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193 Commits

Author SHA1 Message Date
7ed3a43a53 added update script and better plane icon clicking 2026-07-06 12:50:39 -04:00
f3ca75decb Make icons easier to click 2026-07-06 12:42:19 -04:00
88e6cc26f5 Loading animation 2026-07-06 12:35:46 -04:00
f5cfd492f3 Popup fixes 2026-07-06 12:31:27 -04:00
1494b43ed5 ADSB fixes 2026-07-06 12:17:09 -04:00
8f5e8edd2e plane spotter debugging 2026-07-05 10:58:13 -04:00
54e86e550c plane spotter debugging 2026-07-05 10:57:41 -04:00
09a08d94aa Fixed image fetching 2026-07-05 10:54:57 -04:00
11012afbe9 cleanup 2026-07-05 02:32:55 -04:00
d4cdb15737 Fixed ship name on popup 2026-07-04 22:48:46 -04:00
b62f7da629 Updated image handling for adsb/ais 2026-07-04 22:40:43 -04:00
43848c4b35 AIS images 2026-07-04 22:36:19 -04:00
a1c714847d AIS images 2026-07-04 22:32:17 -04:00
1038b06a46 AIS images 2026-07-04 22:30:31 -04:00
d5697c4e20 AIS images 2026-07-04 22:28:05 -04:00
7e8ea62f64 AIS images 2026-07-04 22:23:16 -04:00
be40d845bd ADSB images 2026-07-04 22:09:13 -04:00
54c53a5822 ADSB images 2026-07-04 22:04:12 -04:00
0a722edcc6 ADSB offline fixes? 2026-07-04 00:38:58 -04:00
3e44dbb8eb ADSB/AIS image proxy 2026-07-03 18:54:40 -04:00
fec6ee8a48 ADSB/AIS image proxy 2026-07-03 18:52:34 -04:00
1451145408 ADSB/AIS image proxy 2026-07-03 18:48:20 -04:00
4114a0adad Added some padding around the gages 2026-07-03 15:13:00 -04:00
7edd0ab8c4 plane image fallback + seismic calibrations 2026-07-03 14:21:00 -04:00
5bd2e786c2 Fixed seismic sensors 2026-07-03 13:37:09 -04:00
bbcc62af7d Updated adsb + ais popups to include images 2026-07-03 13:15:19 -04:00
91205d8050 Fixed ship guage 2026-07-01 19:36:14 -04:00
ce86fdfcc8 Cache ADSB/AIS calls 2026-06-27 19:39:14 -04:00
3838a73e75 Fixed import 2026-06-27 18:37:35 -04:00
76bd8b30c7 Added frost risk 2026-06-27 18:32:03 -04:00
30c866b599 Added frost risk 2026-06-27 18:31:44 -04:00
9471e904ce Updated meta 2026-06-27 18:08:00 -04:00
8740a1cd69 Fix client build 2026-06-27 18:00:23 -04:00
773d89c378 Fix client build 2026-06-27 17:58:22 -04:00
d398cd3a04 Supress adsb errors 2026-06-27 17:55:51 -04:00
3d9a8f82ce Supress adsb errors 2026-06-27 17:54:27 -04:00
96a86c4d12 OpenMeteo fixes 2026-06-27 17:52:32 -04:00
835856e74c Popup fixes 2026-06-27 17:47:38 -04:00
34c52ffb9f ADSB backfill fix? 2026-06-27 17:28:53 -04:00
946ccd67e1 ADSB backfill fix? 2026-06-27 17:16:59 -04:00
2ccacf563c ADSB backfill fix? 2026-06-27 17:11:00 -04:00
3750ece535 ADSB backfill fix? 2026-06-27 17:09:39 -04:00
93dce28cca ADSB backfill fix? 2026-06-27 17:05:59 -04:00
73f7908aab ADSB backfill fix? 2026-06-27 17:03:24 -04:00
effdd81114 ADSB backfill fix? 2026-06-27 17:03:01 -04:00
6bc4d920f8 ADSB backfill fix? 2026-06-27 16:58:46 -04:00
d9fbe0568d Fix icon 2026-06-27 16:47:05 -04:00
404f3971c4 Fix aircraft backfill 2026-06-27 16:44:16 -04:00
570ed1e749 Fix aircraft backfill 2026-06-27 16:32:27 -04:00
8364918a0c Fresh Aircraft DB 2026-06-27 16:29:09 -04:00
85909e550b Fix aircraft db import 2026-06-27 16:26:34 -04:00
221a200e79 New aircraft DB 2026-06-27 16:23:26 -04:00
bb11b92ec9 ADSB updates 2026-06-27 16:20:15 -04:00
579eed746e ADSB debugging 2026-06-27 16:14:06 -04:00
a4f13d87ab ADSB & Seismic fixes 2026-06-27 16:02:55 -04:00
85b1d66c02 moved seismic graph to the top 2026-06-27 15:49:40 -04:00
d34f3cfa0e better seismic drawings, and adsb enrichment 2026-06-27 15:20:21 -04:00
f3356ff05c Fixed icon 2026-06-27 13:47:38 -04:00
c18a4189af Catch ADSB timeouts 2026-06-27 13:44:33 -04:00
c5477d05ad AIS fixes + daily 2026-06-27 13:38:52 -04:00
bea55ac448 Fixing hourly 2026-06-27 01:33:16 -04:00
765335369c Fixing hourly 2026-06-27 01:28:45 -04:00
3944daa3ed Fixing hourly 2026-06-27 01:26:00 -04:00
e767a08bb5 Fixing hourly 2026-06-27 01:19:43 -04:00
e4c3da05be backfill all data points 2026-06-27 01:08:48 -04:00
44e648ecef backfill all data points 2026-06-27 00:55:17 -04:00
e4042f06d6 backfill all data points 2026-06-27 00:49:17 -04:00
943a6ee085 Fixing 24 hour forecast 2026-06-27 00:30:11 -04:00
225002046b Fixing 24 hour forecast 2026-06-27 00:27:42 -04:00
9e7afbd98c Fixing 24 hour forecast 2026-06-27 00:26:02 -04:00
62d2c28039 Fix data names 2026-06-27 00:17:33 -04:00
74c5e48d8a Switched from influx to victoria metrics (more light weight for pi) 2026-06-27 00:14:10 -04:00
ce332be419 Switched from influx to victoria metrics (more light weight for pi) 2026-06-27 00:04:22 -04:00
36eda62e7f Switched from influx to victoria metrics (more light weight for pi) 2026-06-26 23:59:56 -04:00
6eefd1b86b Switched from influx to victoria metrics (more light weight for pi) 2026-06-26 23:58:32 -04:00
0c0ebfd20b Switched from influx to victoria metrics (more light weight for pi) 2026-06-26 22:40:27 -04:00
74ddb37446 Switched from influx to victoria metrics (more light weight for pi) 2026-06-26 21:52:27 -04:00
73f1453daf Icon caching 2026-06-26 20:52:54 -04:00
aeffa30417 updated graph 2026-06-26 01:42:16 -04:00
74a8018f01 updated graph 2026-06-26 01:41:27 -04:00
efd08cbabe Graph fixes 2026-06-26 01:31:19 -04:00
738f13e745 Graph fixes 2026-06-26 01:13:52 -04:00
216420ad80 Fixed daily and graphs 2026-06-26 01:07:25 -04:00
5947b61b8f hourly endpoint fix? 2026-06-26 00:54:29 -04:00
06be7c0b4f hourly endpoint fix? 2026-06-26 00:32:39 -04:00
70701483f5 hourly endpoint fix? 2026-06-26 00:29:30 -04:00
1ee386949c Cleanup 2026-06-26 00:05:28 -04:00
9b7b7f49a7 Cleanup adsb history after 1 hour 2026-06-25 21:51:16 -04:00
80b9b1bfcc Removed old adsb shapes call 2026-06-25 21:46:13 -04:00
b87bcbabb7 Build aircraft shapes 2026-06-25 21:43:56 -04:00
f6f8a252dc Merge branch 'master' of git.zakscode.com:ztimson/weather-station
# Conflicts:
#	server/src/ais.mjs
2026-06-25 20:52:51 -04:00
a73c5ff95b AIS fix 2026-06-25 20:52:12 -04:00
14d9a43c32 AIS 2026-06-25 20:34:02 -04:00
5f462700ad fix 2026-06-25 19:27:19 -04:00
0c2857306f AIS updates 2026-06-25 18:05:31 -04:00
159bf62876 ADSB registry lookup 2026-06-25 17:27:09 -04:00
a38098e3b7 ADSB updates 2026-06-25 17:11:18 -04:00
29ccc7aba9 AIS, ADSB, and Range 2026-06-25 15:54:51 -04:00
a2441fdb37 AIS, ADSB, and Range 2026-06-25 15:02:56 -04:00
40b6a5488f aircraft updates 2026-06-25 13:36:39 -04:00
1f5ae434b3 ADSB enrichment 2026-06-25 11:57:58 -04:00
5c51dd52de ADSB enrichment 2026-06-25 11:37:34 -04:00
1b65a8619c ADSB enrichment 2026-06-25 11:13:47 -04:00
f2afc09fac ADSB enrichment 2026-06-25 11:12:40 -04:00
86cdaab197 ADSB enrichment 2026-06-25 11:09:06 -04:00
3887654211 ADSB enrichment 2026-06-25 10:59:55 -04:00
7c08d2ab60 Always update adsb data 2026-06-25 10:32:44 -04:00
5860d02434 Fixing adsb enrichment 2026-06-25 10:30:44 -04:00
d3ad4e15c6 Fixed server 2026-06-25 10:27:12 -04:00
bd073a4613 Cleanup 2026-06-25 10:21:55 -04:00
257232f6f1 ADSB updates 2026-06-25 10:16:44 -04:00
afb530a999 ADSB updates 2026-06-25 10:15:23 -04:00
19d2dd2d9d ADSB updates 2026-06-25 09:13:16 -04:00
e91876b7b7 Fixed rain radar and aircraft path 2026-06-25 00:30:10 -04:00
1d3a3be225 Installed utilities 2026-06-25 00:04:50 -04:00
84707b2777 Aurora update 2026-06-25 00:01:50 -04:00
b8ffc20360 Fixed up sensor cards 2026-06-24 23:44:05 -04:00
08319ce277 Fixed up sensor cards 2026-06-24 23:32:45 -04:00
8bece21ddb Use local time 2026-06-24 20:43:13 -04:00
60f76b06d4 Use local time 2026-06-24 20:31:58 -04:00
d6e799e956 Fix error checking 2026-06-24 19:49:27 -04:00
ff44b7fed5 Fix icons 2026-06-24 19:47:03 -04:00
82c10d9278 Forecast fixes 2026-06-24 19:18:35 -04:00
fdb752073f Fixes 2026-06-24 17:18:49 -04:00
704424530b Fixes 2026-06-24 17:16:53 -04:00
968cd1a669 Fixes 2026-06-24 17:05:10 -04:00
1d018db749 Fixes 2026-06-24 17:00:21 -04:00
db29f0fdec Summarize with day time only 2026-06-24 16:37:31 -04:00
83c2e655f6 Fixing current forecast 2026-06-24 16:36:20 -04:00
d20ef97cf1 Fixing current forecast 2026-06-24 16:33:43 -04:00
f377d0b1c8 Fixing current forecast 2026-06-24 16:31:07 -04:00
c783a79414 Fixing current forecast 2026-06-24 16:28:07 -04:00
cab3cec0e4 Fixing current forecast 2026-06-24 16:27:07 -04:00
fedd7ef5e2 Fixing current forecast 2026-06-24 16:25:49 -04:00
caf721db6e Fixing current forecast 2026-06-24 16:25:10 -04:00
64bc62b511 Added daytime property 2026-06-24 16:19:48 -04:00
5e044dfd68 Added daytime property 2026-06-24 16:19:14 -04:00
fabf536db4 Added daytime property 2026-06-24 16:16:12 -04:00
e97dffd874 Added daytime property 2026-06-24 16:15:30 -04:00
fa66a63d63 Added daytime property 2026-06-24 16:15:04 -04:00
50ba52a6d3 Added daytime property 2026-06-24 16:12:05 -04:00
4c36062b73 Added daytime property 2026-06-24 16:11:00 -04:00
fd534ede69 Added daytime property 2026-06-24 16:08:44 -04:00
3620c446d0 Added daytime property 2026-06-24 16:05:17 -04:00
1c0416c668 Added daytime property 2026-06-24 16:04:17 -04:00
122bbab555 Added daytime property 2026-06-24 15:59:35 -04:00
a162ecf692 Added daytime property 2026-06-24 15:58:11 -04:00
1f50ba606b Added daytime property 2026-06-24 15:55:26 -04:00
3b355d89cf Added daytime property 2026-06-24 15:52:41 -04:00
9e901f8266 Added daytime property 2026-06-24 15:51:46 -04:00
a5b4f7da45 Added daytime property 2026-06-24 15:40:48 -04:00
debf68d795 Added daytime property 2026-06-24 15:37:43 -04:00
d4266baf25 Added daytime property 2026-06-24 15:36:18 -04:00
28f69ec1e4 Added daytime property 2026-06-24 15:32:46 -04:00
694b9bad24 Added daytime property 2026-06-24 15:31:00 -04:00
367c35461b Updated forecast summary 2026-06-24 15:18:12 -04:00
56cbfb3967 Updated forecast summary 2026-06-24 15:16:33 -04:00
a69867406b Updated forecast summary 2026-06-24 15:10:30 -04:00
5794eca9f1 Fixed paths 2026-06-24 14:58:24 -04:00
7dfd5e6e1f Fixed paths 2026-06-24 13:37:58 -04:00
f5664fe542 Fixed paths 2026-06-24 13:36:51 -04:00
22c391a41c Fixed paths 2026-06-24 13:35:33 -04:00
04d5b44f87 24h forecasting 2026-06-24 13:33:49 -04:00
5f71bd182a 24h forecasting 2026-06-24 13:33:08 -04:00
9a9fde7caa 24h forecasting 2026-06-24 13:31:58 -04:00
88f86646af 24h forecasting 2026-06-24 13:30:38 -04:00
7dca2a200b 24h forecasting 2026-06-24 13:27:20 -04:00
7418616a5b 24h forecasting 2026-06-24 13:19:05 -04:00
2c137348d8 24h forecasting 2026-06-24 13:17:36 -04:00
8c6e7cdbcd 24h forecasting 2026-06-24 13:16:21 -04:00
1f9cdda59f 24h forecasting 2026-06-24 13:15:37 -04:00
de3be07eea 24h forecasting 2026-06-24 13:14:13 -04:00
89f3f156ce 24h forecasting 2026-06-24 13:13:39 -04:00
d540ab5efb Local forecasting 2026-06-24 13:06:19 -04:00
25c6bcce7b More daily forecasting 2026-06-24 12:27:35 -04:00
9e8f1a7c12 Fixed forecasting days 2026-06-24 12:12:50 -04:00
9ac343d9aa Debugging 2026-06-24 12:02:10 -04:00
f3f1c516e0 Debugging 2026-06-24 11:57:48 -04:00
ab9521dd91 Daily forecast fix? 2026-06-24 11:54:19 -04:00
6f35c647c2 Daily forecast fix? 2026-06-24 11:34:29 -04:00
2476675493 Daily forecast fix? 2026-06-24 11:29:02 -04:00
3cf62b8e11 Daily forecast fix? 2026-06-24 11:25:38 -04:00
8019dabe2a Daily fixes and loading animations 2026-06-24 11:08:23 -04:00
811780125e UVI & AQ Label fixes 2026-06-24 10:23:51 -04:00
fa79835572 AQ Fixes 2026-06-24 10:16:33 -04:00
97cf840847 + UV index label
* AQ fixes
+ Sun/moon distance
+ moon position
* moon illumination
2026-06-24 10:12:58 -04:00
67c46a935e - updated temperature calibration 2026-06-24 09:53:45 -04:00
87d4870235 - updated temperature calibration 2026-06-24 09:52:19 -04:00
a9f0bd6c9a - updated temperature calibration 2026-06-24 09:47:58 -04:00
99467ed321 - Calibrate temperature 2026-06-24 09:46:50 -04:00
7c27f74614 - Calibrate temperature
- Removed radar timeline
2026-06-24 09:39:27 -04:00
7e36ad5ce0 - Calibrate temperature
- Removed radar timeline
2026-06-24 09:37:17 -04:00
928ff620d2 - Calibrate temperature
- Removed radar timeline
2026-06-24 09:37:03 -04:00
75 changed files with 7856 additions and 3100 deletions

5
.env
View File

@@ -1,4 +1,5 @@
EMAIL=
ALTITUDE=
LATITUDE= LATITUDE=
LONGITUDE= LONGITUDE=
ALTITUDE= TZ=
INFLUX_TOKEN=

2
.gitignore vendored
View File

@@ -4,6 +4,8 @@
dist dist
node_modules node_modules
server/data/*
server/public/*
sensors/bin sensors/bin
sensors/include sensors/include

0
README.md Normal file
View File

View File

@@ -2,11 +2,29 @@
<html lang=""> <html lang="">
<head> <head>
<title>Weather Station</title> <title>Weather Station</title>
<link rel="icon" href="/favicon.png">
<link rel="manifest" href="/manifest.json">
<meta charset="UTF-8"> <meta charset="UTF-8">
<meta name="viewport" content="width=device-width, initial-scale=1.0"> <meta name="viewport" content="width=device-width, initial-scale=1, viewport-fit=cover">
<meta name="theme-color" content="#0f172a">
<meta name="description" content="Local Weather & Forecasting">
<meta name="apple-mobile-web-app-capable" content="yes">
<meta name="apple-mobile-web-app-status-bar-style" content="black-translucent">
<meta name="apple-mobile-web-app-title" content="Weather Station">
<link rel="icon" href="/favicon.png"> <!-- OpenGraph -->
<meta property="og:type" content="website">
<meta property="og:title" content="Weather Station">
<meta property="og:description" content="Local Weather & Forecasting">
<meta property="og:image" content="/favicon.png">
<meta property="og:url" content="./">
<!-- Twitter/X card -->
<meta name="twitter:card" content="summary">
<meta name="twitter:title" content="Weather Station">
<meta name="twitter:description" content="Local Weather & Forecasting">
<meta name="twitter:image" content="/favicon.png">
</head> </head>
<body> <body>
<div id="app"></div> <div id="app"></div>

101
client/package-lock.json generated
View File

@@ -10,6 +10,7 @@
"dependencies": { "dependencies": {
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}, },
"devDependencies": { "devDependencies": {
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"dev": true, "dev": true,
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"license": "ISC",
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"quickselect": "^3.0.0",
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"bin": {
"gl-style-format": "dist/gl-style-format.mjs",
"gl-style-migrate": "dist/gl-style-migrate.mjs",
"gl-style-validate": "dist/gl-style-validate.mjs"
}
},
"node_modules/@napi-rs/wasm-runtime": { "node_modules/@napi-rs/wasm-runtime": {
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@@ -950,7 +985,6 @@
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"dev": true,
"license": "MIT" "license": "MIT"
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"node_modules/@polka/url": { "node_modules/@polka/url": {
@@ -1274,7 +1308,6 @@
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"dev": true,
"license": "MIT" "license": "MIT"
}, },
"node_modules/@vitejs/plugin-vue": { "node_modules/@vitejs/plugin-vue": {
@@ -1558,7 +1591,6 @@
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"dev": true,
"license": "MIT", "license": "MIT",
"dependencies": { "dependencies": {
"reference-spec-reader": "^0.2.0", "reference-spec-reader": "^0.2.0",
@@ -1868,7 +1900,6 @@
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"source": "osm",
"source-layer": "water",
"paint": { "fill-color": "#1e2832" }
},
{
"id": "landcover-grass",
"type": "fill",
"source": "osm",
"source-layer": "landcover",
"filter": ["==", "class", "grass"],
"paint": { "fill-color": "#2a3028", "fill-opacity": 0.6 }
},
{
"id": "landcover-wood",
"type": "fill",
"source": "osm",
"source-layer": "landcover",
"filter": ["==", "class", "wood"],
"paint": { "fill-color": "#262e24", "fill-opacity": 0.5 }
},
{
"id": "landuse-park",
"type": "fill",
"source": "osm",
"source-layer": "landuse",
"filter": ["==", "class", "park"],
"paint": { "fill-color": "#283028", "fill-opacity": 0.7 }
},
{
"id": "landuse-cemetery",
"type": "fill",
"source": "osm",
"source-layer": "landuse",
"filter": ["==", "class", "cemetery"],
"paint": { "fill-color": "#2c2e2a", "fill-opacity": 0.7 }
},
{
"id": "landuse-hospital",
"type": "fill",
"source": "osm",
"source-layer": "landuse",
"filter": ["==", "class", "hospital"],
"paint": { "fill-color": "#322828", "fill-opacity": 0.6 }
},
{
"id": "landuse-school",
"type": "fill",
"source": "osm",
"source-layer": "landuse",
"filter": ["==", "class", "school"],
"paint": { "fill-color": "#302c28", "fill-opacity": 0.6 }
},
{
"id": "building",
"type": "fill",
"source": "osm",
"source-layer": "building",
"minzoom": 13,
"paint": {
"fill-color": "#333336",
"fill-opacity": { "stops": [[13, 0.3], [16, 0.6]] }
}
},
{
"id": "boundary-country",
"type": "line",
"source": "osm",
"source-layer": "boundary",
"filter": ["==", "admin_level", 2],
"paint": {
"line-color": "#4a4448",
"line-width": { "stops": [[2, 0.5], [6, 1.5], [10, 2.5]] }
}
},
{
"id": "boundary-state",
"type": "line",
"source": "osm",
"source-layer": "boundary",
"filter": ["==", "admin_level", 4],
"minzoom": 4,
"paint": {
"line-color": "#3e3a3c",
"line-width": { "stops": [[4, 0.3], [8, 1]] },
"line-dasharray": [3, 2]
}
},
{
"id": "waterway",
"type": "line",
"source": "osm",
"source-layer": "waterway",
"paint": {
"line-color": "#1e2832",
"line-width": { "stops": [[8, 0.5], [14, 2]] }
}
},
{
"id": "tunnel",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "brunnel", "tunnel"], ["in", "class", "motorway", "trunk", "primary", "secondary", "tertiary"]],
"paint": {
"line-color": "#2e2e30",
"line-width": { "stops": [[8, 0.5], [14, 4], [18, 10]] },
"line-dasharray": [3, 3]
}
},
{
"id": "road-motorway",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "class", "motorway"], ["!=", "brunnel", "tunnel"]],
"paint": {
"line-color": "#4a4240",
"line-width": { "stops": [[5, 0.5], [10, 2], [14, 5], [18, 12]] }
}
},
{
"id": "road-trunk",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "class", "trunk"], ["!=", "brunnel", "tunnel"]],
"paint": {
"line-color": "#443e3c",
"line-width": { "stops": [[6, 0.4], [10, 1.5], [14, 4], [18, 10]] }
}
},
{
"id": "road-primary",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "class", "primary"], ["!=", "brunnel", "tunnel"]],
"paint": {
"line-color": "#3e3a38",
"line-width": { "stops": [[7, 0.3], [10, 1], [14, 3.5], [18, 9]] }
}
},
{
"id": "road-secondary",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "class", "secondary"], ["!=", "brunnel", "tunnel"]],
"paint": {
"line-color": "#383636",
"line-width": { "stops": [[8, 0.3], [12, 1], [14, 3], [18, 7]] }
}
},
{
"id": "road-tertiary",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "class", "tertiary"], ["!=", "brunnel", "tunnel"]],
"paint": {
"line-color": "#353334",
"line-width": { "stops": [[9, 0.2], [14, 2], [18, 5]] }
}
},
{
"id": "road-minor",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["in", "class", "minor", "service"], ["!=", "brunnel", "tunnel"]],
"minzoom": 12,
"paint": {
"line-color": "#333234",
"line-width": { "stops": [[12, 0.3], [16, 2], [18, 4]] }
}
},
{
"id": "road-path",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["==", "class", "path"],
"minzoom": 14,
"paint": {
"line-color": "#3a3638",
"line-width": 1,
"line-dasharray": [4, 2]
}
},
{
"id": "rail",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["==", "class", "rail"],
"minzoom": 10,
"paint": {
"line-color": "#3c3a3e",
"line-width": { "stops": [[10, 0.5], [14, 1.5]] },
"line-dasharray": [5, 5]
}
},
{
"id": "bridge",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "brunnel", "bridge"], ["in", "class", "motorway", "trunk", "primary", "secondary", "tertiary"]],
"paint": {
"line-color": "#403c3a",
"line-width": { "stops": [[8, 0.5], [14, 4], [18, 10]] }
}
},
{
"id": "aero-runway",
"type": "line",
"source": "osm",
"source-layer": "aeroway",
"filter": ["==", "class", "runway"],
"minzoom": 11,
"paint": {
"line-color": "#3a383c",
"line-width": { "stops": [[11, 2], [16, 12]] }
}
},
{
"id": "aero-taxiway",
"type": "line",
"source": "osm",
"source-layer": "aeroway",
"filter": ["==", "class", "taxiway"],
"minzoom": 12,
"paint": {
"line-color": "#3a383c",
"line-width": { "stops": [[12, 0.5], [16, 4]] }
}
},
{
"id": "label-water",
"type": "symbol",
"source": "osm",
"source-layer": "water_name",
"layout": {
"text-field": "{name}",
"text-font": ["Noto Sans Regular"],
"text-size": { "stops": [[3, 10], [8, 14]] },
"text-letter-spacing": 0.1
},
"paint": {
"text-color": "#4a6068",
"text-halo-color": "#2b2b2e",
"text-halo-width": 1.5
}
},
{
"id": "label-road",
"type": "symbol",
"source": "osm",
"source-layer": "transportation_name",
"minzoom": 13,
"layout": {
"text-field": "{name}",
"text-font": ["Noto Sans Regular"],
"text-size": { "stops": [[13, 10], [16, 13]] },
"symbol-placement": "line",
"text-rotation-alignment": "map"
},
"paint": {
"text-color": "#6a6268",
"text-halo-color": "#2b2b2e",
"text-halo-width": 1.5
}
},
{
"id": "label-place-city",
"type": "symbol",
"source": "osm",
"source-layer": "place",
"filter": ["==", "class", "city"],
"layout": {
"text-field": "{name}",
"text-font": ["Noto Sans Regular"],
"text-size": { "stops": [[4, 11], [8, 16], [12, 20]] },
"text-anchor": "center"
},
"paint": {
"text-color": "#a0969a",
"text-halo-color": "#2b2b2e",
"text-halo-width": 2
}
},
{
"id": "label-place-town",
"type": "symbol",
"source": "osm",
"source-layer": "place",
"filter": ["==", "class", "town"],
"minzoom": 7,
"layout": {
"text-field": "{name}",
"text-font": ["Noto Sans Regular"],
"text-size": { "stops": [[7, 10], [12, 15]] },
"text-anchor": "center"
},
"paint": {
"text-color": "#8a8088",
"text-halo-color": "#2b2b2e",
"text-halo-width": 1.5
}
},
{
"id": "label-place-village",
"type": "symbol",
"source": "osm",
"source-layer": "place",
"filter": ["==", "class", "village"],
"minzoom": 10,
"layout": {
"text-field": "{name}",
"text-font": ["Noto Sans Regular"],
"text-size": { "stops": [[10, 9], [14, 13]] },
"text-anchor": "center"
},
"paint": {
"text-color": "#787078",
"text-halo-color": "#2b2b2e",
"text-halo-width": 1.5
}
},
{
"id": "label-country",
"type": "symbol",
"source": "osm",
"source-layer": "place",
"filter": ["==", "class", "country"],
"layout": {
"text-field": "{name}",
"text-font": ["Noto Sans Regular"],
"text-size": { "stops": [[2, 10], [5, 16]] },
"text-transform": "uppercase",
"text-letter-spacing": 0.15
},
"paint": {
"text-color": "#908690",
"text-halo-color": "#2b2b2e",
"text-halo-width": 2
}
}
]
}

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@@ -0,0 +1,370 @@
{
"version": 8,
"name": "Smooth Light",
"sources": {
"osm": {
"type": "vector",
"tiles": ["https://tiles.zakscode.com/data/osm/{z}/{x}/{y}.pbf"],
"maxzoom": 14
}
},
"glyphs": "http://localhost:8080/fonts/{fontstack}/{range}.pbf",
"layers": [
{
"id": "background",
"type": "background",
"paint": { "background-color": "#f2efe9" }
},
{
"id": "water",
"type": "fill",
"source": "osm",
"source-layer": "water",
"paint": { "fill-color": "#c8d7d5" }
},
{
"id": "landcover-grass",
"type": "fill",
"source": "osm",
"source-layer": "landcover",
"filter": ["==", "class", "grass"],
"paint": { "fill-color": "#e0e8d8", "fill-opacity": 0.6 }
},
{
"id": "landcover-wood",
"type": "fill",
"source": "osm",
"source-layer": "landcover",
"filter": ["==", "class", "wood"],
"paint": { "fill-color": "#d4dfc4", "fill-opacity": 0.5 }
},
{
"id": "landuse-park",
"type": "fill",
"source": "osm",
"source-layer": "landuse",
"filter": ["==", "class", "park"],
"paint": { "fill-color": "#dce8d0", "fill-opacity": 0.7 }
},
{
"id": "landuse-cemetery",
"type": "fill",
"source": "osm",
"source-layer": "landuse",
"filter": ["==", "class", "cemetery"],
"paint": { "fill-color": "#e0e4dd", "fill-opacity": 0.7 }
},
{
"id": "landuse-hospital",
"type": "fill",
"source": "osm",
"source-layer": "landuse",
"filter": ["==", "class", "hospital"],
"paint": { "fill-color": "#f0e4e4", "fill-opacity": 0.6 }
},
{
"id": "landuse-school",
"type": "fill",
"source": "osm",
"source-layer": "landuse",
"filter": ["==", "class", "school"],
"paint": { "fill-color": "#eae0d8", "fill-opacity": 0.6 }
},
{
"id": "building",
"type": "fill",
"source": "osm",
"source-layer": "building",
"minzoom": 13,
"paint": {
"fill-color": "#dfdbd7",
"fill-opacity": { "stops": [[13, 0.3], [16, 0.6]] }
}
},
{
"id": "boundary-country",
"type": "line",
"source": "osm",
"source-layer": "boundary",
"filter": ["==", "admin_level", 2],
"paint": {
"line-color": "#c4b8aa",
"line-width": { "stops": [[2, 0.5], [6, 1.5], [10, 2.5]] }
}
},
{
"id": "boundary-state",
"type": "line",
"source": "osm",
"source-layer": "boundary",
"filter": ["==", "admin_level", 4],
"minzoom": 4,
"paint": {
"line-color": "#d0c8bc",
"line-width": { "stops": [[4, 0.3], [8, 1]] },
"line-dasharray": [3, 2]
}
},
{
"id": "waterway",
"type": "line",
"source": "osm",
"source-layer": "waterway",
"paint": {
"line-color": "#c8d7d5",
"line-width": { "stops": [[8, 0.5], [14, 2]] }
}
},
{
"id": "tunnel",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "brunnel", "tunnel"], ["in", "class", "motorway", "trunk", "primary", "secondary", "tertiary"]],
"paint": {
"line-color": "#e8e4e0",
"line-width": { "stops": [[8, 0.5], [14, 4], [18, 10]] },
"line-dasharray": [3, 3]
}
},
{
"id": "road-motorway",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "class", "motorway"], ["!=", "brunnel", "tunnel"]],
"paint": {
"line-color": "#e0d0b8",
"line-width": { "stops": [[5, 0.5], [10, 2], [14, 5], [18, 12]] }
}
},
{
"id": "road-trunk",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "class", "trunk"], ["!=", "brunnel", "tunnel"]],
"paint": {
"line-color": "#e4d8c4",
"line-width": { "stops": [[6, 0.4], [10, 1.5], [14, 4], [18, 10]] }
}
},
{
"id": "road-primary",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "class", "primary"], ["!=", "brunnel", "tunnel"]],
"paint": {
"line-color": "#e8dfd4",
"line-width": { "stops": [[7, 0.3], [10, 1], [14, 3.5], [18, 9]] }
}
},
{
"id": "road-secondary",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "class", "secondary"], ["!=", "brunnel", "tunnel"]],
"paint": {
"line-color": "#ece6dc",
"line-width": { "stops": [[8, 0.3], [12, 1], [14, 3], [18, 7]] }
}
},
{
"id": "road-tertiary",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "class", "tertiary"], ["!=", "brunnel", "tunnel"]],
"paint": {
"line-color": "#f0ebe4",
"line-width": { "stops": [[9, 0.2], [14, 2], [18, 5]] }
}
},
{
"id": "road-minor",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["in", "class", "minor", "service"], ["!=", "brunnel", "tunnel"]],
"minzoom": 12,
"paint": {
"line-color": "#f0ebe4",
"line-width": { "stops": [[12, 0.3], [16, 2], [18, 4]] }
}
},
{
"id": "road-path",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["==", "class", "path"],
"minzoom": 14,
"paint": {
"line-color": "#d8d0c4",
"line-width": 1,
"line-dasharray": [4, 2]
}
},
{
"id": "rail",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["==", "class", "rail"],
"minzoom": 10,
"paint": {
"line-color": "#d0ccc4",
"line-width": { "stops": [[10, 0.5], [14, 1.5]] },
"line-dasharray": [5, 5]
}
},
{
"id": "bridge",
"type": "line",
"source": "osm",
"source-layer": "transportation",
"filter": ["all", ["==", "brunnel", "bridge"], ["in", "class", "motorway", "trunk", "primary", "secondary", "tertiary"]],
"paint": {
"line-color": "#e0d8cc",
"line-width": { "stops": [[8, 0.5], [14, 4], [18, 10]] }
}
},
{
"id": "aero-runway",
"type": "line",
"source": "osm",
"source-layer": "aeroway",
"filter": ["==", "class", "runway"],
"minzoom": 11,
"paint": {
"line-color": "#d8d4cc",
"line-width": { "stops": [[11, 2], [16, 12]] }
}
},
{
"id": "aero-taxiway",
"type": "line",
"source": "osm",
"source-layer": "aeroway",
"filter": ["==", "class", "taxiway"],
"minzoom": 12,
"paint": {
"line-color": "#d8d4cc",
"line-width": { "stops": [[12, 0.5], [16, 4]] }
}
},
{
"id": "label-water",
"type": "symbol",
"source": "osm",
"source-layer": "water_name",
"layout": {
"text-field": "{name}",
"text-font": ["Noto Sans Regular"],
"text-size": { "stops": [[3, 10], [8, 14]] },
"text-letter-spacing": 0.1
},
"paint": {
"text-color": "#8aacaa",
"text-halo-color": "#f2efe9",
"text-halo-width": 1.5
}
},
{
"id": "label-road",
"type": "symbol",
"source": "osm",
"source-layer": "transportation_name",
"minzoom": 13,
"layout": {
"text-field": "{name}",
"text-font": ["Noto Sans Regular"],
"text-size": { "stops": [[13, 10], [16, 13]] },
"symbol-placement": "line",
"text-rotation-alignment": "map"
},
"paint": {
"text-color": "#9c9284",
"text-halo-color": "#f2efe9",
"text-halo-width": 1.5
}
},
{
"id": "label-place-city",
"type": "symbol",
"source": "osm",
"source-layer": "place",
"filter": ["==", "class", "city"],
"layout": {
"text-field": "{name}",
"text-font": ["Noto Sans Regular"],
"text-size": { "stops": [[4, 11], [8, 16], [12, 20]] },
"text-anchor": "center"
},
"paint": {
"text-color": "#6b6156",
"text-halo-color": "#f2efe9",
"text-halo-width": 2
}
},
{
"id": "label-place-town",
"type": "symbol",
"source": "osm",
"source-layer": "place",
"filter": ["==", "class", "town"],
"minzoom": 7,
"layout": {
"text-field": "{name}",
"text-font": ["Noto Sans Regular"],
"text-size": { "stops": [[7, 10], [12, 15]] },
"text-anchor": "center"
},
"paint": {
"text-color": "#7a7068",
"text-halo-color": "#f2efe9",
"text-halo-width": 1.5
}
},
{
"id": "label-place-village",
"type": "symbol",
"source": "osm",
"source-layer": "place",
"filter": ["==", "class", "village"],
"minzoom": 10,
"layout": {
"text-field": "{name}",
"text-font": ["Noto Sans Regular"],
"text-size": { "stops": [[10, 9], [14, 13]] },
"text-anchor": "center"
},
"paint": {
"text-color": "#8a8078",
"text-halo-color": "#f2efe9",
"text-halo-width": 1.5
}
},
{
"id": "label-country",
"type": "symbol",
"source": "osm",
"source-layer": "place",
"filter": ["==", "class", "country"],
"layout": {
"text-field": "{name}",
"text-font": ["Noto Sans Regular"],
"text-size": { "stops": [[2, 10], [5, 16]] },
"text-transform": "uppercase",
"text-letter-spacing": 0.15
},
"paint": {
"text-color": "#8a7e72",
"text-halo-color": "#f2efe9",
"text-halo-width": 2
}
}
]
}

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@@ -0,0 +1,14 @@
{
"name": "Weather Station",
"short_name": "Weather",
"description": "Local Weather & Forecasting",
"start_url": "/",
"display": "standalone",
"background_color": "#0f172a",
"theme_color": "#0f172a",
"orientation": "any",
"icons": [
{ "src": "/favicon.png", "sizes": "512x512", "type": "image/png" }
],
"categories": ["weather", "utilities"]
}

View File

@@ -1,48 +1,12 @@
<script setup lang="ts"> <script setup lang="ts">
import { ref } from 'vue' import { ref } from 'vue'
import Dashboard from './views/Dashboard.vue' import Dashboard from './views/Dashboard.vue'
import '@ztimson/css-utils/dist/css-utils.min.css';
const dark = ref(window.matchMedia('(prefers-color-scheme: dark)').matches) const dark = ref(window.matchMedia('(prefers-color-scheme: dark)').matches)
function toggleDark() { dark.value = !dark.value } function toggleDark() { dark.value = !dark.value }
</script> </script>
<style lang="scss">
:root {
--bg: #ffffff;
--surface: #f8fafc;
--border: #e2e8f0;
--text: #0f172a;
--text-muted: #64748b;
--hover: #f1f5f9;
--accent: #3b82f6;
}
.dark {
--bg: #0a0a0a;
--surface: #111111;
--border: #222222;
--text: #f1f5f9;
--text-muted: #64748b;
--hover: #1a1a1a;
--accent: #3b82f6;
}
* { box-sizing: border-box; margin: 0; padding: 0; }
body {
font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', sans-serif;
background: var(--bg);
color: var(--text);
height: 100vh;
overflow: hidden;
}
.fade-enter-active, .fade-leave-active { transition: opacity 0.2s; }
.fade-enter-from, .fade-leave-to { opacity: 0; }
</style>
<style scoped lang="scss"> <style scoped lang="scss">
.app-wrap { .app-wrap {
height: 100vh; height: 100vh;
@@ -53,7 +17,7 @@ body {
position: fixed; position: fixed;
top: 16px; top: 16px;
right: 16px; right: 16px;
z-index: 500; z-index: 50;
background: var(--surface); background: var(--surface);
border: 1px solid var(--border); border: 1px solid var(--border);
border-radius: 99px; border-radius: 99px;

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@@ -1 +0,0 @@
<svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 261.76 226.69"><path d="M161.096.001l-30.225 52.351L100.647.001H-.005l130.877 226.688L261.749.001z" fill="#41b883"/><path d="M161.096.001l-30.225 52.351L100.647.001H52.346l78.526 136.01L209.398.001z" fill="#34495e"/></svg>

Before

Width:  |  Height:  |  Size: 276 B

View File

@@ -1,4 +1,41 @@
@import './base.css'; @import './base.css';
@import '@ztimson/css-utils/dist/css-utils.min.css';
::-webkit-scrollbar { height: 4px; width: 4px; }
::-webkit-scrollbar-thumb { background: var(--border); border-radius: 2px; }
:root {
--bg: #ffffff;
--surface: #e5e9ec;
--border: #e2e8f0;
--text: #0f172a;
--text-muted: #64748b;
--hover: #f1f5f9;
--accent: #3b82f6;
}
.dark {
--bg: #0a0a0a;
--surface: #111111;
--border: #222222;
--text: #f1f5f9;
--text-muted: #64748b;
--hover: #1a1a1a;
--accent: #3b82f6;
}
* { box-sizing: border-box; margin: 0; padding: 0; }
body {
font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', sans-serif;
background: var(--bg);
color: var(--text);
height: 100vh;
overflow: hidden;
}
.fade-enter-active, .fade-leave-active { transition: opacity 0.2s; }
.fade-enter-from, .fade-leave-to { opacity: 0; }
#app { #app {
width: 100%; width: 100%;
@@ -27,3 +64,25 @@ a,
place-items: center; place-items: center;
} }
} }
.card {
background: var(--surface);
border: 1px solid var(--border);
border-radius: 10px;
overflow: hidden;
.card-title {
font-size: 10px;
font-weight: 700;
text-transform: uppercase;
letter-spacing: 0.08em;
color: var(--text-muted);
padding: 10px 12px 6px;
}
.divider {
height: 1px;
background: var(--border);
margin: 6px 0;
}
}

View File

@@ -0,0 +1,16 @@
<script setup lang="ts">
import {useWeather} from '../services/api';
import MetricRow from './MetricRow.vue';
const {current: d} = useWeather();
</script>
<template>
<div class="card" v-if="d">
<div class="card-title">💨 Air Quality</div>
<MetricRow label="AQI" :value="d.air_quality" metric-key="air_quality" :data="d" />
<MetricRow label="Label" :value="d.air_quality_label" />
<MetricRow label="Resistance (Ohms)" :value="d.air_quality_ohms?.toLocaleString()" metric-key="air_quality_ohms" :data="d" />
</div>
</template>

