make deconstruction its own system
This commit is contained in:
@@ -181,7 +181,7 @@ int BuildingSystem::deconstruct(FactoryState& state, BuildingId id, Tick current
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state.deconstructionQueue.push_back(std::move(entry));
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if (wasEmpty)
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{
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startFrontDeconstruction(state, currentTick);
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startFrontDeconstruction(state, m_config, currentTick);
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}
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return 0;
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}
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@@ -189,17 +189,6 @@ int BuildingSystem::deconstruct(FactoryState& state, BuildingId id, Tick current
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return 0;
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}
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void BuildingSystem::startFrontDeconstruction(FactoryState& state, Tick currentTick)
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{
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if (state.deconstructionQueue.empty()) { return; }
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DeconstructionEntry& front = state.deconstructionQueue.front();
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if (front.completesAt == 0)
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{
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front.completesAt =
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currentTick + secondsToTicks(m_config.world.deconstructionTimeSeconds);
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}
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}
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// ---------------------------------------------------------------------------
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// Set recipe
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// ---------------------------------------------------------------------------
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@@ -334,53 +323,6 @@ void BuildingSystem::setSiteSplitterFilters(FactoryState& state, BuildingId id,
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// Tick hooks
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// ---------------------------------------------------------------------------
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void BuildingSystem::tickDeconstruction(FactoryState& state, Tick currentTick)
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{
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TRACE();
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if (state.deconstructionQueue.empty())
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{
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return;
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}
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DeconstructionEntry& front = state.deconstructionQueue.front();
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// Guard: if the front entry's timer was never started, start it now.
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if (front.completesAt == 0)
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{
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startFrontDeconstruction(state, currentTick);
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return;
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}
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if (currentTick < front.completesAt)
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{
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return;
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}
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// Remove the building from the world and credit its refund (REQ-BLD-DECONSTRUCT).
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// Belt/tunnel/splitter tiles were already unregistered when the building was
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// queued (see deconstruct), so only tile occupancy and the record remain.
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for (std::vector<Building>::iterator it = state.buildings.begin();
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it != state.buildings.end();
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++it)
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{
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if (it->id != front.id) { continue; }
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const BuildingDef* def = m_config.buildings.findBuildingDef(it->type);
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state.grid.release(it->bodyCells);
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state.buildings.erase(it);
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if (def)
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{
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m_addBuildingBlocks(def->cost * m_config.world.refundPercentage / 100);
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}
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break;
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}
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state.deconstructionQueue.pop_front();
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// Start the next queued deconstruction, if any.
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startFrontDeconstruction(state, currentTick);
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}
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void BuildingSystem::cancelDeconstruction(FactoryState& state, BuildingId id)
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{
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for (std::deque<DeconstructionEntry>::iterator it = state.deconstructionQueue.begin();
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@@ -17,6 +17,7 @@
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#include "Building.h"
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#include "FactoryState.h"
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#include "BuildingBuffers.h"
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#include "DeconstructionSystem.h"
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#include "PlacementRules.h"
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#include "ProductionRules.h"
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#include "BuildingType.h"
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@@ -107,7 +108,6 @@ public:
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// Advances the deconstruction queue (REQ-BLD-DECON-QUEUE): one building at a
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// time, in parallel with tickConstruction. Removes the front building and
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// credits its refund when its timer elapses.
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void tickDeconstruction(FactoryState& state, Tick currentTick);
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void tickBeltPull(FactoryState& state);
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void tickProduction(FactoryState& state, Tick currentTick);
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void tickShipyardProduction(FactoryState& state, Tick currentTick);
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@@ -183,7 +183,6 @@ public:
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private:
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// Starts the front deconstruction-queue entry's timer if not yet started
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// (mirrors how tickConstruction starts a queued construction site).
