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blender-archive/source/blender/modifiers/intern/MOD_smoke.c

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/*
* ***** BEGIN GPL LICENSE BLOCK *****
*
* This program is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License
* as published by the Free Software Foundation; either version 2
* of the License, or (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software Foundation,
* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
*
* The Original Code is Copyright (C) 2005 by the Blender Foundation.
* All rights reserved.
*
* Contributor(s): Daniel Dunbar
* Ton Roosendaal,
* Ben Batt,
* Brecht Van Lommel,
* Campbell Barton
*
* ***** END GPL LICENSE BLOCK *****
*
*/
/** \file blender/modifiers/intern/MOD_smoke.c
* \ingroup modifiers
*/
#include <stddef.h>
#include "MEM_guardedalloc.h"
#include "DNA_group_types.h"
#include "DNA_object_types.h"
#include "DNA_scene_types.h"
#include "DNA_smoke_types.h"
#include "DNA_object_force.h"
#include "BLI_utildefines.h"
#include "BKE_cdderivedmesh.h"
#include "BKE_global.h"
#include "BKE_library.h"
#include "BKE_main.h"
#include "BKE_modifier.h"
#include "BKE_smoke.h"
#include "depsgraph_private.h"
static void initData(ModifierData *md)
{
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SmokeModifierData *smd = (SmokeModifierData *) md;
smd->domain = NULL;
smd->flow = NULL;
smd->coll = NULL;
smd->type = 0;
smd->time = -1;
}
static void copyData(ModifierData *md, ModifierData *target)
{
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SmokeModifierData *smd = (SmokeModifierData *)md;
SmokeModifierData *tsmd = (SmokeModifierData *)target;
smokeModifier_copy(smd, tsmd);
}
static void freeData(ModifierData *md)
{
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SmokeModifierData *smd = (SmokeModifierData *) md;
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smokeModifier_free(smd);
}
static CustomDataMask requiredDataMask(Object *UNUSED(ob), ModifierData *md)
{
SmokeModifierData *smd = (SmokeModifierData *)md;
CustomDataMask dataMask = 0;
if (smd && (smd->type & MOD_SMOKE_TYPE_FLOW) && smd->flow) {
if (smd->flow->source == MOD_SMOKE_FLOW_SOURCE_MESH) {
/* vertex groups */
if (smd->flow->vgroup_density)
dataMask |= CD_MASK_MDEFORMVERT;
/* uv layer */
if (smd->flow->texture_type == MOD_SMOKE_FLOW_TEXTURE_MAP_UV)
dataMask |= CD_MASK_MTFACE;
}
}
return dataMask;
}
static DerivedMesh *applyModifier(ModifierData *md, Object *ob,
DerivedMesh *dm,
ModifierApplyFlag flag)
{
SmokeModifierData *smd = (SmokeModifierData *) md;
Threaded object update and EvaluationContext Summary: Made objects update happening from multiple threads. It is a task-based scheduling system which uses current dependency graph for spawning new tasks. This means threading happens on object level, but the system is flexible enough for higher granularity. Technical details: - Uses task scheduler which was recently committed to trunk (that one which Brecht ported from Cycles). - Added two utility functions to dependency graph: * DAG_threaded_update_begin, which is called to initialize threaded objects update. It will also schedule root DAG node to the queue, hence starting evaluation process. Initialization will calculate how much parents are to be evaluation before current DAG node can be scheduled. This value is used by task threads for faster detecting which nodes might be scheduled. * DAG_threaded_update_handle_node_updated which is called from task thread function when node was fully handled. This function decreases num_pending_parents of node children and schedules children with zero valency. As it might have become clear, task thread receives DAG nodes and decides which callback to call for it. Currently only BKE_object_handle_update is called for object nodes. In the future it'll call node->callback() from Ali's new DAG. - This required adding some workarounds to the render pipeline. Mainly to stop using get_object_dm() from modifiers' apply callback. Such a call was only a workaround for dependency graph glitch when rendering scene with, say, boolean modifiers before displaying this scene. Such change moves workaround from one place to another, so overall hackentropy remains the same. - Added paradigm of EvaluaitonContext. Currently