View File

@@ -0,0 +1,363 @@
<script setup lang="ts">
import {BASE} from '@/services/api.ts';
import { ref, computed, watch, onMounted, onUnmounted } from 'vue'
const BASE_SPEED_UNITS = {
knots: { label: 'KTS', convert: (v: number) => Math.round(v) },
kph: { label: 'KPH', convert: (v: number) => Math.round(v * 1.852) },
mph: { label: 'MPH', convert: (v: number) => Math.round(v * 1.15078) },
}
const BASE_ALTITUDE_UNITS = {
meters: { label: 'M', convert: (v: number) => Math.round(v * 0.3048) },
feet: { label: 'FT', convert: (v: number) => v },
}
const BASE_VERTICAL_UNITS = {
mps: { label: 'M/S', convert: (v: number) => Math.round(v * 0.3048) },
fps: { label: 'FT/S', convert: (v: number) => v },
}
const photoError = ref(false);
const UNIT_KEY = 'at_units'
function loadUnits() {
const s = localStorage.getItem(UNIT_KEY)
return s ? JSON.parse(s) : { speed: 'knots', altitude: 'meters', vertical: 'mps' }
}
const props = defineProps<{ plane: any; position: { x: number; y: number } }>()
const emit = defineEmits<{ (e: 'close'): void; (e: 'bringToFront'): void }>()
// ── Units ─────────────────────────────────────────────────────────────────────
const prefs = ref(loadUnits())
function saveAndSet(p: any) {
prefs.value = { ...p }
localStorage.setItem(UNIT_KEY, JSON.stringify(prefs.value))
}
function cycleSpeed() { const keys = Object.keys(BASE_SPEED_UNITS); const p = loadUnits(); p.speed = keys[(keys.indexOf(p.speed) + 1) % keys.length]; saveAndSet(p) }
function cycleAltitude() { const keys = Object.keys(BASE_ALTITUDE_UNITS); const p = loadUnits(); p.altitude = keys[(keys.indexOf(p.altitude) + 1) % keys.length]; p.vertical = p.altitude === 'meters' ? 'mps' : 'fps'; saveAndSet(p) }
function cycleVertical() { const keys = Object.keys(BASE_VERTICAL_UNITS); const p = loadUnits(); p.vertical = keys[(keys.indexOf(p.vertical) + 1) % keys.length]; p.altitude = p.vertical === 'mps' ? 'meters' : 'feet'; saveAndSet(p) }
const speed = computed(() => BASE_SPEED_UNITS[prefs.value.speed as keyof typeof BASE_SPEED_UNITS])
const altitude = computed(() => BASE_ALTITUDE_UNITS[prefs.value.altitude as keyof typeof BASE_ALTITUDE_UNITS])
const vertical = computed(() => BASE_VERTICAL_UNITS[prefs.value.vertical as keyof typeof BASE_VERTICAL_UNITS])
// ── Plane data ────────────────────────────────────────────────────────────────
const callsign = computed(() => props.plane.name?.trim() || props.plane.flight?.trim())
const altitudeVal = computed(() => props.plane.alt_baro ?? props.plane.alt_geom ?? 0)
const speedVal = computed(() => speed.value.convert(props.plane.speed || props.plane.gs || 0))
const altVal = computed(() => props.plane.landed ? 'LANDED' : altitude.value.convert(altitudeVal.value))
const altUnit = computed(() => props.plane.landed ? '' : altitude.value.label)
const climbVal = computed(() => { const v = vertical.value.convert(props.plane.climb || props.plane.baro_rate || 0); return v >= 0 ? `+${v}` : String(v) })
const description = computed(() => props.plane.desc || [props.plane.manufacturer, props.plane.model].filter(Boolean).join(' ') || '')
const operator = computed(() => props.plane.operator || props.plane.owner || '')
// ── Drag ──────────────────────────────────────────────────────────────────────
const pos = ref({ ...props.position })
const isDragging = ref(false)
const dragStart = ref({ mx: 0, my: 0, ex: 0, ey: 0 })
const longPressTimer = ref<number | null>(null)
const header = ref<HTMLElement | null>(null)
function onMouseDown(e: MouseEvent) {
if ((e.target as HTMLElement).classList.contains('ap-close')) return
emit('bringToFront')
isDragging.value = true
dragStart.value = { mx: e.clientX, my: e.clientY, ex: pos.value.x, ey: pos.value.y }
e.preventDefault()
}
function onMouseMove(e: MouseEvent) {
if (!isDragging.value) return
pos.value.x = dragStart.value.ex + (e.clientX - dragStart.value.mx)
pos.value.y = dragStart.value.ey + (e.clientY - dragStart.value.my)
}
function onMouseUp() { isDragging.value = false }
function onTouchStart(e: TouchEvent) {
if ((e.target as HTMLElement).classList.contains('ap-close')) return
const touch: any = e.touches[0]
const sx = touch.clientX, sy = touch.clientY
longPressTimer.value = window.setTimeout(() => {
emit('bringToFront')
isDragging.value = true
dragStart.value = { mx: sx, my: sy, ex: pos.value.x, ey: pos.value.y }
if (header.value) header.value.style.opacity = '0.8'
}, 500)
}
function onTouchMove(e: TouchEvent) {
if (!isDragging.value) return
const touch: any = e.touches[0]
pos.value.x = dragStart.value.ex + (touch.clientX - dragStart.value.mx)
pos.value.y = dragStart.value.ey + (touch.clientY - dragStart.value.my)
e.preventDefault()
}
function onTouchEnd() {
if (longPressTimer.value) { clearTimeout(longPressTimer.value); longPressTimer.value = null }
if (isDragging.value && header.value) header.value.style.opacity = '1'
isDragging.value = false
}
onMounted(() => {
document.addEventListener('mousemove', onMouseMove)
document.addEventListener('mouseup', onMouseUp)
document.addEventListener('touchmove', onTouchMove, { passive: false })
document.addEventListener('touchend', onTouchEnd)
document.addEventListener('touchcancel', onTouchEnd)
})
onUnmounted(() => {
document.removeEventListener('mousemove', onMouseMove)
document.removeEventListener('mouseup', onMouseUp)
document.removeEventListener('touchmove', onTouchMove)
document.removeEventListener('touchend', onTouchEnd)
document.removeEventListener('touchcancel', onTouchEnd)
})
// ── Navball ───────────────────────────────────────────────────────────────────
const navball = computed(() => {
const data = props.plane
const heading = data.heading ?? data.track ?? 0
const airspeedKnots = data.speed || data.gs || 0
const vertRateFps = data.climb || data.baro_rate || 0
const groundSpeedFps = airspeedKnots * 1.68781
const pitchRad = groundSpeedFps > 0 ? Math.atan(vertRateFps / groundSpeedFps) : 0
const pitch = Math.max(-25, Math.min(25, pitchRad * (180 / Math.PI)))
const pitchLines: string[] = []
for (let p = -30; p <= 30; p += 5) {
if (p === 0) continue
const isMajor = p % 10 === 0
const [start, end] = [85, 115]
if (isMajor) {
pitchLines.push(`
<text x="${start - Math.abs(p) - 5}" y="${104 + pitch * 2.5 - p * 2.5}" fill="#fff" font-size="8" font-weight="bold" text-anchor="end">${Math.abs(p)}</text>
<line x1="${start - Math.abs(p)}" y1="${100 + pitch * 2.5 - p * 2.5}" x2="${end + Math.abs(p)}" y2="${100 + pitch * 2.5 - p * 2.5}" stroke="#fff" stroke-width="2"/>
<text x="${end + Math.abs(p) + 5}" y="${104 + pitch * 2.5 - p * 2.5}" fill="#fff" font-size="8" font-weight="bold">${Math.abs(p)}</text>
`)
} else {
pitchLines.push(`<line x1="${start}" y1="${100 + pitch * 2.5 - p * 2.5}" x2="${end}" y2="${100 + pitch * 2.5 - p * 2.5}" stroke="#fff" stroke-width="2"/>`)
}
}
const rollTicks: string[] = []
for (const angle of [-90, -60, -45, -30, -20, -10, 0, 10, 20, 30, 45, 60, 90]) {
const rad = angle * Math.PI / 180
const a = Math.abs(angle)
if (a === 45) {
rollTicks.push(`<circle cx="${100 + 78 * Math.sin(rad)}" cy="${100 - 78 * Math.cos(rad)}" r="2.5" fill="#fff"/>`)
} else {
const inner = (a === 0 || a % 30 === 0) ? 72 : 77
const sw = (a === 0 || a % 30 === 0) ? 2.5 : 1.5
rollTicks.push(`<line x1="${100 + inner * Math.sin(rad)}" y1="${100 - inner * Math.cos(rad)}" x2="${100 + 85 * Math.sin(rad)}" y2="${100 - 85 * Math.cos(rad)}" stroke="#fff" stroke-width="${sw}"/>`)
}
}
const compassLabels = [-60, -45, -30, -15, 0, 15, 30, 45, 60].map(offset => {
const rad = offset * Math.PI / 180
const x = 100 + 70 * Math.sin(rad)
const y = 100 - 70 * Math.cos(rad)
const h = Math.round((offset + 360) % 360)
const lbl = ({ 0: 'N', 90: 'E', 180: 'S', 270: 'W' } as any)[h] || ''
return lbl ? `<text x="${x}" y="${y + 4}" text-anchor="middle" fill="#0f0" font-size="13" font-weight="bold">${lbl}</text>` : ''
}).join('')
return `
<svg width="200" height="220" viewBox="0 0 200 220">
<defs>
<clipPath id="navballClip"><circle cx="100" cy="100" r="85"/></clipPath>
<linearGradient id="skyGrad" x1="0%" y1="0%" x2="0%" y2="100%">
<stop offset="0%" style="stop-color:#1e90ff"/>
<stop offset="100%" style="stop-color:#4169e1"/>
</linearGradient>
<linearGradient id="groundGrad" x1="0%" y1="0%" x2="0%" y2="100%">
<stop offset="0%" style="stop-color:#8b4513"/>
<stop offset="100%" style="stop-color:#654321"/>
</linearGradient>
</defs>
<rect x="77" y="5" width="46" height="18" fill="rgba(0,0,0,0.95)" stroke="#0f0" stroke-width="2" rx="2"/>
<text x="100" y="18" text-anchor="middle" fill="#0f0" font-size="14" font-weight="bold">${heading.toFixed(0).padStart(3, '0')}°</text>
<g transform="translate(0,25)" clip-path="url(#navballClip)">
<rect x="15" y="${15 + pitch * 2.5 - 200}" width="170" height="285" fill="url(#skyGrad)"/>
<rect x="15" y="${100 + pitch * 2.5}" width="170" height="285" fill="url(#groundGrad)"/>
<line x1="15" y1="${100 + pitch * 2.5}" x2="185" y2="${100 + pitch * 2.5}" stroke="#fff" stroke-width="3"/>
${pitchLines.join('')}
</g>
<g transform="translate(0,25)">${rollTicks.join('')}</g>
<circle cx="100" cy="125" r="85" fill="none" stroke="#0f0" stroke-width="2.5"/>
<line x1="40" y1="125" x2="80" y2="125" stroke="#ff0" stroke-width="3.5"/>
<line x1="120" y1="125" x2="160" y2="125" stroke="#ff0" stroke-width="3.5"/>
<circle cx="100" cy="125" r="4" fill="none" stroke="#ff0" stroke-width="2.5"/>
<g transform="rotate(${-heading} 100 125)">${compassLabels}</g>
<polygon points="100,37 95,30 105,30" fill="#ff0"/>
</svg>
`
})
</script>
<template>
<div class="aircraft-popup" :style="{ left: pos.x + 'px', top: pos.y + 'px' }">
<!-- Header (drag handle) -->
<div ref="header" class="ap-header" @mousedown="onMouseDown" @touchstart.passive="onTouchStart">
<h3 class="ap-callsign">
<a v-if="callsign" :href="`https://www.flightaware.com/live/flight/${callsign}`" target="_blank" @click.stop>{{ callsign.toUpperCase() }}</a>
<span v-else>N/A</span>
<span style="color: white"> / {{ (plane.icao || plane.hex || '').toUpperCase() }}</span>
</h3>
<button class="ap-close" @click.stop="emit('close')">×</button>
</div>
<!-- Meta -->
<div class="ap-meta flex-r justify-between">
<div class="flex-c">
<span>{{ operator || 'Unknown Owner' }}</span>
<span>{{ plane.country || 'Unknown Country' }}</span>
</div>
<div class="flex-c align-x-end">
<span>{{ description || 'Unknown Aircraft' }}</span>
<span style="text-transform: capitalize">{{ plane.class || 'Unknown' }} {{ plane.type || 'Unknown' }}</span>
</div>
</div>
<!-- Photo -->
<div v-if="!photoError" class="ap-photo-wrap">
<img class="ap-photo" :src="BASE + '/api/adsb-image/' + plane.icao" :alt="callsign" @error="photoError = true" />
</div>
<!-- Body -->
<div class="ap-body">
<div class="ap-gauges">
<div class="ap-gauge-wrap">
<div class="ap-gauge-label">Air Speed</div>
<div class="ap-gauge" @click.stop="cycleSpeed">
<span class="ap-gauge-val">{{ speedVal }}</span>
<span class="ap-gauge-unit">{{ speed.label }}</span>
</div>
</div>
<div class="ap-gauge-wrap">
<div class="ap-gauge-label">Altitude</div>
<div class="ap-gauge" @click.stop="cycleAltitude">
<span class="ap-gauge-val">{{ altVal }}</span>
<span class="ap-gauge-unit">{{ altUnit }}</span>
</div>
</div>
<div class="ap-gauge-wrap">
<div class="ap-gauge-label">Climb</div>
<div class="ap-gauge" @click.stop="cycleVertical">
<span class="ap-gauge-val">{{ climbVal }}</span>
<span class="ap-gauge-unit">{{ vertical.label }}</span>
</div>
</div>
</div>
<div class="ap-navball" v-html="navball" />
</div>
</div>
</template>
<style scoped>
.aircraft-popup {
position: fixed;
z-index: 100;
pointer-events: auto;
background: rgba(0,0,0,0.88);
border: 1px solid rgba(200,200,220,0.3);
border-radius: 8px;
box-shadow: 0 4px 24px rgba(0,0,0,0.5);
overflow: hidden;
font-family: monospace;
color: #ccc;
min-width: 320px;
max-width: 360px;
}
.ap-header {
position: relative;
padding: 12px 16px;
border-bottom: 1px solid rgba(200,200,220,0.2);
cursor: move;
user-select: none;
-webkit-user-select: none;
}
.ap-callsign {
margin: 0 24px 0 0;
color: #7eeee1;
font-size: 16px;
}
.ap-callsign a { color: #6bb6ff; text-decoration: none; }
.ap-meta {
font-size: 11px;
color: #888;
margin-top: 4px;
display: flex;
justify-content: space-between;
gap: 8px;
padding: 12px 16px;
border-bottom: 1px solid rgba(200,200,220,0.2);
}
.ap-close {
position: absolute;
top: 8px;
right: 8px;
background: rgba(255,255,255,0.2);
border: none;
color: white;
width: 24px;
height: 24px;
border-radius: 4px;
cursor: pointer;
font-size: 16px;
display: flex;
align-items: center;
justify-content: center;
transition: background 0.2s;
}
.ap-close:hover { background: rgba(255,255,255,0.35); }
/* ── Photo ── */
.ap-photo-wrap {
max-width: 360px;
max-height: 160px;
background: #111;
border-bottom: 1px solid rgba(200,200,220,0.15);
overflow: hidden;
display: flex;
align-items: center;
justify-content: center;
}
.ap-photo { width: 100%; height: 100%; object-fit: cover; display: block; }
.ap-photo--sil { object-fit: contain; box-sizing: border-box; image-rendering: auto; }
.ap-body {
display: flex;
gap: 16px;
padding: 12px 16px;
}
.ap-gauges { flex: 0 0 110px; }
.ap-gauge-wrap { margin-bottom: 12px; }
.ap-gauge-label {
color: #888;
font-size: 11px;
font-weight: bold;
margin-bottom: 3px;
}
.ap-gauge {
padding: 6px;
background: rgba(0,0,0,0.95);
border: 2px solid #0f0;
border-radius: 3px;
cursor: pointer;
display: flex;
align-items: flex-end;
justify-content: center;
gap: 4px;
transition: border-color 0.15s;
}
.ap-gauge:hover { border-color: #0ff; }
.ap-gauge-val { font-size: 20px; font-weight: bold; color: #0f0; }
.ap-gauge-unit { font-size: 11px; color: #0f0; margin-bottom: 2px; }
.ap-navball { flex: 1; margin-top: 1rem; }
</style>

View File

@@ -1,29 +1,20 @@
<script setup lang="ts"> <script setup lang="ts">
import {onMounted, ref} from 'vue'; import Loading from '@/components/Loading.vue';
import {getPressureTrend} from '@/services/units.ts';
import {inject, onMounted, ref} from 'vue';
import {api, BASE} from '../services/api'; import {api, BASE} from '../services/api';
const data = ref<any>({}); const data = ref<any>();
const openGraph = inject<(key: string) => void>('openGraph');
function dir(deg: number) {
if(deg > 22.5 && deg <= 67.5) return 'NE';
if(deg > 67.5 && deg <= 112.5) return 'E';
if(deg > 112.5 && deg <= 157.5) return 'SE';
if(deg > 157.5 && deg <= 202.5) return 'S';
if(deg > 202.5 && deg <= 247.5) return 'SW';
if(deg > 247.5 && deg <= 292.5) return 'W';
if(deg > 292.5 && deg <= 337.5) return 'NW';
return 'N';
}
onMounted(async () => { onMounted(async () => {
data.value = await api.current(); data.value = await api.current();
console.log(data.value);
}); });
</script> </script>
<style scoped lang="scss"> <style scoped lang="scss">
.today-card { .today-card {
position: relative;
border-radius: 12px; border-radius: 12px;
background: var(--surface); background: var(--surface);
border: 1px solid var(--border); border: 1px solid var(--border);
@@ -32,109 +23,81 @@ onMounted(async () => {
flex-direction: column; flex-direction: column;
gap: 12px; gap: 12px;
} }
.today-header {
display: flex;
align-items: center;
gap: 12px;
}
.today-icon { .today-icon {
width: 52px; width: 52px;
height: 52px; height: 52px;
object-fit: contain; object-fit: contain;
flex-shrink: 0; flex-shrink: 0;
} }
.today-title {
flex: 1;
min-width: 0;
}
.today-date {
font-size: 11px;
font-weight: 700;
text-transform: uppercase;
letter-spacing: 0.08em;
color: var(--text-muted);
}
.today-label { .today-label {
font-size: 12px; font-size: 12px;
font-weight: 600; font-weight: 600;
color: var(--text-muted); color: var(--text-muted);
} }
.hi-lo { .hi-lo {
display: flex; display: flex;
gap: 8px; gap: 8px;
font-size: 15px; font-size: 15px;
font-weight: 600; font-weight: 600;
margin-top: 2px; margin-top: 2px;
.hi { color: var(--text); } .hi { color: var(--text); }
.lo { color: var(--text-muted); font-weight: 400; } .lo { color: var(--text-muted); font-weight: 400; }
} }
.divider { .divider {
height: 1px; height: 1px;
background: var(--border); background: var(--border);
} }
.stat-grid { .stat-grid {
display: grid; display: grid;
grid-template-columns: repeat(auto-fill, minmax(90px, 1fr)); grid-template-columns: repeat(auto-fill, minmax(90px, 1fr));
gap: 10px; gap: 10px;
} }
.stat { .stat {
display: flex; display: flex;
flex-direction: column; flex-direction: column;
gap: 2px; gap: 2px;
cursor: pointer;
border-radius: 8px;
padding: 4px 6px;
margin: -4px -6px;
transition: background 0.15s;
&:hover { background: var(--hover); }
} }
.stat-label { .stat-label {
font-size: 10px; font-size: 10px;
text-transform: uppercase; text-transform: uppercase;
letter-spacing: 0.06em; letter-spacing: 0.06em;
color: var(--text-muted); color: var(--text-muted);
} }
.stat-value { .stat-value {
font-size: 14px; font-size: 14px;
font-weight: 600; font-weight: 600;
color: var(--text); color: var(--text);
} }
.stat-sub {
font-size: 11px;
color: var(--text-muted);
}
.section-label {
font-size: 10px;
font-weight: 700;
text-transform: uppercase;
letter-spacing: 0.08em;
color: var(--text-muted);
margin-bottom: -4px;
}
</style> </style>
<template> <template>
<div class="today-card"> <div class="today-card">
<div class="flex-r align-items-center justify-between px-3"> <div class="flex-r align-items-center justify-between">
<div class="flex-c justify-center align-items-center"> <div v-if="!data" class="pos-rel br-2 overflow-hidden" style="width: 75px; height: 50px"><Loading/></div>
<img v-if="data.icon" :src="'https://openweathermap.org/img/wn/' + data.icon + '@2x.png'" class="today-icon" alt="weather" /> <div v-else class="flex-c justify-center align-items-center mx-3">
<img :src="BASE + '/api/icon/' + data.icon" class="today-icon" alt="weather" />
<div class="today-label">{{ data.label }}</div> <div class="today-label">{{ data.label }}</div>
</div> </div>
<div class="flex-r align-items-center gap-2"> <div class="flex-r align-items-center gap-2">
<div class="fs-6"> <div class="fs-6 m-0 p-0 flex-r align-items-center">
{{ data.temperature?.toFixed(0) }}°C <div v-if="!data" class="d-inline-block pos-rel br-2 overflow-hidden" style="width: 50px; height: 1.25em"><Loading/></div>
<template v-else>{{ Math.round(data.temperature) }}°C</template>
</div> </div>
<div class="flex-c fg-muted"> <div class="flex-c fg-muted">
<span class="hi"> {{ 0 }}°</span> <div class="hi">
<span class="lo"> {{ 0 }}°</span> <div v-if="!data" class="d-inline-block pos-rel br-2 overflow-hidden" style="width: 25px; height: 1em"><Loading/></div>
<template v-else> {{ ~~(data.temperature_max) }}°</template>
</div>
<div class="lo">
<div v-if="!data" class="d-inline-block pos-rel br-2 overflow-hidden" style="width: 25px; height: 1em"><Loading/></div>
<template v-else> {{ ~~(data.temperature_min) }}°</template>
</div>
</div> </div>
</div> </div>
</div> </div>
@@ -142,12 +105,79 @@ onMounted(async () => {
<div class="divider" /> <div class="divider" />
<div class="stat-grid"> <div class="stat-grid">
<div class="stat"><span class="stat-label">Precipitation</span><span class="stat-value">{{ !data.precipitation && data.raining == 'True' ? 'Spitting' : (data.precipitation || 0).toFixed(1) + 'mm'}}</span></div> <div class="stat" @click="openGraph?.('heat_index')">
<div class="stat"><span class="stat-label">Humidity</span><span class="stat-value">{{ (data.humidity || 0).toFixed(0) }}%</span></div> <span class="stat-label">Feels Like</span>
<div class="stat"><span class="stat-label">Wind</span><span class="stat-value">{{ data.wind_gusts || 0 }} Kph <span class="fg-muted">({{ dir(data.wind_direction || 0) }})</span></span></div> <div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading/></div>
<div class="stat"><span class="stat-label">Clouds</span><span class="stat-value">{{ (data.clouds || 0).toFixed(0) }}%</span></div> <span v-else class="stat-value">
<div class="stat"><span class="stat-label">Air Quality</span><span class="stat-value">{{ data.air_quality }} <span class="fg-muted">({{data.air_quality_label}})</span></span></div> <template v-if="data.heat_index == null"></template>
<div class="stat"><span class="stat-label">UV index</span><span class="stat-value">{{ data.uv_index }}</span></div> <template v-else>{{ ~~(data.heat_index) }}<span class="fg-muted">°C</span></template>
</span>
</div>
<div class="stat" @click="openGraph?.('humidity')">
<span class="stat-label">Humidity</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading/></div>
<span v-else class="stat-value">
<template v-if="data.humidity == null"></template>
<template v-else>{{ Math.round(data.humidity) }}<span class="fg-muted">%</span></template>
</span>
</div>
<div class="stat" @click="openGraph?.('precipitation_chance')">
<span class="stat-label">Rain</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">
<template v-if="data.raining == null"></template>
<template v-else-if="data.raining">Raining</template>
<template v-else>{{data.precipitation_chance}}<span class="fg-muted">%</span></template>
</span>
</div>
<div class="stat" @click="openGraph?.('clouds')">
<span class="stat-label">Cloud Cover</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading/></div>
<span v-else class="stat-value">
<template v-if="data.clouds == null"></template>
<template v-else>{{ Math.round(data.clouds) }}<span class="fg-muted">%</span></template>
</span>
</div>
<div class="stat" @click="openGraph?.('pressure_slp')">
<span class="stat-label">Sea Level</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading/></div>
<span v-else class="stat-value">
<template v-if="data.pressure_slp == null"></template>
<template v-else>{{ data.pressure_slp?.toFixed(1) }} <span class="fg-muted">({{ getPressureTrend(data.pressure_trend) }})</span></template>
</span>
</div>
<div class="stat" @click="openGraph?.('vapor_pressure_deficit')">
<span class="stat-label">VPD KPA</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading/></div>
<span v-else class="stat-value">
<template v-if="data.vapor_pressure_deficit == null"></template>
<template v-else>{{ data.vapor_pressure_deficit?.toFixed(2) }} <span class="fg-muted">kPa</span></template>
</span>
</div>
<div class="stat" @click="openGraph?.('air_quality')">
<span class="stat-label">Air Quality</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading/></div>
<span v-else class="stat-value">
<template v-if="data.air_quality == null"></template>
<template v-else>{{ data.air_quality }} <span class="fg-muted">/ 500</span></template>
</span>
</div>
<div class="stat" @click="openGraph?.('air_quality_ohms')">
<span class="stat-label">Gas Resistance</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading/></div>
<span v-else class="stat-value">
<template v-if="data.air_quality_ohms == null"></template>
<template v-else>{{ data.air_quality_ohms }} <span class="fg-muted">Ω</span></template>
</span>
</div>
<div class="stat" @click="openGraph?.('visibility')">
<span class="stat-label">Visibility</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading/></div>
<span v-else class="stat-value">
<template v-if="data.visibility == null"></template>
<template v-else>{{ data.visibility?.toFixed(1) }} <span class="fg-muted">km</span></template>
</span>
</div>
</div> </div>
</div> </div>
</template> </template>

View File

@@ -1,18 +1,29 @@
<script setup lang="ts"> <script setup lang="ts">
import { computed } from 'vue' import Loading from '@/components/Loading.vue';
import {BASE, type DataRow} from '../services/api'; import {formatDate} from '@ztimson/utils';
import {onMounted, ref} from 'vue';
import {api, BASE} from '../services/api';
const props = defineProps<{ days: DataRow[] }>() const days = ref<any[]>()
const filler = [1, 2, 3, 4, 5];
const items = computed(() => props.days.slice(0, 7).map(d => ({ function dir(deg: number) {
date: new Date(d.time as string).toLocaleDateString('en', { weekday: 'short', month: 'short', day: 'numeric' }), if(deg > 22.5 && deg <= 67.5) return 'NE';
icon: d.forecast_weather_icon as string | null, if(deg > 67.5 && deg <= 112.5) return 'E';
label: d.forecast_weather_label as string, if(deg > 112.5 && deg <= 157.5) return 'SE';
high: d.env_temp_max_c != null ? `${(d.env_temp_max_c as number).toFixed(1)}°` : '', if(deg > 157.5 && deg <= 202.5) return 'S';
low: d.env_temp_min_c != null ? `${(d.env_temp_min_c as number).toFixed(1)}°` : '', if(deg > 202.5 && deg <= 247.5) return 'SW';
rain: d.forecast_precipitation_probability != null ? `${d.forecast_precipitation_probability}%` : null, if(deg > 247.5 && deg <= 292.5) return 'W';
precip: d.forecast_precipitation_mm != null ? `${(d.forecast_precipitation_mm as number).toFixed(1)}mm` : null, if(deg > 292.5 && deg <= 337.5) return 'NW';
}))) return 'N';
}
onMounted(async () => {
const start = new Date(), end = new Date();
start.setDate(start.getDate() + 1);
end.setDate(end.getDate() + 5);
days.value = await api.daily(start, end);
})
</script> </script>
<style scoped lang="scss"> <style scoped lang="scss">
@@ -26,9 +37,6 @@ const items = computed(() => props.days.slice(0, 7).map(d => ({
overflow-x: auto; overflow-x: auto;
padding-bottom: 6px; padding-bottom: 6px;
width: 100%; width: 100%;
&::-webkit-scrollbar { height: 4px; }
&::-webkit-scrollbar-thumb { background: var(--border); border-radius: 2px; }
} }
.day { .day {
@@ -48,23 +56,38 @@ const items = computed(() => props.days.slice(0, 7).map(d => ({
.day-label { font-size: 10px; color: var(--text-muted); text-align: center; line-height: 1.2; } .day-label { font-size: 10px; color: var(--text-muted); text-align: center; line-height: 1.2; }
.day-temps { display: flex; gap: 6px; font-size: 13px; font-weight: 600; color: var(--text); } .day-temps { display: flex; gap: 6px; font-size: 13px; font-weight: 600; color: var(--text); }
.day-low { color: var(--text-muted); font-weight: 400; } .day-low { color: var(--text-muted); font-weight: 400; }
.day-rain { font-size: 11px; color: #38bdf8; } .day-humid { font-size: 11px; color: var(--text-muted); }
.day-precip { font-size: 10px; color: var(--text-muted); } .day-wind { font-size: 11px; color: var(--text-muted); }
.day-rain { font-size: 11px; color: var(--text-muted); }
.day-precip { font-size: 9px; color: var(--text-muted); }
</style> </style>
<template> <template>
<div class="forecast-wrap"> <div class="forecast-wrap">
<div class="strip"> <div v-if="days?.length" class="strip">
<div v-for="item in items" :key="item.date" class="day"> <div v-for="d in days" class="day">
<div class="day-name">{{ item.date }}</div> <div class="day-name">{{ formatDate('ddd, MMM D', d.time) }}</div>
<img v-if="item.icon" :src="BASE + item.icon" class="day-icon" :alt="item.label" /> <img :src="BASE + '/api/icon/' + d.icon" class="day-icon" :alt="(d.label?.toString() || '')" />
<div class="day-label">{{ item.label }}</div> <div class="day-label">{{ d.label }}</div>
<div class="day-temps"> <div class="day-temps">
<span>{{ item.high }}</span> <span>{{ ~~(d.temperature_max) + '°' || '—' }}</span>
<span class="day-low">{{ item.low }}</span> <span class="day-low">{{ ~~(d.temperature_min) + '°' || '—' }}</span>
</div> </div>
<div v-if="item.rain" class="day-rain">🌧 {{ item.rain }}</div> <div class="day-humid align-x">🌡 {{ ~~(d.humidity) || 0 }}%</div>
<div v-if="item.precip" class="day-precip">{{ item.precip }}</div> <div class="day-wind align-x">🍃 {{ ~~(d.wind_gusts as any) || 0 }} Kph ({{dir(d.wind_dir as any)}})</div>
<div class="day-rain align-x">🌧 {{ d.precipitation_chance || 0 }}% ({{ (d.precipitation as any || 0).toFixed(1) }}mm)</div>
</div>
</div>
<div v-else class="strip">
<div v-for="d in filler" class="day">
<div class="br-2 overflow-hidden pos-rel my-2" style="height: 50px; width: 50px;"><Loading /></div>
<div class="day-temps mb-2">
<div class="br-2 overflow-hidden pos-rel" style="width: 50px; height: 1em"><Loading/></div>
<div class="br-2 overflow-hidden pos-rel" style="width: 50px; height: 1em"><Loading/></div>
</div>
<div class="w-100 br-2 overflow-hidden pos-rel mb-2" style="height: 1em"><Loading/></div>
<div class="w-100 br-2 overflow-hidden pos-rel mb-2" style="height: 1em"><Loading/></div>
<div class="w-100 br-2 overflow-hidden pos-rel mb-2" style="height: 1em"><Loading/></div>
</div> </div>
</div> </div>
</div> </div>

View File

@@ -1,87 +1,245 @@
<script setup lang="ts"> <script setup lang="ts">
import { computed } from 'vue' import {computed, nextTick, ref, watch} from 'vue';
import { METRICS } from '../services/units' import {api} from '../services/api';
import MetricChart from './MetricChart.vue'
import type { DataRow } from '../services/api'
const props = defineProps<{ metricKey: string | null; currentData: DataRow }>() const props = defineProps<{metricKey: string | null}>();
const emit = defineEmits<{ (e: 'close'): void }>() const emit = defineEmits<{(e: 'close'): void}>();
const meta = computed(() => props.metricKey ? METRICS[props.metricKey] : null) const mode = ref<'hourly' | 'daily'>('hourly');
const rows = ref<any[]>([]);
const loading = ref(false);
const selectedPoint = ref<{t: number, v: number} | null>(null);
const W = 600, H = 200, PAD = 30;
const customStart = ref('');
const customEnd = ref('');
function pad(n: number) { return String(n).padStart(2, '0'); }
function toDateTimeLocal(d: Date) {
return `${d.getFullYear()}-${pad(d.getMonth()+1)}-${pad(d.getDate())}T${pad(d.getHours())}:${pad(d.getMinutes())}`;
}
function toDateLocal(d: Date) {
return `${d.getFullYear()}-${pad(d.getMonth()+1)}-${pad(d.getDate())}`;
}
function setDefaults() {
const past = new Date(), future = new Date();
if(mode.value === 'hourly') {
past.setHours(past.getHours() - 24, 0, 0, 0);
future.setHours(future.getHours() + 24, 0, 0, 0);
customStart.value = toDateTimeLocal(past);
customEnd.value = toDateTimeLocal(future);
} else {
past.setDate(past.getDate() - 3);
future.setDate(future.getDate() + 3);
customStart.value = toDateLocal(past);
customEnd.value = toDateLocal(future);
}
}
async function fetchData() {
if(!props.metricKey) return;
selectedPoint.value = null;
loading.value = true;
const past = new Date(customStart.value);
const future = new Date(customEnd.value);
rows.value = mode.value === 'hourly'
? await api.hourly(past, future, `time,${props.metricKey}`)
: await api.daily(past, future, `time,${props.metricKey}`);
loading.value = false;
}
watch([() => props.metricKey, mode], async () => {
setDefaults();
await nextTick();
fetchData();
}, {immediate: true});
const now = new Date();
const points = computed(() => {
if(!rows.value.length || !props.metricKey) return [];
return rows.value.map(r => ({
t: new Date(r.time as string).getTime(),
v: r[props.metricKey!] as number | null,
})).filter(p => p.v != null) as {t: number, v: number}[];
});
const chart = computed(() => {
const pts = points.value;
if(!pts.length) return {path: {hist:'', fut:''}, currentX: 0, dot: null as any, yLabels: [] as any[], xLabels: [] as any[], dotPoints: [] as any[]};
const ts = pts.map(p => p.t), vs = pts.map(p => p.v);
const minT = Math.min(...ts), maxT = Math.max(...ts);
const rawMin = Math.min(...vs), rawMax = Math.max(...vs);
const vpad = (rawMax - rawMin) * 0.1 || 1;
const minV = rawMin - vpad, maxV = rawMax + vpad;
const xOf = (t: number) => PAD + ((t - minT) / (maxT - minT || 1)) * (W - PAD * 2);
const yOf = (v: number) => H - PAD - ((v - minV) / (maxV - minV || 1)) * (H - PAD * 2);
const nowT = now.getTime();
const currentX = Math.max(PAD, Math.min(W - PAD, xOf(nowT)));
// hist/fut always split at nowT — never affected by selected point
const hist = pts.filter(p => p.t <= nowT);
const fut = pts.filter(p => p.t >= nowT);
// stitch the join so lines meet cleanly at the now-line
const joinPt = pts.reduce((a, b) => Math.abs(a.t - nowT) < Math.abs(b.t - nowT) ? a : b);
if(!hist.length || hist.at(-1)!.t !== joinPt.t) hist.push(joinPt);
if(!fut.length || fut[0]!.t !== joinPt.t) fut.unshift(joinPt);
const toPath = (arr: typeof pts) =>
arr.map((p, i) => `${i===0?'M':'L'} ${xOf(p.t).toFixed(1)} ${yOf(p.v).toFixed(1)}`).join(' ');
// selected dot — default to nearest point to now
const activePt = selectedPoint.value
? pts.reduce((a, b) => Math.abs(a.t - selectedPoint.value!.t) < Math.abs(b.t - selectedPoint.value!.t) ? a : b)
: pts.reduce((a, b) => Math.abs(a.t - nowT) < Math.abs(b.t - nowT) ? a : b);
const dot = {x: xOf(activePt.t), y: yOf(activePt.v), v: activePt.v, t: activePt.t};
const yLabels = Array.from({length: 5}, (_, i) => {
const v = minV + (i / 4) * (maxV - minV);
return {y: yOf(v), label: v.toFixed(1)};
});
const xLabels: {x: number, label: string}[] = [];
const tickCount = mode.value === 'hourly' ? 9 : 7;
for(let i = 0; i <= tickCount; i++) {
const t = minT + (i / tickCount) * (maxT - minT);
const d = new Date(t);
xLabels.push({x: xOf(t), label: mode.value === 'hourly'
? d.toLocaleTimeString([], {hour: '2-digit', minute: '2-digit'})
: d.toLocaleDateString([], {month: 'short', day: 'numeric'})});
}
const dotPoints = pts.map(p => ({x: xOf(p.t), y: yOf(p.v), t: p.t, v: p.v}));
return {path: {hist: toPath(hist), fut: toPath(fut)}, currentX, dot, yLabels, xLabels, dotPoints};
});
function onSvgClick(e: MouseEvent) {
const svg = e.currentTarget as SVGSVGElement;
const rect = svg.getBoundingClientRect();
const svgX = ((e.clientX - rect.left) / rect.width) * W;
const pts = chart.value.dotPoints;
if(!pts.length) return;
const nearest = pts.reduce((a, b) => Math.abs(a.x - svgX) < Math.abs(b.x - svgX) ? a : b);
selectedPoint.value = {t: nearest.t, v: nearest.v};
}
</script> </script>
<style scoped lang="scss"> <style scoped lang="scss">
.backdrop { .backdrop {
position: fixed; position: fixed; inset: 0;
inset: 0; background: rgba(0,0,0,0.6);
background: rgba(0,0,0,0.6); z-index: 1000;
z-index: 1000; display: flex; align-items: center; justify-content: center;
display: flex; padding: 16px;
align-items: center; backdrop-filter: blur(4px);
justify-content: center;
padding: 16px;
backdrop-filter: blur(4px);
} }
.modal { .modal {
background: var(--bg); background: var(--bg);
border: 1px solid var(--border); border: 1px solid var(--border);
border-radius: 16px; border-radius: 16px;
padding: 24px; padding: 24px;
width: 100%; width: 100%; max-width: 700px;
max-width: 800px;
max-height: 90vh;
overflow-y: auto;
} }
.modal-header { .modal-header {
display: flex; display: flex; align-items: center; justify-content: space-between;
align-items: center; margin-bottom: 16px;
justify-content: space-between; .title { font-size: 16px; font-weight: 700; color: var(--text); text-transform: capitalize; }
margin-bottom: 20px; .close-btn {
background: none; border: 1px solid var(--border); color: var(--text);
border-radius: 8px; width: 32px; height: 32px; cursor: pointer; font-size: 16px;
&:hover { background: var(--hover); }
}
} }
.controls {
.modal-title { display: flex; align-items: center; gap: 10px; flex-wrap: wrap;
font-size: 18px; button {
font-weight: 600; font-size: 11px; padding: 4px 12px; border-radius: 6px;
color: var(--text); border: 1px solid var(--border); background: none; color: var(--text-muted); cursor: pointer;
display: flex; &.active { background: var(--accent); color: #fff; border-color: var(--accent); }
align-items: center; }
gap: 8px; input {
font-size: 11px; padding: 3px 6px; border-radius: 6px;
border: 1px solid var(--border); background: var(--bg); color: var(--text);
}
.apply-btn {
font-size: 11px; padding: 4px 10px; border-radius: 6px;
border: 1px solid var(--accent); background: var(--accent); color: #fff; cursor: pointer;
}
} }
.current-val {
.close-btn { font-size: 13px; color: var(--text-muted);
background: none; span { color: var(--accent); font-weight: 700; }
border: 1px solid var(--border);
color: var(--text);
border-radius: 8px;
width: 32px;
height: 32px;
cursor: pointer;
font-size: 16px;
display: flex;
align-items: center;
justify-content: center;
&:hover { background: var(--hover); }
} }
.chart-wrap { position: relative; }
.loading-overlay {
position: absolute; inset: 0;
display: flex; align-items: center; justify-content: center;
background: rgba(0,0,0,0.2); border-radius: 8px;
.spinner {
width: 28px; height: 28px;
border: 3px solid var(--border); border-top-color: var(--accent);
border-radius: 50%; animation: spin 0.7s linear infinite;
}
}
@keyframes spin { to { transform: rotate(360deg); } }
svg { width: 100%; overflow: visible; cursor: crosshair; }
.tick-label { font-size: 9px; fill: var(--text-muted); }
</style> </style>
<template> <template>
<Teleport to="body"> <Teleport to="body">
<Transition name="fade"> <Transition name="fade">
<div v-if="metricKey" class="backdrop" @click.self="emit('close')"> <div v-if="metricKey" class="backdrop" @click.self="emit('close')">
<div class="modal"> <div class="modal">
<div class="modal-header"> <div class="modal-header">
<div class="modal-title"> <span class="title">{{ metricKey?.replace(/_/g, ' ') }}</span>
<span>{{ meta?.icon }}</span> <button class="close-btn" @click="emit('close')"></button>
<span>{{ meta?.label ?? metricKey }}</span> </div>
</div>
<button class="close-btn" @click="emit('close')"></button> <div class="controls gap-0 mb-2">
</div> <button :class="{active: mode === 'hourly'}" style="border-radius: 6px 0 0 6px" @click="mode = 'hourly'">Hourly</button>
<MetricChart :metric-key="metricKey" :current-data="currentData" /> <button :class="{active: mode === 'daily'}" style="border-radius: 0 6px 6px 0" @click="mode = 'daily'">Daily</button>
</div> </div>
</div> <div class="controls">
</Transition> <input :type="mode === 'hourly' ? 'datetime-local' : 'date'" v-model="customStart"/>
</Teleport> <span style="font-size:11px;color:var(--text-muted)">to</span>
<input :type="mode === 'hourly' ? 'datetime-local' : 'date'" v-model="customEnd"/>
<button class="apply-btn" @click="fetchData">Apply</button>
<div v-if="chart.dot" class="flex-fill flex-r justify-end align-items-center current-val">
<span>{{ (chart.dot.v as number).toFixed(2) }}</span>
</div>
</div>
<div class="chart-wrap">
<svg :viewBox="`0 0 ${W} ${H}`" preserveAspectRatio="none" @click="onSvgClick">
<template v-for="tick in chart.yLabels" :key="tick.y">
<line :x1="PAD" :y1="tick.y" :x2="W-PAD" :y2="tick.y" stroke="var(--border)" stroke-width="0.5" opacity="0.5"/>
<text :x="PAD - 4" :y="tick.y + 3" text-anchor="end" class="tick-label">{{ tick.label }}</text>
</template>
<template v-for="tick in chart.xLabels" :key="tick.x">
<text :x="tick.x" :y="H - 4" text-anchor="middle" class="tick-label">{{ tick.label }}</text>
</template>
<line :x1="PAD" :y1="PAD" :x2="PAD" :y2="H-PAD" stroke="var(--border)" stroke-width="1"/>
<line :x1="PAD" :y1="H-PAD" :x2="W-PAD" :y2="H-PAD" stroke="var(--border)" stroke-width="1"/>
<line :x1="chart.currentX" :y1="PAD" :x2="chart.currentX" :y2="H-PAD"
stroke="var(--accent)" stroke-width="1" stroke-dasharray="3 2" opacity="0.6"/>
<path :d="chart.path.hist" fill="none" stroke="var(--accent)" stroke-width="2"/>
<path :d="chart.path.fut" fill="none" stroke="var(--accent)" stroke-width="2" stroke-dasharray="5 3" opacity="0.5"/>
<circle v-if="chart.dot" :cx="chart.dot.x" :cy="chart.dot.y" r="5" fill="var(--accent)"/>
</svg>
<div v-if="loading" class="loading-overlay"><div class="spinner"/></div>
</div>
</div>
</div>
</Transition>
</Teleport>
</template> </template>

View File

@@ -0,0 +1,109 @@
<script setup lang="ts">
import Loading from '@/components/Loading.vue';
import {formatDate} from '@ztimson/utils';
import {onMounted, ref} from 'vue';
import {api, BASE} from '../services/api';
const hours = ref<any[]>();
const open = ref(false);
const filler = [1, 2, 3, 4, 5, 6, 7, 8];
function dir(deg: number) {
if(deg > 22.5 && deg <= 67.5) return 'NE';
if(deg > 67.5 && deg <= 112.5) return 'E';
if(deg > 112.5 && deg <= 157.5) return 'SE';
if(deg > 157.5 && deg <= 202.5) return 'S';
if(deg > 202.5 && deg <= 247.5) return 'SW';
if(deg > 247.5 && deg <= 292.5) return 'W';
if(deg > 292.5 && deg <= 337.5) return 'NW';
return 'N';
}
onMounted(async () => {
hours.value = await api.hourly();
});
</script>
<style scoped lang="scss">
.card {
background: var(--surface);
border: 1px solid var(--border);
border-radius: 10px;
}
.card-header {
display: flex;
align-items: center;
justify-content: space-between;
padding: 10px 14px;
cursor: pointer;
user-select: none;
.title { font-size: 11px; font-weight: 700; text-transform: uppercase; letter-spacing: 0.08em; color: var(--text-muted); }
.chevron { font-size: 10px; color: var(--text-muted); transition: transform 0.2s; &.open { transform: rotate(180deg); } }
.preview { display: flex; gap: 6px; align-items: center; }
.prev-icon { width: 20px; height: 20px; object-fit: contain; }
.prev-temp { font-size: 13px; font-weight: 700; color: var(--text); }
}
.hour-list {
border-top: 1px solid var(--border);
}
.hour-row {
display: flex;
align-items: center;
gap: 10px;
padding: 8px 14px;
border-bottom: 1px solid var(--border);
&:last-child { border-bottom: none; }
.hour-time { font-size: 11px; font-weight: 700; color: var(--text-muted); text-transform: uppercase; width: 52px; flex-shrink: 0; }
.hour-icon { width: 26px; height: 26px; object-fit: contain; flex-shrink: 0; }
.hour-label { font-size: 11px; color: var(--text-muted); flex: 1; }
.hour-temp { font-size: 13px; font-weight: 700; color: var(--text); }
.hour-meta { display: flex; gap: 8px; font-size: 10px; color: var(--text-muted); }
}
.filler-row {
height: 42px;
pos-rel: relative;
overflow: hidden;
border-bottom: 1px solid var(--border);
&:last-child { border-bottom: none; }
}
</style>
<template>
<div class="card">
<div class="card-header" @click="open = !open">
<span class="title">24hr Forecast</span>
<span class="chevron" :class="{ open }"></span>
</div>
<div v-if="open" style="max-height: 50vh; overflow-y: auto">
<div class="hour-list">
<template v-if="hours?.length">
<div v-for="h in hours" class="hour-row">
<span class="hour-time">{{ formatDate('h A', h.time) }}</span>
<img :src="BASE + '/api/icon/' + h.icon" class="hour-icon" :alt="h.label?.toString() || ''" />
<span class="hour-label">{{ h.label }}</span>
<div class="hour-meta">
<span>🌧 {{ (h.precipitation as any || 0).toFixed(1) }}mm</span>
<span>🍃 {{ ~~h.wind_gusts }}kph {{ dir(h.wind_dir) }}</span>
</div>
<span class="hour-temp">{{ ~~h.temperature }}°</span>
</div>
</template>
<template v-else>
<div v-for="f in filler" class="filler-row p-2">
<div class="br-1 pos-rel w-100 overflow-hidden" style="height: 100%">
<Loading />
</div>
</div>
</template>
</div>
</div>
</div>
</template>

View File

@@ -0,0 +1,43 @@
<style scoped lang="scss">
.shimmer {
position: absolute;
top: 0;
bottom: 0;
left: 0;
right: 0;
}
.stroke {
height: 100%;
width: 100%;
background: #777;
}
.dark .animate {
animation: shimmer 3s infinite;
background: linear-gradient(90deg, #ffffff10 25%, #ffffff30 50%, #ffffff10 75%);
background-size: 200% 100%;
}
.animate {
animation: shimmer 3s infinite;
background: linear-gradient(to right, #e6e6e6 0%, #cccccc 50%, #e6e6e6 100%);
background-size: 200% 100%;
}
@keyframes shimmer {
from {
background-position: 200% 0;
}
to {
background-position: -200% 0;
}
}
</style>
<template>
<div class="shimmer">
<div class="stroke animate"></div>
</div>
</template>

