OpenTTD Source  14.0-beta1
vehicle_cmd.cpp
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1 /*
2  * This file is part of OpenTTD.
3  * OpenTTD is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, version 2.
4  * OpenTTD is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
5  * See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with OpenTTD. If not, see <http://www.gnu.org/licenses/>.
6  */
7 
10 #include "stdafx.h"
11 #include "roadveh.h"
12 #include "news_func.h"
13 #include "airport.h"
14 #include "command_func.h"
15 #include "company_func.h"
16 #include "train.h"
17 #include "aircraft.h"
18 #include "newgrf_text.h"
19 #include "vehicle_func.h"
20 #include "string_func.h"
21 #include "depot_map.h"
22 #include "vehiclelist.h"
23 #include "engine_func.h"
24 #include "articulated_vehicles.h"
25 #include "autoreplace_gui.h"
26 #include "group.h"
27 #include "order_backup.h"
28 #include "ship.h"
29 #include "newgrf.h"
30 #include "company_base.h"
31 #include "core/random_func.hpp"
32 #include "vehicle_cmd.h"
33 #include "aircraft_cmd.h"
34 #include "autoreplace_cmd.h"
35 #include "group_cmd.h"
36 #include "order_cmd.h"
37 #include "roadveh_cmd.h"
38 #include "train_cmd.h"
39 #include "ship_cmd.h"
40 #include <sstream>
41 #include <iomanip>
42 
43 #include "table/strings.h"
44 
45 #include "safeguards.h"
46 
47 /* Tables used in vehicle_func.h to find the right error message for a certain vehicle type */
48 const StringID _veh_build_msg_table[] = {
49  STR_ERROR_CAN_T_BUY_TRAIN,
50  STR_ERROR_CAN_T_BUY_ROAD_VEHICLE,
51  STR_ERROR_CAN_T_BUY_SHIP,
52  STR_ERROR_CAN_T_BUY_AIRCRAFT,
53 };
54 
55 const StringID _veh_sell_msg_table[] = {
56  STR_ERROR_CAN_T_SELL_TRAIN,
57  STR_ERROR_CAN_T_SELL_ROAD_VEHICLE,
58  STR_ERROR_CAN_T_SELL_SHIP,
59  STR_ERROR_CAN_T_SELL_AIRCRAFT,
60 };
61 
62 const StringID _veh_refit_msg_table[] = {
63  STR_ERROR_CAN_T_REFIT_TRAIN,
64  STR_ERROR_CAN_T_REFIT_ROAD_VEHICLE,
65  STR_ERROR_CAN_T_REFIT_SHIP,
66  STR_ERROR_CAN_T_REFIT_AIRCRAFT,
67 };
68 
69 const StringID _send_to_depot_msg_table[] = {
70  STR_ERROR_CAN_T_SEND_TRAIN_TO_DEPOT,
71  STR_ERROR_CAN_T_SEND_ROAD_VEHICLE_TO_DEPOT,
72  STR_ERROR_CAN_T_SEND_SHIP_TO_DEPOT,
73  STR_ERROR_CAN_T_SEND_AIRCRAFT_TO_HANGAR,
74 };
75 
76 
87 std::tuple<CommandCost, VehicleID, uint, uint16_t, CargoArray> CmdBuildVehicle(DoCommandFlag flags, TileIndex tile, EngineID eid, bool use_free_vehicles, CargoID cargo, ClientID client_id)
88 {
89  /* Elementary check for valid location. */
90  if (!IsDepotTile(tile) || !IsTileOwner(tile, _current_company)) return { CMD_ERROR, INVALID_VEHICLE, 0, 0, {} };
91 
92  VehicleType type = GetDepotVehicleType(tile);
93 
94  /* Validate the engine type. */
95  if (!IsEngineBuildable(eid, type, _current_company)) return { CommandCost(STR_ERROR_RAIL_VEHICLE_NOT_AVAILABLE + type), INVALID_VEHICLE, 0, 0, {} };
96 
97  /* Validate the cargo type. */
98  if (cargo >= NUM_CARGO && IsValidCargoID(cargo)) return { CMD_ERROR, INVALID_VEHICLE, 0, 0, {} };
99 
100  const Engine *e = Engine::Get(eid);
102 
103  /* Engines without valid cargo should not be available */
104  CargoID default_cargo = e->GetDefaultCargoType();
105  if (!IsValidCargoID(default_cargo)) return { CMD_ERROR, INVALID_VEHICLE, 0, 0, {} };
106 
107  bool refitting = IsValidCargoID(cargo) && cargo != default_cargo;
108 
109  /* Check whether the number of vehicles we need to build can be built according to pool space. */
110  uint num_vehicles;
111  switch (type) {
112  case VEH_TRAIN: num_vehicles = (e->u.rail.railveh_type == RAILVEH_MULTIHEAD ? 2 : 1) + CountArticulatedParts(eid, false); break;
113  case VEH_ROAD: num_vehicles = 1 + CountArticulatedParts(eid, false); break;
114  case VEH_SHIP: num_vehicles = 1; break;
115  case VEH_AIRCRAFT: num_vehicles = e->u.air.subtype & AIR_CTOL ? 2 : 3; break;
116  default: NOT_REACHED(); // Safe due to IsDepotTile()
117  }
118  if (!Vehicle::CanAllocateItem(num_vehicles)) return { CommandCost(STR_ERROR_TOO_MANY_VEHICLES_IN_GAME), INVALID_VEHICLE, 0, 0, {} };
119 
120  /* Check whether we can allocate a unit number. Autoreplace does not allocate
121  * an unit number as it will (always) reuse the one of the replaced vehicle
122  * and (train) wagons don't have an unit number in any scenario. */
123  UnitID unit_num = (flags & DC_QUERY_COST || flags & DC_AUTOREPLACE || (type == VEH_TRAIN && e->u.rail.railveh_type == RAILVEH_WAGON)) ? 0 : GetFreeUnitNumber(type);
124  if (unit_num == UINT16_MAX) return { CommandCost(STR_ERROR_TOO_MANY_VEHICLES_IN_GAME), INVALID_VEHICLE, 0, 0, {} };
125 
126  /* If we are refitting we need to temporarily purchase the vehicle to be able to
127  * test it. */
128  DoCommandFlag subflags = flags;
129  if (refitting && !(flags & DC_EXEC)) subflags |= DC_EXEC | DC_AUTOREPLACE;
130 
131  /* Vehicle construction needs random bits, so we have to save the random
132  * seeds to prevent desyncs. */
133  SavedRandomSeeds saved_seeds;
134  SaveRandomSeeds(&saved_seeds);
135 
136  Vehicle *v = nullptr;
137  switch (type) {
138  case VEH_TRAIN: value.AddCost(CmdBuildRailVehicle(subflags, tile, e, &v)); break;
139  case VEH_ROAD: value.AddCost(CmdBuildRoadVehicle(subflags, tile, e, &v)); break;
140  case VEH_SHIP: value.AddCost(CmdBuildShip (subflags, tile, e, &v)); break;
141  case VEH_AIRCRAFT: value.AddCost(CmdBuildAircraft (subflags, tile, e, &v)); break;
142  default: NOT_REACHED(); // Safe due to IsDepotTile()
143  }
144 
145  VehicleID veh_id = INVALID_VEHICLE;
146  uint refitted_capacity = 0;
147  uint16_t refitted_mail_capacity = 0;
148  CargoArray cargo_capacities{};
149  if (value.Succeeded()) {
150  if (subflags & DC_EXEC) {
151  v->unitnumber = unit_num;
152  v->value = value.GetCost();
153  veh_id = v->index;
154  }
155 
156  if (refitting) {
157  /* Refit only one vehicle. If we purchased an engine, it may have gained free wagons. */
158  CommandCost cc;
159  std::tie(cc, refitted_capacity, refitted_mail_capacity, cargo_capacities) = CmdRefitVehicle(flags, v->index, cargo, 0, false, false, 1);
160  value.AddCost(cc);
161  } else {
162  /* Fill in non-refitted capacities */
163  if (e->type == VEH_TRAIN || e->type == VEH_ROAD) {
164  cargo_capacities = GetCapacityOfArticulatedParts(eid);
165  refitted_capacity = cargo_capacities[default_cargo];
166  refitted_mail_capacity = 0;
167  } else {
168  refitted_capacity = e->GetDisplayDefaultCapacity(&refitted_mail_capacity);
169  cargo_capacities[default_cargo] = refitted_capacity;
170  cargo_capacities[CT_MAIL] = refitted_mail_capacity;
171  }
172  }
173 
174  if (flags & DC_EXEC) {
175  if (type == VEH_TRAIN && use_free_vehicles && !(flags & DC_AUTOREPLACE) && Train::From(v)->IsEngine()) {
176  /* Move any free wagons to the new vehicle. */
178  }
179 
183  if (IsLocalCompany()) {
184  InvalidateAutoreplaceWindow(v->engine_type, v->group_id); // updates the auto replace window (must be called before incrementing num_engines)
185  }
186  }
187 
188  if (subflags & DC_EXEC) {
191 
192  if (v->IsPrimaryVehicle()) {
194  if (!(subflags & DC_AUTOREPLACE)) OrderBackup::Restore(v, client_id);
195  }
196  }
197 
198 
199  /* If we are not in DC_EXEC undo everything */
200  if (flags != subflags) {
202  }
203  }
204 
205  /* Only restore if we actually did some refitting */
206  if (flags != subflags) RestoreRandomSeeds(saved_seeds);
207 
208  return { value, veh_id, refitted_capacity, refitted_mail_capacity, cargo_capacities };
209 }
210 
220 CommandCost CmdSellVehicle(DoCommandFlag flags, VehicleID v_id, bool sell_chain, bool backup_order, ClientID client_id)
221 {
222  Vehicle *v = Vehicle::GetIfValid(v_id);
223  if (v == nullptr) return CMD_ERROR;
224 
225  Vehicle *front = v->First();
226 
227  CommandCost ret = CheckOwnership(front->owner);
228  if (ret.Failed()) return ret;
229 
230  if (front->vehstatus & VS_CRASHED) return_cmd_error(STR_ERROR_VEHICLE_IS_DESTROYED);
231 
232  if (!front->IsStoppedInDepot()) return_cmd_error(STR_ERROR_TRAIN_MUST_BE_STOPPED_INSIDE_DEPOT + front->type);
233 
234  /* Can we actually make the order backup, i.e. are there enough orders? */
235  if (backup_order &&
236  front->orders != nullptr &&
237  !front->orders->IsShared() &&
239  /* Only happens in exceptional cases when there aren't enough orders anyhow.
