The goal is to solve confusion of the "All rights reserved" for licensing
code under an open-source license.
The phrase "All rights reserved" comes from a historical convention that
required this phrase for the copyright protection to apply. This convention
is no longer relevant.
However, even though the phrase has no meaning in establishing the copyright
it has not lost meaning in terms of licensing.
This change makes it so code under the Blender Foundation copyright does
not use "all rights reserved". This is also how the GPL license itself
states how to apply it to the source code:
<one line to give the program's name and a brief idea of what it does.>
Copyright (C) <year> <name of author>
This program is free software ...
This change does not change copyright notice in cases when the copyright
is dual (BF and an author), or just an author of the code. It also does
mot change copyright which is inherited from NaN Holding BV as it needs
some further investigation about what is the proper way to handle it.
721 lines
22 KiB
C++
721 lines
22 KiB
C++
/* SPDX-License-Identifier: GPL-2.0-or-later
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* Copyright Blender Foundation */
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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_math_inline.h"
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#include "BLI_task.h"
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#include "BLT_translation.h"
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#include "DNA_customdata_types.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_modifier_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_lib_id.h"
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#include "BKE_mesh.hh"
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#include "BKE_modifier.h"
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#include "BKE_ocean.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 "RNA_access.h"
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#include "RNA_prototypes.h"
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#include "BLO_read_write.h"
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#include "WM_types.h" /* For UI free bake operator. */
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#include "DEG_depsgraph_query.h"
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#include "MOD_modifiertypes.h"
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#include "MOD_ui_common.h"
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#ifdef WITH_OCEANSIM
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static void init_cache_data(Object *ob, OceanModifierData *omd, const int resolution)
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{
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const char *relbase = BKE_modifier_path_relbase_from_global(ob);
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omd->oceancache = BKE_ocean_init_cache(omd->cachepath,
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relbase,
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omd->bakestart,
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omd->bakeend,
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omd->wave_scale,
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omd->chop_amount,
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omd->foam_coverage,
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omd->foam_fade,
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resolution);
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}
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static void simulate_ocean_modifier(OceanModifierData *omd)
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{
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BKE_ocean_simulate(omd->ocean, omd->time, omd->wave_scale, omd->chop_amount);
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}
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#endif /* WITH_OCEANSIM */
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/* Modifier Code */
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static void initData(ModifierData *md)
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{
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#ifdef WITH_OCEANSIM
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OceanModifierData *omd = (OceanModifierData *)md;
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BLI_assert(MEMCMP_STRUCT_AFTER_IS_ZERO(omd, modifier));
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MEMCPY_STRUCT_AFTER(omd, DNA_struct_default_get(OceanModifierData), modifier);
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BKE_modifier_path_init(omd->cachepath, sizeof(omd->cachepath), "cache_ocean");
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omd->ocean = BKE_ocean_add();
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if (BKE_ocean_init_from_modifier(omd->ocean, omd, omd->viewport_resolution)) {
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simulate_ocean_modifier(omd);
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}
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#else /* WITH_OCEANSIM */
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UNUSED_VARS(md);
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#endif /* WITH_OCEANSIM */
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}
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static void freeData(ModifierData *md)
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{
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#ifdef WITH_OCEANSIM
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OceanModifierData *omd = (OceanModifierData *)md;
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BKE_ocean_free(omd->ocean);
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if (omd->oceancache) {
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BKE_ocean_free_cache(omd->oceancache);
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}
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#else /* WITH_OCEANSIM */
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/* unused */
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(void)md;
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#endif /* WITH_OCEANSIM */
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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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#ifdef WITH_OCEANSIM
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# if 0
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const OceanModifierData *omd = (const OceanModifierData *)md;
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# endif
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OceanModifierData *tomd = (OceanModifierData *)target;
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BKE_modifier_copydata_generic(md, target, flag);
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/* The oceancache object will be recreated for this copy
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* automatically when cached=true */
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tomd->oceancache = nullptr;
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tomd->ocean = BKE_ocean_add();