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void startFrontDeconstruction(FactoryState& state, Tick currentTick);
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// Registers a belt/splitter/tunnel building's tile with the belt subsystem
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// (on construction completion, or when un-queuing a deconstruction). No-op for
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@@ -14,6 +14,7 @@ SET(HDRS
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${CMAKE_CURRENT_SOURCE_DIR}/BuildingConfig.h
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${CMAKE_CURRENT_SOURCE_DIR}/BuildingGrid.h
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${CMAKE_CURRENT_SOURCE_DIR}/ConstructionSystem.h
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${CMAKE_CURRENT_SOURCE_DIR}/DeconstructionSystem.h
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${CMAKE_CURRENT_SOURCE_DIR}/BuildingBuffers.h
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${CMAKE_CURRENT_SOURCE_DIR}/FactoryState.h
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${CMAKE_CURRENT_SOURCE_DIR}/FactoryQueries.h
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@@ -45,6 +46,7 @@ SET(SRCS
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${CMAKE_CURRENT_SOURCE_DIR}/BuildingConfig.cpp
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${CMAKE_CURRENT_SOURCE_DIR}/BuildingGrid.cpp
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${CMAKE_CURRENT_SOURCE_DIR}/ConstructionSystem.cpp
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${CMAKE_CURRENT_SOURCE_DIR}/DeconstructionSystem.cpp
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${CMAKE_CURRENT_SOURCE_DIR}/BuildingBuffers.cpp
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${CMAKE_CURRENT_SOURCE_DIR}/FactoryQueries.cpp
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${CMAKE_CURRENT_SOURCE_DIR}/ProductionRules.cpp
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67
src/lib/sim/DeconstructionSystem.cpp
Normal file
67
src/lib/sim/DeconstructionSystem.cpp
Normal file
@@ -0,0 +1,67 @@
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#include "DeconstructionSystem.h"
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#include <vector>
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#include "Building.h"
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#include "tracing.h"
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void startFrontDeconstruction(FactoryState& state, const GameConfig& config,
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Tick currentTick)
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{
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if (state.deconstructionQueue.empty()) { return; }
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DeconstructionEntry& front = state.deconstructionQueue.front();
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if (front.completesAt == 0)
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{
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front.completesAt =
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currentTick + secondsToTicks(config.world.deconstructionTimeSeconds);
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}
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}
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void DeconstructionSystem::tick(FactoryState& state, Tick currentTick)
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{
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TRACE();
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if (state.deconstructionQueue.empty())
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{
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return;
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}
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DeconstructionEntry& front = state.deconstructionQueue.front();
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// Guard: if the front entry's timer was never started, start it now.
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if (front.completesAt == 0)
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{
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startFrontDeconstruction(state, m_config, currentTick);
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return;
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}
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if (currentTick < front.completesAt)
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{
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return;
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}
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// Remove the building from the world and credit its refund (REQ-BLD-DECONSTRUCT).
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// Belt/tunnel/splitter tiles were already unregistered when the building was
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// queued (see deconstruct), so only tile occupancy and the record remain.
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for (std::vector<Building>::iterator it = state.buildings.begin();
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it != state.buildings.end();
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++it)
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{
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if (it->id != front.id) { continue; }
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const BuildingDef* def = m_config.buildings.findBuildingDef(it->type);
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state.grid.release(it->bodyCells);
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state.buildings.erase(it);
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if (def)
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{
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m_addBuildingBlocks(def->cost * m_config.world.refundPercentage / 100);
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}
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break;
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}
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state.deconstructionQueue.pop_front();
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// Start the next queued deconstruction, if any.
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startFrontDeconstruction(state, m_config, currentTick);
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}
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36
src/lib/sim/DeconstructionSystem.h
Normal file
36
src/lib/sim/DeconstructionSystem.h
Normal file
@@ -0,0 +1,36 @@
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#pragma once
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#include <functional>
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#include "FactoryState.h"
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#include "GameConfig.h"
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#include "Tick.h"
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// The queue timer for pending demolitions (REQ-BLD-DECON-QUEUE): one building at a
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// time, in parallel with construction. When the front entry's timer elapses the
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// building is removed from the world, its tiles are released, and its partial refund
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// is credited.
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//
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// It needs no BeltSystem: a belt, splitter or tunnel end is unregistered the moment
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// it is queued (see BuildingSystem::deconstruct), not when the timer completes.