240  * Thus it should be safe to just drop the orders in that case. */
241  backup_order = false;
242  }
243 
244  if (v->type == VEH_TRAIN) {
245  ret = CmdSellRailWagon(flags, v, sell_chain, backup_order, client_id);
246  } else {
247  ret = CommandCost(EXPENSES_NEW_VEHICLES, -front->value);
248 
249  if (flags & DC_EXEC) {
250  if (front->IsPrimaryVehicle() && backup_order) OrderBackup::Backup(front, client_id);
251  delete front;
252  }
253  }
254 
255  return ret;
256 }
257 
267 static int GetRefitCostFactor(const Vehicle *v, EngineID engine_type, CargoID new_cid, byte new_subtype, bool *auto_refit_allowed)
268 {
269  /* Prepare callback param with info about the new cargo type. */
270  const Engine *e = Engine::Get(engine_type);
271 
272  /* Is this vehicle a NewGRF vehicle? */
273  if (e->GetGRF() != nullptr) {
274  const CargoSpec *cs = CargoSpec::Get(new_cid);
275  uint32_t param1 = (cs->classes << 16) | (new_subtype << 8) | e->GetGRF()->cargo_map[new_cid];
276 
277  uint16_t cb_res = GetVehicleCallback(CBID_VEHICLE_REFIT_COST, param1, 0, engine_type, v);
278  if (cb_res != CALLBACK_FAILED) {
279  *auto_refit_allowed = HasBit(cb_res, 14);
280  int factor = GB(cb_res, 0, 14);
281  if (factor >= 0x2000) factor -= 0x4000; // Treat as signed integer.
282  return factor;
283  }
284  }
285 
286  *auto_refit_allowed = e->info.refit_cost == 0;
287  return (v == nullptr || v->cargo_type != new_cid) ? e->info.refit_cost : 0;
288 }
289 
299 static CommandCost GetRefitCost(const Vehicle *v, EngineID engine_type, CargoID new_cid, byte new_subtype, bool *auto_refit_allowed)
300 {
301  ExpensesType expense_type;
302  const Engine *e = Engine::Get(engine_type);
303  Price base_price;
304  int cost_factor = GetRefitCostFactor(v, engine_type, new_cid, new_subtype, auto_refit_allowed);
305  switch (e->type) {
306  case VEH_SHIP:
307  base_price = PR_BUILD_VEHICLE_SHIP;
308  expense_type = EXPENSES_SHIP_RUN;
309  break;
310 
311  case VEH_ROAD:
312  base_price = PR_BUILD_VEHICLE_ROAD;
313  expense_type = EXPENSES_ROADVEH_RUN;
314  break;
315 
316  case VEH_AIRCRAFT:
317  base_price = PR_BUILD_VEHICLE_AIRCRAFT;
318  expense_type = EXPENSES_AIRCRAFT_RUN;
319  break;
320 
321  case VEH_TRAIN:
322  base_price = (e->u.rail.railveh_type == RAILVEH_WAGON) ? PR_BUILD_VEHICLE_WAGON : PR_BUILD_VEHICLE_TRAIN;
323  cost_factor <<= 1;
324  expense_type = EXPENSES_TRAIN_RUN;
325  break;
326 
327  default: NOT_REACHED();
328  }
329  if (cost_factor < 0) {
330  return CommandCost(expense_type, -GetPrice(base_price, -cost_factor, e->GetGRF(), -10));
331  } else {
332  return CommandCost(expense_type, GetPrice(base_price, cost_factor, e->GetGRF(), -10));
333  }
334 }
335 
337 struct RefitResult {
339  uint capacity;
341  byte subtype;
342 };
343 
356 static std::tuple<CommandCost, uint, uint16_t, CargoArray> RefitVehicle(Vehicle *v, bool only_this, uint8_t num_vehicles, CargoID new_cid, byte new_subtype, DoCommandFlag flags, bool auto_refit)
357 {
358  CommandCost cost(v->GetExpenseType(false));
359  uint total_capacity = 0;
360  uint total_mail_capacity = 0;
361  num_vehicles = num_vehicles == 0 ? UINT8_MAX : num_vehicles;
362  CargoArray cargo_capacities{};
363 
364  VehicleSet vehicles_to_refit;
365  if (!only_this) {
366  GetVehicleSet(vehicles_to_refit, v, num_vehicles);
367  /* In this case, we need to check the whole chain. */
368  v = v->First();
369  }
370 
371  std::vector<RefitResult> refit_result;
372 
374  byte actual_subtype = new_subtype;
375  for (; v != nullptr; v = (only_this ? nullptr : v->Next())) {
376  /* Reset actual_subtype for every new vehicle */
377  if (!v->IsArticulatedPart()) actual_subtype = new_subtype;
378 
379  if (v->type == VEH_TRAIN && std::find(vehicles_to_refit.begin(), vehicles_to_refit.end(), v->index) == vehicles_to_refit.end() && !only_this) continue;
380 
381  const Engine *e = v->GetEngine();
382  if (!e->CanCarryCargo()) continue;
383 
384  /* If the vehicle is not refittable, or does not allow automatic refitting,
385  * count its capacity nevertheless if the cargo matches */
386  bool refittable = HasBit(e->info.refit_mask, new_cid) && (!auto_refit || HasBit(e->info.misc_flags, EF_AUTO_REFIT));
387  if (!refittable && v->cargo_type != new_cid) {
388  uint amount = e->DetermineCapacity(v, nullptr);
389  if (amount > 0) cargo_capacities[v->cargo_type] += amount;
390  continue;
391  }
392 
393  /* Determine best fitting subtype if requested */
394  if (actual_subtype == 0xFF) {
395  actual_subtype = GetBestFittingSubType(v, v, new_cid);
396  }
397 
398  /* Back up the vehicle's cargo type */
399  CargoID temp_cid = v->cargo_type;
400  byte temp_subtype = v->cargo_subtype;
401  if (refittable) {
402  v->cargo_type = new_cid;
403  v->cargo_subtype = actual_subtype;
404  }
405 
406  uint16_t mail_capacity = 0;
407  uint amount = e->DetermineCapacity(v, &mail_capacity);
408  total_capacity += amount;
409  /* mail_capacity will always be zero if the vehicle is not an aircraft. */
410  total_mail_capacity += mail_capacity;
411 
412  cargo_capacities[new_cid] += amount;
413  cargo_capacities[CT_MAIL] += mail_capacity;
414 
415  if (!refittable) continue;
416 
417  /* Restore the original cargo type */
418  v->cargo_type = temp_cid;
419  v->cargo_subtype = temp_subtype;
420 
421  bool auto_refit_allowed;
422  CommandCost refit_cost = GetRefitCost(v, v->engine_type, new_cid, actual_subtype, &auto_refit_allowed);
423  if (auto_refit && (flags & DC_QUERY_COST) == 0 && !auto_refit_allowed) {
424  /* Sorry, auto-refitting not allowed, subtract the cargo amount again from the total.
425  * When querrying cost/capacity (for example in order refit GUI), we always assume 'allowed'.
426  * It is not predictable. */
427  total_capacity -= amount;
428  total_mail_capacity -= mail_capacity;
429 
430  if (v->cargo_type == new_cid) {
431  /* Add the old capacity nevertheless, if the cargo matches */
432  total_capacity += v->cargo_cap;
433  if (v->type == VEH_AIRCRAFT) total_mail_capacity += v->Next()->cargo_cap;
434  }
435  continue;
436  }
437  cost.AddCost(refit_cost);
438 
439  /* Record the refitting.
440  * Do not execute the refitting immediately, so DetermineCapacity and GetRefitCost do the same in test and exec run.
441  * (weird NewGRFs)
442  * Note:
443  * - If the capacity of vehicles depends on other vehicles in the chain, the actual capacity is
444  * set after RefitVehicle() via ConsistChanged() and friends. The estimation via _returned_refit_capacity will be wrong.
445  * - We have to call the refit cost callback with the pre-refit configuration of the chain because we want refit and
446  * autorefit to behave the same, and we need its result for auto_refit_allowed.
