mirror of
https://github.com/libretro/scummvm.git
synced 2024-12-23 02:11:38 +00:00
469 lines
8.6 KiB
C++
469 lines
8.6 KiB
C++
/* ScummVM - Graphic Adventure Engine
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*
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* ScummVM is the legal property of its developers, whose names
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* are too numerous to list here. Please refer to the COPYRIGHT
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* file distributed with this source distribution.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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*/
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#include "common/textconsole.h"
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#include "parallaction/parallaction.h"
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#include "parallaction/objects.h"
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#include "parallaction/parser.h"
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namespace Parallaction {
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Command::Command() {
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_id = 0;
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_flagsOn = 0;
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_flagsOff = 0;
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_valid = false;
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_flags = 0;
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_string = 0;
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_callable = 0;
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_object = 0;
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_counterValue = 0;
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_zeta0 = 0;
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_zeta1 = 0;
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_zeta2 = 0;
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_characterId = 0;
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_string2 = 0;
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_musicCommand = 0;
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_musicParm = 0;
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}
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Command::~Command() {
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free(_string);
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free(_string2);
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}
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Animation::Animation() {
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gfxobj = NULL;
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_scriptName = 0;
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_frame = 0;
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_z = 0;
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}
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Animation::~Animation() {
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free(_scriptName);
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gfxobj->release();
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}
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void Animation::getFrameRect(Common::Rect &r) const {
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r.setWidth(0); r.setHeight(0);
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if (!gfxobj) {
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return;
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}
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gfxobj->getRect(_frame, r);
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r.translate(_left, _top);
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}
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bool Animation::hitFrameRect(int x, int y) const {
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if (!gfxobj) {
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return false;
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}
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Common::Rect r;
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getFrameRect(r);
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return r.contains(x, y);
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}
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int16 Animation::getBottom() const {
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int bottom = _top;
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if (gfxobj) {
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Common::Rect r;
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getFrameRect(r);
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bottom = r.bottom;
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}
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return bottom;
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}
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void Animation::resetZ() {
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setZ(getBottom());
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}
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uint16 Animation::getFrameNum() const {
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if (!gfxobj) return 0;
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return gfxobj->getNum();
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}
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byte* Animation::getFrameData() const {
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if (!gfxobj) return NULL;
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return gfxobj->getData(_frame);
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}
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void Animation::setF(int16 value) {
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int16 min = MIN(0, getFrameNum() - 1);
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int16 max = MAX(0, getFrameNum() - 1);
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_frame = CLIP(value, min, max);
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}
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void Animation::forceXYZF(int16 x, int16 y, int16 z, int16 f) {
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_left = x;
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_top = y;
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_z = z;
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_frame = f;
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}
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void Animation::getFoot(Common::Point &foot) {
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Common::Rect rect;
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gfxobj->getRect(_frame, rect);
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foot.x = getX() + (rect.left + rect.width() / 2);
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foot.y = getY() + (rect.top + rect.height());
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}
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void Animation::setFoot(const Common::Point &foot) {
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Common::Rect rect;
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gfxobj->getRect(_frame, rect);
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setX(foot.x - (rect.left + rect.width() / 2));
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setY(foot.y - (rect.top + rect.height()));
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}
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#define NUM_LOCALS 10
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char _localNames[NUM_LOCALS][10];
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Program::Program() {
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_loopCounter = 0;
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_locals = new LocalVariable[NUM_LOCALS];
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_numLocals = 0;
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_status = kProgramIdle;
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}
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Program::~Program() {
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delete[] _locals;
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}
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int16 Program::findLocal(const char* name) {
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for (uint16 _si = 0; _si < NUM_LOCALS; _si++) {
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if (!scumm_stricmp(name, _localNames[_si]))
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return _si;
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}
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return -1;
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}
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int16 Program::addLocal(const char *name, int16 value, int16 min, int16 max) {
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assert(_numLocals < NUM_LOCALS);
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strcpy(_localNames[_numLocals], name);
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_locals[_numLocals].setRange(min, max);
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_locals[_numLocals].setValue(value);
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return _numLocals++;
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}
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void LocalVariable::setValue(int16 value) {
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if (value >= _max)
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value = _min;
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if (value < _min)
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value = _max - 1;
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_value = value;
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}
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void LocalVariable::setRange(int16 min, int16 max) {
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_max = max;
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_min = min;
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}
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int16 LocalVariable::getValue() const {
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return _value;
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}
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Zone::Zone() {
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_left = _top = _right = _bottom = 0;
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_type = 0;
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_flags = kFlagsNoName;
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_label = 0;
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// BRA specific
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_index = INVALID_ZONE_INDEX;
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_locationIndex = INVALID_LOCATION_INDEX;
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}
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Zone::~Zone() {
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g_vm->_gfx->unregisterLabel(_label);
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delete _label;
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}
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void Zone::translate(int16 x, int16 y) {
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_left += x;
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_right += x;
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_top += y;
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_bottom += y;
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}
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bool Zone::hitRect(int x, int y) const {
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// The scripts of Nippon Safes are full of invalid rectangles, used to
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// provide 'special' features.
