start verlet integration
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ebc1fdf258
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@ -15,6 +15,8 @@ READONLY struct entity _g_entity_nil = {
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.valid = false,
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.local_xform = XFORM_IDENT_NOCAST,
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.cached_global_xform = XFORM_IDENT_NOCAST,
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.cached_global_xform_dirty = false,
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.verlet_xform = XFORM_IDENT_NOCAST,
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.sprite_local_xform = XFORM_IDENT_NOCAST,
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.sprite_tint = COLOR_WHITE
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};
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@ -24,6 +26,7 @@ GLOBAL READONLY struct entity g_entity_default = {
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.local_xform = XFORM_IDENT_NOCAST,
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.cached_global_xform = XFORM_IDENT_NOCAST,
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.cached_global_xform_dirty = true,
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.verlet_xform = XFORM_IDENT_NOCAST,
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.sprite_local_xform = XFORM_IDENT_NOCAST,
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.sprite_tint = COLOR_WHITE
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};
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13
src/entity.h
13
src/entity.h
@ -11,7 +11,7 @@ enum entity_prop {
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ENTITY_PROP_RELEASE_NEXT_TICK,
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ENTITY_PROP_KINEMATIC,
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ENTITY_PROP_PHYSICAL,
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ENTITY_PROP_PLAYER_CONTROLLED,
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ENTITY_PROP_CAMERA,
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@ -103,9 +103,14 @@ struct entity {
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/* ====================================================================== */
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/* Physics */
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/* ENTITY_PROP_KINEMATIC */
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struct v2 acceleration;
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struct v2 velocity;
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/* ENTITY_PROP_PHYSICAL */
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/* Xform of the entity from the previous frame (used to calculate velocity) */
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struct xform verlet_xform;
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/* Calculated */
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struct v2 final_velocity;
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struct v2 final_acceleration;
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/* ====================================================================== */
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/* Sprite */
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86
src/game.c
86
src/game.c
@ -50,8 +50,9 @@ struct game_startup_receipt game_startup(struct mixer_startup_receipt *mixer_sr,
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/* Initialize ticks */
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world_alloc(&G.tick);
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world_alloc(&G.prev_tick);
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G.prev_tick_mutex = sys_mutex_alloc();
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/* FIXME: Make the world struct itself readonly as well */
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arena_set_readonly(&G.prev_tick.entity_store->arena);
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G.prev_tick_mutex = sys_mutex_alloc();
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G.tick.timescale = GAME_TIMESCALE;
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G.game_thread = sys_thread_alloc(&game_thread_entry_point, NULL, STR("[P2] Game thread"));
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@ -124,12 +125,12 @@ INTERNAL void spawn_test_entities(void)
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entity_enable_prop(e, ENTITY_PROP_PLAYER_CONTROLLED);
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e->player_max_speed = 4.f;
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e->player_acceleration = 20.0f;
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e->player_acceleration = 20;
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e->control.focus = V2(0, -1);
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player_ent = e;
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entity_enable_prop(e, ENTITY_PROP_KINEMATIC);
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entity_enable_prop(e, ENTITY_PROP_PHYSICAL);
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}
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/* Weapon */
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@ -201,6 +202,7 @@ INTERNAL void game_update(struct game_cmd_array game_cmds)
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G.tick.dt = max_f64(0.0, (1.0 / GAME_FPS) * G.tick.timescale);
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G.tick.time += G.tick.dt;
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f64 dt = G.tick.dt;
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f64 time = G.tick.time;
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struct entity_store *store = G.tick.entity_store;
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struct entity *root = entity_from_handle(store, store->root);
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@ -284,6 +286,7 @@ INTERNAL void game_update(struct game_cmd_array game_cmds)
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if (atick != 0 || G.tick.tick_id >= atick) {
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entity_enable_prop(ent, ENTITY_PROP_ACTIVE);
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ent->activation_tick = G.tick.tick_id;
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ent->verlet_xform = entity_get_xform(ent);
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++ent->continuity_gen;
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}
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}
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@ -481,14 +484,13 @@ INTERNAL void game_update(struct game_cmd_array game_cmds)
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}
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/* ========================== *
