When a change happens which invalidates view layers the syncing will be postponed until the first usage.
This will improve importing or adding many objects in a single operation/script.
`BKE_view_layer_need_resync_tag` is used to tag the view layer to be out of sync. Before accessing
`BKE_view_layer_active_base_get`, `BKE_view_layer_active_object_get`, `BKE_view_layer_active_collection`
or `BKE_view_layer_object_bases` the caller should call `BKE_view_layer_synced_ensure`.
Having two functions ensures that partial syncing could be added as smaller patches in the future. Tagging a
view layer out of sync could be replaced with a partial sync. Eventually the number of full resyncs could be
reduced. After all tagging has been replaced with partial syncs the ensure_sync could be phased out.
This patch has been added to discuss the details and consequences of the current approach. For clarity
the call to BKE_view_layer_ensure_sync is placed close to the getters.
In the future this could be placed in more strategical places to reduce the number of calls or improve
performance. Finding those strategical places isn't that clear. When multiple operations are grouped
in a single script you might want to always check for resync.
Some areas found that can be improved. This list isn't complete.
These areas aren't addressed by this patch as these changes would be hard to detect to the reviewer.
The idea is to add changes to these areas as a separate patch. It might be that the initial commit would reduce
performance compared to master, but will be fixed by the additional patches.
**Object duplication**
During object duplication the syncing is temporarily disabled. With this patch this isn't useful as when disabled
the view_layer is accessed to locate bases. This can be improved by first locating the source bases, then duplicate
and sync and locate the new bases. Will be solved in a separate patch for clarity reasons ({D15886}).
**Object add**
`BKE_object_add` not only adds a new object, but also selects and activates the new base. This requires the
view_layer to be resynced. Some callers reverse the selection and activation (See `get_new_constraint_target`).
We should make the selection and activation optional. This would make it possible to add multiple objects
without having to resync per object.
**Postpone Activate Base**
Setting the basact is done in many locations. They follow a rule as after an action find the base and set
the basact. Finding the base could require a resync. The idea is to store in the view_layer the object which
base will be set in the basact during the next sync, reducing the times resyncing needs to happen.
Reviewed By: mont29
Maniphest Tasks: T73411
Differential Revision: https://developer.blender.org/D15885
486 lines
15 KiB
C
486 lines
15 KiB
C
/* SPDX-License-Identifier: GPL-2.0-or-later */
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/** \file
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* \ingroup edobj
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*/
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#include <stdlib.h>
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#include <string.h>
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#include "DNA_anim_types.h"
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#include "DNA_armature_types.h"
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#include "DNA_collection_types.h"
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#include "DNA_meta_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 "BLI_listbase.h"
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#include "BLI_math.h"
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#include "BLI_utildefines.h"
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#include "BKE_action.h"
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#include "BKE_armature.h"
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#include "BKE_editmesh.h"
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#include "BKE_lattice.h"
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#include "BKE_layer.h"
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#include "BKE_object.h"
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#include "BKE_scene.h"
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#include "DEG_depsgraph_query.h"
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#include "WM_types.h"
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#include "ED_curve.h"
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#include "ED_object.h" /* own include */
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#include "MEM_guardedalloc.h"
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/* -------------------------------------------------------------------- */
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/** \name Active Element Center
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* \{ */
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bool ED_object_calc_active_center_for_editmode(Object *obedit,
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const bool select_only,
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float r_center[3])
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{
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switch (obedit->type) {
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case OB_MESH: {
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BMEditMesh *em = BKE_editmesh_from_object(obedit);
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BMEditSelection ese;
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if (BM_select_history_active_get(em->bm, &ese)) {
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BM_editselection_center(&ese, r_center);
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return true;
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}
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break;
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}
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case OB_ARMATURE: {
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bArmature *arm = obedit->data;
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EditBone *ebo = arm->act_edbone;
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if (ebo && (!select_only || (ebo->flag & (BONE_SELECTED | BONE_ROOTSEL)))) {
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copy_v3_v3(r_center, ebo->head);
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return true;
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}
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break;
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}
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case OB_CURVES_LEGACY:
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case OB_SURF: {
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Curve *cu = obedit->data;
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if (ED_curve_active_center(cu, r_center)) {
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return true;
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}
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break;
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}
