With this option, self-intersections in either or both operands will be handled properly (if both sides are piecewise winding number constant, and maybe some other cases too). In the Boolean tool, this flag was there already but the code forced a unary operation in that case; this commit corrects it to make a binary operation. This flag makes the code slower, which is why it is an option and not an always-on thing.
453 lines
13 KiB
C
453 lines
13 KiB
C
/*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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* The Original Code is Copyright (C) 2005 by the Blender Foundation.
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* All rights reserved.
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*/
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/** \file
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* \ingroup modifiers
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*/
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// #ifdef DEBUG_TIME
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#include <stdio.h>
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#include "BLI_utildefines.h"
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#include "BLI_alloca.h"
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#include "BLI_math_geom.h"
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#include "BLI_math_matrix.h"
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#include "BLT_translation.h"
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#include "DNA_mesh_types.h"
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#include "DNA_meshdata_types.h"
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#include "DNA_object_types.h"
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#include "DNA_screen_types.h"
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#include "BKE_context.h"
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#include "BKE_global.h" /* only to check G.debug */
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#include "BKE_lib_id.h"
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#include "BKE_lib_query.h"
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#include "BKE_material.h"
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#include "BKE_mesh.h"
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#include "BKE_mesh_wrapper.h"
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#include "BKE_modifier.h"
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#include "BKE_screen.h"
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#include "UI_interface.h"
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#include "UI_resources.h"
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#include "RNA_access.h"
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#include "MOD_ui_common.h"
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#include "MOD_util.h"
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#include "DEG_depsgraph_query.h"
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#include "MEM_guardedalloc.h"
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#include "bmesh.h"
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#include "bmesh_tools.h"
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#include "tools/bmesh_boolean.h"
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#include "tools/bmesh_intersect.h"
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#ifdef DEBUG_TIME
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# include "PIL_time.h"
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# include "PIL_time_utildefines.h"
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#endif
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static void initData(ModifierData *md)
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{
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BooleanModifierData *bmd = (BooleanModifierData *)md;
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bmd->double_threshold = 1e-6f;
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bmd->operation = eBooleanModifierOp_Difference;
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bmd->solver = eBooleanModifierSolver_Exact;
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bmd->flag = 0;
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}
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static bool isDisabled(const struct Scene *UNUSED(scene),
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ModifierData *md,
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bool UNUSED(useRenderParams))
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{
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BooleanModifierData *bmd = (BooleanModifierData *)md;
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/* The object type check is only needed here in case we have a placeholder
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* object assigned (because the library containing the mesh is missing).
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*
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* In other cases it should be impossible to have a type mismatch.
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*/
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return !bmd->object || bmd->object->type != OB_MESH;
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}
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static void foreachObjectLink(ModifierData *md, Object *ob, ObjectWalkFunc walk, void *userData)
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{
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BooleanModifierData *bmd = (BooleanModifierData *)md;
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walk(userData, ob, &bmd->object, IDWALK_CB_NOP);
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}
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static void updateDepsgraph(ModifierData *md, const ModifierUpdateDepsgraphContext *ctx)
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{
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BooleanModifierData *bmd = (BooleanModifierData *)md;
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if (bmd->object != NULL) {
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DEG_add_object_relation(ctx->node, bmd->object, DEG_OB_COMP_TRANSFORM, "Boolean Modifier");
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DEG_add_object_relation(ctx->node, bmd->object, DEG_OB_COMP_GEOMETRY, "Boolean Modifier");
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}
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/* We need own transformation as well. */
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DEG_add_modifier_to_transform_relation(ctx->node, "Boolean Modifier");
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}
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static Mesh *get_quick_mesh(
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Object *ob_self, Mesh *mesh_self, Object *ob_other, Mesh *mesh_other, int operation)
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{
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Mesh *result = NULL;
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if (mesh_self->totpoly == 0 || mesh_other->totpoly == 0) {
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switch (operation) {
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case eBooleanModifierOp_Intersect:
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result = BKE_mesh_new_nomain(0, 0, 0, 0, 0);
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break;
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case eBooleanModifierOp_Union:
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if (mesh_self->totpoly != 0) {
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result = mesh_self;
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}
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else {
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BKE_id_copy_ex(NULL, &mesh_other->id, (ID **)&result, LIB_ID_COPY_LOCALIZE);
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float imat[4][4];
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float omat[4][4];
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invert_m4_m4(imat, ob_self->obmat);
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mul_m4_m4m4(omat, imat, ob_other->obmat);
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const int mverts_len = result->totvert;
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MVert *mv = result->mvert;
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for (int i = 0; i < mverts_len; i++, mv++) {
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mul_m4_v3(omat, mv->co);
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}
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result->runtime.cd_dirty_vert |= CD_MASK_NORMAL;
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}
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break;
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case eBooleanModifierOp_Difference:
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result = mesh_self;
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break;
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}
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}
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return result;
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}
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/* has no meaning for faces, do this so we can tell which face is which */
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#define BM_FACE_TAG BM_ELEM_DRAW
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/**
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* Compare selected/unselected.
