mirror of
https://gitlab.com/veloren/veloren.git
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112 lines
4.8 KiB
Rust
112 lines
4.8 KiB
Rust
use common::{
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comp::{BuffChange, ControlEvent, Controller},
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event::{EventBus, ServerEvent},
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metrics::SysMetrics,
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span,
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uid::UidAllocator,
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};
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use specs::{
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saveload::{Marker, MarkerAllocator},
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shred::ResourceId,
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Entities, Join, Read, ReadExpect, System, SystemData, World, WriteStorage,
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};
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use vek::*;
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#[derive(SystemData)]
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pub struct ImmutableData<'a> {
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entities: Entities<'a>,
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uid_allocator: Read<'a, UidAllocator>,
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server_bus: Read<'a, EventBus<ServerEvent>>,
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metrics: ReadExpect<'a, SysMetrics>,
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}
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pub struct Sys;
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impl<'a> System<'a> for Sys {
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type SystemData = (ImmutableData<'a>, WriteStorage<'a, Controller>);
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fn run(&mut self, (immutable_data, mut controllers): Self::SystemData) {
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let start_time = std::time::Instant::now();
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span!(_guard, "run", "controller::Sys::run");
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let mut server_emitter = immutable_data.server_bus.emitter();
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for (entity, controller) in (&immutable_data.entities, &mut controllers).join() {
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let mut inputs = &mut controller.inputs;
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// Note(imbris): I avoided incrementing the duration with inputs.tick() because
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// this is being done manually in voxygen right now so it would double up on
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// speed of time.
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// Perhaphs the duration aspects of inputs could be
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// calculated exclusively on the server (since the client can't be
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// trusted anyway). It needs to be considered if these calculations
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// being on the client are critical for responsiveness/client-side prediction.
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inputs.tick_freshness();
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// Update `inputs.move_dir`.
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inputs.move_dir = if inputs.move_dir.magnitude_squared() > 1.0 {
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// Cap move_dir to 1
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inputs.move_dir.normalized()
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} else {
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inputs.move_dir
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};
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inputs.move_z = inputs.move_z.clamped(-1.0, 1.0);
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// Process other controller events
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for event in controller.events.drain(..) {
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match event {
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ControlEvent::Mount(mountee_uid) => {
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if let Some(mountee_entity) = immutable_data
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.uid_allocator
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.retrieve_entity_internal(mountee_uid.id())
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{
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server_emitter.emit(ServerEvent::Mount(entity, mountee_entity));
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}
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},
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ControlEvent::RemoveBuff(buff_id) => {
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server_emitter.emit(ServerEvent::Buff {
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entity,
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buff_change: BuffChange::RemoveFromController(buff_id),
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});
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},
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ControlEvent::Unmount => server_emitter.emit(ServerEvent::Unmount(entity)),
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ControlEvent::EnableLantern => {
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server_emitter.emit(ServerEvent::EnableLantern(entity))
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},
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ControlEvent::DisableLantern => {
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server_emitter.emit(ServerEvent::DisableLantern(entity))
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},
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ControlEvent::Interact(npc_uid) => {
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if let Some(npc_entity) = immutable_data
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.uid_allocator
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.retrieve_entity_internal(npc_uid.id())
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{
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server_emitter.emit(ServerEvent::NpcInteract(entity, npc_entity));
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}
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},
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ControlEvent::InitiateInvite(inviter_uid, kind) => {
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server_emitter.emit(ServerEvent::InitiateInvite(entity, inviter_uid, kind));
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},
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ControlEvent::InviteResponse(response) => {
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server_emitter.emit(ServerEvent::InviteResponse(entity, response));
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},
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ControlEvent::PerformTradeAction(trade_id, action) => {
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server_emitter
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.emit(ServerEvent::ProcessTradeAction(entity, trade_id, action));
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},
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ControlEvent::InventoryManip(manip) => {
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server_emitter.emit(ServerEvent::InventoryManip(entity, manip.into()));
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},
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ControlEvent::GroupManip(manip) => {
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server_emitter.emit(ServerEvent::GroupManip(entity, manip))
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},
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ControlEvent::Respawn => server_emitter.emit(ServerEvent::Respawn(entity)),
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}
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}
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}
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immutable_data.metrics.controller_ns.store(
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start_time.elapsed().as_nanos() as u64,
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std::sync::atomic::Ordering::Relaxed,
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);
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}
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}
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