447  */
448  refit_result.push_back({v, amount, mail_capacity, actual_subtype});
449  }
450 
451  if (flags & DC_EXEC) {
452  /* Store the result */
453  for (RefitResult &result : refit_result) {
454  Vehicle *u = result.v;
455  u->refit_cap = (u->cargo_type == new_cid) ? std::min<uint16_t>(result.capacity, u->refit_cap) : 0;
456  if (u->cargo.TotalCount() > u->refit_cap) u->cargo.Truncate(u->cargo.TotalCount() - u->refit_cap);
457  u->cargo_type = new_cid;
458  u->cargo_cap = result.capacity;
459  u->cargo_subtype = result.subtype;
460  if (u->type == VEH_AIRCRAFT) {
461  Vehicle *w = u->Next();
462  assert(w != nullptr);
463  w->refit_cap = std::min<uint16_t>(w->refit_cap, result.mail_capacity);
464  w->cargo_cap = result.mail_capacity;
465  if (w->cargo.TotalCount() > w->refit_cap) w->cargo.Truncate(w->cargo.TotalCount() - w->refit_cap);
466  }
467  }
468  }
469 
470  refit_result.clear();
471  return { cost, total_capacity, total_mail_capacity, cargo_capacities };
472 }
473 
486 std::tuple<CommandCost, uint, uint16_t, CargoArray> CmdRefitVehicle(DoCommandFlag flags, VehicleID veh_id, CargoID new_cid, byte new_subtype, bool auto_refit, bool only_this, uint8_t num_vehicles)
487 {
488  Vehicle *v = Vehicle::GetIfValid(veh_id);
489  if (v == nullptr) return { CMD_ERROR, 0, 0, {} };
490 
491  /* Don't allow disasters and sparks and such to be refitted.
492  * We cannot check for IsPrimaryVehicle as autoreplace also refits in free wagon chains. */
493  if (!IsCompanyBuildableVehicleType(v->type)) return { CMD_ERROR, 0, 0, {} };
494 
495  Vehicle *front = v->First();
496 
497  CommandCost ret = CheckOwnership(front->owner);
498  if (ret.Failed()) return { ret, 0, 0, {} };
499 
500  bool free_wagon = v->type == VEH_TRAIN && Train::From(front)->IsFreeWagon(); // used by autoreplace/renew
501 
502  /* Don't allow shadows and such to be refitted. */
503  if (v != front && (v->type == VEH_SHIP || v->type == VEH_AIRCRAFT)) return { CMD_ERROR, 0, 0, {} };
504 
505  /* Allow auto-refitting only during loading and normal refitting only in a depot. */
506  if ((flags & DC_QUERY_COST) == 0 && // used by the refit GUI, including the order refit GUI.
507  !free_wagon && // used by autoreplace/renew
508  (!auto_refit || !front->current_order.IsType(OT_LOADING)) && // refit inside stations
509  !front->IsStoppedInDepot()) { // refit inside depots
510  return { CommandCost(STR_ERROR_TRAIN_MUST_BE_STOPPED_INSIDE_DEPOT + front->type), 0, 0, {} };
511  }
512 
513  if (front->vehstatus & VS_CRASHED) return { CommandCost(STR_ERROR_VEHICLE_IS_DESTROYED), 0, 0, {} };
514 
515  /* Check cargo */
516  if (new_cid >= NUM_CARGO) return { CMD_ERROR, 0, 0, {} };
517 
518  /* For ships and aircraft there is always only one. */
519  only_this |= front->type == VEH_SHIP || front->type == VEH_AIRCRAFT;
520 
521  auto [cost, refit_capacity, mail_capacity, cargo_capacities] = RefitVehicle(v, only_this, num_vehicles, new_cid, new_subtype, flags, auto_refit);
522 
523  if (flags & DC_EXEC) {
524  /* Update the cached variables */
525  switch (v->type) {
526  case VEH_TRAIN:
527  Train::From(front)->ConsistChanged(auto_refit ? CCF_AUTOREFIT : CCF_REFIT);
528  break;
529  case VEH_ROAD:
530  RoadVehUpdateCache(RoadVehicle::From(front), auto_refit);
532  break;
533 
534  case VEH_SHIP:
536  Ship::From(v)->UpdateCache();
537  break;
538 
539  case VEH_AIRCRAFT:
542  break;
543 
544  default: NOT_REACHED();
545  }
546  front->MarkDirty();
547 
548  if (!free_wagon) {
551  }
553  } else {
554  /* Always invalidate the cache; querycost might have filled it. */
556  }
557 
558  return { cost, refit_capacity, mail_capacity, cargo_capacities };
559 }
560 
568 CommandCost CmdStartStopVehicle(DoCommandFlag flags, VehicleID veh_id, bool evaluate_startstop_cb)
569 {
570  /* Disable the effect of p2 bit 0, when DC_AUTOREPLACE is not set */
571  if ((flags & DC_AUTOREPLACE) == 0) evaluate_startstop_cb = true;
572 
573  Vehicle *v = Vehicle::GetIfValid(veh_id);
574  if (v == nullptr || !v->IsPrimaryVehicle()) return CMD_ERROR;
575 
576  CommandCost ret = CheckOwnership(v->owner);
577  if (ret.Failed()) return ret;
578 
579  if (v->vehstatus & VS_CRASHED) return_cmd_error(STR_ERROR_VEHICLE_IS_DESTROYED);
580 
581  switch (v->type) {
582  case VEH_TRAIN:
583  if ((v->vehstatus & VS_STOPPED) && Train::From(v)->gcache.cached_power == 0) return_cmd_error(STR_ERROR_TRAIN_START_NO_POWER);
584  break;
585 
586  case VEH_SHIP:
587  case VEH_ROAD:
588  break;
589 
590  case VEH_AIRCRAFT: {
591  Aircraft *a = Aircraft::From(v);
592  /* cannot stop airplane when in flight, or when taking off / landing */
593  if (a->state >= STARTTAKEOFF && a->state < TERM7) return_cmd_error(STR_ERROR_AIRCRAFT_IS_IN_FLIGHT);
594  if (HasBit(a->flags, VAF_HELI_DIRECT_DESCENT)) return_cmd_error(STR_ERROR_AIRCRAFT_IS_IN_FLIGHT);
595  break;
596  }
597 
598  default: return CMD_ERROR;
599  }
600 
601  if (evaluate_startstop_cb) {
602  /* Check if this vehicle can be started/stopped. Failure means 'allow'. */
603  uint16_t callback = GetVehicleCallback(CBID_VEHICLE_START_STOP_CHECK, 0, 0, v->engine_type, v);
604  StringID error = STR_NULL;
605  if (callback != CALLBACK_FAILED) {
606  if (v->GetGRF()->grf_version < 8) {
607  /* 8 bit result 0xFF means 'allow' */
608  if (callback < 0x400 && GB(callback, 0, 8) != 0xFF) error = GetGRFStringID(v->GetGRFID(), 0xD000 + callback);
609  } else {
610  if (callback < 0x400) {
611  error = GetGRFStringID(v->GetGRFID(), 0xD000 + callback);
612  } else {
613  switch (callback) {
614  case 0x400: // allow
615  break;
616 
617  default: // unknown reason -> disallow
618  error = STR_ERROR_INCOMPATIBLE_RAIL_TYPES;
619  break;
620  }
621  }
622  }
623  }
624  if (error != STR_NULL) return_cmd_error(error);
625  }
626 
627  if (flags & DC_EXEC) {
628  if (v->IsStoppedInDepot() && (flags & DC_AUTOREPLACE) == 0) DeleteVehicleNews(veh_id, STR_NEWS_TRAIN_IS_WAITING + v->type);
629 
630  v->vehstatus ^= VS_STOPPED;
631  if (v->type != VEH_TRAIN) v->cur_speed = 0; // trains can stop 'slowly'
632 
633  /* Unbunching data is no longer valid. */
635 
636  v->MarkDirty();
641  }
642  return CommandCost();
643 }
644 
654 CommandCost CmdMassStartStopVehicle(DoCommandFlag flags, TileIndex tile, bool do_start, bool vehicle_list_window, const VehicleListIdentifier &vli)
655 {
656  VehicleList list;
657 
658  if (!vli.Valid()) return CMD_ERROR;
660 
661  if (vehicle_list_window) {
662  if (!GenerateVehicleSortList(&list, vli)) return CMD_ERROR;
663  } else {
664  if (!IsDepotTile(tile) || !IsTileOwner(tile, _current_company)) return CMD_ERROR;
665  /* Get the list of vehicles in the depot */
666  BuildDepotVehicleList(vli.vtype, tile, &list, nullptr);
667  }
668 
669  for (uint i = 0; i < list.size(); i++) {
670  const Vehicle *v = list[i];
671 
672  if (!!(v->vehstatus & VS_STOPPED) != do_start) continue;
673 
674  if (!vehicle_list_window && !v->IsChainInDepot()) continue;
675 
676  /* Just try and don't care if some vehicle's can't be stopped. */
677  Command<CMD_START_STOP_VEHICLE>::Do(flags, v->index, false);
678  }
679 
680  return CommandCost();
681 }
682 
691 {
692  VehicleList list;
693 
695 
696  if (!IsCompanyBuildableVehicleType(vehicle_type)) return CMD_ERROR;
697  if (!IsDepotTile(tile) || !IsTileOwner(tile, _current_company)) return CMD_ERROR;
698 
699  /* Get the list of vehicles in the depot */
700  BuildDepotVehicleList(vehicle_type, tile, &list, &list);
701 
702  CommandCost last_error = CMD_ERROR;
703  bool had_success = false;
704  for (uint i = 0; i < list.size(); i++) {
705  CommandCost ret = Command<CMD_SELL_VEHICLE>::Do(flags, list[i]->index, true, false, INVALID_CLIENT_ID);
706  if (ret.Succeeded()) {
707  cost.AddCost(ret);
708  had_success = true;
709  } else {
710  last_error = ret;
711  }
712  }
713 
714  return had_success ? cost : last_error;
715 }
716 
725 {
726  VehicleList list;
728 
729  if (!IsCompanyBuildableVehicleType(vehicle_type)) return CMD_ERROR;
730  if (!IsDepotTile(tile) || !IsTileOwner(tile, _current_company)) return CMD_ERROR;
731 
732  /* Get the list of vehicles in the depot */
733  BuildDepotVehicleList(vehicle_type, tile, &list, &list, true);
734 
735  for (uint i = 0; i < list.size(); i++) {
736  const Vehicle *v = list[i];
737 
738  /* Ensure that the vehicle completely in the depot */
739  if (!v->IsChainInDepot()) continue;
740 
742 