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*/
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static int bm_face_isect_pair(BMFace *f, void *UNUSED(user_data))
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{
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return BM_elem_flag_test(f, BM_FACE_TAG) ? 1 : 0;
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}
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static Mesh *modifyMesh(ModifierData *md, const ModifierEvalContext *ctx, Mesh *mesh)
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{
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BooleanModifierData *bmd = (BooleanModifierData *)md;
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Mesh *result = mesh;
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Mesh *mesh_other;
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if (bmd->object == NULL) {
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return result;
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}
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Object *other = bmd->object;
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mesh_other = BKE_modifier_get_evaluated_mesh_from_evaluated_object(other, false);
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if (mesh_other) {
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Object *object = ctx->object;
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/* XXX This is utterly non-optimal, we may go from a bmesh to a mesh back to a bmesh!
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* But for 2.90 better not try to be smart here. */
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BKE_mesh_wrapper_ensure_mdata(mesh_other);
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/* when one of objects is empty (has got no faces) we could speed up
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* calculation a bit returning one of objects' derived meshes (or empty one)
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* Returning mesh is depended on modifiers operation (sergey) */
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result = get_quick_mesh(object, mesh, other, mesh_other, bmd->operation);
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if (result == NULL) {
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const bool is_flip = (is_negative_m4(object->obmat) != is_negative_m4(other->obmat));
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BMesh *bm;
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const BMAllocTemplate allocsize = BMALLOC_TEMPLATE_FROM_ME(mesh, mesh_other);
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#ifdef DEBUG_TIME
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TIMEIT_START(boolean_bmesh);
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#endif
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bm = BM_mesh_create(&allocsize,
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&((struct BMeshCreateParams){
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.use_toolflags = false,
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}));
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BM_mesh_bm_from_me(bm,
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mesh_other,
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&((struct BMeshFromMeshParams){
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.calc_face_normal = true,
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}));
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if (UNLIKELY(is_flip)) {
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const int cd_loop_mdisp_offset = CustomData_get_offset(&bm->ldata, CD_MDISPS);
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BMIter iter;
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BMFace *efa;
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BM_ITER_MESH (efa, &iter, bm, BM_FACES_OF_MESH) {
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BM_face_normal_flip_ex(bm, efa, cd_loop_mdisp_offset, true);
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}
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}
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BM_mesh_bm_from_me(bm,
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mesh,
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&((struct BMeshFromMeshParams){
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.calc_face_normal = true,
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}));
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/* main bmesh intersection setup */
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{
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/* create tessface & intersect */
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const int looptris_tot = poly_to_tri_count(bm->totface, bm->totloop);
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int tottri;
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BMLoop *(*looptris)[3];
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looptris = MEM_malloc_arrayN(looptris_tot, sizeof(*looptris), __func__);
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BM_mesh_calc_tessellation_beauty(bm, looptris, &tottri);
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/* postpone this until after tessellating
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* so we can use the original normals before the vertex are moved */
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{
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BMIter iter;
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int i;
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const int i_verts_end = mesh_other->totvert;
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const int i_faces_end = mesh_other->totpoly;
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float imat[4][4];
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float omat[4][4];
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invert_m4_m4(imat, object->obmat);
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mul_m4_m4m4(omat, imat, other->obmat);
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BMVert *eve;
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i = 0;
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BM_ITER_MESH (eve, &iter, bm, BM_VERTS_OF_MESH) {
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mul_m4_v3(omat, eve->co);
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if (++i == i_verts_end) {
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break;
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}
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}
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/* we need face normals because of 'BM_face_split_edgenet'
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* we could calculate on the fly too (before calling split). */
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{
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float nmat[3][3];
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copy_m3_m4(nmat, omat);
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invert_m3(nmat);
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if (UNLIKELY(is_flip)) {
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negate_m3(nmat);
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}
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const short ob_src_totcol = other->totcol;
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short *material_remap = BLI_array_alloca(material_remap,
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ob_src_totcol ? ob_src_totcol : 1);
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/* Using original (not evaluated) object here since we are writing to it. */
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/* XXX Pretty sure comment above is fully wrong now with CoW & co ? */
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BKE_object_material_remap_calc(ctx->object, other, material_remap);
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BMFace *efa;
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i = 0;
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BM_ITER_MESH (efa, &iter, bm, BM_FACES_OF_MESH) {
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mul_transposed_m3_v3(nmat, efa->no);
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normalize_v3(efa->no);
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/* Temp tag to test which side split faces are from. */
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BM_elem_flag_enable(efa, BM_FACE_TAG);
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/* remap material */
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if (LIKELY(efa->mat_nr < ob_src_totcol)) {
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efa->mat_nr = material_remap[efa->mat_nr];
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}
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if (++i == i_faces_end) {
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break;
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}
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}
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}
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}
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/* not needed, but normals for 'dm' will be invalid,
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* currently this is ok for 'BM_mesh_intersect' */
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// BM_mesh_normals_update(bm);
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bool use_separate = false;