it's more like just a more reliable replacement for G.is_rendering which fails in some circumstances. Future idea of this context is to also store all the local data needed for objects evaluation such as local time, Copy-on-Write data and so. There're two types of EvaluationContext: * Context used for viewport updated and owned by Main. In the future this context might be easily moved to Window or Screen to allo per-window/per-screen local time. * Context used by render engines to evaluate objects for render purposes. Render engine is an owner of this context. This context is passed to all object update routines. Reviewers: brecht, campbellbarton Reviewed By: brecht CC: lukastoenne Differential Revision: https://developer.blender.org/D94
2013-12-26 17:24:42 +06:00
bool for_render = (flag & MOD_APPLY_RENDER) != 0;
if (flag & MOD_APPLY_ORCO)
return dm;
Threaded object update and EvaluationContext Summary: Made objects update happening from multiple threads. It is a task-based scheduling system which uses current dependency graph for spawning new tasks. This means threading happens on object level, but the system is flexible enough for higher granularity. Technical details: - Uses task scheduler which was recently committed to trunk (that one which Brecht ported from Cycles). - Added two utility functions to dependency graph: * DAG_threaded_update_begin, which is called to initialize threaded objects update. It will also schedule root DAG node to the queue, hence starting evaluation process. Initialization will calculate how much parents are to be evaluation before current DAG node can be scheduled. This value is used by task threads for faster detecting which nodes might be scheduled. * DAG_threaded_update_handle_node_updated which is called from task thread function when node was fully handled. This function decreases num_pending_parents of node children and schedules children with zero valency. As it might have become clear, task thread receives DAG nodes and decides which callback to call for it. Currently only BKE_object_handle_update is called for object nodes. In the future it'll call node->callback() from Ali's new DAG. - This required adding some workarounds to the render pipeline. Mainly to stop using get_object_dm() from modifiers' apply callback. Such a call was only a workaround for dependency graph glitch when rendering scene with, say, boolean modifiers before displaying this scene. Such change moves workaround from one place to another, so overall hackentropy remains the same. - Added paradigm of EvaluaitonContext. Currently it's more like just a more reliable replacement for G.is_rendering which fails in some circumstances. Future idea of this context is to also store all the local data needed for objects evaluation such as local time, Copy-on-Write data and so. There're two types of EvaluationContext: * Context used for viewport updated and owned by Main. In the future this context might be easily moved to Window or Screen to allo per-window/per-screen local time. * Context used by render engines to evaluate objects for render purposes. Render engine is an owner of this context. This context is passed to all object update routines. Reviewers: brecht, campbellbarton Reviewed By: brecht CC: lukastoenne Differential Revision: https://developer.blender.org/D94
2013-12-26 17:24:42 +06:00
return smokeModifier_do(smd, md->scene, ob, dm, for_render);
}
static bool dependsOnTime(ModifierData *UNUSED(md))
{
return true;
}
static void update_depsgraph_flow_coll_object(DagForest *forest,
DagNode *obNode,
Object *object2)
{
SmokeModifierData *smd;
if ((object2->id.flag & LIB_DOIT) == 0) {
return;
}
object2->id.flag &= ~LIB_DOIT;
smd = (SmokeModifierData *)modifiers_findByType(object2, eModifierType_Smoke);
if (smd && (((smd->type & MOD_SMOKE_TYPE_FLOW) && smd->flow) ||
((smd->type & MOD_SMOKE_TYPE_COLL) && smd->coll)))
{
DagNode *curNode = dag_get_node(forest, object2);
dag_add_relation(forest, curNode, obNode, DAG_RL_DATA_DATA | DAG_RL_OB_DATA, "Smoke Flow/Coll");
}
if ((object2->transflag & OB_DUPLIGROUP) && object2->dup_group) {
GroupObject *go;
for (go = object2->dup_group->gobject.first;
go != NULL;
go = go->next)
{
if (go->ob == NULL) {
continue;
}
update_depsgraph_flow_coll_object(forest, obNode, go->ob);
}
}
}
