forked from bartvdbraak/blender
1f9368b37e
* Allows moving, rotating & scaling of particle simulations. * Setting in particle render options. * Changes viewed & rendered particles from global space to parent space. * Doesn't effect simulations at all.
607 lines
16 KiB
Python
607 lines
16 KiB
Python
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import bpy
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def particle_panel_enabled(psys):
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return psys.point_cache.baked==False and psys.editable==False
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def particle_panel_poll(context):
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psys = context.particle_system
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if psys==None: return False
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return psys.settings.type in ('EMITTER', 'REACTOR', 'HAIR')
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class ParticleButtonsPanel(bpy.types.Panel):
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__space_type__ = "BUTTONS_WINDOW"
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__region_type__ = "WINDOW"
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__context__ = "particle"
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def poll(self, context):
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return particle_panel_poll(context)
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class PARTICLE_PT_particles(ParticleButtonsPanel):
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__idname__= "PARTICLE_PT_particles"
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__label__ = "Particle System"
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def poll(self, context):
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return (context.particle_system or context.object)
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def draw(self, context):
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layout = self.layout
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ob = context.object
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psys = context.particle_system
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split = layout.split(percentage=0.65)
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if psys:
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split.template_ID(context, psys, "settings")
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if psys:
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#row = layout.row()
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#row.itemL(text="Viewport")
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#row.itemL(text="Render")
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part = psys.settings
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ptype = psys.settings.type
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if ptype not in ('EMITTER', 'REACTOR', 'HAIR'):
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layout.itemL(text="No settings for fluid particles")
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return
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split = layout.split(percentage=0.65)
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split.enabled = particle_panel_enabled(psys)
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split.itemR(part, "type")
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split.itemR(psys, "seed")
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split = layout.split(percentage=0.65)
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if part.type=='HAIR':
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if psys.editable==True:
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split.itemO("PARTICLE_OT_editable_set", text="Free Edit")
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else:
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split.itemO("PARTICLE_OT_editable_set", text="Make Editable")
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row = split.row()
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row.enabled = particle_panel_enabled(psys)
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row.itemR(part, "hair_step")
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elif part.type=='REACTOR':
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split.enabled = particle_panel_enabled(psys)
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split.itemR(psys, "reactor_target_object")
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split.itemR(psys, "reactor_target_particle_system", text="Particle System")
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class PARTICLE_PT_emission(ParticleButtonsPanel):
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__idname__= "PARTICLE_PT_emission"
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__label__ = "Emission"
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def draw(self, context):
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layout = self.layout
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psys = context.particle_system
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part = psys.settings
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layout.enabled = particle_panel_enabled(psys)
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row = layout.row()
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row.itemR(part, "amount")
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split = layout.split()
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col = split.column(align=True)
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col.itemR(part, "start")
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col.itemR(part, "end")
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col = split.column(align=True)
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col.itemR(part, "lifetime")
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col.itemR(part, "random_lifetime", slider=True)
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layout.row().itemL(text="Emit From:")
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row = layout.row()
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row.itemR(part, "emit_from", expand=True)
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row = layout.row()
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row.itemR(part, "trand")
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if part.distribution!='GRID':
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row.itemR(part, "even_distribution")
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if part.emit_from=='FACE' or part.emit_from=='VOLUME':
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row = layout.row()
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row.itemR(part, "distribution", expand=True)
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row = layout.row()
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if part.distribution=='JIT':
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row.itemR(part, "userjit", text="Particles/Face")
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row.itemR(part, "jitter_factor", text="Jittering Amount", slider=True)
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elif part.distribution=='GRID':
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row.itemR(part, "grid_resolution")
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class PARTICLE_PT_cache(ParticleButtonsPanel):
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__idname__= "PARTICLE_PT_cache"
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__label__ = "Cache"
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__default_closed__ = True
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def poll(self, context):
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psys = context.particle_system
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if psys==None: return False
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return psys.settings.type in ('EMITTER', 'REACTOR')
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def draw(self, context):
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layout = self.layout
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psys = context.particle_system
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part = psys.settings
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cache = psys.point_cache
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row = layout.row()
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row.itemR(cache, "name", text="")
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if cache.outdated:
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row.itemL(text="Cache is outdated.")