View File

@@ -1,7 +1,10 @@
<script setup lang="ts"> <script setup lang="ts">
import { AirTrafficLayer } from '@/services/airtraffic.ts' import { AirTrafficLayer } from '@/services/adsb.ts'
import {api} from '@/services/api.ts'; import { AISLayer } from '@/services/ais.ts'
import { computed, onMounted, onUnmounted, ref, watch } from 'vue' import { api } from '@/services/api.ts'
import { RangeLayer } from '@/services/range.ts'
import VectorTileLayer from 'ol/layer/VectorTile'
import { onMounted, onUnmounted, ref, watch } from 'vue'
import Map from 'ol/Map' import Map from 'ol/Map'
import View from 'ol/View' import View from 'ol/View'
import TileLayer from 'ol/layer/Tile' import TileLayer from 'ol/layer/Tile'
@@ -11,29 +14,26 @@ import XYZ from 'ol/source/XYZ'
import Feature from 'ol/Feature' import Feature from 'ol/Feature'
import Point from 'ol/geom/Point' import Point from 'ol/geom/Point'
import CircleGeom from 'ol/geom/Circle' import CircleGeom from 'ol/geom/Circle'
import { defaults as defaultInteractions } from 'ol/interaction'
import { fromLonLat, toLonLat } from 'ol/proj' import { fromLonLat, toLonLat } from 'ol/proj'
import { Style, Fill, Stroke, Circle as CircleStyle } from 'ol/style' import { Style, Fill, Stroke, Circle as CircleStyle } from 'ol/style'
import { current } from '../services/weather' import { applyStyle } from 'ol-mapbox-style'
import 'ol/ol.css' import 'ol/ol.css'
const props = defineProps<{ dark: boolean }>() const current = ref({ latitude: 0, longitude: 0 })
const mapEl = ref<HTMLDivElement>() const props = defineProps<{ dark: boolean }>()
const mapEl = ref<HTMLDivElement>()
const showOverlays = ref(false) const showOverlays = ref(false)
const atActive = ref(true) const atActive = ref(true)
const NM = 1852 const NM = 1852
const radarFrames = ref<{ path: string; time: number }[]>([])
const radarFrameIndex = ref(0)
const radarPath = computed(() => radarFrames.value[radarFrameIndex.value]?.path ?? '')
const nowcastStartIndex = ref(0)
const showWind = ref(false) const showWind = ref(false)
const windSrc = ref('') const windSrc = ref('')
const OVERLAYS = [ const OVERLAYS = [
{ id: 'rain', label: 'Rain', icon: '🌧️', url: () => `https://tilecache.rainviewer.com${radarPath.value}/256/{z}/{x}/{y}/2/1_1.png` }, { id: 'rain', label: 'Rain', icon: '🌧️' },
{ id: 'wind', label: 'Wind', icon: '💨', url: () => '' }, { id: 'wind', label: 'Wind', icon: '💨' },
] ]
const activeOverlays = ref<Set<string>>(new Set(['rain'])) const activeOverlays = ref<Set<string>>(new Set(['rain']))
@@ -43,63 +43,81 @@ let map: Map
let stationLayer: VectorLayer<VectorSource> let stationLayer: VectorLayer<VectorSource>
let radarInterval: ReturnType<typeof setInterval> let radarInterval: ReturnType<typeof setInterval>
let airTraffic: AirTrafficLayer let airTraffic: AirTrafficLayer
let aisLayer: AISLayer
const hourTickIndices = computed(() => { let range: RangeLayer
const indices: number[] = []
let lastHour = -1
radarFrames.value.forEach((f, i) => {
const h = new Date(f.time * 1000).getHours()
if (h !== lastHour) { indices.push(i); lastHour = h }
})
return indices
})
function buildWindSrc(lat: number, lon: number, zoom: number) { function buildWindSrc(lat: number, lon: number, zoom: number) {
return `https://embed.windy.com/embed2.html?lat=${lat.toFixed(4)}&lon=${lon.toFixed(4)}&detailLat=${lat.toFixed(4)}&detailLon=${lon.toFixed(4)}&zoom=${Math.round(zoom)}&level=surface&overlay=wind&product=ecmwf&menu=&message=&marker=&calendar=now&pressure=&type=map&location=coordinates&detail=&metricWind=kt&metricTemp=%C2%B0C&radarRange=-1` return `https://embed.windy.com/embed2.html?lat=${lat.toFixed(4)}&lon=${lon.toFixed(4)}&detailLat=${lat.toFixed(4)}&detailLon=${lon.toFixed(4)}&zoom=${Math.round(zoom)}&level=surface&overlay=wind&product=ecmwf&menu=&message=&marker=&calendar=now&pressure=&type=map&location=coordinates&detail=&metricWind=kt&metricTemp=%C2%B0C&radarRange=-1`
} }
function syncWindSrc() { function syncWindSrc() {
const view = map.getView() const view = map.getView()
const center = toLonLat(view.getCenter()!) const center: any = toLonLat(view.getCenter()!)
windSrc.value = buildWindSrc(center[1], center[0], view.getZoom() ?? 8) windSrc.value = buildWindSrc(center[1], center[0], view.getZoom() ?? 8)
} }
async function fetchRadarFrames() { function showWindOverlay() {
const res = await fetch('https://api.rainviewer.com/public/weather-maps.json') syncWindSrc()
const data = await res.json() showWind.value = true
const past = data.radar.past ?? [] map.getInteractions().forEach(i => i.setActive(false))
const nowcast = data.radar.nowcast ?? []
radarFrames.value = [...past, ...nowcast]
nowcastStartIndex.value = past.length
radarFrameIndex.value = past.length - 1
} }
function seekRadar(index: number) { function hideWindOverlay() {
radarFrameIndex.value = index showWind.value = false
const layer = overlayLayers['rain'] map.getInteractions().forEach(i => i.setActive(true))
if (layer) { }
layer.setSource(new XYZ({ url: OVERLAYS.find(o => o.id === 'rain')!.url(), maxZoom: 7 }))
async function fetchRadarUrl(): Promise<string | null> {
try {
const res = await fetch('https://api.rainviewer.com/public/weather-maps.json')
const data = await res.json()
const past = data.radar?.past ?? []
const latest = past[past.length - 1]
if (!latest) return null
return `https://tilecache.rainviewer.com${latest.path}/256/{z}/{x}/{y}/2/1_1.png`
} catch {
return null
} }
} }
function onSliderInput(e: Event) { function buildRainLayer(url: string): TileLayer<XYZ> {
seekRadar(Number((e.target as HTMLInputElement).value)) return new TileLayer({
source: new XYZ({
url,
maxZoom: 7,
tileLoadFunction: (tile: any, src: string) => {
const img = tile.getImage()
img.onerror = () => tile.setState(3)
img.src = src
},
}),
opacity: 0.2,
zIndex: 5,
})
} }
function frameLabel(frame: { time: number }) { async function refreshRain() {
return new Date(frame.time * 1000).toLocaleTimeString([], { hour: '2-digit', minute: '2-digit' }) const url = await fetchRadarUrl()
} if (!url) return
function hourLabel(frame: { time: number }) { if (overlayLayers['rain']) map.removeLayer(overlayLayers['rain'])
return new Date(frame.time * 1000).toLocaleTimeString([], { hour: '2-digit', minute: '2-digit', hour12: false }) if (!activeOverlays.value.has('rain')) return
}
function tickPercent(index: number) { const layer = buildRainLayer(url)
return (index / (radarFrames.value.length - 1)) * 100 overlayLayers['rain'] = layer
map.addLayer(layer)
} }
function toggleAT() { function toggleAT() {
atActive.value ? airTraffic.hide() : airTraffic.show() if (atActive.value) {
aisLayer.hide()
airTraffic.hide()
range.hide()
} else {
aisLayer.show()
airTraffic.show()
range.show()
}
atActive.value = !atActive.value atActive.value = !atActive.value
} }
@@ -107,57 +125,42 @@ function toggleOverlay(id: string) {
if (id === 'wind') { if (id === 'wind') {
if (activeOverlays.value.has('wind')) { if (activeOverlays.value.has('wind')) {
activeOverlays.value.delete('wind') activeOverlays.value.delete('wind')
showWind.value = false hideWindOverlay()
} else { } else {
activeOverlays.value.add('wind') activeOverlays.value.add('wind')
syncWindSrc() showWindOverlay()
showWind.value = true
} }
return return
} }
if (activeOverlays.value.has(id)) { if (id === 'rain') {
activeOverlays.value.delete(id) if (activeOverlays.value.has('rain')) {
const layer = overlayLayers[id] activeOverlays.value.delete('rain')
if (layer) { map.removeLayer(layer); delete overlayLayers[id] } if (overlayLayers['rain']) { map.removeLayer(overlayLayers['rain']); delete overlayLayers['rain'] }
} else { } else {
activeOverlays.value.add(id) activeOverlays.value.add('rain')
const layer = buildOverlayLayer(id) refreshRain()
overlayLayers[id] = layer }
map.addLayer(layer) return
} }
} }
function buildBaseLayer(dark: boolean) { function buildBaseLayer(dark: boolean) {
return new TileLayer({ const layer = new VectorTileLayer({ declutter: true })
source: new XYZ({ applyStyle(layer, dark ? '/dark-theme.json' : '/light-theme.json')
url: dark return layer
? 'https://tiles.stadiamaps.com/tiles/alidade_smooth_dark/{z}/{x}/{y}.png'
: 'https://tiles.stadiamaps.com/tiles/alidade_smooth/{z}/{x}/{y}.png',
attributions: '© Stadia Maps © OpenMapTiles © OpenStreetMap',
}),
})
}
function buildOverlayLayer(id: string): TileLayer<XYZ> {
const def = OVERLAYS.find(o => o.id === id)!
return new TileLayer({
source: new XYZ({ url: def.url(), attributions: '', maxZoom: 7 }),
opacity: 0.2,
zIndex: 5,
})
} }
function buildStationLayer(lat: number, lon: number, dark: boolean): VectorLayer<VectorSource> { function buildStationLayer(lat: number, lon: number, dark: boolean): VectorLayer<VectorSource> {
const center = fromLonLat([lon, lat]) const center = fromLonLat([lon, lat])
const source = new VectorSource() const source = new VectorSource()
const ringStroke = dark ? 'rgba(255,255,255,0.5)' : 'rgba(0,0,0,0.35)' const ringStroke = dark ? 'rgba(255,255,255,0.5)' : 'rgba(0,0,0,0.35)'
for (const nm of [50, 100, 150, 200]) { for (const nm of [50, 100, 150, 200]) {
const ring = new Feature(new CircleGeom(center, nm * NM)) const ring = new Feature(new CircleGeom(center, nm * NM))
ring.setStyle(new Style({ ring.setStyle(new Style({
stroke: new Stroke({ color: ringStroke, width: 1, lineDash: [6, 4] }), stroke: new Stroke({ color: ringStroke, width: 1, lineDash: [6, 4] }),
fill: new Fill({ color: 'transparent' }), fill: new Fill({ color: 'transparent' }),
})) }))
source.addFeature(ring) source.addFeature(ring)
} }
@@ -166,7 +169,7 @@ function buildStationLayer(lat: number, lon: number, dark: boolean): VectorLayer
dot.setStyle(new Style({ dot.setStyle(new Style({
image: new CircleStyle({ image: new CircleStyle({
radius: 7, radius: 7,
fill: new Fill({ color: dark ? '#ffffff' : '#000000' }), fill: new Fill({ color: dark ? '#ffffff' : '#000000' }),
stroke: new Stroke({ color: dark ? '#000000' : '#ffffff', width: 2 }), stroke: new Stroke({ color: dark ? '#000000' : '#ffffff', width: 2 }),
}), }),
})) }))
@@ -176,43 +179,31 @@ function buildStationLayer(lat: number, lon: number, dark: boolean): VectorLayer
} }
onMounted(async () => { onMounted(async () => {
await fetchRadarFrames() const position = await api.position()
const position = await api.position(); current.value = {
latitude: position?.latitude || 0,
longitude: position?.longitude || 0,
}
const lat = position?.latitude || 0 stationLayer = buildStationLayer(current.value.latitude, current.value.longitude, props.dark)
const lon = position?.longitude || 0
stationLayer = buildStationLayer(lat, lon, props.dark)
map = new Map({ map = new Map({
target: mapEl.value!, target: mapEl.value!,
layers: [buildBaseLayer(props.dark), stationLayer], layers: [buildBaseLayer(props.dark), stationLayer],
view: new View({ center: fromLonLat([lon, lat]), zoom: 8, maxZoom: 13 }), interactions: defaultInteractions({ altShiftDragRotate: false, pinchRotate: false }),
view: new View({ center: fromLonLat([current.value.longitude, current.value.latitude]), zoom: 8, maxZoom: 13 }),
controls: [], controls: [],
}) })
aisLayer = new AISLayer(map)
aisLayer.show()
airTraffic = new AirTrafficLayer(map) airTraffic = new AirTrafficLayer(map)
airTraffic.show() airTraffic.show()
range = new RangeLayer(map)
range.show()
for (const id of activeOverlays.value) { refreshRain()
if (id === 'wind') continue radarInterval = setInterval(refreshRain, 5 * 60 * 1000)
const layer = buildOverlayLayer(id)
overlayLayers[id] = layer
map.addLayer(layer)
}
// Sync windy src when OL map finishes moving
map.on('moveend', () => {
if (showWind.value) syncWindSrc()
})
radarInterval = setInterval(async () => {
await fetchRadarFrames()
const layer = overlayLayers['rain']
if (layer) {
layer.setSource(new XYZ({ url: OVERLAYS.find(o => o.id === 'rain')!.url() }))
}
}, 5 * 60 * 1000)
}) })
onUnmounted(() => { onUnmounted(() => {
@@ -325,82 +316,14 @@ watch(() => props.dark, dark => {
backdrop-filter: blur(8px); backdrop-filter: blur(8px);
} }
.radar-timeline {
position: absolute;
bottom: 72px;
left: 50%;
transform: translateX(-50%);
z-index: 100;
display: flex;
align-items: center;
gap: 10px;
background: var(--surface);
border-radius: 16px;
padding: 8px 16px;
box-shadow: 0 2px 12px rgba(0,0,0,0.2);
backdrop-filter: blur(8px);
width: min(600px, calc(100vw - 32px));
}
.slider-wrap {
flex: 1;
display: flex;
flex-direction: column;
gap: 4px;
}
.slider-ticks {
position: relative;
height: 16px;
}
.tick {
position: absolute;
transform: translateX(-50%);
display: flex;
flex-direction: column;
align-items: center;
gap: 2px;
&__line {
width: 1px;
height: 5px;
background: var(--border);
}
&__label {
font-size: 9px;
color: var(--text-muted, #888);
white-space: nowrap;
}
&.nowcast &__line { background: #6ab4ff; }
&.nowcast &__label { color: #6ab4ff; }
}
input[type='range'] {
width: 100%;
accent-color: var(--accent);
cursor: pointer;
}
.timeline-label {
font-size: 12px;
color: var(--text);
min-width: 42px;
text-align: right;
flex-shrink: 0;
}
.desktop { display: flex; } .desktop { display: flex; }
.mobile { display: none; } .mobile { display: none; }
@media (max-width: 768px) { @media (max-width: 768px) {
.desktop { display: none; } .desktop { display: none; }
.mobile { display: flex; } .mobile { display: flex; }
.radar-timeline { bottom: 10px; } .overlay-toggles { bottom: 10px; }
.overlay-toggles { bottom: 70px; } .layers-menu { bottom: 10px; }
.layers-menu { bottom: 70px; }
} }
</style> </style>
@@ -408,7 +331,6 @@ input[type='range'] {
<div class="map-wrap"> <div class="map-wrap">
<div ref="mapEl" class="map-el" /> <div ref="mapEl" class="map-el" />
<!-- Windy animated wind iframe -->
<iframe <iframe
v-if="showWind" v-if="showWind"
class="wind-iframe" class="wind-iframe"
@@ -417,32 +339,6 @@ input[type='range'] {
allowfullscreen allowfullscreen
/> />
<!-- Radar Timeline -->
<div v-if="activeOverlays.has('rain') && radarFrames.length" class="radar-timeline">
<div class="slider-wrap">
<div class="slider-ticks">
<div
v-for="i in hourTickIndices" :key="i"
class="tick"
:class="{ nowcast: i >= nowcastStartIndex }"
:style="{ left: tickPercent(i) + '%' }"
>
<div class="tick__line" />
<span class="tick__label">{{ hourLabel(radarFrames[i]) }}</span>
</div>
</div>
<input
type="range"
:min="0"
:max="radarFrames.length - 1"
:value="radarFrameIndex"
@input="onSliderInput"
/>
</div>
<span class="timeline-label">{{ frameLabel(radarFrames[radarFrameIndex]) }}</span>
</div>
<!-- Desktop toggles -->
<div class="overlay-toggles desktop"> <div class="overlay-toggles desktop">
<button class="overlay-btn" :class="{ active: atActive }" @click="toggleAT"> <button class="overlay-btn" :class="{ active: atActive }" @click="toggleAT">
Traffic Traffic
@@ -457,7 +353,6 @@ input[type='range'] {
</button> </button>
</div> </div>
<!-- Mobile layers button + dropdown -->
<div class="layers-menu mobile"> <div class="layers-menu mobile">
<button class="layers-btn" @click="showOverlays = !showOverlays"> <button class="layers-btn" @click="showOverlays = !showOverlays">
Layers Layers

View File

@@ -1,160 +1,155 @@
<script setup lang="ts"> <script setup lang="ts">
import { computed, ref, onMounted } from 'vue' import {computed, ref, onMounted} from 'vue';
import { Line } from 'vue-chartjs' import {Line} from 'vue-chartjs';
import { import {
Chart as ChartJS, CategoryScale, LinearScale, PointElement, Chart as ChartJS, CategoryScale, LinearScale, PointElement,
LineElement, Tooltip, Legend, Filler, type ChartOptions LineElement, Tooltip, Legend, Filler, type ChartOptions
} from 'chart.js' } from 'chart.js';
import { METRICS, formatValue } from '../services/units' import {METRICS, formatValue} from '../services/units';
import { fetchHistoricHourly } from '../services/weather' import type {DataRow} from '../services/api';
import type { DataRow } from '../services/api' import {api} from '../services/api';
import { api } from '../services/api'
ChartJS.register(CategoryScale, LinearScale, PointElement, LineElement, Tooltip, Legend, Filler) ChartJS.register(CategoryScale, LinearScale, PointElement, LineElement, Tooltip, Legend, Filler);
const props = defineProps<{ metricKey: string; currentData: DataRow }>() const props = defineProps<{metricKey: string; currentData: DataRow}>();
const historic = ref<DataRow[]>([]) const historic = ref<DataRow[]>([]);
const forecast = ref<DataRow[]>([]) const forecast = ref<DataRow[]>([]);
const loading = ref(true) const loading = ref(true);
const meta = computed(() => METRICS[props.metricKey]) const meta = computed(() => METRICS[props.metricKey]);
onMounted(async () => { onMounted(async () => {
const now = new Date() const start = new Date(Date.now() - 24 * 3600000);
const start = new Date(now.getTime() - 24 * 3600000).toISOString() const end = new Date(Date.now() + 48 * 3600000);
const end = new Date(now.getTime() + 48 * 3600000).toISOString() const hourly = await api.hourly(start, end);
const [hist, fore] = await Promise.allSettled([ historic.value = hourly.filter((h: any) => new Date(h.time).getTime() <= Date.now());
fetchHistoricHourly(start, now.toISOString()), forecast.value = hourly.filter((h: any) => new Date(h.time).getTime() > Date.now());
api.hourly(now.toISOString(), end), loading.value = false;
]) });
if (hist.status === 'fulfilled') historic.value = hist.value.filter(r => r[props.metricKey] != null)
if (fore.status === 'fulfilled') forecast.value = fore.value.filter(r => r[props.metricKey] != null)
loading.value = false
})
const nowLabel = computed(() => { const nowLabel = computed(() => {
const d = new Date() const d = new Date();
return `${d.getHours().toString().padStart(2,'0')}:${d.getMinutes().toString().padStart(2,'0')}` return `${d.getHours().toString().padStart(2, '0')}:${d.getMinutes().toString().padStart(2, '0')}`;
}) });
const chartData = computed(() => { const chartData = computed(() => {
const color = meta.value?.color ?? '#38bdf8' const color = meta.value?.color ?? '#38bdf8';
const histLabels = historic.value.map(r => r.time as string) const histLabels = historic.value.map(r => r.time as string);
const foreLabels = forecast.value.map(r => r.time as string) const foreLabels = forecast.value.map(r => r.time as string);
const histVals = historic.value.map(r => r[props.metricKey] as number) const histVals = historic.value.map(r => r[props.metricKey] as number);
const foreVals = forecast.value.map(r => r[props.metricKey] as number) const foreVals = forecast.value.map(r => r[props.metricKey] as number);
const currentVal = props.currentData[props.metricKey] as number | null const currentVal = props.currentData[props.metricKey] as number | null;
const allLabels = [...histLabels, nowLabel.value, ...foreLabels] const allLabels = [...histLabels, nowLabel.value, ...foreLabels];
const histData = [...histVals, currentVal, ...foreVals.map(() => null)] const histData = [...histVals, currentVal, ...foreVals.map(() => null)];
const foreData = [...histVals.map(() => null), currentVal, ...foreVals] const foreData = [...histVals.map(() => null), currentVal, ...foreVals];
return { return {
labels: allLabels, labels: allLabels,
datasets: [ datasets: [
{ {
label: 'Historic', label: 'Historic',
data: histData, data: histData,
borderColor: color, borderColor: color,
backgroundColor: `${color}22`, backgroundColor: `${color}22`,
borderWidth: 2, borderWidth: 2,
pointRadius: 0, pointRadius: 0,
tension: 0.3, tension: 0.3,
fill: true, fill: true,
spanGaps: false, spanGaps: false,
}, },
{ {
label: 'Forecast', label: 'Forecast',
data: foreData, data: foreData,
borderColor: color, borderColor: color,
backgroundColor: 'transparent', backgroundColor: 'transparent',
borderWidth: 2, borderWidth: 2,
borderDash: [6, 4], borderDash: [6, 4],
pointRadius: 0, pointRadius: 0,
tension: 0.3, tension: 0.3,
fill: false, fill: false,
spanGaps: false, spanGaps: false,
}, },
{ {
label: 'Now', label: 'Now',
data: allLabels.map(l => l === nowLabel.value ? currentVal : null), data: allLabels.map(l => l === nowLabel.value ? currentVal : null),
borderColor: '#ffffff88', borderColor: '#ffffff88',
backgroundColor: color, backgroundColor: color,
pointRadius: 6, pointRadius: 6,
pointHoverRadius:8, pointHoverRadius: 8,
borderWidth: 0, borderWidth: 0,
showLine: false, showLine: false,
spanGaps: false, spanGaps: false,
} }
] ]
} };
}) });
const chartOptions = computed<ChartOptions<'line'>>(() => ({ const chartOptions = computed<ChartOptions<'line'>>(() => ({
responsive: true, responsive: true,
maintainAspectRatio: false, maintainAspectRatio: false,
interaction: { mode: 'index', intersect: false }, interaction: {mode: 'index', intersect: false},
plugins: { plugins: {
legend: { display: false }, legend: {display: false},
tooltip: { tooltip: {
callbacks: { callbacks: {
label: ctx => formatValue(props.metricKey, ctx.parsed.y), label: ctx => formatValue(props.metricKey, ctx.parsed.y),
} }
} }
}, },
scales: { scales: {
x: { x: {
ticks: { ticks: {
color: 'var(--text-muted)', color: 'var(--text-muted)',
maxTicksLimit: 12, maxTicksLimit: 12,
maxRotation: 0, maxRotation: 0,
callback(val, i) { callback(val, i) {
const lbl = this.getLabelForValue(i) const lbl = this.getLabelForValue(i);
return lbl?.length === 5 && lbl.endsWith(':00') ? lbl : '' return lbl?.length === 5 && lbl.endsWith(':00') ? lbl : '';
} }
}, },
grid: { color: 'var(--border)' }, grid: {color: 'var(--border)'},
}, },
y: { y: {
ticks: { color: 'var(--text-muted)', callback: v => formatValue(props.metricKey, v as number) }, ticks: {color: 'var(--text-muted)', callback: v => formatValue(props.metricKey, v as number)},
grid: { color: 'var(--border)' }, grid: {color: 'var(--border)'},
} }
}, },
annotation: { annotation: {
annotations: { annotations: {
nowLine: { nowLine: {
type: 'line', type: 'line',
xMin: nowLabel.value, xMin: nowLabel.value,
xMax: nowLabel.value, xMax: nowLabel.value,
borderColor: '#ffffff44', borderColor: '#ffffff44',
borderWidth: 1, borderWidth: 1,
borderDash: [4, 4], borderDash: [4, 4],
} }
} }
} }
})) }));
</script> </script>
<style scoped lang="scss"> <style scoped lang="scss">
.chart-wrap { .chart-wrap {
position: relative; position: relative;
height: 260px; height: 260px;
width: 100%; width: 100%;
} }
.loading { .loading {
display: flex; display: flex;
align-items: center; align-items: center;
justify-content: center; justify-content: center;
height: 260px; height: 260px;
color: var(--text-muted); color: var(--text-muted);
font-size: 14px; font-size: 14px;
} }
</style> </style>
<template> <template>
<div v-if="loading" class="loading">Loading chart</div> <div v-if="loading" class="loading">Loading chart</div>
<div v-else class="chart-wrap"> <div v-else class="chart-wrap">
<Line :data="chartData" :options="chartOptions" /> <Line :data="chartData" :options="chartOptions"/>
</div> </div>
</template> </template>

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<script setup lang="ts">
import {inject} from 'vue';
const props = defineProps<{label: string; value: any; metricKey?: string; data?: any}>();
const openGraph = inject<(key: string, data: any) => void>('openGraph');
</script>
<style scoped lang="scss">
.row {
display: flex;
justify-content: space-between;
align-items: center;
padding: 5px 12px;
font-size: 12px;
border-radius: 6px;
transition: background 0.15s;
&.clickable {
cursor: pointer;
&:hover { background: var(--hover); }
}
.label { color: var(--text-muted); }
.value { font-weight: 600; color: var(--text); }
}
</style>
<template>
<div class="row" :class="{clickable: !!metricKey}" @click="metricKey && openGraph?.(metricKey, data)">
<span class="label">{{ label }}</span>
<span class="value">{{ value ?? '—' }}</span>
</div>
</template>

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<script setup lang="ts">
import Loading from '@/components/Loading.vue';
import {formatDate} from '@ztimson/utils';
import {ref, watchEffect} from 'vue';
import {useWeather} from '../services/api';
import MetricRow from './MetricRow.vue';
const {current: d} = useWeather();
const canvasRef = ref<HTMLCanvasElement | null>(null);
watchEffect(() => {
if(!d.value || !canvasRef.value) return;
const canvas = canvasRef.value;
const size = 64;
canvas.width = size;
canvas.height = size;
const ctx = canvas.getContext('2d')!;
const cx = size / 2;
const cy = size / 2;
const r = size / 2 - 3;
// Background circle
ctx.beginPath();
ctx.arc(cx, cy, r, 0, 2 * Math.PI);
ctx.fillStyle = '#1c1c1c';
ctx.fill();
ctx.strokeStyle = '#666';
ctx.lineWidth = 1;
ctx.stroke();
const illumination = (d.value.moon_illumination ?? 0) / 100;
const phase = d.value.moon_phase as string;
const phaseMap: Record<string, number> = {
'New Moon': 0, 'Waxing Crescent': 0.125, 'First Quarter': 0.25,
'Waxing Gibbous': 0.375, 'Full Moon': 0.5, 'Waning Gibbous': 0.625,
'Last Quarter': 0.75, 'Waning Crescent': 0.875,
};
const phaseVal = phaseMap[phase] ?? 0;
if(illumination > 0.01) {
ctx.save();
ctx.beginPath();
ctx.arc(cx, cy, r, 0, 2 * Math.PI);
ctx.clip();
ctx.fillStyle = '#e8e8c0';
ctx.beginPath();
if(illumination >= 0.99) {
ctx.arc(cx, cy, r, 0, 2 * Math.PI);
} else if(phaseVal < 0.5) {
// Waxing: right side lit, growing
ctx.arc(cx, cy, r, -Math.PI / 2, Math.PI / 2, false);
const ellipseWidth = (phaseVal * 4 - 1) * r;
ctx.ellipse(cx, cy, Math.abs(ellipseWidth), r, 0, Math.PI / 2, -Math.PI / 2, ellipseWidth < 0);
} else {
// Waning: left side lit, shrinking
ctx.arc(cx, cy, r, Math.PI / 2, -Math.PI / 2, false);
const ellipseWidth = (3 - phaseVal * 4) * r;
ctx.ellipse(cx, cy, Math.abs(ellipseWidth), r, 0, -Math.PI / 2, Math.PI / 2, ellipseWidth < 0);
}
ctx.closePath();
ctx.fill();
ctx.restore();
}
});
</script>
<template>
<div class="card">
<div class="card-title">🌙 Moon</div>
<div class="flex-r align-items-center gap-3 p-2">
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 40px">
<Loading />
</div>
<template v-else>
<canvas ref="canvasRef" style="width: 40px; height: 40px; border-radius: 50%;" />
<div class="flex-c">
<span style="font-size: 13px; font-weight: 600; color: var(--text)">{{ d.moon_phase }}</span>
<span style="font-size: 11px; color: var(--text-muted)">{{ d.moon_illumination?.toFixed(1) }}% illuminated</span>
</div>
</template>
</div>
<div class="divider" />
<div v-if="!d" class="flex-c p-2 gap-2">
<div class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<div class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
</div>
<template v-else>
<MetricRow label="Next Full Moon" :value="formatDate('MMM D', d.moon_full)" />
<MetricRow label="Next New Moon" :value="formatDate('MMM D', d.moon_new)" />
</template>
</div>
</template>

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<script setup lang="ts">
import Loading from '@/components/Loading.vue';
import {getPressureTrend} from '@/services/units.ts';
import {inject} from 'vue';
import {useWeather} from '../services/api';
const openGraph = inject<(key: string) => void>('openGraph');
const {current: d} = useWeather();
</script>
<style scoped lang="scss">
.precip-card {
position: relative;
border-radius: 12px;
background: var(--surface);
border: 1px solid var(--border);
padding: 14px;
display: flex;
flex-direction: column;
gap: 12px;
}
.card-title {
font-size: 13px;
font-weight: 700;
color: var(--text);
}
.divider {
height: 1px;
background: var(--border);
}
.stat-grid {
display: grid;
grid-template-columns: repeat(auto-fill, minmax(90px, 1fr));
gap: 10px;
}
.stat {
display: flex;
flex-direction: column;
gap: 2px;
cursor: pointer;
border-radius: 8px;
padding: 4px 6px;
margin: -4px -6px;
transition: background 0.15s;
&:hover { background: var(--hover); }
}
.stat-label {
font-size: 10px;
text-transform: uppercase;
letter-spacing: 0.06em;
color: var(--text-muted);
}
.stat-value {
font-size: 14px;
font-weight: 600;
color: var(--text);
}
</style>
<template>
<div class="precip-card">
<div class="card-title">🌧 Precipitation</div>
<div class="stat-grid">
<div class="stat" @click="openGraph?.('precipitation_chance')">
<span class="stat-label">Rain</span>
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">
<template v-if="d.raining == null"></template>
<template v-else-if="d.raining">Raining</template>
<template v-else>{{d.precipitation_chance}}<span class="fg-muted">%</span></template>
</span>
</div>
<div class="stat" @click="openGraph?.('lightning_rate')">
<span class="stat-label">Lightning</span>
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ d.lightning_rate ?? '—' }}<span v-if="d.lightning_rate" class="fg-muted">/hr</span></span>
</div>
<div class="stat" @click="openGraph?.('lightning_distance')">
<span class="stat-label">Distance</span>
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ d.lightning_distance ?? '—' }} <span v-if="d.lightning_distance" class="fg-muted">km</span></span>
</div>
</div>
<div class="divider" />
<div class="stat-grid">
<div class="stat" @click="openGraph?.('pressure_hpa')">
<span class="stat-label">Pressure</span>
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ d.pressure_hpa?.toFixed(1) ?? '—' }} <span class="fg-muted">hpa</span></span>
</div>
<div class="stat" @click="openGraph?.('pressure_hpa')">
<span class="stat-label">Pressure (SLP)</span>
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ d.pressure_slp?.toFixed(1) ?? '—' }} <span v-if="d.pressure_slp" class="fg-muted">({{getPressureTrend(d.pressure_rate)}})</span></span>
</div>
<div class="stat" @click="openGraph?.('precipitation')">
<span class="stat-label">Precipitation</span>
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ d.precipitation?.toFixed(1) ?? '—' }} <span v-if="d.precipitation != null" class="fg-muted">mm</span></span>
</div>
<div class="stat">
<span class="stat-label">Dew Point</span>
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ d.dew_point?.toFixed(1) ?? '—' }}<span v-if="d.dew_point" class="fg-muted">°C</span></span>
</div>
<div class="stat">
<span class="stat-label">Frost Risk</span>
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ d.frost_risk ?? '—' }}</span>
</div>
<div class="stat" @click="openGraph?.('accumulation')">
<span class="stat-label">Accumulation</span>
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ d.accumulation?.toFixed(1) ?? '—' }} <span v-if="d.accumulation != null" class="fg-muted">cm</span></span>
</div>
</div>
</div>
</template>

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<script setup lang="ts">
import Loading from '@/components/Loading.vue';
import { ref, onMounted, onUnmounted } from 'vue';
import { api } from '../services/api';
import MetricRow from './MetricRow.vue';
const d = ref<any>(null);
const canvas = ref<HTMLCanvasElement | null>(null);
const AXES = [
{ key: 'seismic_x', label: 'X', color: '#ccc' },
{ key: 'seismic_y', label: 'Y', color: '#ccc' },
{ key: 'seismic_z', label: 'Z', color: '#ccc' },
];
const W = 640, BAND = 80, H = BAND * AXES.length, MAX_PTS = 120;
const SEG_W = W / (MAX_PTS - 1);
const SUB = 4;
const RIGHT_PAD = 2 * SEG_W;
let interval: ReturnType<typeof setInterval>;
let rafId: number;
let drawProgress = 0;
let lastTimestamp = 0;
const ANIM_DURATION = 1200;
type Pt = { x: number; y: number };
const traces = AXES.map(() => ({
history: [] as number[],
prevMax: 1.0,
buffer: [] as Pt[],
}));
function buildBuffer(t: (typeof traces)[number], band: number) {
const pts = t.history;
if (pts.length < 2) return;
const mid = band * BAND + BAND / 2, amp = BAND / 2 - 6;
const newMax = Math.max(...pts, 1.0);
t.prevMax = t.prevMax + (newMax - t.prevMax) * 0.15; // eased amplitude scale
const tipX = W - RIGHT_PAD;
const buf: Pt[] = [];
pts.forEach((v, i) => {
const prev = pts[i - 1] ?? v;
const prevNorm = prev === 0 ? 0 : (prev / t.prevMax) * amp;
const norm = v === 0 ? 0 : (v / t.prevMax) * amp;
const baseX = tipX - (pts.length - i) * SEG_W;
const s = SEG_W / SUB;
// one oscillation per value, amplitude fading prevNorm → norm
const a0 = prevNorm * 0.75 + norm * 0.25;
const a1 = prevNorm * 0.25 + norm * 0.75;
buf.push({ x: baseX + s, y: mid - a0 }); // up
buf.push({ x: baseX + s * 2, y: mid - a1 }); // up peak
buf.push({ x: baseX + s * 3, y: mid + norm }); // down
buf.push({ x: baseX + s * 4, y: mid }); // back to exact center ✓
});
t.buffer = buf;
}
function drawTrace(ctx: CanvasRenderingContext2D, t: (typeof traces)[number], color: string) {
const buf = t.buffer;
if (buf.length <= SUB) return;
// slide everything left as the new segment draws in
const slide = (1 - drawProgress) * SEG_W;
const settledCount = buf.length - SUB;
const anchor = buf[settledCount - 1];
const animFrac = drawProgress * (SUB + 1);
const animFloor = Math.floor(animFrac);
const animRemainder = animFrac - animFloor;
ctx.beginPath();
ctx.strokeStyle = color;
ctx.lineWidth = 1;
ctx.lineJoin = 'round';
for (let i = 0; i < settledCount; i++) {
const p = buf[i];
i === 0 ? ctx.moveTo(p.x + slide, p.y) : ctx.lineTo(p.x + slide, p.y);
}
const animPoints = [anchor, ...buf.slice(settledCount)];
for (let i = 1; i <= animFloor && i < animPoints.length; i++) {
ctx.lineTo(animPoints[i].x + slide, animPoints[i].y);
}
if (animFloor < animPoints.length - 1 && animRemainder > 0) {
const curr = animPoints[animFloor];
const next = animPoints[animFloor + 1];
ctx.lineTo(
curr.x + (next.x - curr.x) * animRemainder + slide,
curr.y + (next.y - curr.y) * animRemainder,
);
}
ctx.stroke();
}
function draw(timestamp: number) {
const ctx = canvas.value?.getContext('2d');
if (!ctx) { rafId = requestAnimationFrame(draw); return; }
const dt = Math.min(timestamp - lastTimestamp, 100);
lastTimestamp = timestamp;
drawProgress = Math.min(1, drawProgress + dt / ANIM_DURATION);
ctx.clearRect(0, 0, W, H);
AXES.forEach((_, i) => {
const mid = i * BAND + BAND / 2;
// Axis label — top-left of each band
ctx.font = '16px monospace';
ctx.fillStyle = AXES[i].color;
ctx.globalAlpha = 0.6;
ctx.fillText(AXES[i].label, W - 20, i * BAND + 14);
ctx.globalAlpha = 1;
// Center line per band — full width
ctx.beginPath();
ctx.strokeStyle = 'rgba(255,255,255,0.1)';
ctx.lineWidth = 1;
ctx.moveTo(0, mid);
ctx.lineTo(W, mid);
ctx.stroke();
drawTrace(ctx, traces[i], AXES[i].color);
});
rafId = requestAnimationFrame(draw);
}
async function poll() {
d.value = await api.current('seismic_magnitude,seismic_x,seismic_y,seismic_z');
AXES.forEach((axis, i) => {
const t = traces[i];
t.history.push(d.value[axis.key] ?? 0);
if (t.history.length > MAX_PTS) t.history.shift();
buildBuffer(t, i);
});
drawProgress = 0;
}
onMounted(async () => {
await poll();
lastTimestamp = performance.now();
rafId = requestAnimationFrame(draw);
interval = setInterval(poll, 1000);
});
onUnmounted(() => {
clearInterval(interval);
cancelAnimationFrame(rafId);
});
</script>
<style scoped lang="scss">
canvas { width: 100%; height: 180px; }
</style>
<template>
<div class="card">
<div class="card-title">🫨 Seismic</div>
<div v-if="!d" class="p-2">
<div class="w-100 pos-rel br-2 overflow-hidden mb-2" style="height: 30px">
<Loading />
</div>
<div class="w-100 pos-rel br-2 overflow-hidden" style="height: 150px">
<Loading />
</div>
</div>
<template v-else>
<MetricRow label="Magnitude" :value="d.seismic_magnitude?.toFixed(1)" metric-key="seismic_magnitude" :data="d" />
<canvas ref="canvas" :width="W" :height="H" />
</template>
</div>
</template>