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//
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// Holds the config and the refund sink; the world arrives per tick.
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class DeconstructionSystem
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{
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public:
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DeconstructionSystem(const GameConfig& config,
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std::function<void(int)> addBuildingBlocks)
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: m_config(config), m_addBuildingBlocks(std::move(addBuildingBlocks)) {}
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void tick(FactoryState& state, Tick currentTick);
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private:
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const GameConfig& m_config;
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std::function<void(int)> m_addBuildingBlocks;
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};
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// Starts the timer on the front entry of the deconstruction queue, if it has one and
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// it has not started yet. Shared: BuildingSystem::deconstruct starts the timer when it
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// queues the first entry, and DeconstructionSystem restarts it after each completion.
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void startFrontDeconstruction(FactoryState& state, const GameConfig& config,
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Tick currentTick);
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@@ -2,6 +2,7 @@
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#include "FactoryQueries.h"
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#include "ConstructionSystem.h"
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#include "DeconstructionSystem.h"
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#include "PlacementRules.h"
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#include <algorithm>
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@@ -125,6 +126,8 @@ void Simulation::initializeSubsystems()
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[this](const std::string& itemId) -> bool { return isItemUnlocked(itemId); },
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m_rng);
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m_constructionSystem = std::make_unique<ConstructionSystem>(m_config);
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m_deconstructionSystem = std::make_unique<DeconstructionSystem>(
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m_config, [this](int amount) { m_buildingBlocksStock += amount; });
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m_shipSystem = std::make_unique<ShipSystem>(m_config, m_admin);
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m_aiSystem = std::make_unique<AiSystem>(m_config);
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m_movementIntentSystem = std::make_unique<MovementIntentSystem>();
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@@ -246,7 +249,7 @@ void Simulation::tick()
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// Construction + production pipeline
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m_constructionSystem->tick(m_factoryState, m_beltSystem, m_currentTick);
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m_buildingSystem->tickDeconstruction(m_factoryState, m_currentTick); // parallel to construction
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m_deconstructionSystem->tick(m_factoryState, m_currentTick); // parallel to construction
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m_buildingSystem->tickBeltPull(m_factoryState); // step 3
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m_buildingSystem->tickProduction(m_factoryState, m_currentTick); // step 4
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m_buildingSystem->tickShipyardProduction(m_factoryState, m_currentTick); // step 4b
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@@ -26,6 +26,7 @@
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class AiSystem;
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class BuildingSystem;
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class ConstructionSystem;
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class DeconstructionSystem;
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struct Command;
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class Hasher;
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class CombatSystem;
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@@ -220,6 +221,7 @@ private:
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BeltSystem m_beltSystem;
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std::unique_ptr<BuildingSystem> m_buildingSystem;
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std::unique_ptr<ConstructionSystem> m_constructionSystem;
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std::unique_ptr<DeconstructionSystem> m_deconstructionSystem;
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std::unique_ptr<ShipSystem> m_shipSystem;
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std::unique_ptr<AiSystem> m_aiSystem;
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std::unique_ptr<MovementIntentSystem> m_movementIntentSystem;
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@@ -16,6 +16,7 @@
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#include "Building.h"
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#include "BuildingSystem.h"
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#include "ConstructionSystem.h"
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#include "DeconstructionSystem.h"
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#include "FactoryState.h"
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#include "BuildingType.h"
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#include "ConfigLoader.h"
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@@ -55,12 +56,12 @@ static Port westPort(QPoint tile)
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// Run N full sim ticks: construction, belt-pull, production, belt-push, belt tick.
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static void runTicks(BuildingSystem& bs, const GameConfig& cfg, FactoryState& state_bs,
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BeltSystem& belts, int n, Tick& tick)
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BeltSystem& belts, int& stock, int n, Tick& tick)
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{
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for (int i = 0; i < n; ++i)
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{
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ConstructionSystem(cfg).tick(state_bs, belts, tick);
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bs.tickDeconstruction(state_bs, tick);
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DeconstructionSystem(cfg, [&stock](int n) { stock += n; }).tick(state_bs, tick);
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bs.tickBeltPull(state_bs);
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bs.tickProduction(state_bs, tick);
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bs.tickOutputBelts(state_bs);
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@@ -241,7 +242,7 @@ TEST_CASE("BuildingSystem: placing a belt registers it with BeltSystem after con
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// Complete construction (1 s).
