1 | /*! |
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2 | * @file weapon.h |
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3 | * |
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4 | * Weapon is the mayor baseclass for all weapons. it is quite extensive, and expensive in use, |
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5 | * because each weapon will know virutal functions for the WorldEntity's part, and also virtuals |
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6 | * for Fireing/Reloading/..., |
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7 | * quickly said: Weapon is a wrapper for weapons, that makes it easy to very quickly implement |
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8 | * new Weapons, and with them make this game better, than any game before it, because still |
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9 | * Weapons (GUNS) are the most important thing in life :?... no to be serious |
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10 | * @see Weapon |
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11 | */ |
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12 | |
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13 | |
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14 | #ifndef _WEAPON_H |
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15 | #define _WEAPON_H |
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16 | |
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17 | #include "world_entity.h" |
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18 | #include "count_pointer.h" |
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19 | #include "ammo_container.h" |
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20 | |
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21 | #include "sound_buffer.h" |
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22 | |
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23 | // FORWARD DECLARATION |
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24 | class Projectile; |
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25 | class WeaponManager; |
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26 | class Animation3D; |
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27 | class TiXmlElement; |
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28 | class FastFactory; |
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29 | template<class T> class tFastFactory; |
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30 | |
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31 | //! An enumerator defining Actions a Weapon can take |
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32 | typedef enum { |
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33 | WA_NONE = 0, //!< No Action taken |
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34 | WA_SHOOT = 1, //!< emitting Shot |
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35 | WA_CHARGE = 2, //!< charge action (one click before the shot) |
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36 | WA_RELOAD = 3, //!< reload right after shoot is finished |
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37 | WA_ACTIVATE = 4, //!< activate the GUN |
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38 | WA_DEACTIVATE = 5, //!< deactivate the GUN |
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39 | WA_SPECIAL1 = 6, //!< Special Action taken |
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40 | |
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41 | WA_ACTION_COUNT = 7 //!< This must match the count of enumerations-members. |
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42 | } WeaponAction; |
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43 | |
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44 | //! An enumerator defining the States of a Weapon |
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45 | typedef enum { |
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46 | WS_NONE = 0, //!< No State at all (if set, there is something wrong, or the weapon is not yet availiable) |
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47 | WS_SHOOTING = 1, //!< The State of the Shooting |
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48 | WS_CHARGING = 2, //!< The state of charging th weapon |
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49 | WS_RELOADING = 3, //!< The State of the Reloading |
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50 | WS_ACTIVATING = 4, //!< The State in which the weapon gets activated |
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51 | WS_DEACTIVATING = 5, //!< The State in which the weapon gets deactivated |
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52 | WS_INACTIVE = 6, //!< The State where the weapon is inactive (unable to shoot) |
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53 | WS_IDLE = 7, //!< The State where the weapon is idle |
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54 | |
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55 | WS_STATE_COUNT = 8 //!< This must match the count of enumerations-members. |
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56 | } WeaponState; |
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57 | |
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58 | //! an enumerator defining capabilities of a WeaponSlot |
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59 | typedef enum |
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60 | { |
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61 | WTYPE_DIRECTIONAL = 0x00000001, //!< Weapon is directional/Slot is able to carry directional weapons |
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62 | WTYPE_TURRET = 0x00000002, //!< Weapon is a turret/slot is able to carry turrets |
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63 | WTYPE_LIGHT = 0x00000004, //!< For light Armament. |
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64 | WTYPE_HEAVY = 0x00000008, //!< The heavy Armament (Cannons). |
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65 | WTYPE_ALLKINDS = 0x0000000f, //!< Weapon is all types/Slot is able to carry all kinds of weapons |
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66 | |
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67 | WTYPE_FORWARD = 0x00000010, //!< Weapon fires forwards/Slot is able to carry weapons firing forwards |
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68 | WTYPE_BACKWARD = 0x00000020, //!< Weapon fires backwards/Slot is able to carry weapons firing backwards |
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69 | WTYPE_LEFT = 0x00000040, //!< Weapon fires to the left/Slot is able to carry weapons firing to the left |
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70 | WTYPE_RIGHT = 0x00000080, //!< Weapon fires to the right/Slot is able to carry weapons firing to the right |
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71 | WTYPE_ALLDIRS = 0x000000f0, //!< Weapon has no specific firing direction/Slot can fire into all directions |
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72 | |