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<script setup lang="ts">
import {BASE} from '@/services/api.ts';
import { ref, computed, watch, onMounted, onUnmounted } from 'vue'
const props = defineProps<{ boat: any; position: { x: number; y: number } }>()
const emit = defineEmits<{ (e: 'close'): void; (e: 'bringToFront'): void }>()
const SPEED_UNITS = {
knots: { label: 'KTS', convert: (v: number) => v.toFixed(1) },
kph: { label: 'KPH', convert: (v: number) => (v * 1.852).toFixed(1) },
mph: { label: 'MPH', convert: (v: number) => (v * 1.15078).toFixed(1) },
}
const UNIT_KEY = 'ais_units'
function loadUnits() {
const s = localStorage.getItem(UNIT_KEY)
return s ? JSON.parse(s) : { speed: 'knots' }
}
const prefs = ref(loadUnits())
function cycleSpeed() {
const keys = Object.keys(SPEED_UNITS)
const p = loadUnits()
p.speed = keys[(keys.indexOf(p.speed) + 1) % keys.length]
prefs.value = { ...p }
localStorage.setItem(UNIT_KEY, JSON.stringify(p))
}
const speed = computed(() => SPEED_UNITS[prefs.value.speed as keyof typeof SPEED_UNITS])
const name = computed(() => props.boat.shipname?.trim() || props.boat.callsign?.trim() || '-')
const heading = computed(() => props.boat.heading ?? props.boat.course ?? 0)
const speedVal = computed(() => speed.value.convert(props.boat.speed ?? 0))
const photoError = ref(false)
// ── Drag ──────────────────────────────────────────────────────────────────────
const pos = ref({ ...props.position })
const isDragging = ref(false)
const dragStart = ref({ mx: 0, my: 0, ex: 0, ey: 0 })
const longPressTimer = ref<number | null>(null)
const header = ref<HTMLElement | null>(null)
function onMouseDown(e: MouseEvent) {
if ((e.target as HTMLElement).classList.contains('sp-close')) return
emit('bringToFront')
isDragging.value = true
dragStart.value = { mx: e.clientX, my: e.clientY, ex: pos.value.x, ey: pos.value.y }
e.preventDefault()
}
function onMouseMove(e: MouseEvent) {
if (!isDragging.value) return
pos.value.x = dragStart.value.ex + (e.clientX - dragStart.value.mx)
pos.value.y = dragStart.value.ey + (e.clientY - dragStart.value.my)
}
function onMouseUp() { isDragging.value = false }
function onTouchStart(e: TouchEvent) {
if ((e.target as HTMLElement).classList.contains('sp-close')) return
const touch: any = e.touches[0]
const sx = touch.clientX, sy = touch.clientY
longPressTimer.value = window.setTimeout(() => {
emit('bringToFront')
isDragging.value = true
dragStart.value = { mx: sx, my: sy, ex: pos.value.x, ey: pos.value.y }
if (header.value) header.value.style.opacity = '0.8'
}, 500)
}
function onTouchMove(e: TouchEvent) {
if (!isDragging.value) return
const touch: any = e.touches[0]
pos.value.x = dragStart.value.ex + (touch.clientX - dragStart.value.mx)
pos.value.y = dragStart.value.ey + (touch.clientY - dragStart.value.my)
e.preventDefault()
}
function onTouchEnd() {
if (longPressTimer.value) { clearTimeout(longPressTimer.value); longPressTimer.value = null }
if (isDragging.value && header.value) header.value.style.opacity = '1'
isDragging.value = false
}
onMounted(() => {
document.addEventListener('mousemove', onMouseMove)
document.addEventListener('mouseup', onMouseUp)
document.addEventListener('touchmove', onTouchMove, { passive: false })
document.addEventListener('touchend', onTouchEnd)
document.addEventListener('touchcancel', onTouchEnd)
})
onUnmounted(() => {
document.removeEventListener('mousemove', onMouseMove)
document.removeEventListener('mouseup', onMouseUp)
document.removeEventListener('touchmove', onTouchMove)
document.removeEventListener('touchend', onTouchEnd)
document.removeEventListener('touchcancel', onTouchEnd)
})
const compass = computed(() => {
const hdg = heading.value
const course = props.boat.cog ?? hdg
const tapeTicks: string[] = []
for (let offset = -60; offset <= 60; offset += 5) {
const deg = ((hdg + offset) % 360 + 360) % 360
const x = 100 + (offset / 60) * 90
const major = offset % 30 === 0
const mid = offset % 15 === 0
if (major) {
const lbl = ({ 0: 'N', 45: 'NE', 90: 'E', 135: 'SE', 180: 'S', 225: 'SW', 270: 'W', 315: 'NW' } as any)[deg]
?? String(deg).padStart(3, '0')
tapeTicks.push(`
<line x1="${x}" y1="22" x2="${x}" y2="38" stroke="#0ff" stroke-width="2"/>
<text x="${x}" y="50" text-anchor="middle" fill="#0ff" font-size="11" font-weight="bold">${lbl}</text>
`)
} else if (mid) {
tapeTicks.push(`<line x1="${x}" y1="26" x2="${x}" y2="38" stroke="#0ff" stroke-width="1.5"/>`)
} else {
tapeTicks.push(`<line x1="${x}" y1="30" x2="${x}" y2="38" stroke="#0ff" stroke-width="1"/>`)
}
}
const CX = 100, CY = 140
const R = 68
const rudder = Math.max(-30, Math.min(30, ((course - hdg + 540) % 360) - 180))
const rudX = CX + (rudder / 30) * 40
const courseRel = ((course - hdg + 540) % 360) - 180
const courseRad = courseRel * Math.PI / 180
const cNeedleX = CX + 52 * Math.sin(courseRad)
const cNeedleY = CY - 52 * Math.cos(courseRad)
const bearRel = ((course - hdg + 540) % 360) - 180
const bearRad = bearRel * Math.PI / 180
const bNeedleX = CX + 52 * Math.sin(bearRad)
const bNeedleY = CY - 52 * Math.cos(bearRad)
const ringTicks = Array.from({ length: 36 }, (_, i) => {
const a = i * 10
const rad = (a - 90) * Math.PI / 180
const r1 = a % 30 === 0 ? R - 11 : R - 5
const sw = a % 30 === 0 ? 2 : 1
const x1 = CX + r1 * Math.cos(rad)
const y1 = CY + r1 * Math.sin(rad)
const x2 = CX + R * Math.cos(rad)
const y2 = CY + R * Math.sin(rad)
return `<line x1="${x1}" y1="${y1}" x2="${x2}" y2="${y2}" stroke="#0ff" stroke-width="${sw}" opacity="0.5"/>`
}).join('')
const cardinals = (['N','E','S','W'] as const).map((lbl, i) => {
const a = i * 90
const rad = (a - 90) * Math.PI / 180
const x = CX + (R - 18) * Math.cos(rad)
const y = CY + (R - 18) * Math.sin(rad) + 4
return `<text x="${x}" y="${y}" text-anchor="middle" fill="#0ff" font-size="10" font-weight="bold" opacity="0.8">${lbl}</text>`
}).join('')
return `
<svg width="200" height="210" viewBox="0 0 200 210">
<rect x="10" y="18" width="180" height="40" fill="rgba(0,20,40,0.95)" rx="3"/>
<line x1="10" y1="18" x2="190" y2="18" stroke="#0ff" stroke-width="1"/>
<line x1="10" y1="58" x2="190" y2="58" stroke="#0ff" stroke-width="1"/>
${tapeTicks.join('')}
<polygon points="100,20 96,12 104,12" fill="#ff0"/>
<circle cx="${CX}" cy="${CY}" r="${R}" fill="rgba(0,20,40,0.6)" stroke="#0ff" stroke-width="1.5"/>
<circle cx="${CX}" cy="${CY}" r="${R - 20}" fill="none" stroke="rgba(0,255,255,0.15)" stroke-width="1"/>
<g transform="rotate(${-hdg}, ${CX}, ${CY})">
${ringTicks}
${cardinals}
</g>
<line x1="${CX}" y1="${CY}" x2="${bNeedleX}" y2="${bNeedleY}" stroke="#ff0" stroke-width="1.5" stroke-dasharray="4,3"/>
<circle cx="${bNeedleX}" cy="${bNeedleY}" r="2.5" fill="#ff0"/>
<line x1="${CX}" y1="${CY}" x2="${cNeedleX}" y2="${cNeedleY}" stroke="#0f0" stroke-width="2.5"/>
<circle cx="${cNeedleX}" cy="${cNeedleY}" r="3" fill="#0f0"/>
<polygon points="${CX},${CY - 9} ${CX - 4},${CY + 5} ${CX},${CY + 2} ${CX + 4},${CY + 5}" fill="#fff" stroke="#0ff" stroke-width="1"/>
<rect x="80" y="${CY + 23}" width="40" height="6" fill="rgba(0,50,70,0.9)" rx="3"/>
<rect x="${rudX - 4}" y="${CY + 22}" width="8" height="8" fill="#ff0" rx="1"/>
<line x1="10" y1="${CY + 55}" x2="20" y2="${CY + 55}" stroke="#0f0" stroke-width="2"/>
<text x="25" y="${CY + 57}" fill="#888" font-size="9">COG</text>
<line x1="10" y1="${CY + 65}" x2="20" y2="${CY + 65}" stroke="#ff0" stroke-width="1.5" stroke-dasharray="4,3"/>
<text x="25" y="${CY + 67}" fill="#888" font-size="9">BRG</text>
</svg>
`
})
</script>
<template>
<div class="ship-popup" :style="{ left: pos.x + 'px', top: pos.y + 'px' }">
<div ref="header" class="sp-header" @mousedown="onMouseDown" @touchstart.passive="onTouchStart">
<h3 class="sp-name">
🚢
<span>{{ name.toUpperCase() }}</span>
<span class="sp-mmsi"> / {{ boat.mmsi }}</span>
</h3>
<button class="sp-close" @click.stop="emit('close')">×</button>
</div>
<div class="sp-meta">
<div class="flex-c">
<span>{{ boat.operator || boat.owner || 'Unknown Owner' }}</span>
<span>{{ boat.country || 'Unknown Country' }}</span>
</div>
<div class="flex-c align-x-end">
<span style="text-transform:capitalize">{{ boat.type || 'Unknown' }}</span>
<span>{{ boat.ship_type || 'Unknown Class' }}</span>
</div>
</div>
<!-- Photo -->
<div v-if="!photoError" class="sp-photo-wrap">
<img class="sp-photo" :src="BASE + '/api/ais-iamge/' + boat.mmsi" :alt="name" @error="photoError = true" />
</div>
<div class="sp-body">
<div class="sp-gauges">
<div class="sp-gauge-wrap">
<div class="sp-gauge-label">Speed</div>
<div class="sp-gauge" @click.stop="cycleSpeed">
<span class="sp-gauge-val">{{ speedVal }}</span>
<span class="sp-gauge-unit">{{ speed.label }}</span>
</div>
</div>
<div class="sp-gauge-wrap">
<div class="sp-gauge-label">Course</div>
<div class="sp-gauge">
<span class="sp-gauge-val">{{ boat.course != null ? boat.course.toFixed(0) : '—' }}</span>
<span v-if="boat.course != null" class="sp-gauge-unit">°</span>
</div>
</div>
<div class="sp-gauge-wrap">
<div class="sp-gauge-label">Heading</div>
<div class="sp-gauge">
<span class="sp-gauge-val">{{ boat.heading != null ? boat.heading.toFixed(0) : '—' }}</span>
<span v-if="boat.heading != null" class="sp-gauge-unit">°</span>
</div>
</div>
</div>
<div class="sp-compass" v-html="compass"/>
</div>
</div>
</template>
<style scoped>
.ship-popup {
position: fixed;
z-index: 100;
pointer-events: auto;
background: rgba(0,0,0,0.88);
border: 1px solid rgba(200,200,220,0.3);
border-radius: 8px;
box-shadow: 0 4px 24px rgba(0,0,0,0.5);
overflow: hidden;
font-family: monospace;
color: #ccc;
min-width: 320px;
max-width: 360px;
}
.sp-header {
position: relative;
padding: 12px 16px;
border-bottom: 1px solid rgba(200,200,220,0.2);
cursor: move;
user-select: none;
-webkit-user-select: none;
}
.sp-name {
margin: 0 24px 0 0;
color: #7eeee1;
font-size: 16px;
}
.sp-mmsi { color: white; }
.sp-meta {
font-size: 11px;
color: #888;
display: flex;
justify-content: space-between;
gap: 8px;
padding: 12px 16px;
border-bottom: 1px solid rgba(200,200,220,0.2);
}
.sp-close {
position: absolute;
top: 8px;
right: 8px;
background: rgba(255,255,255,0.2);
border: none;
color: white;
width: 24px;
height: 24px;
border-radius: 4px;
cursor: pointer;
font-size: 16px;
display: flex;
align-items: center;
justify-content: center;
transition: background 0.2s;
}
.sp-close:hover { background: rgba(255,255,255,0.35); }
/* ── Photo ── */
.sp-photo-wrap {
width: 100%;
height: 140px;
background: #111;
border-bottom: 1px solid rgba(200,200,220,0.15);
overflow: hidden;
}
.sp-photo {
width: 100%;
height: 140px;
object-fit: cover;
display: block;
}
.sp-body {
display: flex;
gap: 16px;
padding: 12px 16px;
}
.sp-gauges { flex: 0 0 110px; display: flex; flex-direction: column; gap: 0; }
.sp-gauge-wrap { margin-bottom: 12px; }
.sp-gauge-label {
color: #888;
font-size: 11px;
font-weight: bold;
margin-bottom: 3px;
}
.sp-gauge {
padding: 6px;
background: rgba(0,0,0,0.95);
border: 2px solid #0ff;
border-radius: 3px;
cursor: pointer;
display: flex;
align-items: flex-end;
justify-content: center;
gap: 4px;
transition: border-color 0.15s;
}
.sp-gauge:hover { border-color: #0f0; }
.sp-gauge-val { font-size: 20px; font-weight: bold; color: #0ff; }
.sp-gauge-unit { font-size: 11px; color: #0ff; margin-bottom: 5px; }
.sp-compass { flex: 1; margin-top: 0.25rem; }
</style>

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<script setup lang="ts">
import Loading from '@/components/Loading.vue';
import {getUVLabel} from '@/services/units.ts';
import {inject, computed } from 'vue';
import {useWeather} from '../services/api';
const openGraph = inject<(key: string) => void>('openGraph');
const {current: data} = useWeather();
const W = 320, H = 120, HORIZON = 45;
const arc = computed(() => {
if (!data.value) return { filledPath: '', remainPath: '', cx: 0, cy: 0, pct: 0 };
const rise = new Date(data.value.sunrise).getTime();
const set = new Date(data.value.sunset).getTime();
const now = Date.now();
const dayLen = set - rise;
const noon = rise + dayLen / 2;
const start = noon - 12 * 3600 * 1000;
const end = noon + 12 * 3600 * 1000;
const riseT = (rise - start) / (end - start);
const setT = (set - start) / (end - start);
const dayPct = Math.max(0, Math.min(1, (now - rise) / dayLen));
const sunT = riseT + dayPct * (setT - riseT);
// After sunset, continue tracking sun below horizon
const totalPct = Math.max(0, Math.min(1, (now - start) / (end - start)));
const x1 = 0, x2 = W;
const totalW = x2 - x1;
const amplitude = H * 0.45;
const midY = H / 2;
const sineY = (t: number) => midY - Math.sin(t * Math.PI * 2 - Math.PI / 2) * amplitude;
const horizonY = sineY(riseT);
const pts = Array.from({ length: 201 }, (_, i) => {
const t = i / 200;
return { x: x1 + totalW * t, y: sineY(t) };
});
const splitIdx = Math.round(totalPct * 200);
const { x: cx, y: cy } = <any>pts[Math.min(splitIdx, 200)];
const traveledPts: any = pts.slice(0, splitIdx + 1);
const filledPath = traveledPts.map((p: any, i: any) => `${i === 0 ? 'M' : 'L'}${p.x.toFixed(1)},${p.y.toFixed(1)}`).join(' ')
+ ` L${traveledPts[traveledPts.length - 1].x.toFixed(1)},${horizonY}`
+ ` L${x1},${horizonY} Z`;
const remainPts = pts.slice(splitIdx);
const remainPath = remainPts.map((p, i) => `${i === 0 ? 'M' : 'L'}${p.x.toFixed(1)},${p.y.toFixed(1)}`).join(' ');
const riseX = x1 + totalW * riseT;
const setX = x1 + totalW * setT;
return { filledPath, remainPath, cx, cy, pct: dayPct, riseX, setX, horizonY };
});
</script>
<template>
<div class="sun-card">
<div class="card-title">🌅 Sun</div>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden mx-auto" style="width: 100%; aspect-ratio: 3"><Loading /></div>
<template v-else>
<!-- Top labels -->
<div class="sun-top-labels" v-if="data">
<div>
<div class="stat-label">Sunrise</div>
<div class="stat-value">{{ new Date(data.sunrise).toLocaleTimeString([], { hour: '2-digit', minute: '2-digit' }) }}</div>
</div>
<div style="text-align:right">
<div class="stat-label">Sunset</div>
<div class="stat-value">{{ new Date(data.sunset).toLocaleTimeString([], { hour: '2-digit', minute: '2-digit' }) }}</div>
</div>
</div>
<svg :viewBox="`0 0 ${W} ${H}`" preserveAspectRatio="none">
<!-- Filled traveled area -->
<path v-if="arc.filledPath" :d="arc.filledPath" fill="#3b82f6" opacity="0.35" />
<!-- Remaining curve stroke -->
<path v-if="arc.remainPath" :d="arc.remainPath" fill="none" stroke="#94a3b8" stroke-width="1.5" opacity="0.5" />
<!-- Horizon line -->
<line :x1="0" :y1="arc.horizonY" :x2="W" :y2="arc.horizonY" stroke="var(--border)" stroke-width="1" />
<!-- Sun dot -->
<circle v-if="data" :cx="arc.cx" :cy="arc.cy" r="8" fill="#f59e0b" class="sun-dot" />
</svg>
</template>
<div class="divider" />
<div class="stat-grid">
<div class="stat">
<span class="stat-label">Daylight</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ data.daylight?.toFixed(2) ?? '—' }} <span v-if="data.daylight" class="fg-muted">hrs</span></span>
</div>
<div class="stat" @click="openGraph?.('lux')">
<span class="stat-label">Brightness</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ data.lux ?? '—' }} <span v-if="data.lux != null" class="fg-muted">lm/m²</span></span>
</div>
<div class="stat" @click="openGraph?.('solar_wm2')">
<span class="stat-label">Irradiance</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ data.solar_wm2 ?? '—' }} <span v-if="data.lux != null" class="fg-muted">W/m²</span></span>
</div>
</div>
<div class="divider" />
<div class="stat-grid">
<div class="stat" @click="openGraph?.('uv_index')">
<span class="stat-label">UV Index</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ data.uv_index?.toFixed(1) ?? '—' }} <span v-if="data.uv_index != null" class="fg-muted">({{ getUVLabel(data.uv_index) }})</span></span>
</div>
<div class="stat" @click="openGraph?.('uv_dose')">
<span class="stat-label">UV Dose</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ data.uv_dose?.toFixed(0) ?? '—' }} <span v-if="data.uv_dose != null" class="fg-muted">J/m²</span></span>
</div>
<div class="stat" @click="openGraph?.('uv_index_max')">
<span class="stat-label">UV Max</span>
<div v-if="!data" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading /></div>
<span v-else class="stat-value">{{ data.uv_index_max ?? '—' }} <span v-if="data.uv_index_max != null" class="fg-muted">({{getUVLabel(data.uv_index_max)}})</span></span>
</div>
</div>
</div>
</template>
<style scoped lang="scss">
.sun-card {
position: relative;
border-radius: 12px;
background: var(--surface);
border: 1px solid var(--border);
padding: 14px;
display: flex;
flex-direction: column;
gap: 12px;
}
.sun-top-labels {
display: flex;
justify-content: space-between;
padding: 0 4px;
}
.card-title {
font-size: 13px;
font-weight: 700;
color: var(--text);
}
.divider {
height: 1px;
background: var(--border);
}
.stat-grid {
display: grid;
grid-template-columns: repeat(auto-fill, minmax(90px, 1fr));
gap: 10px;
}
.stat {
display: flex;
flex-direction: column;
gap: 2px;
cursor: pointer;
border-radius: 8px;
padding: 4px 6px;
margin: -4px -6px;
transition: background 0.15s;
&:hover { background: var(--hover); }
}
.stat-label {
font-size: 10px;
text-transform: uppercase;
letter-spacing: 0.06em;
color: var(--text-muted);
}
.stat-value {
font-size: 14px;
font-weight: 600;
color: var(--text);
}
svg {
width: 100%;
height: 120px;
overflow: visible;
}
.sun-dot {
filter: drop-shadow(0 0 5px #f59e0b88);
}
</style>

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<script setup lang="ts">
import Loading from '@/components/Loading.vue';
import {inject} from 'vue';
import {useWeather} from '../services/api';
const openGraph = inject<(key: string) => void>('openGraph');
const {current: d} = useWeather();
function dir(deg: number) {
if(deg > 22.5 && deg <= 67.5) return 'North-East';
if(deg > 67.5 && deg <= 112.5) return 'East';
if(deg > 112.5 && deg <= 157.5) return 'South-East';
if(deg > 157.5 && deg <= 202.5) return 'South';
if(deg > 202.5 && deg <= 247.5) return 'South-West';
if(deg > 247.5 && deg <= 292.5) return 'West';
if(deg > 292.5 && deg <= 337.5) return 'North-West';
return 'North';
}
</script>
<style scoped lang="scss">
.wind-card {
position: relative;
border-radius: 12px;
background: var(--surface);
border: 1px solid var(--border);
padding: 14px;
display: flex;
flex-direction: column;
gap: 12px;
}
.card-title {
font-size: 13px;
font-weight: 700;
color: var(--text);
}
.divider {
height: 1px;
background: var(--border);
}
.stat-grid {
display: grid;
grid-template-columns: repeat(auto-fill, minmax(90px, 1fr));
gap: 10px;
}
.stat {
display: flex;
flex-direction: column;
gap: 2px;
cursor: pointer;
border-radius: 8px;
padding: 4px 6px;
margin: -4px -6px;
transition: background 0.15s;
&:hover { background: var(--hover); }
}
.stat-label {
font-size: 10px;
text-transform: uppercase;
letter-spacing: 0.06em;
color: var(--text-muted);
}
.stat-value {
font-size: 14px;
font-weight: 600;
color: var(--text);
}
</style>
<template>
<div class="wind-card">
<div class="card-title">🍃 Wind</div>
<div class="stat-grid">
<div class="stat" @click="openGraph?.('wind_speed')">
<span class="stat-label">Speed</span>
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading/></div>
<span v-else class="stat-value">{{ d.wind_speed != null ? ~~(d.wind_speed) : '—' }} <span v-if="d.wind_speed != null" class="fg-muted">Kph</span></span>
</div>
<div class="stat" @click="openGraph?.('wind_gusts')">
<span class="stat-label">Gusts</span>
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading/></div>
<span v-else class="stat-value">{{ d.wind_gusts != null ? ~~(d.wind_gusts) : '—' }} <span v-if="d.wind_gusts != null" class="fg-muted">Kph</span></span>
</div>
<div class="stat">
<span class="stat-label">Direction</span>
<div v-if="!d" class="w-100 pos-rel br-2 overflow-hidden" style="height: 1.75em"><Loading/></div>
<span v-else class="stat-value">{{ (d.wind_speed || d.wind_gusts) ? dir(d.wind_direction) : '—' }}</span>
</div>
</div>
</div>
</template>

224
client/src/services/adsb.ts Normal file
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import { BASE } from '@/services/api.ts'
import { createApp, ref } from 'vue'
import Map from 'ol/Map'
import { Feature } from 'ol'
import Point from 'ol/geom/Point'
import LineString from 'ol/geom/LineString'
import { fromLonLat } from 'ol/proj'
import { Style, Icon, Stroke } from 'ol/style'
import { Vector as VectorLayer } from 'ol/layer'
import { Vector as VectorSource } from 'ol/source'
import { adjustedInterval } from '@ztimson/utils'
import AircraftPopup from '@/components/Aircraft.vue'
import { bringToFront } from './zindex'
const API = BASE + '/api'
function getAltColor(alt: number): [number, number, number] {
const a = Math.max(0, alt)
if (a < 10) return [0, 0, 0]
if (a < 10000) return [135, 206, 250]
if (a < 25000) {
const r = (a - 10000) / 15000
return [Math.round(135 * (1-r)), Math.round(206 * (1-r)), Math.round(250 * (1-r) + 255 * r)]
}
if (a < 40000) {
const r = (a - 25000) / 15000
return [0, 0, Math.round(255 * (1-r) + 139 * r)]
}
const r = Math.min((a - 40000) / 10000, 1)
return [Math.round(128 * r), 0, 139]
}
interface PopupInstance {
planeRef: ReturnType<typeof ref>
posRef: ReturnType<typeof ref>
unmount: () => void
}
export class AirTrafficLayer {
private map: Map
private layer!: VectorLayer<VectorSource>
private traceLayers: Record<string, VectorLayer<VectorSource>> = {}
private traceSegs: Record<string, Feature[]> = {}
private popups: any = {}
private historyCache: any = {}
private data: any[] = []
private clickHandler: ((e: any) => void) | null = null
private refreshTimer: any = null
visible = false
constructor(map: Map) { this.map = map }
async show() {
if (this.visible) return
this.visible = true
this.layer = new VectorLayer({ source: new VectorSource(), zIndex: 100 })
this.map.addLayer(this.layer)
await this._fetch()
this._draw()
this._attachClick()
this.refreshTimer = adjustedInterval(async () => {
try {
await this._fetch()
this._draw()
this._refreshPopups()
} catch (err) {
console.error(err)
}
}, 1_000)
}
hide() {
if (!this.visible) return
this.visible = false
if (this.refreshTimer) { clearInterval(this.refreshTimer); this.refreshTimer = null }
if (this.clickHandler) { this.map.un('singleclick', this.clickHandler); this.clickHandler = null }
for (const icao of Object.keys(this.popups)) this._closePopup(icao)
this.map.removeLayer(this.layer)
Object.values(this.traceLayers).forEach(l => this.map.removeLayer(l))
this.traceLayers = {}
this.traceSegs = {}
}
private async _fetch() {
const j = await fetch(`${API}/adsb`).then(r => r.ok ? r.json() : []);
this.data = (j || []).map((a: any) => ({
...a,
icao: a.hex,
latitude: a.lat,
longitude: a.lon,
heading: a.track,
speed: a.gs,
climb: a.baro_rate ?? a.geom_rate ?? 0,
name: a.flight?.trim(),
}))
}
private _draw() {
const source = this.layer.getSource()!
source.clear()
for (const plane of this.data) {
if (plane.latitude == null) continue
const coord = fromLonLat([plane.longitude, plane.latitude])
const f = new Feature({ geometry: new Point(coord) })
f.set('icao', plane.icao)
f.set('planeData', plane)
f.setStyle(new Style({
image: new Icon({
src: `data:image/svg+xml,${encodeURIComponent(plane.icon)}`,
scale: 1.25,
rotation: (plane.heading ?? 0) * (Math.PI / 180),
anchor: [0.5, 0.5],
}),
}))
source.addFeature(f)
}
}
private async _fetchTrace(plane: any) {
const icao = plane.icao
if (!this.historyCache[icao]) {
const j = await fetch(`${API}/adsb/${icao}`).then(r => r.json())
this.historyCache[icao] = j.history || []
}
const history = [...this.historyCache[icao]]
const cur = { latitude: plane.latitude, longitude: plane.longitude, altitude: plane.alt_baro ?? plane.alt_geom ?? 0 }
const last = history[history.length - 1]
if (!last || last.latitude !== cur.latitude || last.longitude !== cur.longitude) history.push(cur)
if (history.length < 2) return
let traceLayer = this.traceLayers[icao]
let vs: VectorSource
if (!traceLayer) {
vs = new VectorSource()
traceLayer = new VectorLayer({ source: vs, zIndex: 99 })
this.map.addLayer(traceLayer)
this.traceLayers[icao] = traceLayer
this.traceSegs[icao] = []
} else {
vs = traceLayer.getSource()!
;(this.traceSegs[icao] || []).forEach(f => vs.removeFeature(f))
}
const segs: Feature[] = []
for (let i = 0; i < history.length - 1; i++) {
const s = history[i], e = history[i + 1]
const sc = getAltColor(s.altitude || 0)
const ec = getAltColor(e.altitude || 0)
const avg = sc.map((v, idx) => Math.round((v + (ec[idx] as any)) / 2))
const f = new Feature(new LineString([fromLonLat([s.longitude, s.latitude]), fromLonLat([e.longitude, e.latitude])]))
f.setStyle(new Style({ stroke: new Stroke({ color: `rgba(${avg.join(',')},0.8)`, width: 3 }) }))
vs.addFeature(f)
segs.push(f)
}
this.traceSegs[icao] = segs
}
private _calcPopupPos(plane: any): { x: number; y: number } {
const pixel: any = this.map.getPixelFromCoordinate(fromLonLat([plane.longitude, plane.latitude]))
if (!pixel) return { x: 10, y: 60 }
const rect = (this.map.getTargetElement() as HTMLElement).getBoundingClientRect()
return { x: rect.left + pixel[0] + 16, y: rect.top + pixel[1] - 16 }
}
private _openPopup(plane: any) {
const icao = plane.icao
if (this.popups[icao]) return
const planeRef = ref(plane)
const posRef = ref(this._calcPopupPos(plane))
const container = document.createElement('div')
document.body.appendChild(container)
const mobile = window.innerWidth <= 768;
const app = createApp(AircraftPopup, {
plane: planeRef.value,
position: mobile ? {x: window.innerWidth / 2 - 180, y: window.innerHeight - 540 - 16} : {x: window.innerWidth - 360 - 16, y: 16},
onClose: () => this._closePopup(icao),
onBringToFront: () => bringToFront(container),
})
app.mount(container)
this.popups[icao] = {
planeRef,
posRef,
unmount: () => { app.unmount(); container.remove() },
}
this._fetchTrace(plane)
}
private _closePopup(icao: string) {
const popup = this.popups[icao]
if (popup) { popup.unmount(); delete this.popups[icao] }
const segs = this.traceSegs[icao]
const layer = this.traceLayers[icao]
if (segs && layer) segs.forEach(f => layer.getSource()!.removeFeature(f))
if (layer) { this.map.removeLayer(layer); delete this.traceLayers[icao] }
delete this.traceSegs[icao]
}
private _refreshPopups() {
for (const icao of Object.keys(this.popups)) {
const plane = this.data.find(p => p.icao === icao)
if (!plane) { this._closePopup(icao); continue }
this.popups[icao].planeRef.value = plane
this._fetchTrace(plane)
}
}
private _attachClick() {
this.clickHandler = (evt) => {
const f = this.map.forEachFeatureAtPixel(evt.pixel, f => f.get('planeData') ? f : null)
if (!f) return
const plane = f.get('planeData')
if (this.popups[plane.icao]) { this._closePopup(plane.icao); return }
this._openPopup(plane)
}
this.map.on('singleclick', this.clickHandler)
}
}

View File

@@ -1,436 +0,0 @@
import {BASE} from '@/services/api.ts';
import Map from 'ol/Map'
import { Feature } from 'ol'
import Point from 'ol/geom/Point'
import LineString from 'ol/geom/LineString'
import { fromLonLat } from 'ol/proj'
import { Style, Icon, Stroke } from 'ol/style'
import { Vector as VectorLayer } from 'ol/layer'
import { Vector as VectorSource } from 'ol/source'
const API = BASE + '/api'
const COLORS: Record<string, string> = {
'Cargo': '#00ff00',
'Military': '#ff0000',
'Private': '#8450ea',
'Passenger': '#009dff',
'Unknown': '#fad106',
}
const SPEED_UNITS = {
knots: { label: 'KTS', convert: (v: number) => Math.round(v) },
kph: { label: 'KPH', convert: (v: number) => Math.round(v * 1.852) },
mph: { label: 'MPH', convert: (v: number) => Math.round(v * 1.15078) },
}
const ALTITUDE_UNITS = {
meters: { label: 'M', convert: (v: number) => Math.round(v * 0.3048) },
feet: { label: 'FT', convert: (v: number) => v },
}
const VERTICAL_UNITS = {
mps: { label: 'M/S', convert: (v: number) => Math.round(v * 0.3048) },
fps: { label: 'FT/S', convert: (v: number) => v },
}
const UNIT_KEY = 'at_units'
function getUnits() {
const s = localStorage.getItem(UNIT_KEY)
return s ? JSON.parse(s) : { speed: 'knots', altitude: 'meters', vertical: 'mps' }
}
function saveUnits(p: any) { localStorage.setItem(UNIT_KEY, JSON.stringify(p)) }
function getAltColor(alt: number): [number, number, number] {
const a = Math.max(0, alt)
if (a < 10) return [0, 0, 0]
if (a < 10000) return [135, 206, 250]
if (a < 25000) {
const r = (a - 10000) / 15000
return [Math.round(135 * (1-r)), Math.round(206 * (1-r)), Math.round(250 * (1-r) + 255 * r)]
}
if (a < 40000) {
const r = (a - 25000) / 15000
return [0, 0, Math.round(255 * (1-r) + 139 * r)]
}
const r = Math.min((a - 40000) / 10000, 1)
return [Math.round(128 * r), 0, 139]
}
function buildPlaneIcon(plane: any, shapes: any): string {
const color = COLORS[plane.class] || COLORS['Unknown']
const shape = shapes[plane.shape] || shapes['unknown'] || shapes[<any>Object.keys(shapes)[0]]
if (!shape) {
return `data:image/svg+xml,${encodeURIComponent(`<svg xmlns="http://www.w3.org/2000/svg" width="24" height="24" viewBox="0 0 24 24"><polygon points="12,2 22,22 12,17 2,22" fill="${color}" stroke="#000" stroke-width="1"/></svg>`)}`
}
const paths = (Array.isArray(shape.path) ? shape.path : [shape.path])
.map((p: string) => `<path d="${p}" fill="${color}" stroke="#000" stroke-width="${shape.stroke || 1}"/>`)
.join('')
return `data:image/svg+xml,${encodeURIComponent(`<svg xmlns="http://www.w3.org/2000/svg" width="${shape.w * 2}" height="${shape.h * 2}" viewBox="${shape.viewBox}">${paths}</svg>`)}`
}
function buildNavballSvg(data: any): string {
const heading = data.heading ?? 0
const airspeedKnots = data.speed || 0
const verticalRateFps = data.climb || 0
const groundSpeedFps = airspeedKnots * 1.68781
const pitchRad = groundSpeedFps > 0 ? Math.atan(verticalRateFps / groundSpeedFps) : 0
const pitch = Math.max(-25, Math.min(25, pitchRad * (180 / Math.PI)))
const pitchLines: string[] = []
for (let p = -30; p <= 30; p += 5) {
if (p === 0) continue
const isMajor = p % 10 === 0
const [start, end] = [85, 115]
if (isMajor) {
pitchLines.push(`
<text x="${start - Math.abs(p) - 5}" y="${104 + pitch * 2.5 - p * 2.5}" fill="#fff" font-size="8" font-weight="bold" text-anchor="end">${Math.abs(p)}</text>
<line x1="${start - Math.abs(p)}" y1="${100 + pitch * 2.5 - p * 2.5}" x2="${end + Math.abs(p)}" y2="${100 + pitch * 2.5 - p * 2.5}" stroke="#fff" stroke-width="2"/>
<text x="${end + Math.abs(p) + 5}" y="${104 + pitch * 2.5 - p * 2.5}" fill="#fff" font-size="8" font-weight="bold">${Math.abs(p)}</text>
`)
} else {
pitchLines.push(`<line x1="${start}" y1="${100 + pitch * 2.5 - p * 2.5}" x2="${end}" y2="${100 + pitch * 2.5 - p * 2.5}" stroke="#fff" stroke-width="2"/>`)
}
}
const rollTicks: string[] = []
for (const angle of [-90, -60, -45, -30, -20, -10, 0, 10, 20, 30, 45, 60, 90]) {
const rad = angle * Math.PI / 180
const a = Math.abs(angle)
if (a === 45) {
rollTicks.push(`<circle cx="${100 + 78 * Math.sin(rad)}" cy="${100 - 78 * Math.cos(rad)}" r="2.5" fill="#fff"/>`)
} else {
const inner = (a === 0 || a % 30 === 0) ? 72 : 77
const sw = (a === 0 || a % 30 === 0) ? 2.5 : 1.5
rollTicks.push(`<line x1="${100 + inner * Math.sin(rad)}" y1="${100 - inner * Math.cos(rad)}" x2="${100 + 85 * Math.sin(rad)}" y2="${100 - 85 * Math.cos(rad)}" stroke="#fff" stroke-width="${sw}"/>`)
}
}
const compassLabels = [-60, -45, -30, -15, 0, 15, 30, 45, 60].map(offset => {
const rad = offset * Math.PI / 180
const x = 100 + 90 * Math.sin(rad)
const y = 100 - 90 * Math.cos(rad)
const h = Math.round((offset + 360) % 360)
const lbl = ({ 0: 'N', 90: 'E', 180: 'S', 270: 'W' } as any)[h] || ''
return lbl ? `<text x="${x}" y="${y + 4}" text-anchor="middle" fill="#0f0" font-size="13" font-weight="bold">${lbl}</text>` : ''
}).join('')
return `
<svg width="200" height="220" viewBox="0 0 200 220">
<defs>
<clipPath id="navballClip"><circle cx="100" cy="100" r="85"/></clipPath>
<linearGradient id="skyGrad" x1="0%" y1="0%" x2="0%" y2="100%">
<stop offset="0%" style="stop-color:#1e90ff"/>
<stop offset="100%" style="stop-color:#4169e1"/>
</linearGradient>
<linearGradient id="groundGrad" x1="0%" y1="0%" x2="0%" y2="100%">
<stop offset="0%" style="stop-color:#8b4513"/>
<stop offset="100%" style="stop-color:#654321"/>
</linearGradient>
</defs>
<rect x="77" y="5" width="46" height="18" fill="rgba(0,0,0,0.95)" stroke="#0f0" stroke-width="2" rx="2"/>
<text x="100" y="18" text-anchor="middle" fill="#0f0" font-size="14" font-weight="bold">${heading.toFixed(0).padStart(3, '0')}°</text>
<g transform="translate(0,25)" clip-path="url(#navballClip)">
<rect x="15" y="${15 + pitch * 2.5 - 200}" width="170" height="285" fill="url(#skyGrad)"/>
<rect x="15" y="${100 + pitch * 2.5}" width="170" height="285" fill="url(#groundGrad)"/>
<line x1="15" y1="${100 + pitch * 2.5}" x2="185" y2="${100 + pitch * 2.5}" stroke="#fff" stroke-width="3"/>
${pitchLines.join('')}
</g>
<g transform="translate(0,25)">${rollTicks.join('')}</g>
<circle cx="100" cy="125" r="85" fill="none" stroke="#0f0" stroke-width="2.5"/>
<line x1="40" y1="125" x2="80" y2="125" stroke="#ff0" stroke-width="3.5"/>
<line x1="120" y1="125" x2="160" y2="125" stroke="#ff0" stroke-width="3.5"/>
<circle cx="100" cy="125" r="4" fill="none" stroke="#ff0" stroke-width="2.5"/>
<g transform="rotate(${-heading} 100 125)">${compassLabels}</g>
<polygon points="100,37 95,30 105,30" fill="#ff0"/>
</svg>
`
}
function buildGaugeHtml(label: string, value: any, unit: string, type: string): string {
return `
<div style="margin-bottom:12px">
<div style="color:#888;font-size:11px;font-weight:bold;margin-bottom:3px">${label}</div>
<div class="at-gauge" data-gauge="${type}" style="padding:6px;background:rgba(0,0,0,0.95);border:2px solid #0f0;border-radius:3px;cursor:pointer;display:flex;align-items:end;justify-content:center;gap:4px">
<span style="font-size:20px;font-weight:bold;color:#0f0">${value}</span>
<span style="font-size:11px;color:#0f0;margin-bottom:2px">${unit}</span>
</div>
</div>
`
}
function buildPopupHtml(data: any): string {
const prefs = getUnits()
const speed = SPEED_UNITS[prefs.speed as keyof typeof SPEED_UNITS]
const alt = ALTITUDE_UNITS[prefs.altitude as keyof typeof ALTITUDE_UNITS]
const vert = VERTICAL_UNITS[prefs.vertical as keyof typeof VERTICAL_UNITS]
const callsign = data.name?.trim()
const altitude = data.alt_baro ?? data.alt_geom ?? 0
return `
<div style="font-family:monospace;color:#ccc;min-width:320px">
<div style="padding:12px 16px;border-bottom:1px solid rgba(200,200,220,0.2)">
<h3 style="margin:0;color:#7eeee1;font-size:16px">
✈️ ${callsign
? `<a href="https://www.flightaware.com/live/flight/${callsign}" target="_blank" style="color:#6bb6ff;text-decoration:none">${callsign.toUpperCase()}</a>`
: 'N/A'}
</h3>
<div style="font-size:11px;color:#888;margin-top:4px">
${data.country || ''}${data.class || 'Unknown'}${data.type || ''}
<span style="float:right">ICAO: ${(data.icao || '').toUpperCase()}</span>
</div>
</div>
<div style="display:flex;gap:16px;padding:12px 16px">
<div style="flex:0 0 110px">
${buildGaugeHtml('Air Speed', speed.convert(data.speed || 0), speed.label, 'speed')}
${buildGaugeHtml('Altitude', data.landed ? 'LANDED' : alt.convert(altitude), data.landed ? '' : alt.label, 'altitude')}
${buildGaugeHtml('Climb', vert.convert(data.climb || 0) >= 0 ? `+${vert.convert(data.climb || 0)}` : vert.convert(data.climb || 0), vert.label, 'vertical')}
</div>
<div style="flex:1">${buildNavballSvg(data)}</div>
</div>
</div>
`
}
export class AirTrafficLayer {
private map: Map
private layer!: VectorLayer<VectorSource>
private traceLayers: Record<string, VectorLayer<VectorSource>> = {}
private traceSegs: Record<string, Feature[]> = {}
private popups: Record<string, { el: HTMLDivElement, destroy: () => void }> = {}
private historyCache: Record<string, any[]> = {}
private shapes: any = null
private data: any[] = []
private clickHandler: ((e: any) => void) | null = null
private refreshTimer: ReturnType<typeof setInterval> | null = null
visible = false
constructor(map: Map) { this.map = map }
// ── Public ────────────────────────────────────────────────────────────────
async show() {
if (this.visible) return
this.visible = true
if (!this.shapes) this.shapes = await fetch(`${API}/air-traffic-shapes`).then(r => r.json())
this.layer = new VectorLayer({ source: new VectorSource(), zIndex: 100 })
this.map.addLayer(this.layer)
await this._fetch()
this._draw()
this._attachClick()
this.refreshTimer = setInterval(async () => {
await this._fetch()
this._draw()
this._refreshPopups()
}, 15_000)
}
hide() {
if (!this.visible) return
this.visible = false
if (this.refreshTimer) { clearInterval(this.refreshTimer); this.refreshTimer = null }
if (this.clickHandler) { this.map.un('singleclick', this.clickHandler); this.clickHandler = null }
for (const icao of Object.keys(this.popups)) this._closePopup(icao)
this.map.removeLayer(this.layer)
Object.values(this.traceLayers).forEach(l => this.map.removeLayer(l))
this.traceLayers = {}
this.traceSegs = {}
}
// ── Private ───────────────────────────────────────────────────────────────
private async _fetch() {
const j = await fetch(`${API}/air-traffic`).then(r => r.json())
this.data = (j.data || []).map((a: any) => ({
...a,
icao: a.hex,
latitude: a.lat,
longitude: a.lon,
heading: a.track,
speed: a.gs,
climb: a.baro_rate ?? a.geom_rate ?? 0,
name: a.flight?.trim(),
}))
}
private _draw() {
const source = this.layer.getSource()!
const existing: Record<string, Feature> = {}
source.getFeatures().forEach(f => { existing[f.get('icao')] = f })
const incoming = new Set(this.data.filter(p => p.latitude != null).map(p => p.icao))
// Remove stale
Object.keys(existing).forEach(icao => {
if (!incoming.has(icao)) { source.removeFeature(<any>existing[icao]); this._closePopup(icao) }
})
// Update / add
for (const plane of this.data) {
if (plane.latitude == null) continue
const coord = fromLonLat([plane.longitude, plane.latitude])
const style = new Style({
image: new Icon({
src: buildPlaneIcon(plane, this.shapes),
scale: 1,
rotation: (plane.heading ?? 0) * (Math.PI / 180),
anchor: [0.5, 0.5],
}),
})
if (existing[plane.icao]) {
;(<any>((<any>existing[plane.icao]).getGeometry() as Point)).setCoordinates(coord)
(<any>existing[plane.icao]).setStyle(style)
(<any>existing[plane.icao]).set('planeData', plane)
} else {
const f = new Feature({ geometry: new Point(coord) })
f.set('icao', plane.icao)
f.set('planeData', plane)
f.setStyle(style)
source.addFeature(f)
}
}
}
private async _fetchTrace(plane: any) {
const icao = plane.icao
if (!this.historyCache[icao]) {
const j = await fetch(`${API}/air-traffic/${icao}`).then(r => r.json())
this.historyCache[icao] = j.history || []
}
const history = [...(<any>this.historyCache[icao])]
const cur = { latitude: plane.latitude, longitude: plane.longitude, altitude: plane.alt_baro ?? plane.alt_geom ?? 0 }
const last = history[history.length - 1]
if (!last || last.latitude !== cur.latitude || last.longitude !== cur.longitude) history.push(cur)
if (history.length < 2) return
let traceLayer = this.traceLayers[icao]
let vs: VectorSource
if (!traceLayer) {
vs = new VectorSource()
traceLayer = new VectorLayer({ source: vs, zIndex: 99 })
this.map.addLayer(traceLayer)
this.traceLayers[icao] = traceLayer
this.traceSegs[icao] = []
} else {
vs = traceLayer.getSource()!
;(this.traceSegs[icao] || []).forEach(f => vs.removeFeature(f))
}
const segs: Feature[] = []
for (let i = 0; i < history.length - 1; i++) {
const s = history[i], e = history[i + 1]
const sc = getAltColor(s.altitude || 0)
const ec = getAltColor(e.altitude || 0)
const avg = sc.map((v, idx) => Math.round((v + <any>ec[idx]) / 2))
const f = new Feature(new LineString([fromLonLat([s.longitude, s.latitude]), fromLonLat([e.longitude, e.latitude])]))
f.setStyle(new Style({ stroke: new Stroke({ color: `rgba(${avg.join(',')},0.8)`, width: 3 }) }))
vs.addFeature(f)
segs.push(f)
}
this.traceSegs[icao] = segs
}
private _openPopup(plane: any) {
const icao = plane.icao
if (this.popups[icao]) return
const el = document.createElement('div')
el.style.cssText = `
position:absolute; z-index:9999; pointer-events:auto;
background:rgba(0,0,0,0.88); border:1px solid rgba(200,200,220,0.3);
border-radius:8px; box-shadow:0 4px 24px rgba(0,0,0,0.5); overflow:hidden;
`
const close = document.createElement('button')
close.innerHTML = '✕'
close.style.cssText = 'position:absolute;top:8px;right:8px;background:none;border:none;color:#888;font-size:14px;cursor:pointer;z-index:1'
close.onclick = () => this._closePopup(icao)
el.innerHTML = buildPopupHtml(plane)
el.appendChild(close)
document.body.appendChild(el)
this._positionPopup(el, plane)
el.querySelectorAll('.at-gauge').forEach(g => {
g.addEventListener('click', (e) => {
const prefs = getUnits()
const type = (e.currentTarget as HTMLElement).dataset.gauge!
if (type === 'speed') {
const keys = Object.keys(SPEED_UNITS)
prefs.speed = keys[(keys.indexOf(prefs.speed) + 1) % keys.length]
} else if (type === 'altitude') {
const keys = Object.keys(ALTITUDE_UNITS)
prefs.altitude = keys[(keys.indexOf(prefs.altitude) + 1) % keys.length]
prefs.vertical = prefs.altitude === 'meters' ? 'mps' : 'fps'
} else if (type === 'vertical') {
const keys = Object.keys(VERTICAL_UNITS)
prefs.vertical = keys[(keys.indexOf(prefs.vertical) + 1) % keys.length]
prefs.altitude = prefs.vertical === 'mps' ? 'meters' : 'feet'
}
saveUnits(prefs)
el.innerHTML = buildPopupHtml(plane)
el.appendChild(close)
})
g.addEventListener('mouseenter', e => (e.currentTarget as HTMLElement).style.borderColor = '#0ff')
g.addEventListener('mouseleave', e => (e.currentTarget as HTMLElement).style.borderColor = '#0f0')
})
this.popups[icao] = { el, destroy: () => el.remove() }
this._fetchTrace(plane)
}
private _positionPopup(el: HTMLDivElement, plane: any) {
const pixel = this.map.getPixelFromCoordinate(fromLonLat([plane.longitude, plane.latitude]))
if (!pixel) return
const rect = (this.map.getTargetElement() as HTMLElement).getBoundingClientRect()
el.style.left = `${rect.left + <any>pixel[0] + 16}px`
el.style.top = `${rect.top + <any>pixel[1] - 16}px`
}
private _closePopup(icao: string) {
const popup = this.popups[icao]
if (popup) { popup.destroy(); delete this.popups[icao] }
const segs = this.traceSegs[icao]
const layer = this.traceLayers[icao]
if (segs && layer) segs.forEach(f => layer.getSource()!.removeFeature(f))
if (layer) { this.map.removeLayer(layer); delete this.traceLayers[icao] }
delete this.traceSegs[icao]
}
private _refreshPopups() {
for (const icao of Object.keys(this.popups)) {
const plane = this.data.find(p => p.icao === icao)
if (!plane) { this._closePopup(icao); continue }
const { el } = <any>this.popups[icao]
el.innerHTML = buildPopupHtml(plane)
const close = document.createElement('button')
close.innerHTML = '✕'
close.style.cssText = 'position:absolute;top:8px;right:8px;background:none;border:none;color:#888;font-size:14px;cursor:pointer;z-index:1'
close.onclick = () => this._closePopup(icao)
el.appendChild(close)
this._positionPopup(el, plane)
this._fetchTrace(plane)
}
}
private _attachClick() {
this.clickHandler = (evt) => {
const f = this.map.forEachFeatureAtPixel(evt.pixel, f => f.get('planeData') ? f : null)
if (!f) return
const plane = f.get('planeData')
if (this.popups[plane.icao]) { this._closePopup(plane.icao); return }
this._openPopup(plane)
}
this.map.on('singleclick', this.clickHandler)
}
}

