Previously we generally expected CustomData layers to have implicit sharing info, but we didn't require it. This PR clarifies that we do require layers with non-null data to have implicit sharing info. This generally makes code simpler because we don't have to have a separate code path for non-shared layers. For example, it makes the "totelem" arguments for layer freeing functions unnecessary, since shared data knows how to free itself. Those arguments are removed in this PR. Pull Request: https://projects.blender.org/blender/blender/pulls/134578
387 lines
12 KiB
C++
387 lines
12 KiB
C++
/* SPDX-FileCopyrightText: 2023 Blender Authors
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*
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* SPDX-License-Identifier: GPL-2.0-or-later */
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/** \file
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* \ingroup bke
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*
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* The primary purpose of this API is to avoid unnecessary mesh conversion for the final
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* output of a modified mesh.
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*
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* This API handles the case when the modifier stack outputs a mesh which does not have
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* #Mesh data (#Mesh::faces(), corner verts, corner edges, edges, etc).
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* Currently this is used so the resulting mesh can have #BMEditMesh data,
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* postponing the converting until it's needed or avoiding conversion entirely
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* which can be an expensive operation.
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* Once converted, the meshes type changes to #ME_WRAPPER_TYPE_MDATA,
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* although the edit mesh is not cleared.
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*
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* This API exposes functions that abstract over the different kinds of internal data,
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* as well as supporting converting the mesh into regular mesh.
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*/
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#include "BLI_math_matrix.h"
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#include "BLI_math_vector.h"
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#include "BLI_task.hh"
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#include "BLI_utildefines.h"
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#include "BKE_editmesh.hh"
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#include "BKE_editmesh_cache.hh"
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#include "BKE_lib_id.hh"
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#include "BKE_mesh.hh"
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#include "BKE_mesh_runtime.hh"
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#include "BKE_mesh_wrapper.hh"
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#include "BKE_modifier.hh"
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#include "BKE_subdiv.hh"
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#include "BKE_subdiv_mesh.hh"
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#include "BKE_subdiv_modifier.hh"
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using blender::float3;
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using blender::Span;
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Mesh *BKE_mesh_wrapper_from_editmesh(std::shared_ptr<BMEditMesh> em,
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const CustomData_MeshMasks *cd_mask_extra,
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const Mesh *me_settings)
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{
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Mesh *mesh = static_cast<Mesh *>(BKE_id_new_nomain(ID_ME, nullptr));
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BKE_mesh_copy_parameters_for_eval(mesh, me_settings);
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BKE_mesh_runtime_ensure_edit_data(mesh);
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mesh->runtime->wrapper_type = ME_WRAPPER_TYPE_BMESH;
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if (cd_mask_extra) {
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mesh->runtime->cd_mask_extra = *cd_mask_extra;
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}
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/* Use edit-mesh directly where possible. */
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mesh->runtime->is_original_bmesh = true;
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/* Until the mesh is modified destructively it can be considered "deformed". */
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mesh->runtime->deformed_only = true;
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mesh->runtime->edit_mesh = std::move(em);
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/* Make sure we crash if these are ever used. */
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#ifndef NDEBUG
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mesh->verts_num = INT_MAX;
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mesh->edges_num = INT_MAX;
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mesh->faces_num = INT_MAX;
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mesh->corners_num = INT_MAX;
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#else
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mesh->verts_num = 0;
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mesh->edges_num = 0;
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mesh->faces_num = 0;
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mesh->corners_num = 0;
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#endif
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return mesh;
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}
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void BKE_mesh_wrapper_ensure_mdata(Mesh *mesh)
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{
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std::lock_guard lock{mesh->runtime->eval_mutex};
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if (mesh->runtime->wrapper_type == ME_WRAPPER_TYPE_MDATA) {
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return;
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}
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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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switch (mesh->runtime->wrapper_type) {
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case ME_WRAPPER_TYPE_MDATA:
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case ME_WRAPPER_TYPE_SUBD: {
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break; /* Quiet warning. */
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}
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case ME_WRAPPER_TYPE_BMESH: {
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mesh->verts_num = 0;
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mesh->edges_num = 0;
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mesh->faces_num = 0;
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mesh->corners_num = 0;
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BLI_assert(mesh->runtime->edit_mesh != nullptr);
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BLI_assert(mesh->runtime->edit_data != nullptr);
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BMEditMesh *em = mesh->runtime->edit_mesh.get();
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BM_mesh_bm_to_me_for_eval(*em->bm, *mesh, &mesh->runtime->cd_mask_extra);
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/* Adding original index layers here assumes that all BMesh Mesh wrappers are created from
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* original edit mode meshes (the only case where adding original indices makes sense).
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* If that assumption is broken, the layers might be incorrect because they might not
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* actually be "original".
