Motivation is to disambiguate on the naming level what the matrix actually means. It is very easy to understand the meaning backwards, especially since in Python the name goes the opposite way (it is called `world_matrix` in the Python API). It is important to disambiguate the naming without making developers to look into the comment in the header file (which is also not super clear either). Additionally, more clear naming facilitates the unit verification (or, in this case, space validation) when reading an expression. This patch calls the matrix `object_to_world` which makes it clear from the local code what is it exactly going on. This is only done on DNA level, and a lot of local variables still follow the old naming. A DNA rename is setup in a way that there is no change on the file level, so there should be no regressions at all. The possibility is to add `_matrix` or `_mat` suffix to the name to make it explicit that it is a matrix. Although, not sure if it really helps the readability, or is it something redundant. Differential Revision: https://developer.blender.org/D16328
681 lines
19 KiB
C
681 lines
19 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 modifiers
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*/
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#include "BLI_utildefines.h"
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#include "BLI_math.h"
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#include "BLI_simd.h"
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#include "BLI_task.h"
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#include "BLT_translation.h"
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#include "DNA_defaults.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_scene_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_deform.h"
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#include "BKE_editmesh.h"
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#include "BKE_lib_id.h"
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#include "BKE_lib_query.h"
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#include "BKE_mesh.h"
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#include "BKE_mesh_runtime.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 "BLO_read_write.h"
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#include "RNA_access.h"
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#include "RNA_prototypes.h"
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#include "MEM_guardedalloc.h"
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#include "DEG_depsgraph.h"
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#include "DEG_depsgraph_query.h"
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#include "MOD_ui_common.h"
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#include "MOD_util.h"
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static void initData(ModifierData *md)
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{
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MeshDeformModifierData *mmd = (MeshDeformModifierData *)md;
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BLI_assert(MEMCMP_STRUCT_AFTER_IS_ZERO(mmd, modifier));
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MEMCPY_STRUCT_AFTER(mmd, DNA_struct_default_get(MeshDeformModifierData), modifier);
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}
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static void freeData(ModifierData *md)
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{
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MeshDeformModifierData *mmd = (MeshDeformModifierData *)md;
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if (mmd->bindinfluences) {
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MEM_freeN(mmd->bindinfluences);
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}
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if (mmd->bindoffsets) {
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MEM_freeN(mmd->bindoffsets);
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}
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if (mmd->bindcagecos) {
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MEM_freeN(mmd->bindcagecos);
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}
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if (mmd->dyngrid) {
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MEM_freeN(mmd->dyngrid);
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}
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if (mmd->dyninfluences) {
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MEM_freeN(mmd->dyninfluences);
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}
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if (mmd->dynverts) {
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MEM_freeN(mmd->dynverts);
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}
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if (mmd->bindweights) {
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MEM_freeN(mmd->bindweights); /* deprecated */
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}
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if (mmd->bindcos) {
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MEM_freeN(mmd->bindcos); /* deprecated */
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}
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}
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static void copyData(const ModifierData *md, ModifierData *target, const int flag)
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{
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const MeshDeformModifierData *mmd = (const MeshDeformModifierData *)md;
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MeshDeformModifierData *tmmd = (MeshDeformModifierData *)target;
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BKE_modifier_copydata_generic(md, target, flag);
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if (mmd->bindinfluences) {
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tmmd->bindinfluences = MEM_dupallocN(mmd->bindinfluences);
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}
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if (mmd->bindoffsets) {
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tmmd->bindoffsets = MEM_dupallocN(mmd->bindoffsets);
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}
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if (mmd->bindcagecos) {
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tmmd->bindcagecos = MEM_dupallocN(mmd->bindcagecos);
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}
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if (mmd->dyngrid) {
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tmmd->dyngrid = MEM_dupallocN(mmd->dyngrid);
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}
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if (mmd->dyninfluences) {
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tmmd->dyninfluences = MEM_dupallocN(mmd->dyninfluences);
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}
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if (mmd->dynverts) {
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tmmd->dynverts = MEM_dupallocN(mmd->dynverts);