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Tick tick = 0;
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runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(1.0)) + 1, tick);
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runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(1.0)) + 1, tick);
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REQUIRE(belts.tryPutItem(QPoint(5, 5), makeItem("iron_ore"), Rotation::East));
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REQUIRE(getAllBuildings(state_bs).size() == 1);
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@@ -354,7 +355,7 @@ TEST_CASE("BuildingSystem: construction completes after configured duration", "[
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// Miner construction_time_seconds = 10. completesAt = secondsToTicks(10) = 300.
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// We need to process tick 300 itself, so run 301 ticks (ticks 0..300).
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Tick tick = 0;
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runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(10.0)) + 1, tick);
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runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(10.0)) + 1, tick);
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REQUIRE(getAllSites(state_bs).empty());
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REQUIRE(findBuilding(state_bs, id) != nullptr);
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@@ -369,7 +370,7 @@ static void runUntilBuilt(PlacementFixture& f, BuildingId id, Tick& tick)
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{
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for (int i = 0; i < 100000 && findBuilding(f.state, id) == nullptr; ++i)
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{
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runTicks(f.bs, f.cfg, f.state, f.belts, 1, tick);
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runTicks(f.bs, f.cfg, f.state, f.belts, f.stock, 1, tick);
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}
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REQUIRE(findBuilding(f.state, id) != nullptr);
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}
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@@ -394,7 +395,7 @@ TEST_CASE("BuildingSystem: deconstructing a built building queues it; refund cre
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// After the deconstruction time (0.1s = 3 ticks) it is removed and the partial
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// refund (15 * 75 / 100 = 11) is credited exactly once.
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runTicks(f.bs, f.cfg, f.state, f.belts, static_cast<int>(secondsToTicks(0.1)) + 1, tick);
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runTicks(f.bs, f.cfg, f.state, f.belts, f.stock, static_cast<int>(secondsToTicks(0.1)) + 1, tick);
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REQUIRE(findBuilding(f.state, id) == nullptr);
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REQUIRE_FALSE(isTileOccupied(f.state, QPoint(0, 0)));
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REQUIRE(f.stock == 15 * f.cfg.world.refundPercentage / 100);
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@@ -418,14 +419,14 @@ TEST_CASE("BuildingSystem: deconstruction queue removes one building at a time",
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// After one deconstruction interval only the front building is gone; the
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// second is still queued and its refund not yet credited.
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runTicks(f.bs, f.cfg, f.state, f.belts, static_cast<int>(secondsToTicks(0.1)) + 1, tick);
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runTicks(f.bs, f.cfg, f.state, f.belts, f.stock, static_cast<int>(secondsToTicks(0.1)) + 1, tick);
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REQUIRE(findBuilding(f.state, a) == nullptr);
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REQUIRE(findBuilding(f.state, b) != nullptr);
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REQUIRE(isQueuedForDeconstruction(f.state, b));
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REQUIRE(f.stock == 15 * f.cfg.world.refundPercentage / 100);
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// The second drains next.
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runTicks(f.bs, f.cfg, f.state, f.belts, static_cast<int>(secondsToTicks(0.1)) + 2, tick);
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runTicks(f.bs, f.cfg, f.state, f.belts, f.stock, static_cast<int>(secondsToTicks(0.1)) + 2, tick);
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REQUIRE(findBuilding(f.state, b) == nullptr);
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REQUIRE(f.stock == 2 * (15 * f.cfg.world.refundPercentage / 100));
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}
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@@ -451,7 +452,7 @@ TEST_CASE("BuildingSystem: cancelling deconstruction resumes the building with n
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REQUIRE(f.stock == 0);
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// It is never removed even after more than a deconstruction interval passes.
