These headers are not needed right away, but will be in the upcoming commit.
300 lines
11 KiB
C
300 lines
11 KiB
C
/*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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* Copyright 2018, Blender Foundation.
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*/
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/** \file
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* \ingroup draw_engine
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*/
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#include "workbench_private.h"
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#include "DNA_fluid_types.h"
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#include "DNA_modifier_types.h"
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#include "DNA_object_force_types.h"
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#include "DNA_volume_types.h"
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#include "BLI_dynstr.h"
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#include "BLI_listbase.h"
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#include "BLI_rand.h"
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#include "BLI_string_utils.h"
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#include "BKE_fluid.h"
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#include "BKE_global.h"
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#include "BKE_object.h"
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#include "BKE_volume.h"
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#include "BKE_volume_render.h"
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#include "GPU_draw.h"
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void workbench_volume_engine_init(WORKBENCH_Data *vedata)
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{
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WORKBENCH_TextureList *txl = vedata->txl;
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if (txl->dummy_volume_tx == NULL) {
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float zero[4] = {0.0f, 0.0f, 0.0f, 0.0f};
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float one[4] = {1.0f, 1.0f, 1.0f, 1.0f};
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txl->dummy_volume_tx = GPU_texture_create_3d(1, 1, 1, GPU_RGBA8, zero, NULL);
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txl->dummy_shadow_tx = GPU_texture_create_3d(1, 1, 1, GPU_RGBA8, one, NULL);
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txl->dummy_coba_tx = GPU_texture_create_1d(1, GPU_RGBA8, zero, NULL);
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}
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}
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void workbench_volume_cache_init(WORKBENCH_Data *vedata)
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{
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vedata->psl->volume_ps = DRW_pass_create(
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"Volumes", DRW_STATE_WRITE_COLOR | DRW_STATE_BLEND_ALPHA_PREMUL | DRW_STATE_CULL_FRONT);
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vedata->stl->wpd->volumes_do = false;
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}
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static void workbench_volume_modifier_cache_populate(WORKBENCH_Data *vedata,
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Object *ob,
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ModifierData *md)
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{
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FluidModifierData *mmd = (FluidModifierData *)md;
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FluidDomainSettings *mds = mmd->domain;
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WORKBENCH_PrivateData *wpd = vedata->stl->wpd;
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WORKBENCH_TextureList *txl = vedata->txl;
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DefaultTextureList *dtxl = DRW_viewport_texture_list_get();
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DRWShadingGroup *grp = NULL;
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/* Don't try to show liquid domains here */
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if (!mds->fluid || !(mds->type == FLUID_DOMAIN_TYPE_GAS)) {
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return;
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}
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wpd->volumes_do = true;
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if (mds->use_coba) {
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GPU_create_smoke_coba_field(mmd);
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}
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else if (!(mds->flags & FLUID_DOMAIN_USE_NOISE)) {
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GPU_create_smoke(mmd, 0);
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}
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else if (mds->flags & FLUID_DOMAIN_USE_NOISE) {
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GPU_create_smoke(mmd, 1);
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}
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if ((!mds->use_coba && (mds->tex_density == NULL && mds->tex_color == NULL)) ||
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(mds->use_coba && mds->tex_field == NULL)) {
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return;
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}
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const bool use_slice = (mds->slice_method == FLUID_DOMAIN_SLICE_AXIS_ALIGNED &&
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mds->axis_slice_method == AXIS_SLICE_SINGLE);
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const bool cubic_interp = (mds->interp_method == VOLUME_INTERP_CUBIC);
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GPUShader *sh = workbench_shader_volume_get(use_slice, mds->use_coba, cubic_interp, true);
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if (use_slice) {
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float invviewmat[4][4];
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DRW_view_viewmat_get(NULL, invviewmat, true);
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const int axis = (mds->slice_axis == SLICE_AXIS_AUTO) ?
