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@ r4381:c965d1f3016a
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Location: cpp/openttd-patchpack/source/bridge_gui.c
r4381:c965d1f3016a
5.0 KiB
text/x-c
(svn r6131) -Codechange : Complete all missing _ttdpatch_flags entries
-Feature : both unifiedmaglevmode are now set.
Maglev and monorail are not allowed to run on each other tracks and will not be.
Setting those flags will allow grfsets as the Norvegian one to be loaded
-Codechange : link the TTDPatch's irregularstations with OTTD's nonuniform_stations
-Codechange : Reformat the whole array (thanks Rubidium, it sure looks better now)
-Feature : both unifiedmaglevmode are now set.
Maglev and monorail are not allowed to run on each other tracks and will not be.
Setting those flags will allow grfsets as the Norvegian one to be loaded
-Codechange : link the TTDPatch's irregularstations with OTTD's nonuniform_stations
-Codechange : Reformat the whole array (thanks Rubidium, it sure looks better now)
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/** @file bridge_gui.c Graphical user interface for bridge construction*/
#include "stdafx.h"
#include "openttd.h"
#include "table/strings.h"
#include "functions.h"
#include "map.h"
#include "window.h"
#include "gui.h"
#include "viewport.h"
#include "gfx.h"
#include "command.h"
#include "sound.h"
#include "variables.h"
#include "bridge.h"
static struct BridgeData {
uint count;
TileIndex start_tile;
TileIndex end_tile;
byte type;
byte indexes[MAX_BRIDGES];
int32 costs[MAX_BRIDGES];
} _bridgedata;
void CcBuildBridge(bool success, TileIndex tile, uint32 p1, uint32 p2)
{
if (success) SndPlayTileFx(SND_27_BLACKSMITH_ANVIL, tile);
}
static void BuildBridge(Window *w, int i)
{
DeleteWindow(w);
DoCommandP(_bridgedata.end_tile, _bridgedata.start_tile,
_bridgedata.indexes[i] | (_bridgedata.type << 8), CcBuildBridge,
CMD_BUILD_BRIDGE | CMD_AUTO | CMD_MSG(STR_5015_CAN_T_BUILD_BRIDGE_HERE));
}
static void BuildBridgeWndProc(Window *w, WindowEvent *e)
{
switch (e->event) {
case WE_PAINT: {
uint i;
DrawWindowWidgets(w);
for (i = 0; i < 4 && i + w->vscroll.pos < _bridgedata.count; i++) {
const Bridge *b = &_bridge[_bridgedata.indexes[i + w->vscroll.pos]];
SetDParam(2, _bridgedata.costs[i + w->vscroll.pos]);
SetDParam(1, b->speed);
SetDParam(0, b->material);
DrawSprite(b->sprite, 3, 15 + i * 22);
DrawString(44, 15 + i * 22 , STR_500D, 0);
}
} break;
case WE_KEYPRESS: {
uint i = e->keypress.keycode - '1';
if (i < 9 && i < _bridgedata.count) {
e->keypress.cont = false;
BuildBridge(w, i);
}
break;
}
case WE_CLICK:
if (e->click.widget == 2) {
uint ind = ((int)e->click.pt.y - 14) / 22;
if (ind < 4 && (ind += w->vscroll.pos) < _bridgedata.count)
BuildBridge(w, ind);
}
break;
}
}
static const Widget _build_bridge_widgets[] = {
{ WWT_CLOSEBOX, RESIZE_NONE, 7, 0, 10, 0, 13, STR_00C5, STR_018B_CLOSE_WINDOW},