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runTicks(f.bs, f.cfg, f.state, f.belts, static_cast<int>(secondsToTicks(0.1)) + 5, tick);
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runTicks(f.bs, f.cfg, f.state, f.belts, f.stock, static_cast<int>(secondsToTicks(0.1)) + 5, tick);
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REQUIRE(findBuilding(f.state, id) != nullptr);
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REQUIRE(f.stock == 0);
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}
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@@ -521,7 +522,7 @@ TEST_CASE("BuildingSystem: second building starts after first completes", "[buil
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// Process through tick 300 to complete first miner's construction.
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Tick tick = 0;
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runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(10.0)) + 1, tick);
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runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(10.0)) + 1, tick);
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REQUIRE(getAllSites(state_bs).size() == 1);
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REQUIRE(getAllSites(state_bs).front().id == id2);
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@@ -553,7 +554,7 @@ TEST_CASE("BuildingSystem: miner produces iron_ore after recipe duration", "[bui
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Tick tick = 0;
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// Construction completes on tick 300; production cycle starts tick 300,
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// completes on tick 330. Process through tick 330: 331 ticks total.
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runTicks(bs, cfg, state_bs, belts,
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runTicks(bs, cfg, state_bs, belts, stock,
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static_cast<int>(secondsToTicks(10.0)) + static_cast<int>(secondsToTicks(1.0)) + 1,
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tick);
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@@ -590,7 +591,7 @@ TEST_CASE("BuildingSystem: miner output buffer stalls when full", "[building]")
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// Cycle 2 starts at tick 331 (completesAt=361).
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// Cycle 2 completes at tick 361: deposit item → buffer=2, cycle 3 stalls.
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// Need to process through tick 361: 362 ticks total.
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runTicks(bs, cfg, state_bs, belts,
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runTicks(bs, cfg, state_bs, belts, stock,
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static_cast<int>(secondsToTicks(10.0))
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+ 2 * static_cast<int>(secondsToTicks(1.0)) + 2,
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tick);
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@@ -632,10 +633,10 @@ TEST_CASE("BuildingSystem: productionBuildingCount excludes construction sites",
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// The queue builds one at a time: miner (10s) completes at tick 300, then
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// the smelter (15s) starts and completes at tick 300 + 450 = 750.
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runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(10.0)) + 1, tick);
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runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(10.0)) + 1, tick);
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REQUIRE(getProductionBuildingCount(state_bs) == 1);
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runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(15.0)), tick);
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runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(15.0)), tick);
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REQUIRE(getProductionBuildingCount(state_bs) == 2);
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// Neither is producing yet: the miner has no recipe selected, and the
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@@ -643,7 +644,7 @@ TEST_CASE("BuildingSystem: productionBuildingCount excludes construction sites",
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REQUIRE(getActiveProductionBuildingCount(state_bs) == 0);
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bs.setRecipe(state_bs, minerId, "mine_iron_ore");
|
||||
runTicks(bs, cfg, state_bs, belts, 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, 1, tick);
|
||||
REQUIRE(getActiveProductionBuildingCount(state_bs) == 1);
|
||||
}
|
||||
|
||||
@@ -671,12 +672,12 @@ TEST_CASE("BuildingSystem: activeProductionBuildingCount tracks production cycle
|
||||
REQUIRE(getActiveProductionBuildingCount(state_bs) == 0);
|
||||
|
||||
// Construction completes at tick 300; cycle 1 starts the same tick (completesAt=330).
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(10.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(10.0)) + 1, tick);
|
||||
REQUIRE(getActiveProductionBuildingCount(state_bs) == 1);
|
||||
|
||||
// Run cycles 1 and 2 to completion (1s each); cycle 3 stalls once the
|
||||
// output buffer (capacity 2) is full (REQ-MAT-OUTPUT-BUFFER).