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}
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if (mmd->bindweights) {
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tmmd->bindweights = MEM_dupallocN(mmd->bindweights); /* deprecated */
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}
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if (mmd->bindcos) {
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tmmd->bindcos = MEM_dupallocN(mmd->bindcos); /* deprecated */
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}
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}
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static void requiredDataMask(ModifierData *md, CustomData_MeshMasks *r_cddata_masks)
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{
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MeshDeformModifierData *mmd = (MeshDeformModifierData *)md;
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/* ask for vertexgroups if we need them */
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if (mmd->defgrp_name[0] != '\0') {
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r_cddata_masks->vmask |= CD_MASK_MDEFORMVERT;
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}
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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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MeshDeformModifierData *mmd = (MeshDeformModifierData *)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 !mmd->object || mmd->object->type != OB_MESH;
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}
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static void foreachIDLink(ModifierData *md, Object *ob, IDWalkFunc walk, void *userData)
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{
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MeshDeformModifierData *mmd = (MeshDeformModifierData *)md;
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walk(userData, ob, (ID **)&mmd->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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MeshDeformModifierData *mmd = (MeshDeformModifierData *)md;
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if (mmd->object != NULL) {
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DEG_add_object_relation(ctx->node, mmd->object, DEG_OB_COMP_TRANSFORM, "Mesh Deform Modifier");
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DEG_add_object_relation(ctx->node, mmd->object, DEG_OB_COMP_GEOMETRY, "Mesh Deform Modifier");
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}
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/* We need own transformation as well. */
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DEG_add_depends_on_transform_relation(ctx->node, "Mesh Deform Modifier");
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}
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static float meshdeform_dynamic_bind(MeshDeformModifierData *mmd, float (*dco)[3], float vec[3])
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{
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MDefCell *cell;
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MDefInfluence *inf;
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float gridvec[3], dvec[3], ivec[3], wx, wy, wz;
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float weight, cageweight, totweight, *cageco;
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int i, j, a, x, y, z, size;
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#ifdef BLI_HAVE_SSE2
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__m128 co = _mm_setzero_ps();
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#else
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float co[3] = {0.0f, 0.0f, 0.0f};
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#endif
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totweight = 0.0f;
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size = mmd->dyngridsize;
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for (i = 0; i < 3; i++) {
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gridvec[i] = (vec[i] - mmd->dyncellmin[i] - mmd->dyncellwidth * 0.5f) / mmd->dyncellwidth;
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ivec[i] = (int)gridvec[i];
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dvec[i] = gridvec[i] - ivec[i];
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}
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for (i = 0; i < 8; i++) {
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if (i & 1) {
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x = ivec[0] + 1;
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wx = dvec[0];
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}
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else {
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x = ivec[0];
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wx = 1.0f - dvec[0];
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}
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if (i & 2) {
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y = ivec[1] + 1;
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wy = dvec[1];
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}
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else {
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y = ivec[1];
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wy = 1.0f - dvec[1];
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}
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if (i & 4) {
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z = ivec[2] + 1;
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wz = dvec[2];
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}
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else {
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z = ivec[2];
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wz = 1.0f - dvec[2];
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}
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CLAMP(x, 0, size - 1);
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CLAMP(y, 0, size - 1);
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CLAMP(z, 0, size - 1);
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a = x + y * size + z * size * size;
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weight = wx * wy * wz;
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cell = &mmd->dyngrid[a];
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inf = mmd->dyninfluences + cell->offset;
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for (j = 0; j < cell->influences_num; j++, inf++) {
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cageco = dco[inf->vertex];
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cageweight = weight * inf->weight;
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#ifdef BLI_HAVE_SSE2
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{
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__m128 cageweight_r = _mm_set1_ps(cageweight);
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/* This will load one extra element, this is ok because
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* we ignore that part of register anyway.