173
client/src/services/ais.ts Normal file
View File

@@ -0,0 +1,173 @@
import { BASE } from '@/services/api.ts'
import { createApp, ref } from 'vue'
import Map from 'ol/Map'
import { Feature } from 'ol'
import Point from 'ol/geom/Point'
import { fromLonLat } from 'ol/proj'
import { Style, Icon } from 'ol/style'
import { Vector as VectorLayer } from 'ol/layer'
import { Vector as VectorSource } from 'ol/source'
import { adjustedInterval } from '@ztimson/utils'
import ShipPopup from '@/components/Ship.vue'
import { bringToFront } from './zindex'
const API = BASE + '/api'
const SHIP_COLORS: Record<string, string> = {
'Base Station': '#ffffff',
'Class A': '#00ff00',
'Class B': '#8450ea',
'SAR Aircraft': '#ff0000',
'AtoN': '#ffffff',
'Class B/CS': '#8450ea',
'Sart/Epirb/MOB': '#00aaff',
'Unknown': '#fad106',
}
function buildBoatIcon(boat: any): string {
const color = SHIP_COLORS[boat.type] || SHIP_COLORS['Unknown']
if (['Base Station', 'AtoN'].includes(boat.type)) {
return `data:image/svg+xml,${encodeURIComponent(`
<svg xmlns="http://www.w3.org/2000/svg" width="32" height="32" viewBox="0 0 32 32">
<polygon points="16,2 30,16 16,30 2,16" fill="${color}" stroke="#000" stroke-width="1.5"/>
<circle cx="16" cy="9" r="1.8" fill="#000"/>
<line x1="16" y1="9" x2="16" y2="23" stroke="#000" stroke-width="1.8"/>
<line x1="11" y1="12" x2="21" y2="12" stroke="#000" stroke-width="1.8"/>
<path d="M9,18 Q16,26 23,18" fill="none" stroke="#000" stroke-width="1.5"/>
</svg>
`)}`
}
return `data:image/svg+xml,${encodeURIComponent(`
<svg xmlns="http://www.w3.org/2000/svg" width="24" height="32" viewBox="0 0 24 32">
<polygon points="12,0 24,30 12,24 0,30" fill="${color}" stroke="#000" stroke-width="1.5"/>
<circle cx="12" cy="12" r="1.5" fill="#000"/>
<line x1="12" y1="12" x2="12" y2="22" stroke="#000" stroke-width="1.5"/>
<line x1="8" y1="14" x2="16" y2="14" stroke="#000" stroke-width="1.5"/>
<path d="M7,17 Q12,24 17,17" fill="none" stroke="#000" stroke-width="1.3"/>
</svg>
`)}`
}
export class AISLayer {
private map: Map
private layer!: VectorLayer<VectorSource>
private popups: any = {}
private data: any[] = []
private clickHandler: ((e: any) => void) | null = null
private refreshTimer: any = null
visible = false
constructor(map: Map) { this.map = map }
async show() {
if (this.visible) return
this.visible = true
this.layer = new VectorLayer({ source: new VectorSource(), zIndex: 100 })
this.map.addLayer(this.layer)
await this._fetch()
this._draw()
this._attachClick()
this.refreshTimer = adjustedInterval(async () => {
try {
await this._fetch()
this._draw()
this._refreshPopups()
} catch (err) {
console.error(err);
}
}, 5_000)
}
hide() {
if (!this.visible) return
this.visible = false
if (this.refreshTimer) { clearInterval(this.refreshTimer); this.refreshTimer = null }
if (this.clickHandler) { this.map.un('singleclick', this.clickHandler); this.clickHandler = null }
for (const mmsi of Object.keys(this.popups)) this._closePopup(mmsi)
this.map.removeLayer(this.layer)
}
private async _fetch() {
this.data = await fetch(`${API}/ais`).then(r => r.json()) || []
}
private _draw() {
const source = this.layer.getSource()!
source.clear()
for (const boat of this.data) {
if (boat.lat == null || boat.lon == null) continue
const coord = fromLonLat([boat.lon, boat.lat])
const f = new Feature({ geometry: new Point(coord) })
f.set('mmsi', boat.mmsi)
f.set('boatData', boat)
f.setStyle(new Style({
image: new Icon({
src: buildBoatIcon(boat),
scale: 0.8,
rotation: (boat.heading ?? boat.course ?? 0) * (Math.PI / 180),
anchor: [0.5, 0.5],
}),
}))
source.addFeature(f)
}
}
private _calcPopupPos(boat: any): { x: number; y: number } {
const pixel: any = this.map.getPixelFromCoordinate(fromLonLat([boat.lon, boat.lat]))
if (!pixel) return { x: 10, y: 60 }
const rect = (this.map.getTargetElement() as HTMLElement).getBoundingClientRect()
return { x: rect.left + pixel[0] + 16, y: rect.top + pixel[1] - 16 }
}
private _openPopup(boat: any) {
const mmsi = String(boat.mmsi)
if (this.popups[mmsi]) return
const boatRef = ref(boat)
const posRef = ref(this._calcPopupPos(boat))
const container = document.createElement('div')
document.body.appendChild(container)
const mobile = window.innerWidth <= 768;
const app = createApp(ShipPopup, {
boat: boatRef.value,
position: mobile ? {x: window.innerWidth / 2 - 180, y: window.innerHeight - 540 - 16} : {x: window.innerWidth - 360 - 16, y: 16},
onClose: () => this._closePopup(mmsi),
onBringToFront: () => bringToFront(container),
})
app.mount(container)
this.popups[mmsi] = {
boatRef,
posRef,
unmount: () => { app.unmount(); container.remove() },
}
}
private _closePopup(mmsi: string) {
const popup = this.popups[mmsi]
if (popup) { popup.unmount(); delete this.popups[mmsi] }
}
private _refreshPopups() {
for (const mmsi of Object.keys(this.popups)) {
const boat = this.data.find(b => String(b.mmsi) === mmsi)
if (!boat) { this._closePopup(mmsi); continue }
this.popups[mmsi].boatRef.value = boat
}
}
private _attachClick() {
this.clickHandler = (evt) => {
const f = this.map.forEachFeatureAtPixel(evt.pixel, f => f.get('boatData') ? f : null)
if (!f) return
const boat = f.get('boatData')
const mmsi = String(boat.mmsi)
if (this.popups[mmsi]) { this._closePopup(mmsi); return }
this._openPopup(boat)
}
this.map.on('singleclick', this.clickHandler)
}
}

View File

@@ -1,20 +1,60 @@
export const BASE = import.meta.env.DEV ? 'http://10.69.5.23' : '' import {ref, onUnmounted} from 'vue';
export type DataRow = Record<string, number | string | null> export type DataRow = Record<string, number | string | null>
export const BASE = import.meta.env.DEV ? 'http://10.69.5.23' : '';
const cache: any = {}; const cache: any = {};
const current = ref<any>(null);
const hourly = ref<any[]>([]);
const daily = ref<any[]>([]);
let interval: ReturnType<typeof setInterval>;
let refCount = 0;
async function get<T>(path: string, params: Record<string, string> = {}): Promise<T> { async function get<T>(path: string, params: Record<string, string> = {}): Promise<T> {
const url = new URL(`${BASE}${path}`, window.location.origin) const url = new URL(`${BASE}${path}`, window.location.origin);
Object.entries(params).forEach(([k, v]) => url.searchParams.set(k, v)) Object.entries(params).forEach(([k, v]) => url.searchParams.set(k, v));
if(cache[url.toString()]) return cache[url.toString()]; const key = url.toString();
cache[url.toString()] = await fetch(url.toString()).then(resp => resp.json()).finally(() => { delete cache[url.toString()]; }); if(cache[key]) return cache[key];
return cache[url.toString()] cache[key] = fetch(url.toString())
.then(resp => resp.json())
.finally(() => delete cache[key]);
return cache[key];
} }
export const api = { export const api = {
position: (fields?: string) => get<{latitude: number, longitude: number, altitude: number}>('/api/position', fields ? { fields } : {}), position: (fields?: string) => get<{latitude: number, longitude: number, altitude: number}>('/api/position', fields ? {fields} : {}),
current: (fields?: string) => get<DataRow>('/api/current', fields ? { fields } : {}), current: (fields?: string) => get<DataRow>('/api/current', fields ? {fields} : {}),
hourly: (start?: string, end?: string, fields?: string) => get<DataRow[]>('/api/hourly', { ...(start ? { start } : {}), ...(end ? { end } : {}), ...(fields ? { fields } : {}) }), hourly: (start?: Date | string, end?: Date | string, fields?: string) => get<DataRow[]>('/api/hourly', {
daily: (start?: string, end?: string, fields?: string) => get<DataRow[]>('/api/daily', { ...(start ? { start } : {}), ...(end ? { end } : {}), ...(fields ? { fields } : {}) }), ...(start ? {start: typeof start == 'string' ? start : start.toISOString()} : {}),
...(end ? {end: typeof end == 'string' ? end : end.toISOString()} : {}),
...(fields ? {fields} : {})
}),
daily: (start?: Date, end?: Date, fields?: string) => get<DataRow[]>('/api/daily', {
...(start ? {start: typeof start == 'string' ? start : start.toISOString()} : {}),
...(end ? {end: typeof end == 'string' ? end : end.toISOString()} : {}),
...(fields ? {fields} : {})
}),
};
async function refresh() {
const start = new Date(), end = new Date();
start.setDate(start.getDate() + 1);
end.setDate(end.getDate() + 5);
current.value = await api.current();
return {current}
}
export function useWeather(ms = 5 * 60_000) {
if(++refCount === 1) {
refresh();
interval = setInterval(refresh, ms);
}
onUnmounted(() => {
if(--refCount === 0) clearInterval(interval);
});
return {current, hourly, daily, refresh};
} }

View File

@@ -0,0 +1,46 @@
import {BASE} from '@/services/api.ts';
import Map from 'ol/Map'
import { Feature } from 'ol'
import { Polygon } from 'ol/geom'
import { fromLonLat } from 'ol/proj'
import { Style, Stroke } from 'ol/style'
import { Vector as VectorLayer } from 'ol/layer'
import { Vector as VectorSource } from 'ol/source'
export class RangeLayer {
private map: Map
private layer!: VectorLayer<VectorSource>
visible = false
interval: any;
constructor(map: Map) { this.map = map }
async show() {
if(this.visible) this.hide(false);
this.visible = true
const points: [number, number][] = await fetch(`${BASE}/api/range`).then(r => r.json())
const coords = points.map(([lat, lon]: number[]) => fromLonLat([<number>lon, <number>lat]))
coords.push(<any>coords[0]) // close the polygon
const feature = new Feature({ geometry: new Polygon([coords]) })
feature.setStyle(new Style({
stroke: new Stroke({ color: 'rgb(0 171 138 / 0.53)', width: 1.5 })
}))
const source = new VectorSource({ features: [feature] })
this.layer = new VectorLayer({ source, zIndex: 50 })
this.map.addLayer(this.layer)
if(!this.interval) this.interval = setInterval(() => this.show, 60_000);
}
hide(stop = true) {
if (!this.visible) return
this.visible = false
this.map.removeLayer(this.layer)
if(stop && this.interval) {
clearInterval(this.interval);
this.interval = null;
}
}
}

View File

@@ -10,7 +10,6 @@ export interface MetricMeta {
export const METRICS: Record<string, MetricMeta> = { export const METRICS: Record<string, MetricMeta> = {
// Environment // Environment
temperature: { label: 'Temperature', unit: '°C', icon: '🌡️', group: 'Environment', precision: 1, color: '#f97316' }, temperature: { label: 'Temperature', unit: '°C', icon: '🌡️', group: 'Environment', precision: 1, color: '#f97316' },
env_temp_f: { label: 'Temperature', unit: '°F', icon: '🌡️', group: 'Environment', precision: 1, color: '#f97316' },
humidity: { label: 'Humidity', unit: '%', icon: '💧', group: 'Environment', precision: 1, color: '#38bdf8' }, humidity: { label: 'Humidity', unit: '%', icon: '💧', group: 'Environment', precision: 1, color: '#38bdf8' },
dew_point: { label: 'Dew Point', unit: '°C', icon: '🌫️', group: 'Environment', precision: 1, color: '#818cf8' }, dew_point: { label: 'Dew Point', unit: '°C', icon: '🌫️', group: 'Environment', precision: 1, color: '#818cf8' },
heat_index: { label: 'Feels Like', unit: '°C', icon: '🤔', group: 'Environment', precision: 1, color: '#fb923c' }, heat_index: { label: 'Feels Like', unit: '°C', icon: '🤔', group: 'Environment', precision: 1, color: '#fb923c' },
@@ -27,28 +26,28 @@ export const METRICS: Record<string, MetricMeta> = {
uv_dose: { label: 'UV Dose Today', unit: ' mJ/cm²', icon: '📡', group: 'Light', precision: 2, color: '#f9a8d4' }, uv_dose: { label: 'UV Dose Today', unit: ' mJ/cm²', icon: '📡', group: 'Light', precision: 2, color: '#f9a8d4' },
light_burn_time_min: { label: 'Burn Time', unit: ' min', icon: '🔥', group: 'Light', precision: 0, color: '#fb7185' }, light_burn_time_min: { label: 'Burn Time', unit: ' min', icon: '🔥', group: 'Light', precision: 0, color: '#fb7185' },
clouds: { label: 'Cloud Cover', unit: '%', icon: '☁️', group: 'Light', precision: 0, color: '#94a3b8' }, clouds: { label: 'Cloud Cover', unit: '%', icon: '☁️', group: 'Light', precision: 0, color: '#94a3b8' },
light_dli: { label: 'Daily Light Integral', unit: ' mol/m²', icon: '🌱', group: 'Light', precision: 3, color: '#86efac' }, day_light_integral: { label: 'Daily Light Integral', unit: ' mol/m²', icon: '🌱', group: 'Light', precision: 3, color: '#86efac' },
visibility: { label: 'Visibility', unit: ' km', icon: '👁️', group: 'Light', precision: 1, color: '#7dd3fc' }, visibility: { label: 'Visibility', unit: ' km', icon: '👁️', group: 'Light', precision: 1, color: '#7dd3fc' },
// Wind // Wind
wind_speed_kmh: { label: 'Wind Speed', unit: ' km/h', icon: '💨', group: 'Wind', precision: 1, color: '#93c5fd' }, wind_speed: { label: 'Wind Speed', unit: ' km/h', icon: '💨', group: 'Wind', precision: 1, color: '#93c5fd' },
wind_gusts_kmh: { label: 'Wind Gusts', unit: ' km/h', icon: '🌬️', group: 'Wind', precision: 1, color: '#60a5fa' }, wind_gusts: { label: 'Wind Gusts', unit: ' km/h', icon: '🌬️', group: 'Wind', precision: 1, color: '#60a5fa' },
wind_direction_deg: { label: 'Wind Direction', unit: '°', icon: '🧭', group: 'Wind', precision: 0, color: '#818cf8' }, wind_direction: { label: 'Wind Direction', unit: '°', icon: '🧭', group: 'Wind', precision: 0, color: '#818cf8' },
// Seismic // Seismic
seismic_magnitude: { label: 'Seismic Magnitude', unit: ' g', icon: '🌍', group: 'Seismic', precision: 4, color: '#f87171' }, seismic_magnitude: { label: 'Seismic Magnitude', unit: ' g', icon: '🌍', group: 'Seismic', precision: 4, color: '#f87171' },
seismic_ax: { label: 'Accel X', unit: ' g', icon: '📐', group: 'Seismic', precision: 3, color: '#fca5a5' }, seismic_x: { label: 'Accel X', unit: ' g', icon: '📐', group: 'Seismic', precision: 3, color: '#fca5a5' },
seismic_ay: { label: 'Accel Y', unit: ' g', icon: '📐', group: 'Seismic', precision: 3, color: '#fca5a5' }, seismic_y: { label: 'Accel Y', unit: ' g', icon: '📐', group: 'Seismic', precision: 3, color: '#fca5a5' },
seismic_az: { label: 'Accel Z', unit: ' g', icon: '📐', group: 'Seismic', precision: 3, color: '#fca5a5' }, seismic_z: { label: 'Accel Z', unit: ' g', icon: '📐', group: 'Seismic', precision: 3, color: '#fca5a5' },
// Compass // Compass
compass_heading: { label: 'Compass Heading', unit: '°', icon: '🧭', group: 'Compass', precision: 1, color: '#c084fc' }, heading: { label: 'Compass Heading', unit: '°', icon: '🧭', group: 'Compass', precision: 1, color: '#c084fc' },
// Ground // Ground
ground_distance: { label: 'Ground Distance', unit: ' cm', icon: '📏', group: 'Ground', precision: 0, color: '#a3e635' }, ground_distance: { label: 'Ground Distance', unit: ' cm', icon: '📏', group: 'Ground', precision: 0, color: '#a3e635' },
accumulation: { label: 'Accumulation Depth', unit: ' cm', icon: '❄️', group: 'Ground', precision: 1, color: '#bfdbfe' }, accumulation: { label: 'Accumulation Depth', unit: ' cm', icon: '❄️', group: 'Ground', precision: 1, color: '#bfdbfe' },
lidar_strength: { label: 'LIDAR Strength', unit: '', icon: '📡', group: 'Ground', precision: 0, color: '#6ee7b7' }, lidar_strength: { label: 'LIDAR Strength', unit: '', icon: '📡', group: 'Ground', precision: 0, color: '#6ee7b7' },
// Lightning // Lightning
lightning_distance: { label: 'Lightning Distance', unit: ' km', icon: '⚡', group: 'Lightning', precision: 0, color: '#fde047' }, lightning_distance: { label: 'Lightning Distance', unit: ' km', icon: '⚡', group: 'Lightning', precision: 0, color: '#fde047' },
lightning_strikes_per_hour: { label: 'Strike Rate', unit: '/hr', icon: '⚡', group: 'Lightning', precision: 1, color: '#facc15' }, lightning_rate: { label: 'Strike Rate', unit: '/hr', icon: '⚡', group: 'Lightning', precision: 1, color: '#facc15' },
// Moon // Moon
moon_illumination_pct: { label: 'Moon Illumination', unit: '%', icon: '🌙', group: 'Celestial', precision: 0, color: '#e2e8f0' }, moon_illumination: { label: 'Moon Illumination', unit: '%', icon: '🌙', group: 'Celestial', precision: 0, color: '#e2e8f0' },
// Sun // Sun
sun_elevation: { label: 'Solar Elevation', unit: '°', icon: '☀️', group: 'Celestial', precision: 1, color: '#fef08a' }, sun_elevation: { label: 'Solar Elevation', unit: '°', icon: '☀️', group: 'Celestial', precision: 1, color: '#fef08a' },
// Space // Space
@@ -58,16 +57,25 @@ export const METRICS: Record<string, MetricMeta> = {
// Marine // Marine
wave_height: { label: 'Wave Height', unit: ' m', icon: '🌊', group: 'Marine', precision: 2, color: '#38bdf8' }, wave_height: { label: 'Wave Height', unit: ' m', icon: '🌊', group: 'Marine', precision: 2, color: '#38bdf8' },
swell_wave_height: { label: 'Swell Height', unit: ' m', icon: '🌊', group: 'Marine', precision: 2, color: '#7dd3fc' }, swell_wave_height: { label: 'Swell Height', unit: ' m', icon: '🌊', group: 'Marine', precision: 2, color: '#7dd3fc' },
wave_period: { label: 'Wave Period', unit: ' s', icon: '⏱️', group: 'Marine', precision: 1, color: '#bae6fd' },
// AQ
pm2_5: { label: 'PM2.5', unit: ' μg/m³', icon: '🏭', group: 'Air Quality', precision: 1, color: '#fca5a5' },
pm10: { label: 'PM10', unit: ' μg/m³', icon: '🏭', group: 'Air Quality', precision: 1, color: '#fdba74' },
ozone: { label: 'Ozone', unit: ' μg/m³', icon: '🌐', group: 'Air Quality', precision: 1, color: '#6ee7b7' },
// Forecast // Forecast
forecast_precipitation_mm: { label: 'Precipitation', unit: ' mm', icon: '🌧️', group: 'Forecast', precision: 1, color: '#38bdf8' }, forecast_precipitation_mm: { label: 'Precipitation', unit: ' mm', icon: '🌧️', group: 'Forecast', precision: 1, color: '#38bdf8' },
forecast_precipitation_probability: { label: 'Rain Chance', unit: '%', icon: '🌂', group: 'Forecast', precision: 0, color: '#60a5fa' }, forecast_precipitation_probability: { label: 'Rain Chance', unit: '%', icon: '🌂', group: 'Forecast', precision: 0, color: '#60a5fa' },
} }
export function getPressureTrend(delta: number) {
if (delta > 0.5) return 'Rising';
if (delta < -0.5) return 'Falling';
return 'Stable';
}
export function getUVLabel(uv: number) {
if (uv < 3) return 'Low';
if (uv < 6) return 'Moderate';
if (uv < 8) return 'High';
if (uv < 11) return 'Very High';
return 'Extreme';
}
export function formatValue(key: string, value: number | string | null): string { export function formatValue(key: string, value: number | string | null): string {
if (value === null || value === undefined) return '—' if (value === null || value === undefined) return '—'
const meta = METRICS[key] const meta = METRICS[key]

View File

@@ -1,33 +0,0 @@
import { ref, computed } from 'vue'
import { api, type DataRow } from './api'
export const current = ref<DataRow>({})
export const hourly = ref<DataRow[]>([])
export const daily = ref<DataRow[]>([])
export const loading = ref(false)
export const lastFetch = ref<Date | null>(null)
export async function fetchAll() {
const date = (d: Date = new Date()) => `${d.getFullYear()}-${(d.getMonth() + 1).toString().padStart(2, '0')}-${d.getDate().toString().padStart(2, '0')}`
loading.value = true
const start = new Date(), end = new Date();
start.setDate(start.getDate() + 1);
end.setDate(end.getDate() + 5);
const [c, h, d] = await Promise.allSettled([api.current(), api.hourly(), api.daily(date(start), date(end))])
if (c.status === 'fulfilled') current.value = c.value
if (h.status === 'fulfilled') hourly.value = h.value
if (d.status === 'fulfilled') daily.value = d.value
lastFetch.value = new Date()
loading.value = false
}
export async function fetchHistoricHourly(start: string, end: string): Promise<DataRow[]> {
return api.hourly(start, end)
}
export async function fetchHistoricDaily(start: string, end: string): Promise<DataRow[]> {
return api.daily(start, end)
}
export const isDaytime = computed(() => current.value.sun_is_day === 1)

View File

@@ -0,0 +1,5 @@
// src/services/zIndex.ts
export let highestZIndex = 1000
export function bringToFront(el: HTMLElement) {
el.style.zIndex = String(++highestZIndex)
}

View File

@@ -1,44 +1,38 @@
`<script setup lang="ts"> `<script setup lang="ts">
import GraphModal from '@/components/GraphModal.vue';
import HourlyForecast from '@/components/HourlyForecast.vue';
import Moon from '@/components/Moon.vue';
import Precipitation from '@/components/Precipitation.vue';
import Seismic from '@/components/Seismic.vue';
import Sun from '@/components/Sun.vue';
import Wind from '@/components/Wind.vue';
import {BASE, useWeather} from '@/services/api.ts';
import {formatDate} from '@ztimson/utils'; import {formatDate} from '@ztimson/utils';
import {onMounted, onUnmounted, ref, computed} from 'vue'; import {onMounted, onUnmounted, provide, ref} from 'vue';
import {current, hourly, daily, fetchAll, loading} from '../services/weather';
import {METRICS, GROUPS} from '../services/units';
import MapView from '../components/MapView.vue'; import MapView from '../components/MapView.vue';
import CurrentWeather from '../components/CurrentWeather.vue'; import CurrentWeather from '../components/CurrentWeather.vue';
import ForecastStrip from '../components/ForecastStrip.vue'; import ForecastStrip from '../components/ForecastStrip.vue';
import MetricCard from '../components/MetricCard.vue';
import GraphModal from '../components/GraphModal.vue';
const day = ref(); const day = ref(formatDate('dddd'));
const date = ref(); const date = ref(formatDate('MMMM D'));
const time = ref(); const time = ref(formatDate('h:mm A'));
const props = defineProps<{dark: boolean}>(); const props = defineProps<{dark: boolean}>();
const selectedMetric = ref<string | null>(null); const selectedMetric = ref<string | null>(null);
let interval: ReturnType<typeof setInterval>;
let clock: ReturnType<typeof setInterval>; let clock: ReturnType<typeof setInterval>;
provide('openGraph', (key: string) => selectedMetric.value = key);
onMounted(async () => { onMounted(async () => {
useWeather();
clock = setInterval(() => { clock = setInterval(() => {
day.value = formatDate('dddd'); day.value = formatDate('dddd');
date.value = formatDate('MMMM D'); date.value = formatDate('MMMM D');
time.value = formatDate('h:mm A'); time.value = formatDate('h:mm A');
}, 1000); }, 1000);
await fetchAll();
interval = setInterval(fetchAll, 60 * 1000);
}); });
onUnmounted(() => { onUnmounted(() => {
clearInterval(clock); clearInterval(clock);
clearInterval(interval);
});
const groupedMetrics = computed(() => {
return GROUPS.map(group => ({
group,
keys: Object.entries(METRICS)
.filter(([key, meta]) => meta.group === group && current.value[key] != null)
.map(([key]) => key)
})).filter(g => g.keys.length > 0);
}); });
</script> </script>
@@ -61,10 +55,6 @@ const groupedMetrics = computed(() => {
.panel-col { .panel-col {
width: 380px; width: 380px;
flex-shrink: 0;
display: flex;
flex-direction: column;
gap: 12px;
padding: 16px; padding: 16px;
overflow-y: auto; overflow-y: auto;
border-left: 1px solid var(--border); border-left: 1px solid var(--border);
@@ -161,14 +151,12 @@ const groupedMetrics = computed(() => {
<template> <template>
<div class="dashboard"> <div class="dashboard">
<div v-if="loading" class="loading-bar"/>
<div class="map-col"> <div class="map-col">
<MapView :dark="props.dark"/> <MapView :dark="props.dark"/>
</div> </div>
<div class="panel-col"> <div class="panel-col">
<div class="flex-r align-items-center gap-3"> <div class="flex-r align-items-center gap-3 mb-3">
<div class="pe-3" style="border-right: 2px solid var(--border)"> <div class="pe-3" style="border-right: 2px solid var(--border)">
<h2 class="fs-6 m-0" style="line-height: 1em">{{time}}</h2> <h2 class="fs-6 m-0" style="line-height: 1em">{{time}}</h2>
</div> </div>
@@ -177,28 +165,22 @@ const groupedMetrics = computed(() => {
<h2 class="m-0 fs-1 fg-muted" style="line-height: 1em">{{date}}</h2> <h2 class="m-0 fs-1 fg-muted" style="line-height: 1em">{{date}}</h2>
</div> </div>
</div> </div>
<CurrentWeather /> <CurrentWeather class="mb-3" />
<ForecastStrip :days="daily"/> <HourlyForecast class="mb-3" />
<ForecastStrip class="mb-3" />
<template v-for="g in groupedMetrics" :key="g.group"> <Seismic class="mb-3" />
<div class="group-label">{{ g.group }}</div> <Precipitation class="mb-3" />
<div class="metric-grid"> <Wind class="mb-3" />
<MetricCard <Sun class="mb-3" />
v-for="key in g.keys" <Moon class="mb-3" />
:key="key"
:metric-key="key" <div class="align-x">
:data="current" <a :href="BASE + '/docs'" style="font-size: 0.75em;" target="_blank">OpenAPI Docs</a> | <a href="https://zakscode.com" style="font-size: 0.75em;" target="_blank">ZaksCode</a>
@click="selectedMetric = key" </div>
/>
</div>
</template>
</div> </div>
<GraphModal <GraphModal :metric-key="selectedMetric" @close="selectedMetric = null" />
:metric-key="selectedMetric"
:current-data="current"
@close="selectedMetric = null"
/>
</div> </div>
</template> </template>
` `