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*
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* There is also a performance aspect, where this also assumes that original indices are
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* always needed when converting a BMesh to a mesh with the mesh wrapper system. That might
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* be wrong, but it's not harmful. */
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BKE_mesh_ensure_default_orig_index_customdata_no_check(mesh);
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blender::bke::EditMeshData &edit_data = *mesh->runtime->edit_data;
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if (!edit_data.vert_positions.is_empty()) {
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mesh->vert_positions_for_write().copy_from(edit_data.vert_positions);
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mesh->runtime->is_original_bmesh = false;
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}
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mesh->runtime->edit_data.reset();
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break;
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}
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}
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/* Keep type assignment last, so that read-only access only uses the mdata code paths after all
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* the underlying data has been initialized. */
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mesh->runtime->wrapper_type = ME_WRAPPER_TYPE_MDATA;
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});
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}
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/* -------------------------------------------------------------------- */
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/** \name Mesh Coordinate Access
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* \{ */
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Span<float3> BKE_mesh_wrapper_vert_coords(const Mesh *mesh)
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{
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switch (mesh->runtime->wrapper_type) {
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case ME_WRAPPER_TYPE_BMESH:
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return mesh->runtime->edit_data->vert_positions;
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case ME_WRAPPER_TYPE_MDATA:
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case ME_WRAPPER_TYPE_SUBD:
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return mesh->vert_positions();
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}
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BLI_assert_unreachable();
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return {};
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}
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Span<float3> BKE_mesh_wrapper_face_normals(Mesh *mesh)
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{
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switch (mesh->runtime->wrapper_type) {
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case ME_WRAPPER_TYPE_BMESH:
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return BKE_editmesh_cache_ensure_face_normals(*mesh->runtime->edit_mesh,
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*mesh->runtime->edit_data);
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case ME_WRAPPER_TYPE_MDATA:
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case ME_WRAPPER_TYPE_SUBD:
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return mesh->face_normals();
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}
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BLI_assert_unreachable();
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return {};
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}
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void BKE_mesh_wrapper_tag_positions_changed(Mesh *mesh)
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{
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switch (mesh->runtime->wrapper_type) {
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case ME_WRAPPER_TYPE_BMESH:
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if (blender::bke::EditMeshData *edit_data = mesh->runtime->edit_data.get()) {
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edit_data->vert_normals = {};
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edit_data->face_centers = {};
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edit_data->face_normals = {};
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}
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break;
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case ME_WRAPPER_TYPE_MDATA:
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case ME_WRAPPER_TYPE_SUBD:
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mesh->tag_positions_changed();
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break;
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}
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}
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void BKE_mesh_wrapper_vert_coords_copy(const Mesh *mesh, blender::MutableSpan<float3> positions)
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{
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switch (mesh->runtime->wrapper_type) {
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case ME_WRAPPER_TYPE_BMESH: {
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BMesh *bm = mesh->runtime->edit_mesh->bm;
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const blender::bke::EditMeshData &edit_data = *mesh->runtime->edit_data;
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if (!edit_data.vert_positions.is_empty()) {
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positions.copy_from(edit_data.vert_positions);
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}
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else {
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BMIter iter;
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BMVert *v;
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int i;
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BM_ITER_MESH_INDEX (v, &iter, bm, BM_VERTS_OF_MESH, i) {
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copy_v3_v3(positions[i], v->co);
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}
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}
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return;
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}
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case ME_WRAPPER_TYPE_MDATA:
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case ME_WRAPPER_TYPE_SUBD: {
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positions.copy_from(mesh->vert_positions());
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return;
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}
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}
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BLI_assert_unreachable();
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}
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void BKE_mesh_wrapper_vert_coords_copy_with_mat4(const Mesh *mesh,
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float (*vert_coords)[3],
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int vert_coords_len,
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const float mat[4][4])
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{
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switch (mesh->runtime->wrapper_type) {
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case ME_WRAPPER_TYPE_BMESH: {
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BMesh *bm = mesh->runtime->edit_mesh->bm;
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BLI_assert(vert_coords_len == bm->totvert);
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const blender::bke::EditMeshData &edit_data = *mesh->runtime->edit_data;
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if (!edit_data.vert_positions.is_empty()) {
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for (int i = 0; i < vert_coords_len; i++) {
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mul_v3_m4v3(vert_coords[i], mat, edit_data.vert_positions[i]);
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}
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}
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else {
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BMIter iter;
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BMVert *v;
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int i;
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BM_ITER_MESH_INDEX (v, &iter, bm, BM_VERTS_OF_MESH, i) {
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mul_v3_m4v3(vert_coords[i], mat, v->co);
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}
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}
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return;
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}
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case ME_WRAPPER_TYPE_MDATA:
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case ME_WRAPPER_TYPE_SUBD: {
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BLI_assert(vert_coords_len == mesh->verts_num);
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const Span<float3> positions = mesh->vert_positions();
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for (int i = 0; i < vert_coords_len; i++) {
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mul_v3_m4v3(vert_coords[i], mat, positions[i]);
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}
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return;
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}
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}
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BLI_assert_unreachable();