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73 | WTYPE_ALL = 0x000000ff, //!< Weapon has no limitations/Slot can handle all kinds of Weapon. |
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74 | } W_Capability; |
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75 | |
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76 | //! An abstract class, that describes weapons |
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77 | /** |
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78 | * This is used as a container for all the different kinds of weapons that may exist |
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79 | * |
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80 | * Weapons have certain states, and actions, that can inflict them. |
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81 | * ex. Action WA_SHOOT leeds to State WS_SHOOTING. |
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82 | * each action has a sound connected to it, |
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83 | * each state a time and an animation. |
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84 | */ |
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85 | class Weapon : public WorldEntity |
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86 | { |
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87 | ObjectListDeclaration(Weapon); |
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88 | |
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89 | public: |
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90 | // INITIALISATION // |
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91 | Weapon (); |
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92 | virtual ~Weapon (); |
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93 | static Weapon* createWeapon(const ClassID& weaponID); |
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94 | static Weapon* createWeapon(const std::string& weaponName); |
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95 | |
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96 | void init(); |
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97 | virtual void loadParams(const TiXmlElement* root); |
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98 | //////////////////// |
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99 | |
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100 | // INTERACTIVITY // |
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101 | void requestAction(WeaponAction action); |
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102 | float increaseEnergy(float energyToAdd); |
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103 | /////////////////// |
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104 | |
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105 | /** @returns true if the Weapon is Active (this is used to check if the weapon must be drawn)*/ |
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106 | inline bool isActive() const { return (this->currentState == WS_INACTIVE)? false : true; }; |
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107 | /** @returns true if the weapon must be drawn */ |
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108 | inline bool isVisible() const { return (this->currentState != WS_INACTIVE || !this->hideInactive) ? true : false; }; |
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109 | /** @returns true if the Weapon is chargeable */ |
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110 | inline bool isChargeable() const { return this->chargeable; }; |
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111 | |
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112 | // FUNCTIONS TO SET THE WEAPONS PROPERTIES. |
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113 | /** sets the Weapons Capabilities */ |
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114 | inline void setCapability(long capabilities) { this->capability = capabilities; }; |
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115 | /** @returns the Capabilities of this Weapon */ |
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116 | inline long getCapability() const { return this->capability; }; |
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117 | void setProjectileType(const ClassID& projectile); |
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118 | void setProjectileTypeC(const std::string& projectile); |
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119 | /** @returns The projectile's classID */ |
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120 | inline ClassID getProjectileType() { return this->projectile; }; |
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121 | /** @returns the FastFactory, that creates Projectiles of type getProjectile */ |
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122 | inline FastFactory* getProjectileFactory() { return this->projectileFactory; }; |
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123 | void prepareProjectiles(unsigned int count); |
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124 | Projectile* getProjectile(); |
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125 | |
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126 | |
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127 | // EMISSION |
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128 | /** keeping old functions*/ |
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129 | void setEmissionPoint(const Vector& point, int barrel); |
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130 | void setEmissionPoint(const Vector& point); |
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131 | /** @see void setEmissionPoint(const Vector& point); */ |
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132 | inline void setEmissionPoint(float x, float y, float z, int barrel) { this->setEmissionPoint(Vector(x, y, z), barrel); }; |
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133 | inline void setEmissionPoint(float x, float y, float z) { this->setEmissionPoint(Vector(x, y, z)); }; |
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134 | /** @returns the absolute Position of the EmissionPoint */ |
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135 | inline const Vector& getEmissionPoint(int barrel) const { return this->emissionPoint[barrel]->getAbsCoor(); }; |
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136 | inline const Vector& getEmissionPoint() const { return this->emissionPoint[0]->getAbsCoor(); }; |
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137 | |
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138 | |
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139 | inline void setDefaultTarget(PNode* defaultTarget) { this->defaultTarget = defaultTarget; }; |
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140 | inline PNode* getDefaultTarget() const { return this->defaultTarget; }; |
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141 | |
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142 | // STATE CHANGES // |
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143 | /** @param state the State to time @param duration the duration of the State */ |