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*/
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__m128 cageco_r = _mm_loadu_ps(cageco);
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co = _mm_add_ps(co, _mm_mul_ps(cageco_r, cageweight_r));
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}
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#else
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co[0] += cageweight * cageco[0];
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co[1] += cageweight * cageco[1];
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co[2] += cageweight * cageco[2];
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#endif
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totweight += cageweight;
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}
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}
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#ifdef BLI_HAVE_SSE2
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copy_v3_v3(vec, (float *)&co);
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#else
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copy_v3_v3(vec, co);
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#endif
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return totweight;
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}
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typedef struct MeshdeformUserdata {
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/*const*/ MeshDeformModifierData *mmd;
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const MDeformVert *dvert;
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/*const*/ float (*dco)[3];
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int defgrp_index;
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float (*vertexCos)[3];
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float (*cagemat)[4];
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float (*icagemat)[3];
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} MeshdeformUserdata;
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static void meshdeform_vert_task(void *__restrict userdata,
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const int iter,
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const TaskParallelTLS *__restrict UNUSED(tls))
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{
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MeshdeformUserdata *data = userdata;
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/*const*/ MeshDeformModifierData *mmd = data->mmd;
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const MDeformVert *dvert = data->dvert;
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const int defgrp_index = data->defgrp_index;
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const int *offsets = mmd->bindoffsets;
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const MDefInfluence *__restrict influences = mmd->bindinfluences;
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/*const*/ float(*__restrict dco)[3] = data->dco;
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float(*vertexCos)[3] = data->vertexCos;
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float co[3];
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float weight, totweight, fac = 1.0f;
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if (mmd->flag & MOD_MDEF_DYNAMIC_BIND) {
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if (!mmd->dynverts[iter]) {
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return;
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}
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}
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if (dvert) {
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fac = BKE_defvert_find_weight(&dvert[iter], defgrp_index);
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if (mmd->flag & MOD_MDEF_INVERT_VGROUP) {
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fac = 1.0f - fac;
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}
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if (fac <= 0.0f) {
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return;
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}
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}
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if (mmd->flag & MOD_MDEF_DYNAMIC_BIND) {
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/* transform coordinate into cage's local space */
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mul_v3_m4v3(co, data->cagemat, vertexCos[iter]);
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totweight = meshdeform_dynamic_bind(mmd, dco, co);
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}
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else {
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totweight = 0.0f;
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zero_v3(co);
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int start = offsets[iter];
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int end = offsets[iter + 1];
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for (int a = start; a < end; a++) {
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weight = influences[a].weight;
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madd_v3_v3fl(co, dco[influences[a].vertex], weight);
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totweight += weight;
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}
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}
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if (totweight > 0.0f) {
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mul_v3_fl(co, fac / totweight);
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mul_m3_v3(data->icagemat, co);
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add_v3_v3(vertexCos[iter], co);
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}
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}
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static void meshdeformModifier_do(ModifierData *md,
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const ModifierEvalContext *ctx,
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Mesh *mesh,
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float (*vertexCos)[3],
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const int verts_num)
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{
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MeshDeformModifierData *mmd = (MeshDeformModifierData *)md;
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Object *ob = ctx->object;
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Mesh *cagemesh;
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const MDeformVert *dvert = NULL;
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float imat[4][4], cagemat[4][4], iobmat[4][4], icagemat[3][3], cmat[4][4];
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float(*dco)[3] = NULL, (*bindcagecos)[3];
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int a, cage_verts_num, defgrp_index;
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MeshdeformUserdata data;
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static int recursive_bind_sentinel = 0;
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if (mmd->object == NULL || (mmd->bindcagecos == NULL && mmd->bindfunc == NULL)) {
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return;
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}
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/* Get cage mesh.
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*
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* Only do this is the target object is in edit mode by itself, meaning
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* we don't allow linked edit meshes here.
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* This is because editbmesh_get_mesh_cage_and_final() might easily
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* conflict with the thread which evaluates object which is in the edit
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* mode for this mesh.
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*
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* We'll support this case once granular dependency graph is landed.
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*/
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Object *ob_target = mmd->object;
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cagemesh = BKE_modifier_get_evaluated_mesh_from_evaluated_object(ob_target);
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if (cagemesh == NULL) {
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BKE_modifier_set_error(ctx->object, md, "Cannot get mesh from cage object");
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return;
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}
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/* compute matrices to go in and out of cage object space */
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invert_m4_m4(imat, ob_target->object_to_world);
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mul_m4_m4m4(cagemat, imat, ob->object_to_world);
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mul_m4_m4m4(cmat, mmd->bindmat, cagemat);
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invert_m4_m4(iobmat, cmat);
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copy_m3_m4(icagemat, iobmat);
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/* bind weights if needed */
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if (!mmd->bindcagecos) {
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/* progress bar redraw can make this recursive. */
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if (!DEG_is_active(ctx->depsgraph)) {
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BKE_modifier_set_error(ob, md, "Attempt to bind from inactive dependency graph");
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goto finally;
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}
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if (!recursive_bind_sentinel) {
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recursive_bind_sentinel = 1;
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mmd->bindfunc(ob, mmd, cagemesh, (float *)vertexCos, verts_num, cagemat);
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recursive_bind_sentinel = 0;
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}
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goto finally;
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}
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/* verify we have compatible weights */
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cage_verts_num = BKE_mesh_wrapper_vert_len(cagemesh);
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if (mmd->verts_num != verts_num) {
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BKE_modifier_set_error(ob, md, "Vertices changed from %d to %d", mmd->verts_num, verts_num);
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goto finally;
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}
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else if (mmd->cage_verts_num != cage_verts_num) {
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BKE_modifier_set_error(
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ob, md, "Cage vertices changed from %d to %d", mmd->cage_verts_num, cage_verts_num);
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goto finally;
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}
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else if (mmd->bindcagecos == NULL) {
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BKE_modifier_set_error(ob, md, "Bind data missing");
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goto finally;
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}
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/* We allocate 1 element extra to make it possible to
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* load the values to SSE registers, which are float4.
