#include "gm3d.h" void GM3D::AddTiltedBlock(modelist para_list){ double xs_1,xe_1,xmin_1,xmax_1; double xs_2,xe_2,xmin_2,xmax_2; double ys_1,ye_1,ymin_1,ymax_1; double ys_2,ye_2,ymin_2,ymax_2; double layer_xmin,layer_xmax,layer_ymin,layer_ymax; double zs,ze,zmin,zmax; bool model_added = false; std::stringstream tmp_ss; gctl::str2ss(para_list.mod_para, tmp_ss, "/"); tmp_ss >> xs_1 >> xe_1 >> ys_1 >> ye_1 >> zs >> xs_2 >> xe_2 >> ys_2 >> ye_2 >> ze; if (tmp_ss.fail()) throw GM3D_INVALID_MODEL_PARAMETER; xmin_1 = GCTL_MIN(xs_1,xe_1); xmax_1 = GCTL_MAX(xs_1,xe_1); ymin_1 = GCTL_MIN(ys_1,ye_1); ymax_1 = GCTL_MAX(ys_1,ye_1); xmin_2 = GCTL_MIN(xs_2,xe_2); xmax_2 = GCTL_MAX(xs_2,xe_2); ymin_2 = GCTL_MIN(ys_2,ye_2); ymax_2 = GCTL_MAX(ys_2,ye_2); zmin = GCTL_MIN(zs,ze); zmax = GCTL_MAX(zs,ze); if (para_list.val_type == "replace") { for (int i = 0; i < model_num_; i++){ //计算当前层的x与y范围 layer_xmin = (model_cube_[i].cen.z - zmin)*(xmin_2 - xmin_1)/(zmax - zmin) + xmin_1; layer_xmax = (model_cube_[i].cen.z - zmin)*(xmax_2 - xmax_1)/(zmax - zmin) + xmax_1; layer_ymin = (model_cube_[i].cen.z - zmin)*(ymin_2 - ymin_1)/(zmax - zmin) + ymin_1; layer_ymax = (model_cube_[i].cen.z - zmin)*(ymax_2 - ymax_1)/(zmax - zmin) + ymax_1; if (model_cube_[i].cen.x >= layer_xmin && model_cube_[i].cen.x <= layer_xmax && model_cube_[i].cen.y >= layer_ymin && model_cube_[i].cen.y <= layer_ymax && model_cube_[i].cen.z >= zmin && model_cube_[i].cen.z <= zmax){ model_block_val_[i] = para_list.mod_value; //注意重复赋值的块体会覆盖 model_added = true; } } } else if (para_list.val_type == "add") { for (int i = 0; i < model_num_; i++){ //计算当前层的x与y范围 layer_xmin = (model_cube_[i].cen.z - zmin)*(xmin_2 - xmin_1)/(zmax - zmin) + xmin_1; layer_xmax = (model_cube_[i].cen.z - zmin)*(xmax_2 - xmax_1)/(zmax - zmin) + xmax_1; layer_ymin = (model_cube_[i].cen.z - zmin)*(ymin_2 - ymin_1)/(zmax - zmin) + ymin_1; layer_ymax = (model_cube_[i].cen.z - zmin)*(ymax_2 - ymax_1)/(zmax - zmin) + ymax_1; if (model_cube_[i].cen.x >= layer_xmin && model_cube_[i].cen.x <= layer_xmax && model_cube_[i].cen.y >= layer_ymin && model_cube_[i].cen.y <= layer_ymax && model_cube_[i].cen.z >= zmin && model_cube_[i].cen.z <= zmax){ if (model_block_val_[i] == GCTL_BDL_MAX) model_block_val_[i] = para_list.mod_value; //注意重复赋值的块体会覆盖 else model_block_val_[i] += para_list.mod_value; model_added = true; } } } else if (para_list.val_type == "erase") { for (int i = 0; i < model_num_; i++){ //计算当前层的x与y范围 layer_xmin = (model_cube_[i].cen.z - zmin)*(xmin_2 - xmin_1)/(zmax - zmin) + xmin_1; layer_xmax = (model_cube_[i].cen.z - zmin)*(xmax_2 - xmax_1)/(zmax - zmin) + xmax_1; layer_ymin = (model_cube_[i].cen.z - zmin)*(ymin_2 - ymin_1)/(zmax - zmin) + ymin_1; layer_ymax = (model_cube_[i].cen.z - zmin)*(ymax_2 - ymax_1)/(zmax - zmin) + ymax_1; if (model_cube_[i].cen.x >= layer_xmin && model_cube_[i].cen.x <= layer_xmax && model_cube_[i].cen.y >= layer_ymin && model_cube_[i].cen.y <= layer_ymax && model_cube_[i].cen.z >= zmin && model_cube_[i].cen.z <= zmax){ model_block_val_[i] = GCTL_BDL_MAX; //注意重复赋值的块体会覆盖 model_added = true; } } } else throw GM3D_INVALID_MODEL_VAL_TYPE; if (!model_added) throw GM3D_NOMODEL_ADDED; return; }