.13
0.2.12
0.2.11
0.2.9
0.2.8
0.2.7
0.2.6
0.2.5
0.2.4
0.2.3
0.2.2
0.2.2-rc2
0.2.1
0.2.0
0.1.39
0.1.38
0.1.37
0.1.36
0.1.35
0.1.34
0.1.33
0.1.32
retired
0.1.31
0.1.30
0.1.29
0.1.28
0.1.27
0.1.26
0.1.26-rc3
0.1.26-rc2
0.1.26-rc1
0.1.26-rc0
0.1.25
0.1.24
0.1.23
0.1.22
0.1.21
0.1.20
0.1.19
0.1.18
0.1.17
0.1.16
0.1.15
0.1.14
0.1.13
0.1.12
0.1.11
0.1.10
0.1.9
0.1.8
0.1.7
OpenCV-Erlang/Elixir binding.
Current section
Files
Jump to
Current section
Files
c_src/modules/evision_backend/predicate.h
#ifndef EVISION_BACKEND_PREDICATE_H
#define EVISION_BACKEND_PREDICATE_H
#include <cmath>
#include <erl_nif.h>
#include "../../ArgInfo.hpp"
#include "../evision_mat_utils.hpp"
#include "parallel.h"
// Elementwise predicate -> u8 {0,1} (Nx.is_nan / is_infinity / logical_not).
// op 0 = is_nan, 1 = is_infinity, 2 = is_zero (logical_not). The nan/inf checks go
// through double, so integer inputs are always finite (0); f16/bf16 are widened to
// f32 by the caller, so only real C types reach here. Output is a flat [1, n] u8
// mat the caller reshapes to the input shape.
template <typename T>
static void evision_predicate(const cv::Mat &src, cv::Mat &dst, int op) {
const T *sp = (const T *)src.data;
unsigned char *dp = dst.data;
size_t n = src.total();
evision_parallel_for((int64_t)n, (int64_t)n, EVISION_PARALLEL_SIMPLE_MIN_WORK, [&](int64_t begin, int64_t end) {
for (int64_t i = begin; i < end; i++) {
T x = sp[(size_t)i];
unsigned char r = 0;
switch (op) {
case 0: r = std::isnan((double)x) ? 1 : 0; break;
case 1: r = std::isinf((double)x) ? 1 : 0; break;
case 2: r = (x == (T)0) ? 1 : 0; break;
default: break;
}
dp[(size_t)i] = r;
}
});
}
// @evision c: mat_predicate, evision_cv_mat_predicate, 1
// @evision nif: def mat_predicate(_opts \\ []), do: :erlang.nif_error(:undefined)
static ERL_NIF_TERM evision_cv_mat_predicate(ErlNifEnv *env, int argc, const ERL_NIF_TERM argv[]) {
using namespace cv;
using namespace evision::nif;
std::map<std::string, ERL_NIF_TERM> erl_terms;
int nif_opts_index = 0;
evision::nif::parse_arg(env, nif_opts_index, argv, erl_terms);
{
Mat src;
int op = 0;
if (evision_to_safe(env, evision_get_kw(env, erl_terms, "src"), src, ArgInfo("src", ArgInfo::INPUT_ONLY)) &&
evision_to_safe(env, evision_get_kw(env, erl_terms, "op"), op, ArgInfo("op", 0))) {
Mat src_c = src.isContinuous() ? src : src.clone();
Mat dst(1, (int)src_c.total(), CV_8U);
switch (src_c.depth()) {
case CV_8U: evision_predicate<uint8_t>(src_c, dst, op); break;
case CV_8S: evision_predicate<int8_t>(src_c, dst, op); break;
case CV_16U: evision_predicate<uint16_t>(src_c, dst, op); break;
case CV_16S: evision_predicate<int16_t>(src_c, dst, op); break;
case CV_32S: evision_predicate<int32_t>(src_c, dst, op); break;
case CV_32U: evision_predicate<uint32_t>(src_c, dst, op); break;
case CV_64S: evision_predicate<int64_t>(src_c, dst, op); break;
case CV_64U: evision_predicate<uint64_t>(src_c, dst, op); break;
case CV_32F: evision_predicate<float>(src_c, dst, op); break;
case CV_64F: evision_predicate<double>(src_c, dst, op); break;
default: return evision::nif::error(env, "mat_predicate: unsupported depth");
}
return evision_from(env, dst);
}
}
return enif_make_badarg(env);
}
#endif // EVISION_BACKEND_PREDICATE_H