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*/
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dco = MEM_calloc_arrayN((cage_verts_num + 1), sizeof(*dco), "MDefDco");
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zero_v3(dco[cage_verts_num]);
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/* setup deformation data */
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BKE_mesh_wrapper_vert_coords_copy(cagemesh, dco, cage_verts_num);
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bindcagecos = (float(*)[3])mmd->bindcagecos;
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for (a = 0; a < cage_verts_num; a++) {
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/* Get cage vertex in world-space with binding transform. */
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float co[3];
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mul_v3_m4v3(co, mmd->bindmat, dco[a]);
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/* compute difference with world space bind coord */
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sub_v3_v3v3(dco[a], co, bindcagecos[a]);
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}
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MOD_get_vgroup(ob, mesh, mmd->defgrp_name, &dvert, &defgrp_index);
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/* Initialize data to be pass to the for body function. */
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data.mmd = mmd;
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data.dvert = dvert;
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data.dco = dco;
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data.defgrp_index = defgrp_index;
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data.vertexCos = vertexCos;
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data.cagemat = cagemat;
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data.icagemat = icagemat;
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/* Do deformation. */
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TaskParallelSettings settings;
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BLI_parallel_range_settings_defaults(&settings);
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settings.min_iter_per_thread = 16;
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BLI_task_parallel_range(0, verts_num, &data, meshdeform_vert_task, &settings);
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finally:
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MEM_SAFE_FREE(dco);
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}
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static void deformVerts(ModifierData *md,
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const ModifierEvalContext *ctx,
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Mesh *mesh,
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float (*vertexCos)[3],
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int verts_num)
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{
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Mesh *mesh_src = MOD_deform_mesh_eval_get(ctx->object, NULL, mesh, NULL, verts_num, false);
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MOD_previous_vcos_store(md, vertexCos); /* if next modifier needs original vertices */
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meshdeformModifier_do(md, ctx, mesh_src, vertexCos, verts_num);
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if (!ELEM(mesh_src, NULL, mesh)) {
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BKE_id_free(NULL, mesh_src);
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}
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}
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static void deformVertsEM(ModifierData *md,
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const ModifierEvalContext *ctx,
