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4
src/3rdparty/squirrel/squirrel/sqstate.cpp
vendored
4
src/3rdparty/squirrel/squirrel/sqstate.cpp
vendored
@ -252,7 +252,7 @@ SQInteger SQSharedState::CollectGarbage(SQVM *vm)
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SQVM *vms = _thread(_root_vm);
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vms->Mark(&tchain);
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#ifndef NDEBUG
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#ifdef WITH_ASSERT
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SQInteger x = _table(_thread(_root_vm)->_roottable)->CountUsed();
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#endif
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_refs_table.Mark(&tchain);
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@ -291,7 +291,7 @@ SQInteger SQSharedState::CollectGarbage(SQVM *vm)
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t = t->_next;
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}
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_gc_chain = tchain;
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#ifndef NDEBUG
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#ifdef WITH_ASSERT
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SQInteger z = _table(_thread(_root_vm)->_roottable)->CountUsed();
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assert(z == x);
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#endif
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14
src/3rdparty/squirrel/squirrel/sqvm.cpp
vendored
14
src/3rdparty/squirrel/squirrel/sqvm.cpp
vendored
@ -1460,7 +1460,7 @@ bool SQVM::DeleteSlot(const SQObjectPtr &self,const SQObjectPtr &key,SQObjectPtr
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}
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}
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res = t;
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}
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}
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break;
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default:
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Raise_Error("attempt to delete a slot from a %s",GetTypeName(self));
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@ -1471,7 +1471,7 @@ bool SQVM::DeleteSlot(const SQObjectPtr &self,const SQObjectPtr &key,SQObjectPtr
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bool SQVM::Call(SQObjectPtr &closure,SQInteger nparams,SQInteger stackbase,SQObjectPtr &outres,SQBool raiseerror,SQBool can_suspend)
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{
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#ifndef NDEBUG
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#ifdef WITH_ASSERT
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SQInteger prevstackbase = _stackbase;
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#endif
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switch(type(closure)) {
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@ -1482,13 +1482,13 @@ bool SQVM::Call(SQObjectPtr &closure,SQInteger nparams,SQInteger stackbase,SQObj
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bool ret = Execute(closure, _top - nparams, nparams, stackbase,outres,raiseerror);
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this->_can_suspend = backup_suspend;
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return ret;
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}
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}
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break;
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case OT_NATIVECLOSURE:{
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case OT_NATIVECLOSURE: {
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bool suspend;
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return CallNative(_nativeclosure(closure), nparams, stackbase, outres,suspend);
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}
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}
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break;
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case OT_CLASS: {
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SQObjectPtr constr;
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@ -1499,12 +1499,12 @@ bool SQVM::Call(SQObjectPtr &closure,SQInteger nparams,SQInteger stackbase,SQObj
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return Call(constr,nparams,stackbase,temp,raiseerror,false);
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}
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return true;
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}
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}
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break;
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default:
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return false;
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}
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#ifndef NDEBUG
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#ifdef WITH_ASSERT
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if(!_suspended) {
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assert(_stackbase == prevstackbase);
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}
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@ -229,7 +229,7 @@ static void ResizeSpriteOut(SpriteLoader::Sprite *sprite, ZoomLevel zoom)
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SpriteLoader::CommonPixel *dst = sprite[zoom].data;
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const SpriteLoader::CommonPixel *src = sprite[zoom - 1].data;
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#ifndef NDEBUG
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#ifdef WITH_ASSERT
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const SpriteLoader::CommonPixel *src_end = src + sprite[zoom - 1].height * sprite[zoom - 1].width;
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#endif
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@ -658,7 +658,7 @@ static void HeightMapCurves(uint level)
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for (uint t = 0; t < lengthof(curve_maps); t++) {
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if (!HasBit(corner_bits, t)) continue;
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#ifndef NDEBUG
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#ifdef WITH_ASSERT
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bool found = false;
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#endif
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const control_point_t *cm = curve_maps[t].list;
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@ -668,7 +668,7 @@ static void HeightMapCurves(uint level)
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if (*h >= p1.x && *h < p2.x) {
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ht[t] = p1.y + (*h - p1.x) * (p2.y - p1.y) / (p2.x - p1.x);
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#ifndef NDEBUG
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#ifdef WITH_ASSERT
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found = true;
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#endif
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break;
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@ -107,7 +107,7 @@ Town::~Town()
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DeleteWindowById(WC_TOWN_VIEW, this->index);
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/* Check no industry is related to us. */
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#ifndef NDEBUG
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#ifdef WITH_ASSERT
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for (const Industry *i : Industry::Iterate()) assert(i->town != this);
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/* ... and no object is related to us. */
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@ -600,7 +600,7 @@ static char *MakeCzechTownName(char *buf, const char *last, uint32 seed)
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return strecpy(buf, _name_czech_real[SeedModChance(4, lengthof(_name_czech_real), seed)], last);
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}
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#ifndef NDEBUG
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#ifdef WITH_ASSERT
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const char *orig = buf;
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#endif
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@ -953,7 +953,7 @@ void CallVehicleTicks()
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PerformanceAccumulator::Reset(PFE_GL_AIRCRAFT);
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for (Vehicle *v : Vehicle::Iterate()) {
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#ifndef NDEBUG
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#ifdef WITH_ASSERT
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size_t vehicle_index = v->index;
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#endif
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@ -1156,7 +1156,7 @@ void NWidgetHorizontal::SetupSmallestSize(Window *w, bool init_array)
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this->smallest_y = std::max(this->smallest_y, child_wid->smallest_y + child_wid->padding_top + child_wid->padding_bottom);
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}
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/* 1b. Make the container higher if needed to accommodate all children nicely. */
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#ifndef NDEBUG
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#ifdef WITH_ASSERT
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uint max_smallest = this->smallest_y + 3 * max_vert_fill; // Upper limit to computing smallest height.
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#endif
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uint cur_height = this->smallest_y;
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@ -1323,7 +1323,7 @@ void NWidgetVertical::SetupSmallestSize(Window *w, bool init_array)
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this->smallest_x = std::max(this->smallest_x, child_wid->smallest_x + child_wid->padding_left + child_wid->padding_right);
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}
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/* 1b. Make the container wider if needed to accommodate all children nicely. */
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#ifndef NDEBUG
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#ifdef WITH_ASSERT
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uint max_smallest = this->smallest_x + 3 * max_hor_fill; // Upper limit to computing smallest height.
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#endif
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uint cur_width = this->smallest_x;
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