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if (BKE_ocean_init_from_modifier(tomd->ocean, tomd, tomd->viewport_resolution)) {
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simulate_ocean_modifier(tomd);
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}
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#else /* WITH_OCEANSIM */
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/* unused */
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(void)md;
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(void)target;
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(void)flag;
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#endif /* WITH_OCEANSIM */
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}
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#ifdef WITH_OCEANSIM
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static void requiredDataMask(ModifierData *md, CustomData_MeshMasks *r_cddata_masks)
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{
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OceanModifierData *omd = (OceanModifierData *)md;
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if (omd->flag & MOD_OCEAN_GENERATE_FOAM) {
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r_cddata_masks->fmask |= CD_MASK_MCOL; /* XXX Should be loop cddata I guess? */
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}
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}
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#else /* WITH_OCEANSIM */
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static void requiredDataMask(ModifierData * /*md*/, CustomData_MeshMasks * /*r_cddata_masks*/) {}
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#endif /* WITH_OCEANSIM */
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static bool dependsOnNormals(ModifierData *md)
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{
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OceanModifierData *omd = (OceanModifierData *)md;
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return (omd->geometry_mode != MOD_OCEAN_GEOM_GENERATE);
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}
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#ifdef WITH_OCEANSIM
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struct GenerateOceanGeometryData {
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float (*vert_positions)[3];
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blender::MutableSpan<MPoly> polys;
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blender::MutableSpan<int> corner_verts;
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float (*mloopuvs)[2];
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int res_x, res_y;
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int rx, ry;
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float ox, oy;
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float sx, sy;
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float ix, iy;
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};
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static void generate_ocean_geometry_verts(void *__restrict userdata,
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const int y,
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const TaskParallelTLS *__restrict /*tls*/)
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{
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GenerateOceanGeometryData *gogd = static_cast<GenerateOceanGeometryData *>(userdata);
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int x;
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for (x = 0; x <= gogd->res_x; x++) {
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const int i = y * (gogd->res_x + 1) + x;
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float *co = gogd->vert_positions[i];
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co[0] = gogd->ox + (x * gogd->sx);
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co[1] = gogd->oy + (y * gogd->sy);
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co[2] = 0.0f;
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}
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}
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static void generate_ocean_geometry_polys(void *__restrict userdata,
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const int y,
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const TaskParallelTLS *__restrict /*tls*/)
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{
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GenerateOceanGeometryData *gogd = static_cast<GenerateOceanGeometryData *>(userdata);
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int x;
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for (x = 0; x < gogd->res_x; x++) {
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const int fi = y * gogd->res_x + x;
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const int vi = y * (gogd->res_x + 1) + x;
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gogd->corner_verts[fi * 4 + 0] = vi;
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gogd->corner_verts[fi * 4 + 1] = vi + 1;
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gogd->corner_verts[fi * 4 + 2] = vi + 1 + gogd->res_x + 1;
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gogd->corner_verts[fi * 4 + 3] = vi + gogd->res_x + 1;
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gogd->polys[fi].loopstart = fi * 4;
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gogd->polys[fi].totloop = 4;
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}
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}
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static void generate_ocean_geometry_uvs(void *__restrict userdata,
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const int y,
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const TaskParallelTLS *__restrict /*tls*/)
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{
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GenerateOceanGeometryData *gogd = static_cast<GenerateOceanGeometryData *>(userdata);
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int x;
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for (x = 0; x < gogd->res_x; x++) {
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const int i = y * gogd->res_x + x;
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float(*luv)[2] = &gogd->mloopuvs[i * 4];
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(*luv)[0] = x * gogd->ix;
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(*luv)[1] = y * gogd->iy;
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luv++;
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(*luv)[0] = (x + 1) * gogd->ix;
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(*luv)[1] = y * gogd->iy;
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luv++;
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(*luv)[0] = (x + 1) * gogd->ix;
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(*luv)[1] = (y + 1) * gogd->iy;
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luv++;
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(*luv)[0] = x * gogd->ix;
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(*luv)[1] = (y + 1) * gogd->iy;
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luv++;
