mirror of
https://github.com/JGRennison/OpenTTD-patches.git
synced 2024-11-09 19:10:38 +00:00
474 lines
16 KiB
C++
474 lines
16 KiB
C++
/*
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* This file is part of OpenTTD.
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* 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.
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* 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.
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* 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/>.
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*/
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/** @file train_gui.cpp GUI for trains. */
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#include "stdafx.h"
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#include "window_gui.h"
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#include "command_func.h"
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#include "train.h"
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#include "strings_func.h"
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#include "vehicle_func.h"
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#include "zoom_func.h"
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#include "train_cmd.h"
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#include "table/strings.h"
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#include "safeguards.h"
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/**
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* Callback for building wagons.
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* @param cmd Unused.
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* @param result The result of the command.
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* @param new_veh_id ID of the ne vehicle.
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* @param tile The tile the command was executed on.
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*/
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void CcBuildWagon(Commands cmd, const CommandCost &result, VehicleID new_veh_id, uint, uint16, CargoArray, TileIndex tile, EngineID, bool, CargoID, ClientID)
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{
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if (result.Failed()) return;
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/* find a locomotive in the depot. */
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const Vehicle *found = nullptr;
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for (const Train *t : Train::Iterate()) {
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if (t->IsFrontEngine() && t->tile == tile && t->IsStoppedInDepot()) {
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if (found != nullptr) return; // must be exactly one.
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found = t;
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}
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}
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/* if we found a loco, */
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if (found != nullptr) {
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found = found->Last();
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/* put the new wagon at the end of the loco. */
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Command<CMD_MOVE_RAIL_VEHICLE>::Post(found->tile, new_veh_id, found->index, false);
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InvalidateWindowClassesData(WC_TRAINS_LIST, 0);
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}
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}
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/**
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* Highlight the position where a rail vehicle is dragged over by drawing a light gray background.
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* @param px The current x position to draw from.
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* @param max_width The maximum space available to draw.
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* @param y The vertical centre position to draw from.
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* @param selection Selected vehicle that is dragged.
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* @param chain Whether a whole chain is dragged.
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* @return The width of the highlight mark.
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*/
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static int HighlightDragPosition(int px, int max_width, int y, VehicleID selection, bool chain)
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{
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bool rtl = _current_text_dir == TD_RTL;
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assert(selection != INVALID_VEHICLE);
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int dragged_width = 0;
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for (Train *t = Train::Get(selection); t != nullptr; t = chain ? t->Next() : (t->HasArticulatedPart() ? t->GetNextArticulatedPart() : nullptr)) {
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dragged_width += t->GetDisplayImageWidth(nullptr);
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}
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int drag_hlight_left = rtl ? std::max(px - dragged_width + 1, 0) : px;
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int drag_hlight_right = rtl ? px : std::min(px + dragged_width, max_width) - 1;
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int drag_hlight_width = std::max(drag_hlight_right - drag_hlight_left + 1, 0);
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if (drag_hlight_width > 0) {
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int height = ScaleSpriteTrad(12);
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int top = y - height / 2;
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Rect r = {drag_hlight_left, top, drag_hlight_right, top + height - 1};
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/* Sprite-scaling is used here as the area is from sprite size */
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GfxFillRect(r.Shrink(ScaleSpriteTrad(1)), _colour_gradient[COLOUR_GREY][7]);
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}
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return drag_hlight_width;
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}
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/**
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* Draws an image of a whole train
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* @param v Front vehicle
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* @param r Rect to draw at
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* @param selection Selected vehicle to draw a frame around
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* @param skip Number of pixels to skip at the front (for scrolling)
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* @param drag_dest The vehicle another one is dragged over, \c INVALID_VEHICLE if none.