743  if (ret.Succeeded()) cost.AddCost(ret);
744  }
745  return cost;
746 }
747 
753 bool IsUniqueVehicleName(const std::string &name)
754 {
755  for (const Vehicle *v : Vehicle::Iterate()) {
756  if (!v->name.empty() && v->name == name) return false;
757  }
758 
759  return true;
760 }
761 
767 static void CloneVehicleName(const Vehicle *src, Vehicle *dst)
768 {
769  std::string buf;
770 
771  /* Find the position of the first digit in the last group of digits. */
772  size_t number_position;
773  for (number_position = src->name.length(); number_position > 0; number_position--) {
774  /* The design of UTF-8 lets this work simply without having to check
775  * for UTF-8 sequences. */
776  if (src->name[number_position - 1] < '0' || src->name[number_position - 1] > '9') break;
777  }
778 
779  /* Format buffer and determine starting number. */
780  long num;
781  byte padding = 0;
782  if (number_position == src->name.length()) {
783  /* No digit at the end, so start at number 2. */
784  buf = src->name;
785  buf += " ";
786  number_position = buf.length();
787  num = 2;
788  } else {
789  /* Found digits, parse them and start at the next number. */
790  buf = src->name.substr(0, number_position);
791 
792  auto num_str = src->name.substr(number_position);
793  padding = (byte)num_str.length();
794 
795  std::istringstream iss(num_str);
796  iss >> num;
797  num++;
798  }
799 
800  /* Check if this name is already taken. */
801  for (int max_iterations = 1000; max_iterations > 0; max_iterations--, num++) {
802  std::ostringstream oss;
803 
804  /* Attach the number to the temporary name. */
805  oss << buf << std::setw(padding) << std::setfill('0') << std::internal << num;
806 
807  /* Check the name is unique. */
808  auto new_name = oss.str();
809  if (IsUniqueVehicleName(new_name)) {
810  dst->name = new_name;
811  break;
812  }
813  }
814 
815  /* All done. If we didn't find a name, it'll just use its default. */
816 }
817 
826 std::tuple<CommandCost, VehicleID> CmdCloneVehicle(DoCommandFlag flags, TileIndex tile, VehicleID veh_id, bool share_orders)
827 {
829 
830  Vehicle *v = Vehicle::GetIfValid(veh_id);
831  if (v == nullptr || !v->IsPrimaryVehicle()) return { CMD_ERROR, INVALID_VEHICLE };
832  Vehicle *v_front = v;
833  Vehicle *w = nullptr;
834  Vehicle *w_front = nullptr;
835  Vehicle *w_rear = nullptr;
836 
837  /*
838  * v_front is the front engine in the original vehicle
839  * v is the car/vehicle of the original vehicle that is currently being copied
840  * w_front is the front engine of the cloned vehicle
841  * w is the car/vehicle currently being cloned
842  * w_rear is the rear end of the cloned train. It's used to add more cars and is only used by trains
843  */
844 
845  CommandCost ret = CheckOwnership(v->owner);
846  if (ret.Failed()) return { ret, INVALID_VEHICLE };
847 
848  if (v->type == VEH_TRAIN && (!v->IsFrontEngine() || Train::From(v)->crash_anim_pos >= 4400)) return { CMD_ERROR, INVALID_VEHICLE };
849 
850  /* check that we can allocate enough vehicles */
851  if (!(flags & DC_EXEC)) {
852  int veh_counter = 0;
853  do {
854  veh_counter++;
855  } while ((v = v->Next()) != nullptr);
856 
857  if (!Vehicle::CanAllocateItem(veh_counter)) {
858  return { CommandCost(STR_ERROR_TOO_MANY_VEHICLES_IN_GAME), INVALID_VEHICLE };
859  }
860  }
861 
862  v = v_front;
863 
864  VehicleID new_veh_id = INVALID_VEHICLE;
865  do {
866  if (v->type == VEH_TRAIN && Train::From(v)->IsRearDualheaded()) {
867  /* we build the rear ends of multiheaded trains with the front ones */
868  continue;
869  }
870 
871  /* In case we're building a multi headed vehicle and the maximum number of
872  * vehicles is almost reached (e.g. max trains - 1) not all vehicles would
873  * be cloned. When the non-primary engines were build they were seen as
874  * 'new' vehicles whereas they would immediately be joined with a primary
875  * engine. This caused the vehicle to be not build as 'the limit' had been
876  * reached, resulting in partially build vehicles and such. */
877  DoCommandFlag build_flags = flags;
878  if ((flags & DC_EXEC) && !v->IsPrimaryVehicle()) build_flags |= DC_AUTOREPLACE;
879 
880  CommandCost cost;
881  std::tie(cost, new_veh_id, std::ignore, std::ignore, std::ignore) = Command<CMD_BUILD_VEHICLE>::Do(build_flags, tile, v->engine_type, false, INVALID_CARGO, INVALID_CLIENT_ID);
882 
883  if (cost.Failed()) {
884  /* Can't build a part, then sell the stuff we already made; clear up the mess */
885  if (w_front != nullptr) Command<CMD_SELL_VEHICLE>::Do(flags, w_front->index, true, false, INVALID_CLIENT_ID);
886  return { cost, INVALID_VEHICLE };
887  }
888 
889  total_cost.AddCost(cost);
890 
891  if (flags & DC_EXEC) {
892  w = Vehicle::Get(new_veh_id);
893 
894  if (v->type == VEH_TRAIN && HasBit(Train::From(v)->flags, VRF_REVERSE_DIRECTION)) {
896  }
897 
898  if (v->type == VEH_TRAIN && !v->IsFrontEngine()) {
899  /* this s a train car
900  * add this unit to the end of the train */
901  CommandCost result = Command<CMD_MOVE_RAIL_VEHICLE>::Do(flags, w->index, w_rear->index, true);
902  if (result.Failed()) {
903  /* The train can't be joined to make the same consist as the original.
904  * Sell what we already made (clean up) and return an error. */
905  Command<CMD_SELL_VEHICLE>::Do(flags, w_front->index, true, false, INVALID_CLIENT_ID);
906  Command<CMD_SELL_VEHICLE>::Do(flags, w->index, true, false, INVALID_CLIENT_ID);
907  return { result, INVALID_VEHICLE }; // return error and the message returned from CMD_MOVE_RAIL_VEHICLE
908  }
909  } else {
910  /* this is a front engine or not a train. */
911  w_front = w;
913  w->SetServiceIntervalIsCustom(v->ServiceIntervalIsCustom());
914  w->SetServiceIntervalIsPercent(v->ServiceIntervalIsPercent());
915  }
916  w_rear = w; // trains needs to know the last car in the train, so they can add more in next loop
917  }
918  } while (v->type == VEH_TRAIN && (v = v->GetNextVehicle()) != nullptr);
919 
920  if ((flags & DC_EXEC) && v_front->type == VEH_TRAIN) {
921  /* for trains this needs to be the front engine due to the callback function */
922  new_veh_id = w_front->index;
923  }
924 
925  if (flags & DC_EXEC) {
926  /* Cloned vehicles belong to the same group */
927  Command<CMD_ADD_VEHICLE_GROUP>::Do(flags, v_front->group_id, w_front->index, false, VehicleListIdentifier{});
928  }
929 
930 
931  /* Take care of refitting. */
932  w = w_front;
933  v = v_front;
934 
935  /* Both building and refitting are influenced by newgrf callbacks, which
936  * makes it impossible to accurately estimate the cloning costs. In
937  * particular, it is possible for engines of the same type to be built with
938  * different numbers of articulated parts, so when refitting we have to
939  * loop over real vehicles first, and then the articulated parts of those
940  * vehicles in a different loop. */
941  do {
942  do {
943  if (flags & DC_EXEC) {
944  assert(w != nullptr);
945 
946  /* Find out what's the best sub type */
947  byte subtype = GetBestFittingSubType(v, w, v->cargo_type);
948  if (w->cargo_type != v->cargo_type || w->cargo_subtype != subtype) {
949  CommandCost cost = std::get<0>(Command<CMD_REFIT_VEHICLE>::Do(flags, w->index, v->cargo_type, subtype, false, true, 0));
950  if (cost.Succeeded()) total_cost.AddCost(cost);
951  }
952 
953  if (w->IsGroundVehicle() && w->HasArticulatedPart()) {
954  w = w->GetNextArticulatedPart();
955  } else {
956  break;
957  }
958  } else {
959  const Engine *e = v->GetEngine();
960  CargoID initial_cargo = (e->CanCarryCargo() ? e->GetDefaultCargoType() : INVALID_CARGO);
961 
962  if (v->cargo_type != initial_cargo && IsValidCargoID(initial_cargo)) {
963  bool dummy;
964  total_cost.AddCost(GetRefitCost(nullptr, v->engine_type, v->cargo_type, v->cargo_subtype, &dummy));
965  }
966  }
967 
968  if (v->IsGroundVehicle() && v->HasArticulatedPart()) {
969  v = v->GetNextArticulatedPart();
970  } else {
971  break;
972  }
973  } while (v != nullptr);
974 
975  if ((flags & DC_EXEC) && v->type == VEH_TRAIN) w = w->GetNextVehicle();
976  } while (v->type == VEH_TRAIN && (v = v->GetNextVehicle()) != nullptr);
977 
978  if (flags & DC_EXEC) {
979  /*
980  * Set the orders of the vehicle. Cannot do it earlier as we need
981  * the vehicle refitted before doing this, otherwise the moved
982  * cargo types might not match (passenger vs non-passenger)