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}
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}
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static Mesh *generate_ocean_geometry(OceanModifierData *omd, Mesh *mesh_orig, const int resolution)
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{
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Mesh *result;
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GenerateOceanGeometryData gogd;
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int verts_num;
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int polys_num;
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const bool use_threading = resolution > 4;
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gogd.rx = resolution * resolution;
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gogd.ry = resolution * resolution;
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gogd.res_x = gogd.rx * omd->repeat_x;
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gogd.res_y = gogd.ry * omd->repeat_y;
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verts_num = (gogd.res_x + 1) * (gogd.res_y + 1);
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polys_num = gogd.res_x * gogd.res_y;
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gogd.sx = omd->size * omd->spatial_size;
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gogd.sy = omd->size * omd->spatial_size;
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gogd.ox = -gogd.sx / 2.0f;
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gogd.oy = -gogd.sy / 2.0f;
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gogd.sx /= gogd.rx;
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gogd.sy /= gogd.ry;
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result = BKE_mesh_new_nomain(verts_num, 0, polys_num * 4, polys_num);
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BKE_mesh_copy_parameters_for_eval(result, mesh_orig);
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gogd.vert_positions = BKE_mesh_vert_positions_for_write(result);
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gogd.polys = result->polys_for_write();
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gogd.corner_verts = result->corner_verts_for_write();
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TaskParallelSettings settings;
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BLI_parallel_range_settings_defaults(&settings);
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settings.use_threading = use_threading;
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/* create vertices */
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BLI_task_parallel_range(0, gogd.res_y + 1, &gogd, generate_ocean_geometry_verts, &settings);
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/* create faces */
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BLI_task_parallel_range(0, gogd.res_y, &gogd, generate_ocean_geometry_polys, &settings);
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BKE_mesh_calc_edges(result, false, false);
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/* add uvs */
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if (CustomData_number_of_layers(&result->ldata, CD_PROP_FLOAT2) < MAX_MTFACE) {
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gogd.mloopuvs = static_cast<float(*)[2]>(CustomData_add_layer_named(
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&result->ldata, CD_PROP_FLOAT2, CD_SET_DEFAULT, polys_num * 4, "UVMap"));
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if (gogd.mloopuvs) { /* unlikely to fail */
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gogd.ix = 1.0 / gogd.rx;
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gogd.iy = 1.0 / gogd.ry;
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BLI_task_parallel_range(0, gogd.res_y, &gogd, generate_ocean_geometry_uvs, &settings);
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}
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}
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return result;
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}
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static Mesh *doOcean(ModifierData *md, const ModifierEvalContext *ctx, Mesh *mesh)
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{
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OceanModifierData *omd = (OceanModifierData *)md;
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if (omd->ocean && !BKE_ocean_is_valid(omd->ocean)) {
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BKE_modifier_set_error(ctx->object, md, "Failed to allocate memory");
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return mesh;
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}
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int cfra_scene = int(DEG_get_ctime(ctx->depsgraph));
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Object *ob = ctx->object;
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bool allocated_ocean = false;
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Mesh *result = nullptr;
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OceanResult ocr;
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const int resolution = (ctx->flag & MOD_APPLY_RENDER) ? omd->resolution :
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omd->viewport_resolution;
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int cfra_for_cache;
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int i, j;
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/* use cached & inverted value for speed
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* expanded this would read...
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*
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* (axis / (omd->size * omd->spatial_size)) + 0.5f) */
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# define OCEAN_CO(_size_co_inv, _v) ((_v * _size_co_inv) + 0.5f)
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const float size_co_inv = 1.0f / (omd->size * omd->spatial_size);
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/* can happen in when size is small, avoid bad array lookups later and quit now */
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if (!isfinite(size_co_inv)) {
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return mesh;
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}
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/* do ocean simulation */
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if (omd->cached) {
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if (!omd->oceancache) {
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init_cache_data(ob, omd, resolution);
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}
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BKE_ocean_simulate_cache(omd->oceancache, cfra_scene);
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}
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else {
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/* omd->ocean is nullptr on an original object (in contrast to an evaluated one).
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* We can create a new one, but we have to free it as well once we're done.