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axis_dominant_v3_single(invviewmat[2]) :
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mds->slice_axis - 1;
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float dim[3];
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BKE_object_dimensions_get(ob, dim);
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/* 0.05f to achieve somewhat the same opacity as the full view. */
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float step_length = max_ff(1e-16f, dim[axis] * 0.05f);
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grp = DRW_shgroup_create(sh, vedata->psl->volume_ps);
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DRW_shgroup_uniform_float_copy(grp, "slicePosition", mds->slice_depth);
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DRW_shgroup_uniform_int_copy(grp, "sliceAxis", axis);
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DRW_shgroup_uniform_float_copy(grp, "stepLength", step_length);
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DRW_shgroup_state_disable(grp, DRW_STATE_CULL_FRONT);
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}
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else {
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double noise_ofs;
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BLI_halton_1d(3, 0.0, wpd->taa_sample, &noise_ofs);
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float dim[3], step_length, max_slice;
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float slice_ct[3] = {mds->res[0], mds->res[1], mds->res[2]};
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mul_v3_fl(slice_ct, max_ff(0.001f, mds->slice_per_voxel));
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max_slice = max_fff(slice_ct[0], slice_ct[1], slice_ct[2]);
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BKE_object_dimensions_get(ob, dim);
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invert_v3(slice_ct);
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mul_v3_v3(dim, slice_ct);
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step_length = len_v3(dim);
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grp = DRW_shgroup_create(sh, vedata->psl->volume_ps);
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DRW_shgroup_uniform_block(grp, "world_block", wpd->world_ubo);
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DRW_shgroup_uniform_int_copy(grp, "samplesLen", max_slice);
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DRW_shgroup_uniform_float_copy(grp, "stepLength", step_length);
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DRW_shgroup_uniform_float_copy(grp, "noiseOfs", noise_ofs);
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DRW_shgroup_state_enable(grp, DRW_STATE_CULL_FRONT);
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}
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if (mds->use_coba) {
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DRW_shgroup_uniform_texture(grp, "densityTexture", mds->tex_field);
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DRW_shgroup_uniform_texture(grp, "transferTexture", mds->tex_coba);
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}
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else {
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static float white[3] = {1.0f, 1.0f, 1.0f};
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bool use_constant_color = ((mds->active_fields & FLUID_DOMAIN_ACTIVE_COLORS) == 0 &&
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(mds->active_fields & FLUID_DOMAIN_ACTIVE_COLOR_SET) != 0);
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DRW_shgroup_uniform_texture(
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grp, "densityTexture", (mds->tex_color) ? mds->tex_color : mds->tex_density);
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DRW_shgroup_uniform_texture(grp, "shadowTexture", mds->tex_shadow);
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DRW_shgroup_uniform_texture(
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grp, "flameTexture", (mds->tex_flame) ? mds->tex_flame : txl->dummy_volume_tx);
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DRW_shgroup_uniform_texture(
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grp, "flameColorTexture", (mds->tex_flame) ? mds->tex_flame_coba : txl->dummy_coba_tx);
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DRW_shgroup_uniform_vec3(
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grp, "activeColor", (use_constant_color) ? mds->active_color : white, 1);
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}
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DRW_shgroup_uniform_texture_ref(grp, "depthBuffer", &dtxl->depth);
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DRW_shgroup_uniform_float_copy(grp, "densityScale", 10.0f * mds->display_thickness);
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if (use_slice) {
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DRW_shgroup_call(grp, DRW_cache_quad_get(), ob);
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}
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else {
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DRW_shgroup_call(grp, DRW_cache_cube_get(), ob);
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}
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BLI_addtail(&wpd->smoke_domains, BLI_genericNodeN(mmd));
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}
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static void workbench_volume_material_color(WORKBENCH_PrivateData *wpd,
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Object *ob,
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eV3DShadingColorType color_type,
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float color[3])
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{
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Material *ma = BKE_object_material_get(ob, VOLUME_MATERIAL_NR);
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WORKBENCH_UBO_Material ubo_data;
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workbench_material_ubo_data(wpd, ob, ma, &ubo_data, color_type);
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copy_v3_v3(color, ubo_data.base_color);
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}
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static void workbench_volume_object_cache_populate(WORKBENCH_Data *vedata,
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Object *ob,
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eV3DShadingColorType color_type)
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{
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/* Create 3D textures. */
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Volume *volume = ob->data;
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BKE_volume_load(volume, G.main);
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VolumeGrid *volume_grid = BKE_volume_grid_active_get(volume);
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if (volume_grid == NULL) {
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return;
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}
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DRWVolumeGrid *grid = DRW_volume_batch_cache_get_grid(volume, volume_grid);
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if (grid == NULL) {
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return;
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}
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WORKBENCH_PrivateData *wpd = vedata->stl->wpd;
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WORKBENCH_TextureList *txl = vedata->txl;