983  */
984  CommandCost result = Command<CMD_CLONE_ORDER>::Do(flags, (share_orders ? CO_SHARE : CO_COPY), w_front->index, v_front->index);
985  if (result.Failed()) {
986  /* The vehicle has already been bought, so now it must be sold again. */
987  Command<CMD_SELL_VEHICLE>::Do(flags, w_front->index, true, false, INVALID_CLIENT_ID);
988  return { result, INVALID_VEHICLE };
989  }
990 
991  /* Now clone the vehicle's name, if it has one. */
992  if (!v_front->name.empty()) CloneVehicleName(v_front, w_front);
993 
994  /* Since we can't estimate the cost of cloning a vehicle accurately we must
995  * check whether the company has enough money manually. */
996  if (!CheckCompanyHasMoney(total_cost)) {
997  /* The vehicle has already been bought, so now it must be sold again. */
998  Command<CMD_SELL_VEHICLE>::Do(flags, w_front->index, true, false, INVALID_CLIENT_ID);
999  return { total_cost, INVALID_VEHICLE };
1000  }
1001  }
1002 
1003  return { total_cost, new_veh_id };
1004 }
1005 
1014 {
1015  VehicleList list;
1016 
1017  if (!GenerateVehicleSortList(&list, vli)) return CMD_ERROR;
1018 
1019  /* Send all the vehicles to a depot */
1020  bool had_success = false;
1021  for (uint i = 0; i < list.size(); i++) {
1022  const Vehicle *v = list[i];
1024 
1025  if (ret.Succeeded()) {
1026  had_success = true;
1027 
1028  /* Return 0 if DC_EXEC is not set this is a valid goto depot command)
1029  * In this case we know that at least one vehicle can be sent to a depot
1030  * and we will issue the command. We can now safely quit the loop, knowing
1031  * it will succeed at least once. With DC_EXEC we really need to send them to the depot */
1032  if (!(flags & DC_EXEC)) break;
1033  }
1034  }
1035 
1036  return had_success ? CommandCost() : CMD_ERROR;
1037 }
1038 
1048 {
1049  if ((depot_cmd & DepotCommand::MassSend) != DepotCommand::None) {
1050  /* Mass goto depot requested */
1051  if (!vli.Valid()) return CMD_ERROR;
1052  return SendAllVehiclesToDepot(flags, (depot_cmd & DepotCommand::Service) != DepotCommand::None, vli);
1053  }
1054 
1055  Vehicle *v = Vehicle::GetIfValid(veh_id);
1056  if (v == nullptr) return CMD_ERROR;
1057  if (!v->IsPrimaryVehicle()) return CMD_ERROR;
1058 
1059  return v->SendToDepot(flags, depot_cmd);
1060 }
1061 
1069 CommandCost CmdRenameVehicle(DoCommandFlag flags, VehicleID veh_id, const std::string &text)
1070 {
1071  Vehicle *v = Vehicle::GetIfValid(veh_id);
1072  if (v == nullptr || !v->IsPrimaryVehicle()) return CMD_ERROR;
1073 
1074  CommandCost ret = CheckOwnership(v->owner);
1075  if (ret.Failed()) return ret;
1076 
1077  bool reset = text.empty();
1078 
1079  if (!reset) {
1081  if (!(flags & DC_AUTOREPLACE) && !IsUniqueVehicleName(text)) return_cmd_error(STR_ERROR_NAME_MUST_BE_UNIQUE);
1082  }
1083 
1084  if (flags & DC_EXEC) {
1085  if (reset) {
1086  v->name.clear();
1087  } else {
1088  v->name = text;
1089  }
1092  }
1093 
1094  return CommandCost();
1095 }
1096 
1097 
1107 CommandCost CmdChangeServiceInt(DoCommandFlag flags, VehicleID veh_id, uint16_t serv_int, bool is_custom, bool is_percent)
1108 {
1109  Vehicle *v = Vehicle::GetIfValid(veh_id);
1110  if (v == nullptr || !v->IsPrimaryVehicle()) return CMD_ERROR;
1111 
1112  CommandCost ret = CheckOwnership(v->owner);
1113  if (ret.Failed()) return ret;
1114 
1115  const Company *company = Company::Get(v->owner);
1116  is_percent = is_custom ? is_percent : company->settings.vehicle.servint_ispercent;
1117 
1118  if (is_custom) {
1119  if (serv_int != GetServiceIntervalClamped(serv_int, is_percent)) return CMD_ERROR;
1120  } else {
1121  serv_int = CompanyServiceInterval(company, v->type);
1122  }
1123 
1124  if (flags & DC_EXEC) {
1125  v->SetServiceInterval(serv_int);
1126  v->SetServiceIntervalIsCustom(is_custom);
1127  v->SetServiceIntervalIsPercent(is_percent);
1129  }
1130 
1131  return CommandCost();
1132 }
VEH_AIRCRAFT
@ VEH_AIRCRAFT
Aircraft vehicle type.
Definition: vehicle_type.h:27
VehicleCargoList::TotalCount
uint TotalCount() const
Returns sum of cargo, including reserved cargo.
Definition: cargopacket.h:443
Vehicle::IsChainInDepot
virtual bool IsChainInDepot() const
Check whether the whole vehicle chain is in the depot.
Definition: vehicle_base.h:549
Vehicle::IsFrontEngine
debug_inline bool IsFrontEngine() const
Check if the vehicle is a front engine.
Definition: vehicle_base.h:931
InvalidateWindowData
void InvalidateWindowData(WindowClass cls, WindowNumber number, int data, bool gui_scope)
Mark window data of the window of a given class and specific window number as invalid (in need of re-...
Definition: window.cpp:3200
EXPENSES_ROADVEH_RUN
@ EXPENSES_ROADVEH_RUN
Running costs road vehicles.
Definition: economy_type.h:176
RefitResult::mail_capacity
uint mail_capacity
New mail capacity of aircraft.
Definition: vehicle_cmd.cpp:340
SetBit
constexpr T SetBit(T &x, const uint8_t y)
Set a bit in a variable.
Definition: bitmath_func.hpp:121
Order::IsType
bool IsType(OrderType type) const
Check whether this order is of the given type.
Definition: order_base.h:71
UnitID
uint16_t UnitID
Type for the company global vehicle unit number.
Definition: transport_type.h:16
order_cmd.h
VehicleList
std::vector< const Vehicle * > VehicleList
A list of vehicles.
Definition: vehiclelist.h:54
Pool::PoolItem<&_engine_pool >::Get
static Titem * Get(size_t index)
Returns Titem with given index.
Definition: pool_type.hpp:335
Train::crash_anim_pos
uint16_t crash_anim_pos
Crash animation counter.
Definition: train.h:95
SetWindowDirty
void SetWindowDirty(WindowClass cls, WindowNumber number)
Mark window as dirty (in need of repainting)
Definition: window.cpp:3082
GroupStatistics::CountEngine
static void CountEngine(const Vehicle *v, int delta)
Update num_engines when adding/removing an engine.
Definition: group_cmd.cpp:158
GetPrice
Money GetPrice(Price index, uint cost_factor, const GRFFile *grf_file, int shift)
Determine a certain price.
Definition: economy.cpp:970
Vehicle::value
Money value
Value of the vehicle.
Definition: vehicle_base.h:271
train.h
AircraftVehicleInfo::subtype
byte subtype
Type of aircraft.
Definition: engine_type.h:104
command_func.h
CBID_VEHICLE_START_STOP_CHECK
@ CBID_VEHICLE_START_STOP_CHECK
Called when the company (or AI) tries to start or stop a vehicle.
Definition: newgrf_callbacks.h:141
Pool::PoolItem<&_vehicle_pool >::GetIfValid
static Titem * GetIfValid(size_t index)
Returns Titem with given index.
Definition: pool_type.hpp:346
CMD_ERROR
static const CommandCost CMD_ERROR
Define a default return value for a failed command.
Definition: command_func.h:28
VehicleListIdentifier
The information about a vehicle list.
Definition: vehiclelist.h:28
Vehicle::cargo_cap
uint16_t cargo_cap
total capacity
Definition: vehicle_base.h:338
Vehicle::GetNextVehicle
Vehicle * GetNextVehicle() const
Get the next real (non-articulated part) vehicle in the consist.
Definition: vehicle_base.h:1002
Engine::GetDisplayDefaultCapacity
uint GetDisplayDefaultCapacity(uint16_t *mail_capacity=nullptr) const
Determines the default cargo capacity of an engine for display purposes.
Definition: engine_base.h:116
CmdRenameVehicle
CommandCost CmdRenameVehicle(DoCommandFlag flags, VehicleID veh_id, const std::string &text)
Give a custom name to your vehicle.
Definition: vehicle_cmd.cpp:1069
company_base.h
Vehicle::Next
Vehicle * Next() const
Get the next vehicle of this vehicle.
Definition: vehicle_base.h:627
SendAllVehiclesToDepot
static CommandCost SendAllVehiclesToDepot(DoCommandFlag flags, bool service, const VehicleListIdentifier &vli)
Send all vehicles of type to depots.
Definition: vehicle_cmd.cpp:1013
BaseConsist::service_interval
uint16_t service_interval
The interval for (automatic) servicing; either in days or %.
Definition: base_consist.h:29
CmdMassStartStopVehicle
CommandCost CmdMassStartStopVehicle(DoCommandFlag flags, TileIndex tile, bool do_start, bool vehicle_list_window, const VehicleListIdentifier &vli)
Starts or stops a lot of vehicles.
Definition: vehicle_cmd.cpp:654
StringID
uint32_t StringID
Numeric value that represents a string, independent of the selected language.
Definition: strings_type.h:16
Price
Price
Enumeration of all base prices for use with Prices.
Definition: economy_type.h:89
GetCapacityOfArticulatedParts
CargoArray GetCapacityOfArticulatedParts(EngineID engine)
Get the capacity of the parts of a given engine.