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case OB_MBALL: {
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MetaBall *mb = obedit->data;
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MetaElem *ml_act = mb->lastelem;
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if (ml_act && (!select_only || (ml_act->flag & SELECT))) {
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copy_v3_v3(r_center, &ml_act->x);
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return true;
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}
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break;
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}
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case OB_LATTICE: {
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BPoint *actbp = BKE_lattice_active_point_get(obedit->data);
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if (actbp) {
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copy_v3_v3(r_center, actbp->vec);
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return true;
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}
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break;
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}
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}
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return false;
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}
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bool ED_object_calc_active_center_for_posemode(Object *ob,
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const bool select_only,
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float r_center[3])
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{
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bPoseChannel *pchan = BKE_pose_channel_active_if_layer_visible(ob);
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if (pchan && (!select_only || (pchan->bone->flag & BONE_SELECTED))) {
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copy_v3_v3(r_center, pchan->pose_head);
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return true;
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}
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return false;
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}
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bool ED_object_calc_active_center(Object *ob, const bool select_only, float r_center[3])
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{
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if (ob->mode & OB_MODE_EDIT) {
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if (ED_object_calc_active_center_for_editmode(ob, select_only, r_center)) {
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mul_m4_v3(ob->obmat, r_center);
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return true;
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}
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return false;
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}
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if (ob->mode & OB_MODE_POSE) {
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if (ED_object_calc_active_center_for_posemode(ob, select_only, r_center)) {
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mul_m4_v3(ob->obmat, r_center);
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return true;
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}
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return false;
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}
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if (!select_only || (ob->base_flag & BASE_SELECTED)) {
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copy_v3_v3(r_center, ob->obmat[3]);
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return true;
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}
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return false;
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}
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/** \} */
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/* -------------------------------------------------------------------- */
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/** \name Object Child Skip
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*
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* Don't transform unselected children, this is done using the parent inverse matrix.
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*
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* \note The complex logic here is caused by mixed selection within a single selection chain,
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* otherwise we only need #XFORM_OB_SKIP_CHILD_PARENT_IS_XFORM for single objects.
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*
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* \{ */
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struct XFormObjectSkipChild_Container {
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GHash *obchild_in_obmode_map;
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};
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struct XFormObjectSkipChild {
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float obmat_orig[4][4];
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float parent_obmat_orig[4][4];
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float parent_obmat_inv_orig[4][4];
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float parent_recurse_obmat_orig[4][4];
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float parentinv_orig[4][4];
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Object *ob_parent_recurse;
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int mode;
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};
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struct XFormObjectSkipChild_Container *ED_object_xform_skip_child_container_create(void)
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{
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struct XFormObjectSkipChild_Container *xcs = MEM_callocN(sizeof(*xcs), __func__);
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if (xcs->obchild_in_obmode_map == NULL) {
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xcs->obchild_in_obmode_map = BLI_ghash_ptr_new(__func__);
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}
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return xcs;
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}
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void ED_object_xform_skip_child_container_item_ensure_from_array(
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struct XFormObjectSkipChild_Container *xcs,
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const Scene *scene,
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ViewLayer *view_layer,
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Object **objects,
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uint objects_len)
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{
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GSet *objects_in_transdata = BLI_gset_ptr_new_ex(__func__, objects_len);
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for (uint ob_index = 0; ob_index < objects_len; ob_index++) {