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144 | inline void setStateDuration(const std::string& state, float duration) { setStateDuration(charToState(state), duration); }; |
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145 | /** @param state the State to time @param duration the duration of the State */ |
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146 | inline void setStateDuration(WeaponState state, float duration) { /*(state < WS_STATE_COUNT)?*/this->times[state] = duration; }; |
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147 | /** @param state The state to query @returns the Time the queried State takes to complete */ |
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148 | inline float getStateDuration(WeaponState state) const { return (state < WS_STATE_COUNT)? this->times[state] : 0.0; }; |
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149 | /** @returns true if the time of the currentState is elapsed, false otherwise */ |
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150 | inline bool stateTimeElapsed() const { return (this->stateDuration > this->times[currentState])? true : false; }; |
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151 | /** @returns the current State of the Weapon */ |
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152 | inline WeaponState getCurrentState() const { return this->currentState; }; |
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153 | |
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154 | /** @param energyMax the maximum energy the Weapon can have */ |
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155 | inline void setEnergyMax(float energyMax) { this->energyMax = energyMax; }; |
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156 | inline float getEnergy() const { return this->energy; }; |
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157 | inline float getEnergyMax() const { return this->energyMax; }; |
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158 | inline void setAmmoContainer(const CountPointer<AmmoContainer>& ammoContainer) { this->ammoContainer = ammoContainer;} |
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159 | |
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160 | void setActionSound(WeaponAction action, const std::string& soundFile); |
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161 | /** @see void setActionSound(WeaponAction action, const std::string& soundFile); */ |
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162 | void setActionSound(const std::string& action, const std::string& soundFile) { this->setActionSound(charToAction(action), soundFile); }; |
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163 | |
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164 | Animation3D* getAnimation(WeaponState state, PNode* node = NULL); |
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165 | Animation3D* getAnimation(int barrel, int seg, PNode* node); |
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166 | Animation3D* copyAnimation(WeaponState from, WeaponState to); |
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167 | |
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168 | OrxGui::GLGuiWidget* getEnergyWidget(); |
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169 | |
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170 | // FLOW |
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171 | bool tickW(float dt); //!< this is a function that must be called by the weaponManager, or any other weaponHandler, all other functions are handled from within |
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172 | |
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173 | virtual void tick(float dt) { tickW(dt); }; |
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174 | |
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175 | bool check() const; |
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176 | void debug() const; |
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177 | |
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178 | inline int getBarrels() {return this->barrels; }; |
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179 | inline int getSegs() { return this->segs; }; |
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180 | inline void setBarrels(int barrels) { this->barrels = barrels; }; |
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181 | inline void setSegs(int segs) { this->segs = segs; }; |
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182 | |
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183 | inline Animation3D* getShootAnim(int barrel, int seg) { return this->shootAnim[barrel][seg]; }; |
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184 | inline void setShootAnim(int barrel, int seg, PNode* component) { this->shootAnim[barrel][seg] = this->getAnimation(barrel, seg, component); }; |
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185 | |
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186 | void init2(); |
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187 | void deconstr(); |
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188 | |
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189 | inline int getPreferedSide() { return this->preferedSide; } |
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190 | inline int getPreferedSlot() { return this->preferedSlot; } |
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191 | |
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192 | inline void setEnergyWidgetInitialized(bool b) {this->isEnergyWidgetInitialized = b;}; |
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193 | |
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194 | |
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195 | protected: |
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196 | //! ACTION: these functions are handled by the Weapon itself, and must be called by requestAction(WeaponAction); |
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197 | virtual void activate() {}; |
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198 | virtual void deactivate() {}; |
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199 | virtual void charge() {}; |
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200 | virtual void fire() {}; |
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201 | virtual void reload() {}; |
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202 | |
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203 | |
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204 | // utility: |
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205 | static WeaponAction charToAction(const std::string& action); |
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206 | static const char* actionToChar(WeaponAction action); |
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207 | static WeaponState charToState(const std::string& state); |
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208 | static const char* stateToChar(WeaponState state); |
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209 | |
