scummvm/scumm/verbs.cpp

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/* ScummVM - Scumm Interpreter
* Copyright (C) 2001 Ludvig Strigeus
* Copyright (C) 2001-2003 The ScummVM project
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*
* This program 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; either version 2
* of the License, or (at your option) any later version.
* This program 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. See the
* GNU General Public License for more details.
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
*
* $Header$
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*
*/
#include "stdafx.h"
#include "charset.h"
#include "object.h"
#include "resource.h"
#include "scumm.h"
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#include "verbs.h"
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enum {
kInventoryUpArrow = 4,
kInventoryDownArrow = 5,
kSentenceLine = 6
};
void Scumm::initV2MouseOver() {
int i;
v2_mouseover_box = -1;
// Inventory items
for (i = 0; i < 2; i++) {
v2_mouseover_boxes[2 * i].left = 0;
v2_mouseover_boxes[2 * i].right = 144;
v2_mouseover_boxes[2 * i].top = 34 + 8 * i;
v2_mouseover_boxes[2 * i].bottom = v2_mouseover_boxes[2 * i].top + 8;
v2_mouseover_boxes[2 * i + 1].left = 176;
v2_mouseover_boxes[2 * i + 1].right = 320;
v2_mouseover_boxes[2 * i + 1].top = v2_mouseover_boxes[2 * i].top;
v2_mouseover_boxes[2 * i + 1].bottom = v2_mouseover_boxes[2 * i].bottom;
}
// Inventory arrows
v2_mouseover_boxes[kInventoryUpArrow].left = 144;
v2_mouseover_boxes[kInventoryUpArrow].right = 176;
v2_mouseover_boxes[kInventoryUpArrow].top = 32;
v2_mouseover_boxes[kInventoryUpArrow].bottom = 40;
v2_mouseover_boxes[kInventoryDownArrow].left = 144;
v2_mouseover_boxes[kInventoryDownArrow].right = 176;
v2_mouseover_boxes[kInventoryDownArrow].top = 48;
v2_mouseover_boxes[kInventoryDownArrow].bottom = 56;
// Sentence line
v2_mouseover_boxes[kSentenceLine].left = 0;
v2_mouseover_boxes[kSentenceLine].right = 320;
v2_mouseover_boxes[kSentenceLine].top = 0;
v2_mouseover_boxes[kSentenceLine].bottom = 8;
}
void Scumm::checkV2MouseOver(ScummVM::Point pos) {
VirtScreen *vs = &virtscr[2];
ScummVM::Rect rect;
byte *ptr, *dst;
int i, x, y, new_box = -1;
// Don't do anything unless the inventory is active
if (!(_userState & 64)) {
v2_mouseover_box = -1;
return;
}
if (_cursor.state > 0) {
for (i = 0; i < ARRAYSIZE(v2_mouseover_boxes); i++) {
if (v2_mouseover_boxes[i].contains(pos.x, pos.y - vs->topline)) {
new_box = i;
break;
}
}
}
if (new_box != v2_mouseover_box) {
if (v2_mouseover_box != -1) {
rect = v2_mouseover_boxes[v2_mouseover_box];
dst = ptr = vs->screenPtr + vs->xstart + rect.top * _screenWidth + rect.left;
// Hackish way to undo highlight: replace color 14 with color 5
for (y = rect.height() - 1; y >= 0; y--) {
for (x = rect.width() - 1; x >= 0; x--) {
if (dst[x] == 14)
dst[x] = 5;
}
dst += _screenWidth;
}
updateDirtyRect(2, rect.left, rect.right, rect.top, rect.bottom, 0);
}
if (new_box != -1) {
rect = v2_mouseover_boxes[new_box];
dst = ptr = vs->screenPtr + vs->xstart + rect.top * _screenWidth + rect.left;
// Hackish way to apply highlight: replace color 5 with color 14
for (y = rect.height() - 1; y >= 0; y--) {
for (x = rect.width() - 1; x >= 0; x--) {
if (dst[x] == 5)
dst[x] = 14;
}
dst += _screenWidth;
}
updateDirtyRect(2, rect.left, rect.right, rect.top, rect.bottom, 0);
}
v2_mouseover_box = new_box;
}
}
void Scumm::checkV2Inventory(int x, int y) {
int object = 0;
y -= virtscr[2].topline;
if ((y < 34) || !(_mouseButStat & MBS_LEFT_CLICK))
return;
if (v2_mouseover_boxes[kInventoryUpArrow].contains(x, y)) {
_inventoryOffset -= 2;
if (_inventoryOffset < 0)
_inventoryOffset = 0;
redrawV2Inventory();
} else if (v2_mouseover_boxes[kInventoryDownArrow].contains(x, y)) {
_inventoryOffset += 2;
if (_inventoryOffset > (getInventoryCount(_scummVars[VAR_EGO])-2))
_inventoryOffset = (getInventoryCount(_scummVars[VAR_EGO])-2);
redrawV2Inventory();
}
for (object = 0; object < 4; object++) {
if (v2_mouseover_boxes[object].contains(x, y)) {
break;
}
}
if (object >= 4)
return;
object = findInventory(_scummVars[VAR_EGO], object + 1 + _inventoryOffset);
if (object > 0) {
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runInputScript(3, object, 0);
}
}
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void Scumm::redrawV2Inventory() {
int i;
int max_inv;
ScummVM::Rect inventoryBox;
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v2_mouseover_box = -1;
// Clear on all invocations, so hiding works properly
inventoryBox.top = virtscr[2].topline + 32;
inventoryBox.bottom = virtscr[2].topline + virtscr[2].height;
inventoryBox.left = 0;
inventoryBox.right = virtscr[2].width;
restoreBG(inventoryBox);
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if (!(_userState & 64)) // Don't draw inventory unless active