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* Activate triggers
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* Trigger equipped
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* ========================== */
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for (u64 entity_index = 0; entity_index < store->reserved; ++entity_index) {
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struct entity *ent = &store->entities[entity_index];
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if (!(ent->valid && entity_has_prop(ent, ENTITY_PROP_ACTIVE))) continue;
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/* Trigger equipped */
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if (entity_has_prop(ent, ENTITY_PROP_TRIGGERING_EQUIPPED)) {
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struct entity *eq = entity_from_handle(store, ent->equipped);
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if (eq->valid) {
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@ -499,7 +501,7 @@ INTERNAL void game_update(struct game_cmd_array game_cmds)
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}
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/* ========================== *
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* Fire triggers
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* Process triggered entities
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* ========================== */
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for (u64 entity_index = 0; entity_index < store->reserved; ++entity_index) {
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@ -541,15 +543,26 @@ INTERNAL void game_update(struct game_cmd_array game_cmds)
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* Simulate entity physics
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* ========================== */
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/* TODO: Run physics on top-level entities, and then calculate child xforms as part of physics step (rather than caching at each xform_get). */
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for (u64 entity_index = 0; entity_index < store->reserved; ++entity_index) {
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struct entity *ent = &store->entities[entity_index];
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if (!(ent->valid && entity_has_prop(ent, ENTITY_PROP_ACTIVE))) continue;
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if (!entity_has_prop(ent, entity_has_prop(ent, ENTITY_PROP_PHYSICAL))) continue;
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struct xform xf = entity_get_xform(ent);
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/* Calculate velocity from old position */
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struct v2 velocity = V2(0, 0);
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{
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velocity = v2_sub(xf.og, ent->verlet_xform.og);
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velocity = v2_div(velocity, dt);
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ent->verlet_xform = xf;
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}
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/* Player angle */
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if (entity_has_prop(ent, ENTITY_PROP_PLAYER_CONTROLLED)) {
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struct xform xf = entity_get_xform(ent);
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/* Solve for final angle using law of sines */
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f32 final_xf_angle;
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{
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@ -598,36 +611,33 @@ INTERNAL void game_update(struct game_cmd_array game_cmds)
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if (!F32_IS_NAN(final_xf_angle)) {
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const f32 angle_error_allowed = 0.001;
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if (math_fabs(final_xf_angle - v2_angle(xf.bx)) > angle_error_allowed) {
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entity_set_xform(ent, xform_with_rotation(xf, final_xf_angle));
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xf = xform_with_rotation(xf, final_xf_angle);
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}
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}
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}
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/* Player movement */
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if (entity_has_prop(ent, ENTITY_PROP_PLAYER_CONTROLLED)) {
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f32 max_speed = ent->player_max_speed;
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f32 acceleration_rate = ent->player_acceleration;
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acceleration_rate = clamp_f32(acceleration_rate, 0, GAME_FPS); /* Can't integrate acceleration rate higher than FPS */
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struct v2 target_velocity = v2_mul(ent->control.move, max_speed);
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struct v2 target_acceleration = v2_sub(target_velocity, ent->velocity);
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ent->acceleration = v2_mul(target_acceleration, acceleration_rate);
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/* TODO: Accumulate forces to calculate acceleration */
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struct v2 acceleration = V2(0, 0);
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{
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/* Player movement */
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if (entity_has_prop(ent, ENTITY_PROP_PLAYER_CONTROLLED)) {
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f32 max_speed = ent->player_max_speed;
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f32 acceleration_rate = ent->player_acceleration;
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acceleration_rate = clamp_f32(acceleration_rate, 0, GAME_FPS); /* Can't integrate acceleration rate higher than FPS */
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struct v2 target_velocity = v2_mul(ent->control.move, max_speed);
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struct v2 target_acceleration = v2_sub(target_velocity, velocity);
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acceleration = v2_mul(target_acceleration, acceleration_rate);
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}
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}
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/* Integrate acceleration & velocity */
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struct v2 acceleration_tick = v2_mul(acceleration, dt * dt);