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}
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/** \} */
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/* -------------------------------------------------------------------- */
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/** \name Mesh Array Length Access
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* \{ */
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int BKE_mesh_wrapper_vert_len(const Mesh *mesh)
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{
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switch (mesh->runtime->wrapper_type) {
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case ME_WRAPPER_TYPE_BMESH:
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return mesh->runtime->edit_mesh->bm->totvert;
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case ME_WRAPPER_TYPE_MDATA:
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case ME_WRAPPER_TYPE_SUBD:
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return mesh->verts_num;
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}
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BLI_assert_unreachable();
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return -1;
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}
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int BKE_mesh_wrapper_edge_len(const Mesh *mesh)
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{
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switch (mesh->runtime->wrapper_type) {
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case ME_WRAPPER_TYPE_BMESH:
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return mesh->runtime->edit_mesh->bm->totedge;
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case ME_WRAPPER_TYPE_MDATA:
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case ME_WRAPPER_TYPE_SUBD:
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return mesh->edges_num;
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}
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BLI_assert_unreachable();
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return -1;
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}
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int BKE_mesh_wrapper_loop_len(const Mesh *mesh)
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{
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switch (mesh->runtime->wrapper_type) {
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case ME_WRAPPER_TYPE_BMESH:
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return mesh->runtime->edit_mesh->bm->totloop;
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case ME_WRAPPER_TYPE_MDATA:
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case ME_WRAPPER_TYPE_SUBD:
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return mesh->corners_num;
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}
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BLI_assert_unreachable();
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return -1;
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}
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int BKE_mesh_wrapper_face_len(const Mesh *mesh)
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{
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switch (mesh->runtime->wrapper_type) {
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case ME_WRAPPER_TYPE_BMESH:
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return mesh->runtime->edit_mesh->bm->totface;
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case ME_WRAPPER_TYPE_MDATA:
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case ME_WRAPPER_TYPE_SUBD:
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return mesh->faces_num;
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}
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BLI_assert_unreachable();
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return -1;
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}
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/** \} */
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/* -------------------------------------------------------------------- */
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/** \name CPU Subdivision Evaluation
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* \{ */
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static Mesh *mesh_wrapper_ensure_subdivision(Mesh *mesh)
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{
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using namespace blender::bke;
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SubsurfRuntimeData *runtime_data = mesh->runtime->subsurf_runtime_data;
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if (runtime_data == nullptr || runtime_data->settings.level == 0) {
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return mesh;
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}
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/* Initialize the settings before ensuring the descriptor as this is checked to decide whether
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* subdivision is needed at all, and checking the descriptor status might involve checking if the
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* data is out-of-date, which is a very expensive operation. */
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subdiv::ToMeshSettings mesh_settings;
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mesh_settings.resolution = runtime_data->resolution;
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mesh_settings.use_optimal_display = runtime_data->use_optimal_display;
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if (mesh_settings.resolution < 3) {
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return mesh;
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}
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subdiv::Subdiv *subdiv = BKE_subsurf_modifier_subdiv_descriptor_ensure(
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runtime_data, mesh, false);
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if (subdiv == nullptr) {
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/* Happens on bad topology, but also on empty input mesh. */
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return mesh;
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}
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const bool use_clnors = runtime_data->use_loop_normals;
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if (use_clnors) {
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/* If custom normals are present and the option is turned on calculate the split
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* normals and clear flag so the normals get interpolated to the result mesh. */
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void *data = CustomData_add_layer(
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&mesh->corner_data, CD_NORMAL, CD_CONSTRUCT, mesh->corners_num);
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memcpy(data, mesh->corner_normals().data(), mesh->corner_normals().size_in_bytes());
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}
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Mesh *subdiv_mesh = subdiv::subdiv_to_mesh(subdiv, &mesh_settings, mesh);
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if (use_clnors) {
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mesh_set_custom_normals_normalized(
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*subdiv_mesh,
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{static_cast<float3 *>(CustomData_get_layer_for_write(
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&subdiv_mesh->corner_data, CD_NORMAL, subdiv_mesh->corners_num)),
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subdiv_mesh->corners_num});
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CustomData_free_layers(&subdiv_mesh->corner_data, CD_NORMAL);
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}
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if (!ELEM(subdiv, runtime_data->subdiv_cpu, runtime_data->subdiv_gpu)) {
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subdiv::free(subdiv);
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}
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if (subdiv_mesh != mesh) {
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if (mesh->runtime->mesh_eval != nullptr) {
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BKE_id_free(nullptr, mesh->runtime->mesh_eval);
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}
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mesh->runtime->mesh_eval = subdiv_mesh;
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mesh->runtime->wrapper_type = ME_WRAPPER_TYPE_SUBD;
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}
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return mesh->runtime->mesh_eval;
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}
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Mesh *BKE_mesh_wrapper_ensure_subdivision(Mesh *mesh)
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{
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std::lock_guard lock{mesh->runtime->eval_mutex};
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if (mesh->runtime->wrapper_type == ME_WRAPPER_TYPE_SUBD) {
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return mesh->runtime->mesh_eval;
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}
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Mesh *result;
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/* Must isolate multithreaded tasks while holding a mutex lock. */
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blender::threading::isolate_task([&]() { result = mesh_wrapper_ensure_subdivision(mesh); });
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return result;
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}
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/** \} */
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