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Object *ob = objects[ob_index];
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BLI_gset_add(objects_in_transdata, ob);
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}
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BKE_view_layer_synced_ensure(scene, view_layer);
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ListBase *object_bases = BKE_view_layer_object_bases_get(view_layer);
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LISTBASE_FOREACH (Base *, base, object_bases) {
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Object *ob = base->object;
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if (ob->parent != NULL) {
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if (!BLI_gset_haskey(objects_in_transdata, ob)) {
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if (BLI_gset_haskey(objects_in_transdata, ob->parent)) {
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ED_object_xform_skip_child_container_item_ensure(
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xcs, ob, NULL, XFORM_OB_SKIP_CHILD_PARENT_IS_XFORM);
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}
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}
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else {
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if (!BLI_gset_haskey(objects_in_transdata, ob->parent)) {
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Object *ob_parent_recurse = ob->parent;
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if (ob_parent_recurse != NULL) {
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while (ob_parent_recurse != NULL) {
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if (BLI_gset_haskey(objects_in_transdata, ob_parent_recurse)) {
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break;
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}
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ob_parent_recurse = ob_parent_recurse->parent;
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}
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if (ob_parent_recurse) {
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ED_object_xform_skip_child_container_item_ensure(
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xcs, ob, ob_parent_recurse, XFORM_OB_SKIP_CHILD_PARENT_APPLY);
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}
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}
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}
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}
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}
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}
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LISTBASE_FOREACH (Base *, base, object_bases) {
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Object *ob = base->object;
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if (BLI_gset_haskey(objects_in_transdata, ob)) {
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/* pass. */
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}
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else if (ob->parent != NULL) {
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if (BLI_gset_haskey(objects_in_transdata, ob->parent)) {
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if (!BLI_gset_haskey(objects_in_transdata, ob)) {
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ED_object_xform_skip_child_container_item_ensure(
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xcs, ob, NULL, XFORM_OB_SKIP_CHILD_PARENT_IS_XFORM);
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}
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}
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}
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}
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BLI_gset_free(objects_in_transdata, NULL);
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}
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void ED_object_xform_skip_child_container_destroy(struct XFormObjectSkipChild_Container *xcs)
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{
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BLI_ghash_free(xcs->obchild_in_obmode_map, NULL, MEM_freeN);
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MEM_freeN(xcs);
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}
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void ED_object_xform_skip_child_container_item_ensure(struct XFormObjectSkipChild_Container *xcs,
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Object *ob,
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Object *ob_parent_recurse,
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int mode)
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{
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void **xf_p;
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if (!BLI_ghash_ensure_p(xcs->obchild_in_obmode_map, ob, &xf_p)) {
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struct XFormObjectSkipChild *xf = MEM_mallocN(sizeof(*xf), __func__);
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copy_m4_m4(xf->parentinv_orig, ob->parentinv);
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copy_m4_m4(xf->obmat_orig, ob->obmat);
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copy_m4_m4(xf->parent_obmat_orig, ob->parent->obmat);
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invert_m4_m4(xf->parent_obmat_inv_orig, ob->parent->obmat);
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if (ob_parent_recurse) {
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copy_m4_m4(xf->parent_recurse_obmat_orig, ob_parent_recurse->obmat);
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}
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xf->mode = mode;
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xf->ob_parent_recurse = ob_parent_recurse;
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*xf_p = xf;
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}
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}
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void ED_object_xform_skip_child_container_update_all(struct XFormObjectSkipChild_Container *xcs,
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struct Main *bmain,
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struct Depsgraph *depsgraph)
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{
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BKE_scene_graph_evaluated_ensure(depsgraph, bmain);
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GHashIterator gh_iter;
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GHASH_ITER (gh_iter, xcs->obchild_in_obmode_map) {
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Object *ob = BLI_ghashIterator_getKey(&gh_iter);
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struct XFormObjectSkipChild *xf = BLI_ghashIterator_getValue(&gh_iter);
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/* The following blocks below assign 'dmat'. */
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float dmat[4][4];
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if (xf->mode == XFORM_OB_SKIP_CHILD_PARENT_IS_XFORM) {