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struct BMEditMesh *editData,
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Mesh *mesh,
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float (*vertexCos)[3],
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int verts_num)
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{
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Mesh *mesh_src = MOD_deform_mesh_eval_get(ctx->object, editData, mesh, NULL, verts_num, false);
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/* TODO(@campbellbarton): use edit-mode data only (remove this line). */
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if (mesh_src != NULL) {
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BKE_mesh_wrapper_ensure_mdata(mesh_src);
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}
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meshdeformModifier_do(md, ctx, mesh_src, vertexCos, verts_num);
|
|
|
|
if (!ELEM(mesh_src, NULL, mesh)) {
|
|
BKE_id_free(NULL, mesh_src);
|
|
}
|
|
}
|
|
|
|
#define MESHDEFORM_MIN_INFLUENCE 0.00001f
|
|
|
|
void BKE_modifier_mdef_compact_influences(ModifierData *md)
|
|
{
|
|
MeshDeformModifierData *mmd = (MeshDeformModifierData *)md;
|
|
float weight, *weights, totweight;
|
|
int influences_num, verts_num, cage_verts_num, a, b;
|
|
|
|
weights = mmd->bindweights;
|
|
if (!weights) {
|
|
return;
|
|
}
|
|
|
|
verts_num = mmd->verts_num;
|
|
cage_verts_num = mmd->cage_verts_num;
|
|
|
|
/* count number of influences above threshold */
|
|
for (b = 0; b < verts_num; b++) {
|
|
for (a = 0; a < cage_verts_num; a++) {
|
|
weight = weights[a + b * cage_verts_num];
|
|
|
|
if (weight > MESHDEFORM_MIN_INFLUENCE) {
|
|
mmd->influences_num++;
|
|
}
|
|
}
|
|
}
|
|
|
|
/* allocate bind influences */
|
|
mmd->bindinfluences = MEM_calloc_arrayN(
|
|
mmd->influences_num, sizeof(MDefInfluence), "MDefBindInfluence");
|
|
mmd->bindoffsets = MEM_calloc_arrayN((verts_num + 1), sizeof(int), "MDefBindOffset");
|
|
|
|
/* write influences */
|
|
influences_num = 0;
|
|
|
|
for (b = 0; b < verts_num; b++) {
|
|
mmd->bindoffsets[b] = influences_num;
|
|
totweight = 0.0f;
|
|
|
|
/* sum total weight */
|
|
for (a = 0; a < cage_verts_num; a++) {
|
|
weight = weights[a + b * cage_verts_num];
|
|
|
|
if (weight > MESHDEFORM_MIN_INFLUENCE) {
|
|
totweight += weight;
|
|
}
|
|
}
|
|
|
|
/* assign weights normalized */
|
|
for (a = 0; a < cage_verts_num; a++) {
|
|
weight = weights[a + b * cage_verts_num];
|
|
|
|
if (weight > MESHDEFORM_MIN_INFLUENCE) {
|
|
mmd->bindinfluences[influences_num].weight = weight / totweight;
|
|
mmd->bindinfluences[influences_num].vertex = a;
|
|
influences_num++;
|
|
}
|
|
}
|
|
}
|
|
|
|
mmd->bindoffsets[b] = influences_num;
|
|
|
|
/* free */
|
|
MEM_freeN(mmd->bindweights);
|
|
mmd->bindweights = NULL;
|
|
}
|
|
|
|
static void panel_draw(const bContext *UNUSED(C), Panel *panel)
|
|
{
|
|
uiLayout *col;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA ob_ptr;
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, &ob_ptr);
|
|
|
|
bool is_bound = RNA_boolean_get(ptr, "is_bound");
|
|
|
|
uiLayoutSetPropSep(layout, true);
|
|
|
|
col = uiLayoutColumn(layout, true);
|
|
uiLayoutSetEnabled(col, !is_bound);
|
|
uiItemR(col, ptr, "object", 0, NULL, ICON_NONE);
|
|
|
|
modifier_vgroup_ui(layout, ptr, &ob_ptr, "vertex_group", "invert_vertex_group", NULL);
|
|
|
|
col = uiLayoutColumn(layout, false);
|
|
uiLayoutSetEnabled(col, !is_bound);
|
|
uiItemR(col, ptr, "precision", 0, NULL, ICON_NONE);
|
|
uiItemR(col, ptr, "use_dynamic_bind", 0, NULL, ICON_NONE);
|
|
|
|
uiItemO(layout,
|
|
is_bound ? IFACE_("Unbind") : IFACE_("Bind"),
|
|
ICON_NONE,
|
|
"OBJECT_OT_meshdeform_bind");
|
|
|
|
modifier_panel_end(layout, ptr);
|
|
}
|
|
|
|
static void panelRegister(ARegionType *region_type)
|
|
{
|
|
modifier_panel_register(region_type, eModifierType_MeshDeform, panel_draw);
