#include #include "gc_client.h" #include "../generated/gc_data.h" static bool add_trail = false; void effect_air_jump(vec2 pos) { particle p; p.set_default(); p.spr = SPRITE_PART_AIRJUMP; p.pos = pos + vec2(-6.0f, 16.0f); p.vel = vec2(0, -200); p.life_span = 0.5f; p.start_size = 48.0f; p.end_size = 0; p.rot = frandom()*pi*2; p.rotspeed = pi*2; p.gravity = 500; p.friction = 0.7f; p.flow_affected = 0.0f; particle_add(PARTGROUP_GENERAL, &p); p.pos = pos + vec2(6.0f, 16.0f); particle_add(PARTGROUP_GENERAL, &p); } void effect_smoketrail(vec2 pos, vec2 vel) { if(!add_trail) return; particle p; p.set_default(); p.spr = SPRITE_PART_SMOKE; p.pos = pos; p.vel = vel + random_dir()*50.0f; p.life_span = 0.5f + frandom()*0.5f; p.start_size = 12.0f + frandom()*8; p.end_size = 0; p.friction = 0.7; p.gravity = frandom()*-500.0f; particle_add(PARTGROUP_PROJECTILE_TRAIL, &p); } void effect_bullettrail(vec2 pos) { if(!add_trail) return; particle p; p.set_default(); p.spr = SPRITE_PART_BALL; p.pos = pos; p.life_span = 0.25f + frandom()*0.25f; p.start_size = 8.0f; p.end_size = 0; p.friction = 0.7; particle_add(PARTGROUP_PROJECTILE_TRAIL, &p); } void effect_playerspawn(vec2 pos) { for(int i = 0; i < 32; i++) { particle p; p.set_default(); p.spr = SPRITE_PART_SHELL; p.pos = pos; p.vel = random_dir() * (pow(frandom(), 3)*600.0f); p.life_span = 0.3f + frandom()*0.3f; p.start_size = 64.0f + frandom()*32; p.end_size = 0; p.rot = frandom()*pi*2; p.rotspeed = frandom(); p.gravity = frandom()*-400.0f; p.friction = 0.7f; p.color = vec4(0xb5/255.0f, 0x50/255.0f, 0xcb/255.0f, 1.0f); particle_add(PARTGROUP_GENERAL, &p); } } void effect_playerdeath(vec2 pos) { for(int i = 0; i < 64; i++) { particle p; p.set_default(); p.spr = SPRITE_PART_SPLAT01 + (rand()%3); p.pos = pos; p.vel = random_dir() * ((frandom()+0.1f)*900.0f); p.life_span = 0.3f + frandom()*0.3f; p.start_size = 24.0f + frandom()*16; p.end_size = 0; p.rot = frandom()*pi*2; p.rotspeed = (frandom()-0.5f) * pi; p.gravity = 800.0f; p.friction = 0.8f; p.color = mix(vec4(0.75f,0.2f,0.2f,0.75f), vec4(0.5f,0.1f,0.1f,0.75f), frandom()); particle_add(PARTGROUP_GENERAL, &p); } } void effect_explosion(vec2 pos) { // add to flow for(int y = -8; y <= 8; y++) for(int x = -8; x <= 8; x++) { if(x == 0 && y == 0) continue; float a = 1 - (length(vec2(x,y)) / length(vec2(8,8))); flow_add(pos+vec2(x,y)*16, normalize(vec2(x,y))*5000.0f*a, 10.0f); } // add the explosion particle p; p.set_default(); p.spr = SPRITE_PART_EXPL01; p.pos = pos; p.life_span = 0.4f; p.start_size = 150.0f; p.end_size = 0; p.rot = frandom()*pi*2; particle_add(PARTGROUP_EXPLOSIONS, &p); // add the smoke for(int i = 0; i < 24; i++) { particle p; p.set_default(); p.spr = SPRITE_PART_SMOKE; p.pos = pos; p.vel = random_dir() * ((1.0f + frandom()*0.2f) * 1000.0f); p.life_span = 0.5f + frandom()*0.4f; p.start_size = 32.0f + frandom()*8; p.end_size = 0; p.gravity = frandom()*-800.0f; p.friction = 0.4f; p.color = mix(vec4(0.75f,0.75f,0.75f,1.0f), vec4(0.5f,0.5f,0.5f,1.0f), frandom()); particle_add(PARTGROUP_GENERAL, &p); } } void effects_update() { static float last_update = 0; if(client_localtime()-last_update > 0.02f) { add_trail = true; last_update = client_localtime(); flow_update(); } else add_trail = false; }