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else:
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row.itemL(text="")
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row = layout.row()
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if cache.baked == True:
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row.itemO("PTCACHE_OT_free_bake_particle_system", text="Free Bake")
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else:
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row.item_booleanO("PTCACHE_OT_cache_particle_system", "bake", True, text="Bake")
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row = layout.row()
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row.enabled = particle_panel_enabled(psys)
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row.itemO("PTCACHE_OT_bake_from_particles_cache", text="Current Cache to Bake")
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if cache.autocache == 0:
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row.itemO("PTCACHE_OT_cache_particle_system", text="Cache to Current Frame")
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row = layout.row()
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row.enabled = particle_panel_enabled(psys)
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#row.itemR(cache, "autocache")
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row.itemR(cache, "disk_cache")
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row.itemL(text=cache.info)
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# for particles these are figured out automatically
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#row.itemR(cache, "start_frame")
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#row.itemR(cache, "end_frame")
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class PARTICLE_PT_initial(ParticleButtonsPanel):
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__idname__= "PARTICLE_PT_initial"
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__label__ = "Velocity"
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def draw(self, context):
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layout = self.layout
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psys = context.particle_system
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part = psys.settings
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layout.enabled = particle_panel_enabled(psys)
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layout.row().itemL(text="Direction:")
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split = layout.split()
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sub = split.column()
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sub.itemR(part, "normal_factor")
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if part.emit_from=='PARTICLE':
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sub.itemR(part, "particle_factor")
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else:
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sub.itemR(part, "object_factor", slider=True)
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sub.itemR(part, "random_factor")
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sub.itemR(part, "tangent_factor")
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sub.itemR(part, "tangent_phase", slider=True)
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sub = split.column()
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sub.itemL(text="TODO:")
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sub.itemL(text="Object aligned")
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sub.itemL(text="direction: X, Y, Z")
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if part.type=='REACTOR':
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sub.itemR(part, "reactor_factor")
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sub.itemR(part, "reaction_shape", slider=True)
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else:
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sub.itemL(text="")
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layout.row().itemL(text="Rotation:")
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split = layout.split()
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sub = split.column()
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sub.itemR(part, "rotation_mode", text="Axis")
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split = layout.split()
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sub = split.column()
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sub.itemR(part, "rotation_dynamic")
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sub.itemR(part, "random_rotation_factor", slider=True)
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sub = split.column()
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sub.itemR(part, "phase_factor", slider=True)
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sub.itemR(part, "random_phase_factor", text="Random", slider=True)
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layout.row().itemL(text="Angular velocity:")
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layout.row().itemR(part, "angular_velocity_mode", expand=True)
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split = layout.split()
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sub = split.column()
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sub.itemR(part, "angular_velocity_factor", text="")
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class PARTICLE_PT_physics(ParticleButtonsPanel):
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__idname__= "PARTICLE_PT_physics"
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__label__ = "Physics"
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def draw(self, context):
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layout = self.layout
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psys = context.particle_system
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part = psys.settings
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layout.enabled = layout.enabled = particle_panel_enabled(psys)
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row = layout.row()
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row.itemR(part, "physics_type", expand=True)
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if part.physics_type != 'NO':
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layout.itemR(part, "effector_group")
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row = layout.row()
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col = row.column(align=True)
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col.itemR(part, "particle_size")
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col.itemR(part, "random_size", slider=True)
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col = row.column(align=True)
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col.itemR(part, "mass")
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col.itemR(part, "sizemass", text="Multiply mass with size")
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split = layout.split()
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sub = split.column()
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if part.physics_type == 'NEWTON':
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sub.itemL(text="Forces:")
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sub.itemR(part, "brownian_factor")
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sub.itemR(part, "drag_factor", slider=True)
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sub.itemR(part, "damp_factor", slider=True)
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sub.itemR(part, "integrator")
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sub = split.column()
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sub.itemR(part, "acceleration")
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elif part.physics_type == 'KEYED':
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sub.itemR(psys, "keyed_first")
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if psys.keyed_first==True:
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sub.itemR(psys, "timed_keys", text="Key timing")
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else:
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sub.itemR(part, "keyed_time")
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sub = split.column()
