Files
simple/frontend/sw.js
T
catarrh 0fe51491d8 terminal profile: fix the per-byte bit order (b1 = LSB), add the inference notes (v2.2.20)
The spec tables (TS 102 223 5.2) list b1 - the least significant bit - first:
verified from the PDF connector geometry (label row 1 connects to the
rightmost cell) and from Wireshark's packet-gsm_sim.c masks ('Profile
download' = 0x01, 'E-UTRAN bearer' = 0x40, 'HSDPA bearer' = 0x80). The
Configure dialog had it mirrored: TP_BITS[n] was matched with 0x80 >> (n%8)
and displayed as b8..b1, so every label toggled the wrong physical bit
(our own BIP-capable default proved it: byte 12 = 0x1F read as DECLARE
SERVICE.. instead of OPEN/CLOSE/RECEIVE/SEND/GET CHANNEL STATUS).

- tpGetBit/tpSetBit now use 1 << (n%8); the form lists b1 first, matching
  the spec; tpBitLabel names the RFU fallback bit accordingly.
- Tests pin the new mapping and the corrected spot-check indices, and the
  project default is asserted to decode as BIP-capable (OPEN/SEND DATA,
  E-UTRAN, HSDPA).
- docs/TERMINAL_PROFILE.md (in projects/docs): everything gathered about
  inferring device characteristics from a TP - bit order, profile-length era
  bands, headless/modem markers (Annex S ND/NK plus the byte 11/screen-size
  heuristics), radio generation (byte 17 b7/b8 with the 'capability, not
  attach' caveat), standards family (ESN/IMEISV/TIA/CCAT), BIP capability,
  UI paradigm, and a suggested inference model. Corpus: samples/tp_db.csv
  (185 profiles, CC-BY-SA, kept out of the repo).
- Help EN/RU note the bit order and point at the new document; AGENTS
  records the mapping rule and the doc location.
2026-09-19 01:21:06 +03:00

70 lines
1.8 KiB
JavaScript

const CACHE = 'otaman-v187';
const URLS = [
'index.html',
'help.html',
'help-ru.html',
'style.css',
'sim.png',
'favicon.svg',
'icon-192.png',
'icon-512.png',
'manifest.json',
'des-bundle.js',
'aes-bundle.js',
'sim.svg',
'sim_anim.svg',
'nosim.svg',
];
self.addEventListener('install', e => {
e.waitUntil(
caches.open(CACHE).then(c => c.addAll(URLS))
);
self.skipWaiting();
});
self.addEventListener('activate', e => {
e.waitUntil(
caches.keys().then(keys =>
Promise.all(keys.filter(k => k !== CACHE).map(k => caches.delete(k)))
).then(() => clients.claim())
);
});
const OFFLINE_RESPONSE = new Response('Offline: page not cached', {
status: 503,
statusText: 'Offline',
headers: { 'Content-Type': 'text/plain' },
});
self.addEventListener('fetch', e => {
if (!e.request.url.startsWith('http')) return;
const path = new URL(e.request.url).pathname;
if (path.startsWith('/api/')) return; // live data, never cache
if (e.request.method !== 'GET') return;
const isNavigate = e.request.mode === 'navigate';
const isSwScript = path.endsWith('/sw.js');
if (isNavigate) {
e.respondWith(
fetch(e.request).then(res => {
const clone = res.clone();
caches.open(CACHE).then(c => c.put(e.request, clone));
return res;
}).catch(() =>
caches.match(e.request)
.then(r => r || caches.match('index.html'))
.then(r => r || OFFLINE_RESPONSE)
)
);
} else if (isSwScript) {
e.respondWith(fetch(e.request).catch(() => OFFLINE_RESPONSE));
} else {
e.respondWith(
caches.match(e.request).then(r => r || fetch(e.request).then(res => {
const clone = res.clone();
caches.open(CACHE).then(c => c.put(e.request, clone));
return res;
}))
);
}
});