Continuing the refactors described in T93602, this commit moves the face dot tag set by the subdivision surface modifier out of `MVert` to `MeshRuntime`. This clarifies its status as runtime data and allows further refactoring of mesh positions in the future. Before, `BKE_modifiers_uses_subsurf_facedots` was used to check whether subsurf face dots should be drawn, but now we can just check if the tags exist on the mesh. Modifiers that create new new geometry or modify topology will already remove the array by clearing mesh runtime data. Differential Revision: https://developer.blender.org/D14680
343 lines
9.7 KiB
C++
343 lines
9.7 KiB
C++
/* SPDX-License-Identifier: GPL-2.0-or-later
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* Copyright 2005 Blender Foundation. All rights reserved. */
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/** \file
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* \ingroup bke
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*/
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#include "atomic_ops.h"
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#include "MEM_guardedalloc.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 "BLI_math_geom.h"
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#include "BLI_task.hh"
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#include "BKE_bvhutils.h"
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#include "BKE_lib_id.h"
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#include "BKE_mesh.h"
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#include "BKE_mesh_runtime.h"
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#include "BKE_shrinkwrap.h"
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#include "BKE_subdiv_ccg.h"
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/* -------------------------------------------------------------------- */
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/** \name Mesh Runtime Struct Utils
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* \{ */
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/**
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* \brief Initialize the runtime mutexes of the given mesh.
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*
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* Any existing mutexes will be overridden.
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*/
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static void mesh_runtime_init_mutexes(Mesh *mesh)
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{
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mesh->runtime.eval_mutex = MEM_new<ThreadMutex>("mesh runtime eval_mutex");
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BLI_mutex_init(static_cast<ThreadMutex *>(mesh->runtime.eval_mutex));
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mesh->runtime.normals_mutex = MEM_new<ThreadMutex>("mesh runtime normals_mutex");
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BLI_mutex_init(static_cast<ThreadMutex *>(mesh->runtime.normals_mutex));
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mesh->runtime.render_mutex = MEM_new<ThreadMutex>("mesh runtime render_mutex");
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BLI_mutex_init(static_cast<ThreadMutex *>(mesh->runtime.render_mutex));
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}
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/**
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* \brief free the mutexes of the given mesh runtime.
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*/
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static void mesh_runtime_free_mutexes(Mesh *mesh)
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{
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if (mesh->runtime.eval_mutex != nullptr) {
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BLI_mutex_end(static_cast<ThreadMutex *>(mesh->runtime.eval_mutex));
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MEM_freeN(mesh->runtime.eval_mutex);
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mesh->runtime.eval_mutex = nullptr;
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}
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if (mesh->runtime.normals_mutex != nullptr) {
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BLI_mutex_end(static_cast<ThreadMutex *>(mesh->runtime.normals_mutex));
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MEM_freeN(mesh->runtime.normals_mutex);
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mesh->runtime.normals_mutex = nullptr;
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}
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if (mesh->runtime.render_mutex != nullptr) {
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BLI_mutex_end(static_cast<ThreadMutex *>(mesh->runtime.render_mutex));
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MEM_freeN(mesh->runtime.render_mutex);
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mesh->runtime.render_mutex = nullptr;
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}
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}
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void BKE_mesh_runtime_init_data(Mesh *mesh)
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{
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mesh_runtime_init_mutexes(mesh);
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}
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void BKE_mesh_runtime_free_data(Mesh *mesh)
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{
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BKE_mesh_runtime_clear_cache(mesh);
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mesh_runtime_free_mutexes(mesh);
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}
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void BKE_mesh_runtime_reset_on_copy(Mesh *mesh, const int UNUSED(flag))
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{
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Mesh_Runtime *runtime = &mesh->runtime;
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runtime->mesh_eval = nullptr;
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runtime->edit_data = nullptr;
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runtime->batch_cache = nullptr;
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runtime->subdiv_ccg = nullptr;
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runtime->looptris = blender::dna::shallow_zero_initialize();
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runtime->bvh_cache = nullptr;
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runtime->shrinkwrap_data = nullptr;
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runtime->subsurf_face_dot_tags = nullptr;
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runtime->vert_normals_dirty = true;
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runtime->poly_normals_dirty = true;
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runtime->vert_normals = nullptr;
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runtime->poly_normals = nullptr;
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mesh_runtime_init_mutexes(mesh);
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}
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void BKE_mesh_runtime_clear_cache(Mesh *mesh)
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{
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if (mesh->runtime.mesh_eval != nullptr) {
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mesh->runtime.mesh_eval->edit_mesh = nullptr;
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BKE_id_free(nullptr, mesh->runtime.mesh_eval);
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mesh->runtime.mesh_eval = nullptr;
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}
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BKE_mesh_runtime_clear_geometry(mesh);
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BKE_mesh_batch_cache_free(mesh);
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BKE_mesh_runtime_clear_edit_data(mesh);
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BKE_mesh_clear_derived_normals(mesh);
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}
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/**
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* Ensure the array is large enough
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*
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* \note This function must always be thread-protected by caller.