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*/
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void DrawTrainImage(const Train *v, const Rect &r, VehicleID selection, EngineImageType image_type, int skip, VehicleID drag_dest)
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{
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bool rtl = _current_text_dir == TD_RTL;
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Direction dir = rtl ? DIR_E : DIR_W;
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DrawPixelInfo tmp_dpi;
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/* Position of highlight box */
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int highlight_l = 0;
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int highlight_r = 0;
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int max_width = r.Width();
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if (!FillDrawPixelInfo(&tmp_dpi, r.left, r.top, r.Width(), r.Height())) return;
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{
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AutoRestoreBackup dpi_backup(_cur_dpi, &tmp_dpi);
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int px = rtl ? max_width + skip : -skip;
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int y = r.Height() / 2;
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bool sel_articulated = false;
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bool dragging = (drag_dest != INVALID_VEHICLE);
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bool drag_at_end_of_train = (drag_dest == v->index); // Head index is used to mark dragging at end of train.
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for (; v != nullptr && (rtl ? px > 0 : px < max_width); v = v->Next()) {
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if (dragging && !drag_at_end_of_train && drag_dest == v->index) {
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/* Highlight the drag-and-drop destination inside the train. */
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int drag_hlight_width = HighlightDragPosition(px, max_width, y, selection, _cursor.vehchain);
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px += rtl ? -drag_hlight_width : drag_hlight_width;
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}
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Point offset;
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int width = Train::From(v)->GetDisplayImageWidth(&offset);
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if (rtl ? px + width > 0 : px - width < max_width) {
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PaletteID pal = (v->vehstatus & VS_CRASHED) ? PALETTE_CRASH : GetVehiclePalette(v);
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VehicleSpriteSeq seq;
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v->GetImage(dir, image_type, &seq);
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seq.Draw(px + (rtl ? -offset.x : offset.x), y + offset.y, pal, (v->vehstatus & VS_CRASHED) != 0);
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}
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if (!v->IsArticulatedPart()) sel_articulated = false;
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if (v->index == selection) {
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/* Set the highlight position */
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highlight_l = rtl ? px - width : px;
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highlight_r = rtl ? px - 1 : px + width - 1;
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sel_articulated = true;
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} else if ((_cursor.vehchain && highlight_r != 0) || sel_articulated) {
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if (rtl) {
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highlight_l -= width;
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} else {
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highlight_r += width;
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}
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}
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px += rtl ? -width : width;
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}
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if (dragging && drag_at_end_of_train) {
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/* Highlight the drag-and-drop destination at the end of the train. */
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HighlightDragPosition(px, max_width, y, selection, _cursor.vehchain);
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}
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}
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if (highlight_l != highlight_r) {
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/* Draw the highlight. Now done after drawing all the engines, as
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* the next engine after the highlight could overlap it. */
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int height = ScaleSpriteTrad(12);
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Rect hr = {highlight_l, 0, highlight_r, height - 1};
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DrawFrameRect(hr.Translate(r.left, CenterBounds(r.top, r.bottom, height)).Expand(WidgetDimensions::scaled.bevel), COLOUR_WHITE, FR_BORDERONLY);
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}
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}
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/** Helper struct for the cargo details information */
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struct CargoSummaryItem {
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CargoID cargo; ///< The cargo that is carried
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StringID subtype; ///< STR_EMPTY if none
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uint capacity; ///< Amount that can be carried
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uint amount; ///< Amount that is carried
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StationID source; ///< One of the source stations
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/** Used by CargoSummary::Find() and similar functions */
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inline bool operator != (const CargoSummaryItem &other) const
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{
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return this->cargo != other.cargo || this->subtype != other.subtype;
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}
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/** Used by std::find() and similar functions */
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inline bool operator == (const CargoSummaryItem &other) const
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{
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return !(this->cargo != other.cargo);
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}
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};
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static const uint TRAIN_DETAILS_MIN_INDENT = 32; ///< Minimum indent level in the train details window
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static const uint TRAIN_DETAILS_MAX_INDENT = 72; ///< Maximum indent level in the train details window; wider than this and we start on a new line
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/** Container for the cargo summary information. */
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typedef std::vector<CargoSummaryItem> CargoSummary;
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/** Reused container of cargo details */
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static CargoSummary _cargo_summary;
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/**
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* Draw the details cargo tab for the given vehicle at the given position
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*
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* @param item Data to draw