return;
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_string[1].charset = 1;
_string[1].color = 5;
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max_inv = getInventoryCount(_scummVars[VAR_EGO]) - _inventoryOffset;
if (max_inv > 4)
max_inv = 4;
for (i = 0; i < max_inv; i++) {
int obj = findInventory(_scummVars[VAR_EGO], i + 1 + _inventoryOffset);
if (obj == 0)
break;
_string[1].ypos = v2_mouseover_boxes[i].top + virtscr[2].topline;
_string[1].xpos = v2_mouseover_boxes[i].left;
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_messagePtr = getObjOrActorName(obj);
assert(_messagePtr);
// Prevent inventory entries from overflowing by truncating the text
// after 144/8 = 18 chars
byte msg[18 + 1];
memcpy(msg, _messagePtr, 18),
msg[18] = 0;
_messagePtr = msg;
// Draw it
drawString(1);
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}
// If necessary, draw "up" arrow
if (_inventoryOffset > 0) {
_string[1].xpos = v2_mouseover_boxes[kInventoryUpArrow].left;
_string[1].ypos = v2_mouseover_boxes[kInventoryUpArrow].top + virtscr[2].topline;
_messagePtr = (const byte *)" \1\2";
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drawString(1);
}
// If necessary, draw "down" arrow
if (_inventoryOffset + 4 < getInventoryCount(_scummVars[VAR_EGO])) {
_string[1].xpos = v2_mouseover_boxes[kInventoryDownArrow].left;
_string[1].ypos = v2_mouseover_boxes[kInventoryDownArrow].top + virtscr[2].topline;
_messagePtr = (const byte *)" \3\4";
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drawString(1);
}
}
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void Scumm::redrawVerbs() {
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int i;
int verb = (_cursor.state > 0 ? checkMouseOver(_mouse.x, _mouse.y) : 0);
for (i = _maxVerbs-1; i >= 0; i--) {
if (i == verb && _verbs[verb].hicolor)
drawVerb(i, 1);
else
drawVerb(i, 0);
}
_verbMouseOver = verb;
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}
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void Scumm::checkExecVerbs() {
int i, over;
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VerbSlot *vs;
if (_userPut <= 0 || _mouseButStat == 0)
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return;
if (_mouseButStat < MBS_MAX_KEY) {
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/* Check keypresses */
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vs = &_verbs[1];
for (i = 1; i < _maxVerbs; i++, vs++) {
if (vs->verbid && vs->saveid == 0 && vs->curmode == 1) {
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if (_mouseButStat == vs->key) {
runInputScript(1, vs->verbid, 1);
return;
}
}
}
runInputScript(4, _mouseButStat, 1);
} else if (_mouseButStat & MBS_MOUSE_MASK) {
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VirtScreen *zone = findVirtScreen(_mouse.y);
byte code = _mouseButStat & MBS_LEFT_CLICK ? 1 : 2;
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if (zone->number == 0) {
over = checkMouseOver(_mouse.x, _mouse.y);
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if (over != 0) {
runInputScript(1, _verbs[over].verbid, code);
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return;
}
runInputScript(2, 0, code);
} else if (_version <= 2 && zone->number == 2 && _mouse.y > zone->topline + 32) {
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checkV2Inventory(_mouse.x, _mouse.y);
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} else {
over = checkMouseOver(_mouse.x, _mouse.y);
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// FIXME For the future: Indy3 and under inv scrolling
/*
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if (over >= 31 && over <= 36)
over += _inventoryOffset;
*/
runInputScript(1, over != 0 ? _verbs[over].verbid : 0, code);
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}
}
}
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void Scumm::verbMouseOver(int verb) {
if (_verbMouseOver == verb)
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return;
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if (_verbs[_verbMouseOver].type != kImageVerbType) {
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drawVerb(_verbMouseOver, 0);
_verbMouseOver = verb;
}
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if (_verbs[verb].type != kImageVerbType && _verbs[verb].hicolor) {
drawVerb(verb, 1);
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_verbMouseOver = verb;
}
}
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int Scumm::checkMouseOver(int x, int y) {
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VerbSlot *vs;
int i = _maxVerbs - 1;
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vs = &_verbs[i];
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do {
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if (vs->curmode != 1 || !vs->verbid || vs->saveid || y < vs->y || y >= vs->bottom)