|
|
}
|
|
|
|
static void blendWrite(BlendWriter *writer, const ID *id_owner, const ModifierData *md)
|
|
{
|
|
MeshDeformModifierData mmd = *(const MeshDeformModifierData *)md;
|
|
const bool is_undo = BLO_write_is_undo(writer);
|
|
|
|
if (ID_IS_OVERRIDE_LIBRARY(id_owner) && !is_undo) {
|
|
BLI_assert(!ID_IS_LINKED(id_owner));
|
|
const bool is_local = (md->flag & eModifierFlag_OverrideLibrary_Local) != 0;
|
|
if (!is_local) {
|
|
/* Modifier coming from linked data cannot be bound from an override, so we can remove all
|
|
* binding data, can save a significant amount of memory. */
|
|
mmd.influences_num = 0;
|
|
mmd.bindinfluences = NULL;
|
|
mmd.verts_num = 0;
|
|
mmd.bindoffsets = NULL;
|
|
mmd.cage_verts_num = 0;
|
|
mmd.bindcagecos = NULL;
|
|
mmd.dyngridsize = 0;
|
|
mmd.dyngrid = NULL;
|
|
mmd.influences_num = 0;
|
|
mmd.dyninfluences = NULL;
|
|
mmd.dynverts = NULL;
|
|
}
|
|
}
|
|
|
|
const int size = mmd.dyngridsize;
|
|
|
|
BLO_write_struct_at_address(writer, MeshDeformModifierData, md, &mmd);
|
|
|
|
BLO_write_struct_array(writer, MDefInfluence, mmd.influences_num, mmd.bindinfluences);
|
|
|
|
/* NOTE: `bindoffset` is abusing `verts_num + 1` as its size, this becomes an incorrect value in
|
|
* case `verts_num == 0`, since `bindoffset` is then NULL, not a size 1 allocated array. */
|
|
if (mmd.verts_num > 0) {
|
|
BLO_write_int32_array(writer, mmd.verts_num + 1, mmd.bindoffsets);
|
|
}
|
|
else {
|
|
BLI_assert(mmd.bindoffsets == NULL);
|
|
}
|
|
|
|
BLO_write_float3_array(writer, mmd.cage_verts_num, mmd.bindcagecos);
|
|
BLO_write_struct_array(writer, MDefCell, size * size * size, mmd.dyngrid);
|
|
BLO_write_struct_array(writer, MDefInfluence, mmd.influences_num, mmd.dyninfluences);
|
|
BLO_write_int32_array(writer, mmd.verts_num, mmd.dynverts);
|
|
}
|
|
|
|
static void blendRead(BlendDataReader *reader, ModifierData *md)
|
|
{
|
|
MeshDeformModifierData *mmd = (MeshDeformModifierData *)md;
|
|
|
|
BLO_read_data_address(reader, &mmd->bindinfluences);
|
|
|
|
/* NOTE: `bindoffset` is abusing `verts_num + 1` as its size, this becomes an incorrect value in
|
|
* case `verts_num == 0`, since `bindoffset` is then NULL, not a size 1 allocated array. */
|
|
if (mmd->verts_num > 0) {
|
|
BLO_read_int32_array(reader, mmd->verts_num + 1, &mmd->bindoffsets);
|
|
}
|
|
|
|
BLO_read_float3_array(reader, mmd->cage_verts_num, &mmd->bindcagecos);
|
|
BLO_read_data_address(reader, &mmd->dyngrid);
|
|
BLO_read_data_address(reader, &mmd->dyninfluences);
|
|
BLO_read_int32_array(reader, mmd->verts_num, &mmd->dynverts);
|
|
|
|
/* Deprecated storage. */
|
|
BLO_read_float_array(reader, mmd->verts_num, &mmd->bindweights);
|
|
BLO_read_float3_array(reader, mmd->cage_verts_num, &mmd->bindcos);
|
|
}
|
|
|
|
ModifierTypeInfo modifierType_MeshDeform = {
|
|
/* name */ N_("MeshDeform"),
|
|
/* structName */ "MeshDeformModifierData",
|
|
/* structSize */ sizeof(MeshDeformModifierData),
|
|
/* srna */ &RNA_MeshDeformModifier,
|
|
/* type */ eModifierTypeType_OnlyDeform,
|
|
/* flags */ eModifierTypeFlag_AcceptsCVs | eModifierTypeFlag_AcceptsVertexCosOnly |
|
|
eModifierTypeFlag_SupportsEditmode,
|
|
/* icon */ ICON_MOD_MESHDEFORM,
|
|
|
|
/* copyData */ copyData,
|
|
|
|
/* deformVerts */ deformVerts,
|
|
/* deformMatrices */ NULL,
|
|
/* deformVertsEM */ deformVertsEM,
|
|
/* deformMatricesEM */ NULL,
|
|
/* modifyMesh */ NULL,
|
|
/* modifyGeometrySet */ NULL,
|
|
|
|
/* initData */ initData,
|
|
/* requiredDataMask */ requiredDataMask,
|
|
/* freeData */ freeData,
|
|
/* isDisabled */ isDisabled,
|
|
/* updateDepsgraph */ updateDepsgraph,
|
|
/* dependsOnTime */ NULL,
|
|
/* dependsOnNormals */ NULL,
|
|
/* foreachIDLink */ foreachIDLink,
|
|
/* foreachTexLink */ NULL,
|
|
/* freeRuntimeData */ NULL,
|
|
/* panelRegister */ panelRegister,
|
|
/* blendWrite */ blendWrite,
|
|
/* blendRead */ blendRead,
|
|
};
|