356 lines
9.9 KiB
Plaintext
356 lines
9.9 KiB
Plaintext
/* =========================================================================
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*
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* Nanite Systems Advanced Research Encapsulation System
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*
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* Copyright (c) 2022–2024 Nanite Systems Corporation
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*
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* =========================================================================
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*
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* VAR/I Analyte Hardware Driver
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*
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* This program is covered under the terms of the ARES Software Copyright
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* License, Section 3 (ASCL-iii). It may be redistributed or used as the
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* basis of commercial, closed-source products so long as steps are taken
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* to ensure proper attribution as defined in the text of the license.
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*
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* To see the full text of the ASCL, type 'help license' on any standard
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* ARES distribution, or visit http://nanite-systems.com/ASCL for the
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* current version.
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*
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* DISCLAIMER
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 'AS
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* IS' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
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* TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A
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* PARTICULAR PURPOSE ARE DISCLAIMED.
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*
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* IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY
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* DAMAGES HOWEVER CAUSED ON ANY THEORY OF LIABILITY ARISING IN ANY WAY OUT
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* OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
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* DAMAGE.
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*
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* =========================================================================
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*
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*/
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#include <utils.lsl>
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#include <objects.lsl>
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vector base_c = <0, 0.5, 1>;
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vector c4 = <0, 0.75, 1>;
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#define SCREEN 35
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#define SCREEN_2 36
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#define SCREEN_3 37
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#define SCREEN_CONE 34
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#define TEXT_START 38
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#define TEXT_COUNT 66
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#define PROJECTOR 5
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integer screen_open = FALSE;
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#define X_STEP (1.0/15.0)
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#define Y_STEP (1.0/5.0)
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screen_control(integer open) {
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list acts;
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if(open) {
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vector scale = <0, 5 * X_STEP, 3 * X_STEP>;
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integer pn = TEXT_START;
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vector screen_origin = <-0.0915, 0, -0.0340>;
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#define conex 0.0945
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setp(SCREEN_CONE, [
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PRIM_POS_LOCAL, screen_origin + <conex * 0.5, 0, 0>
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]);
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acts += [
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PRIM_LINK_TARGET, SCREEN,
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PRIM_SIZE, <0.4900000, 0.4900000, 0.2450000>,
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PRIM_POS_LOCAL, screen_origin,
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PRIM_LINK_TARGET, SCREEN_2,
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PRIM_SIZE, <0.24, 0.06, 0.06>,
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PRIM_POS_LOCAL, screen_origin + <-0.05, 0, 0.18>,
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PRIM_LINK_TARGET, SCREEN_3,
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PRIM_SIZE, <0.24, 0.06, 0.06>,
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PRIM_POS_LOCAL, screen_origin + <-0.05, 0, -0.18>,
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PRIM_LINK_TARGET, SCREEN_CONE,
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PRIM_SIZE, <0.4900000, 0.4900000, conex>,
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PRIM_COLOR, ALL_SIDES, c4, 0.0625,
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PRIM_LINK_TARGET, PROJECTOR,
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PRIM_COLOR, ALL_SIDES, c4, 1,
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PRIM_FULLBRIGHT, ALL_SIDES, TRUE,
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PRIM_GLOW, ALL_SIDES, 1.0
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];
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while(pn < TEXT_START + TEXT_COUNT) {
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integer tx = (pn - TEXT_START) % 6;
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integer ty = (pn - TEXT_START) / 6;
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float x = (float)tx - 2.5;
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float dy = 10 - ty;
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float secondary_scale = 1.0;
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if(dy == 9) {
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dy = 8.5;
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secondary_scale = 1.3;
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} else if(dy == 0) {
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dy = -0.25;
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secondary_scale = 1.1;
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} else if(dy == 10) {
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dy = 10.5;
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secondary_scale = 1.1;
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}
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float y = (float)(dy) - 5.5;
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// rotation R = llEuler2Rot(<0, 0.17075 * x * PI_BY_TWO, 0>);
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acts += [
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PRIM_LINK_TARGET, pn,
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// PRIM_DESC, "T" + (string)ty + "," + (string)tx,
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PRIM_SIZE, scale * secondary_scale,
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PRIM_POS_LOCAL, (<-0.025 * secondary_scale * secondary_scale, -x * X_STEP, y * X_STEP / 3.0> * secondary_scale + screen_origin),