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210 | void setPreferedSlot(int slot, int side) { this->preferedSlot = slot; this->preferedSide = side; } |
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211 | |
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212 | //gui |
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213 | OrxGui::GLGuiEnergyWidgetVertical* energyWidget; |
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214 | bool isEnergyWidgetInitialized; |
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215 | |
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216 | |
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217 | private: |
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218 | /** executive functions, that handle timing with actions. |
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219 | * This is for the action-functions in derived functions to be easy |
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220 | * The main function is execute, that calls all the other functions |
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221 | * for being fast, the Functions are private and as such will be inlined |
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222 | * into the execute function. (this is work of the compiler) |
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223 | */ |
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224 | bool execute(); |
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225 | bool activateW(); |
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226 | bool deactivateW(); |
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227 | bool chargeW(); |
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228 | bool fireW(); |
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229 | bool reloadW(); |
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230 | inline void enterState(WeaponState state); |
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231 | |
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232 | void updateWidgets(); |
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233 | |
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234 | private: |
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235 | // type of Weapon |
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236 | long capability; //!< what capabilities the Weapon has @see W_Capability |
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237 | |
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238 | // it is all about energy |
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239 | float energy; //!< The energy stored in the weapons buffers |
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240 | float energyMax; //!< The maximal energy that can be stored in the secondary buffers (reserveMax) |
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241 | CountPointer<AmmoContainer> ammoContainer; //!< Pointer to the AmmoContainer this weapon grabs Energy from. |
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242 | //! @todo move this to projectile |
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243 | float minCharge; //!< The minimal energy to be loaded onto one projectile if chargeable otherwise the power consumed by one projectile |
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244 | float maxCharge; //!< The maximal energy to be loaded onto one projectile (this is only availible if chargeable is enabled) |
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245 | |
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246 | //OrxGui::GLGuiEnergyWidgetVertical* energyWidget; |
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247 | |
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248 | PNode* defaultTarget; //!< A target for targeting Weapons. |
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249 | |
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250 | //////////// |
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251 | // PHASES // |
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252 | //////////// |
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253 | OrxSound::SoundSource* soundSource; //!< A SoundSource to play sound from (this is connected to the PNode of the Weapon) |
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254 | |
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255 | WeaponState currentState; //!< The State the weapon is in. |
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256 | WeaponAction requestedAction; //!< An action to try to Engage after the currentState ends. |
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257 | float stateDuration; //!< how long the state has taken until now. |
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258 | float times[WS_STATE_COUNT]; //!< Times to stay in the different States @see WeaponState. |
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259 | Animation3D* animation[WS_STATE_COUNT]; //!< Animations for all the States (you can say yourself on what part of the gun this animation acts). |
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260 | OrxSound::SoundBuffer soundBuffers[WA_ACTION_COUNT]; //!< SoundBuffers for all actions @see WeaponAction. |
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261 | |
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262 | PNode** emissionPoint; //!< The point, where the projectiles are emitted. (this is coppled with the Weapon by default) |
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263 | |
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264 | bool hideInactive; //!< Hides the Weapon if it is inactive |
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265 | bool chargeable; //!< if the Weapon is charcheable (if true, the weapon will charge before it fires.) |
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266 | |
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267 | ClassID projectile; //!< the projectile used for this weapon (since they should be generated via macro and the FastFactory, only the ClassID must be known.) |
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268 | FastFactory* projectileFactory; //!< A factory, that produces and handles the projectiles. |
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269 | |
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270 | int barrels; //!< # of barrels |
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271 | int segs; //!< # of segments, one barrel has |
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272 | Animation3D*** shootAnim; |
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273 | |
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274 | int preferedSlot; //!< prefered slot to add |
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275 | int preferedSide; //!< prefered side (left/right) to be added |
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276 | |
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277 | }; |
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278 | |
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279 | #endif /* _WEAPON_H */ |
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