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* @param left The left most coordinate to draw
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* @param right The right most coordinate to draw
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* @param y The y coordinate
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*/
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static void TrainDetailsCargoTab(const CargoSummaryItem *item, int left, int right, int y)
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{
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StringID str;
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if (item->amount > 0) {
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SetDParam(0, item->cargo);
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SetDParam(1, item->amount);
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SetDParam(2, item->source);
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SetDParam(3, _settings_game.vehicle.freight_trains);
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str = FreightWagonMult(item->cargo) > 1 ? STR_VEHICLE_DETAILS_CARGO_FROM_MULT : STR_VEHICLE_DETAILS_CARGO_FROM;
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} else {
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str = item->cargo == INVALID_CARGO ? STR_QUANTITY_N_A : STR_VEHICLE_DETAILS_CARGO_EMPTY;
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}
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DrawString(left, right, y, str, TC_LIGHT_BLUE);
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}
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/**
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* Draw the details info tab for the given vehicle at the given position
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*
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* @param v current vehicle
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* @param left The left most coordinate to draw
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* @param right The right most coordinate to draw
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* @param y The y coordinate
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*/
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static void TrainDetailsInfoTab(const Vehicle *v, int left, int right, int y)
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{
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if (RailVehInfo(v->engine_type)->railveh_type == RAILVEH_WAGON) {
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SetDParam(0, PackEngineNameDParam(v->engine_type, EngineNameContext::VehicleDetails));
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SetDParam(1, v->value);
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DrawString(left, right, y, STR_VEHICLE_DETAILS_TRAIN_WAGON_VALUE);
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} else {
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SetDParam(0, PackEngineNameDParam(v->engine_type, EngineNameContext::VehicleDetails));
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SetDParam(1, v->build_year);
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SetDParam(2, v->value);
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DrawString(left, right, y, STR_VEHICLE_DETAILS_TRAIN_ENGINE_BUILT_AND_VALUE);
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}
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}
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/**
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* Draw the details capacity tab for the given vehicle at the given position
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*
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* @param item Data to draw
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* @param left The left most coordinate to draw
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* @param right The right most coordinate to draw
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* @param y The y coordinate
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*/
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static void TrainDetailsCapacityTab(const CargoSummaryItem *item, int left, int right, int y)
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{
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StringID str;
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if (item->cargo != INVALID_CARGO) {
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SetDParam(0, item->cargo);
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SetDParam(1, item->capacity);
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SetDParam(4, item->subtype);
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SetDParam(5, _settings_game.vehicle.freight_trains);
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str = FreightWagonMult(item->cargo) > 1 ? STR_VEHICLE_INFO_CAPACITY_MULT : STR_VEHICLE_INFO_CAPACITY;
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} else {
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/* Draw subtype only */
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SetDParam(0, item->subtype);
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str = STR_VEHICLE_INFO_NO_CAPACITY;
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}
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DrawString(left, right, y, str);
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}
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/**
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* Collects the cargo transported
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* @param v Vehicle to process
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* @param summary Space for the result
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*/
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static void GetCargoSummaryOfArticulatedVehicle(const Train *v, CargoSummary *summary)
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{
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summary->clear();
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do {
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if (!v->GetEngine()->CanCarryCargo()) continue;
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CargoSummaryItem new_item;
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new_item.cargo = v->cargo_cap > 0 ? v->cargo_type : INVALID_CARGO;
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new_item.subtype = GetCargoSubtypeText(v);
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if (new_item.cargo == INVALID_CARGO && new_item.subtype == STR_EMPTY) continue;
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auto item = std::find(summary->begin(), summary->end(), new_item);
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if (item == summary->end()) {
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summary->emplace_back();
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item = summary->end() - 1;
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item->cargo = new_item.cargo;
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item->subtype = new_item.subtype;
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item->capacity = 0;
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item->amount = 0;
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item->source = INVALID_STATION;
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}
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item->capacity += v->cargo_cap;
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item->amount += v->cargo.StoredCount();
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if (item->source == INVALID_STATION) item->source = v->cargo.Source();
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} while ((v = v->Next()) != nullptr && v->IsArticulatedPart());
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}
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/**
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* Get the length of an articulated vehicle.