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* This function is only called on an original object when applying the modifier
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* using the 'Apply Modifier' button, and thus it is not called frequently for
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* simulation. */
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allocated_ocean |= BKE_ocean_ensure(omd, resolution);
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simulate_ocean_modifier(omd);
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}
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if (omd->geometry_mode == MOD_OCEAN_GEOM_GENERATE) {
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result = generate_ocean_geometry(omd, mesh, resolution);
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}
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else if (omd->geometry_mode == MOD_OCEAN_GEOM_DISPLACE) {
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result = (Mesh *)BKE_id_copy_ex(nullptr, &mesh->id, nullptr, LIB_ID_COPY_LOCALIZE);
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}
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cfra_for_cache = cfra_scene;
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CLAMP(cfra_for_cache, omd->bakestart, omd->bakeend);
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cfra_for_cache -= omd->bakestart; /* shift to 0 based */
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float(*positions)[3] = BKE_mesh_vert_positions_for_write(result);
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const blender::Span<MPoly> polys = mesh->polys();
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/* Add vertex-colors before displacement: allows lookup based on position. */
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if (omd->flag & MOD_OCEAN_GENERATE_FOAM) {
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const blender::Span<int> corner_verts = result->corner_verts();
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MLoopCol *mloopcols = static_cast<MLoopCol *>(CustomData_add_layer_named(&result->ldata,
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CD_PROP_BYTE_COLOR,
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CD_SET_DEFAULT,
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corner_verts.size(),
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omd->foamlayername));
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MLoopCol *mloopcols_spray = nullptr;
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if (omd->flag & MOD_OCEAN_GENERATE_SPRAY) {
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mloopcols_spray = static_cast<MLoopCol *>(CustomData_add_layer_named(&result->ldata,
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CD_PROP_BYTE_COLOR,
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CD_SET_DEFAULT,
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corner_verts.size(),
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omd->spraylayername));
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}
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if (mloopcols) { /* unlikely to fail */
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for (const int i : polys.index_range()) {
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const int *corner_vert = &corner_verts[polys[i].loopstart];
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MLoopCol *mlcol = &mloopcols[polys[i].loopstart];
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MLoopCol *mlcolspray = nullptr;
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if (omd->flag & MOD_OCEAN_GENERATE_SPRAY) {
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mlcolspray = &mloopcols_spray[polys[i].loopstart];
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}
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for (j = polys[i].totloop; j--; corner_vert++, mlcol++) {
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const float *vco = positions[*corner_vert];
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const float u = OCEAN_CO(size_co_inv, vco[0]);
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const float v = OCEAN_CO(size_co_inv, vco[1]);