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struct v2 velocity_tick = v2_add(v2_mul(velocity, dt), acceleration_tick);
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xf.og = v2_add(xf.og, velocity_tick);
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if (entity_has_prop(ent, ENTITY_PROP_KINEMATIC)) {
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f32 dt = (f32)G.tick.dt;
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struct xform xf = entity_get_xform(ent);
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/* Integrate acceleration to find velocity */
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ent->velocity = v2_add(ent->velocity, v2_mul(ent->acceleration, dt));
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/* Integrate velocity to find position */
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xf.og = v2_add(xf.og, v2_mul(ent->velocity, dt));
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entity_set_xform(ent, xf);
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}
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ent->final_velocity = velocity;
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ent->final_acceleration = acceleration;
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entity_set_xform(ent, xf);
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}
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/* ========================== *
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@ -640,7 +650,7 @@ INTERNAL void game_update(struct game_cmd_array game_cmds)
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/* FIXME: Apply src entity velocity to bullet velocity */
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if (entity_has_prop(ent, ENTITY_PROP_BULLET) && !entity_has_prop(ent, ENTITY_PROP_KINEMATIC)) {
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if (entity_has_prop(ent, ENTITY_PROP_BULLET) && !entity_has_prop(ent, ENTITY_PROP_PHYSICAL)) {
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struct entity *src = entity_from_handle(store, ent->bullet_src);
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struct xform src_xf = entity_get_xform(src);
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@ -648,12 +658,20 @@ INTERNAL void game_update(struct game_cmd_array game_cmds)
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struct v2 vec = xform_basis_mul_v2(src_xf, ent->bullet_src_dir);
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vec = v2_mul(v2_norm(vec), ent->bullet_impulse);
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#if 0
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{
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struct v2 src_velocity = v2_sub(src_xf.og, src->verlet_xform.og);
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src_velocity = v2_div(src_velocity, dt);
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vec = v2_add(vec, src_velocity);
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}
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#endif
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struct xform xf = XFORM_TRS(.t = pos, .r = v2_angle(vec) + PI / 2);
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entity_set_xform(ent, xf);
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ent->velocity = vec;
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ent->verlet_xform = XFORM_POS(v2_sub(pos, v2_mul(vec, dt)));
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entity_enable_prop(ent, ENTITY_PROP_KINEMATIC);
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entity_enable_prop(ent, ENTITY_PROP_PHYSICAL);
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}
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}
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@ -735,7 +753,7 @@ INTERNAL void game_update(struct game_cmd_array game_cmds)
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* Publish tick
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* ========================== */
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/* Update cached global xforms to ensure they're accurate in published tick */
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/* Update cached global xforms to ensure they're accurate in published tick */
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{
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struct temp_arena temp = arena_temp_begin(scratch.arena);
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10
src/user.c
10
src/user.c
@ -387,8 +387,8 @@ INTERNAL void debug_draw_movement(struct entity *ent)
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struct xform xf = entity_get_xform(ent);
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struct v2 pos = xform_mul_v2(G.world_view, xf.og);
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struct v2 vel_ray = xform_basis_mul_v2(G.world_view, ent->velocity);
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struct v2 acc_ray = xform_basis_mul_v2(G.world_view, ent->acceleration);
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struct v2 vel_ray = xform_basis_mul_v2(G.world_view, ent->final_velocity);
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struct v2 acc_ray = xform_basis_mul_v2(G.world_view, ent->final_acceleration);
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draw_solid_arrow_ray(G.viewport_canvas, pos, vel_ray, thickness, arrow_len, color_vel);
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draw_solid_arrow_ray(G.viewport_canvas, pos, acc_ray, thickness, arrow_len, color_acc);
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@ -468,8 +468,10 @@ INTERNAL void user_update(void)
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e->local_xform = xform_lerp(e0->local_xform, e1->local_xform, tick_blend);
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e->cached_global_xform = xform_lerp(e0->cached_global_xform, e1->cached_global_xform, tick_blend);
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e->acceleration = v2_lerp(e0->acceleration, e1->acceleration, tick_blend);
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e->velocity = v2_lerp(e0->velocity, e1->velocity, tick_blend);
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e->verlet_xform = xform_lerp(e0->verlet_xform, e1->verlet_xform, tick_blend);
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e->final_acceleration = v2_lerp(e0->final_acceleration, e1->final_acceleration, tick_blend);
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e->final_velocity = v2_lerp(e0->final_velocity, e1->final_velocity, tick_blend);
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e->player_acceleration = math_lerp(e0->player_acceleration, e1->player_acceleration, tick_blend);
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e->control.move = v2_lerp(e0->control.move, e1->control.move, tick_blend);
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