Definition: articulated_vehicles.cpp:141
vehiclelist.h
Vehicle::vehstatus
byte vehstatus
Status.
Definition: vehicle_base.h:348
BaseConsist::name
std::string name
Name of vehicle.
Definition: base_consist.h:18
GB
constexpr static debug_inline uint GB(const T x, const uint8_t s, const uint8_t n)
Fetch n bits from x, started at bit s.
Definition: bitmath_func.hpp:32
SavedRandomSeeds
Stores the state of all random number generators.
Definition: random_func.hpp:33
Pool::PoolItem::index
Tindex index
Index of this pool item.
Definition: pool_type.hpp:234
CargoSpec::Get
static CargoSpec * Get(size_t index)
Retrieve cargo details for the given cargo ID.
Definition: cargotype.h:134
Vehicle::GetGRFID
uint32_t GetGRFID() const
Retrieve the GRF ID of the NewGRF the vehicle is tied to.
Definition: vehicle.cpp:767
CargoArray
Class for storing amounts of cargo.
Definition: cargo_type.h:97
Vehicle::group_id
GroupID group_id
Index of group Pool array.
Definition: vehicle_base.h:357
DeleteVehicleNews
void DeleteVehicleNews(VehicleID vid, StringID news)
Delete a news item type about a vehicle.
Definition: news_gui.cpp:919
GroupStatistics::CountVehicle
static void CountVehicle(const Vehicle *v, int delta)
Update num_vehicle when adding or removing a vehicle.
Definition: group_cmd.cpp:133
ship.h
group.h
CompanySettings::vehicle
VehicleDefaultSettings vehicle
default settings for vehicles
Definition: settings_type.h:613
CmdBuildShip
CommandCost CmdBuildShip(DoCommandFlag flags, TileIndex tile, const Engine *e, Vehicle **ret)
Build a ship.
Definition: ship_cmd.cpp:912
Vehicle::GetGRF
const GRFFile * GetGRF() const
Retrieve the NewGRF the vehicle is tied to.
Definition: vehicle.cpp:757
EXPENSES_AIRCRAFT_RUN
@ EXPENSES_AIRCRAFT_RUN
Running costs aircraft.
Definition: economy_type.h:177
WID_VV_START_STOP
@ WID_VV_START_STOP
Start or stop this vehicle, and show information about the current state.
Definition: vehicle_widget.h:17
autoreplace_gui.h
aircraft.h
SaveRandomSeeds
void SaveRandomSeeds(SavedRandomSeeds *storage)
Saves the current seeds.
Definition: random_func.hpp:42
RefitVehicle
static std::tuple< CommandCost, uint, uint16_t, CargoArray > RefitVehicle(Vehicle *v, bool only_this, uint8_t num_vehicles, CargoID new_cid, byte new_subtype, DoCommandFlag flags, bool auto_refit)
Refits a vehicle (chain).
Definition: vehicle_cmd.cpp:356
CmdDepotMassAutoReplace
CommandCost CmdDepotMassAutoReplace(DoCommandFlag flags, TileIndex tile, VehicleType vehicle_type)
Autoreplace all vehicles in the depot.
Definition: vehicle_cmd.cpp:724
CargoSpec
Specification of a cargo type.
Definition: cargotype.h:71
StrongType::Typedef< uint32_t, struct TileIndexTag, StrongType::Compare, StrongType::Integer, StrongType::Compatible< int32_t >, StrongType::Compatible< int64_t > >
GroundVehicle::IsRearDualheaded
bool IsRearDualheaded() const
Tell if we are dealing with the rear end of a multiheaded engine.
Definition: ground_vehicle.hpp:333
CCF_REFIT
@ CCF_REFIT
Valid changes for refitting in a depot.
Definition: train.h:51
WC_COMPANY
@ WC_COMPANY
Company view; Window numbers:
Definition: window_type.h:369
Vehicle::GetNextArticulatedPart
Vehicle * GetNextArticulatedPart() const
Get the next part of an articulated engine.
Definition: vehicle_base.h:959
Engine
Definition: engine_base.h:37
VEH_ROAD
@ VEH_ROAD
Road vehicle type.
Definition: vehicle_type.h:25
Vehicle
Vehicle data structure.
Definition: vehicle_base.h:240
Vehicle::IsPrimaryVehicle
virtual bool IsPrimaryVehicle() const
Whether this is the primary vehicle in the chain.
Definition: vehicle_base.h:472
OrderList::IsShared
bool IsShared() const
Is this a shared order list?
Definition: order_base.h:339
Engine::GetDefaultCargoType
CargoID GetDefaultCargoType() const
Determines the default cargo type of an engine.
Definition: engine_base.h:96
Vehicle::owner
Owner owner
Which company owns the vehicle?
Definition: vehicle_base.h:304
GetVehicleSet
void GetVehicleSet(VehicleSet &set, Vehicle *v, uint8_t num_vehicles)
Calculates the set of vehicles that will be affected by a given selection.
Definition: vehicle.cpp:3140
DC_EXEC
@ DC_EXEC
execute the given command
Definition: command_type.h:371
aircraft_cmd.h
Vehicle::IsGroundVehicle
debug_inline bool IsGroundVehicle() const
Check if the vehicle is a ground vehicle.
Definition: vehicle_base.h:510
DoCommandFlag
DoCommandFlag
List of flags for a command.
Definition: command_type.h:369
CountArticulatedParts
uint CountArticulatedParts(EngineID engine_type, bool purchase_window)
Count the number of articulated parts of an engine.
Definition: articulated_vehicles.cpp:75
CommandCost::Succeeded
bool Succeeded() const
Did this command succeed?
Definition: command_type.h:162
TERM7
@ TERM7
Heading for terminal 7.
Definition: airport.h:80
train_cmd.h
Vehicle::IsArticulatedPart
bool IsArticulatedPart() const
Check if the vehicle is an articulated part of an engine.
Definition: vehicle_base.h:940
DepotCommand::Service
@ Service
The vehicle will leave the depot right after arrival (service only)
Aircraft
Aircraft, helicopters, rotors and their shadows belong to this class.
Definition: aircraft.h:74
Ship::UpdateCache
void UpdateCache()
Update the caches of this ship.
Definition: ship_cmd.cpp:238
Engine::GetGRF
const GRFFile * GetGRF() const
Retrieve the NewGRF the engine is tied to.
Definition: engine_base.h:167
GetRefitCostFactor
static int GetRefitCostFactor(const Vehicle *v, EngineID engine_type, CargoID new_cid, byte new_subtype, bool *auto_refit_allowed)
Helper to run the refit cost callback.
Definition: vehicle_cmd.cpp:267
GetServiceIntervalClamped
uint16_t GetServiceIntervalClamped(int interval, bool ispercent)
Clamp the service interval to the correct min/max.
Definition: order_cmd.cpp:1906
Engine::DetermineCapacity
uint DetermineCapacity(const Vehicle *v, uint16_t *mail_capacity=nullptr) const
Determines capacity of a given vehicle from scratch.
Definition: engine.cpp:201
Utf8StringLength
size_t Utf8StringLength(const char *s)
Get the length of an UTF-8 encoded string in number of characters and thus not the number of bytes th...
Definition: string.cpp:378
CBID_VEHICLE_REFIT_COST
@ CBID_VEHICLE_REFIT_COST
Called to determine the cost factor for refitting a vehicle.
Definition: newgrf_callbacks.h:275
DepotCommand
DepotCommand
Flags for goto depot commands.
Definition: vehicle_type.h:64
CheckOwnership
CommandCost CheckOwnership(Owner owner, TileIndex tile)
Check whether the current owner owns something.
Definition: company_cmd.cpp:360
EF_AUTO_REFIT
@ EF_AUTO_REFIT
Automatic refitting is allowed.
Definition: engine_type.h:172
return_cmd_error
#define return_cmd_error(errcode)
Returns from a function with a specific StringID as error.
Definition: command_func.h:38
ship_cmd.h
CommandCost
Common return value for all commands.
Definition: command_type.h:23
VAF_HELI_DIRECT_DESCENT
@ VAF_HELI_DIRECT_DESCENT
The helicopter is descending directly at its destination (helipad or in front of hangar)
Definition: aircraft.h:47
CmdDepotSellAllVehicles
CommandCost CmdDepotSellAllVehicles(DoCommandFlag flags, TileIndex tile, VehicleType vehicle_type)
Sells all vehicles in a depot.
Definition: vehicle_cmd.cpp:690
VehicleCargoList::Truncate
uint Truncate(uint max_move=UINT_MAX)
Truncates the cargo in this list to the given amount.
Definition: cargopacket.cpp:648
WC_VEHICLE_VIEW
@ WC_VEHICLE_VIEW
Vehicle view; Window numbers:
Definition: window_type.h:339
GetRefitCost
static CommandCost GetRefitCost(const Vehicle *v, EngineID engine_type, CargoID new_cid, byte new_subtype, bool *auto_refit_allowed)
Learn the price of refitting a certain engine.
Definition: vehicle_cmd.cpp:299
CmdChangeServiceInt
CommandCost CmdChangeServiceInt(DoCommandFlag flags, VehicleID veh_id, uint16_t serv_int, bool is_custom, bool is_percent)
Change the service interval of a vehicle.
Definition: vehicle_cmd.cpp:1107
Vehicle::tile
TileIndex tile
Current tile index.
Definition: vehicle_base.h:260
INVALID_VEHICLE
static const VehicleID INVALID_VEHICLE
Constant representing a non-existing vehicle.
Definition: vehicle_type.h:54
DepotCommand::MassSend
@ MassSend
Tells that it's a mass send to depot command (type in VLW flag)
Vehicle::engine_type
EngineID engine_type
The type of engine used for this vehicle.