|
||||
runTicks(bs, cfg, state_bs, belts, 2 * static_cast<int>(secondsToTicks(1.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, 2 * static_cast<int>(secondsToTicks(1.0)) + 1, tick);
|
||||
|
||||
const Building* b = findBuilding(state_bs, id);
|
||||
REQUIRE(b != nullptr);
|
||||
@@ -714,7 +715,7 @@ TEST_CASE("BuildingSystem: smelter input buffer fills from adjacent west-flowing
|
||||
|
||||
// Complete construction (15s → tick 450+1 = 451 ticks).
|
||||
Tick tick = 0;
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(15.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(15.0)) + 1, tick);
|
||||
|
||||
// Place west-flowing belt at (2,0): belt flows West, delivers to smelter.
|
||||
belts.placeBelt(QPoint(2, 0), Rotation::West);
|
||||
@@ -751,7 +752,7 @@ TEST_CASE("BuildingSystem: accepted input travels inward before entering the buf
|
||||
|
||||
const BuildingId sid = bs.place(state_bs, BuildingType::Smelter, QPoint(0, 0), Rotation::East, 0).value();
|
||||
Tick tick = 0;
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(15.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(15.0)) + 1, tick);
|
||||
|
||||
belts.placeBelt(QPoint(2, 0), Rotation::West);
|
||||
belts.tryPutItem(QPoint(2, 0), makeItem("iron_ore"));
|
||||
@@ -794,7 +795,7 @@ TEST_CASE("BuildingSystem: input reservation caps buffered plus in-transit at th
|
||||
const BuildingId id = bs.place(state_bs, BuildingType::ReprocessingPlant,
|
||||
QPoint(0, 0), Rotation::East, 0).value();
|
||||
Tick tick = 0;
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(25.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(25.0)) + 1, tick);
|
||||
|
||||
// Feed scrap via an input belt without ever running production (only pull), so
|
||||
// the buffer fills and stays full. Try to over-fill it well past the cap.
|
||||
@@ -837,7 +838,7 @@ TEST_CASE("BuildingSystem: smelter auto-smelts ore without a recipe selection",
|
||||
const BuildingId sid = bs.place(state_bs, BuildingType::Smelter, QPoint(0, 0), Rotation::East, 0).value();
|
||||
|
||||
Tick tick = 0;
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(15.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(15.0)) + 1, tick);
|
||||
|
||||
// Feed 2 iron_ore (the test-config iron_ingot recipe needs 2) via a
|
||||
// west-flowing belt at input port (2,0).
|
||||
@@ -850,7 +851,7 @@ TEST_CASE("BuildingSystem: smelter auto-smelts ore without a recipe selection",
|
||||
}
|
||||
|
||||
// iron_ingot recipe cycle is 2s; run to completion.
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(2.0)) + 2, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(2.0)) + 2, tick);
|
||||
|
||||
const Building* b = findBuilding(state_bs, sid);
|
||||
REQUIRE(b != nullptr);
|
||||
@@ -884,7 +885,7 @@ TEST_CASE("BuildingSystem: smelter runs a satisfiable recipe while an incomplete
|
||||
const BuildingId sid = bs.place(state_bs, BuildingType::Smelter, QPoint(0, 0), Rotation::East, 0).value();
|
||||
|
||||
Tick tick = 0;
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(15.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(15.0)) + 1, tick);
|
||||
|
||||
// Feed 1 iron_ore (iron_ingot needs 2 — incomplete) then 2 copper_ore
|
||||
// (copper_ingot needs 2 — satisfiable) via the west-flowing input belt.
|
||||
@@ -898,7 +899,7 @@ TEST_CASE("BuildingSystem: smelter runs a satisfiable recipe while an incomplete
|
||||
}
|
||||
|
||||
// copper_ingot cycle is 2.5s; run to completion.