View File

@@ -1,9 +1,7 @@
import time, math, board, smbus2, serial, psutil, pynmea2, bme680 import time, math, board, smbus2, serial, psutil, pynmea2, bme680
import adafruit_ltr390, threading, os, statistics import adafruit_ltr390, threading, os, statistics, requests
from datetime import datetime, timezone from datetime import datetime, timezone
from collections import deque from collections import deque
from influxdb_client import InfluxDBClient, Point
from influxdb_client.client.write_api import SYNCHRONOUS
from dotenv import load_dotenv from dotenv import load_dotenv
from pathlib import Path from pathlib import Path
@@ -16,10 +14,7 @@ def cfg():
'LATITUDE': float(os.getenv('LATITUDE', '0.0')), 'LATITUDE': float(os.getenv('LATITUDE', '0.0')),
'LONGITUDE': float(os.getenv('LONGITUDE', '0.0')), 'LONGITUDE': float(os.getenv('LONGITUDE', '0.0')),
'ALTITUDE': float(os.getenv('ALTITUDE', '0.0')), 'ALTITUDE': float(os.getenv('ALTITUDE', '0.0')),
'INFLUX_URL': os.getenv('INFLUX_URL', 'http://localhost:8086'), 'DB_HOST': os.getenv('DB_HOST', 'http://localhost:8428'),
'INFLUX_TOKEN': os.getenv('INFLUX_TOKEN', ''),
'INFLUX_ORG': os.getenv('INFLUX_ORG', 'weather'),
'INFLUX_BUCKET': os.getenv('INFLUX_BUCKET', 'station'),
'GPS_PORT': os.getenv('GPS_PORT', '/dev/ttyS0'), 'GPS_PORT': os.getenv('GPS_PORT', '/dev/ttyS0'),
'GPS_BAUD': int( os.getenv('GPS_BAUD', '9600')), 'GPS_BAUD': int( os.getenv('GPS_BAUD', '9600')),
'GAS_REFERENCE': int( os.getenv('GAS_REFERENCE', '250000')), 'GAS_REFERENCE': int( os.getenv('GAS_REFERENCE', '250000')),
@@ -31,48 +26,27 @@ def cfg():
'AS3935_NOISE_FLOOR': int( os.getenv('AS3935_NOISE_FLOOR', '5')), 'AS3935_NOISE_FLOOR': int( os.getenv('AS3935_NOISE_FLOOR', '5')),
'AS3935_WATCHDOG': int( os.getenv('AS3935_WATCHDOG', '3')), 'AS3935_WATCHDOG': int( os.getenv('AS3935_WATCHDOG', '3')),
'AS3935_SPIKE_REJ': int( os.getenv('AS3935_SPIKE_REJ', '7')), 'AS3935_SPIKE_REJ': int( os.getenv('AS3935_SPIKE_REJ', '7')),
'SKIN_TYPE_2_MED': int( os.getenv('SKIN_TYPE_2_MED', '200')),
'LOOP_INTERVAL': float( os.getenv('LOOP_INTERVAL', '1.0')), 'LOOP_INTERVAL': float( os.getenv('LOOP_INTERVAL', '1.0')),
'FLOOD_TEMP_THRESHOLD': float( os.getenv('FLOOD_TEMP_THRESHOLD', '10.0')), 'FLOOD_TEMP_THRESHOLD': float( os.getenv('FLOOD_TEMP_THRESHOLD', '10.0')),
'SLUSH_TEMP_THRESHOLD': float( os.getenv('SLUSH_TEMP_THRESHOLD', '0.0')), 'SLUSH_TEMP_THRESHOLD': float( os.getenv('SLUSH_TEMP_THRESHOLD', '0.0')),
'SNOW_STRENGTH_MIN': int( os.getenv('SNOW_STRENGTH_MIN', '700')), 'SNOW_STRENGTH_MIN': int( os.getenv('SNOW_STRENGTH_MIN', '700')),
'SEISMIC_NOISE_FLOOR': float( os.getenv('SEISMIC_NOISE_FLOOR', '0.02')), 'SEISMIC_NOISE_FLOOR': float( os.getenv('SEISMIC_NOISE_FLOOR', '0.02')),
'CLOUD_BUCKET_SIZE': int( os.getenv('CLOUD_BUCKET_SIZE', '5')), 'TEMP_CALIBRATION': float( os.getenv('TEMP_CALIBRATION', '0.0')),
'CLOUD_HISTORY': int( os.getenv('CLOUD_HISTORY', '20')), 'VISIBILITY_MAX': float( os.getenv('VISIBILITY_MAX', '50.0')),
'CLOUD_BASELINE_PCT': float( os.getenv('CLOUD_BASELINE_PCT', '0.9')), 'CLOUD_SUN_MIN_ELEV': float( os.getenv('CLOUD_SUN_MIN_ELEV', '5.0')),
'CLOUD_VOLATILITY_THRESH':float( os.getenv('CLOUD_VOLATILITY_THRESH', '0.3')), 'CLOUD_LUX_CLEAR_SKY': float( os.getenv('CLOUD_LUX_CLEAR_SKY', '100000.0')),
'CLOUD_CLEAR_MAX': float( os.getenv('CLOUD_CLEAR_MAX', '15.0')), 'CLOUD_HUMIDITY_WEIGHT': float( os.getenv('CLOUD_HUMIDITY_WEIGHT', '0.3')),
'CLOUD_MOSTLY_CLEAR_MAX': float( os.getenv('CLOUD_MOSTLY_CLEAR_MAX', '40.0')),
'CLOUD_CLOUDY_MAX': float( os.getenv('CLOUD_CLOUDY_MAX', '80.0')),
'CLOUD_MIN_SAMPLES': int( os.getenv('CLOUD_MIN_SAMPLES', '5')),
'CLOUD_LUX_WINDOW': int( os.getenv('CLOUD_LUX_WINDOW', '10')),
} }
# ── InfluxDB ────────────────────────────────────────────────────────────────── # ── VictoriaMetrics ───────────────────────────────────────────────────────────
_influx_client = None def write(c, fields, collection='weather'):
_influx_writer = None field_str = ','.join(
_influx_url = None f"{k}={'true' if v is True else 'false' if v is False else v}"
_influx_token = None for k, v in fields.items() if v is not None
)
def get_writer(c): if not field_str: return
global _influx_client, _influx_writer, _influx_url, _influx_token requests.post(f"{c['DB_HOST']}/write", data=f"{collection} {field_str}", timeout=2)
if c['INFLUX_URL'] != _influx_url or c['INFLUX_TOKEN'] != _influx_token:
if _influx_client: _influx_client.close()
_influx_client = InfluxDBClient(url=c['INFLUX_URL'], token=c['INFLUX_TOKEN'], org=c['INFLUX_ORG'])
_influx_writer = _influx_client.write_api(write_options=SYNCHRONOUS)
_influx_url, _influx_token = c['INFLUX_URL'], c['INFLUX_TOKEN']
return _influx_writer
def write(c, measurement, fields, tags={}):
try:
p = Point(measurement).time(datetime.now(timezone.utc))
for k, v in tags.items(): p = p.tag(k, v)
for k, v in fields.items():
if v is not None: p = p.field(k, float(v) if isinstance(v, (int, float)) else v)
get_writer(c).write(bucket=c['INFLUX_BUCKET'], org=c['INFLUX_ORG'], record=p)
except Exception as e:
print(f"[InfluxDB] {measurement}: {e}")
# ── Helpers ─────────────────────────────────────────────────────────────────── # ── Helpers ───────────────────────────────────────────────────────────────────
@@ -130,54 +104,36 @@ def vpd(tc, rh):
return round(es - (rh/100)*es, 3) return round(es - (rh/100)*es, 3)
def gas_to_aqi(gas_ohms, humidity, gas_reference): def gas_to_aqi(gas_ohms, humidity, gas_reference):
if gas_ohms is None: return None, None if gas_ohms is None: return None
score = min(max(round(min(gas_ohms/gas_reference,1.0)*75 + (25 - abs(humidity-40)*0.5)), 0), 100) gas_score = min(gas_ohms / gas_reference, 1.0) * 75
label = 'Very Poor' hum_score = 25 - abs(humidity - 40) * 0.5
if score >= 80: label = 'Excellent' quality = min(max(gas_score + hum_score, 0), 100)
elif score >= 60: label = 'Good' aqi = round((1 - quality / 100) * 500)
elif score >= 40: label = 'Fair' return aqi
elif score >= 20: label = 'Poor'
return score, label
def sea_level_pressure(pressure_hpa, alt_m): def sea_level_pressure(pressure_hpa, alt_m):
if alt_m is None: return None if alt_m is None: return None
return round(pressure_hpa / math.pow(1 - (alt_m / 44330.0), 5.255), 2) return round(pressure_hpa / math.pow(1 - (alt_m / 44330.0), 5.255), 2)
def frost_risk(temp_c, dew_point_c):
margin = temp_c - dew_point_c
if temp_c <= 0: return 'High'
if temp_c <= 3 and margin < 2: return 'Moderate'
if temp_c <= 5: return 'Low'
return 'None'
def get_pressure_trend(window): def get_pressure_trend(window):
if pressure_buffer.maxlen != window: if pressure_buffer.maxlen != window:
pressure_buffer.__init__(window) pressure_buffer.__init__(window)
if len(pressure_buffer) < 2: return None, None if len(pressure_buffer) < 2: return None
delta = pressure_buffer[-1] - pressure_buffer[0] delta = pressure_buffer[-1] - pressure_buffer[0]
label = 'Rising' if delta > 1.0 else 'Falling' if delta < -1.0 else 'Stable' return round(delta, 2)
return round(delta, 2), label
def read_bme(c, sensor, alt_m=None): def read_bme(c, sensor, alt_m=None):
null = { if not sensor: return None, None, None
'temperature': None, 'humidity': None, 'humidity_abs': None,
'dew_point': None, 'pressure_hpa': None, 'pressure_slp': None,
'pressure_rate': None, 'vapor_pressure_deficit': None,
'heat_index': None, 'air_quality_ohms': None, 'air_quality': None,
}
if not sensor:
write(c, 'environment', null)
return None, None
try: try:
if not sensor.get_sensor_data(): return None, None if not sensor.get_sensor_data(): return None, None, None
t, rh, p = sensor.data.temperature, sensor.data.humidity, sensor.data.pressure t, rh, p = sensor.data.temperature, sensor.data.humidity, sensor.data.pressure
gas = round(sensor.data.gas_resistance, 0) if sensor.data.heat_stable else None gas = round(sensor.data.gas_resistance, 0) if sensor.data.heat_stable else None
aqi_score, aqi_label = gas_to_aqi(gas, rh, c['GAS_REFERENCE']) aqi_score = gas_to_aqi(gas, rh, c['GAS_REFERENCE'])
pressure_buffer.append(p) pressure_buffer.append(p)
p_rate, p_label = get_pressure_trend(c['PRESSURE_TREND_WINDOW']) p_rate = get_pressure_trend(c['PRESSURE_TREND_WINDOW'])
dp = round(t - (100-rh)/5.0, 2) dp = round(t - (100 - rh) / 5.0, 2)
write(c, 'environment', { write(c, {
'temperature': round(t, 2), 'temperature': round(t + c['TEMP_CALIBRATION'], 2),
'humidity': round(rh, 2), 'humidity': round(rh, 2),
'dew_point': dp, 'dew_point': dp,
'pressure_hpa': round(p, 2), 'pressure_hpa': round(p, 2),
@@ -188,60 +144,103 @@ def read_bme(c, sensor, alt_m=None):
'heat_index': heat_index(t, rh), 'heat_index': heat_index(t, rh),
'air_quality_ohms': gas, 'air_quality_ohms': gas,
'air_quality': aqi_score, 'air_quality': aqi_score,
}, tags={
'air_quality_label': aqi_label or '',
'pressure_trend': p_label or '',
'frost_risk': frost_risk(t, dp),
}) })
return t, rh return t, rh, aqi_score
except Exception as e: except Exception as e:
print(f"[BME680] {e}") print(f"[BME680] {e}")
return None, None return None, None, None
# ── MPU6050 ─────────────────────────────────────────────────────────────────── # ── MPU6050 ───────────────────────────────────────────────────────────────────
# ── MPU6050 ───────────────────────────────────────────────────────────────────
MPU_ADDR = 0x68 MPU_ADDR = 0x68
_mpu_peak = None _mpu_peak = None
_mpu_lock = threading.Lock() _mpu_lock = threading.Lock()
_mpu_offsets = None _mpu_grav = None # slow-tracked gravity vector [x, y, z]
GRAV_ALPHA = 0.05 # EMA rate while still
STILL_SPREAD = 0.03 # g, max peak-to-peak per axis to count as "still"
_still_buf = deque(maxlen=50) # ~0.5s @ 100Hz
def read_accel():
d = try_read(lambda: bus.read_i2c_block_data(MPU_ADDR, 0x3B, 6))
if not d: return None
return [
s16((d[0] << 8) | d[1]) / 16384.0,
s16((d[2] << 8) | d[3]) / 16384.0,
s16((d[4] << 8) | d[5]) / 16384.0,
]
def rotation_to_z(g):
"""Rodrigues rotation mapping gravity vector g -> +Z. Returns (R, |g|)."""
mag = math.sqrt(sum(v * v for v in g))
u = [v / mag for v in g]
kx, ky = u[1], -u[0] # axis = u × z
s = math.sqrt(kx * kx + ky * ky) # sin(theta)
c = u[2] # cos(theta)
if s < 1e-8:
return [[1, 0, 0], [0, c, 0], [0, 0, c]], mag
kx, ky = kx / s, ky / s
v = 1 - c
return [
[c + kx * kx * v, kx * ky * v, ky * s],
[ky * kx * v, c + ky * ky * v, -kx * s],
[-ky * s, kx * s, c ],
], mag
def is_still(buf):
if len(buf) < buf.maxlen: return False
return all(
max(s[i] for s in buf) - min(s[i] for s in buf) < STILL_SPREAD
for i in range(3)
)
def calibrate_mpu(samples=200): def calibrate_mpu(samples=200):
if not bus: return None if not bus: return None
print(" Calibrating MPU6050, keep still...") print(" Calibrating MPU6050, keep still...")
sums = [0.0]*6 sums, n = [0.0, 0.0, 0.0], 0
n = 0
for _ in range(samples): for _ in range(samples):
d = try_read(lambda: bus.read_i2c_block_data(MPU_ADDR, 0x3B, 14)) a = read_accel()
if d: if a:
sums[0] += s16((d[0] << 8)|d[1]) / 16384.0 sums = [s + v for s, v in zip(sums, a)]
sums[1] += s16((d[2] << 8)|d[3]) / 16384.0
sums[2] += s16((d[4] << 8)|d[5]) / 16384.0
sums[3] += s16((d[8] << 8)|d[9]) / 131.0
sums[4] += s16((d[10] << 8)|d[11]) / 131.0
sums[5] += s16((d[12] << 8)|d[13]) / 131.0
n += 1 n += 1
time.sleep(0.005) time.sleep(0.005)
if n == 0: return None if n == 0: return None
return [sums[0]/n, sums[1]/n, sums[2]/n-1.0, sums[3]/n, sums[4]/n, sums[5]/n]
g = [s / n for s in sums]
mag = math.sqrt(sum(v * v for v in g))
if not 0.5 < mag < 1.5:
print(f" ❌ MPU6050: bad gravity magnitude {mag:.2f}g")
return None
print(f" ✅ MPU6050: gravity {mag:.3f}g on ({g[0]:.2f}, {g[1]:.2f}, {g[2]:.2f}) → mapped to Z")
return g
def mpu_loop(): def mpu_loop():
global _mpu_peak global _mpu_peak, _mpu_grav
while True: while True:
if bus and _mpu_offsets: if bus and _mpu_grav:
d = try_read(lambda: bus.read_i2c_block_data(MPU_ADDR, 0x3B, 14)) a = read_accel()
if d: if a:
o = _mpu_offsets _still_buf.append(a)
ax = s16((d[0] << 8)|d[1]) / 16384.0 - o[0]
ay = s16((d[2] << 8)|d[3]) / 16384.0 - o[1] R, g = rotation_to_z(_mpu_grav)
az = s16((d[4] << 8)|d[5]) / 16384.0 - o[2] ax = R[0][0] * a[0] + R[0][1] * a[1] + R[0][2] * a[2]
mag = math.sqrt(ax**2 + ay**2 + (az - 1.0)**2) ay = R[1][0] * a[0] + R[1][1] * a[1] + R[1][2] * a[2]
az = R[2][0] * a[0] + R[2][1] * a[1] + R[2][2] * a[2] - g
mag = math.sqrt(ax**2 + ay**2 + az**2)
# Re-track gravity whenever the sensor is *still* —
# absorbs bias shifts of any size, blocks shakes
if is_still(_still_buf):
_mpu_grav = [p + (v - p) * GRAV_ALPHA for p, v in zip(_mpu_grav, a)]
with _mpu_lock: with _mpu_lock:
if _mpu_peak is None or mag > _mpu_peak['magnitude']: if _mpu_peak is None or mag > _mpu_peak['seismic_magnitude']:
_mpu_peak = { _mpu_peak = {
'seismic_x': round(ax, 3), 'seismic_x': round(ax, 3),
'seismic_y': round(ay, 3), 'seismic_y': round(ay, 3),
'seismic_z': round(az, 3), 'seismic_z': round(az, 3),
'magnitude': round(mag, 4), 'seismic_magnitude': round(mag, 4),
} }
time.sleep(0.01) time.sleep(0.01)
@@ -249,171 +248,125 @@ def flush_mpu(c):
global _mpu_peak global _mpu_peak
with _mpu_lock: with _mpu_lock:
data, _mpu_peak = _mpu_peak, None data, _mpu_peak = _mpu_peak, None
if data and data['magnitude'] > c['SEISMIC_NOISE_FLOOR']: if data and data['seismic_magnitude'] > c['SEISMIC_NOISE_FLOOR']:
write(c, 'seismic', data) write(c, data)
else:
write(c, {'seismic_x': 0.0, 'seismic_y': 0.0, 'seismic_z': 0.0, 'seismic_magnitude': 0.0})
# ── QMC5883L ────────────────────────────────────────────────────────────────── # ── QMC5883L ──────────────────────────────────────────────────────────────────
def read_compass(c): def read_compass(c):
null = {'x': None, 'y': None, 'z': None, 'heading': None} if not bus: return
if not bus: write(c, 'compass', null); return
try: try:
addr = 0x1E addr = 0x1E
try_read(lambda: bus.write_byte_data(addr, 0x09, 0x1D)) try_read(lambda: bus.write_byte_data(addr, 0x09, 0x1D))
d = try_read(lambda: bus.read_i2c_block_data(addr, 0x00, 6)) d = try_read(lambda: bus.read_i2c_block_data(addr, 0x00, 6))
if not d: write(c, 'compass', null); return if not d: return
x = s16((d[1] << 8)|d[0]) x = s16((d[1] << 8) | d[0])
y = s16((d[3] << 8)|d[2]) y = s16((d[3] << 8) | d[2])
z = s16((d[5] << 8)|d[4]) z = s16((d[5] << 8) | d[4])
heading = math.degrees(math.atan2(y, x)) heading = math.degrees(math.atan2(y, x))
if heading < 0: heading += 360 if heading < 0: heading += 360
write(c, 'compass', { write(c, {'compass_x': x, 'compass_y': y, 'compass_z': z, 'heading': round(heading, 1)})
'compass_x': x, 'compass_y': y, 'compass_z': z,
'heading': round(heading, 1),
})
except Exception as e: except Exception as e:
print(f"[QMC5883L] {e}") print(f"[QMC5883L] {e}")
write(c, 'compass', null)
# ── LTR390 ─────────────────────────────────────────────────────────────────── # ── LTR390 ───────────────────────────────────────────────────────────────────
uv_dose_mj = 0.0 uv_dose_mj = 0.0
uv_dose_date = datetime.now().date() uv_dose_date = datetime.now().date()
last_uv_time = time.time() last_uv_time = time.time()
dli_lux_acc = 0.0 dli_lux_acc = 0.0
dli_date = datetime.now().date() dli_date = datetime.now().date()
last_lux_time = time.time() last_lux_time = time.time()
daylight_start = None daylight_start = None
DAYLIGHT_LUX_THRESHOLD = 50 DAYLIGHT_LUX_THRESHOLD = 50
_cloud_baseline = {} def sun_elevation(lat, lon):
_cloud_lux_window = deque(maxlen=10) now = datetime.now(timezone.utc)
doy = now.timetuple().tm_yday
hour_ut = now.hour + now.minute / 60 + now.second / 3600
decl = math.radians(23.45 * math.sin(math.radians((360 / 365) * (doy - 81))))
lstm = 15 * round(lon / 15)
eot = (9.87 * math.sin(math.radians(2 * (360/365) * (doy - 81)))
- 7.53 * math.cos(math.radians((360/365) * (doy - 81)))
- 1.5 * math.sin(math.radians((360/365) * (doy - 81))))
solar_time = hour_ut + (lon - lstm) / 15 + eot / 60
ha = math.radians(15 * (solar_time - 12))
lat_r = math.radians(lat)
elev = math.degrees(math.asin(
math.sin(lat_r) * math.sin(decl) +
math.cos(lat_r) * math.cos(decl) * math.cos(ha)
))
return elev
def _el_bucket(solar_el, bucket_size): def estimate_cloud_cover(c, lux, temp, dew_point, lat, lon):
if solar_el is None: return None elev = sun_elevation(lat, lon)
return round(solar_el / bucket_size) * bucket_size temp_dp_spread = temp - dew_point
hum_cloud = max(0.0, min(100.0, (1 - temp_dp_spread / 20.0) * 100))
def moon_phase_factor(): if elev < c['CLOUD_SUN_MIN_ELEV']:
known_new = datetime(2024, 1, 11, tzinfo=timezone.utc) return round(hum_cloud, 1), round(elev, 2)
lunar_cycle = 29.53058867
days = (datetime.now(timezone.utc) - known_new).total_seconds() / 86400
phase = (days % lunar_cycle) / lunar_cycle
return round(math.cos(math.pi * (phase - 0.5)) * 0.5 + 0.5, 3)
def update_cloud_baseline(c, solar_el, lux): theoretical = max(c['CLOUD_LUX_CLEAR_SKY'] * math.sin(math.radians(elev)), 1.0)
bucket = _el_bucket(solar_el, c['CLOUD_BUCKET_SIZE']) solar_ratio = min(lux / theoretical, 1.0)
if bucket is None: return solar_cloud = (1.0 - solar_ratio) * 100
if bucket not in _cloud_baseline:
_cloud_baseline[bucket] = deque(maxlen=c['CLOUD_HISTORY'])
_cloud_baseline[bucket].append(lux)
def get_expected_lux(c, solar_el): w = c['CLOUD_HUMIDITY_WEIGHT']
bucket = _el_bucket(solar_el, c['CLOUD_BUCKET_SIZE']) blended = (1 - w) * solar_cloud + w * hum_cloud
if bucket is None: return None return round(min(max(blended, 0.0), 100.0), 1), round(elev, 2)
history = _cloud_baseline.get(bucket)
if not history or len(history) < c['CLOUD_MIN_SAMPLES']: return None
sorted_vals = sorted(history)
idx = max(0, int(len(sorted_vals) * c['CLOUD_BASELINE_PCT']) - 1)
baseline = sorted_vals[idx]
if solar_el is not None and solar_el < 0:
baseline = baseline * moon_phase_factor()
return round(baseline, 2)
def classify_clouds(c, lux, solar_el): def estimate_visibility(c, rh, aqi):
# Resize window if config changed rh_clamped = min(rh, 99.5)
if _cloud_lux_window.maxlen != c['CLOUD_LUX_WINDOW']: beta_rh = 0.000146 * math.exp(0.06 * rh_clamped)
_cloud_lux_window.__init__(maxlen=c['CLOUD_LUX_WINDOW']) aqi_factor = 1.0 + ((aqi or 0) / 500.0) * 0.5
_cloud_lux_window.append(lux) extinction = beta_rh * aqi_factor
return round(min(3.912 / extinction, c['VISIBILITY_MAX']), 2)
expected = get_expected_lux(c, solar_el) def read_ltr(c, sensor, temp=None, dew_point=None, rh=None, aqi=None, lat=0.0, lon=0.0):
if expected is None or expected < 0.1:
return None, None, None
ratio = min(lux / expected, 1.0)
cloud_pct = round((1 - ratio) * 100, 1)
volatility = None
if len(_cloud_lux_window) >= 3:
mean = statistics.mean(_cloud_lux_window)
if mean > 0:
volatility = round(statistics.stdev(_cloud_lux_window) / mean, 3)
vt = c['CLOUD_VOLATILITY_THRESH']
if volatility is not None and volatility > vt and c['CLOUD_CLEAR_MAX'] < cloud_pct < c['CLOUD_CLOUDY_MAX']:
label = 'Partly Cloudy'
elif cloud_pct < c['CLOUD_CLEAR_MAX']:
label = 'Clear'
elif cloud_pct < c['CLOUD_MOSTLY_CLEAR_MAX']:
label = 'Mostly Clear'
elif cloud_pct < c['CLOUD_CLOUDY_MAX']:
label = 'Cloudy'
else:
label = 'Overcast'
return cloud_pct, label, volatility
def visibility_estimate(lux, humidity, solar_el=None):
base_km = 50.0
hum_factor = max(0, 1 - ((humidity - 40) / 60)) if humidity > 40 else 1.0
if solar_el is not None and solar_el > 5:
lux_factor = min(lux / 10000, 1.0)
else:
lux_factor = 1.0
return round(base_km * hum_factor * lux_factor, 1)
def read_ltr(c, sensor, solar_el, humidity=None):
global uv_dose_mj, uv_dose_date, last_uv_time global uv_dose_mj, uv_dose_date, last_uv_time
global dli_lux_acc, dli_date, last_lux_time, daylight_start global dli_lux_acc, dli_date, last_lux_time, daylight_start
null = { if not sensor: return
'lux': None, 'uv_index': None, 'solar_wm2': None,
'uv_dose': None, 'clouds': None, 'daily_light_integral': None,
'daylight': None, 'visibility': None,
}
if not sensor: write(c, 'light', null); return
try: try:
lux = round(sensor.lux, 2) lux = round(sensor.lux, 2)
uvi = round(sensor.uvi, 2) uvi = round(sensor.uvi, 2)
except Exception as e: except Exception as e:
print(f"[LTR390] {e}") print(f"[LTR390] {e}")
write(c, 'light', null)
return return
now = time.time() now = time.time()
today = datetime.now().date() today = datetime.now().date()
if today != uv_dose_date: if today != uv_dose_date: uv_dose_mj, uv_dose_date = 0.0, today
uv_dose_mj, uv_dose_date = 0.0, today if today != dli_date: dli_lux_acc, dli_date, daylight_start = 0.0, today, None
if today != dli_date:
dli_lux_acc, dli_date, daylight_start = 0.0, today, None
dt = now - last_uv_time uv_dose_mj += uvi * 25 * (now - last_uv_time)
uv_dose_mj += uvi * 25 * dt
dli_lux_acc += lux * (now - last_lux_time) dli_lux_acc += lux * (now - last_lux_time)
last_uv_time = now last_uv_time = now
last_lux_time = now last_lux_time = now
dli = round(dli_lux_acc / 54 / 1_000_000, 4)
if lux >= DAYLIGHT_LUX_THRESHOLD and daylight_start is None: if lux >= DAYLIGHT_LUX_THRESHOLD and daylight_start is None:
daylight_start = now daylight_start = now
daylight_hours = round((now - daylight_start) / 3600, 2) if daylight_start else 0.0
update_cloud_baseline(c, solar_el, lux) fields = {
cloud_pct, cloud_label, volatility = classify_clouds(c, lux, solar_el)
write(c, 'light', {
'lux': lux, 'lux': lux,
'uv_index': uvi, 'uv_index': uvi,
'solar_wm2': round(lux / 120, 2), 'solar_wm2': round(lux / 120, 2),
'uv_dose': round(uv_dose_mj, 2), 'uv_dose': round(uv_dose_mj, 2),
'clouds': cloud_pct, 'daily_light_integral': round(dli_lux_acc / 54 / 1_000_000, 4),
'daily_light_integral': dli, }
'daylight': daylight_hours,
'visibility': visibility_estimate(lux, humidity, solar_el) if humidity else None, if temp is not None and dew_point is not None:
}, tags={'clouds_label': cloud_label or ''}) cloud, sun_elev = estimate_cloud_cover(c, lux, temp, dew_point, lat, lon)
fields['clouds'] = cloud
fields['sun_elevation'] = sun_elev
if rh is not None:
fields['visibility'] = estimate_visibility(c, rh, aqi)
write(c, fields)
# ── TF-Luna ─────────────────────────────────────────────────────────────────── # ── TF-Luna ───────────────────────────────────────────────────────────────────
@@ -427,47 +380,35 @@ def calibrate_luna(c):
for _ in range(c['LUNA_CAL_SAMPLES']): for _ in range(c['LUNA_CAL_SAMPLES']):
d = try_read(lambda: bus.read_i2c_block_data(0x10, 0x00, 6)) d = try_read(lambda: bus.read_i2c_block_data(0x10, 0x00, 6))
if d: if d:
dist, strength = d[0]|(d[1]<<8), d[2]|(d[3]<<8) dist, strength = d[0] | (d[1] << 8), d[2] | (d[3] << 8)
if strength >= 100 and 0 < dist <= c['LUNA_MAX_DIST_CM']: if strength >= 100 and 0 < dist <= c['LUNA_MAX_DIST_CM']:
readings.append(dist) readings.append(dist)
time.sleep(0.1) time.sleep(0.1)
if readings: if readings:
luna_baseline_cm = round(sum(readings)/len(readings), 1) luna_baseline_cm = round(sum(readings) / len(readings), 1)
print(f" ✅ TF-Luna baseline: {luna_baseline_cm} cm") print(f" ✅ TF-Luna baseline: {luna_baseline_cm} cm")
else: else:
print(" ❌ TF-Luna: calibration failed") print(" ❌ TF-Luna: calibration failed")
def read_luna(c, temp_c): def read_luna(c):
null = {'ground_distance': None, 'lidar_strength': None} if not bus: return
if not bus: write(c, 'accumulation', null); return
try: try:
d = try_read(lambda: bus.read_i2c_block_data(0x10, 0x00, 6)) d = try_read(lambda: bus.read_i2c_block_data(0x10, 0x00, 6))
if not d: write(c, 'ground', null); return if not d: return
dist = d[0]|(d[1]<<8) dist = d[0] | (d[1] << 8)
strength = d[2]|(d[3]<<8) strength = d[2] | (d[3] << 8)
if strength < 100 or dist <= 0 or dist > c['LUNA_MAX_DIST_CM']: if strength < 100 or dist <= 0 or dist > c['LUNA_MAX_DIST_CM']: return
write(c, 'accumulation', null); return
fields = {'ground_distance': dist, 'ground_calibration': luna_baseline_cm, 'lidar_strength': strength} fields = {'ground_distance': dist, 'ground_calibration': luna_baseline_cm, 'lidar_strength': strength}
kind = 'none'
if luna_baseline_cm and (luna_baseline_cm - dist) >= c['LUNA_MIN_DEPTH_CM']: if luna_baseline_cm and (luna_baseline_cm - dist) >= c['LUNA_MIN_DEPTH_CM']:
t = temp_c depth = round(luna_baseline_cm - dist, 1)
depth = round(luna_baseline_cm - dist, 1)
kind = (
'flood' if t is not None and t > c['FLOOD_TEMP_THRESHOLD'] else
'slush' if t is not None and t > c['SLUSH_TEMP_THRESHOLD'] else
'snow' if strength > c['SNOW_STRENGTH_MIN'] else 'ice'
)
fields['accumulation'] = depth fields['accumulation'] = depth
else: else:
fields['accumulation'] = 0 fields['accumulation'] = 0
write(c, 'accumulation', fields, tags={'accumulation_type': kind}) write(c, fields)
except Exception as e: except Exception as e:
print(f"[TF-Luna] {e}") print(f"[TF-Luna] {e}")
write(c, 'accumulation', null)
# ── AS3935 ─────────────────────────────────────────────────────────────────── # ── AS3935 ───────────────────────────────────────────────────────────────────
lightning_distances = deque(maxlen=10) lightning_distances = deque(maxlen=10)
lightning_count = 0 lightning_count = 0
@@ -477,8 +418,7 @@ def init_as3935(c):
if not bus: return if not bus: return
try: try:
addr = c['AS3935_ADDR'] addr = c['AS3935_ADDR']
val = (c['AS3935_NOISE_FLOOR'] << 4) | c['AS3935_WATCHDOG'] bus.write_byte_data(addr, 0x01, (c['AS3935_NOISE_FLOOR'] << 4) | c['AS3935_WATCHDOG'])
bus.write_byte_data(addr, 0x01, val)
bus.write_byte_data(addr, 0x02, c['AS3935_SPIKE_REJ']) bus.write_byte_data(addr, 0x02, c['AS3935_SPIKE_REJ'])
bus.write_byte_data(addr, 0x00, 0x24) bus.write_byte_data(addr, 0x00, 0x24)
print(" ✅ AS3935") print(" ✅ AS3935")
@@ -496,26 +436,27 @@ def read_as3935(c):
energy = ((data[5] & 0x1F) << 16) | (data[4] << 8) | data[3] energy = ((data[5] & 0x1F) << 16) | (data[4] << 8) | data[3]
try_read(lambda: bus.read_byte_data(addr, 0x03)) try_read(lambda: bus.read_byte_data(addr, 0x03))
if interrupt not in (0x04, 0x08) or energy < 1000: return if interrupt not in (0x04, 0x08) or energy < 1000: return
dist = data[6] & 0x3F dist = data[6] & 0x3F
lightning_distances.append(dist) lightning_distances.append(dist)
lightning_count += 1 lightning_count += 1
elapsed = time.time() - lightning_window_start elapsed = time.time() - lightning_window_start
if elapsed >= 3600: if elapsed >= 3600:
lightning_count = 1 lightning_count, lightning_window_start, elapsed = 1, time.time(), 1
lightning_window_start = time.time()
elapsed = 1
strike_rate = round(lightning_count / (elapsed / 3600), 1)
trend = 'Stationary' trend = 'Stationary'
if len(lightning_distances) >= 3: if len(lightning_distances) >= 3:
avg_early = sum(list(lightning_distances)[:3]) / 3 avg_early = sum(list(lightning_distances)[:3]) / 3
avg_late = sum(list(lightning_distances)[-3:]) / 3 avg_late = sum(list(lightning_distances)[-3:]) / 3
if avg_late < avg_early - 2: trend = 'Approaching' if avg_late < avg_early - 2: trend = 'Approaching'
elif avg_late > avg_early + 2: trend = 'Retreating' elif avg_late > avg_early + 2: trend = 'Retreating'
write(c, 'lightning', {
write(c, {
'lightning_distance': dist, 'lightning_distance': dist,
'lightning_energy': energy, 'lightning_rate': round(lightning_count / (elapsed / 3600), 1),
'lightning_rate': strike_rate, 'storm_trend': trend,
}, tags={'storm_direction': trend}) })
except Exception as e: except Exception as e:
print(f"[AS3935] {e}") print(f"[AS3935] {e}")
@@ -537,66 +478,44 @@ def read_gps(c):
'gps_satellites': int(msg.num_sats), 'gps_satellites': int(msg.num_sats),
}) })
if gps_cache: if gps_cache:
write(c, 'gps', {k: v for k, v in gps_cache.items() if v is not None}) write(c, {k: v for k, v in gps_cache.items() if v is not None})
except Exception as e: except Exception as e:
print(f"[GPS] {e}") print(f"[GPS] {e}")
write(c, 'gps', {'latitude': None, 'longitude': None, 'altitude': None, 'gps_satellites': None})
return gps_cache return gps_cache
def solar_elevation(lat, lon):
now = datetime.now(timezone.utc)
day = now.timetuple().tm_yday
decl = math.radians(23.45 * math.sin(math.radians((360/365)*(day-81))))
hour_angle = math.radians(((now.hour + now.minute/60) - 12) * 15 + lon)
lat_r = math.radians(lat)
el = math.degrees(math.asin(
math.sin(lat_r)*math.sin(decl) +
math.cos(lat_r)*math.cos(decl)*math.cos(hour_angle)
))
return round(el, 2)
# ── Rain ────────────────────────────────────────────────────────────────────── # ── Rain ──────────────────────────────────────────────────────────────────────
def read_rain(c): def read_rain(c):
try: write(c, {'precipitation': 0, 'raining': False})
write(c, 'rain', {'precipitation': 0}, tags={'raining': False})
except Exception as e:
print(f"[Rain] {e}")
# ── Wind ────────────────────────────────────────────────────────────────────── # ── Wind ──────────────────────────────────────────────────────────────────────
def read_wind(c): def read_wind(c):
try: write(c, {'wind_direction': 0, 'wind_speed': 0, 'wind_gusts': 0})
write(c, 'wind', {'wind_direction': 0, 'wind_speed': 0, 'wind_gusts': 0})
except Exception as e:
print(f"[Wind] {e}")
# ── System ──────────────────────────────────────────────────────────────────── # ── System ────────────────────────────────────────────────────────────────────
def read_system(c): def read_system(c):
try: try:
cpu_temp = None cpu_temp = None
temps = psutil.sensors_temperatures()
for key in ('cpu_thermal', 'coretemp', 'k10temp', 'acpitz'): for key in ('cpu_thermal', 'coretemp', 'k10temp', 'acpitz'):
if key in temps: if key in (temps := psutil.sensors_temperatures()):
cpu_temp = round(temps[key][0].current, 1) cpu_temp = round(temps[key][0].current, 1)
break break
cpu_freq = psutil.cpu_freq() cpu_freq = psutil.cpu_freq()
vm = psutil.virtual_memory() mem = psutil.virtual_memory()
disk = psutil.disk_usage('/') disk = psutil.disk_usage('/')
write(c, {
write(c, 'system', {
'cpu_temp': cpu_temp, 'cpu_temp': cpu_temp,
'cpu_usage': round(psutil.cpu_percent(interval=None), 1), 'cpu_usage': round(psutil.cpu_percent(interval=None), 1),
'cpu_freq_mhz': round(cpu_freq.current, 1) if cpu_freq else None, 'cpu_freq_mhz': round(cpu_freq.current, 1) if cpu_freq else None,
'mem_used_mb': round(vm.used / 1024**2, 1), 'mem_used_mb': round(mem.used / 1024**2, 1),
'mem_total_mb': round(vm.total / 1024**2, 1), 'mem_total_mb': round(mem.total / 1024**2, 1),
'mem_percent': vm.percent, 'mem_percent': mem.percent,
'disk_used_gb': round(disk.used / 1024**3, 2), 'disk_used_gb': round(disk.used / 1024**3, 2),
'disk_total_gb': round(disk.total / 1024**3, 2), 'disk_total_gb': round(disk.total / 1024**3, 2),
'disk_percent': disk.percent, 'disk_percent': disk.percent,
}) }, collection='system')
except Exception as e: except Exception as e:
print(f"[System] {e}") print(f"[System] {e}")
@@ -612,9 +531,9 @@ if __name__ == '__main__':
if bus: if bus:
try_read(lambda: bus.write_byte_data(MPU_ADDR, 0x6B, 0)) try_read(lambda: bus.write_byte_data(MPU_ADDR, 0x6B, 0))
time.sleep(0.1) time.sleep(0.1)
_mpu_offsets = try_init(calibrate_mpu, 'MPU6050') _mpu_grav = try_init(calibrate_mpu, 'MPU6050')
else: else:
_mpu_offsets = None _mpu_grav = None
print(" ❌ MPU6050: no I2C bus") print(" ❌ MPU6050: no I2C bus")
threading.Thread(target=mpu_loop, daemon=True).start() threading.Thread(target=mpu_loop, daemon=True).start()
@@ -625,24 +544,31 @@ if __name__ == '__main__':
last_temp = None last_temp = None
last_rh = None last_rh = None
last_aqi = None
while True: while True:
c = cfg() c = cfg()
gps = read_gps(c) gps = read_gps(c)
lat = gps.get('latitude') or c['LATITUDE'] lat = gps.get('latitude') or c['LATITUDE']
lon = gps.get('longitude') or c['LONGITUDE'] lon = gps.get('longitude') or c['LONGITUDE']
alt = gps.get('altitude') or c['ALTITUDE'] alt = gps.get('altitude') or c['ALTITUDE']
sol = solar_elevation(lat, lon) if lat and lon else None
result = read_bme(c, bme_sensor, alt_m=alt) result = read_bme(c, bme_sensor, alt_m=alt)
if result and result[0] is not None: if result and result[0] is not None:
last_temp, last_rh = result last_temp, last_rh, last_aqi = result
dp = None
if last_temp is not None and last_rh is not None:
dp = round(last_temp - (100 - last_rh) / 5.0, 2)
flush_mpu(c) flush_mpu(c)
read_compass(c) read_compass(c)
read_ltr(c, ltr_sensor, sol, humidity=last_rh) read_ltr(c, ltr_sensor,
read_luna(c, last_temp) temp=last_temp, dew_point=dp,
rh=last_rh, aqi=last_aqi,
lat=lat, lon=lon)
read_luna(c)
read_as3935(c) read_as3935(c)
read_rain(c) read_rain(c)
read_wind(c) read_wind(c)

View File

@@ -1,4 +1,4 @@
influxdb-client requests
python-dotenv python-dotenv
smbus2 smbus2
adafruit-circuitpython-ltr390 adafruit-circuitpython-ltr390

View File

@@ -1,37 +0,0 @@
import { cfg } from './config.mjs'
import { readFile } from 'fs/promises'
import { resolve, dirname } from 'path'
import { fileURLToPath } from 'url'
const DIR = dirname(fileURLToPath(import.meta.url))
const SHAPES_PATH = resolve(DIR, 'public', 'aircraft.json')
const history = new Map() // icao -> [{lat, lon, alt, ts}]
const MAX_HISTORY = 500
export async function getShapes() {
return JSON.parse(await readFile(SHAPES_PATH, 'utf8'))
}
export async function getAirTraffic() {
const { ADSB_URL } = cfg()
if (!ADSB_URL) return { data: [] }
const r = await fetch(`${ADSB_URL}/data/aircraft.json`)
const j = await r.json()
const aircraft = j.aircraft || []
for (const a of aircraft) {
if (!a.hex || !a.lat || !a.lon) continue
const key = a.hex.toLowerCase()
if (!history.has(key)) history.set(key, [])
const trail = history.get(key)
trail.push({ latitude: a.lat, longitude: a.lon, altitude: a.alt_baro || 0, ts: Date.now() })
if (trail.length > MAX_HISTORY) trail.shift()
}
return { data: aircraft }
}
export async function getAirTrafficHistory(icao) {
return { history: history.get(icao?.toLowerCase()) || [] }
}

View File

@@ -1,21 +0,0 @@
import { config } from 'dotenv'
import { resolve, dirname } from 'path'
import { fileURLToPath } from 'url'
const ROOT = resolve(dirname(fileURLToPath(import.meta.url)), '..')
export function cfg() {
config({ path: resolve(ROOT, '.env'), override: true })
config({ path: resolve(ROOT, '.env.local'), override: true })
return {
PORT: process.env.PORT || 3000,
ADSB_URL: process.env.ADSB_URL || '',
INFLUX_URL: process.env.INFLUX_URL || 'http://localhost:8086',
INFLUX_TOKEN: process.env.INFLUX_TOKEN || '',
INFLUX_ORG: process.env.INFLUX_ORG || 'weather',
INFLUX_BUCKET: process.env.INFLUX_BUCKET || 'station',
LATITUDE: parseFloat(process.env.LATITUDE || '0'),
LONGITUDE: parseFloat(process.env.LONGITUDE || '0'),
ALTITUDE: parseFloat(process.env.ALTITUDE || '0'),
}
}

BIN
server/data/aircraft.db Normal file

Binary file not shown.

View File

@@ -1,150 +0,0 @@
import {InfluxDB} from '@influxdata/influxdb-client';
import {cfg} from './config.mjs';
const MEASUREMENTS = ['accumulation', 'environment', 'light', 'lightning', 'rain', 'seismic', 'wind'];
let client, currentUrl, currentToken;
function getClient() {
const c = cfg();
if(c.INFLUX_URL !== currentUrl || c.INFLUX_TOKEN !== currentToken) {
client = new InfluxDB({url: c.INFLUX_URL, token: c.INFLUX_TOKEN});
currentUrl = c.INFLUX_URL;
currentToken = c.INFLUX_TOKEN;
}
return {client, c};
}
async function query(flux) {
const {client, c} = getClient();
const api = client.getQueryApi(c.INFLUX_ORG);
const rows = [];
return new Promise((resolve, reject) => {
api.queryRows(flux, {
next(row, meta) { rows.push(meta.toObject(row)); },
error(err) { reject(err); },
complete() { resolve(rows); },
});
});
}
function truncateToHour(iso) {
const d = new Date(iso);
d.setMinutes(0, 0, 0);
const pad = n => String(n).padStart(2, '0');
return `${d.getFullYear()}-${pad(d.getMonth() + 1)}-${pad(d.getDate())}T${pad(d.getHours())}:00`;
}
function truncateToDay(iso) {
return new Date(iso).toISOString().slice(0, 10);
}
function extractRow(row) {
const out = {};
for(const [k, v] of Object.entries(row)) {
if(!k.startsWith('_') && k !== 'result' && k !== 'table') out[k] = v;
}
return out;
}
export async function queryCurrent() {
const {c} = getClient();
const flux = `
from(bucket: "${c.INFLUX_BUCKET}")
|> range(start: -1h)
|> filter(fn: (r) => ${MEASUREMENTS.map(m => `r._measurement == "${m}"`).join(' or ')})
|> last()
|> pivot(rowKey: ["_time"], columnKey: ["_field"], valueColumn: "_value")
`;
const rows = await query(flux);
const result = {};
for(const row of rows) {
Object.assign(result, extractRow(row));
}
return result;
}
export async function queryHourly(start, end) {
const {c} = getClient();
const flux = `
from(bucket: "${c.INFLUX_BUCKET}")
|> range(start: ${start}, stop: ${end})
|> filter(fn: (r) => ${MEASUREMENTS.map(m => `r._measurement == "${m}"`).join(' or ')})
|> aggregateWindow(every: 1h, fn: mean, createEmpty: false)
|> pivot(rowKey: ["_time"], columnKey: ["_field"], valueColumn: "_value")
`;
const rows = await query(flux);
return rows.map(row => ({
time: truncateToHour(row._time),
...extractRow(row),
}));
}
export async function queryDaily(start, end) {
const {c} = getClient();
const measurements = ['accumulation', 'environment', 'light', 'lightning', 'seismic'];
const results = {};
for(const m of measurements) {
const [means, mins, maxs] = await Promise.all([
query(`
from(bucket: "${c.INFLUX_BUCKET}")
|> range(start: ${start}, stop: ${end})
|> filter(fn: (r) => r._measurement == "${m}")
|> aggregateWindow(every: 1d, fn: mean, createEmpty: false)
|> pivot(rowKey: ["_time"], columnKey: ["_field"], valueColumn: "_value")
`),
query(`
from(bucket: "${c.INFLUX_BUCKET}")
|> range(start: ${start}, stop: ${end})
|> filter(fn: (r) => r._measurement == "${m}")
|> aggregateWindow(every: 1d, fn: min, createEmpty: false)
|> pivot(rowKey: ["_time"], columnKey: ["_field"], valueColumn: "_value")
`),
query(`
from(bucket: "${c.INFLUX_BUCKET}")
|> range(start: ${start}, stop: ${end})
|> filter(fn: (r) => r._measurement == "${m}")
|> aggregateWindow(every: 1d, fn: max, createEmpty: false)
|> pivot(rowKey: ["_time"], columnKey: ["_field"], valueColumn: "_value")
`),
]);
// Mean values are the base — flat field names, no suffix
for(const row of means) {
const time = truncateToDay(row._time);
if(!results[time]) results[time] = {time};
Object.assign(results[time], extractRow(row));
}
// Only promote temp min/max to named fields, ignore the rest
for(const row of mins) {
const time = truncateToDay(row._time);
if(!results[time]) results[time] = {time};
if(row.temperature != null) results[time].env_temp_min_c = row.temperature;
}
for(const row of maxs) {
const time = truncateToDay(row._time);
if(!results[time]) results[time] = {time};
if(row.temperature != null) results[time].env_temp_max_c = row.temperature;
}
}
return Object.values(results).sort((a, b) => a.time.localeCompare(b.time));
}
export async function getCoords() {
const {c} = getClient();
const flux = `
from(bucket: "${c.INFLUX_BUCKET}")
|> range(start: -24h)
|> filter(fn: (r) => r._measurement == "gps")
|> last()
|> pivot(rowKey: ["_time"], columnKey: ["_field"], valueColumn: "_value")
`;
const rows = await query(flux);
if(rows.length && rows[0].latitude && rows[0].longitude) {
return {latitude: rows[0].latitude, longitude: rows[0].longitude, altitude: rows[0].altitude || c.ALTITUDE};
}
return {latitude: c.LATITUDE, longitude: c.LONGITUDE, altitude: c.ALTITUDE};
}

View File

@@ -1,273 +0,0 @@
import { createWriteStream, existsSync, mkdirSync } from 'fs'
import { resolve, dirname } from 'path'
import { fileURLToPath } from 'url'
import { pipeline } from 'stream/promises'
const DIR = dirname(fileURLToPath(import.meta.url))
const ICON_DIR = resolve(DIR, 'public', 'icons')
const CACHE = {}
const CACHE_MS = 15 * 60 * 1000
if (!existsSync(ICON_DIR)) mkdirSync(ICON_DIR, { recursive: true })
// WMO weather code map
const WMO = {
0: { label: 'Clear Sky' },
1: { label: 'Mainly Clear' },
2: { label: 'Partly Cloudy' },
3: { label: 'Overcast' },
45: { label: 'Fog' },
48: { label: 'Icy Fog' },
51: { label: 'Light Drizzle' },
53: { label: 'Drizzle' },
55: { label: 'Heavy Drizzle' },
61: { label: 'Light Rain' },
63: { label: 'Rain' },
65: { label: 'Heavy Rain' },
71: { label: 'Light Snow' },
73: { label: 'Snow' },
75: { label: 'Heavy Snow' },
77: { label: 'Snow Grains' },
80: { label: 'Light Showers' },
81: { label: 'Showers' },
82: { label: 'Heavy Showers' },
85: { label: 'Snow Showers' },
86: { label: 'Heavy Snow Showers' },
95: { label: 'Thunderstorm' },
96: { label: 'Thunderstorm w/ Hail' },
99: { label: 'Thunderstorm w/ Heavy Hail' },
}
// OWM icon mapping by WMO code + is_day
const OWM_ICONS = {
0: { day: '01d', night: '01n' },
1: { day: '01d', night: '01n' },
2: { day: '02d', night: '02n' },
3: { day: '04d', night: '04n' },
45: { day: '50d', night: '50n' },
48: { day: '50d', night: '50n' },
51: { day: '09d', night: '09n' },
53: { day: '09d', night: '09n' },
55: { day: '09d', night: '09n' },
61: { day: '10d', night: '10n' },
63: { day: '10d', night: '10n' },
65: { day: '10d', night: '10n' },
71: { day: '13d', night: '13n' },
73: { day: '13d', night: '13n' },
75: { day: '13d', night: '13n' },
77: { day: '13d', night: '13n' },
80: { day: '09d', night: '09n' },
81: { day: '09d', night: '09n' },
82: { day: '09d', night: '09n' },
85: { day: '13d', night: '13n' },
86: { day: '13d', night: '13n' },
95: { day: '11d', night: '11n' },
96: { day: '11d', night: '11n' },
99: { day: '11d', night: '11n' },
}
async function ensureIcon(code, isDay) {
const variant = isDay ? 'day' : 'night'
const owmCode = OWM_ICONS[code]?.[variant] || '01d'
const filename = `${owmCode}.png`
const filepath = resolve(ICON_DIR, filename)
if (!existsSync(filepath)) {
const url = `https://openweathermap.org/img/wn/${owmCode}@2x.png`
const res = await fetch(url)
await pipeline(res.body, createWriteStream(filepath))
}
return `/icons/${filename}`
}
export async function resolveWeather(code, isDay = 1) {
const label = WMO[code]?.label || 'Unknown'
const icon = await ensureIcon(code, isDay).catch(() => null)
return { forecast_weather_label: label, forecast_weather_icon: icon, forecast_weathercode: code }
}
async function cachedFetch(key, url) {
const now = Date.now()
if (CACHE[key] && now - CACHE[key].ts < CACHE_MS) return CACHE[key].data
const res = await fetch(url)
const data = await res.json()
CACHE[key] = { ts: now, data }
return data
}
const HOURLY_WEATHER = [
'temperature_2m', 'relative_humidity_2m', 'precipitation', 'precipitation_probability',
'weathercode', 'windspeed_10m', 'winddirection_10m', 'windgusts_10m',
'pressure_msl', 'cloudcover', 'visibility', 'cape', 'uv_index', 'is_day',
'et0_fao_evapotranspiration', 'dewpoint_2m', 'apparent_temperature',
'snowfall', 'snow_depth', 'freezinglevel_height',
].join(',')
const DAILY_WEATHER = [
'temperature_2m_max', 'temperature_2m_min', 'precipitation_sum',
'precipitation_probability_max', 'windspeed_10m_max', 'windgusts_10m_max',
'winddirection_10m_dominant', 'weathercode', 'sunrise', 'sunset',
'uv_index_max', 'snowfall_sum', 'precipitation_hours', 'shortwave_radiation_sum',
].join(',')
const HOURLY_AQ = [
'pm10', 'pm2_5', 'carbon_monoxide', 'nitrogen_dioxide', 'sulphur_dioxide',
'ozone', 'aerosol_optical_depth', 'dust', 'uv_index',
'alder_pollen', 'birch_pollen', 'grass_pollen',
'mugwort_pollen', 'olive_pollen', 'ragweed_pollen',
].join(',')
const HOURLY_MARINE = [
'wave_height', 'wave_direction', 'wave_period',
'wind_wave_height', 'swell_wave_height', 'swell_wave_direction', 'swell_wave_period',
].join(',')
function zipHourly(data, prefix = '') {
if (!data?.hourly) return []
return data.hourly.time.map((time, i) => {
const row = { time }
for (const [k, v] of Object.entries(data.hourly)) {
if (k !== 'time') row[prefix + k] = v[i]
}
return row
})
}
function zipDaily(data, prefix = '') {
if (!data?.daily) return []
return data.daily.time.map((time, i) => {
const row = { time }
for (const [k, v] of Object.entries(data.daily)) {
if (k !== 'time') row[prefix + k] = v[i]
}
return row
})
}
// Remap Open-Meteo field names to our prefixed convention
function remapWeatherFields(row) {
const map = {
temperature_2m: 'temperature',
apparent_temperature: 'heat_index',
dewpoint_2m: 'dew_point',
relative_humidity_2m: 'humidity',
pressure_msl: 'pressure_slp',
cloudcover: 'clouds',
uv_index: 'uv_index',
visibility: 'visibility',
windspeed_10m: 'wind_speed_kmh',
winddirection_10m: 'wind_direction_deg',
windgusts_10m: 'wind_gusts_kmh',
weathercode: 'forecast_weathercode',
precipitation: 'forecast_precipitation_mm',
precipitation_probability: 'forecast_precipitation_probability',
snowfall: 'forecast_snowfall_mm',
snow_depth: 'forecast_snow_depth_m',
cape: 'forecast_cape',
is_day: 'sun_is_day',
freezinglevel_height: 'forecast_freezing_level_m',
et0_fao_evapotranspiration: 'forecast_evapotranspiration_mm',
// daily
temperature_2m_max: 'env_temp_max_c',
temperature_2m_min: 'env_temp_min_c',
precipitation_sum: 'forecast_precipitation_mm',
precipitation_probability_max: 'forecast_precipitation_probability',
windspeed_10m_max: 'wind_speed_max_kmh',
windgusts_10m_max: 'wind_gusts_max_kmh',
winddirection_10m_dominant: 'wind_direction_deg',
uv_index_max: 'uv_index_max',
snowfall_sum: 'forecast_snowfall_mm',
shortwave_radiation_sum: 'solar_wm2_sum',
sunrise: 'sun_sunrise',
sunset: 'sun_sunset',
}
const out = {}
for (const [k, v] of Object.entries(row)) {
out[map[k] || k] = v
}
return out
}
export async function getOpenMeteo(lat, lon, start, end) {
const base = start && end
? `&start_date=${start.slice(0,10)}&end_date=${end.slice(0,10)}&past_days=0`
: `&forecast_days=7`
const [weather, aq, marine] = await Promise.allSettled([
cachedFetch(`weather_${lat}_${lon}_${start}_${end}`,
`https://api.open-meteo.com/v1/forecast?latitude=${lat}&longitude=${lon}&hourly=${HOURLY_WEATHER}&daily=${DAILY_WEATHER}&current_weather=true&timezone=auto${base}`),
cachedFetch(`aq_${lat}_${lon}_${start}_${end}`,
`https://air-quality-api.open-meteo.com/v1/air-quality?latitude=${lat}&longitude=${lon}&hourly=${HOURLY_AQ}&timezone=auto${base}`),
cachedFetch(`marine_${lat}_${lon}_${start}_${end}`,
`https://marine-api.open-meteo.com/v1/marine?latitude=${lat}&longitude=${lon}&hourly=${HOURLY_MARINE}&daily=wave_height_max,wave_direction_dominant,wave_period_max&timezone=auto${base}`),
])
const w = weather.status === 'fulfilled' ? weather.value : {}
const a = aq.status === 'fulfilled' ? aq.value : {}
const m = marine.status === 'fulfilled' ? marine.value : {}
// Build hourly merged map
const hourlyMap = {}
for (const row of zipHourly(w)) {
const remapped = remapWeatherFields(row)
hourlyMap[row.time] = remapped
}
for (const row of zipHourly(a)) {
const { time, ...rest } = row
hourlyMap[time] = { ...hourlyMap[time], ...rest }
}
for (const row of zipHourly(m)) {
const { time, ...rest } = row
hourlyMap[time] = { ...hourlyMap[time], ...rest }
}
// Build daily merged map
const dailyMap = {}
for (const row of zipDaily(w)) {
const remapped = remapWeatherFields(row)
dailyMap[row.time] = remapped
}
for (const row of zipDaily(m)) {
const { time, ...rest } = row
dailyMap[time] = { ...dailyMap[time], ...rest }
}
// Resolve current weather
let current = null
if (w.current_weather) {
const cw = w.current_weather
const wInfo = await resolveWeather(cw.weathercode, cw.is_day).catch(() => ({}))
current = {
wind_speed_kmh: cw.windspeed,
wind_direction_deg: cw.winddirection,
sun_is_day: cw.is_day,
...wInfo,
}
}
// Resolve weather labels + icons for all hourly/daily rows
const hourlyArr = await Promise.all(
Object.values(hourlyMap)
.sort((a, b) => a.time.localeCompare(b.time))
.map(async row => {
if (row.forecast_weathercode != null) {
const wInfo = await resolveWeather(row.forecast_weathercode, row.sun_is_day ?? 1).catch(() => ({}))
return { ...row, ...wInfo }
}
return row
})
)
const dailyArr = await Promise.all(
Object.values(dailyMap)
.sort((a, b) => a.time.localeCompare(b.time))
.map(async row => {
if (row.forecast_weathercode != null) {
const wInfo = await resolveWeather(row.forecast_weathercode, 1).catch(() => ({}))
return { ...row, ...wInfo }
}
return row
})
)
return { current, hourly: hourlyArr, daily: dailyArr }
}

View File

@@ -1,78 +0,0 @@
import { existsSync, mkdirSync, writeFileSync } from 'fs'
import { resolve, dirname } from 'path'
import { fileURLToPath } from 'url'
const DIR = resolve(dirname(fileURLToPath(import.meta.url)), 'public', 'icons')
export const WMO = {
0: { label: 'Clear Sky', icon: '01d' },
1: { label: 'Mainly Clear', icon: '01d' },
2: { label: 'Partly Cloudy', icon: '02d' },
3: { label: 'Overcast', icon: '04d' },
45: { label: 'Fog', icon: '50d' },
48: { label: 'Icy Fog', icon: '50d' },
51: { label: 'Light Drizzle', icon: '09d' },
53: { label: 'Drizzle', icon: '09d' },
55: { label: 'Heavy Drizzle', icon: '09d' },
61: { label: 'Light Rain', icon: '10d' },
63: { label: 'Rain', icon: '10d' },
65: { label: 'Heavy Rain', icon: '10d' },
71: { label: 'Light Snow', icon: '13d' },
73: { label: 'Snow', icon: '13d' },
75: { label: 'Heavy Snow', icon: '13d' },
77: { label: 'Snow Grains', icon: '13d' },
80: { label: 'Light Showers', icon: '09d' },
81: { label: 'Showers', icon: '09d' },
82: { label: 'Heavy Showers', icon: '09d' },
85: { label: 'Snow Showers', icon: '13d' },
86: { label: 'Heavy Snow Showers', icon: '13d' },
95: { label: 'Thunderstorm', icon: '11d' },
96: { label: 'Thunderstorm w/ Hail', icon: '11d' },
99: { label: 'Thunderstorm w/ Hail', icon: '11d' },
}
export async function downloadIcons() {
if (!existsSync(DIR)) mkdirSync(DIR, { recursive: true })
const icons = new Set(Object.values(WMO).map(w => [w.icon, w.icon.replace('d','n')]).flat())
await Promise.all([...icons].map(async icon => {
const path = resolve(DIR, `${icon}.png`)
if (existsSync(path)) return
const res = await fetch(`https://openweathermap.org/img/wn/${icon}@2x.png`)
const buf = Buffer.from(await res.arrayBuffer())
writeFileSync(path, buf)
console.log(` 📥 Downloaded icon: ${icon}.png`)
}))
console.log('✅ Weather icons ready')
}
export function getWeatherCondition(data) {
// Determine primary condition
if (data.lightning_rate > 0 && data.raining === "True") {
return { label: "Thunderstorm", code: 211, icon: "11d" };
}
if (data.raining === "True") {
if (data.precipitation > 7.6) return { label: "Heavy Rain", code: 502, icon: "10d" };
if (data.precipitation > 2.5) return { label: "Moderate Rain", code: 501, icon: "10d" };
return { label: "Light Rain", code: 500, icon: "09d" };
}
if (data.lightning_rate > 500) {
return { label: "Thunderstorm", code: 211, icon: "11d" };
}
if (data.visibility < 10) {
return { label: "Mist", code: 701, icon: "50d" };
}
// Cloud-based conditions
const isDay = data.daytime;
const dayNight = isDay ? "d" : "n";
if (data.clouds > 85) return { label: "Overcast Clouds", code: 804, icon: `04${dayNight}` };
if (data.clouds > 50) return { label: "Broken Clouds", code: 803, icon: `04${dayNight}` };
if (data.clouds > 25) return { label: "Scattered Clouds",code: 802, icon: `03${dayNight}` };
if (data.clouds > 10) return { label: "Few Clouds", code: 801, icon: `02${dayNight}` };
return { label: "Clear Sky", code: 800, icon: `01${dayNight}` };
}

819
server/package-lock.json generated

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View File

@@ -4,11 +4,14 @@
"type": "module", "type": "module",
"main": "index.mjs", "main": "index.mjs",
"scripts": { "scripts": {
"start": "node server.mjs" "start": "node src/server.mjs"
}, },
"dependencies": { "dependencies": {
"@influxdata/influxdb-client": "^1.33.2",
"@scalar/express-api-reference": "^0.10.4", "@scalar/express-api-reference": "^0.10.4",
"@ztimson/utils": "^0.29.5",
"adm-zip": "^0.5.17",
"better-sqlite3": "^12.11.1",
"cheerio": "^1.2.0",
"dotenv": "^16.3.1", "dotenv": "^16.3.1",
"express": "^4.18.2", "express": "^4.18.2",
"yaml": "^2.9.0" "yaml": "^2.9.0"

