/* GIMP - The GNU Image Manipulation Program * Copyright (C) 1995 Spencer Kimball and Peter Mattis * * This program is free software: you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 3 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program. If not, see . */ #include "config.h" #include #include #include "libgimpmath/gimpmath.h" #include "core-types.h" #include "gimp.h" #include "gimpimage.h" #include "gimpimage-private.h" #include "gimpimage-sample-points.h" #include "gimpimage-undo-push.h" #include "gimpsamplepoint.h" #include "gimp-intl.h" /* public functions */ GimpSamplePoint * gimp_image_add_sample_point_at_pos (GimpImage *image, gint x, gint y, gboolean push_undo) { GimpSamplePoint *sample_point; g_return_val_if_fail (GIMP_IS_IMAGE (image), NULL); g_return_val_if_fail (x >= 0 && x < gimp_image_get_width (image), NULL); g_return_val_if_fail (y >= 0 && y < gimp_image_get_height (image), NULL); sample_point = gimp_sample_point_new (image->gimp->next_sample_point_ID++); if (push_undo) gimp_image_undo_push_sample_point (image, C_("undo-type", "Add Sample Point"), sample_point); gimp_image_add_sample_point (image, sample_point, x, y); gimp_sample_point_unref (sample_point); return sample_point; } void gimp_image_add_sample_point (GimpImage *image, GimpSamplePoint *sample_point, gint x, gint y) { GimpImagePrivate *private; g_return_if_fail (GIMP_IS_IMAGE (image)); g_return_if_fail (sample_point != NULL); private = GIMP_IMAGE_GET_PRIVATE (image); private->sample_points = g_list_append (private->sample_points, sample_point); sample_point->x = x; sample_point->y = y; gimp_sample_point_ref (sample_point); gimp_image_sample_point_added (image, sample_point); } void gimp_image_remove_sample_point (GimpImage *image, GimpSamplePoint *sample_point, gboolean push_undo) { GimpImagePrivate *private; g_return_if_fail (GIMP_IS_IMAGE (image)); g_return_if_fail (sample_point != NULL); private = GIMP_IMAGE_GET_PRIVATE (image); if (push_undo) gimp_image_undo_push_sample_point (image, C_("undo-type", "Remove Sample Point"), sample_point); private->sample_points = g_list_remove (private->sample_points, sample_point); gimp_image_sample_point_removed (image, sample_point); sample_point->x = -1; sample_point->y = -1; gimp_sample_point_unref (sample_point); } void gimp_image_move_sample_point (GimpImage *image, GimpSamplePoint *sample_point, gint x, gint y, gboolean push_undo) { g_return_if_fail (GIMP_IS_IMAGE (image)); g_return_if_fail (sample_point != NULL); g_return_if_fail (x >= 0); g_return_if_fail (y >= 0); g_return_if_fail (x < gimp_image_get_width (image)); g_return_if_fail (y < gimp_image_get_height (image)); if (push_undo) gimp_image_undo_push_sample_point (image, C_("undo-type", "Move Sample Point"), sample_point); sample_point->x = x; sample_point->y = y; gimp_image_sample_point_moved (image, sample_point); } GList * gimp_image_get_sample_points (GimpImage *image) { g_return_val_if_fail (GIMP_IS_IMAGE (image), NULL); return GIMP_IMAGE_GET_PRIVATE (image)->sample_points; } GimpSamplePoint * gimp_image_find_sample_point (GimpImage *image, gdouble x, gdouble y, gdouble epsilon_x, gdouble epsilon_y) { GList *list; GimpSamplePoint *ret = NULL; gdouble mindist = G_MAXDOUBLE; g_return_val_if_fail (GIMP_IS_IMAGE (image), NULL); g_return_val_if_fail (epsilon_x > 0 && epsilon_y > 0, NULL); if (x < 0 || x >= gimp_image_get_width (image) || y < 0 || y >= gimp_image_get_height (image)) { return NULL; } for (list = GIMP_IMAGE_GET_PRIVATE (image)->sample_points; list; list = g_list_next (list)) { GimpSamplePoint *sample_point = list->data; gdouble dist; if (sample_point->x < 0 || sample_point->y < 0) continue; dist = hypot ((sample_point->x + 0.5) - x, (sample_point->y + 0.5) - y); if (dist < MIN (epsilon_y, mindist)) { mindist = dist; ret = sample_point; } } return ret; }