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(2.5)) + 2, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(2.5)) + 2, tick);
|
||||
|
||||
const Building* b = findBuilding(state_bs, sid);
|
||||
REQUIRE(b != nullptr);
|
||||
@@ -944,13 +945,13 @@ TEST_CASE("BuildingSystem: miner output buffer drains onto adjacent belt", "[bui
|
||||
|
||||
Tick tick = 0;
|
||||
// Construction (10s) + 1 production cycle (1s) + 1 extra tick.
|
||||
runTicks(bs, cfg, state_bs, belts,
|
||||
runTicks(bs, cfg, state_bs, belts, stock,
|
||||
static_cast<int>(secondsToTicks(10.0)) + static_cast<int>(secondsToTicks(1.0)) + 1,
|
||||
tick);
|
||||
|
||||
// Item should have been pushed onto the belt this tick or a subsequent one.
|
||||
// Run one more tick to ensure tickBeltPush fires after the deposit tick.
|
||||
runTicks(bs, cfg, state_bs, belts, 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, 1, tick);
|
||||
|
||||
const std::optional<Item> item = belts.tryTakeItem(eastPort(QPoint(1, 1)));
|
||||
REQUIRE(item.has_value());
|
||||
@@ -986,7 +987,7 @@ TEST_CASE("BuildingSystem: output port couples directly into an adjacent input p
|
||||
|
||||
Tick tick = 0;
|
||||
// Smelter build (15s) + margin for coupling and a smelt cycle.
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(30.0)), tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(30.0)), tick);
|
||||
|
||||
const Building* smelter = findBuilding(state_bs, smelterId);
|
||||
REQUIRE(smelter != nullptr);
|
||||
@@ -1026,7 +1027,7 @@ TEST_CASE("BuildingSystem: direct coupling to a non-consumer leaves the item stu
|
||||
|
||||
Tick tick = 0;
|
||||
// Both miners build sequentially (10s each), then the producer runs and jams.
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(25.0)), tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(25.0)), tick);
|
||||
|
||||
const Building* miner = findBuilding(state_bs, minerId);
|
||||
const Building* sink = findBuilding(state_bs, sinkId);
|
||||
@@ -1062,7 +1063,7 @@ TEST_CASE("BuildingSystem: setRecipe clears output buffer and active production"
|
||||
|
||||
Tick tick = 0;
|
||||
// Run until first item is in output buffer.
|
||||
runTicks(bs, cfg, state_bs, belts,
|
||||
runTicks(bs, cfg, state_bs, belts, stock,
|
||||
static_cast<int>(secondsToTicks(10.0)) + static_cast<int>(secondsToTicks(1.0)) + 1,
|
||||
tick);
|
||||
|
||||
@@ -1108,7 +1109,7 @@ TEST_CASE("BuildingSystem: reprocessing plant output buffer capacity equals max
|
||||
|
||||
// Complete construction (25s).
|
||||
Tick tick = 0;
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(25.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(25.0)) + 1, tick);
|
||||
|
||||
const Building* b = findBuilding(state_bs, id);
|
||||
REQUIRE(b != nullptr);
|
||||
@@ -1141,7 +1142,7 @@ TEST_CASE("BuildingSystem: reprocessing plant produces one cycle output then sta
|
||||
|
||||
// Complete construction (25s).
|
||||
Tick tick = 0;
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(25.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(25.0)) + 1, tick);
|
||||
|
||||
// Feed 5 scrap into the building via a belt at an input port.
|
||||
// Reprocessing plant body (East rotation) = 3×3 at (0,0).
|
||||
@@ -1163,7 +1164,7 @@ TEST_CASE("BuildingSystem: reprocessing plant produces one cycle output then sta
|
||||
}
|
||||
|
||||
// Run production cycle (3s = 90 ticks + 1 for the completion tick).