View File

@@ -1,683 +0,0 @@
{
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"w": 23,
"h": 32,
"viewBox": "-10 -10 380 373",
"strokeScale": 16,
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@@ -1,131 +0,0 @@
import express from 'express';
import {resolve, dirname} from 'path';
import {fileURLToPath} from 'url';
import {cfg} from './config.mjs';
import {queryCurrent, queryHourly, queryDaily, getCoords} from './influx.mjs';
import {getCelestialCurrent, getCelestialForecast} from './celestial.mjs';
import {getSpaceWeather} from './space.mjs';
import {getOpenMeteo} from './openmeteo.mjs';
import {apiReference} from '@scalar/express-api-reference';
import {spec} from './spec.mjs';
import {existsSync} from 'fs';
import {getAirTraffic, getAirTrafficHistory, getShapes} from './airtraffic.mjs';
import {getWeatherCondition} from './openweather.mjs';
const app = express();
const DIR = dirname(fileURLToPath(import.meta.url));
const CLIENT_DIST = resolve(DIR, 'public');
app.use(express.json());
app.use('/icons', express.static(resolve(DIR, 'public', 'icons')));
app.use((req, res, next) => {
res.setHeader('Access-Control-Allow-Origin', '*');
next();
});
app.use(express.static(CLIENT_DIST));
function filterFields(obj, fields) {
if(!fields) return obj;
const keys = new Set(fields.split(',').map(f => f.trim()));
return Object.fromEntries(Object.entries(obj).filter(([k]) => keys.has(k)));
}
function filterArr(arr, fields) {
if(!fields) return arr;
return arr.map(row => filterFields(row, fields));
}
// ── Sensor Data ───────────────────────────────────────────────────────────────
app.get('/api/current', async (req, res) => {
const {fields} = req.query;
const [sensors, coords] = await Promise.all([queryCurrent(), getCoords()]);
const condition = getWeatherCondition(sensors);
const space = getCelestialCurrent(coords.latitude, coords.longitude);
res.json(filterFields({...condition, ...sensors, ...space}, fields));
});
// ── Position ──────────────────────────────────────────────────────────────────
app.get('/api/position', async (req, res) => {
const {fields} = req.query;
const data = await getCoords();
res.json(filterFields(data, fields));
});
// ── Space ─────────────────────────────────────────────────────────────────────
app.get('/api/space', async (req, res) => {
const {fields} = req.query;
res.json(filterFields(await getSpaceWeather(), fields));
});
// ── Daily History/Forecast ────────────────────────────────────────────────────
app.get('/api/hourly', async (req, res) => {
const {fields} = req.query;
const start = req.query.start || new Date(new Date().setHours(0, 0, 0, 0)).toISOString();
let now = new Date();
now.setHours(new Date().getHours() - 1, 0, 0);
now = now.toISOString();
const end = req.query.end || new Date().toISOString();
const coords = await getCoords();
const [sensor, meteo] = await Promise.allSettled([
queryHourly(start, now),
getOpenMeteo(coords.latitude, coords.longitude, now, end),
]);
const history = sensor.status === 'fulfilled' ? sensor.value : [];
const forecast = meteo.status === 'fulfilled' ? meteo.value.hourly : [];
const hourly = getCelestialForecast(coords.latitude, coords.longitude, [...history, ...forecast]);
res.json(filterArr(hourly, fields));
});
// ── Hourly History/Forecast ───────────────────────────────────────────────────
app.get('/api/daily', async (req, res) => {
const {fields} = req.query;
const start = req.query.start || new Date(new Date().setHours(0, 0, 0, 0)).toISOString();
let now = new Date();
now.setDate(now.getDate() - 1);
now.setHours(0, 0, 0, 0);
now = now.toISOString();
const end = req.query.end || new Date().toISOString();
const coords = await getCoords();
const [sensor, meteo] = await Promise.allSettled([
queryDaily(start, now),
getOpenMeteo(coords.latitude, coords.longitude, now, end),
]);
const history = sensor.status === 'fulfilled' ? sensor.value : [];
const forecast = meteo.status === 'fulfilled' ? meteo.value.daily : [];
const daily = getCelestialForecast(coords.latitude, coords.longitude, [...history, ...forecast]);
res.json(filterArr(daily, fields));
});
// ── ADSB Proxy ────────────────────────────────────────────────────────────────
app.get('/api/air-traffic', async (req, res) => res.json(await getAirTraffic()));
app.get('/api/air-traffic/:icao', async (req, res) => res.json(await getAirTrafficHistory(req.params.icao)));
app.get('/api/air-traffic-shapes', async (req, res) => res.json(await getShapes()));
// ── DOCS ──────────────────────────────────────────────────────────────────────
app.use('/docs', apiReference({spec: {url: '/openapi.json'}, theme: 'default'}));
app.get('/openapi.json', (req, res) => res.json(spec));
app.get('/openapi.yaml', async (req, res) => {
const {stringify} = await import('yaml');
res.setHeader('Content-Type', 'text/yaml');
res.send(stringify(spec));
});
// ── Website ───────────────────────────────────────────────────────────────────
app.get('*', (req, res) => {
const index = resolve(CLIENT_DIST, 'index.html');
if(existsSync(index)) res.sendFile(index);
else res.status(404).send('Client not built yet — run npm run build in /client');
});
// ── Start ─────────────────────────────────────────────────────────────────────
const c = cfg();
app.listen(c.PORT, () => console.log(`🌦 Weather API — http://localhost:${c.PORT}`));

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export const spec = {
openapi: '3.0.0',
info: {
title: 'Weather Station',
version: '1.0.0',
description: 'Hyperlocal weather station — sensor data, forecasts, celestial & space weather',
},
servers: [{ url: 'http://localhost:3000' }],
paths: {
'/api/position': {
get: {
summary: 'Station position',
description: 'Latest GPS position and info',
parameters: [ ],
responses: {
200: {
description: 'Last known position',
content: { 'application/json': { schema: { $ref: '#/components/schemas/DataRow' } } }
}
}
}
},
'/api/data': {
get: {
summary: 'Current conditions',
description: 'Latest reading of all metrics — sensor, forecast, celestial & space weather merged into a single flat object',
parameters: [
{ name: 'fields', in: 'query', required: false, schema: { type: 'string' },
description: 'Comma-separated list of fields to return. Omit for all.' }
],
responses: {
200: {
description: 'Current conditions',
content: { 'application/json': { schema: { $ref: '#/components/schemas/DataRow' } } }
}
}
}
},
'/api/hourly': {
get: {
summary: 'Hourly data',
description: 'Hourly aggregated sensor data merged with Open-Meteo hourly forecast, celestial positions and space weather. Defaults to today.',
parameters: [
{ name: 'start', in: 'query', required: false, schema: { type: 'string', format: 'date-time' },
description: 'ISO8601 start timestamp. Defaults to today 00:00.' },
{ name: 'end', in: 'query', required: false, schema: { type: 'string', format: 'date-time' },
description: 'ISO8601 end timestamp. Defaults to now.' },
{ name: 'fields', in: 'query', required: false, schema: { type: 'string' },
description: 'Comma-separated list of fields to return. Omit for all.' },
],
responses: {
200: {
description: 'Array of hourly rows',
content: { 'application/json': { schema: { type: 'array', items: { $ref: '#/components/schemas/DataRow' } } } }
}
}
}
},
'/api/daily': {
get: {
summary: 'Daily data',
description: 'Daily aggregated sensor data (mean/min/max) merged with Open-Meteo daily forecast and celestial events. Defaults to today.',
parameters: [
{ name: 'start', in: 'query', required: false, schema: { type: 'string', format: 'date-time' },
description: 'ISO8601 start timestamp. Defaults to today 00:00.' },
{ name: 'end', in: 'query', required: false, schema: { type: 'string', format: 'date-time' },
description: 'ISO8601 end timestamp. Defaults to now.' },
{ name: 'fields', in: 'query', required: false, schema: { type: 'string' },
description: 'Comma-separated list of fields to return. Omit for all.' },
],
responses: {
200: {
description: 'Array of daily rows',
content: { 'application/json': { schema: { type: 'array', items: { $ref: '#/components/schemas/DataRow' } } } }
}
}
}
},
},
components: {
schemas: {
Position: {
type: 'object',
properties: {
lat: { type: 'number', description: 'Latitude' },
lon: { type: 'number', description: 'Longitude' },
alt: { type: 'number', description: 'Altitude' },
}
},
DataRow: {
type: 'object',
properties: {
time: { type: 'string', description: 'ISO8601 timestamp or date' },
// Environment
temperature: { type: 'number', description: 'Temperature (°C)' },
env_temp_f: { type: 'number', description: 'Temperature (°F)' },
env_temp_min_c: { type: 'number', description: 'Daily min temperature (°C)' },
env_temp_max_c: { type: 'number', description: 'Daily max temperature (°C)' },
humidity: { type: 'number', description: 'Relative humidity (%)' },
dew_point: { type: 'number', description: 'Dew point (°C)' },
heat_index: { type: 'number', description: 'Feels like / heat index (°C)' },
pressure_hpa: { type: 'number', description: 'Station pressure (hPa)' },
pressure_slp: { type: 'number', description: 'Sea level pressure (hPa)' },
pressure_rate: { type: 'number', description: 'Pressure change rate (hPa/hr)' },
pressure_trend: { type: 'string', enum: ['Rising','Falling','Stable'], description: 'Pressure trend label' },
humidity_abs: { type: 'number', description: 'Absolute humidity (g/m³)' },
vapor_pressure_deficit: { type: 'number', description: 'Vapour pressure deficit (kPa)' },
air_quality_ohms: { type: 'number', description: 'BME680 gas resistance (Ω)' },
air_quality: { type: 'number', description: 'Air quality index score (0100)' },
air_quality_label: { type: 'string', enum: ['Excellent','Good','Fair','Poor','Very Poor'] },
frost_risk: { type: 'string', enum: ['None','Low','Moderate','High'] },
// Light
lux: { type: 'number', description: 'Illuminance (lux)' },
uv_index: { type: 'number', description: 'UV index' },
solar_wm2: { type: 'number', description: 'Solar irradiance (W/m²)' },
uv_dose: { type: 'number', description: 'Accumulated UV dose today (mJ/cm²)' },
light_burn_time_min: { type: 'number', description: 'Time to sunburn skin type 2 (min)' },
clouds: { type: 'number', description: 'Estimated cloud cover (%)' },
light_cloud_label: { type: 'string', enum: ['Clear','Partly Cloudy','Mostly Cloudy','Overcast'] },
light_dli: { type: 'number', description: 'Daily light integral (mol/m²/day)' },
daylight: { type: 'number', description: 'Hours above daylight threshold today' },
visibility: { type: 'number', description: 'Estimated visibility (km)' },
uv_index_max: { type: 'number', description: 'Daily max UV index' },
solar_wm2_sum: { type: 'number', description: 'Daily solar radiation sum (MJ/m²)' },
// Wind (Open-Meteo)
wind_speed_kmh: { type: 'number', description: 'Wind speed (km/h)' },
wind_direction_deg: { type: 'number', description: 'Wind direction (°)' },
wind_gusts_kmh: { type: 'number', description: 'Wind gusts (km/h)' },
wind_speed_max_kmh: { type: 'number', description: 'Daily max wind speed (km/h)' },
wind_gusts_max_kmh: { type: 'number', description: 'Daily max wind gusts (km/h)' },
// Forecast
forecast_weathercode: { type: 'number', description: 'WMO weather code' },
forecast_weather_label: { type: 'string', description: 'Human readable weather label' },
forecast_weather_icon: { type: 'string', description: 'Local icon path e.g. /icons/01d.png' },
forecast_precipitation_mm: { type: 'number', description: 'Precipitation (mm)' },
forecast_precipitation_probability: { type: 'number', description: 'Precipitation probability (%)' },
forecast_snowfall_mm: { type: 'number', description: 'Snowfall (mm)' },
forecast_snow_depth_m: { type: 'number', description: 'Snow depth (m)' },
forecast_cape: { type: 'number', description: 'Convective available potential energy (J/kg)' },
forecast_freezing_level_m: { type: 'number', description: 'Freezing level altitude (m)' },
forecast_evapotranspiration_mm:{ type: 'number', description: 'Evapotranspiration (mm)' },
// Seismic
seismic_ax: { type: 'number', description: 'Peak acceleration X axis (g)' },
seismic_ay: { type: 'number', description: 'Peak acceleration Y axis (g)' },
seismic_az: { type: 'number', description: 'Peak acceleration Z axis (g, includes gravity)' },
seismic_magnitude: { type: 'number', description: 'Peak seismic magnitude (g, gravity removed)' },
// Compass
compass_heading: { type: 'number', description: 'Magnetic heading (°)' },
compass_x: { type: 'number' },
compass_y: { type: 'number' },
compass_z: { type: 'number' },
// Ground / Accumulation
ground_distance: { type: 'number', description: 'LIDAR ground distance (cm)' },
lidar_strength: { type: 'number', description: 'LIDAR signal strength' },
ground_calibration: { type: 'number', description: 'Calibrated baseline distance (cm)' },
accumulation: { type: 'number', description: 'Snow/flood depth (cm)' },
ground_accumulation_type: { type: 'string', enum: ['snow','slush','ice','flood'], description: 'Accumulation type' },
// Lightning
lightning_distance: { type: 'number', description: 'Lightning strike distance (km)' },
lightning_energy: { type: 'number', description: 'Lightning energy' },
lightning_strikes_per_hour: { type: 'number', description: 'Strike rate (strikes/hr)' },
storm_direction: { type: 'string', enum: ['Approaching','Retreating','Stationary'] },
lightning_false_positive: { type: 'number', description: '1 if disturber/false positive' },
lightning_detector_sensitivity:{ type: 'number', description: 'AS3935 noise floor setting (07)' },
// GPS
latitude: { type: 'number', description: 'Latitude (°)' },
longitude: { type: 'number', description: 'Longitude (°)' },
altitude: { type: 'number', description: 'Altitude (m)' },
gps_satellites: { type: 'number', description: 'Satellites in view' },
gps_speed_kmh: { type: 'number', description: 'Ground speed (km/h)' },
gps_heading: { type: 'number', description: 'GPS heading (°)' },
// Sun
sun_elevation: { type: 'number', description: 'Solar elevation angle (°)' },
sun_azimuth: { type: 'number', description: 'Solar azimuth (°)' },
sun_sunrise: { type: 'string', description: 'Sunrise time (ISO8601)' },
sun_sunset: { type: 'string', description: 'Sunset time (ISO8601)' },
sun_solar_noon: { type: 'string', description: 'Solar noon (ISO8601)' },
sun_day_length_hours: { type: 'number', description: 'Day length (hours)' },
sun_golden_hour_morning_start: { type: 'string' },
sun_golden_hour_morning_end: { type: 'string' },
sun_golden_hour_evening_start: { type: 'string' },
sun_golden_hour_evening_end: { type: 'string' },
sun_is_day: { type: 'number', description: '1 if daytime' },
sun_ssn: { type: 'number', description: 'Estimated sunspot number' },
sun_activity_label: { type: 'string', enum: ['Very Low','Low','Moderate','High','Very High'] },
// Moon
moon_phase: { type: 'string', description: 'Moon phase name' },
moon_illumination_pct: { type: 'number', description: 'Moon illumination (%)' },
moon_moonrise: { type: 'string', description: 'Moonrise time (ISO8601)' },
moon_moonset: { type: 'string', description: 'Moonset time (ISO8601)' },
moon_next_full: { type: 'string', description: 'Next full moon (ISO8601)' },
moon_next_new: { type: 'string', description: 'Next new moon (ISO8601)' },
// Season
season_next_event: { type: 'string', description: 'Next solstice/equinox name' },
season_next_event_date: { type: 'string' },
season_last_event: { type: 'string' },
season_last_event_date: { type: 'string' },
// Space weather
space_kp_index: { type: 'number', description: 'Planetary K index (09)' },
space_ap_index: { type: 'number', description: 'Ap geomagnetic index' },
space_geomagnetic_storm: { type: 'string', enum: ['None','Minor','Moderate','Strong','Severe'] },
space_solar_wind_speed_kms: { type: 'number', description: 'Solar wind speed (km/s)' },
space_solar_wind_density: { type: 'number', description: 'Solar wind proton density (p/cm³)' },
space_solar_wind_temp: { type: 'number', description: 'Solar wind temperature (K)' },
space_imf_bz: { type: 'number', description: 'IMF Bz component (nT)' },
space_imf_bt: { type: 'number', description: 'IMF total field Bt (nT)' },
space_solar_flux_f107: { type: 'number', description: 'Solar flux F10.7 index' },
// Marine
wave_height: { type: 'number', description: 'Significant wave height (m)' },
wave_direction: { type: 'number', description: 'Wave direction (°)' },
wave_period: { type: 'number', description: 'Wave period (s)' },
swell_wave_height: { type: 'number', description: 'Swell wave height (m)' },
swell_wave_direction: { type: 'number', description: 'Swell direction (°)' },
swell_wave_period: { type: 'number', description: 'Swell period (s)' },
wind_wave_height: { type: 'number', description: 'Wind wave height (m)' },
wave_height_max: { type: 'number', description: 'Daily max wave height (m)' },
// AQ
pm10: { type: 'number', description: 'PM10 (μg/m³)' },
pm2_5: { type: 'number', description: 'PM2.5 (μg/m³)' },
carbon_monoxide: { type: 'number', description: 'CO (μg/m³)' },
nitrogen_dioxide: { type: 'number', description: 'NO₂ (μg/m³)' },
sulphur_dioxide: { type: 'number', description: 'SO₂ (μg/m³)' },
ozone: { type: 'number', description: 'O₃ (μg/m³)' },
aerosol_optical_depth: { type: 'number' },
dust: { type: 'number', description: 'Dust (μg/m³)' },
alder_pollen: { type: 'number', description: 'Alder pollen (grains/m³)' },
birch_pollen: { type: 'number', description: 'Birch pollen (grains/m³)' },
grass_pollen: { type: 'number', description: 'Grass pollen (grains/m³)' },
mugwort_pollen: { type: 'number', description: 'Mugwort pollen (grains/m³)' },
olive_pollen: { type: 'number', description: 'Olive pollen (grains/m³)' },
ragweed_pollen: { type: 'number', description: 'Ragweed pollen (grains/m³)' },
}
}
}
}
}

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import { cfg } from './config.mjs';
import { resolve, dirname } from 'path';
import { fileURLToPath } from 'url';
import * as fs from 'node:fs';
import Database from 'better-sqlite3';
import { fromCsv } from '@ztimson/utils';
import {getIcon} from './adsb-shapes.mjs';
import * as cheerio from 'cheerio';
const DIR = dirname(fileURLToPath(import.meta.url));
const DATA = resolve(DIR, '../data');
const DB_PATH = resolve(DATA, 'aircraft.db');
const CSV_CACHE = resolve(DATA, 'aircraft_db.csv');
const MAX_HISTORY = 500;
const HISTORY_TTL = 1000 * 60 * 60; // 1 hour
const ADSB_TTL = 1000;
const CSV_URL = 'https://s3.opensky-network.org/data-samples/metadata/aircraft-database-complete-2024-06.csv';
const MIL_RANGES_URL = ':8080/db-3.14.1708/ranges.js';
const MILITARY_OPERATORS = ['air force', 'army', 'navy', 'marine', 'coast guard', 'military', 'defence', 'defense', 'luftwaffe', 'RAF', 'USAF', 'USN', 'USMC'];
const CARGO_OPERATORS = ['fedex', 'ups', 'dhl', 'cargo', 'freight', 'logistic', 'atlas air', 'kalitta', 'air freight'];
const PASSENGER_OPERATORS = ['airlines', 'airways', 'air ', 'jet', 'jetblue', 'easyjet', 'ryanair', 'delta', 'united', 'american', 'avianca', 'southwest', 'lufthansa', 'emirates', 'british'];
const MILITARY_CLASSES = ['H1M', 'H2M', 'L1M', 'L2M', 'L4M', 'A0'];
let adsbCache = null;
let adsbCacheTs = 0;
const noRecord = [];
const history = new Map();
const milRanges = [];
let db;
setInterval(() => {
const cutoff = Date.now() - HISTORY_TTL;
for (const [key, trail] of history) {
const last = trail.at(-1);
if (!last || last.ts < cutoff) history.delete(key);
}
}, 1000 * 60 * 5);
function fetchWithTimeout(url, ms = 5000) {
const controller = new AbortController();
const id = setTimeout(() => controller.abort(), ms);
return fetch(url, { signal: controller.signal }).finally(() => clearTimeout(id));
}
async function syncMilitaryRanges() {
const { ADSB_URL } = cfg();
try {
const res = await fetch(ADSB_URL + MIL_RANGES_URL);
if (!res.ok) throw new Error(`HTTP ${res.status}`);
const { military } = await res.json();
db.exec('DELETE FROM military_ranges');
const insert = db.prepare('INSERT INTO military_ranges (start, end) VALUES (?, ?)');
const insertMany = db.transaction(ranges => {
for (const [s, e] of ranges) insert.run(s.toUpperCase(), e.toUpperCase());
});
insertMany(military);
milRanges.length = 0;
milRanges.push(...military.map(([s, e]) => [s.toUpperCase(), e.toUpperCase()]));
} catch (e) {
const rows = db.prepare('SELECT start, end FROM military_ranges').all();
milRanges.length = 0;
milRanges.push(...rows.map(r => [r.start, r.end]));
}
}
export async function initAircraftDb() {
if (!fs.existsSync(DATA)) fs.mkdirSync(DATA, { recursive: true });
const missing = !fs.existsSync(DB_PATH);
if (missing) console.log(`✈️ Building database`);
db = new Database(DB_PATH);
db.exec(`
CREATE TABLE IF NOT EXISTS aircraft (
icao TEXT PRIMARY KEY,
built TEXT,
categoryDescription TEXT,
country TEXT,
engines TEXT,
class TEXT,
manufacturer TEXT,
model TEXT,
modes TEXT,
operator TEXT,
operatorCallsign TEXT,
owner TEXT,
registration TEXT,
serialNumber TEXT,
aircraft TEXT
);
CREATE TABLE IF NOT EXISTS military_ranges (
start TEXT NOT NULL,
end TEXT NOT NULL
);
`);
await syncMilitaryRanges();
if (missing) {
const res = await fetch(CSV_URL);
if (!res.ok) throw new Error(`HTTP ${res.status}`);
const text = await res.text();
fs.writeFileSync(CSV_CACHE, text);
const csv = fromCsv(text, true);
const insert = db.prepare(`
INSERT OR REPLACE INTO aircraft VALUES (
@icao, @built, @categoryDescription, @country, @engines,
@class, @manufacturer, @model, @modes, @operator,
@operatorCallsign, @owner, @registration, @serialNumber, @aircraft
)
`);
const insertMany = db.transaction(rows => {
for (const row of rows) insert.run(row);
});
insertMany(csv.map(row => ({
icao: (row.icao24 || '').toUpperCase(),
built: row.built || null,
categoryDescription: row.categoryDescription || null,
country: row.country || null,
engines: row.engines || null,
class: row.icaoAircraftClass || null,
manufacturer: row.manufacturerName || row.manufacturerIcao || null,
model: row.model || null,
modes: row.modes || null,
operator: row.operator || null,
operatorCallsign: row.operatorCallsign || null,
owner: row.owner || null,
registration: row.registration || null,
serialNumber: row.serialNumber || null,
aircraft: row.typecode || null,
})));
fs.unlinkSync(CSV_CACHE);
console.log(`✈️ Aircraft imported: ${csv.length}`);
} else {
const count = db.prepare('SELECT COUNT(*) as c FROM aircraft').get();
console.log(`✈️ Aircraft loaded: ${count.c}`);
}
}
function isIcaoInMilitaryRange(icao) {
if (!icao) return false;
const hex = icao.toUpperCase();
return milRanges.some(([s, e]) => hex >= s && hex <= e);
}
function wordMatch(text, keyword) {
if (!text) return false;
const escaped = keyword.replace(/[.*+?^${}()|[\]\\]/gi, '\\$&');
return new RegExp(`(?<![\\w])${escaped}(?![\\w])`, 'i').test(text);
}
export function classifyAircraft(row) {
if (!row) return 'unknown';
const matchesAny = (fields, list) =>
fields.some(f => list.some(k => wordMatch(f, k)));
const operatorFields = [row.operator, row.operatorCallsign];
const ownerFields = [row.owner];
const allFields = [...operatorFields, ...ownerFields, row.categoryDescription];
if (isIcaoInMilitaryRange(row.icao) || MILITARY_CLASSES.includes(row.class) || matchesAny(allFields, MILITARY_OPERATORS)) return 'military';
if (row.categoryDescription?.toLowerCase().includes('cargo') || matchesAny(operatorFields, CARGO_OPERATORS)) return 'cargo';
if (matchesAny(operatorFields, PASSENGER_OPERATORS)) return 'passenger';
if (row.owner && !row.operator) return 'private';
return 'unknown';
}
async function fetchHexDb(icao) {
const resp = await fetchWithTimeout(`https://hexdb.io/api/v1/aircraft/${icao}`);
if (!resp.ok) return null;
const found = await resp.json();
return {
registration: found.Registration || null,
manufacturer: found.Manufacturer || null,
aircraft: found.ICAOTypeCode || null,
model: found.Type || null,
operator: found.RegisteredOwners || null,
};
}
async function scrapeHexDatabase(icao) {
const url = `https://hexdatabase.com/h/${icao}`;
const resp = await fetch(url);
if (!resp.ok) return null;
const html = await resp.text();
const tableMatch = html.match(/<table[\s\S]*?<\/table>/i);
if (!tableMatch) return null;
const $ = cheerio.load(tableMatch[0]);
const row = $('tr').filter((_, el) => $(el).text().toLowerCase().includes(icao.toLowerCase())).first();
if (!row.length) return null;
const cells = row.find('td');
return {
registration: $(cells[1]).text().trim() || null,
aircraft: $(cells[2]).text().trim() || null,
operator: $(cells[3]).text().trim() || null,
serialNumber: $(cells[5]).text().trim() || null,
};
}
function backfillFromSimilar(aircraft) {
if (!aircraft) return {};
const similar = db.prepare(`
SELECT manufacturer, model, engines, categoryDescription, class
FROM aircraft
WHERE aircraft = ?
AND (manufacturer IS NOT NULL OR model IS NOT NULL OR engines IS NOT NULL)
LIMIT 1
`).get(aircraft);
if (!similar) return {};
return {
manufacturer: similar.manufacturer || null,
model: similar.model || null,
engines: similar.engines || null,
categoryDescription: similar.categoryDescription || null,
class: similar.class || null,
};
}
export async function enrichAircraft(a) {
if (!a.hex) return a;
const icao = a.hex.toUpperCase();
// 1. Check own DB first
const row = db.prepare('SELECT * FROM aircraft WHERE icao = ?').get(icao);
if(row?.aircraft) return { ...a, ...row, type: classifyAircraft(row) };
// 2. Race the two external sources
if(noRecord.includes(icao)) return { icao, ...a, type: 'unknown' };
const hexDbPromise = fetchHexDb(icao);
const scrapePromise = scrapeHexDatabase(icao);
let found = await hexDbPromise.catch(() => {});
if(!found) found = await scrapePromise.catch(() => {});
if(!found) {
noRecord.push(icao);
return { icao, ...a, type: 'unknown' };
}
// 3. Backfill manufacturer/model/engines from similar aircraft type in DB
const merged = { ...row, ...found };
if (merged.aircraft && (!merged.manufacturer || !merged.model)) {
const similar = backfillFromSimilar(merged.aircraft);
Object.assign(merged, similar);
}
// 4. Save back to DB
if (found) {
db.prepare(`
INSERT INTO aircraft (icao, registration, manufacturer, aircraft, model, operator, country, serialNumber, engines, categoryDescription, class)
VALUES (@icao, @registration, @manufacturer, @aircraft, @model, @operator, @country, @serialNumber, @engines, @categoryDescription, @class)
ON CONFLICT(icao) DO UPDATE SET
registration = COALESCE(excluded.registration, registration),
manufacturer = COALESCE(excluded.manufacturer, manufacturer),
aircraft = COALESCE(excluded.aircraft, aircraft),
model = COALESCE(excluded.model, model),
operator = COALESCE(excluded.operator, operator),
country = COALESCE(excluded.country, country),
serialNumber = COALESCE(excluded.serialNumber, serialNumber),
engines = COALESCE(excluded.engines, engines),
categoryDescription = COALESCE(excluded.categoryDescription, categoryDescription),
class = COALESCE(excluded.class, class)
`).run({
icao,
registration: merged.registration || null,
manufacturer: merged.manufacturer || null,
aircraft: merged.aircraft || null,
model: merged.model || null,
operator: merged.operator || null,
country: merged.country || null,
serialNumber: merged.serialNumber || null,
engines: merged.engines || null,
categoryDescription: merged.categoryDescription || null,
class: merged.class || null,
});
}
return {icao, ...a, ...merged, type: classifyAircraft(merged) }
}
export async function getADSB() {
if (adsbCache && Date.now() - adsbCacheTs < ADSB_TTL) return adsbCache;
const { ADSB_URL } = cfg();
if (!ADSB_URL) return [];
const r = await fetchWithTimeout(`${ADSB_URL}:8080/data/aircraft.json`);
const j = await r.json();
const aircraft = j.aircraft || [];
for (const a of aircraft) {
a.type = 'unknown';
if (!a.hex || !a.lat || !a.lon) continue;
const key = a.hex.toLowerCase();
if (!history.has(key)) history.set(key, []);
const trail = history.get(key);
trail.push({ latitude: a.lat, longitude: a.lon, altitude: a.alt_baro || 0, ts: Date.now() });
if (trail.length > MAX_HISTORY) trail.shift();
}
adsbCache = await Promise.all(aircraft.map(async a => {
a = await enrichAircraft(a);
a.icon = getIcon(a);
return a;
}));
adsbCacheTs = Date.now();
return adsbCache;
}
export async function getADSBHistory(icao) {
return { history: history.get(icao?.toLowerCase()) || [] };
}
export async function getADSBRange() {
const { ADSB_URL } = cfg();
if (!ADSB_URL) return [];
const r = await fetch(`${ADSB_URL}:8080/data/outline.json`);
const j = await r.json();
return j?.actualRange?.last24h?.points || [];
}
export async function getADSBImage(icao) {
async function duckduckgo(query) {
async function getVqd(query) {
const res = await fetch(`https://duckduckgo.com/?q=${encodeURIComponent(query)}`, {
headers: { 'User-Agent': 'Mozilla/5.0' }
})
const html = await res.text()
const match = html.match(/vqd=['"]?([\d-]+)['"]?/)
return match?.[1]
}
const vqd = await getVqd(query)
if (!vqd) throw new Error('Could not get vqd token')
const url = `https://duckduckgo.com/i.js?q=${encodeURIComponent(query)}&o=json&vqd=${vqd}&f=,,,,,&p=1`
const data = await fetch(url,
{headers: {'User-Agent': 'Mozilla/5.0', 'Referer': 'https://duckduckgo.com/'}}
).then(resp => resp.json());
return data?.results?.[0]?.image || null;
}
const c = cfg();
let aircraft = (await adsbCache).find(a => a.icao?.toLowerCase() === icao?.toLowerCase());
if(!aircraft) aircraft = enrichAircraft({hex: icao});
if(!aircraft) return null;
const generic = duckduckgo(aircraft.model ? `${aircraft.manufacturer} ${aircraft.model}` : `${aircraft.aircraft} Aircraft`);
const specific = await fetch(`https://api.planespotters.net/pub/photos/hex/${icao.toLowerCase()}`,
{headers: {'User-Agent': `Personal ADSB Feeder + Dashboard (${c.EMAIL})`}}
).then(resp => resp.ok ? resp.json() : null);
let src;
if(specific?.photos?.[0]) src = specific.photos[0].thumbnail_large?.src || specific.photos[0].thumbnail?.src;
else src = await generic;
if(!src) return null;
return fetch(src).then(resp => resp.blob());
}

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import {cfg} from './config.mjs';
const CHANNEL_MAP = {0: 'A, B', 1: 'A', 2: 'B'};
const SENDER_TYPE = {
0: 'Other', 1: 'Unknown', 2: 'Cargo', 3: 'Class B',
4: 'Passenger', 5: 'Special', 6: 'Tanker', 7: 'High Speed',
8: 'Fishing', 9: 'Aircraft', 10: 'Helicopter', 11: 'Base Station',
12: 'AtoN', 13: 'SART/EPIRB'
};
let aisCache = null;
let aisCacheTs = 0;
const AIS_TTL = 1000;
function decodeMsgTypes(raw) {
const types = [];
for (let i = 0; i < 32; i++) {
if (raw & (1 << i)) types.push(i);
}
return types;
}
function decodeFlags(flags) {
return {
validated: flags & 3,
validated2: (flags & 3) == 2 ? -1 : flags & 3,
repeat: (flags >> 2) & 3,
virtual_aid: (flags >> 4) & 1,
approx: (flags >> 5) & 1,
channels: (flags >> 6) & 15,
cs_unit: (flags >> 10) & 3,
raim: (flags >> 12) & 3,
dte: (flags >> 14) & 3,
assigned: (flags >> 16) & 3,
display: (flags >> 18) & 3,
dsc: (flags >> 20) & 3,
band: (flags >> 22) & 3,
msg22: (flags >> 24) & 3,
off_position: (flags >> 26) & 3,
maneuver: (flags >> 28) & 3,
};
}
export async function getAIS() {
if (aisCache && Date.now() - aisCacheTs < AIS_TTL) return aisCache;
const {ADSB_URL} = cfg();
if (!ADSB_URL) return {data: []};
const r = await fetch(`${ADSB_URL}:9990/api/ships_array.json`);
const {dynamic, static: staticRows, time} = await r.json();
const staticMap = new Map(staticRows.map(row => [row[0], row]));
aisCache = dynamic.map(row => {
const [mmsi, lat, lon, distance, bearing, heading,
cog, speed, status, rrsi, ppm, count, msg_type,
last_signal, last_group, group_mask, flags, altitude,
received_stations, mmsi_type, shipclass, country] = row;
const s = staticMap.get(mmsi) ?? [];
const [_mmsi, shipname, callsign, destination, shiptype,
imo, to_bow, to_stern, to_port, to_starboard, draught,
eta_month, eta_day, eta_hour, eta_minute] = s;
const f = decodeFlags(flags);
return {
mmsi,
type: SENDER_TYPE[shipclass],
lat, lon, altitude,
heading, cog, speed,
distance, bearing,
destination,
rrsi, ppm, count,
msg_type: decodeMsgTypes(msg_type),
channels: CHANNEL_MAP[f.channels] ?? f.channels,
...f,
shiptype, imo, draught,
country, callsign,
shipname,
to_bow, to_stern, to_port, to_starboard,
eta_month, eta_day, eta_hour, eta_minute,
last_signal: last_signal ? time - last_signal : null,
last_group, group_mask,
received_stations, shipclass,
status
};
});
aisCacheTs = Date.now();
return aisCache;
}
export async function getAISImage(mmsi) {
console.log(`https://www.vesselfinder.com/vessels/details/${mmsi}`)
const res = await fetch(`https://www.vesselfinder.com/vessels/details/${mmsi}`, {
headers: { 'User-Agent': 'Mozilla/5.0 (Windows NT 10.0; Win64; x64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/125.0.0.0 Safari/537.36' }
})
const html = await res.text()
const match = html.match(/<img.+main-photo.+>/)
if(!match) return null;
const srcMatch = match[0].match(/src="(.+?)"/)
if (!srcMatch) return null;
let imgUrl = srcMatch[1]
if (imgUrl.startsWith('/')) imgUrl = `https://www.vesselfinder.com${imgUrl}`
return fetch(imgUrl, {
headers: { 'User-Agent': 'Mozilla/5.0 (Windows NT 10.0; Win64; x64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/125.0.0.0 Safari/537.36' }
}).then(resp => resp.blob())
}

98
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import {adjustedInterval, Logger} from '@ztimson/utils';
const cacheOptions = {
ttl: null,
reload: null,
retry: 3,
url: null,
}
export class CacheService {
#fetchLoop;
cached = null;
lastUpdate = null;
logger;
name;
options;
pending;
constructor(name, options) {
this.name = name;
this.options = {
...cacheOptions,
ttl: options.reload,
...options
};
this.logger = new Logger(name);
if(this.options.reload) setTimeout(() => this.startLoop(), 1000);
}
async #fetchWithRetry() {
let lastError;
for(let attempt = 1; attempt <= this.options.retry; attempt++) {
try {
return await this.fetch();
} catch(err) {
lastError = err;
if(attempt < this.options.retry)
this.logger.warn(`Retrying (${attempt + 1}/${this.options.retry}): ${err.message || err.toString()}`);
}
}
throw lastError;
}
async fetch() {
if(!this.options.url) return Promise.reject('Fetch is not configured');
const resp = await fetch(this.options.url);
if(!resp.ok) throw new Error(`${resp.status} ${resp.statusText}`);
return resp.json();
}
startLoop(speed = this.options.reload) {
this.stopLoop();
this.#fetchLoop = adjustedInterval(() => this.get(), speed);
}
stopLoop() {
if(!this.#fetchLoop) return;
clearInterval(this.#fetchLoop);
this.#fetchLoop = null;
}
update(catchErr = true) {
if(this.pending) return this.pending;
this.logger.info('Fetching latest');
this.pending = this.#fetchWithRetry().then(data => {
if(data?.err) throw new Error(data.err?.stack || data.err?.message || data.err);
if(data?.error) throw new Error(data.error?.stack || data.error?.message || data.error);
this.lastUpdate = new Date();
this.cached = data || null;
this.logger.debug('Finished updating');
return {timestamp: this.lastUpdate, data: this.cached};
}).catch(err => {
if(catchErr) this.logger.error(`Failed: ${typeof err == 'object' ? (err.stackTrace || err.message) : err}`)
else throw err;
}).finally(() => this.pending = null);
return this.pending;
}
async get(wait = false) {
if(!this.cached || !this.lastUpdate || this.lastUpdate?.getTime() + this.options.ttl <= Date.now()) {
if(wait) await this.update();
else this.update();
}
return Promise.resolve({timestamp: this.lastUpdate || null, data: this.cached || null});
}
}
export class AuroraService extends CacheService {
constructor() {
super('Aurora', {
reload: 60_000 * 15,
url: 'https://services.swpc.noaa.gov/json/ovation_aurora_latest.json',
});
}
}
export const Aurora = new AuroraService();

View File

@@ -53,14 +53,10 @@ function sunriseSunset(lat, lon, date = new Date()) {
const H = Math.acos(cosH) * DEG; const H = Math.acos(cosH) * DEG;
const rise = jdnToDate(jnoon - H / 360); const rise = jdnToDate(jnoon - H / 360);
const set = jdnToDate(jnoon + H / 360); const set = jdnToDate(jnoon + H / 360);
const noon_d = jdnToDate(jnoon);
// Round to nearest second, drop milliseconds
const fmt = d => new Date(Math.round(d.getTime() / 1000) * 1000).toISOString();
return { return {
sunrise: fmt(rise), sunrise: rise,
sunset: fmt(set), sunset: set,
daylight: Math.round((set - rise) / 36000) / 100, daylight: Math.round((set - rise) / 36000) / 100,
daytime: cosH < -1 daytime: cosH < -1
}; };
@@ -82,12 +78,46 @@ export function sunActivityLabel(f107) {
return 'Very High'; return 'Very High';
} }
function moonPosition(lat, lon, date = new Date()) {
const d = jdn(date) - 2451545;
const L = (218.316 + 13.176396 * d) % 360;
const M = (134.963 + 13.064993 * d) % 360;
const F = (93.272 + 13.229350 * d) % 360;
const lon_ = L + 6.289 * Math.sin(M * RAD);
const b = 5.128 * Math.sin(F * RAD);
const dec = Math.asin(
Math.sin(b * RAD) * Math.cos(23.4397 * RAD) +
Math.cos(b * RAD) * Math.sin(23.4397 * RAD) * Math.sin(lon_ * RAD)
) * DEG;
const ra = Math.atan2(
Math.sin(lon_ * RAD) * Math.cos(23.4397 * RAD) - Math.tan(b * RAD) * Math.sin(23.4397 * RAD),
Math.cos(lon_ * RAD)
) * DEG;
const UT = date.getUTCHours() + date.getUTCMinutes() / 60 + date.getUTCSeconds() / 3600;
const GMST = (6.697375 + 0.0657098242 * d + UT) % 24;
const LMST = (GMST + lon / 15) % 24;
const ha = LMST * 15 - ra;
const elev = Math.asin(
Math.sin(lat * RAD) * Math.sin(dec * RAD) +
Math.cos(lat * RAD) * Math.cos(dec * RAD) * Math.cos(ha * RAD)
) * DEG;
const az = Math.atan2(
-Math.sin(ha * RAD),
Math.tan(dec * RAD) * Math.cos(lat * RAD) - Math.sin(lat * RAD) * Math.cos(ha * RAD)
) * DEG;
return {
moon_elevation: Math.round(elev * 10) / 10,
moon_azimuth: Math.round(((az + 360) % 360) * 10) / 10,
};
}
function moonPhase(date = new Date()) { function moonPhase(date = new Date()) {
const jd = jdn(date); const jd = jdn(date);
const cycle = 29.53058867; const cycle = 29.53058867;
const known = 2451550.1; const known = 2451550.1;
const phase = ((jd - known) % cycle + cycle) % cycle; const phase = ((jd - known) % cycle + cycle) % cycle;
const illum = Math.round((1 - Math.cos(phase / cycle * 2 * Math.PI)) / 2 * 100); // More accurate illumination using proper phase angle
const illum = Math.round((1 - Math.cos(phase / cycle * 2 * Math.PI)) / 2 * 1000) / 10;
let name; let name;
if(phase < 1.85) name = 'New Moon'; if(phase < 1.85) name = 'New Moon';
else if(phase < 7.38) name = 'Waxing Crescent'; else if(phase < 7.38) name = 'Waxing Crescent';
@@ -97,7 +127,7 @@ function moonPhase(date = new Date()) {
else if(phase < 22.15) name = 'Waning Gibbous'; else if(phase < 22.15) name = 'Waning Gibbous';
else if(phase < 23.99) name = 'Last Quarter'; else if(phase < 23.99) name = 'Last Quarter';
else name = 'Waning Crescent'; else name = 'Waning Crescent';
return {moon_phase: name, moon_illumination: illum}; return { moon_phase: name, moon_illumination: illum };
} }
function nextMoonEvents(date = new Date()) { function nextMoonEvents(date = new Date()) {
@@ -108,8 +138,8 @@ function nextMoonEvents(date = new Date()) {
const toNew = (cycle - phase) % cycle; const toNew = (cycle - phase) % cycle;
const toFull = phase < 14.76 ? 14.76 - phase : cycle - phase + 14.76; const toFull = phase < 14.76 ? 14.76 - phase : cycle - phase + 14.76;
return { return {
moon_new: jdnToDate(jd + toNew).toISOString(), moon_new: jdnToDate(jd + toNew),
moon_full: jdnToDate(jd + toFull).toISOString(), moon_full: jdnToDate(jd + toFull),
}; };
} }
@@ -146,8 +176,8 @@ function moonriseMoonset(lat, lon, date = new Date()) {
) * DEG; ) * DEG;
if(prev !== null) { if(prev !== null) {
if(prev < 0 && elev >= 0 && !moonrise) moonrise = new Date(t.getTime() - 5 * 60000).toISOString(); if(prev < 0 && elev >= 0 && !moonrise) moonrise = new Date(t.getTime() - 5 * 60000);
if(prev >= 0 && elev < 0 && !moonset) moonset = new Date(t.getTime() - 5 * 60000).toISOString(); if(prev >= 0 && elev < 0 && !moonset) moonset = new Date(t.getTime() - 5 * 60000);
} }
prev = elev; prev = elev;
if(moonrise && moonset) break; if(moonrise && moonset) break;
@@ -156,25 +186,17 @@ function moonriseMoonset(lat, lon, date = new Date()) {
return {moonrise: moonrise, moonset: moonset}; return {moonrise: moonrise, moonset: moonset};
} }
function nextSolsticeEquinox(date = new Date()) {
const y = date.getFullYear();
return {
summer_solstice: new Date(Date.UTC(y, 5, 21)),
winter_solstice: new Date(Date.UTC(y, 11, 21)),
vernal_equinox: new Date(Date.UTC(y, 2, 20)),
autumnal_equinox: new Date(Date.UTC(y + 1, 2, 20)),
};
}
export function getCelestialCurrent(lat, lon, date = new Date()) { export function getCelestialCurrent(lat, lon, date = new Date()) {
return { const data = {
...sunPosition(lat, lon, date), ...sunPosition(lat, lon, date),
...sunriseSunset(lat, lon, date), ...sunriseSunset(lat, lon, date),
...moonPhase(date), ...moonPhase(date),
...moonPosition(lat, lon, date),
...nextMoonEvents(date), ...nextMoonEvents(date),
...moonriseMoonset(lat, lon, date), ...moonriseMoonset(lat, lon, date),
...nextSolsticeEquinox(date),
}; };
data.daytime = date.getTime() >= data.sunrise && date.getTime() <= data.sunset;
return data;
} }
export function getCelestialForecast(lat, lon, hours) { export function getCelestialForecast(lat, lon, hours) {

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import { config } from 'dotenv'
import { resolve, dirname } from 'path'
import { fileURLToPath } from 'url'
const ROOT = resolve(dirname(fileURLToPath(import.meta.url)), '../..')
export function cfg() {
config({ path: resolve(ROOT, '.env'), override: true })
config({ path: resolve(ROOT, '.env.local'), override: true })
return {
PORT: process.env.PORT || 3000,
ADSB_URL: process.env.ADSB_URL || '',
DB_HOST: process.env.DB_HOST || 'http://localhost:8428',
EMAIL: process.env.EMAIL,
LATITUDE: parseFloat(process.env.LATITUDE || '0'),
LONGITUDE: parseFloat(process.env.LONGITUDE || '0'),
ALTITUDE: parseFloat(process.env.ALTITUDE || '0'),
TZ: process.env.TZ || 'UTC',
}
}
// Returns the UTC offset in minutes for the configured TZ at a given date
export function tzOffsetMinutes(date = new Date()) {
const tz = cfg().TZ
// Format the date in the target timezone and compare to UTC
const local = new Date(date.toLocaleString('en-US', { timeZone: tz }))
const utc = new Date(date.toLocaleString('en-US', { timeZone: 'UTC' }))
return Math.round((local - utc) / 60_000)
}
// Shift a UTC date to local-time-as-if-UTC (for day bucketing)
export function toLocalMidnight(date = new Date()) {
const offset = tzOffsetMinutes(date)
const local = new Date(date.getTime() + offset * 60_000)
local.setUTCHours(0, 0, 0, 0)
return local
}
// Get YYYY-MM-DD string in local timezone
export function localDateStr(date = new Date()) {
const offset = tzOffsetMinutes(date)
const shifted = new Date(date.getTime() + offset * 60_000)
return shifted.toISOString().slice(0, 10)
}