{ WWT_CAPTION, RESIZE_NONE, 7, 11, 199, 0, 13, STR_100D_SELECT_RAIL_BRIDGE, STR_018C_WINDOW_TITLE_DRAG_THIS},
{ WWT_MATRIX, RESIZE_NONE, 7, 0, 187, 14, 101, 0x401, STR_101F_BRIDGE_SELECTION_CLICK},
{ WWT_SCROLLBAR, RESIZE_NONE, 7, 188, 199, 14, 101, 0x0, STR_0190_SCROLL_BAR_SCROLLS_LIST},
{ WIDGETS_END},
};
static const WindowDesc _build_bridge_desc = {
-1, -1, 200, 102,
WC_BUILD_BRIDGE,WC_BUILD_TOOLBAR,
WDF_STD_TOOLTIPS | WDF_STD_BTN | WDF_DEF_WIDGET,
_build_bridge_widgets,
BuildBridgeWndProc
};
static const Widget _build_road_bridge_widgets[] = {
{ WWT_CLOSEBOX, RESIZE_NONE, 7, 0, 10, 0, 13, STR_00C5, STR_018B_CLOSE_WINDOW},
{ WWT_CAPTION, RESIZE_NONE, 7, 11, 199, 0, 13, STR_1803_SELECT_ROAD_BRIDGE, STR_018C_WINDOW_TITLE_DRAG_THIS},
{ WWT_MATRIX, RESIZE_NONE, 7, 0, 187, 14, 101, 0x401, STR_101F_BRIDGE_SELECTION_CLICK},
{ WWT_SCROLLBAR, RESIZE_NONE, 7, 188, 199, 14, 101, 0x0, STR_0190_SCROLL_BAR_SCROLLS_LIST},
{ WIDGETS_END},
};
static const WindowDesc _build_road_bridge_desc = {
-1, -1, 200, 102,
WC_BUILD_BRIDGE,WC_BUILD_TOOLBAR,
WDF_STD_TOOLTIPS | WDF_STD_BTN | WDF_DEF_WIDGET,
_build_road_bridge_widgets,
BuildBridgeWndProc
};
void ShowBuildBridgeWindow(TileIndex start, TileIndex end, byte bridge_type)
{
uint j = 0;
int32 ret;
StringID errmsg;
DeleteWindowById(WC_BUILD_BRIDGE, 0);
_bridgedata.type = bridge_type;
_bridgedata.start_tile = start;
_bridgedata.end_tile = end;
errmsg = INVALID_STRING_ID;
// only query bridge building possibility once, result is the same for all bridges!
// returns CMD_ERROR on failure, and price on success
ret = DoCommand(end, start, (bridge_type << 8), DC_AUTO | DC_QUERY_COST, CMD_BUILD_BRIDGE);
if (CmdFailed(ret)) {
errmsg = _error_message;
} else {
// check which bridges can be built
int bridge_len; // length of the middle parts of the bridge
int tot_bridgedata_len; // total length of bridge
// get absolute bridge length
bridge_len = GetBridgeLength(start, end);
tot_bridgedata_len = bridge_len + 2;
tot_bridgedata_len = CalcBridgeLenCostFactor(tot_bridgedata_len);
for (bridge_type = 0; bridge_type != MAX_BRIDGES; bridge_type++) { // loop for all bridgetypes
if (CheckBridge_Stuff(bridge_type, bridge_len)) {
const Bridge *b = &_bridge[bridge_type];
// bridge is accepted, add to list
// add to terraforming & bulldozing costs the cost of the bridge itself (not computed with DC_QUERY_COST)
_bridgedata.costs[j] = ret + (((int64)tot_bridgedata_len * _price.build_bridge * b->price) >> 8);
_bridgedata.indexes[j] = bridge_type;
j++;
}
}
}
_bridgedata.count = j;
if (j != 0) {
Window *w = AllocateWindowDesc((_bridgedata.type & 0x80) ? &_build_road_bridge_desc : &_build_bridge_desc);
w->vscroll.cap = 4;
w->vscroll.count = (byte)j;
} else {
ShowErrorMessage(errmsg, STR_5015_CAN_T_BUILD_BRIDGE_HERE, TileX(end) * TILE_SIZE, TileY(end) * TILE_SIZE);
}
}
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