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(3.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(3.0)) + 1, tick);
|
||||
|
||||
const Building* b = findBuilding(state_bs, id);
|
||||
REQUIRE(b != nullptr);
|
||||
@@ -1240,7 +1241,7 @@ TEST_CASE("BuildingSystem: findRotateInPlaceTarget returns the building id for a
|
||||
const BuildingId id = bs.place(state_bs, BuildingType::Belt, QPoint(0, 0), Rotation::East, 0).value();
|
||||
|
||||
Tick tick = 0;
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(1.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(1.0)) + 1, tick);
|
||||
REQUIRE(getAllSites(state_bs).empty());
|
||||
|
||||
const std::optional<BuildingId> result =
|
||||
@@ -1422,7 +1423,7 @@ TEST_CASE("BuildingSystem: rotateInPlace updates rotation and output port direct
|
||||
const BuildingId id = bs.place(state_bs, BuildingType::Belt, QPoint(0, 0), Rotation::East, 0).value();
|
||||
|
||||
Tick tick = 0;
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(1.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(1.0)) + 1, tick);
|
||||
REQUIRE(findBuilding(state_bs, id) != nullptr);
|
||||
|
||||
const Building& before = *findBuilding(state_bs, id);
|
||||
@@ -1454,7 +1455,7 @@ TEST_CASE("BuildingSystem: rotateInPlace re-registers a belt tile with BeltSyste
|
||||
const BuildingId id = bs.place(state_bs, BuildingType::Belt, QPoint(0, 0), Rotation::East, 0).value();
|
||||
|
||||
Tick tick = 0;
|
||||
runTicks(bs, cfg, state_bs, belts, static_cast<int>(secondsToTicks(1.0)) + 1, tick);
|
||||
runTicks(bs, cfg, state_bs, belts, stock, static_cast<int>(secondsToTicks(1.0)) + 1, tick);
|
||||
|
||||
bs.rotateInPlace(state_bs, id, Rotation::North);
|
||||
|
||||
@@ -1474,7 +1475,7 @@ TEST_CASE("BuildingSystem: rotateInPlace preserves the output filters of a split
|
||||
Tick tick = 0;
|
||||
while (getAllBuildings(f.state).empty() && tick < 100000)
|
||||
{
|
||||
runTicks(f.bs, f.cfg, f.state, f.belts, 1, tick);
|
||||
runTicks(f.bs, f.cfg, f.state, f.belts, f.stock, 1, tick);
|
||||
}
|
||||
REQUIRE(getAllBuildings(f.state).size() == 1);
|
||||
|
||||
@@ -1519,7 +1520,7 @@ TEST_CASE("BuildingSystem: splitter filters configured on a construction site ca
|
||||
Tick tick = 0;
|
||||
while (getAllBuildings(f.state).empty() && tick < 100000)
|
||||
{
|
||||
runTicks(f.bs, f.cfg, f.state, f.belts, 1, tick);
|
||||
runTicks(f.bs, f.cfg, f.state, f.belts, f.stock, 1, tick);
|
||||
}
|
||||
REQUIRE(getAllBuildings(f.state).size() == 1);
|
||||
REQUIRE(getAllBuildings(f.state)[0].type == BuildingType::Splitter);
|
||||
@@ -1674,11 +1675,11 @@ namespace
|
||||
// Advances the sim until the given site becomes an operational building, or a
|
||||
// safety cap is reached.
|
||||
void buildToCompletion(BuildingSystem& bs, const GameConfig& cfg, FactoryState& state,
|
||||
BeltSystem& belts, BuildingId id, Tick& tick)
|
||||
BeltSystem& belts, int& stock, BuildingId id, Tick& tick)
|
||||
{
|
||||
for (int i = 0; i < 20000 && findBuilding(state, id) == nullptr; ++i)
|
||||
{
|
||||
runTicks(bs, cfg, state, belts, 1, tick);
|
||||
runTicks(bs, cfg, state, belts, stock, 1, tick);
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -1713,7 +1714,7 @@ TEST_CASE("BuildingSystem: getInputPorts matches between a site and the built bu
|
||||
const BuildingId id = f.bs.place(f.state, BuildingType::Miner, QPoint(0, 0), Rotation::East, 0).value();
|
||||
|
||||
const std::vector<Port> sitePorts = getInputPorts(f.state, f.cfg, id);
|
||||
buildToCompletion(f.bs, f.cfg, f.state, f.belts, id, tick);
|
||||
buildToCompletion(f.bs, f.cfg, f.state, f.belts, f.stock, id, tick);
|
||||
REQUIRE(findBuilding(f.state, id) != nullptr);
|
||||
const std::vector<Port> builtPorts = getInputPorts(f.state, f.cfg, id);
|
||||
|
||||
|
||||
Reference in New Issue
Block a user