continue;
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if (vs->center) {
if (x < -(vs->right - vs->x - vs->x) || x >= vs->right)
continue;
} else {
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if (x < vs->x || x >= vs->right)
continue;
}
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return i;
} while (--vs, --i);
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return 0;
}
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void Scumm::drawVerb(int verb, int mode) {
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VerbSlot *vs;
bool tmp;
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if (!verb)
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return;
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vs = &_verbs[verb];
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if (!vs->saveid && vs->curmode && vs->verbid) {
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if (vs->type == kImageVerbType) {
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drawVerbBitmap(verb, vs->x, vs->y);
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return;
}
restoreVerbBG(verb);
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_string[4].charset = vs->charset_nr;
_string[4].xpos = vs->x;
_string[4].ypos = vs->y;
_string[4].right = _screenWidth - 1;
_string[4].center = vs->center;
if (vs->curmode == 2)
_string[4].color = vs->dimcolor;
else if (mode && vs->hicolor)
_string[4].color = vs->hicolor;
else
_string[4].color = vs->color;
// FIXME For the future: Indy3 and under inv scrolling
/*
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if (verb >= 31 && verb <= 36)
verb += _inventoryOffset;
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*/
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_messagePtr = getResourceAddress(rtVerb, verb);
if (!_messagePtr)
return;
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assert(_messagePtr);
if ((_version == 8) && (_messagePtr[0] == '/')) {
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char pointer[20];
int i, j;
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translateText(_messagePtr, _transText);
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for (i = 0, j = 0; (_messagePtr[i] != '/' || j == 0) && j < 19; i++) {
if (_messagePtr[i] != '/')
pointer[j++] = _messagePtr[i];
}
pointer[j] = 0;
_messagePtr = _transText;
}
tmp = _charset->_center;
_charset->_center = 0;
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drawString(4);
_charset->_center = tmp;
vs->right = _charset->_str.right;
vs->bottom = _charset->_str.bottom;
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vs->old = _charset->_str;
_charset->_str.left = _charset->_str.right;
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} else {
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restoreVerbBG(verb);
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}
}
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void Scumm::restoreVerbBG(int verb) {
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VerbSlot *vs;
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vs = &_verbs[verb];
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if (vs->old.left != -1) {
restoreBG(vs->old, vs->bkcolor);
vs->old.left = -1;
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}
}
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void Scumm::drawVerbBitmap(int verb, int x, int y) {
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VirtScreen *vs;
VerbSlot *vst;
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byte twobufs;
const byte *imptr = 0;
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int ydiff, xstrip;
int imgw, imgh;
int i, tmp;
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byte *obim;
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const ImageHeader *imhd;
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uint32 size;
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if ((vs = findVirtScreen(y)) == NULL)
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return;
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gdi.disableZBuffer();
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twobufs = vs->alloctwobuffers;
vs->alloctwobuffers = 0;
xstrip = x >> 3;
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ydiff = y - vs->topline;
obim = getResourceAddress(rtVerb, verb);
assert(obim);
if (_features & GF_OLD_BUNDLE) {
imgw = obim[0];
imgh = obim[1] >> 3;
imptr = obim + 2;
} else if (_features & GF_SMALL_HEADER) {
size = READ_LE_UINT32(obim);
imgw = (*(obim + size + 11));
imgh = (*(obim + size + 17)) >> 3;
imptr = (obim + 8);
} else {
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imhd = (const ImageHeader *)findResourceData(MKID('IMHD'), obim);
if (_version >= 7) {
