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#include <cmath>     // pow(-)</cmath>
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#include <stdexcept> /* std::domain_error(-) */</stdexcept>
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#include <limits>    // std::numeric_limits</limits>
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#include <vector></vector>
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#include "igs_level_auto.h"
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#include "igs_ifx_common.h" /* igs::image::rgba */
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//------------------------------------------------------------
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namespace {
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double level_value_(double value, double mul_max, bool act_sw, double in_min,
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                    double in_max, double out_min, double out_max,
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                    double gamma) {
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  if (act_sw) {
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    if (in_max == in_min) {
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      value = in_max;
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    } else {
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      /* 制限(in_min〜in_max) */
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      if (in_min < in_max) {
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        if (value < in_min) {
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          value = in_min;
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        } else if (in_max < value) {
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          value = in_max;
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        }
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      } else {
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        if (value < in_max) {
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          value = in_max;
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        } else if (in_min < value) {
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          value = in_min;
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        }
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      }
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      /* 正規化(0〜1) */
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      value = (value - in_min) / (in_max - in_min);
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      /* Gamma変換 */
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      if ((1.0 != gamma) && (0.0 != gamma)) {
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        value = pow(value, 1.0 / gamma);
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      }
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    }
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    /* Outputの範囲にスケール変換 */
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    value = out_min + value * (out_max - out_min);
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    /* 0...1の間で制限かける */
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    if (value < 0.0) {
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      value = 0.0;
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    } else if (1.0 < value) {
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      value = 1.0;
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    }
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  }
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  /* 0〜1.0 --> 0〜mul_maxスケール変換し、整数値化 */
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  return floor(value * mul_max);
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}
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//------------------------------------------------------------
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void level_ctable_template_(const unsigned int channels,
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                            const bool *act_sw,          // user setting
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                            const int *in_min,           // image pixel value
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                            const int *in_max,           // image pixel value
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                            const double *in_min_shift,  // user setting
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                            const double *in_max_shift,  // user setting
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                            const double *out_min,       // user setting
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                            const double *out_max,       // user setting
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                            const double *gamma,         // user setting
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                            const unsigned int div_num,
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                            std::vector<std::vector<unsigned int="">> &table_array</std::vector<unsigned>
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                            /*
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                            std::vector< std::vector<t> > &table_array</t>
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                     とするとvc2005mdで他プログラムとのリンク時、
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                            allocatorの2重定義でエラーとなる。
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                            std::vector< std::vector<unsigned int=""> >&table_array</unsigned>
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                     ならOK
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                     2009-01-27
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                    */
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                            ) {
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  const double div_val = static_cast<double>(div_num);</double>
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  const double mul_val = div_val + 0.999999;
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#if defined _WIN32  // vc compile_type
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  double in_min_[4], in_max_[4];
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#else
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  double in_min_[channels], in_max_[channels];
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#endif
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  for (unsigned int cc = 0; cc < channels; ++cc) {
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    in_min_[cc] = in_min_shift[cc] + in_min[cc] / div_val;
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    in_max_[cc] = in_max_shift[cc] + in_max[cc] / div_val;
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  }
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  table_array.resize(channels);
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  for (unsigned int cc = 0; cc < channels; ++cc) {
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    table_array[cc].resize(div_num + 1);
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    for (unsigned int yy = 0; yy <= div_num; ++yy) {
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      table_array[cc][yy] = static_cast<unsigned int="">(</unsigned>
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          level_value_(yy / div_val, mul_val, act_sw[cc], in_min_[cc],
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                       in_max_[cc], out_min[cc], out_max[cc], gamma[cc]));
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    }
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  }
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}
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//------------------------------------------------------------