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sub.itemL(text="Next key from object:")
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sub.itemR(psys, "keyed_object", text="")
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sub.itemR(psys, "keyed_particle_system")
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if part.physics_type=='NEWTON' or part.physics_type=='BOIDS':
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sub.itemR(part, "size_deflect")
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sub.itemR(part, "die_on_collision")
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sub.itemR(part, "sticky")
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class PARTICLE_PT_render(ParticleButtonsPanel):
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__idname__= "PARTICLE_PT_render"
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__label__ = "Render"
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def poll(self, context):
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return (context.particle_system != None)
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def draw(self, context):
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layout = self.layout
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psys = context.particle_system
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part = psys.settings
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row = layout.row()
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row.itemR(part, "material")
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row.itemR(psys, "parent");
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split = layout.split()
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sub = split.column()
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sub.itemR(part, "emitter");
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sub.itemR(part, "parent");
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sub = split.column()
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sub.itemR(part, "unborn");
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sub.itemR(part, "died");
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row = layout.row()
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row.itemR(part, "ren_as", expand=True)
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split = layout.split()
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sub = split.column()
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if part.ren_as == 'LINE':
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sub.itemR(part, "line_length_tail")
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sub.itemR(part, "line_length_head")
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sub = split.column()
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sub.itemR(part, "velocity_length")
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elif part.ren_as == 'PATH':
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if (part.type!='HAIR' and psys.point_cache.baked==False):
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box = layout.box()
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box.itemL(text="Baked or keyed particles needed for correct rendering.")
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return
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sub.itemR(part, "render_strand")
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colsub = sub.column()
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colsub.active = part.render_strand == False
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colsub.itemR(part, "render_adaptive")
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colsub = sub.column()
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colsub.active = part.render_adaptive or part.render_strand == True
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colsub.itemR(part, "adaptive_angle")
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colsub = sub.column()
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colsub.active = part.render_adaptive == True and part.render_strand == False
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colsub.itemR(part, "adaptive_pix")
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sub.itemR(part, "hair_bspline")
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sub.itemR(part, "render_step", text="Steps")
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sub = split.column()
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sub.itemL(text="Length:")
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sub.itemR(part, "abs_length", text="Absolute")
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sub.itemR(part, "absolute_length", text="Maximum")
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sub.itemR(part, "random_length", text="Random", slider=True)
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#row = layout.row()
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#row.itemR(part, "timed_path")
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#col = row.column(align=True)
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#col.active = part.timed_path == True
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#col.itemR(part, "line_length_tail", text="Start")
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#col.itemR(part, "line_length_head", text="End")
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row = layout.row()
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col = row.column()
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if part.type=='HAIR' and part.render_strand==True and part.child_type=='FACES':
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layout.itemR(part, "enable_simplify")
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if part.enable_simplify==True:
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row = layout.row()
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row.itemR(part, "simplify_refsize")
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row.itemR(part, "simplify_rate")
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row.itemR(part, "simplify_transition")
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row = layout.row()
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row.itemR(part, "viewport")
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subrow = row.row()
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subrow.active = part.viewport==True
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subrow.itemR(part, "simplify_viewport")
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elif part.ren_as == 'OBJECT':
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#sub = split.column()
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sub.itemR(part, "dupli_object")
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elif part.ren_as == 'GROUP':
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sub.itemR(part, "dupli_group")
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split = layout.split()
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sub = split.column()
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sub.itemR(part, "whole_group")
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sub = split.column()
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colsub = sub.column()
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colsub.active = part.whole_group == False
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colsub.itemR(part, "rand_group")
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elif part.ren_as == 'BILLBOARD':
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sub.itemL(text="Align:")
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row = layout.row()
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row.itemR(part, "billboard_align", expand=True)
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row.itemR(part, "billboard_lock", text="Lock")
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row = layout.row()
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row.itemR(part, "billboard_object")
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row = layout.row()
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col = row.column(align=True)
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col.itemL(text="Tilt:")
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col.itemR(part, "billboard_tilt", text="Angle", slider=True)
