/** * Copyright (c) 2006-2023 LOVE Development Team * * This software is provided 'as-is', without any express or implied * warranty. In no event will the authors be held liable for any damages * arising from the use of this software. * * Permission is granted to anyone to use this software for any purpose, * including commercial applications, and to alter it and redistribute it * freely, subject to the following restrictions: * * 1. The origin of this software must not be misrepresented; you must not * claim that you wrote the original software. If you use this software * in a product, an acknowledgment in the product documentation would be * appreciated but is not required. * 2. Altered source versions must be plainly marked as such, and must not be * misrepresented as being the original software. * 3. This notice may not be removed or altered from any source distribution. **/ #include "wrap_RevoluteJoint.h" #include "wrap_Physics.h" namespace love { namespace physics { namespace box2d { RevoluteJoint *luax_checkrevolutejoint(lua_State *L, int idx) { RevoluteJoint *j = luax_checktype(L, idx); if (!j->isValid()) luaL_error(L, "Attempt to use destroyed joint."); return j; } int w_RevoluteJoint_getJointAngle(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); lua_pushnumber(L, t->getJointAngle()); return 1; } int w_RevoluteJoint_getJointSpeed(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); lua_pushnumber(L, t->getJointSpeed()); return 1; } int w_RevoluteJoint_setMotorEnabled(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); bool arg1 = luax_checkboolean(L, 2); t->setMotorEnabled(arg1); return 0; } int w_RevoluteJoint_isMotorEnabled(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); luax_pushboolean(L, t->isMotorEnabled()); return 1; } int w_RevoluteJoint_setMaxMotorTorque(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); float arg1 = (float)luaL_checknumber(L, 2); t->setMaxMotorTorque(arg1); return 0; } int w_RevoluteJoint_setMotorSpeed(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); float arg1 = (float)luaL_checknumber(L, 2); t->setMotorSpeed(arg1); return 0; } int w_RevoluteJoint_getMotorSpeed(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); lua_pushnumber(L, t->getMotorSpeed()); return 1; } int w_RevoluteJoint_getMotorTorque(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); float inv_dt = (float)luaL_checknumber(L, 2); lua_pushnumber(L, t->getMotorTorque(inv_dt)); return 1; } int w_RevoluteJoint_getMaxMotorTorque(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); lua_pushnumber(L, t->getMaxMotorTorque()); return 1; } int w_RevoluteJoint_setLimitsEnabled(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); bool arg1 = luax_checkboolean(L, 2); t->setLimitsEnabled(arg1); return 0; } int w_RevoluteJoint_areLimitsEnabled(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); luax_pushboolean(L, t->areLimitsEnabled()); return 1; } int w_RevoluteJoint_setUpperLimit(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); float arg1 = (float)luaL_checknumber(L, 2); luax_catchexcept(L, [&](){ t->setUpperLimit(arg1); }); return 0; } int w_RevoluteJoint_setLowerLimit(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); float arg1 = (float)luaL_checknumber(L, 2); luax_catchexcept(L, [&](){ t->setLowerLimit(arg1); }); return 0; } int w_RevoluteJoint_setLimits(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); float arg1 = (float)luaL_checknumber(L, 2); float arg2 = (float)luaL_checknumber(L, 3); luax_catchexcept(L, [&](){ t->setLimits(arg1, arg2); }); return 0; } int w_RevoluteJoint_getLowerLimit(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); lua_pushnumber(L, t->getLowerLimit()); return 1; } int w_RevoluteJoint_getUpperLimit(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); lua_pushnumber(L, t->getUpperLimit()); return 1; } int w_RevoluteJoint_getLimits(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); lua_remove(L, 1); return t->getLimits(L); } int w_RevoluteJoint_getReferenceAngle(lua_State *L) { RevoluteJoint *t = luax_checkrevolutejoint(L, 1); lua_pushnumber(L, t->getReferenceAngle()); return 1; } int w_RevoluteJoint_hasLimitsEnabled(lua_State *L) { luax_markdeprecated(L, "RevoluteJoint:hasLimitsEnabled", API_METHOD, DEPRECATED_RENAMED, "RevoluteJoint:areLimitsEnabled"); return w_RevoluteJoint_areLimitsEnabled(L); } static const luaL_Reg w_RevoluteJoint_functions[] = { { "getJointAngle", w_RevoluteJoint_getJointAngle }, { "getJointSpeed", w_RevoluteJoint_getJointSpeed }, { "setMotorEnabled", w_RevoluteJoint_setMotorEnabled }, { "isMotorEnabled", w_RevoluteJoint_isMotorEnabled }, { "setMaxMotorTorque", w_RevoluteJoint_setMaxMotorTorque }, { "setMotorSpeed", w_RevoluteJoint_setMotorSpeed }, { "getMotorSpeed", w_RevoluteJoint_getMotorSpeed }, { "getMotorTorque", w_RevoluteJoint_getMotorTorque }, { "getMaxMotorTorque", w_RevoluteJoint_getMaxMotorTorque }, { "setLimitsEnabled", w_RevoluteJoint_setLimitsEnabled }, { "areLimitsEnabled", w_RevoluteJoint_areLimitsEnabled }, { "setUpperLimit", w_RevoluteJoint_setUpperLimit }, { "setLowerLimit", w_RevoluteJoint_setLowerLimit }, { "setLimits", w_RevoluteJoint_setLimits }, { "getLowerLimit", w_RevoluteJoint_getLowerLimit }, { "getUpperLimit", w_RevoluteJoint_getUpperLimit }, { "getLimits", w_RevoluteJoint_getLimits }, { "getReferenceAngle", w_RevoluteJoint_getReferenceAngle }, // Deprecated { "hasLimitsEnabled", w_RevoluteJoint_hasLimitsEnabled }, { 0, 0 } }; extern "C" int luaopen_revolutejoint(lua_State *L) { return luax_register_type(L, &RevoluteJoint::type, w_Joint_functions, w_RevoluteJoint_functions, nullptr); } } // box2d } // physics } // love