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DefaultTextureList *dtxl = DRW_viewport_texture_list_get();
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wpd->volumes_do = true;
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/* Create shader. */
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GPUShader *sh = workbench_shader_volume_get(false, false, false, false);
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/* Compute color. */
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float color[3];
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workbench_volume_material_color(wpd, ob, color_type, color);
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/* Combined texture to object, and object to world transform. */
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float texture_to_world[4][4];
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mul_m4_m4m4(texture_to_world, ob->obmat, grid->texture_to_object);
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/* Compute world space dimensions for step size. */
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float world_size[3];
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mat4_to_size(world_size, texture_to_world);
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abs_v3(world_size);
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/* Compute step parameters. */
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double noise_ofs;
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BLI_halton_1d(3, 0.0, wpd->taa_sample, &noise_ofs);
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float step_length, max_slice;
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int resolution[3];
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GPU_texture_get_mipmap_size(grid->texture, 0, resolution);
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float slice_ct[3] = {resolution[0], resolution[1], resolution[2]};
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mul_v3_fl(slice_ct, max_ff(0.001f, 5.0f));
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max_slice = max_fff(slice_ct[0], slice_ct[1], slice_ct[2]);
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invert_v3(slice_ct);
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mul_v3_v3(slice_ct, world_size);
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step_length = len_v3(slice_ct);
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/* Compute density scale. */
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const float density_scale = volume->display.density *
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BKE_volume_density_scale(volume, ob->obmat);
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/* Set uniforms. */
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DRWShadingGroup *grp = DRW_shgroup_create(sh, vedata->psl->volume_ps);
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DRW_shgroup_uniform_block(grp, "world_block", wpd->world_ubo);
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DRW_shgroup_uniform_int_copy(grp, "samplesLen", max_slice);
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DRW_shgroup_uniform_float_copy(grp, "stepLength", step_length);
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DRW_shgroup_uniform_float_copy(grp, "noiseOfs", noise_ofs);
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DRW_shgroup_state_enable(grp, DRW_STATE_CULL_FRONT);
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DRW_shgroup_uniform_texture(grp, "densityTexture", grid->texture);
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/* TODO: implement shadow texture, see manta_smoke_calc_transparency. */
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DRW_shgroup_uniform_texture(grp, "shadowTexture", txl->dummy_shadow_tx);
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DRW_shgroup_uniform_vec3_copy(grp, "activeColor", color);
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DRW_shgroup_uniform_texture_ref(grp, "depthBuffer", &dtxl->depth);
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DRW_shgroup_uniform_float_copy(grp, "densityScale", density_scale);
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DRW_shgroup_uniform_mat4(grp, "volumeObjectToTexture", grid->object_to_texture);
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DRW_shgroup_uniform_mat4(grp, "volumeTextureToObject", grid->texture_to_object);
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DRW_shgroup_call(grp, DRW_cache_cube_get(), ob);
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}
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void workbench_volume_cache_populate(WORKBENCH_Data *vedata,
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Scene *UNUSED(scene),
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Object *ob,
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ModifierData *md,
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eV3DShadingColorType color_type)
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{
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if (md == NULL) {
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workbench_volume_object_cache_populate(vedata, ob, color_type);
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}
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else {
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workbench_volume_modifier_cache_populate(vedata, ob, md);
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}
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}
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void workbench_volume_draw_pass(WORKBENCH_Data *vedata)
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{
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WORKBENCH_PassList *psl = vedata->psl;
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WORKBENCH_PrivateData *wpd = vedata->stl->wpd;
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DefaultFramebufferList *dfbl = DRW_viewport_framebuffer_list_get();
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if (wpd->volumes_do) {
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GPU_framebuffer_bind(dfbl->color_only_fb);
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DRW_draw_pass(psl->volume_ps);
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}
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}
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void workbench_volume_draw_finish(WORKBENCH_Data *vedata)
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{
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WORKBENCH_PrivateData *wpd = vedata->stl->wpd;
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/* Free Smoke Textures after rendering */
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/* XXX This is a waste of processing and GPU bandwidth if nothing
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* is updated. But the problem is since Textures are stored in the
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* modifier we don't want them to take precious VRAM if the
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* modifier is not used for display. We should share them for
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* all viewport in a redraw at least. */
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for (LinkData *link = wpd->smoke_domains.first; link; link = link->next) {
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FluidModifierData *mmd = (FluidModifierData *)link->data;
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GPU_free_smoke(mmd);
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}
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BLI_freelistN(&wpd->smoke_domains);
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}
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