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col.itemR(part, "billboard_random_tilt", slider=True)
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col = row.column()
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col.itemR(part, "billboard_offset")
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row = layout.row()
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row.itemR(psys, "billboard_normal_uv")
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row = layout.row()
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row.itemR(psys, "billboard_time_index_uv")
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row = layout.row()
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row.itemL(text="Split uv's:")
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row.itemR(part, "billboard_uv_split", text="Number of splits")
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row = layout.row()
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row.itemR(psys, "billboard_split_uv")
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row = layout.row()
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row.itemL(text="Animate:")
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row.itemR(part, "billboard_animation", expand=True)
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row.itemL(text="Offset:")
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row.itemR(part, "billboard_split_offset", expand=True)
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class PARTICLE_PT_draw(ParticleButtonsPanel):
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__idname__= "PARTICLE_PT_draw"
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__label__ = "Display"
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__default_closed__ = True
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def poll(self, context):
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return (context.particle_system != None)
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def draw(self, context):
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layout = self.layout
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psys = context.particle_system
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part = psys.settings
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row = layout.row()
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row.itemR(part, "draw_as", expand=True)
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if part.draw_as=='NONE' or (part.ren_as=='NONE' and part.draw_as=='RENDER'):
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return
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path = (part.ren_as=='PATH' and part.draw_as=='RENDER') or part.draw_as=='PATH'
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if path and part.type!='HAIR' and psys.point_cache.baked==False:
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box = layout.box()
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box.itemL(text="Baked or keyed particles needed for correct drawing.")
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return
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row = layout.row()
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row.itemR(part, "display", slider=True)
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if part.draw_as!='RENDER' or part.ren_as=='HALO':
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row.itemR(part, "draw_size")
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else:
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row.itemL(text="")
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row = layout.row()
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col = row.column()
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col.itemR(part, "show_size")
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col.itemR(part, "velocity")
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col.itemR(part, "num")
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if part.physics_type == 'BOIDS':
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col.itemR(part, "draw_health")
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col = row.column()
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if (path):
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box = col.box()
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box.itemR(part, "draw_step")
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else:
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col.itemR(part, "material_color", text="Use material color")
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subcol = col.column()
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subcol.active = part.material_color==False
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#subcol.itemL(text="color")
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#subcol.itemL(text="Override material color")
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class PARTICLE_PT_children(ParticleButtonsPanel):
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__idname__= "PARTICLE_PT_children"
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__label__ = "Children"
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__default_closed__ = True
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def draw(self, context):
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layout = self.layout
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psys = context.particle_system
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part = psys.settings
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layout.row().itemR(part, "child_type", expand=True)
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if part.child_type=='NONE':
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return
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row = layout.row()
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col = row.column(align=True)
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col.itemR(part, "child_nbr", text="Display")
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col.itemR(part, "rendered_child_nbr", text="Render")
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col = row.column(align=True)
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if part.child_type=='FACES':
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col.itemR(part, "virtual_parents", slider=True)
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else:
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col.itemR(part, "child_radius", text="Radius")
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col.itemR(part, "child_roundness", text="Roundness", slider=True)
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col = row.column(align=True)
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col.itemR(part, "child_size", text="Size")
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col.itemR(part, "child_random_size", text="Random")
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layout.row().itemL(text="Effects:")
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row = layout.row()
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col = row.column(align=True)
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col.itemR(part, "clump_factor", slider=True)
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col.itemR(part, "clumppow", slider=True)
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col = row.column(align=True)
|
|
col.itemR(part, "rough_endpoint")
|
|
col.itemR(part, "rough_end_shape")
|
|
|
|
row = layout.row()
|
|
|
|
col = row.column(align=True)
|
|
col.itemR(part, "rough1")
|
|
col.itemR(part, "rough1_size")
|
|
|
|
col = row.column(align=True)
|
|
col.itemR(part, "rough2")
|
|
col.itemR(part, "rough2_size")
|
|
col.itemR(part, "rough2_thres", slider=True)
|
|
|
|
layout.row().itemL(text="Kink:")
|
|
layout.row().itemR(part, "kink", expand=True)
|
|
|
|
split = layout.split()
|
|
|
|
sub = split.column()
|
|
sub.itemR(part, "kink_amplitude")
|
|
sub.itemR(part, "kink_frequency")
|
|
sub = split.column()
|
|
sub.itemR(part, "kink_shape", slider=True)
|
|
|
|
class PARTICLE_PT_vertexgroups(ParticleButtonsPanel):
|
|
__idname__= "PARTICLE_PT_vertexgroups"
|
|
__label__ = "Vertexgroups"
|
|
__default_closed__ = True
|
|
|
|
def draw(self, context):
|
|
layout = self.layout
|
|
|
|
psys = context.particle_system
|
|
part = psys.settings
|
|
|
|
layout.itemL(text="Nothing here yet.")