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bool use_dissolve = true;
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bool use_island_connect = true;
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/* change for testing */
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if (G.debug & G_DEBUG) {
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use_separate = (bmd->bm_flag & eBooleanModifierBMeshFlag_BMesh_Separate) != 0;
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use_dissolve = (bmd->bm_flag & eBooleanModifierBMeshFlag_BMesh_NoDissolve) == 0;
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use_island_connect = (bmd->bm_flag & eBooleanModifierBMeshFlag_BMesh_NoConnectRegions) ==
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0;
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}
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#ifdef WITH_GMP
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const bool use_exact = bmd->solver == eBooleanModifierSolver_Exact;
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const bool use_self = (bmd->flag & eBooleanModifierFlag_Self) != 0;
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#else
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if (bmd->solver == eBooleanModifierSolver_Exact) {
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BKE_modifier_set_error(md, "Compiled without GMP, using fast solver");
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}
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const bool use_exact = false;
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const bool use_self = false;
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#endif
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if (use_exact) {
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BM_mesh_boolean(
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bm, looptris, tottri, bm_face_isect_pair, NULL, use_self, bmd->operation);
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}
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else {
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BM_mesh_intersect(bm,
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looptris,
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tottri,
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bm_face_isect_pair,
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NULL,
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false,
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use_separate,
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use_dissolve,
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use_island_connect,
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false,
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false,
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bmd->operation,
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bmd->double_threshold);
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}
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MEM_freeN(looptris);
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}
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result = BKE_mesh_from_bmesh_for_eval_nomain(bm, NULL, mesh);
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BM_mesh_free(bm);
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result->runtime.cd_dirty_vert |= CD_MASK_NORMAL;
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#ifdef DEBUG_TIME
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TIMEIT_END(boolean_bmesh);
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#endif
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}
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/* if new mesh returned, return it; otherwise there was
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* an error, so delete the modifier object */
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if (result == NULL) {
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BKE_modifier_set_error(md, "Cannot execute boolean operation");
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}
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}
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return result;
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}
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static void requiredDataMask(Object *UNUSED(ob),
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ModifierData *UNUSED(md),
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CustomData_MeshMasks *r_cddata_masks)
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{
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r_cddata_masks->vmask |= CD_MASK_MDEFORMVERT;
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r_cddata_masks->emask |= CD_MASK_MEDGE;
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r_cddata_masks->fmask |= CD_MASK_MTFACE;
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}
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static void panel_draw(const bContext *UNUSED(C), Panel *panel)
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{
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uiLayout *layout = panel->layout;
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PointerRNA *ptr = modifier_panel_get_property_pointers(panel, NULL);
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uiItemR(layout, ptr, "operation", UI_ITEM_R_EXPAND, NULL, ICON_NONE);
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uiLayoutSetPropSep(layout, true);
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const bool use_exact = RNA_enum_get(ptr, "solver") == eBooleanModifierSolver_Exact;
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uiItemR(layout, ptr, "object", 0, NULL, ICON_NONE);
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uiItemR(layout, ptr, "solver", UI_ITEM_R_EXPAND, NULL, ICON_NONE);
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if (use_exact) {
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uiItemR(layout, ptr, "use_self", 0, NULL, ICON_NONE);
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}
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else {
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uiItemR(layout, ptr, "double_threshold", 0, NULL, ICON_NONE);
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}
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if (G.debug) {
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uiLayout *col = uiLayoutColumn(layout, true);
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uiItemR(col, ptr, "debug_options", 0, NULL, ICON_NONE);
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}
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modifier_panel_end(layout, ptr);
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}
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static void panelRegister(ARegionType *region_type)
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{
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modifier_panel_register(region_type, eModifierType_Boolean, panel_draw);
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}
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ModifierTypeInfo modifierType_Boolean = {
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/* name */ "Boolean",
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/* structName */ "BooleanModifierData",
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/* structSize */ sizeof(BooleanModifierData),
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/* type */ eModifierTypeType_Nonconstructive,
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/* flags */ eModifierTypeFlag_AcceptsMesh | eModifierTypeFlag_SupportsEditmode,
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/* copyData */ BKE_modifier_copydata_generic,
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/* deformVerts */ NULL,
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/* deformMatrices */ NULL,
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/* deformVertsEM */ NULL,
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/* deformMatricesEM */ NULL,
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/* modifyMesh */ modifyMesh,
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/* modifyHair */ NULL,
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/* modifyPointCloud */ NULL,
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/* modifyVolume */ NULL,
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/* initData */ initData,
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/* requiredDataMask */ requiredDataMask,
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/* freeData */ NULL,
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/* isDisabled */ isDisabled,
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/* updateDepsgraph */ updateDepsgraph,
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/* dependsOnTime */ NULL,
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/* dependsOnNormals */ NULL,
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/* foreachObjectLink */ foreachObjectLink,
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/* foreachIDLink */ NULL,
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/* foreachTexLink */ NULL,
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/* freeRuntimeData */ NULL,
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/* panelRegister */ panelRegister,
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/* blendWrite */ NULL,
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/* blendRead */ NULL,
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};
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