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* It should only be used by internal code.
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*/
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static void mesh_ensure_looptri_data(Mesh *mesh)
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{
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/* This is a ported copy of `DM_ensure_looptri_data(dm)`. */
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const uint totpoly = mesh->totpoly;
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const int looptris_len = poly_to_tri_count(totpoly, mesh->totloop);
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BLI_assert(mesh->runtime.looptris.array_wip == nullptr);
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SWAP(MLoopTri *, mesh->runtime.looptris.array, mesh->runtime.looptris.array_wip);
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if ((looptris_len > mesh->runtime.looptris.len_alloc) ||
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(looptris_len < mesh->runtime.looptris.len_alloc * 2) || (totpoly == 0)) {
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MEM_SAFE_FREE(mesh->runtime.looptris.array_wip);
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mesh->runtime.looptris.len_alloc = 0;
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mesh->runtime.looptris.len = 0;
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}
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if (totpoly) {
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if (mesh->runtime.looptris.array_wip == nullptr) {
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mesh->runtime.looptris.array_wip = static_cast<MLoopTri *>(
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MEM_malloc_arrayN(looptris_len, sizeof(*mesh->runtime.looptris.array_wip), __func__));
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mesh->runtime.looptris.len_alloc = looptris_len;
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}
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mesh->runtime.looptris.len = looptris_len;
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}
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}
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void BKE_mesh_runtime_looptri_recalc(Mesh *mesh)
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{
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mesh_ensure_looptri_data(mesh);
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BLI_assert(mesh->totpoly == 0 || mesh->runtime.looptris.array_wip != nullptr);
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BKE_mesh_recalc_looptri(mesh->mloop,
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mesh->mpoly,
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mesh->mvert,
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mesh->totloop,
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mesh->totpoly,
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mesh->runtime.looptris.array_wip);
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BLI_assert(mesh->runtime.looptris.array == nullptr);
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atomic_cas_ptr((void **)&mesh->runtime.looptris.array,
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mesh->runtime.looptris.array,
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mesh->runtime.looptris.array_wip);
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mesh->runtime.looptris.array_wip = nullptr;
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}
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int BKE_mesh_runtime_looptri_len(const Mesh *mesh)
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{
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/* This is a ported copy of `dm_getNumLoopTri(dm)`. */
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const int looptri_len = poly_to_tri_count(mesh->totpoly, mesh->totloop);
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BLI_assert(ELEM(mesh->runtime.looptris.len, 0, looptri_len));
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return looptri_len;
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}
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const MLoopTri *BKE_mesh_runtime_looptri_ensure(const Mesh *mesh)
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{
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ThreadMutex *mesh_eval_mutex = (ThreadMutex *)mesh->runtime.eval_mutex;
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BLI_mutex_lock(mesh_eval_mutex);
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MLoopTri *looptri = mesh->runtime.looptris.array;
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if (looptri != nullptr) {
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BLI_assert(BKE_mesh_runtime_looptri_len(mesh) == mesh->runtime.looptris.len);
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}
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else {
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/* Must isolate multithreaded tasks while holding a mutex lock. */
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blender::threading::isolate_task(
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[&]() { BKE_mesh_runtime_looptri_recalc(const_cast<Mesh *>(mesh)); });
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looptri = mesh->runtime.looptris.array;
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}
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BLI_mutex_unlock(mesh_eval_mutex);
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return looptri;
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}
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void BKE_mesh_runtime_verttri_from_looptri(MVertTri *r_verttri,
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const MLoop *mloop,
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const MLoopTri *looptri,
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int looptri_num)
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{
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for (int i = 0; i < looptri_num; i++) {
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r_verttri[i].tri[0] = mloop[looptri[i].tri[0]].v;
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r_verttri[i].tri[1] = mloop[looptri[i].tri[1]].v;
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r_verttri[i].tri[2] = mloop[looptri[i].tri[2]].v;
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}
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}
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bool BKE_mesh_runtime_ensure_edit_data(struct Mesh *mesh)
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{
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if (mesh->runtime.edit_data != nullptr) {
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return false;
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}
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mesh->runtime.edit_data = MEM_cnew<EditMeshData>(__func__);
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return true;
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}
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bool BKE_mesh_runtime_reset_edit_data(Mesh *mesh)
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{
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EditMeshData *edit_data = mesh->runtime.edit_data;
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if (edit_data == nullptr) {
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return false;