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/* Parent is transformed, this isn't so compensate. */
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Object *ob_parent_eval = DEG_get_evaluated_object(depsgraph, ob->parent);
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mul_m4_m4m4(dmat, xf->parent_obmat_inv_orig, ob_parent_eval->obmat);
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invert_m4(dmat);
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}
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else if (xf->mode == XFORM_OB_SKIP_CHILD_PARENT_IS_XFORM_INDIRECT) {
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/* Calculate parent matrix (from the root transform). */
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Object *ob_parent_recurse_eval = DEG_get_evaluated_object(depsgraph, xf->ob_parent_recurse);
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float parent_recurse_obmat_inv[4][4];
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invert_m4_m4(parent_recurse_obmat_inv, ob_parent_recurse_eval->obmat);
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mul_m4_m4m4(dmat, xf->parent_recurse_obmat_orig, parent_recurse_obmat_inv);
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invert_m4(dmat);
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float parent_obmat_calc[4][4];
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mul_m4_m4m4(parent_obmat_calc, dmat, xf->parent_obmat_orig);
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/* Apply to the parent inverse matrix. */
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mul_m4_m4m4(dmat, xf->parent_obmat_inv_orig, parent_obmat_calc);
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invert_m4(dmat);
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}
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else {
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BLI_assert(xf->mode == XFORM_OB_SKIP_CHILD_PARENT_APPLY);
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/* Transform this - without transform data. */
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Object *ob_parent_recurse_eval = DEG_get_evaluated_object(depsgraph, xf->ob_parent_recurse);
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float parent_recurse_obmat_inv[4][4];
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invert_m4_m4(parent_recurse_obmat_inv, ob_parent_recurse_eval->obmat);
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mul_m4_m4m4(dmat, xf->parent_recurse_obmat_orig, parent_recurse_obmat_inv);
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invert_m4(dmat);
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float obmat_calc[4][4];
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mul_m4_m4m4(obmat_calc, dmat, xf->obmat_orig);
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/* obmat_calc is just obmat. */
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/* Get the matrices relative to the parent. */
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float obmat_parent_relative_orig[4][4];
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float obmat_parent_relative_calc[4][4];
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float obmat_parent_relative_inv_orig[4][4];
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mul_m4_m4m4(obmat_parent_relative_orig, xf->parent_obmat_inv_orig, xf->obmat_orig);
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mul_m4_m4m4(obmat_parent_relative_calc, xf->parent_obmat_inv_orig, obmat_calc);
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invert_m4_m4(obmat_parent_relative_inv_orig, obmat_parent_relative_orig);
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/* Apply to the parent inverse matrix. */
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mul_m4_m4m4(dmat, obmat_parent_relative_calc, obmat_parent_relative_inv_orig);
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}
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mul_m4_m4m4(ob->parentinv, dmat, xf->parentinv_orig);
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DEG_id_tag_update(&ob->id, ID_RECALC_TRANSFORM);
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}
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}
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/** \} */
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/* -------------------------------------------------------------------- */
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/** \name Object Data Transform Container
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*
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* Use to implement 'Affect Only Origins' feature.
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*
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* \{ */
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struct XFormObjectData_Container {
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GHash *obdata_in_obmode_map;
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};
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struct XFormObjectData_Extra {
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Object *ob;
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float obmat_orig[4][4];
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struct XFormObjectData *xod;
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};
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void ED_object_data_xform_container_item_ensure(struct XFormObjectData_Container *xds, Object *ob)
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{
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if (xds->obdata_in_obmode_map == NULL) {
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xds->obdata_in_obmode_map = BLI_ghash_ptr_new(__func__);
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}
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void **xf_p;
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if (!BLI_ghash_ensure_p(xds->obdata_in_obmode_map, ob->data, &xf_p)) {
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struct XFormObjectData_Extra *xf = MEM_mallocN(sizeof(*xf), __func__);
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copy_m4_m4(xf->obmat_orig, ob->obmat);
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xf->ob = ob;
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/* Result may be NULL, that's OK. */
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xf->xod = ED_object_data_xform_create(ob->data);
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*xf_p = xf;
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}
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}
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void ED_object_data_xform_container_update_all(struct XFormObjectData_Container *xds,
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struct Main *bmain,
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Depsgraph *depsgraph)
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{
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if (xds->obdata_in_obmode_map == NULL) {
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return;
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}