Definition: vehicle_base.h:318
VS_CRASHED
@ VS_CRASHED
Vehicle is crashed.
Definition: vehicle_base.h:40
do_start
bool do_start
flag for starting playback of next_file at next opportunity
Definition: dmusic.cpp:127
GetFreeUnitNumber
UnitID GetFreeUnitNumber(VehicleType type)
Get an unused unit number for a vehicle (if allowed).
Definition: vehicle.cpp:1864
Vehicle::cargo
VehicleCargoList cargo
The cargo this vehicle is carrying.
Definition: vehicle_base.h:340
CommandCost::Failed
bool Failed() const
Did this command fail?
Definition: command_type.h:171
Vehicle::current_order
Order current_order
The current order (+ status, like: loading)
Definition: vehicle_base.h:349
GroundVehicle::gcache
GroundVehicleCache gcache
Cache of often calculated values.
Definition: ground_vehicle.hpp:80
Vehicle::GetExpenseType
virtual ExpensesType GetExpenseType([[maybe_unused]] bool income) const
Sets the expense type associated to this vehicle type.
Definition: vehicle_base.h:461
autoreplace_cmd.h
Vehicle::cur_speed
uint16_t cur_speed
current speed
Definition: vehicle_base.h:323
_settings_game
GameSettings _settings_game
Game settings of a running game or the scenario editor.
Definition: settings.cpp:55
IsCompanyBuildableVehicleType
bool IsCompanyBuildableVehicleType(VehicleType type)
Is the given vehicle type buildable by a company?
Definition: vehicle_func.h:89
CompanyProperties::settings
CompanySettings settings
settings specific for each company
Definition: company_base.h:105
DC_AUTOREPLACE
@ DC_AUTOREPLACE
autoreplace/autorenew is in progress, this shall disable vehicle limits when building,...
Definition: command_type.h:378
WC_VEHICLE_DETAILS
@ WC_VEHICLE_DETAILS
Vehicle details; Window numbers:
Definition: window_type.h:200
VS_STOPPED
@ VS_STOPPED
Vehicle is stopped by the player.
Definition: vehicle_base.h:34
CloneVehicleName
static void CloneVehicleName(const Vehicle *src, Vehicle *dst)
Clone the custom name of a vehicle, adding or incrementing a number.
Definition: vehicle_cmd.cpp:767
Vehicle::GetEngine
const Engine * GetEngine() const
Retrieves the engine of the vehicle.
Definition: vehicle.cpp:747
BuildDepotVehicleList
void BuildDepotVehicleList(VehicleType type, TileIndex tile, VehicleList *engines, VehicleList *wagons, bool individual_wagons)
Generate a list of vehicles inside a depot.
Definition: vehiclelist.cpp:70
GenerateVehicleSortList
bool GenerateVehicleSortList(VehicleList *list, const VehicleListIdentifier &vli)
Generate a list of vehicles based on window type.
Definition: vehiclelist.cpp:114
safeguards.h
GroupStatistics::UpdateAutoreplace
static void UpdateAutoreplace(CompanyID company)
Update autoreplace_defined and autoreplace_finished of all statistics of a company.
Definition: group_cmd.cpp:221
RefitResult::v
Vehicle * v
Vehicle to refit.
Definition: vehicle_cmd.cpp:338
vehicle_cmd.h
CommandCost::GetCost
Money GetCost() const
The costs as made up to this moment.
Definition: command_type.h:83
VRF_REVERSE_DIRECTION
@ VRF_REVERSE_DIRECTION
Reverse the visible direction of the vehicle.
Definition: train.h:28
VehicleID
uint32_t VehicleID
The type all our vehicle IDs have.
Definition: vehicle_type.h:16
newgrf_text.h
IsDepotTile
bool IsDepotTile(Tile tile)
Is the given tile a tile with a depot on it?
Definition: depot_map.h:41
GetGRFStringID
StringID GetGRFStringID(uint32_t grfid, StringID stringid)
Returns the index for this stringid associated with its grfID.
Definition: newgrf_text.cpp:587
Engine::GetCost
Money GetCost() const
Return how much a new engine costs.
Definition: engine.cpp:316
CommandCost::AddCost
void AddCost(const Money &cost)
Adds the given cost to the cost of the command.
Definition: command_type.h:63
stdafx.h
Vehicle::SendToDepot
CommandCost SendToDepot(DoCommandFlag flags, DepotCommand command)
Send this vehicle to the depot using the given command(s).
Definition: vehicle.cpp:2505
CmdRefitVehicle
std::tuple< CommandCost, uint, uint16_t, CargoArray > CmdRefitVehicle(DoCommandFlag flags, VehicleID veh_id, CargoID new_cid, byte new_subtype, bool auto_refit, bool only_this, uint8_t num_vehicles)
Refits a vehicle to the specified cargo type.
Definition: vehicle_cmd.cpp:486
VehicleType
VehicleType
Available vehicle types.
Definition: vehicle_type.h:21
CheckCompanyHasMoney
bool CheckCompanyHasMoney(CommandCost &cost)
Verify whether the company can pay the bill.
Definition: company_cmd.cpp:238
EngineInfo::misc_flags
byte misc_flags
Miscellaneous flags.
Definition: engine_type.h:154
GetDepotVehicleType
VehicleType GetDepotVehicleType(Tile t)
Get the type of vehicles that can use a depot.
Definition: depot_map.h:65
RAILVEH_WAGON
@ RAILVEH_WAGON
simple wagon, not motorized
Definition: engine_type.h:29
BaseConsist::ResetDepotUnbunching
void ResetDepotUnbunching()
Resets all the data used for depot unbunching.
Definition: base_consist.cpp:49
UpdateAircraftCache
void UpdateAircraftCache(Aircraft *v, bool update_range=false)
Update cached values of an aircraft.
Definition: aircraft_cmd.cpp:597
group_cmd.h
VehicleSettings::roadveh_acceleration_model
uint8_t roadveh_acceleration_model
realistic acceleration for road vehicles
Definition: settings_type.h:519
string_func.h
RefitResult
Helper structure for RefitVehicle()
Definition: vehicle_cmd.cpp:337
CALLBACK_FAILED
static const uint CALLBACK_FAILED
Different values for Callback result evaluations.
Definition: newgrf_callbacks.h:420
CCF_AUTOREFIT
@ CCF_AUTOREFIT
Valid changes for autorefitting in stations.
Definition: train.h:50
_current_company
CompanyID _current_company
Company currently doing an action.
Definition: company_cmd.cpp:50
vehicle_func.h
Pool::PoolItem<&_vehicle_pool >::Iterate
static Pool::IterateWrapper< Titem > Iterate(size_t from=0)
Returns an iterable ensemble of all valid Titem.
Definition: pool_type.hpp:384
Vehicle::First
Vehicle * First() const
Get the first vehicle of this vehicle chain.
Definition: vehicle_base.h:640
Engine::CanCarryCargo
bool CanCarryCargo() const
Determines whether an engine can carry something.
Definition: engine.cpp:168
RoadVehUpdateCache
void RoadVehUpdateCache(RoadVehicle *v, bool same_length=false)
Update the cache of a road vehicle.
Definition: roadveh_cmd.cpp:219
MAX_LENGTH_VEHICLE_NAME_CHARS
static const uint MAX_LENGTH_VEHICLE_NAME_CHARS
The maximum length of a vehicle name in characters including '\0'.
Definition: vehicle_type.h:73
ClientID
ClientID
'Unique' identifier to be given to clients
Definition: network_type.h:49
SpecializedVehicle< Train, Type >::From
static Train * From(Vehicle *v)
Converts a Vehicle to SpecializedVehicle with type checking.
Definition: vehicle_base.h:1201
Train::ConsistChanged
void ConsistChanged(ConsistChangeFlags allowed_changes)
Recalculates the cached stuff of a train.
Definition: train_cmd.cpp:111
VehicleListIdentifier::vtype
VehicleType vtype
The vehicle type associated with this list.
Definition: vehiclelist.h:30
Vehicle::InvalidateNewGRFCacheOfChain
void InvalidateNewGRFCacheOfChain()
Invalidates cached NewGRF variables of all vehicles in the chain (after the current vehicle)
Definition: vehicle_base.h:499
CompanyServiceInterval
int CompanyServiceInterval(const Company *c, VehicleType type)
Get the service interval for the given company and vehicle type.
Definition: company_cmd.cpp:1190
InvalidateWindowClassesData
void InvalidateWindowClassesData(WindowClass cls, int data, bool gui_scope)
Mark window data of all windows of a given class as invalid (in need of re-computing) Note that by de...
Definition: window.cpp:3217
CmdSendVehicleToDepot
CommandCost CmdSendVehicleToDepot(DoCommandFlag flags, VehicleID veh_id, DepotCommand depot_cmd, const VehicleListIdentifier &vli)
Send a vehicle to the depot.
Definition: vehicle_cmd.cpp:1047
RAILVEH_MULTIHEAD
@ RAILVEH_MULTIHEAD
indicates a combination of two locomotives
Definition: engine_type.h:28
WC_VEHICLE_DEPOT
@ WC_VEHICLE_DEPOT
Depot view; Window numbers:
Definition: window_type.h:351
newgrf.h
Vehicle::HasArticulatedPart
bool HasArticulatedPart() const
Check if an engine has an articulated part.
Definition: vehicle_base.h:949
CmdSellVehicle
CommandCost CmdSellVehicle(DoCommandFlag flags, VehicleID v_id, bool sell_chain, bool backup_order, ClientID client_id)
Sell a vehicle.
Definition: vehicle_cmd.cpp:220
OrderBackup::Restore
static void Restore(Vehicle *v, uint32_t user)
Restore the data of this order to the given vehicle.