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}
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MEM_SAFE_FREE(edit_data->polyCos);
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MEM_SAFE_FREE(edit_data->polyNos);
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MEM_SAFE_FREE(edit_data->vertexCos);
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MEM_SAFE_FREE(edit_data->vertexNos);
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return true;
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}
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bool BKE_mesh_runtime_clear_edit_data(Mesh *mesh)
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{
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if (mesh->runtime.edit_data == nullptr) {
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return false;
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}
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BKE_mesh_runtime_reset_edit_data(mesh);
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MEM_freeN(mesh->runtime.edit_data);
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mesh->runtime.edit_data = nullptr;
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return true;
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}
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void BKE_mesh_runtime_clear_geometry(Mesh *mesh)
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{
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if (mesh->runtime.bvh_cache) {
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bvhcache_free(mesh->runtime.bvh_cache);
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mesh->runtime.bvh_cache = nullptr;
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}
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MEM_SAFE_FREE(mesh->runtime.looptris.array);
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/* TODO(sergey): Does this really belong here? */
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if (mesh->runtime.subdiv_ccg != nullptr) {
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BKE_subdiv_ccg_destroy(mesh->runtime.subdiv_ccg);
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mesh->runtime.subdiv_ccg = nullptr;
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}
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BKE_shrinkwrap_discard_boundary_data(mesh);
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MEM_SAFE_FREE(mesh->runtime.subsurf_face_dot_tags);
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}
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/** \} */
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/* -------------------------------------------------------------------- */
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/** \name Mesh Batch Cache Callbacks
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* \{ */
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/* Draw Engine */
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void (*BKE_mesh_batch_cache_dirty_tag_cb)(Mesh *me, eMeshBatchDirtyMode mode) = nullptr;
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void (*BKE_mesh_batch_cache_free_cb)(Mesh *me) = nullptr;
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void BKE_mesh_batch_cache_dirty_tag(Mesh *me, eMeshBatchDirtyMode mode)
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{
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if (me->runtime.batch_cache) {
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BKE_mesh_batch_cache_dirty_tag_cb(me, mode);
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}
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}
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void BKE_mesh_batch_cache_free(Mesh *me)
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{
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if (me->runtime.batch_cache) {
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BKE_mesh_batch_cache_free_cb(me);
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}
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}
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/** \} */
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/* -------------------------------------------------------------------- */
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/** \name Mesh Runtime Validation
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* \{ */
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#ifndef NDEBUG
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bool BKE_mesh_runtime_is_valid(Mesh *me_eval)
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{
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const bool do_verbose = true;
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const bool do_fixes = false;
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bool is_valid = true;
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bool changed = true;
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if (do_verbose) {
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printf("MESH: %s\n", me_eval->id.name + 2);
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}
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is_valid &= BKE_mesh_validate_all_customdata(
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&me_eval->vdata,
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me_eval->totvert,
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&me_eval->edata,
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me_eval->totedge,
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&me_eval->ldata,
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me_eval->totloop,
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&me_eval->pdata,
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me_eval->totpoly,
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false, /* setting mask here isn't useful, gives false positives */
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do_verbose,
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do_fixes,
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&changed);
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is_valid &= BKE_mesh_validate_arrays(me_eval,
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me_eval->mvert,
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me_eval->totvert,
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me_eval->medge,
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me_eval->totedge,
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me_eval->mface,
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me_eval->totface,
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me_eval->mloop,
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me_eval->totloop,
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me_eval->mpoly,
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me_eval->totpoly,
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me_eval->dvert,
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do_verbose,
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do_fixes,
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&changed);
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BLI_assert(changed == false);
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return is_valid;
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}
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#endif /* NDEBUG */
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/** \} */
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