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float foam;
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if (omd->oceancache && omd->cached) {
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BKE_ocean_cache_eval_uv(omd->oceancache, &ocr, cfra_for_cache, u, v);
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foam = ocr.foam;
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CLAMP(foam, 0.0f, 1.0f);
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}
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else {
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BKE_ocean_eval_uv(omd->ocean, &ocr, u, v);
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foam = BKE_ocean_jminus_to_foam(ocr.Jminus, omd->foam_coverage);
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}
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mlcol->r = mlcol->g = mlcol->b = char(foam * 255);
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/* This needs to be set (render engine uses) */
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mlcol->a = 255;
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if (omd->flag & MOD_OCEAN_GENERATE_SPRAY) {
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if (omd->flag & MOD_OCEAN_INVERT_SPRAY) {
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mlcolspray->r = ocr.Eminus[0] * 255;
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}
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else {
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mlcolspray->r = ocr.Eplus[0] * 255;
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}
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mlcolspray->g = 0;
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if (omd->flag & MOD_OCEAN_INVERT_SPRAY) {
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mlcolspray->b = ocr.Eminus[2] * 255;
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}
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else {
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mlcolspray->b = ocr.Eplus[2] * 255;
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}
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mlcolspray->a = 255;
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}
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}
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}
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}
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}
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/* displace the geometry */
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/* NOTE: tried to parallelized that one and previous foam loop,
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* but gives 20% slower results... odd. */
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{
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const int verts_num = result->totvert;
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for (i = 0; i < verts_num; i++) {
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float *vco = positions[i];
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const float u = OCEAN_CO(size_co_inv, vco[0]);
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const float v = OCEAN_CO(size_co_inv, vco[1]);
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if (omd->oceancache && omd->cached) {
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BKE_ocean_cache_eval_uv(omd->oceancache, &ocr, cfra_for_cache, u, v);
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}
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else {
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BKE_ocean_eval_uv(omd->ocean, &ocr, u, v);
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}
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vco[2] += ocr.disp[1];
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if (omd->chop_amount > 0.0f) {
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vco[0] += ocr.disp[0];
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vco[1] += ocr.disp[2];
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}
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}
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}
