The "PROP" in the name reflects its generic status, and removing "LOOP" makes sense because it is no longer associated with just mesh face corners. In general the goal is to remove extra semantic meaning from the custom data types.
736 lines
21 KiB
C
736 lines
21 KiB
C
/* SPDX-License-Identifier: GPL-2.0-or-later
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* Copyright 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_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.h"
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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, struct 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(struct 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 = NULL;
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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(Object *UNUSED(ob),
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ModifierData *md,
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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(Object *UNUSED(ob),
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ModifierData *UNUSED(md),
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CustomData_MeshMasks *UNUSED(r_cddata_masks))
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{
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}
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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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typedef struct GenerateOceanGeometryData {
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MVert *mverts;
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MPoly *mpolys;
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MLoop *mloops;
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MLoopUV *mloopuvs;
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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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} GenerateOceanGeometryData;
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static void generate_ocean_geometry_vertices(void *__restrict userdata,
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const int y,
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const TaskParallelTLS *__restrict UNUSED(tls))
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{
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GenerateOceanGeometryData *gogd = 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->mverts[i].co;
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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_polygons(void *__restrict userdata,
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const int y,
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const TaskParallelTLS *__restrict UNUSED(tls))
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{
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GenerateOceanGeometryData *gogd = 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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MPoly *mp = &gogd->mpolys[fi];
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MLoop *ml = &gogd->mloops[fi * 4];
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ml->v = vi;
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ml++;
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ml->v = vi + 1;
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ml++;
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ml->v = vi + 1 + gogd->res_x + 1;
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ml++;
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ml->v = vi + gogd->res_x + 1;
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ml++;
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mp->loopstart = fi * 4;
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mp->totloop = 4;
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mp->flag |= ME_SMOOTH;
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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 UNUSED(tls))
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{
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GenerateOceanGeometryData *gogd = 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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MLoopUV *luv = &gogd->mloopuvs[i * 4];
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luv->uv[0] = x * gogd->ix;
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luv->uv[1] = y * gogd->iy;
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luv++;
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luv->uv[0] = (x + 1) * gogd->ix;
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luv->uv[1] = y * gogd->iy;
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luv++;
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luv->uv[0] = (x + 1) * gogd->ix;
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luv->uv[1] = (y + 1) * gogd->iy;
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luv++;
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luv->uv[0] = x * gogd->ix;
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luv->uv[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, 0, polys_num * 4, polys_num);
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BKE_mesh_copy_parameters_for_eval(result, mesh_orig);
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gogd.mverts = result->mvert;
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gogd.mpolys = result->mpoly;
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gogd.mloops = result->mloop;
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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_vertices, &settings);
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/* create faces */
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BLI_task_parallel_range(0, gogd.res_y, &gogd, generate_ocean_geometry_polygons, &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_MLOOPUV) < MAX_MTFACE) {
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gogd.mloopuvs = CustomData_add_layer(
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&result->ldata, CD_MLOOPUV, CD_CALLOC, NULL, polys_num * 4);
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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 = NULL;
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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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MVert *mverts;
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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 == true) {
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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 NULL 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(NULL, &mesh->id, NULL, 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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mverts = result->mvert;
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/* add vcols before displacement - allows lookup based on position */
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if (omd->flag & MOD_OCEAN_GENERATE_FOAM) {
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if (CustomData_number_of_layers(&result->ldata, CD_PROP_BYTE_COLOR) < MAX_MCOL) {
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const int polys_num = result->totpoly;