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PRIM_ALPHA_MODE, ALL_SIDES, PRIM_ALPHA_MODE_MASK, 128
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// PRIM_ROT_LOCAL, llEuler2Rot(<-PI_BY_TWO, 0, PI_BY_TWO>) * R,
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//PRIM_COLOR, ALL_SIDES, ONES, 1
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];
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++pn;
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if(llGetFreeMemory() < 256) {
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setp(0, acts);
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acts = [];
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}
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}
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setp(0, acts);
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} else {
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integer pn = TEXT_START;
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vector screen_origin = <0.03125, 0, -0.0340>;
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setp(SCREEN_CONE, [
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PRIM_SIZE, ZV,
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PRIM_COLOR, ALL_SIDES, c4, 0
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]);
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acts += [
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PRIM_LINK_TARGET, SCREEN,
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PRIM_SIZE, ZV,
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PRIM_POS_LOCAL, screen_origin,
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PRIM_LINK_TARGET, SCREEN_2,
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PRIM_SIZE, ZV,
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PRIM_POS_LOCAL, screen_origin,
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PRIM_LINK_TARGET, SCREEN_3,
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PRIM_SIZE, ZV,
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PRIM_POS_LOCAL, screen_origin,
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PRIM_LINK_TARGET, SCREEN_CONE,
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PRIM_POS_LOCAL, screen_origin,
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PRIM_LINK_TARGET, PROJECTOR,
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PRIM_COLOR, ALL_SIDES, base_c * power_on, 1,
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PRIM_FULLBRIGHT, ALL_SIDES, power_on,
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PRIM_GLOW, ALL_SIDES, 0.05 * power_on
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];
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while(pn < TEXT_START + TEXT_COUNT) {
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integer tx = (pn - TEXT_START) % 6;
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integer ty = (pn - TEXT_START) / 6;
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float x = (float)tx - 2.5;
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float dy = 10 - ty;
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if(dy == 9)
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dy = 9.25;
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else if(dy == 0)
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dy = -0.25;
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else if(dy == 10)
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dy = 10.5;
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float y = (float)(dy) - 5.5;
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acts += [
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PRIM_LINK_TARGET, pn,
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// PRIM_DESC, "T" + (string)ty + "," + (string)tx,
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PRIM_SIZE, ZV,
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PRIM_POS_LOCAL, screen_origin
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// PRIM_ROT_LOCAL, ZR,
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// PRIM_COLOR, ALL_SIDES, ONES, 1
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];
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++pn;
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if(llGetFreeMemory() < 256) {
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setp(0, acts);
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acts = [];
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}
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}
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setp(0, acts);
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}
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screen_open = open;
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// echo("screen now " + (string)open);
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}
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integer power_on;
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#define original_size 0.026540
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#define STEP 0.1
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#define movement_range 2
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operate_door(integer new_state) {
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integer door_open = !new_state;
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float polarity = 1;
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if(door_open) {
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polarity = -1;
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llTriggerSound("3f075de9-738c-1b1e-ae67-8149a84647ee", 1);
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} else {
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llTriggerSound("0c205a19-ebd7-7195-7e8e-426b1bda48d4", 1);
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}
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llTriggerSound("10722bf0-fdac-2497-3b2c-f6d9e6625f7c", 1);
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vector s = llGetScale();
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float scale = s.x / original_size;
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vector so = ZERO_VECTOR; getv(getp(1, [PRIM_POS_LOCAL]), 0);
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float initial = movement_range * door_open;
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float target = (movement_range * (!door_open)) - initial;
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float i;
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float r;
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#define ioff 0.0073
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#define doff 0.003125
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vector vo = so + <doff, 0, 0>;
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for(i = 0; i <= 1 + STEP; i += STEP) {
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r = i * target + initial;
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list f = [];
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integer p = 3;
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while(p--) {
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rotation r0 = llEuler2Rot(<0, 270, p * 120 + 180> * DEG_TO_RAD);
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rotation r1 = llEuler2Rot(<0, -r, 0>);
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vector v = <0.020, 0, -0.002>;
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f += [
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PRIM_LINK_TARGET, p + 6,
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PRIM_POS_LOCAL, (v * r1 - v) * scale * r0 + vo,
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PRIM_ROT_LOCAL, r1 * r0
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];
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}
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setp(0, f);
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}