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if (_right < _left || _bottom < _top) {
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return false;
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}
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Common::Rect r(_left, _top, _right + 1, _bottom + 1);
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r.grow(-1);
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return r.contains(x, y);
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}
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Dialogue::Dialogue() {
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memset(_questions, 0, sizeof(_questions));
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_numQuestions = 0;
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}
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Dialogue::~Dialogue() {
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for (int i = 0; i < NUM_QUESTIONS; i++) {
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delete _questions[i];
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}
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}
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Question *Dialogue::findQuestion(const Common::String &name) const {
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for (uint i = 0; _questions[i]; ++i) {
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if (_questions[i]->_name == name) {
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return _questions[i];
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}
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}
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return 0;
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}
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void Dialogue::addQuestion(Question *q) {
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assert(_numQuestions < NUM_QUESTIONS);
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assert(q);
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_questions[_numQuestions] = q;
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_numQuestions++;
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}
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Answer::Answer() {
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_mood = 0;
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_noFlags = 0;
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_yesFlags = 0;
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_hasCounterCondition = false;
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}
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bool Answer::textIsNull() {
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return (_text.equalsIgnoreCase("NULL"));
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}
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int Answer::speakerMood() {
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return _mood & 0xF;
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}
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Question::Question(const Common::String &name) : _name(name), _mood(0) {
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memset(_answers, 0, sizeof(_answers));
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}
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Question::~Question() {
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for (uint32 i = 0; i < NUM_ANSWERS; i++) {
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delete _answers[i];
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}
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}
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bool Question::textIsNull() {
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return (_text.equalsIgnoreCase("NULL"));
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}
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int Question::speakerMood() {
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return _mood & 0xF;
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}
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int Question::balloonWinding() {
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return _mood & 0x10;
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}
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Instruction::Instruction() {
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_index = 0;
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_flags = 0;
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// common
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_immediate = 0;
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// BRA specific
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_text = 0;
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_text2 = 0;
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_y = 0;
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}
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Instruction::~Instruction() {
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free(_text);
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free(_text2);
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}
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int16 ScriptVar::getValue() {
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if (_flags & kParaImmediate) {
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return _value;
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}
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if (_flags & kParaLocal) {
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return _local->getValue();
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}
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if (_flags & kParaField) {
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return _field->getValue();
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}
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if (_flags & kParaRandom) {
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return (g_vm->_rnd.getRandomNumber(65536) * _value) >> 16;
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}
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error("Parameter is not an r-value");
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return 0; // for compilers that don't support NORETURN
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}
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void ScriptVar::setValue(int16 value) {
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if ((_flags & kParaLValue) == 0) {
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error("Only l-value can be set");
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}
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if (_flags & kParaLocal) {
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_local->setValue(value);
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}
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if (_flags & kParaField) {
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_field->setValue(value);
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}
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}
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void ScriptVar::setLocal(LocalVariable *local) {
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_local = local;
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_flags |= (kParaLocal | kParaLValue);
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}
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void ScriptVar::setField(Animation *anim, AnimationField::AccessorFunc accessor, AnimationField::MutatorFunc mutator) {
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_field = new AnimationField(anim, accessor, mutator);
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_flags |= (kParaField | kParaLValue);
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}
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void ScriptVar::setField(Animation *anim, AnimationField::AccessorFunc accessor) {
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_field = new AnimationField(anim, accessor);
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_flags |= kParaField;
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}
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void ScriptVar::setImmediate(int16 value) {
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_value = value;
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_flags |= kParaImmediate;
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}
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void ScriptVar::setRandom(int16 seed) {
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_value = seed;
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_flags |= kParaRandom;
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}
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ScriptVar::ScriptVar() {
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_flags = 0;
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_local = 0;
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_value = 0;
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_field = 0;
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}
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ScriptVar::~ScriptVar() {
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delete _field;
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}
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Table::Table(uint32 size) : _size(size), _used(0), _disposeMemory(true) {
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_data = (char**)calloc(size, sizeof(char *));
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}
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Table::Table(uint32 size, const char **data) : _size(size), _used(size), _disposeMemory(false) {
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_data = const_cast<char **>(data);
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}
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Table::~Table() {
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if (!_disposeMemory) return;
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clear();
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free(_data);
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}
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void Table::addData(const char* s) {
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if (!(_used < _size))
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error("Table overflow");
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_data[_used++] = strdup(s);
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}
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uint16 Table::lookup(const char* s) {
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for (uint16 i = 0; i < _used; i++) {
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if (!scumm_stricmp(_data[i], s)) return i + 1;
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}
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return notFound;
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}
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void Table::clear() {
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for (uint32 i = 0; i < _used; i++)
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free(_data[i]);
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_used = 0;
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}
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const char *Table::item(uint index) const {
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assert(index < _used);
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return _data[index];
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}
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FixedTable::FixedTable(uint32 size, uint32 fixed) : Table(size), _numFixed(fixed) {
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}
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void FixedTable::clear() {
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uint32 deleted = 0;
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for (uint32 i = _numFixed; i < _used; i++) {
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free(_data[i]);
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_data[i] = 0;
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deleted++;
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}
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_used -= deleted;
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}
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Table* createTableFromStream(uint32 size, Common::SeekableReadStream *stream) {
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assert(stream);
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Table *t = new Table(size);
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assert(t);
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Script s(stream, false);
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s.readLineToken();
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while (scumm_stricmp(_tokens[0], "ENDTABLE")) {
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t->addData(_tokens[0]);
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s.readLineToken();
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}
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delete stream;
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return t;
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}
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} // namespace Parallaction
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