|
|
|
|
#row = layout.row()
|
|
#row.itemL(text="Vertex Group")
|
|
#row.itemL(text="Negate")
|
|
|
|
|
|
#row = layout.row()
|
|
#row.itemR(psys, "vertex_group_density")
|
|
#row.itemR(psys, "vertex_group_density_negate", text="")
|
|
|
|
#row = layout.row()
|
|
#row.itemR(psys, "vertex_group_velocity")
|
|
#row.itemR(psys, "vertex_group_velocity_negate", text="")
|
|
|
|
#row = layout.row()
|
|
#row.itemR(psys, "vertex_group_length")
|
|
#row.itemR(psys, "vertex_group_length_negate", text="")
|
|
|
|
#row = layout.row()
|
|
#row.itemR(psys, "vertex_group_clump")
|
|
#row.itemR(psys, "vertex_group_clump_negate", text="")
|
|
|
|
#row = layout.row()
|
|
#row.itemR(psys, "vertex_group_kink")
|
|
#row.itemR(psys, "vertex_group_kink_negate", text="")
|
|
|
|
#row = layout.row()
|
|
#row.itemR(psys, "vertex_group_roughness1")
|
|
#row.itemR(psys, "vertex_group_roughness1_negate", text="")
|
|
|
|
#row = layout.row()
|
|
#row.itemR(psys, "vertex_group_roughness2")
|
|
#row.itemR(psys, "vertex_group_roughness2_negate", text="")
|
|
|
|
#row = layout.row()
|
|
#row.itemR(psys, "vertex_group_roughness_end")
|
|
#row.itemR(psys, "vertex_group_roughness_end_negate", text="")
|
|
|
|
#row = layout.row()
|
|
#row.itemR(psys, "vertex_group_size")
|
|
#row.itemR(psys, "vertex_group_size_negate", text="")
|
|
|
|
#row = layout.row()
|
|
#row.itemR(psys, "vertex_group_tangent")
|
|
#row.itemR(psys, "vertex_group_tangent_negate", text="")
|
|
|
|
#row = layout.row()
|
|
#row.itemR(psys, "vertex_group_rotation")
|
|
#row.itemR(psys, "vertex_group_rotation_negate", text="")
|
|
|
|
#row = layout.row()
|
|
#row.itemR(psys, "vertex_group_field")
|
|
#row.itemR(psys, "vertex_group_field_negate", text="")
|
|
|
|
bpy.types.register(PARTICLE_PT_particles)
|
|
bpy.types.register(PARTICLE_PT_cache)
|
|
bpy.types.register(PARTICLE_PT_emission)
|
|
bpy.types.register(PARTICLE_PT_initial)
|
|
bpy.types.register(PARTICLE_PT_physics)
|
|
bpy.types.register(PARTICLE_PT_render)
|
|
bpy.types.register(PARTICLE_PT_draw)
|
|
bpy.types.register(PARTICLE_PT_children)
|
|
bpy.types.register(PARTICLE_PT_vertexgroups)
|