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if(door_open)
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llTriggerSound("d24539cd-0dd0-c0c3-99c2-3421fdbf5656", 1);
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else
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llTriggerSound("2227d6ea-fe24-dd2f-fb1e-a31e1531b402", 1);
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door_open = !door_open;
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}
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default {
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state_entry() {
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llSetLinkTextureAnim(SCREEN_CONE, ANIM_ON | LOOP | SMOOTH, ALL_SIDES, 0, 0, 0, 1, 101);
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llSetMemoryLimit(0x8000);
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//screen_control(FALSE);
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screen_control(FALSE);
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linked(LINK_THIS, 0, "menu-end", "");
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// damp(0);
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/* echo(llGetLinkName(HOSE_L));
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echo(llGetLinkName(HOSE_R)); */
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// damp(0.0);
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/*integer pn = llGetNumberOfPrims();
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while(pn--) {
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echo((string)pn + " = " + llGetLinkName(pn));
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}*/
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}
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/*
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touch_start(integer n) {
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while(n--) {
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key toucher = llDetectedKey(n);
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integer pi = llDetectedLinkNumber(n);
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string part = llGetLinkName(pi);
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if((part == "lidl" || part == "lidr") && !power_on) {
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linked(LINK_THIS, 0, "touch-hatch", toucher);
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} else if(part == "text" && power_on) {
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linked(LINK_THIS, pi, "touch-screen", toucher);
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} else if(part == "screen") {
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} else {
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// if "Object" || ("lid" && power_on)
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if((power_on && screen_open) || !power_on) {
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linked(LINK_THIS, 0, "menu-request", toucher);
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} else {
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linked(LINK_THIS, 0, "menu-start", toucher);
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screen_control(TRUE);
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}
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}
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}
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}
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*/
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timer() { // menu expiry
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// echo("(supervisor screen menu expiry)");
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if(screen_open) {
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screen_control(FALSE);
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linked(LINK_THIS, 0, "menu-end", "");
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}
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llSetTimerEvent(0);
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// echo("memory status: " + (string)llGetUsedMemory() + " used; " + (string)llGetFreeMemory() + " virgin");
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}
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link_message(integer s, integer n, string m, key id) {
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if(n == 1) {
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// non-light-bus messages
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if(m == "door 1") {
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operate_door(TRUE);
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} else if(m == "door 0") {
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operate_door(FALSE);
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}
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} else {
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// echo("supervisor screen: " + m);
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if(m == "on") {
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power_on = 1;
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} else if(m == "off") {
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power_on = 0;
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screen_control(FALSE);
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linked(LINK_THIS, 0, "menu-end", "");
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llSetTimerEvent(0);
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// damp(0);
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} else if(m == "menu-open") {
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if(!screen_open)
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screen_control(TRUE);
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llSetTimerEvent(15);
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} else if(m == "menu-close") {
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screen_control(FALSE);
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linked(LINK_THIS, 0, "menu-end", "");
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llSetTimerEvent(0);
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} else {
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list argv = split(m, " ");
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string cmd = gets(argv, 0);
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/*if(cmd == "fan") {
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fan = (float)gets(argv, 1);
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damp(rate * 0.001 + fan * 0.5);
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} else*/
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if(cmd == "color") {
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base_c = (vector)concat(delitem(argv, 0), " ");
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/* if(screen_open)
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screen_control(TRUE); */
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} else if(cmd == "color-4") {
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c4 = (vector)concat(delitem(argv, 0), " ");
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if(screen_open)
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screen_control(TRUE);
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}
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/*else if(cmd == "rate") {
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rate = (float)gets(argv, 1);
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if(rate > 0)
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power_on = 1;
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// damp(rate * 0.001 + fan * 0.5);
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}*/
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}
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}
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}
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}
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