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BKE_mesh_tag_positions_changed(mesh);
|
|
|
|
if (allocated_ocean) {
|
|
BKE_ocean_free(omd->ocean);
|
|
omd->ocean = nullptr;
|
|
}
|
|
|
|
# undef OCEAN_CO
|
|
|
|
return result;
|
|
}
|
|
#else /* WITH_OCEANSIM */
|
|
static Mesh *doOcean(ModifierData * /*md*/, const ModifierEvalContext * /*ctx*/, Mesh *mesh)
|
|
{
|
|
return mesh;
|
|
}
|
|
#endif /* WITH_OCEANSIM */
|
|
|
|
static Mesh *modifyMesh(ModifierData *md, const ModifierEvalContext *ctx, Mesh *mesh)
|
|
{
|
|
return doOcean(md, ctx, mesh);
|
|
}
|
|
// #define WITH_OCEANSIM
|
|
static void panel_draw(const bContext * /*C*/, Panel *panel)
|
|
{
|
|
uiLayout *layout = panel->layout;
|
|
#ifdef WITH_OCEANSIM
|
|
uiLayout *col, *sub;
|
|
|
|
PointerRNA ob_ptr;
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, &ob_ptr);
|
|
|
|
uiLayoutSetPropSep(layout, true);
|
|
|
|
col = uiLayoutColumn(layout, false);
|
|
uiItemR(col, ptr, "geometry_mode", 0, nullptr, ICON_NONE);
|
|
if (RNA_enum_get(ptr, "geometry_mode") == MOD_OCEAN_GEOM_GENERATE) {
|
|
sub = uiLayoutColumn(col, true);
|
|
uiItemR(sub, ptr, "repeat_x", 0, IFACE_("Repeat X"), ICON_NONE);
|
|
uiItemR(sub, ptr, "repeat_y", 0, IFACE_("Y"), ICON_NONE);
|
|
}
|
|
|
|
sub = uiLayoutColumn(col, true);
|
|
uiItemR(sub, ptr, "viewport_resolution", 0, IFACE_("Resolution Viewport"), ICON_NONE);
|
|
uiItemR(sub, ptr, "resolution", 0, IFACE_("Render"), ICON_NONE);
|
|
|
|
uiItemR(col, ptr, "time", 0, nullptr, ICON_NONE);
|
|
|
|
uiItemR(col, ptr, "depth", 0, nullptr, ICON_NONE);
|
|
uiItemR(col, ptr, "size", 0, nullptr, ICON_NONE);
|
|
uiItemR(col, ptr, "spatial_size", 0, nullptr, ICON_NONE);
|
|
|
|
uiItemR(col, ptr, "random_seed", 0, nullptr, ICON_NONE);
|
|
|
|
uiItemR(col, ptr, "use_normals", 0, nullptr, ICON_NONE);
|
|
|
|
modifier_panel_end(layout, ptr);
|
|
|
|
#else /* WITH_OCEANSIM */
|
|
uiItemL(layout, TIP_("Built without Ocean modifier"), ICON_NONE);
|
|
#endif /* WITH_OCEANSIM */
|
|
}
|
|
|
|
#ifdef WITH_OCEANSIM
|
|
static void waves_panel_draw(const bContext * /*C*/, Panel *panel)
|
|
{
|
|
uiLayout *col, *sub;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, nullptr);
|
|
|
|
uiLayoutSetPropSep(layout, true);
|
|
|
|
col = uiLayoutColumn(layout, false);
|
|
uiItemR(col, ptr, "wave_scale", 0, IFACE_("Scale"), ICON_NONE);
|
|
uiItemR(col, ptr, "wave_scale_min", 0, nullptr, ICON_NONE);
|
|
uiItemR(col, ptr, "choppiness", 0, nullptr, ICON_NONE);
|
|
uiItemR(col, ptr, "wind_velocity", 0, nullptr, ICON_NONE);
|
|
|
|
uiItemS(layout);
|
|
|
|
col = uiLayoutColumn(layout, false);
|
|
uiItemR(col, ptr, "wave_alignment", UI_ITEM_R_SLIDER, IFACE_("Alignment"), ICON_NONE);
|
|
sub = uiLayoutColumn(col, false);
|
|
uiLayoutSetActive(sub, RNA_float_get(ptr, "wave_alignment") > 0.0f);
|
|
uiItemR(sub, ptr, "wave_direction", 0, IFACE_("Direction"), ICON_NONE);
|
|
uiItemR(sub, ptr, "damping", 0, nullptr, ICON_NONE);
|
|
}
|
|
|
|
static void foam_panel_draw_header(const bContext * /*C*/, Panel *panel)
|
|
{
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, nullptr);
|
|
|
|
uiItemR(layout, ptr, "use_foam", 0, IFACE_("Foam"), ICON_NONE);
|
|
}
|
|
|
|
static void foam_panel_draw(const bContext * /*C*/, Panel *panel)
|
|
{
|
|
uiLayout *col;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, nullptr);
|
|
|
|
bool use_foam = RNA_boolean_get(ptr, "use_foam");
|
|
|
|
uiLayoutSetPropSep(layout, true);
|
|
|
|
col = uiLayoutColumn(layout, false);
|
|
uiLayoutSetActive(col, use_foam);
|
|
uiItemR(col, ptr, "foam_layer_name", 0, IFACE_("Data Layer"), ICON_NONE);
|
|
uiItemR(col, ptr, "foam_coverage", 0, IFACE_("Coverage"), ICON_NONE);
|
|
}
|
|
|
|
static void spray_panel_draw_header(const bContext * /*C*/, Panel *panel)
|
|
{
|
|
uiLayout *row;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, nullptr);
|
|
|
|
bool use_foam = RNA_boolean_get(ptr, "use_foam");
|
|
|
|
row = uiLayoutRow(layout, false);
|
|
uiLayoutSetActive(row, use_foam);
|
|
uiItemR(row, ptr, "use_spray", 0, CTX_IFACE_(BLT_I18NCONTEXT_ID_MESH, "Spray"), ICON_NONE);
|
|
}
|
|
|
|
static void spray_panel_draw(const bContext * /*C*/, Panel *panel)
|
|
{
|
|
uiLayout *col;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, nullptr);