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BKE_scene_graph_evaluated_ensure(depsgraph, bmain);
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GHashIterator gh_iter;
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GHASH_ITER (gh_iter, xds->obdata_in_obmode_map) {
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ID *id = BLI_ghashIterator_getKey(&gh_iter);
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struct XFormObjectData_Extra *xf = BLI_ghashIterator_getValue(&gh_iter);
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if (xf->xod == NULL) {
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continue;
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}
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Object *ob_eval = DEG_get_evaluated_object(depsgraph, xf->ob);
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float imat[4][4], dmat[4][4];
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invert_m4_m4(imat, xf->obmat_orig);
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mul_m4_m4m4(dmat, imat, ob_eval->obmat);
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invert_m4(dmat);
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ED_object_data_xform_by_mat4(xf->xod, dmat);
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if (xf->ob->type == OB_ARMATURE) {
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/* TODO: none of the current flags properly update armatures, needs investigation. */
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DEG_id_tag_update(id, 0);
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}
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else {
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DEG_id_tag_update(id, ID_RECALC_GEOMETRY);
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}
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}
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}
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/** Callback for #GHash free. */
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static void trans_obdata_in_obmode_free_elem(void *xf_p)
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{
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struct XFormObjectData_Extra *xf = xf_p;
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if (xf->xod) {
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ED_object_data_xform_destroy(xf->xod);
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}
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MEM_freeN(xf);
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}
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struct XFormObjectData_Container *ED_object_data_xform_container_create(void)
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{
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struct XFormObjectData_Container *xds = MEM_callocN(sizeof(*xds), __func__);
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xds->obdata_in_obmode_map = BLI_ghash_ptr_new(__func__);
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return xds;
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}
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void ED_object_data_xform_container_destroy(struct XFormObjectData_Container *xds)
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{
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BLI_ghash_free(xds->obdata_in_obmode_map, NULL, trans_obdata_in_obmode_free_elem);
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MEM_freeN(xds);
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}
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/** \} */
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/* -------------------------------------------------------------------- */
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/** \name Transform Object Array
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*
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* Low level object transform function, transforming objects by `matrix`.
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* Simple alternative to full transform logic.
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* \{ */
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|
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static bool object_parent_in_set(GSet *objects_set, Object *ob)
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{
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for (Object *parent = ob->parent; parent; parent = parent->parent) {
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if (BLI_gset_lookup(objects_set, parent)) {
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return true;
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}
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}
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return false;
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}
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|
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void ED_object_xform_array_m4(Object **objects, uint objects_len, const float matrix[4][4])
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{
|
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/* Filter out objects that have parents in `objects_set`. */
|
|
{
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|
GSet *objects_set = BLI_gset_ptr_new_ex(__func__, objects_len);
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for (uint i = 0; i < objects_len; i++) {
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BLI_gset_add(objects_set, objects[i]);
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}
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for (uint i = 0; i < objects_len;) {
|
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if (object_parent_in_set(objects_set, objects[i])) {
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objects[i] = objects[--objects_len];
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}
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else {
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i++;
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}
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}
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BLI_gset_free(objects_set, NULL);
|
|
}
|
|
|
|
/* Detect translation only matrix, prevent rotation/scale channels from being touched at all. */
|
|
bool is_translation_only;
|
|
{
|
|
float test_m4_a[4][4], test_m4_b[4][4];
|
|
unit_m4(test_m4_a);
|
|
copy_m4_m4(test_m4_b, matrix);
|
|
zero_v3(test_m4_b[3]);
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is_translation_only = equals_m4m4(test_m4_a, test_m4_b);
|
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}
|
|
|
|
if (is_translation_only) {
|
|
for (uint i = 0; i < objects_len; i++) {
|
|
Object *ob = objects[i];
|
|
add_v3_v3(ob->loc, matrix[3]);
|
|
DEG_id_tag_update(&ob->id, ID_RECALC_TRANSFORM);
|
|
}
|
|
}
|
|
else {
|
|
for (uint i = 0; i < objects_len; i++) {
|
|
float m4[4][4];
|
|
Object *ob = objects[i];
|
|
BKE_object_to_mat4(ob, m4);
|
|
mul_m4_m4m4(m4, matrix, m4);
|
|
BKE_object_apply_mat4(ob, m4, true, true);
|
|
DEG_id_tag_update(&ob->id, ID_RECALC_TRANSFORM);
|
|
}
|
|
}
|
|
}
|
|
|
|
/** \} */
|