static void update_depsgraph_field_source_object(DagForest *forest,
DagNode *obNode,
Object *object,
Object *object2)
{
if ((object2->id.flag & LIB_DOIT) == 0) {
return;
}
object2->id.flag &= ~LIB_DOIT;
if (object2->pd && object2->pd->forcefield == PFIELD_SMOKEFLOW && object2->pd->f_source == object) {
DagNode *node2 = dag_get_node(forest, object2);
dag_add_relation(forest, obNode, node2, DAG_RL_DATA_DATA | DAG_RL_OB_DATA, "Field Source Object");
}
if ((object2->transflag & OB_DUPLIGROUP) && object2->dup_group) {
GroupObject *go;
for (go = object2->dup_group->gobject.first;
go != NULL;
go = go->next)
{
if (go->ob == NULL) {
continue;
}
update_depsgraph_field_source_object(forest, obNode, object, go->ob);
}
}
}
static void updateDepgraph(ModifierData *md, DagForest *forest,
struct Scene *scene, struct Object *ob,
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DagNode *obNode)
{
SmokeModifierData *smd = (SmokeModifierData *) md;
Base *base;
if (smd && (smd->type & MOD_SMOKE_TYPE_DOMAIN) && smd->domain) {
if (smd->domain->fluid_group || smd->domain->coll_group) {
GroupObject *go = NULL;
if (smd->domain->fluid_group)
for (go = smd->domain->fluid_group->gobject.first; go; go = go->next) {
if (go->ob) {
SmokeModifierData *smd2 = (SmokeModifierData *)modifiers_findByType(go->ob, eModifierType_Smoke);
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/* check for initialized smoke object */
if (smd2 && (smd2->type & MOD_SMOKE_TYPE_FLOW) && smd2->flow) {
DagNode *curNode = dag_get_node(forest, go->ob);
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dag_add_relation(forest, curNode, obNode, DAG_RL_DATA_DATA | DAG_RL_OB_DATA, "Smoke Flow");
}
}
}
if (smd->domain->coll_group)
for (go = smd->domain->coll_group->gobject.first; go; go = go->next) {
if (go->ob) {
SmokeModifierData *smd2 = (SmokeModifierData *)modifiers_findByType(go->ob, eModifierType_Smoke);
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/* check for initialized smoke object */
if (smd2 && (smd2->type & MOD_SMOKE_TYPE_COLL) && smd2->coll) {
DagNode *curNode = dag_get_node(forest, go->ob);
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dag_add_relation(forest, curNode, obNode, DAG_RL_DATA_DATA | DAG_RL_OB_DATA, "Smoke Coll");
}
}
}
}
else {
BKE_main_id_tag_listbase(&G.main->object, true);
base = scene->base.first;
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for (; base; base = base->next) {
update_depsgraph_flow_coll_object(forest, obNode, base->object);
}
}
/* add relation to all "smoke flow" force fields */
base = scene->base.first;
BKE_main_id_tag_listbase(&G.main->object, true);
for (; base; base = base->next) {
update_depsgraph_field_source_object(forest, obNode, ob, base->object);
}
}
}
static void foreachIDLink(ModifierData *md, Object *ob,
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IDWalkFunc walk, void *userData)
{
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SmokeModifierData *smd = (SmokeModifierData *) md;
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if (smd->type == MOD_SMOKE_TYPE_DOMAIN && smd->domain) {
walk(userData, ob, (ID **)&smd->domain->coll_group);
walk(userData, ob, (ID **)&smd->domain->fluid_group);
walk(userData, ob, (ID **)&smd->domain->eff_group);
if (smd->domain->effector_weights) {
walk(userData, ob, (ID **)&smd->domain->effector_weights->group);
}
}
if (smd->type == MOD_SMOKE_TYPE_FLOW && smd->flow) {
walk(userData, ob, (ID **)&smd->flow->noise_texture);
}
}
ModifierTypeInfo modifierType_Smoke = {
/* name */ "Smoke",
/* structName */ "SmokeModifierData",
/* structSize */ sizeof(SmokeModifierData),
/* type */ eModifierTypeType_Constructive,
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/* flags */ eModifierTypeFlag_AcceptsMesh |
eModifierTypeFlag_UsesPointCache |
eModifierTypeFlag_Single,
/* copyData */ copyData,
/* deformVerts */ NULL,
/* deformMatrices */ NULL,
/* deformVertsEM */ NULL,
/* deformMatricesEM */ NULL,
/* applyModifier */ applyModifier,
/* applyModifierEM */ NULL,
/* initData */ initData,
/* requiredDataMask */ requiredDataMask,
/* freeData */ freeData,
/* isDisabled */ NULL,
/* updateDepgraph */ updateDepgraph,
/* dependsOnTime */ dependsOnTime,
/* dependsOnNormals */ NULL,
/* foreachObjectLink */ NULL,
/* foreachIDLink */ foreachIDLink,
/* foreachTexLink */ NULL
};