|
|
|
|
bool use_foam = RNA_boolean_get(ptr, "use_foam");
|
|
bool use_spray = RNA_boolean_get(ptr, "use_spray");
|
|
|
|
uiLayoutSetPropSep(layout, true);
|
|
|
|
col = uiLayoutColumn(layout, false);
|
|
uiLayoutSetActive(col, use_foam && use_spray);
|
|
uiItemR(col, ptr, "spray_layer_name", 0, IFACE_("Data Layer"), ICON_NONE);
|
|
uiItemR(col, ptr, "invert_spray", 0, IFACE_("Invert"), ICON_NONE);
|
|
}
|
|
|
|
static void spectrum_panel_draw(const bContext * /*C*/, Panel *panel)
|
|
{
|
|
uiLayout *col;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, nullptr);
|
|
|
|
int spectrum = RNA_enum_get(ptr, "spectrum");
|
|
|
|
uiLayoutSetPropSep(layout, true);
|
|
|
|
col = uiLayoutColumn(layout, false);
|
|
uiItemR(col, ptr, "spectrum", 0, nullptr, ICON_NONE);
|
|
if (ELEM(spectrum, MOD_OCEAN_SPECTRUM_TEXEL_MARSEN_ARSLOE, MOD_OCEAN_SPECTRUM_JONSWAP)) {
|
|
uiItemR(col, ptr, "sharpen_peak_jonswap", UI_ITEM_R_SLIDER, nullptr, ICON_NONE);
|
|
uiItemR(col, ptr, "fetch_jonswap", 0, nullptr, ICON_NONE);
|
|
}
|
|
}
|
|
|
|
static void bake_panel_draw(const bContext * /*C*/, Panel *panel)
|
|
{
|
|
uiLayout *col;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, nullptr);
|
|
|
|
uiLayoutSetPropSep(layout, true);
|
|
|
|
bool is_cached = RNA_boolean_get(ptr, "is_cached");
|
|
bool use_foam = RNA_boolean_get(ptr, "use_foam");
|
|
|
|
if (is_cached) {
|
|
PointerRNA op_ptr;
|
|
uiItemFullO(layout,
|
|
"OBJECT_OT_ocean_bake",
|
|
IFACE_("Delete Bake"),
|
|
ICON_NONE,
|
|
nullptr,
|
|
WM_OP_EXEC_DEFAULT,
|
|
0,
|
|
&op_ptr);
|
|
RNA_boolean_set(&op_ptr, "free", true);
|
|
}
|
|
else {
|
|
uiItemO(layout, nullptr, ICON_NONE, "OBJECT_OT_ocean_bake");
|
|
}
|
|
|
|
uiItemR(layout, ptr, "filepath", 0, nullptr, ICON_NONE);
|
|
|
|
col = uiLayoutColumn(layout, true);
|
|
uiLayoutSetEnabled(col, !is_cached);
|
|
uiItemR(col, ptr, "frame_start", 0, IFACE_("Frame Start"), ICON_NONE);
|
|
uiItemR(col, ptr, "frame_end", 0, IFACE_("End"), ICON_NONE);
|
|
|
|
col = uiLayoutColumn(layout, false);
|
|
uiLayoutSetActive(col, use_foam);
|
|
uiItemR(col, ptr, "bake_foam_fade", 0, nullptr, ICON_NONE);
|
|
}
|
|
#endif /* WITH_OCEANSIM */
|
|
|
|
static void panelRegister(ARegionType *region_type)
|
|
{
|
|
PanelType *panel_type = modifier_panel_register(region_type, eModifierType_Ocean, panel_draw);
|
|
#ifdef WITH_OCEANSIM
|
|
modifier_subpanel_register(region_type, "waves", "Waves", nullptr, waves_panel_draw, panel_type);
|
|
PanelType *foam_panel = modifier_subpanel_register(
|
|
region_type, "foam", "", foam_panel_draw_header, foam_panel_draw, panel_type);
|
|
modifier_subpanel_register(
|
|
region_type, "spray", "", spray_panel_draw_header, spray_panel_draw, foam_panel);
|
|
modifier_subpanel_register(
|
|
region_type, "spectrum", "Spectrum", nullptr, spectrum_panel_draw, panel_type);
|
|
modifier_subpanel_register(region_type, "bake", "Bake", nullptr, bake_panel_draw, panel_type);
|
|
#else
|
|
UNUSED_VARS(panel_type);
|
|
#endif /* WITH_OCEANSIM */
|
|
}
|
|
|
|
static void blendRead(BlendDataReader * /*reader*/, ModifierData *md)
|
|
{
|
|
OceanModifierData *omd = (OceanModifierData *)md;
|
|
omd->oceancache = nullptr;
|
|
omd->ocean = nullptr;
|
|
}
|
|
|
|
ModifierTypeInfo modifierType_Ocean = {
|
|
/*name*/ N_("Ocean"),
|
|
/*structName*/ "OceanModifierData",
|
|
/*structSize*/ sizeof(OceanModifierData),
|
|
/*srna*/ &RNA_OceanModifier,
|
|
/*type*/ eModifierTypeType_Constructive,
|
|
/*flags*/ eModifierTypeFlag_AcceptsMesh | eModifierTypeFlag_SupportsEditmode |
|
|
eModifierTypeFlag_EnableInEditmode,
|
|
/*icon*/ ICON_MOD_OCEAN,
|
|
|
|
/*copyData*/ copyData,
|
|
/*deformMatrices*/ nullptr,
|
|
|
|
/*deformMatrices*/ nullptr,
|
|
/*deformVertsEM*/ nullptr,
|
|
/*deformMatricesEM*/ nullptr,
|
|
/*modifyMesh*/ modifyMesh,
|
|
/*modifyGeometrySet*/ nullptr,
|
|
|
|
/*initData*/ initData,
|
|
/*requiredDataMask*/ requiredDataMask,
|
|
/*freeData*/ freeData,
|
|
/*isDisabled*/ nullptr,
|
|
/*updateDepsgraph*/ nullptr,
|
|
/*dependsOnTime*/ nullptr,
|
|
/*dependsOnNormals*/ dependsOnNormals,
|
|
/*foreachIDLink*/ nullptr,
|
|
/*foreachTexLink*/ nullptr,
|
|
/*freeRuntimeData*/ nullptr,
|
|
/*panelRegister*/ panelRegister,
|
|
/*blendWrite*/ nullptr,
|
|
/*blendRead*/ blendRead,
|
|
};
|