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const int loops_num = result->totloop;
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MLoop *mloops = result->mloop;
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MLoopCol *mloopcols = CustomData_add_layer_named(
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&result->ldata, CD_PROP_BYTE_COLOR, CD_CALLOC, NULL, loops_num, omd->foamlayername);
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MLoopCol *mloopcols_spray = NULL;
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if (omd->flag & MOD_OCEAN_GENERATE_SPRAY) {
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mloopcols_spray = CustomData_add_layer_named(
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&result->ldata, CD_PROP_BYTE_COLOR, CD_CALLOC, NULL, loops_num, omd->spraylayername);
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}
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if (mloopcols) { /* unlikely to fail */
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MPoly *mpolys = result->mpoly;
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MPoly *mp;
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for (i = 0, mp = mpolys; i < polys_num; i++, mp++) {
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MLoop *ml = &mloops[mp->loopstart];
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MLoopCol *mlcol = &mloopcols[mp->loopstart];
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MLoopCol *mlcolspray = NULL;
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if (omd->flag & MOD_OCEAN_GENERATE_SPRAY) {
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mlcolspray = &mloopcols_spray[mp->loopstart];
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}
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for (j = mp->totloop; j--; ml++, mlcol++) {
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const float *vco = mverts[ml->v].co;
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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 == true) {
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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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}
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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 = mverts[i].co;
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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 == true) {
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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_normals_tag_dirty(mesh);
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if (allocated_ocean) {
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BKE_ocean_free(omd->ocean);
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omd->ocean = NULL;
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}
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# undef OCEAN_CO
|
|
|
|
return result;
|
|
}
|
|
#else /* WITH_OCEANSIM */
|
|
static Mesh *doOcean(ModifierData *UNUSED(md), const ModifierEvalContext *UNUSED(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 *UNUSED(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, NULL, 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, NULL, ICON_NONE);
|
|
|
|
uiItemR(col, ptr, "depth", 0, NULL, ICON_NONE);
|
|
uiItemR(col, ptr, "size", 0, NULL, ICON_NONE);
|
|
uiItemR(col, ptr, "spatial_size", 0, NULL, ICON_NONE);
|
|
|
|
uiItemR(col, ptr, "random_seed", 0, NULL, ICON_NONE);
|
|
|
|
uiItemR(col, ptr, "use_normals", 0, NULL, 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 *UNUSED(C), Panel *panel)
|
|
{
|
|
uiLayout *col, *sub;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, NULL);
|
|
|
|
uiLayoutSetPropSep(layout, true);
|
|
|
|
col = uiLayoutColumn(layout, false);
|
|
uiItemR(col, ptr, "wave_scale", 0, IFACE_("Scale"), ICON_NONE);
|
|
uiItemR(col, ptr, "wave_scale_min", 0, NULL, ICON_NONE);
|
|
uiItemR(col, ptr, "choppiness", 0, NULL, ICON_NONE);
|
|
uiItemR(col, ptr, "wind_velocity", 0, NULL, 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, NULL, ICON_NONE);
|
|
}
|
|
|
|
static void foam_panel_draw_header(const bContext *UNUSED(C), Panel *panel)
|
|
{
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, NULL);
|
|
|
|
uiItemR(layout, ptr, "use_foam", 0, IFACE_("Foam"), ICON_NONE);
|
|
}
|
|
|
|
static void foam_panel_draw(const bContext *UNUSED(C), Panel *panel)
|
|
{
|
|
uiLayout *col;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, NULL);
|
|
|
|
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 *UNUSED(C), Panel *panel)
|
|
{
|
|
uiLayout *row;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, NULL);
|
|
|
|
bool use_foam = RNA_boolean_get(ptr, "use_foam");
|
|
|
|
row = uiLayoutRow(layout, false);
|
|
uiLayoutSetActive(row, use_foam);
|
|
uiItemR(row, ptr, "use_spray", 0, IFACE_("Spray"), ICON_NONE);
|
|
}
|
|
|
|
static void spray_panel_draw(const bContext *UNUSED(C), Panel *panel)
|
|
{
|
|
uiLayout *col;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, NULL);
|
|
|
|
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 *UNUSED(C), Panel *panel)
|
|
{
|
|
uiLayout *col;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, NULL);
|
|
|
|
int spectrum = RNA_enum_get(ptr, "spectrum");
|
|
|
|
uiLayoutSetPropSep(layout, true);
|
|
|
|
col = uiLayoutColumn(layout, false);
|
|
uiItemR(col, ptr, "spectrum", 0, NULL, 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, NULL, ICON_NONE);
|
|
uiItemR(col, ptr, "fetch_jonswap", 0, NULL, ICON_NONE);
|
|
}
|
|
}
|
|
|
|
static void bake_panel_draw(const bContext *UNUSED(C), Panel *panel)
|
|
{
|
|
uiLayout *col;
|
|
uiLayout *layout = panel->layout;
|
|
|
|
PointerRNA *ptr = modifier_panel_get_property_pointers(panel, NULL);
|
|
|
|
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,
|
|
NULL,
|
|
WM_OP_EXEC_DEFAULT,
|
|
0,
|
|
&op_ptr);
|
|
RNA_boolean_set(&op_ptr, "free", true);
|
|
}
|
|
else {
|
|
uiItemO(layout, NULL, ICON_NONE, "OBJECT_OT_ocean_bake");
|
|
}
|
|
|
|
uiItemR(layout, ptr, "filepath", 0, NULL, 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, NULL, 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", NULL, 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", NULL, spectrum_panel_draw, panel_type);
|
|
modifier_subpanel_register(region_type, "bake", "Bake", NULL, bake_panel_draw, panel_type);
|
|
#else
|
|
UNUSED_VARS(panel_type);
|
|
#endif /* WITH_OCEANSIM */
|
|
}
|
|
|
|
static void blendRead(BlendDataReader *UNUSED(reader), ModifierData *md)
|
|
{
|
|
OceanModifierData *omd = (OceanModifierData *)md;
|
|
omd->oceancache = NULL;
|
|
omd->ocean = NULL;
|
|
}
|
|
|
|
ModifierTypeInfo modifierType_Ocean = {
|
|
/* name */ "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_DM */ NULL,
|
|
|
|
/* deformMatrices */ NULL,
|
|
/* deformVertsEM */ NULL,
|
|
/* deformMatricesEM */ NULL,
|
|
/* modifyMesh */ modifyMesh,
|
|
/* modifyGeometrySet */ NULL,
|
|
|
|
/* initData */ initData,
|
|
/* requiredDataMask */ requiredDataMask,
|
|
/* freeData */ freeData,
|
|
/* isDisabled */ NULL,
|
|
/* updateDepsgraph */ NULL,
|
|
/* dependsOnTime */ NULL,
|
|
/* dependsOnNormals */ dependsOnNormals,
|
|
/* foreachIDLink */ NULL,
|
|
/* foreachTexLink */ NULL,
|
|
/* freeRuntimeData */ NULL,
|
|
/* panelRegister */ panelRegister,
|
|
/* blendWrite */ NULL,
|
|
/* blendRead */ blendRead,
|
|
};
|