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* @param v the vehicle to get the length of.
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* @return the length in pixels.
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*/
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static uint GetLengthOfArticulatedVehicle(const Train *v)
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{
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uint length = 0;
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do {
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length += v->GetDisplayImageWidth();
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} while ((v = v->Next()) != nullptr && v->IsArticulatedPart());
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return length;
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}
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/**
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* Determines the number of lines in the train details window
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* @param veh_id Train
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* @param det_tab Selected details tab
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* @return Number of line
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*/
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int GetTrainDetailsWndVScroll(VehicleID veh_id, TrainDetailsWindowTabs det_tab)
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{
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int num = 0;
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if (det_tab == TDW_TAB_TOTALS) { // Total cargo tab
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CargoArray act_cargo;
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CargoArray max_cargo;
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for (const Vehicle *v = Vehicle::Get(veh_id); v != nullptr; v = v->Next()) {
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act_cargo[v->cargo_type] += v->cargo.StoredCount();
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max_cargo[v->cargo_type] += v->cargo_cap;
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}
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/* Set scroll-amount separately from counting, as to not compute num double
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* for more carriages of the same type
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*/
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for (CargoID i = 0; i < NUM_CARGO; i++) {
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if (max_cargo[i] > 0) num++; // only count carriages that the train has
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}
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num++; // needs one more because first line is description string
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} else {
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for (const Train *v = Train::Get(veh_id); v != nullptr; v = v->GetNextVehicle()) {
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GetCargoSummaryOfArticulatedVehicle(v, &_cargo_summary);
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num += std::max(1u, (unsigned)_cargo_summary.size());
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uint length = GetLengthOfArticulatedVehicle(v);
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if (length > (uint)ScaleSpriteTrad(TRAIN_DETAILS_MAX_INDENT)) num++;
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}
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}
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return num;
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}
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/**
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* Draw the details for the given vehicle at the given position
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*
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* @param v current vehicle
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* @param r the Rect to draw within
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* @param vscroll_pos Position of scrollbar
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* @param vscroll_cap Number of lines currently displayed
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* @param det_tab Selected details tab
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*/
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void DrawTrainDetails(const Train *v, const Rect &r, int vscroll_pos, uint16 vscroll_cap, TrainDetailsWindowTabs det_tab)
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{
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bool rtl = _current_text_dir == TD_RTL;
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int line_height = r.Height();
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int sprite_y_offset = line_height / 2;
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int text_y_offset = (line_height - FONT_HEIGHT_NORMAL) / 2;
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/* draw the first 3 details tabs */
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if (det_tab != TDW_TAB_TOTALS) {
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Direction dir = rtl ? DIR_E : DIR_W;
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int x = rtl ? r.right : r.left;
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for (; v != nullptr && vscroll_pos > -vscroll_cap; v = v->GetNextVehicle()) {
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GetCargoSummaryOfArticulatedVehicle(v, &_cargo_summary);
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/* Draw sprites */
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uint dx = 0;
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int px = x;
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const Train *u = v;
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do {
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Point offset;
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int width = u->GetDisplayImageWidth(&offset);
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if (vscroll_pos <= 0 && vscroll_pos > -vscroll_cap) {
