""" RenderPipeline Copyright (c) 2014-2016 tobspr Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. """ from panda3d.core import PTAInt from rpcore.globals import Globals from rpcore.util.shader_input_blocks import SimpleInputBlock from rpcore.pluginbase.base_plugin import BasePlugin from rpcore.stages.cull_lights_stage import CullLightsStage from .probe_manager import ProbeManager from .environment_capture_stage import EnvironmentCaptureStage from .apply_envprobes_stage import ApplyEnvprobesStage from .cull_probes_stage import CullProbesStage class Plugin(BasePlugin): name = "Environment Probes" author = "tobspr " description = ("This plugin adds support for environment probes, containing " "diffuse and specular information. This enables accurate " "reflections, and can also be used to simulate GI.") version = "beta (!)" def on_stage_setup(self): self.probe_mgr = ProbeManager() self.probe_mgr.resolution = self.get_setting("probe_resolution") self.probe_mgr.diffuse_resolution = self.get_setting("diffuse_probe_resolution") self.probe_mgr.max_probes = self.get_setting("max_probes") self.probe_mgr.init() self._setup_stages() def _setup_stages(self): """ Setups all stages """ # Create the stage to generate and update the cubemaps self.capture_stage = self.create_stage(EnvironmentCaptureStage) self.capture_stage.resolution = self.probe_mgr.resolution self.capture_stage.diffuse_resolution = self.probe_mgr.diffuse_resolution self.capture_stage.storage_tex = self.probe_mgr.cubemap_storage self.capture_stage.storage_tex_diffuse = self.probe_mgr.diffuse_storage # Create the stage to cull the cubemaps self.cull_stage = self.create_stage(CullProbesStage) # Create the stage to apply the cubemaps self.apply_stage = self.create_stage(ApplyEnvprobesStage) if self.is_plugin_enabled("scattering"): self.capture_stage.required_pipes += ["ScatteringIBLSpecular", "ScatteringIBLDiffuse"] if self.is_plugin_enabled("pssm"): self.capture_stage.required_pipes += ["PSSMSceneSunShadowMapPCF"] self.capture_stage.required_inputs += ["PSSMSceneSunShadowMVP"] self._setup_inputs() def _setup_inputs(self): """ Sets all required inputs """ self.pta_probes = PTAInt.empty_array(1) # Construct the UBO which stores all environment probe data self.data_ubo = SimpleInputBlock("EnvProbes") self.data_ubo.add_input("num_probes", self.pta_probes) self.data_ubo.add_input("cubemaps", self.probe_mgr.cubemap_storage) self.data_ubo.add_input("diffuse_cubemaps", self.probe_mgr.diffuse_storage) self.data_ubo.add_input("dataset", self.probe_mgr.dataset_storage) self._pipeline.stage_mgr.input_blocks.append(self.data_ubo) # Use the UBO in light culling CullLightsStage.required_inputs.append("EnvProbes") def on_pre_render_update(self): if self._pipeline.task_scheduler.is_scheduled("envprobes_select_and_cull"): self.probe_mgr.update() self.pta_probes[0] = self.probe_mgr.num_probes probe = self.probe_mgr.find_probe_to_update() if probe: probe.last_update = Globals.clock.get_frame_count() self.capture_stage.active = True self.capture_stage.set_probe(probe) if self.is_plugin_enabled("pssm"): self.get_plugin_instance("pssm").scene_shadow_stage.request_focus( probe.bounds.get_center(), probe.bounds.get_radius() ) else: self.capture_stage.active = False