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template <class t=""></class>
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void change_template_(T *image_array, const int height, const int width,
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                      const int channels,
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                      const bool *act_sw, const double *in_min_shift,
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                      const double *in_max_shift, const double *out_min,
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                      const double *out_max, const double *gamma) {
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/* 1.まず最大値、最小値を求める */
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#if defined _WIN32
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  int in_min[4], in_max[4];
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#else
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  int in_min[channels], in_max[channels];
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#endif
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  for (int zz = 0; zz < channels; ++zz) {
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    in_min[zz] = in_max[zz] = image_array[zz];
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  }
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  T *image_crnt = image_array;
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  for (int yy = 0; yy < height; ++yy) {
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    for (int xx = 0; xx < width; ++xx) {
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      for (int zz = 0; zz < channels; ++zz) {
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        if (image_crnt[zz] < in_min[zz]) {
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          in_min[zz] = image_crnt[zz];
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        } else if (in_max[zz] < image_crnt[zz]) {
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          in_max[zz] = image_crnt[zz];
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        }
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      }
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      image_crnt += channels;
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    }
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  }
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  /* 2.最大値、最小値から変換テーブルを求める */
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  std::vector<std::vector<unsigned int="">> table_array;</std::vector<unsigned>
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  level_ctable_template_(channels, act_sw, in_min, in_max, in_min_shift,
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                         in_max_shift, out_min, out_max, gamma,
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                         std::numeric_limits<t>::max(), table_array);</t>
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  /* 3.変換テーブルを使ってlevel変換する */
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  image_crnt        = image_array;
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  const int pixsize = height * width;
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  if (igs::image::rgba::siz == channels) {
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    using namespace igs::image::rgba;
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    for (int ii = 0; ii < pixsize; ++ii, image_crnt += channels) {
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      image_crnt[red] = static_cast<t>(table_array[0][image_crnt[red]]);</t>
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      image_crnt[gre] = static_cast<t>(table_array[1][image_crnt[gre]]);</t>
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      image_crnt[blu] = static_cast<t>(table_array[2][image_crnt[blu]]);</t>
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      image_crnt[alp] = static_cast<t>(table_array[3][image_crnt[alp]]);</t>
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    }
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  } else if (igs::image::rgb::siz == channels) {
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    using namespace igs::image::rgb;
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    for (int ii = 0; ii < pixsize; ++ii, image_crnt += channels) {
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      image_crnt[red] = static_cast<t>(table_array[0][image_crnt[red]]);</t>
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      image_crnt[gre] = static_cast<t>(table_array[1][image_crnt[gre]]);</t>
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      image_crnt[blu] = static_cast<t>(table_array[2][image_crnt[blu]]);</t>
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    }
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  } else if (1 == channels) { /* grayscale */
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    for (int ii = 0; ii < pixsize; ++ii, ++image_crnt) {
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      image_crnt[0] = static_cast<t>(table_array[0][image_crnt[0]]);</t>
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    }
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  }
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  table_array.clear();
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}
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}
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void igs::level_auto::change(unsigned char *image_array,
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                             const int height, const int width,
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                             const int channels, const int bits,
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                             const bool *act_sw,          // channels array
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                             const double *in_min_shift,  // channels array
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                             const double *in_max_shift,  // channels array
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                             const double *out_min,       // channels array
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                             const double *out_max,       // channels array
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                             const double *gamma          // channels array
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                             ) {
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  if ((igs::image::rgba::siz != channels) &&
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      (igs::image::rgb::siz != channels) && (1 != channels) /* grayscale */
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      ) {
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    throw std::domain_error("Bad channels,Not rgba/rgb/grayscale");
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  }
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  if (std::numeric_limits<unsigned char="">::digits == bits) {</unsigned>
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    change_template_(image_array, height, width, channels, act_sw, in_min_shift,
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                     in_max_shift, out_min, out_max, gamma);
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  } else if (std::numeric_limits<unsigned short="">::digits == bits) {</unsigned>
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    change_template_(reinterpret_cast<unsigned *="" short="">(image_array), height,</unsigned>
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                     width, channels, act_sw, in_min_shift, in_max_shift,
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                     out_min, out_max, gamma);
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  } else {
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    throw std::domain_error("Bad bits,Not uchar/ushort");
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  }
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}