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int pitch = 0;
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const Engine *e = Engine::Get(v->engine_type);
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if (e->GetGRF() != nullptr) {
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pitch = ScaleSpriteTrad(e->GetGRF()->traininfo_vehicle_pitch);
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}
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PaletteID pal = (v->vehstatus & VS_CRASHED) ? PALETTE_CRASH : GetVehiclePalette(v);
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VehicleSpriteSeq seq;
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u->GetImage(dir, EIT_IN_DETAILS, &seq);
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seq.Draw(px + (rtl ? -offset.x : offset.x), r.top - line_height * vscroll_pos + sprite_y_offset + pitch, pal, (v->vehstatus & VS_CRASHED) != 0);
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}
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px += rtl ? -width : width;
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dx += width;
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u = u->Next();
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} while (u != nullptr && u->IsArticulatedPart());
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bool separate_sprite_row = (dx > (uint)ScaleSpriteTrad(TRAIN_DETAILS_MAX_INDENT));
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if (separate_sprite_row) {
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vscroll_pos--;
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dx = 0;
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}
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int sprite_width = std::max<int>(dx, ScaleSpriteTrad(TRAIN_DETAILS_MIN_INDENT)) + WidgetDimensions::scaled.hsep_normal;
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Rect dr = r.Indent(sprite_width, rtl);
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uint num_lines = std::max(1u, (unsigned)_cargo_summary.size());
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for (uint i = 0; i < num_lines; i++) {
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if (vscroll_pos <= 0 && vscroll_pos > -vscroll_cap) {
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int py = r.top - line_height * vscroll_pos + text_y_offset;
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if (i > 0 || separate_sprite_row) {
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if (vscroll_pos != 0) GfxFillRect(r.left, py - WidgetDimensions::scaled.matrix.top - 1, r.right, py - WidgetDimensions::scaled.matrix.top, _colour_gradient[COLOUR_GREY][5]);
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}
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switch (det_tab) {
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case TDW_TAB_CARGO:
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if (i < _cargo_summary.size()) {
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TrainDetailsCargoTab(&_cargo_summary[i], dr.left, dr.right, py);
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} else {
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DrawString(dr.left, dr.right, py, STR_QUANTITY_N_A, TC_LIGHT_BLUE);
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}
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break;
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case TDW_TAB_INFO:
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if (i == 0) TrainDetailsInfoTab(v, dr.left, dr.right, py);
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break;
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case TDW_TAB_CAPACITY:
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if (i < _cargo_summary.size()) {
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TrainDetailsCapacityTab(&_cargo_summary[i], dr.left, dr.right, py);
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} else {
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SetDParam(0, STR_EMPTY);
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DrawString(dr.left, dr.right, py, STR_VEHICLE_INFO_NO_CAPACITY);
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}
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break;
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default: NOT_REACHED();
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}
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}
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vscroll_pos--;
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}
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}
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} else {
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int y = r.top;
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CargoArray act_cargo;
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CargoArray max_cargo;
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Money feeder_share = 0;
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for (const Vehicle *u = v; u != nullptr; u = u->Next()) {
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act_cargo[u->cargo_type] += u->cargo.StoredCount();
|
|
max_cargo[u->cargo_type] += u->cargo_cap;
|
|
feeder_share += u->cargo.FeederShare();
|
|
}
|
|
|
|
/* draw total cargo tab */
|
|
DrawString(r.left, r.right, y + text_y_offset, STR_VEHICLE_DETAILS_TRAIN_TOTAL_CAPACITY_TEXT);
|
|
y += line_height;
|
|
|
|
/* Indent the total cargo capacity details */
|
|
Rect ir = r.Indent(WidgetDimensions::scaled.hsep_indent, rtl);
|
|
for (CargoID i = 0; i < NUM_CARGO; i++) {
|
|
if (max_cargo[i] > 0 && --vscroll_pos < 0 && vscroll_pos > -vscroll_cap) {
|
|
SetDParam(0, i); // {CARGO} #1
|
|
SetDParam(1, act_cargo[i]); // {CARGO} #2
|
|
SetDParam(2, i); // {SHORTCARGO} #1
|
|
SetDParam(3, max_cargo[i]); // {SHORTCARGO} #2
|
|
SetDParam(4, _settings_game.vehicle.freight_trains);
|
|
DrawString(ir.left, ir.right, y + text_y_offset, FreightWagonMult(i) > 1 ? STR_VEHICLE_DETAILS_TRAIN_TOTAL_CAPACITY_MULT : STR_VEHICLE_DETAILS_TRAIN_TOTAL_CAPACITY);
|
|
y += line_height;
|
|
}
|
|
}
|
|
SetDParam(0, feeder_share);
|
|
DrawString(r.left, r.right, y + text_y_offset, STR_VEHICLE_INFO_FEEDER_CARGO_VALUE);
|
|
}
|
|
}
|