Definition: order_backup.cpp:124
Pool::PoolItem<&_vehicle_pool >::CanAllocateItem
static bool CanAllocateItem(size_t n=1)
Helper functions so we can use PoolItem::Function() instead of _poolitem_pool.Function()
Definition: pool_type.hpp:305
CmdBuildRailVehicle
CommandCost CmdBuildRailVehicle(DoCommandFlag flags, TileIndex tile, const Engine *e, Vehicle **ret)
Build a railroad vehicle.
Definition: train_cmd.cpp:749
DepotCommand::DontCancel
@ DontCancel
Don't cancel current goto depot command if any.
INVALID_CLIENT_ID
@ INVALID_CLIENT_ID
Client is not part of anything.
Definition: network_type.h:50
Vehicle::unitnumber
UnitID unitnumber
unit number, for display purposes only
Definition: vehicle_base.h:321
depot_map.h
CmdStartStopVehicle
CommandCost CmdStartStopVehicle(DoCommandFlag flags, VehicleID veh_id, bool evaluate_startstop_cb)
Start/Stop a vehicle.
Definition: vehicle_cmd.cpp:568
company_func.h
RestoreRandomSeeds
void RestoreRandomSeeds(const SavedRandomSeeds &storage)
Restores previously saved seeds.
Definition: random_func.hpp:52
EXPENSES_NEW_VEHICLES
@ EXPENSES_NEW_VEHICLES
New vehicles.
Definition: economy_type.h:174
InvalidateAutoreplaceWindow
void InvalidateAutoreplaceWindow(EngineID e, GroupID id_g)
Rebuild the left autoreplace list if an engine is removed or added.
Definition: autoreplace_gui.cpp:52
GroundVehicleCache::cached_power
uint32_t cached_power
Total power of the consist (valid only for the first engine).
Definition: ground_vehicle.hpp:38
AIR_CTOL
@ AIR_CTOL
Conventional Take Off and Landing, i.e. planes.
Definition: engine_type.h:95
CommandHelper
Definition: command_func.h:93
VehicleDefaultSettings::servint_ispercent
bool servint_ispercent
service intervals are in percents
Definition: settings_type.h:600
MarkWholeScreenDirty
void MarkWholeScreenDirty()
This function mark the whole screen as dirty.
Definition: gfx.cpp:1552
random_func.hpp
EXPENSES_TRAIN_RUN
@ EXPENSES_TRAIN_RUN
Running costs trains.
Definition: economy_type.h:175
STARTTAKEOFF
@ STARTTAKEOFF
Airplane has arrived at a runway for take-off.
Definition: airport.h:72
CargoID
byte CargoID
Cargo slots to indicate a cargo type within a game.
Definition: cargo_type.h:20
Vehicle::IsStoppedInDepot
bool IsStoppedInDepot() const
Check whether the vehicle is in the depot and stopped.
Definition: vehicle_base.h:555
CmdBuildRoadVehicle
CommandCost CmdBuildRoadVehicle(DoCommandFlag flags, TileIndex tile, const Engine *e, Vehicle **ret)
Build a road vehicle.
Definition: roadveh_cmd.cpp:262
GroundVehicle::CargoChanged
void CargoChanged()
Recalculates the cached weight of a vehicle and its parts.
Definition: ground_vehicle.cpp:79
CmdSellRailWagon
CommandCost CmdSellRailWagon(DoCommandFlag flags, Vehicle *t, bool sell_chain, bool backup_order, ClientID user)
Sell a (single) train wagon/engine.
Definition: train_cmd.cpp:1388
Vehicle::cargo_type
CargoID cargo_type
type of cargo this vehicle is carrying
Definition: vehicle_base.h:336
IsValidCargoID
bool IsValidCargoID(CargoID t)
Test whether cargo type is not INVALID_CARGO.
Definition: cargo_type.h:90
OrderBackup::Backup
static void Backup(const Vehicle *v, uint32_t user)
Create an order backup for the given vehicle.
Definition: order_backup.cpp:106
Aircraft::state
byte state
State of the airport.
Definition: aircraft.h:79
airport.h
articulated_vehicles.h
GameSettings::vehicle
VehicleSettings vehicle
options for vehicles
Definition: settings_type.h:627
EngineID
uint16_t EngineID
Unique identification number of an engine.
Definition: engine_type.h:21
IsUniqueVehicleName
bool IsUniqueVehicleName(const std::string &name)
Test if a name is unique among vehicle names.
Definition: vehicle_cmd.cpp:753
Vehicle::cargo_subtype
byte cargo_subtype
Used for livery refits (NewGRF variations)
Definition: vehicle_base.h:337
GroundVehicle::IsFreeWagon
bool IsFreeWagon() const
Check if the vehicle is a free wagon (got no engine in front of it).
Definition: ground_vehicle.hpp:309
VEH_TRAIN
@ VEH_TRAIN
Train vehicle type.
Definition: vehicle_type.h:24
RefitResult::capacity
uint capacity
New capacity of vehicle.
Definition: vehicle_cmd.cpp:339
BaseVehicle::type
VehicleType type
Type of vehicle.
Definition: vehicle_type.h:51
DC_QUERY_COST
@ DC_QUERY_COST
query cost only, don't build.
Definition: command_type.h:373
NUM_CARGO
static const CargoID NUM_CARGO
Maximum number of cargo types in a game.
Definition: cargo_type.h:68
RefitResult::subtype
byte subtype
cargo subtype to refit to
Definition: vehicle_cmd.cpp:341
ExpensesType
ExpensesType
Types of expenses.
Definition: economy_type.h:172
order_backup.h
GetVehicleCallback
uint16_t GetVehicleCallback(CallbackID callback, uint32_t param1, uint32_t param2, EngineID engine, const Vehicle *v)
Evaluate a newgrf callback for vehicles.
Definition: newgrf_engine.cpp:1149
VEH_SHIP
@ VEH_SHIP
Ship vehicle type.
Definition: vehicle_type.h:26
Company
Definition: company_base.h:116
CmdCloneVehicle
std::tuple< CommandCost, VehicleID > CmdCloneVehicle(DoCommandFlag flags, TileIndex tile, VehicleID veh_id, bool share_orders)
Clone a vehicle.
Definition: vehicle_cmd.cpp:826
IsLocalCompany
bool IsLocalCompany()
Is the current company the local company?
Definition: company_func.h:47
DepotCommand::None
@ None
No special flags.
IsTileOwner
bool IsTileOwner(Tile tile, Owner owner)
Checks if a tile belongs to the given owner.
Definition: tile_map.h:214
Vehicle::orders
OrderList * orders
Pointer to the order list for this vehicle.
Definition: vehicle_base.h:352
SetWindowClassesDirty
void SetWindowClassesDirty(WindowClass cls)
Mark all windows of a particular class as dirty (in need of repainting)
Definition: window.cpp:3108
SetWindowWidgetDirty
void SetWindowWidgetDirty(WindowClass cls, WindowNumber number, WidgetID widget_index)
Mark a particular widget in a particular window as dirty (in need of repainting)
Definition: window.cpp:3095
GRFFile::cargo_map
std::array< uint8_t, NUM_CARGO > cargo_map
Inverse cargo translation table (CargoID -> local ID)
Definition: newgrf.h:130
Aircraft::flags
byte flags
Aircraft flags.
Definition: aircraft.h:83
roadveh_cmd.h
IsEngineBuildable
bool IsEngineBuildable(EngineID engine, VehicleType type, CompanyID company)
Check if an engine is buildable.
Definition: engine.cpp:1216
GetBestFittingSubType
byte GetBestFittingSubType(Vehicle *v_from, Vehicle *v_for, CargoID dest_cargo_type)
Get the best fitting subtype when 'cloning'/'replacing' v_from with v_for.
Definition: vehicle_gui.cpp:518
OrderList::GetNumOrders
VehicleOrderID GetNumOrders() const
Get number of orders in the order list.
Definition: order_base.h:320
EXPENSES_SHIP_RUN
@ EXPENSES_SHIP_RUN
Running costs ships.
Definition: economy_type.h:178
NormalizeTrainVehInDepot
void NormalizeTrainVehInDepot(const Train *u)
Move all free vehicles in the depot to the train.
Definition: train_cmd.cpp:692
CmdBuildAircraft
CommandCost CmdBuildAircraft(DoCommandFlag flags, TileIndex tile, const Engine *e, Vehicle **ret)
Build an aircraft.
Definition: aircraft_cmd.cpp:271
Vehicle::MarkDirty
virtual void MarkDirty()
Marks the vehicles to be redrawn and updates cached variables.
Definition: vehicle_base.h:402
Engine::type
VehicleType type
Vehicle type, ie VEH_ROAD, VEH_TRAIN, etc.
Definition: engine_base.h:56
GetWindowClassForVehicleType
WindowClass GetWindowClassForVehicleType(VehicleType vt)
Get WindowClass for vehicle list of given vehicle type.
Definition: vehicle_gui.h:97
Vehicle::refit_cap
uint16_t refit_cap
Capacity left over from before last refit.
Definition: vehicle_base.h:339
CmdBuildVehicle
std::tuple< CommandCost, VehicleID, uint, uint16_t, CargoArray > CmdBuildVehicle(DoCommandFlag flags, TileIndex tile, EngineID eid, bool use_free_vehicles, CargoID cargo, ClientID client_id)
Build a vehicle.
Definition: vehicle_cmd.cpp:87
engine_func.h
news_func.h
roadveh.h
CargoSpec::classes
uint16_t classes
Classes of this cargo type.
Definition: cargotype.h:78
HasBit
constexpr debug_inline bool HasBit(const T x, const uint8_t y)
Checks if a bit in a value is set.
Definition: bitmath_func.hpp:103