imgw = READ_LE_UINT16(&imhd->v7.width) >> 3;
imgh = READ_LE_UINT16(&imhd->v7.height) >> 3;
} else {
imgw = READ_LE_UINT16(&imhd->old.width) >> 3;
imgh = READ_LE_UINT16(&imhd->old.height) >> 3;
}
if (_version == 8) {
warning("drawVerbBitmap(%d, %d, %d)", verb, x, y);
imptr = findResource(MKID('IMAG'), obim);
assert(imptr);
imptr = findResource(MKID('WRAP'), imptr);
assert(imptr);
imptr = findResource(MKID('OFFS'), imptr);
assert(imptr);
// Get the address of the second SMAP (corresponds to IM01)
imptr += READ_LE_UINT32(imptr + 12);
} else
imptr = findResource(MKID('IM01'), obim);
if (!imptr)
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error("No image for verb %d", verb);
}
assert(imptr);
if (_version == 1) {
gdi._C64ObjectMode = true;
gdi.decodeC64Gfx(imptr, gdi._C64ObjectMap, imgw * imgh * 3);
}
for (i = 0; i < imgw; i++) {
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tmp = xstrip + i;
if (tmp < gdi._numStrips)
gdi.drawBitmap(imptr, vs, tmp, ydiff, imgw * 8, imgh * 8, i, 1, Gdi::dbAllowMaskOr);
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}
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vst = &_verbs[verb];
vst->right = vst->x + imgw * 8;
vst->bottom = vst->y + imgh * 8;
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vst->old.left = vst->x;
vst->old.right = vst->right;
vst->old.top = vst->y;
vst->old.bottom = vst->bottom;
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gdi.enableZBuffer();
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vs->alloctwobuffers = twobufs;
}
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int Scumm::getVerbSlot(int id, int mode) {
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int i;
for (i = 1; i < _maxVerbs; i++) {
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if (_verbs[i].verbid == id && _verbs[i].saveid == mode) {
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return i;
}
}
return 0;
}
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void Scumm::killVerb(int slot) {
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VerbSlot *vs;
if (slot == 0)
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return;
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vs = &_verbs[slot];
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vs->verbid = 0;
vs->curmode = 0;
nukeResource(rtVerb, slot);
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if (vs->saveid == 0) {
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drawVerb(slot, 0);
verbMouseOver(0);
}
vs->saveid = 0;
}
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void Scumm::setVerbObject(uint room, uint object, uint verb) {
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const byte *obimptr;
const byte *obcdptr;
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uint32 size, size2;
FindObjectInRoom foir;
int i;
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if (whereIsObject(object) == WIO_FLOBJECT)
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error("Can't grab verb image from flobject");
if (_features & GF_OLD_BUNDLE) {
for (i = (_numLocalObjects-1); i > 0; i--) {
if (_objs[i].obj_nr == object) {
findObjectInRoom(&foir, foImageHeader, object, room);
size = READ_LE_UINT16(foir.obim);
byte *ptr = createResource(rtVerb, verb, size + 2);
obcdptr = getResourceAddress(rtRoom, room) + getOBCDOffs(object);
ptr[0] = *(obcdptr + 9); // Width
ptr[1] = *(obcdptr + 15); // Height
memcpy(ptr + 2, foir.obim, size);
return;
}
}
} else if (_features & GF_SMALL_HEADER) {
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for (i = (_numLocalObjects-1); i > 0; i--) {
if (_objs[i].obj_nr == object) {
// FIXME - the only thing we need from the OBCD is the image size!
// So we could use almost the same code (save for offsets)
// as in the GF_OLD_BUNDLE code. But of course that would break save games
// unless we insert special conversion code... <sigh>
findObjectInRoom(&foir, foImageHeader, object, room);
size = READ_LE_UINT32(foir.obim);
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obcdptr = getResourceAddress(rtRoom, room) + getOBCDOffs(object);
size2 = READ_LE_UINT32(obcdptr);
createResource(rtVerb, verb, size + size2);
obimptr = getResourceAddress(rtRoom, room) - foir.roomptr + foir.obim;
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obcdptr = getResourceAddress(rtRoom, room) + getOBCDOffs(object);
memcpy(getResourceAddress(rtVerb, verb), obimptr, size);
memcpy(getResourceAddress(rtVerb, verb) + size, obcdptr, size2);
return;
}
}
} else {
findObjectInRoom(&foir, foImageHeader, object, room);
size = READ_BE_UINT32_UNALIGNED(foir.obim + 4);
createResource(rtVerb, verb, size);
obimptr = getResourceAddress(rtRoom, room) - foir.roomptr + foir.obim;
memcpy(getResourceAddress(rtVerb, verb), obimptr, size);
}
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}