Merge branch 'master' into syntheticbloods
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@@ -6,7 +6,7 @@
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#define ACCESS_MORGUE 6
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#define ACCESS_TOX 7 //R&D department, R&D console, burn chamber on some maps
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#define ACCESS_TOX_STORAGE 8 //Toxins storage, burn chamber on some maps
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#define ACCESS_GENETICS 9
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#define ACCESS_GENETICS 9
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#define ACCESS_ENGINE 10 //Engineering area, power monitor, power flow control console
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#define ACCESS_ENGINE_EQUIP 11 //APCs, EngiVend/YouTool, engineering equipment lockers
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#define ACCESS_MAINT_TUNNELS 12
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@@ -64,6 +64,8 @@
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#define ACCESS_WEAPONS 66 //Weapon authorization for secbots
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#define ACCESS_NETWORK 67 //NTnet diagnostics/monitoring software
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#define ACCESS_CLONING 68 //Cloning room and clone pod ejection
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#define ACCESS_ENTER_GENPOP 69
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#define ACCESS_LEAVE_GENPOP 70
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//BEGIN CENTCOM ACCESS
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/*Should leave plenty of room if we need to add more access levels.
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@@ -8,6 +8,7 @@
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GLOBAL_VAR_INIT(clockwork_construction_value, 0) //The total value of all structures built by the clockwork cult
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GLOBAL_VAR_INIT(clockwork_vitality, 0) //How much Vitality is stored, total
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GLOBAL_VAR_INIT(clockwork_power, 0) //How many watts of power are globally available to the clockwork cult
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GLOBAL_VAR_INIT(neovgre_exists, 0) //Does neovgre exist?
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GLOBAL_LIST_EMPTY(all_clockwork_objects) //All clockwork items, structures, and effects in existence
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GLOBAL_LIST_EMPTY(all_clockwork_mobs) //All clockwork SERVANTS (not creatures) in existence
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+10
-37
@@ -31,41 +31,14 @@
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#define STIMULUM_RESEARCH_AMOUNT 50
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//Plasma fusion properties
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#define FUSION_ENERGY_THRESHOLD 3e9 //Amount of energy it takes to start a fusion reaction
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#define FUSION_TEMPERATURE_THRESHOLD 1000 //Temperature required to start a fusion reaction
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#define FUSION_MOLE_THRESHOLD 250 //Mole count required (tritium/plasma) to start a fusion reaction
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#define FUSION_RELEASE_ENERGY_SUPER 3e9 //Amount of energy released in the fusion process, super tier
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#define FUSION_RELEASE_ENERGY_HIGH 1e9 //Amount of energy released in the fusion process, high tier
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#define FUSION_RELEASE_ENERGY_MID 5e8 //Amount of energy released in the fusion process, mid tier
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#define FUSION_RELEASE_ENERGY_LOW 1e8 //Amount of energy released in the fusion process, low tier
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#define FUSION_MEDIATION_FACTOR 80 //Arbitrary
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#define FUSION_SUPER_TIER_THRESHOLD 50 //anything above this is super tier
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#define FUSION_HIGH_TIER_THRESHOLD 20 //anything above this and below 50 is high tier
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#define FUSION_MID_TIER_THRESHOLD 5 //anything above this and below 20 is mid tier - below this is low tier, but that doesnt need a define
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#define FUSION_ENERGY_DIVISOR_SUPER 25 //power_ratio is divided by this during energy calculations
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#define FUSION_ENERGY_DIVISOR_HIGH 20
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#define FUSION_ENERGY_DIVISOR_MID 10
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#define FUSION_ENERGY_DIVISOR_LOW 2
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#define FUSION_GAS_CREATION_FACTOR_TRITIUM 0.40 //trit - one gas rather than two, so think about that when calculating stuff - 40% in total
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#define FUSION_GAS_CREATION_FACTOR_STIM 0.05 //stim percentage creation from high tier - 5%, 60% in total with pluox
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#define FUSION_GAS_CREATION_FACTOR_PLUOX 0.55 //pluox percentage creation from high tier - 55%, 60% in total with stim
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#define FUSION_GAS_CREATION_FACTOR_NITRYL 0.20 //nitryl and N2O - 80% in total
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#define FUSION_GAS_CREATION_FACTOR_N2O 0.60 //nitryl and N2O - 80% in total
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#define FUSION_GAS_CREATION_FACTOR_BZ 0.05 //BZ - 5% - 90% in total with CO2
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#define FUSION_GAS_CREATION_FACTOR_CO2 0.85 //CO2 - 85% - 90% in total with BZ
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#define FUSION_MID_TIER_RAD_PROB_FACTOR 2 //probability of radpulse is power ratio * this for whatever tier
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#define FUSION_LOW_TIER_RAD_PROB_FACTOR 5
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#define FUSION_EFFICIENCY_BASE 60 //used in the fusion efficiency calculations
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#define FUSION_EFFICIENCY_DIVISOR 0.6 //ditto
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#define FUSION_RADIATION_FACTOR 15000 //horizontal asymptote
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#define FUSION_RADIATION_CONSTANT 30 //equation is form of (ax) / (x + b), where a = radiation factor and b = radiation constant and x = power ratio (https://www.desmos.com/calculator/4i1f296phl)
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#define FUSION_ZAP_POWER_ASYMPTOTE 50000 //maximum value - not enough to instacrit but it'll still hurt like shit
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#define FUSION_ZAP_POWER_CONSTANT 75 //equation is of from [ax / (x + b)] + c, where a = zap power asymptote, b = zap power constant, c = zap power base and x = power ratio
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#define FUSION_ZAP_POWER_BASE 1000 //(https://www.desmos.com/calculator/vvbmhf4unm)
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#define FUSION_ZAP_RANGE_SUPER 9 //range of the tesla zaps that occur from fusion
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#define FUSION_ZAP_RANGE_HIGH 7
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#define FUSION_ZAP_RANGE_MID 5
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#define FUSION_ZAP_RANGE_LOW 3
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#define FUSION_PARTICLE_FACTOR_SUPER 4 //# of particles fired out is equal to rand(3,6) * this for whatever tier
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#define FUSION_PARTICLE_FACTOR_HIGH 3
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#define FUSION_PARTICLE_FACTOR_MID 2
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#define FUSION_PARTICLE_FACTOR_LOW 1
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#define FUSION_TRITIUM_CONVERSION_COEFFICIENT (1e-10)
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#define INSTABILITY_GAS_POWER_FACTOR 0.003
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#define FUSION_TRITIUM_MOLES_USED 1
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#define PLASMA_BINDING_ENERGY 20000000
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#define TOROID_VOLUME_BREAKEVEN 1000
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#define FUSION_TEMPERATURE_THRESHOLD 10000
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#define PARTICLE_CHANCE_CONSTANT (-20000000)
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#define FUSION_RAD_MAX 2000
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#define FUSION_RAD_COEFFICIENT (-1000)
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#define FUSION_INSTABILITY_ENDOTHERMALITY 2
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