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import {queryHourly, getCoords, queryCurrent} from './sensors.mjs';
import {getCelestialCurrent} from './celestial.mjs';
import {localDateStr} from './config.mjs';
import {frostRisk} from './openweather.mjs';
export let lastForecast = { ts: 0, slots: [], summary: null }
export const forecastTTL = 5 * 60 * 60_000
function estimatePrecipitation(precipChance, clouds) {
if (precipChance < 30) return 0;
const intensity = (precipChance / 100) * clouds;
if (intensity > 0.7) return Math.round(intensity * 15 * 10) / 10;
if (intensity > 0.4) return Math.round(intensity * 6 * 10) / 10;
return Math.round(intensity * 2 * 10) / 10;
}
function estimateUV(sunElevation, cloudFraction) {
if (sunElevation <= 0) return 0;
const clearSkyUV = Math.sin((sunElevation * Math.PI) / 180) * 12;
return Math.round(clearSkyUV * (1 - cloudFraction * 0.75) * 10) / 10;
}
function linearTrend(values) {
const n = values.length;
if (n < 2) return 0;
const xMean = (n - 1) / 2;
const yMean = values.reduce((a, b) => a + b, 0) / n;
const num = values.reduce((s, v, i) => s + (i - xMean) * (v - yMean), 0);
const den = values.reduce((s, _, i) => s + (i - xMean) ** 2, 0);
return den === 0 ? 0 : num / den;
}
function dewPoint(tempC, humidity) {
const a = 17.27, b = 237.7;
const gamma = (a * tempC) / (b + tempC) + Math.log(humidity / 100);
return (b * gamma) / (a - gamma);
}
function heatIndex(tempC, humidity) {
const T = tempC * 9 / 5 + 32;
if (T < 80) return tempC;
const HI =
-42.379 + 2.04901523 * T + 10.14333127 * humidity
- 0.22475541 * T * humidity - 0.00683783 * T * T
- 0.05481717 * humidity * humidity + 0.00122874 * T * T * humidity
+ 0.00085282 * T * humidity * humidity - 0.00000199 * T * T * humidity * humidity;
return (HI - 32) * 5 / 9;
}
function vaporPressureDeficit(tempC, humidity) {
const svp = 0.6108 * Math.exp((17.27 * tempC) / (tempC + 237.3));
return Math.round(svp * (1 - humidity / 100) * 1000) / 1000;
}
function absoluteHumidity(tempC, humidity) {
const svp = 0.6108 * Math.exp((17.27 * tempC) / (tempC + 237.3));
return Math.round((humidity / 100 * svp * 2165) / (tempC + 273.15) * 1000) / 1000;
}
function pressureRule(trend3h, currentHpa) {
if (trend3h < -2.0) return { label: 'Storm likely', precipitation_chance: 0.85 };
if (trend3h < -0.8) return { label: 'Rain likely', precipitation_chance: 0.65 };
if (trend3h < -0.3) return { label: 'Cloudy', precipitation_chance: 0.35 };
if (trend3h > 1.5) return { label: 'Clearing', precipitation_chance: 0.05 };
if (trend3h > 0.3) return { label: 'Improving', precipitation_chance: 0.10 };
if (currentHpa < 1000) return { label: 'Unsettled', precipitation_chance: 0.30 };
if (currentHpa < 1013) return { label: 'Partly cloudy', precipitation_chance: 0.15 };
return { label: 'Fair', precipitation_chance: 0.05 };
}
function solarTempDelta(sunElevation, cloudFraction) {
if (sunElevation <= 0) return 0;
return Math.sin((sunElevation * Math.PI) / 180) * (1 - cloudFraction) * 6;
}
function nocturnalCooling(cloudFraction) {
return (1 - cloudFraction) * 1.5;
}
function forecastHumidity(absHumidity, forecastTempC) {
const svp = 0.6108 * Math.exp((17.27 * forecastTempC) / (forecastTempC + 237.3));
const rh = (absHumidity * (forecastTempC + 273.15)) / (svp * 2165) * 100;
return Math.min(100, Math.max(0, Math.round(rh * 10) / 10));
}
function estimateClouds(humidity, pressureTrend) {
let base = humidity / 100 * 0.8;
if (pressureTrend < -0.3) base = Math.min(1, base + 0.2);
if (pressureTrend > 0.3) base = Math.max(0, base - 0.15);
return Math.round(base * 100) / 100;
}
function forecastWind(currentWind, pressureTrend) {
const boost = pressureTrend < -1 ? 1.3 : pressureTrend < -0.5 ? 1.1 : 1.0;
return Math.round(currentWind * boost * 10) / 10;
}
export async function get24HourForecast(currentSensors) {
const now = new Date();
const sixAgo = new Date(now - 6 * 3600 * 1000);
const coords = await getCoords();
const history = await queryHourly(sixAgo, now);
const pressures = history.map(r => r.pressure_hpa).filter(Number.isFinite);
const temps = history.map(r => r.temperature).filter(Number.isFinite);
const humidities = history.map(r => r.humidity).filter(Number.isFinite);
const winds = history.map(r => r.wind_speed).filter(Number.isFinite);
const pressureTrend = linearTrend(pressures);
const tempTrend = linearTrend(temps);
const humidityTrend = linearTrend(humidities);
const pressure3h = pressureTrend * 3;
const seedTemp = currentSensors.temperature ?? temps.at(-1) ?? 20;
const seedHumidity = currentSensors.humidity ?? humidities.at(-1) ?? 60;
const seedPressure = currentSensors.pressure_hpa ?? pressures.at(-1) ?? 1013;
const seedWind = currentSensors.wind_speed ?? winds.at(-1) ?? 0;
const seedAbsHum = currentSensors.humidity_abs ?? absoluteHumidity(seedTemp, seedHumidity);
const weather = pressureRule(pressure3h, seedPressure);
let runningAccumulation = 0;
const slots = Array.from({ length: 24 }, (_, i) => {
const time = new Date(now.getTime() + (i + 1) * 3600 * 1000);
time.setMinutes(0, 0, 0);
const pressureDamping = Math.exp(-i * 0.08);
const pressure = seedPressure + pressureTrend * (i + 1) * pressureDamping;
const pressure_slp = Math.round((pressure + (coords.altitude ?? 0) / 8.5) * 100) / 100;
const clouds = estimateClouds(seedHumidity + humidityTrend * i, pressureTrend);
const bgTemp = seedTemp + tempTrend * (i + 1);
const temperature = Math.round(bgTemp * 10) / 10;
const humidity = forecastHumidity(seedAbsHum, temperature);
const wind_speed = forecastWind(seedWind, pressureTrend);
const precipitation_chance = Math.round(weather.precipitation_chance * (1 - i * 0.02) * 100);
const raining = precipitation_chance > 60 ? 'True' : 'False';
const precipitation = estimatePrecipitation(precipitation_chance, clouds);
runningAccumulation = Math.round((runningAccumulation + precipitation) * 100) / 100;
const celestial = getCelestialCurrent(coords.latitude, coords.longitude, time);
const uv_index = estimateUV(celestial.sun_elevation ?? 0, clouds);
return {
time,
temperature,
humidity,
humidity_abs: absoluteHumidity(temperature, humidity),
dew_point: Math.round(dewPoint(temperature, humidity) * 100) / 100,
heat_index: Math.round(heatIndex(temperature, humidity) * 100) / 100,
vapor_pressure_deficit: vaporPressureDeficit(temperature, humidity),
pressure_hpa: Math.round(pressure * 100) / 100,
pressure_slp,
pressure_rate: Math.round(pressureTrend * 100) / 100,
storm_trend: pressure3h < -2 ? 1 : pressure3h > 1.5 ? -1 : 0,
wind_speed,
wind_gusts: Math.round(wind_speed * 1.4 * 10) / 10,
wind_direction: currentSensors.wind_direction ?? 0,
clouds,
raining,
precipitation,
precipitation_chance,
accumulation: runningAccumulation,
uv_index,
uv_dose: 0,
solar_wm2: 0,
daily_light_integral: 0,
lux: 0,
visibility: 50,
...celestial,
};
});
for (const slot of slots) {
if (slot.sunrise && slot.sunset) {
const t = slot.time instanceof Date ? slot.time.getTime() : new Date(slot.time).getTime();
const rise = slot.sunrise instanceof Date ? slot.sunrise.getTime() : new Date(slot.sunrise).getTime();
const set = slot.sunset instanceof Date ? slot.sunset.getTime() : new Date(slot.sunset).getTime();
slot.daytime = t >= rise && t < set;
} else {
slot.daytime = (slot.sun_elevation ?? 0) > 0;
}
const solar = solarTempDelta(slot.sun_elevation ?? 0, slot.clouds);
const cool = slot.daytime ? 0 : nocturnalCooling(slot.clouds);
slot.temperature = Math.round((slot.temperature + solar - cool) * 10) / 10;
slot.humidity = forecastHumidity(seedAbsHum, slot.temperature);
slot.dew_point = Math.round(dewPoint(slot.temperature, slot.humidity) * 100) / 100;
slot.heat_index = Math.round(heatIndex(slot.temperature, slot.humidity) * 100) / 100;
slot.vapor_pressure_deficit = vaporPressureDeficit(slot.temperature, slot.humidity);
slot.humidity_abs = absoluteHumidity(slot.temperature, slot.humidity);
slot.frost_risk = frostRisk(slot.temperature, slot.dew_point, slot.humidity)
slot.solar_wm2 = slot.sun_elevation > 0
? Math.round(Math.sin((slot.sun_elevation * Math.PI) / 180) * 1000 * (1 - slot.clouds * 0.75) * 100) / 100
: 0;
slot.daily_light_integral = Math.round(slot.solar_wm2 * 3600 / 1_000_000 * 4.57 * 100) / 100;
slot.lux = slot.solar_wm2 > 0 ? Math.round(slot.solar_wm2 * 120) : 0;
slot.visibility = slot.clouds > 0.85 ? 10 : 50;
Object.assign(slot, getWeatherCondition(slot));
}
return slots;
}
function groupByLocalDay(slots) {
const days = {}
for (const slot of slots) {
const key = localDateStr(new Date(slot.time))
if (!days[key]) days[key] = []
days[key].push(slot)
}
return days
}
function summarise(slots) {
if (!slots.length) return null
const daytime = slots.filter(s => s.daytime)
const source = daytime.length ? daytime : slots
const avg = (arr) => arr.length ? Math.round(arr.reduce((a, b) => a + b, 0) / arr.length * 100) / 100 : null
const peak = (arr) => arr.length ? Math.max(...arr) : null
const fin = (key) => source.map(s => s[key]).filter(Number.isFinite)
const finAll = (key) => slots.map(s => s[key]).filter(Number.isFinite)
const labelCount = {}
for (const s of source) labelCount[s.label] = (labelCount[s.label] || 0) + 1
const label = Object.entries(labelCount).sort((a, b) => b[1] - a[1])[0][0]
const dominant = source.find(s => s.label === label)
return {
time: slots[0].time,
label: dominant.label,
icon: dominant.icon,
temperature: peak(fin('temperature')),
temperature_max: peak(finAll('temperature')),
temperature_min: Math.min(...finAll('temperature')),
humidity: avg(fin('humidity')),
humidity_abs: avg(fin('humidity_abs')),
dew_point: avg(fin('dew_point')),
heat_index: peak(fin('heat_index')),
vapor_pressure_deficit: avg(fin('vapor_pressure_deficit')),
pressure_hpa: avg(fin('pressure_hpa')),
pressure_slp: avg(fin('pressure_slp')),
pressure_rate: avg(fin('pressure_rate')),
storm_trend: slots.at(-1)?.storm_trend ?? 0,
wind_speed: peak(fin('wind_speed')),
wind_gusts: peak(fin('wind_gusts')),
wind_direction: avg(fin('wind_direction')),
clouds: avg(fin('clouds')),
raining: peak(fin('precipitation_chance')) > 60 ? 'True' : 'False',
precipitation: avg(fin('precipitation')),
precipitation_chance: Math.round(peak(fin('precipitation_chance'))),
accumulation: finAll('precipitation').reduce((a, b) => a + b, 0),
frost_risk: slots.find(s => s.frost_risk !== 'None')?.frost_risk ?? slots.at(-1)?.frost_risk ?? 'None',
uv_index: peak(fin('uv_index')),
uv_dose: finAll('uv_dose').reduce((a, b) => a + b, 0),
solar_wm2: avg(fin('solar_wm2')),
daily_light_integral: Math.round(finAll('daily_light_integral').reduce((a, b) => a + b, 0) * 100) / 100,
lux: peak(fin('lux')),
visibility: avg(fin('visibility')),
sunrise: slots.find(s => s.sunrise)?.sunrise ?? null,
sunset: slots.find(s => s.sunset)?.sunset ?? null,
daylight: slots.find(s => s.daylight)?.daylight ?? null,
moon_phase: dominant.moon_phase ?? null,
moon_illumination: dominant.moon_illumination ?? null,
moon_elevation: dominant.moon_elevation ?? null,
moon_azimuth: dominant.moon_azimuth ?? null,
moon_new: dominant.moon_new ?? null,
moon_full: dominant.moon_full ?? null,
moonrise: slots.find(s => s.moonrise)?.moonrise ?? null,
moonset: slots.find(s => s.moonset)?.moonset ?? null,
}
}
export async function getForecast() {
if (Date.now() - lastForecast.ts < forecastTTL) return lastForecast;
const sensors = await queryCurrent().catch(() => null)
if (!sensors) return lastForecast
const slots = await get24HourForecast(sensors).catch(() => null)
if (!slots) return lastForecast
const days = groupByLocalDay(slots)
const todayKey = localDateStr(new Date())
const todaySlots = days[todayKey] ?? slots
lastForecast = { ts: Date.now(), slots, summary: summarise(todaySlots) }
return lastForecast
}
export function getWeatherCondition(data) {
if(data.lightning_rate > 0 && data.raining === 'True') {
return {label: 'Thunderstorm', icon: '11d'};
}
if(data.raining === 'True') {
if(data.precipitation > 7.6) return {label: 'Heavy Rain', icon: '10d'};
if(data.precipitation > 2.5) return {label: 'Moderate Rain', icon: '10d'};
return {label: 'Light Rain', icon: '09d'};
}
if(data.visibility < 10) return {label: 'Mist', icon: '50d'};
const dayNight = data.daytime ? 'd' : 'n';
const c = data.clouds > 1 ? data.clouds / 100 : data.clouds;
if(c > 0.85) return {label: 'Overcast Clouds', icon: `04${dayNight}`};
if(c > 0.50) return {label: 'Broken Clouds', icon: `04${dayNight}`};
if(c > 0.25) return {label: 'Scattered Clouds', icon: `03${dayNight}`};
if(c > 0.10) return {label: 'Few Clouds', icon: `02${dayNight}`};
return {label: 'Clear Sky', icon: `01${dayNight}`};
}

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import { existsSync, mkdirSync } from 'fs'
import { resolve, dirname } from 'path'
import { fileURLToPath } from 'url'
import { tzOffsetMinutes } from './config.mjs'
import { getWeatherCondition } from './forecast.mjs'
import { getCelestialForecast } from './celestial.mjs'
import {frostRisk} from './openweather.mjs';
const DIR = dirname(fileURLToPath(import.meta.url))
const ICON_DIR = resolve(DIR, 'public', 'icons')
const CACHE = {}
const CACHE_MS = 15 * 60 * 1000
if (!existsSync(ICON_DIR)) mkdirSync(ICON_DIR, { recursive: true })
const WMO = {
0: 'Clear Sky', 1: 'Mainly Clear', 2: 'Partly Cloudy',
3: 'Overcast', 45: 'Fog', 48: 'Icy Fog',
51: 'Light Drizzle', 53: 'Drizzle', 55: 'Heavy Drizzle',
61: 'Light Rain', 63: 'Rain', 65: 'Heavy Rain',
71: 'Light Snow', 73: 'Snow', 75: 'Heavy Snow',
77: 'Snow Grains', 80: 'Light Showers', 81: 'Showers',
82: 'Heavy Showers', 85: 'Snow Showers', 86: 'Heavy Snow Showers',
95: 'Thunderstorm', 96: 'Thunderstorm w/ Hail', 99: 'Thunderstorm w/ Heavy Hail',
}
const OWM_ICONS = {
0: '01d', 1: '01d', 2: '02d', 3: '04d',
45: '50d', 48: '50d',
51: '09d', 53: '09d', 55: '09d',
61: '10d', 63: '10d', 65: '10d',
71: '13d', 73: '13d', 75: '13d', 77: '13d',
80: '09d', 81: '09d', 82: '09d',
85: '13d', 86: '13d',
95: '11d', 96: '11d', 99: '11d',
}
async function cachedFetch(key, url) {
const now = Date.now()
if (CACHE[key] && now - CACHE[key].ts < CACHE_MS) return CACHE[key].data
const res = await fetch(url)
const data = await res.json()
CACHE[key] = { ts: now, data }
return data
}
function dewPoint(tempC, humidity) {
const a = 17.27, b = 237.7
const gamma = (a * tempC) / (b + tempC) + Math.log(humidity / 100)
return Math.round((b * gamma) / (a - gamma) * 100) / 100
}
function heatIndex(tempC, humidity) {
const T = tempC * 9 / 5 + 32
if (T < 80) return Math.round(tempC * 100) / 100
const HI =
-42.379 + 2.04901523 * T + 10.14333127 * humidity
- 0.22475541 * T * humidity - 0.00683783 * T * T
- 0.05481717 * humidity * humidity + 0.00122874 * T * T * humidity
+ 0.00085282 * T * humidity * humidity - 0.00000199 * T * T * humidity * humidity
return Math.round((HI - 32) * 5 / 9 * 100) / 100
}
function vaporPressureDeficit(tempC, humidity) {
const svp = 0.6108 * Math.exp((17.27 * tempC) / (tempC + 237.3))
return Math.round(svp * (1 - humidity / 100) * 1000) / 1000
}
function absoluteHumidity(tempC, humidity) {
const svp = 0.6108 * Math.exp((17.27 * tempC) / (tempC + 237.3))
return Math.round((humidity / 100 * svp * 2165) / (tempC + 273.15) * 1000) / 1000
}
// ── Daily ─────────────────────────────────────────────────────────────────────
const DAILY_FIELDS = [
'temperature_2m_max', 'temperature_2m_min',
'precipitation_sum', 'precipitation_probability_max',
'windspeed_10m_max', 'windgusts_10m_max', 'winddirection_10m_dominant',
'weathercode', 'sunrise', 'sunset', 'relative_humidity_2m_mean',
'uv_index_max', 'shortwave_radiation_sum',
].join(',')
export async function dailyWeather(lat, lon, start, end) {
const startStr = start.toISOString().slice(0, 10)
const endStr = end.toISOString().slice(0, 10)
const url = `https://api.open-meteo.com/v1/forecast?latitude=${lat}&longitude=${lon}` +
`&daily=${DAILY_FIELDS}&timezone=auto&start_date=${startStr}&end_date=${endStr}`
const data = await cachedFetch(`daily_${lat}_${lon}_${startStr}_${endStr}`, url)
if (!data?.daily?.time) return []
const rows = data.daily.time.map((time, i) => {
const code = data.daily.weathercode[i]
const icon = OWM_ICONS[code] || '01d'
const tempMax = data.daily.temperature_2m_max[i]
const tempMin = data.daily.temperature_2m_min[i]
const temp = tempMax
const humidity = data.daily.relative_humidity_2m_mean[i]
const precip = data.daily.precipitation_sum[i] ?? 0
const precipChance = data.daily.precipitation_probability_max[i] ?? 0
const windSpeed = data.daily.windspeed_10m_max[i] ?? 0
const windGusts = data.daily.windgusts_10m_max[i] ?? 0
const utcMidnight = new Date(`${time}T00:00:00Z`)
const offset = tzOffsetMinutes(utcMidnight)
const localMidnight = new Date(utcMidnight.getTime() - offset * 60_000)
const sunrise = data.daily.sunrise[i] ? new Date(data.daily.sunrise[i]) : null
const sunset = data.daily.sunset[i] ? new Date(data.daily.sunset[i]) : null
const daylight = sunrise && sunset
? Math.round((sunset - sunrise) / 3600_000 * 100) / 100
: null
const clouds = humidity / 100 * 0.8 // rough estimate — not provided by daily endpoint
const row = {
time: localMidnight,
daytime: true,
label: WMO[code] || 'Unknown',
icon,
temperature: temp,
temperature_max: tempMax,
temperature_min: tempMin,
humidity,
humidity_abs: absoluteHumidity(temp, humidity),
dew_point: dewPoint(temp, humidity),
heat_index: heatIndex(temp, humidity),
vapor_pressure_deficit: vaporPressureDeficit(temp, humidity),
pressure_hpa: null,
pressure_slp: null,
pressure_rate: null,
storm_trend: 0,
wind_speed: windSpeed,
wind_gusts: windGusts,
wind_direction: data.daily.winddirection_10m_dominant[i] ?? 0,
clouds,
raining: precipChance > 60 ? 'True' : 'False',
precipitation: precip,
precipitation_chance: precipChance,
accumulation: precip,
frost_risk: frostRisk(temp, dewPoint(temp, humidity), humidity),
uv_index: data.daily.uv_index_max[i] ?? 0,
uv_index_max: data.daily.uv_index_max[i] ?? 0,
uv_dose: 0,
solar_wm2: data.daily.shortwave_radiation_sum[i] ?? 0,
daily_light_integral: data.daily.shortwave_radiation_sum[i]
? Math.round(data.daily.shortwave_radiation_sum[i] * 3600 / 1_000_000 * 4.57 * 100) / 100
: 0,
lux: 0,
visibility: 50,
sunrise,
sunset,
daylight,
lightning_rate: 0,
lightning_distance: null,
seismic_magnitude: null,
air_quality: null,
ground_distance: null,
}
return { ...row, ...getWeatherCondition(row) }
})
return rows
}
// ── Hourly ────────────────────────────────────────────────────────────────────
const HOURLY_FIELDS = [
'temperature_2m', 'relative_humidity_2m', 'dewpoint_2m',
'apparent_temperature', 'precipitation_probability', 'precipitation',
'weathercode', 'surface_pressure', 'cloudcover',
'windspeed_10m', 'windgusts_10m', 'winddirection_10m',
'uv_index', 'shortwave_radiation', 'vapour_pressure_deficit',
'visibility',
].join(',')
export async function hourlyWeather(lat, lon, start, end) {
const startStr = start instanceof Date ? start.toISOString().slice(0, 10) : start.slice(0, 10)
const endStr = end instanceof Date ? end.toISOString().slice(0, 10) : end.slice(0, 10)
const url = `https://api.open-meteo.com/v1/forecast?latitude=${lat}&longitude=${lon}` +
`&hourly=${HOURLY_FIELDS}&daily=sunrise,sunset&timezone=auto&start_date=${startStr}&end_date=${endStr}`
const data = await cachedFetch(`hourly_${lat}_${lon}_${startStr}_${endStr}`, url)
if (!data?.hourly?.time) return []
const sunMap = {}
if (data.daily?.time) {
data.daily.time.forEach((date, i) => {
sunMap[date] = {
sunrise: data.daily.sunrise[i] ? new Date(data.daily.sunrise[i]) : null,
sunset: data.daily.sunset[i] ? new Date(data.daily.sunset[i]) : null,
}
})
}
const rows = data.hourly.time.map((time, i) => {
const dateKey = time.slice(0, 10)
const sun = sunMap[dateKey] ?? {}
const t = new Date(time + 'Z').getTime()
const daytime = sun.sunrise && sun.sunset
? t >= sun.sunrise.getTime() && t < sun.sunset.getTime()
: false
const code = data.hourly.weathercode[i]
const temp = data.hourly.temperature_2m[i]
const humidity = data.hourly.relative_humidity_2m[i]
const clouds = Math.round(data.hourly.cloudcover[i]) / 100
const precip = data.hourly.precipitation[i] ?? 0
const precipChance = data.hourly.precipitation_probability[i] ?? 0
const windSpeed = data.hourly.windspeed_10m[i] ?? 0
const uv = data.hourly.uv_index[i] ?? 0
const sunrise = sun.sunrise ?? null
const sunset = sun.sunset ?? null
const daylight = sunrise && sunset
? Math.round((sunset - sunrise) / 3600_000 * 100) / 100
: null
const row = {
time: new Date(time + 'Z'),
daytime,
label: WMO[code] || 'Unknown',
icon: OWM_ICONS[code] || '01d',
temperature: temp,
temperature_max: temp,
temperature_min: temp,
humidity,
humidity_abs: absoluteHumidity(temp, humidity),
dew_point: data.hourly.dewpoint_2m[i] ?? dewPoint(temp, humidity),
heat_index: heatIndex(temp, humidity),
vapor_pressure_deficit: data.hourly.vapour_pressure_deficit[i] ?? vaporPressureDeficit(temp, humidity),
pressure_hpa: data.hourly.surface_pressure[i] ?? null,
pressure_slp: null,
pressure_rate: null,
storm_trend: 0,
wind_speed: windSpeed,
wind_gusts: data.hourly.windgusts_10m[i] ?? 0,
wind_direction: data.hourly.winddirection_10m[i] ?? 0,
clouds,
raining: precipChance > 60 ? 'True' : 'False',
precipitation: precip,
precipitation_chance: precipChance,
accumulation: precip,
frost_risk: frostRisk(temp, dewPoint(temp, humidity), humidity),
uv_index: uv,
uv_index_max: uv,
uv_dose: 0,
solar_wm2: data.hourly.shortwave_radiation[i] ?? 0,
daily_light_integral: data.hourly.shortwave_radiation[i]
? Math.round(data.hourly.shortwave_radiation[i] * 3600 / 1_000_000 * 4.57 * 100) / 100
: 0,
lux: data.hourly.shortwave_radiation[i]
? Math.round(data.hourly.shortwave_radiation[i] * 120)
: 0,
visibility: data.hourly.visibility[i] != null
? Math.round(data.hourly.visibility[i] / 1000 * 10) / 10
: 50,
sunrise,
sunset,
daylight,
lightning_rate: 0,
lightning_distance: null,
seismic_magnitude: null,
air_quality: null,
ground_distance: null,
}
return { ...row, ...getWeatherCondition(row) }
})
return rows
}

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import {existsSync, mkdirSync, writeFileSync} from 'fs';
import * as path from 'node:path';
import {resolve, dirname} from 'path';
import {fileURLToPath} from 'url';
const DIR = resolve(dirname(fileURLToPath(import.meta.url)), '../data/icons');
export async function downloadIcon(icon, path) {
if(!existsSync(DIR)) mkdirSync(dirname(path), {recursive: true});
const res = await fetch(`https://openweathermap.org/img/wn/${icon}@2x.png`);
const buf = Buffer.from(await res.arrayBuffer());
writeFileSync(path, buf);
}
export async function fetchIcon(icon) {
const iconPath = path.join(DIR, icon + '.png');
if(!existsSync(DIR) || !existsSync(iconPath))
await downloadIcon(icon, iconPath);
return iconPath;
}
export function frostRisk(tempC, dewPointC, humidity) {
if (tempC > 4) return 'None'
if (tempC <= 0 && dewPointC <= 0) return 'High'
if (tempC <= 2 && humidity > 85) return 'Moderate'
if (tempC <= 4) return 'Low'
return 'None'
}

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import {cfg} from './config.mjs';
import {frostRisk} from './openweather.mjs';
async function query(c, q, start, end) {
const url = new URL('/api/v1/query_range', c.DB_HOST);
url.searchParams.set('query', q);
url.searchParams.set('step', '60s');
if (start) url.searchParams.set('start', start);
if (end) url.searchParams.set('end', end);
const res = await fetch(url);
const json = await res.json();
return json.data?.result || [];
}
async function queryInstant(c, q) {
const url = new URL('/api/v1/query', c.DB_HOST);
url.searchParams.set('query', q);
const res = await fetch(url);
const json = await res.json();
return json.data?.result || [];
}
function metricToFields(results) {
const out = {};
for (const r of results) {
if(r.metric.__name__.startsWith('system_')) continue;
const val = r.value?.[1] ?? r.values?.at(-1)?.[1];
if (val !== undefined) out[r.metric.__name__.replace('weather_', '')] = parseFloat(val);
}
return out;
}
export async function queryCurrent() {
const c = cfg()
const results = await queryInstant(c, `{__name__!=""}`)
const fields = metricToFields(results)
const dp = fields.dew_point ?? null
return {
time: new Date(),
...fields,
frost_risk: frostRisk(fields.temperature ?? 99, dp ?? 99, fields.humidity ?? 0),
}
}
export async function queryHourly(start, end) {
const c = cfg();
const s = Math.floor(start.getTime() / 1000);
const e = Math.floor(end.getTime() / 1000);
const byTime = {};
const results = await query(c, `avg_over_time({__name__!=""}[1h])`, s, e);
results.forEach(r => {
r.values.forEach(([ts, val]) => {
if(r.metric.__name__.startsWith('system_')) return;
const time = new Date(ts * 1000).toISOString().slice(0, 13) + ':00';
if (!byTime[time]) byTime[time] = {time};
byTime[time][r.metric.__name__.replace('weather_', '')] = parseFloat(val);
});
});
return Object.values(byTime)
.sort((a, b) => a.time.localeCompare(b.time))
.map(r => ({ ...r, time: new Date(r.time) }));
}
export async function queryDaily(start, end) {
const c = cfg();
const s = Math.floor(start.getTime() / 1000);
const e = Math.floor(end.getTime() / 1000);
const byTime = {};
const [means, mins, maxs] = await Promise.all([
query(c, `avg_over_time({__name__!=""}[1d])`, s, e),
query(c, `min_over_time({__name__!=""}[1d])`, s, e),
query(c, `max_over_time({__name__!=""}[1d])`, s, e),
]);
means.forEach(r => {
r.values.forEach(([ts, val]) => {
if(r.metric.__name__.startsWith('system_')) return;
const time = new Date(ts * 1000).toISOString().slice(0, 10);
if (!byTime[time]) byTime[time] = {time};
byTime[time][r.metric.__name__.replace('weather_', '')] = parseFloat(val);
});
});
mins.forEach(r => {
if (r.metric.__name__ !== 'temperature') return;
r.values.forEach(([ts, val]) => {
const time = new Date(ts * 1000).toISOString().slice(0, 10);
if (!byTime[time]) byTime[time] = {time};
byTime[time].env_temp_min_c = parseFloat(val);
});
});
maxs.forEach(r => {
if (r.metric.__name__ !== 'temperature') return;
r.values.forEach(([ts, val]) => {
const time = new Date(ts * 1000).toISOString().slice(0, 10);
if (!byTime[time]) byTime[time] = {time};
byTime[time].env_temp_max_c = parseFloat(val);
});
});
return Object.values(byTime)
.sort((a, b) => a.time.localeCompare(b.time))
.map(r => ({ ...r, time: new Date(r.time) }));
}
export async function getCoords() {
const c = cfg();
const results = await queryInstant(c, `{__name__=~"latitude|longitude|altitude"}`);
const fields = metricToFields(results);
if (fields.latitude && fields.longitude) {
return {latitude: fields.latitude, longitude: fields.longitude, altitude: fields.altitude || c.ALTITUDE};
}
return {latitude: c.LATITUDE, longitude: c.LONGITUDE, altitude: c.ALTITUDE};
}

213
server/src/server.mjs Normal file
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@@ -0,0 +1,213 @@
import express from 'express';
import {resolve, dirname} from 'path';
import {fileURLToPath} from 'url';
import {cfg} from './config.mjs';
import {queryCurrent, queryHourly, queryDaily, getCoords} from './sensors.mjs';
import {getCelestialCurrent, getCelestialForecast} from './celestial.mjs';
import {apiReference} from '@scalar/express-api-reference';
import {spec} from './spec.mjs';
import {existsSync} from 'fs';
import {getAIS, getAISImage} from './ais.mjs';
import {getADSBImage, getADSB, getADSBHistory, getADSBRange, initAircraftDb} from './adsb.mjs';
import {fetchIcon} from './openweather.mjs';
import {getForecast, getWeatherCondition, forecastTTL} from './forecast.mjs';
import {dailyWeather, hourlyWeather} from './openmeteo.mjs';
// ── Uncaught error handlers ───────────────────────────────────────────────────
const asyncHandler = fn => (req, res, next) => Promise.resolve(fn(req, res, next)).catch(next);
process.on('unhandledRejection', (reason, promise) => {
console.error('[unhandledRejection]', promise, '\nReason:', reason)
})
process.on('uncaughtException', (err) => {
console.error('[uncaughtException]', err)
})
const app = express();
const DIR = dirname(fileURLToPath(import.meta.url));
const CLIENT_DIST = resolve(DIR, '../public');
app.use(express.json());
app.use((req, res, next) => {
res.setHeader('Access-Control-Allow-Origin', '*');
next();
});
app.use(express.static(CLIENT_DIST));
function filterFields(obj, fields) {
if(!fields) return obj;
const keys = new Set(fields.split(',').map(f => f.trim()));
return Object.fromEntries(Object.entries(obj).filter(([k]) => keys.has(k)));
}
function filterArr(arr, fields) {
if(!fields) return arr;
return arr.map(row => filterFields(row, fields));
}
// ── Current ───────────────────────────────────────────────────────────────────
app.get('/api/current', asyncHandler(async (req, res) => {
const { fields } = req.query
const [sensors, coords] = await Promise.all([queryCurrent(), getCoords()])
const space = getCelestialCurrent(coords.latitude, coords.longitude)
const condition = getWeatherCondition(Object.assign(sensors, space))
const forecast = await getForecast();
const merged = {
...condition,
...sensors,
...(forecast?.summary ? {
precipitation_chance: forecast.summary.precipitation_chance,
temperature_max: forecast.summary.temperature_max,
temperature_min: forecast.summary.temperature_min,
uv_index_max: forecast.summary.uv_index,
} : {}),
...space,
}
res.json(filterFields(merged, fields))
}));
// ── Hourly ────────────────────────────────────────────────────────────────────
app.get('/api/hourly', asyncHandler(async (req, res) => {
const { fields } = req.query
const coords = await getCoords()
const now = new Date()
now.setMinutes(0, 0, 0)
const forecast24Limit = new Date(now.getTime() + 24 * 60 * 60_000)
const start = req.query.start ? new Date(req.query.start) : now
const end = req.query.end ? new Date(req.query.end) : forecast24Limit
const [history, forecast24, meteo] = await Promise.all([
start < now
? queryHourly(start, now)
: Promise.resolve([]),
now < forecast24Limit && end > now
? getForecast().then(f => f.slots.filter(h => new Date(h.time) >= now && new Date(h.time) <= Math.min(end, forecast24Limit)))
: Promise.resolve([]),
end > forecast24Limit
? hourlyWeather(coords.latitude, coords.longitude, forecast24Limit, end)
: Promise.resolve([]),
])
const combined = getCelestialForecast(coords.latitude, coords.longitude, [...history, ...forecast24, ...meteo])
res.json(filterArr(combined, fields))
}))
// ── Daily ─────────────────────────────────────────────────────────────────────
app.get('/api/daily', asyncHandler(async (req, res) => {
const { fields } = req.query
const coords = await getCoords()
const now = new Date()
const todayStart = new Date(now)
todayStart.setHours(0, 0, 0, 0)
const todayEnd = new Date(todayStart)
todayEnd.setDate(todayStart.getDate() + 1)
const start = req.query.start ? new Date(req.query.start) : todayStart
const end = req.query.end ? new Date(req.query.end) : new Date(todayEnd.getTime() + 5 * 24 * 60 * 60_000)
const [history, current, future] = await Promise.all([
start < todayStart
? queryDaily(start, todayStart)
: Promise.resolve([]),
start <= todayStart && end >= todayStart
? queryCurrent().then(resp => [resp])
: Promise.resolve([]),
end > todayEnd
? dailyWeather(coords.latitude, coords.longitude, todayEnd, end)
: Promise.resolve([]),
])
const daily = getCelestialForecast(coords.latitude, coords.longitude, [...history, ...current, ...future])
res.json(filterArr(daily, fields))
}))
// ── Position ──────────────────────────────────────────────────────────────────
app.get('/api/position', asyncHandler(async (req, res) => {
const {fields} = req.query;
const data = await getCoords();
res.json(filterFields(data, fields));
}));
// ── Icon ──────────────────────────────────────────────────────────────────────
app.get('/api/icon/:icon', asyncHandler(async (req, res, next) => {
const { icon } = req.params;
if(!icon) return next(); // 404 fallback can handle missing icons
res.contentType('image/png');
res.sendFile(await fetchIcon(icon));
}));
// ── Space ─────────────────────────────────────────────────────────────────────
// app.get('/api/aurora', async (req, res) => res.json(await Aurora.get()));
// app.get('/api/space', async (req, res) => {
// const {fields} = req.query;
// res.json(filterFields(await getSpaceWeather(), fields));
// });
// ── ADSB/AIS Proxy ────────────────────────────────────────────────────────────
app.get('/api/adsb', asyncHandler(async (req, res) => res.json(await getADSB())));
app.get('/api/adsb-image/:icao', asyncHandler(async (req, res) => {
const blob = await getADSBImage(req.params.icao);
if (!blob) return res.status(404).send('No image found');
const buffer = Buffer.from(await blob.arrayBuffer());
res.contentType(blob.type).send(buffer);
}));
app.get('/api/adsb/:icao', asyncHandler(async (req, res) => res.json(await getADSBHistory(req.params.icao))));
app.get('/api/ais', asyncHandler(async (req, res) => res.json(await getAIS())));
app.get('/api/ais-image/:mmsi', asyncHandler(async (req, res) => {
const blob = await getAISImage(req.params.mmsi);
if (!blob) return res.status(404).send('No image found');
const buffer = Buffer.from(await blob.arrayBuffer());
res.contentType(blob.type).send(buffer);
}));
app.get('/api/range', asyncHandler(async (req, res) => res.json(await getADSBRange())));
// ── DOCS ──────────────────────────────────────────────────────────────────────
app.use('/docs', apiReference({spec: {url: '/openapi.json'}, theme: 'default'}));
app.get('/openapi.json',asyncHandler(async (req, res) => res.json(spec)));
app.get('/openapi.yaml',asyncHandler(async (req, res) => {
const {stringify} = await import('yaml');
res.setHeader('Content-Type', 'text/yaml');
res.send(stringify(spec));
}));
// ── Website ───────────────────────────────────────────────────────────────────
app.get('*', (req, res) => {
const index = resolve(CLIENT_DIST, 'index.html');
if(existsSync(index)) res.sendFile(index);
else res.status(404).send('Client not built yet — run npm run build in /client');
});
// ── Errors ────────────────────────────────────────────────────────────────────
app.use((req, res, next) => {
res.status(404).json({ error: `Not found: ${req.method} ${req.path}` })
})
app.use((err, req, res, next) => {
console.error(`[ERROR] ${req.method} ${req.path}\n${err.stack}`)
res.status(500).json({ error: err.message, stack: err.stack })
})
// ── Start ─────────────────────────────────────────────────────────────────────
const c = cfg();
setTimeout(getForecast, 1)
setInterval(getForecast, forecastTTL)
await initAircraftDb();
app.listen(c.PORT, () => {
console.log(`⛅ Weather API — http://localhost:${c.PORT}`)
});

161
server/src/spec.mjs Normal file
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@@ -0,0 +1,161 @@
export const spec = {
openapi: '3.0.0',
info: {
title: 'Weather Station',
version: '1.0.0',
description: 'Hyperlocal weather station — sensor data, forecasts, celestial & space weather',
},
servers: [{ url: 'http://localhost:3000' }],
paths: {
'/api/position': {
get: {
summary: 'Station position',
description: 'Latest GPS position and altitude',
responses: {
200: {
description: 'Last known position',
content: { 'application/json': { schema: { $ref: '#/components/schemas/Position' } } }
}
}
}
},
'/api/current': {
get: {
summary: 'Current conditions',
description: 'Latest reading of all metrics — sensor, forecast, celestial & space weather merged into a single flat object',
parameters: [
{ name: 'fields', in: 'query', required: false, schema: { type: 'string' },
description: 'Comma-separated list of fields to return. Omit for all.' }
],
responses: {
200: {
description: 'Current conditions',
content: { 'application/json': { schema: { $ref: '#/components/schemas/DataRow' } } }
}
}
}
},
'/api/hourly': {
get: {
summary: 'Hourly data',
description: 'Hourly aggregated sensor data merged with Open-Meteo hourly forecast, celestial positions and space weather. Defaults to today.',
parameters: [
{ name: 'start', in: 'query', required: false, schema: { type: 'string', format: 'date-time' },
description: 'ISO8601 start timestamp. Defaults to today 00:00.' },
{ name: 'end', in: 'query', required: false, schema: { type: 'string', format: 'date-time' },
description: 'ISO8601 end timestamp. Defaults to now.' },
{ name: 'fields', in: 'query', required: false, schema: { type: 'string' },
description: 'Comma-separated list of fields to return. Omit for all.' },
],
responses: {
200: {
description: 'Array of hourly rows',
content: { 'application/json': { schema: { type: 'array', items: { $ref: '#/components/schemas/DataRow' } } } }
}
}
}
},
'/api/daily': {
get: {
summary: 'Daily data',
description: 'Daily aggregated sensor data (mean/min/max) merged with Open-Meteo daily forecast and celestial events. Defaults to today.',
parameters: [
{ name: 'start', in: 'query', required: false, schema: { type: 'string', format: 'date-time' },
description: 'ISO8601 start timestamp. Defaults to today 00:00.' },
{ name: 'end', in: 'query', required: false, schema: { type: 'string', format: 'date-time' },
description: 'ISO8601 end timestamp. Defaults to now.' },
{ name: 'fields', in: 'query', required: false, schema: { type: 'string' },
description: 'Comma-separated list of fields to return. Omit for all.' },
],
responses: {
200: {
description: 'Array of daily rows',
content: { 'application/json': { schema: { type: 'array', items: { $ref: '#/components/schemas/DataRow' } } } }
}
}
}
},
},
components: {
schemas: {
Position: {
type: 'object',
properties: {
latitude: { type: 'number', description: 'Latitude (°)' },
longitude: { type: 'number', description: 'Longitude (°)' },
altitude: { type: 'number', description: 'Altitude (m)' },
}
},
DataRow: {
type: 'object',
properties: {
time: { type: 'string', format: 'date-time', description: 'ISO8601 timestamp' },
// Environment
temperature: { type: 'number', description: 'Temperature (°C)' },
env_temp_min_c: { type: 'number', description: 'Daily min temperature (°C)' },
env_temp_max_c: { type: 'number', description: 'Daily max temperature (°C)' },
humidity: { type: 'number', description: 'Relative humidity (%)' },
humidity_abs: { type: 'number', description: 'Absolute humidity (g/m³)' },
dew_point: { type: 'number', description: 'Dew point (°C)' },
heat_index: { type: 'number', description: 'Feels like / heat index (°C)' },
vapor_pressure_deficit: { type: 'number', description: 'Vapour pressure deficit (kPa)' },
pressure_hpa: { type: 'number', description: 'Station pressure (hPa)' },
pressure_slp: { type: 'number', description: 'Sea level pressure (hPa)' },
pressure_rate: { type: 'number', description: 'Pressure change rate (hPa/hr)' },
pressure_trend: { type: 'string', enum: ['Rising','Falling','Stable'], description: 'Pressure trend label' },
frost_risk: { type: 'string', enum: ['None','Low','Moderate','High'], description: 'Frost risk level' },
air_quality: { type: 'number', description: 'Air quality index score (0100)' },
air_quality_label: { type: 'string', enum: ['Excellent','Good','Fair','Poor','Very Poor'] },
// Light & Solar
lux: { type: 'number', description: 'Illuminance (lux)' },
uv_index: { type: 'number', description: 'UV index' },
uv_index_max: { type: 'number', description: 'Daily max UV index' },
uv_dose: { type: 'number', description: 'Accumulated UV dose today (mJ/cm²)' },
solar_wm2: { type: 'number', description: 'Solar irradiance (W/m²)' },
daily_light_integral: { type: 'number', description: 'Daily light integral (mol/m²/day)' },
clouds: { type: 'number', description: 'Cloud cover fraction (01)' },
visibility: { type: 'number', description: 'Estimated visibility (km)' },
daylight: { type: 'number', description: 'Hours of daylight' },
// Weather
label: { type: 'string', description: 'Human readable weather label' },
icon: { type: 'string', description: 'OWM icon code e.g. 01d' },
raining: { type: 'string', enum: ['True','False'] },
precipitation: { type: 'number', description: 'Precipitation (mm)' },
precipitation_chance: { type: 'number', description: 'Precipitation probability (%)' },
accumulation: { type: 'number', description: 'Accumulated precipitation (mm)' },
storm_trend: { type: 'number', description: '1=worsening, 0=stable, -1=improving' },
// Wind
wind_speed: { type: 'number', description: 'Wind speed (km/h)' },
wind_gusts: { type: 'number', description: 'Wind gusts (km/h)' },
wind_direction: { type: 'number', description: 'Wind direction (°)' },
// Lightning
lightning_rate: { type: 'number', description: 'Strike rate (strikes/hr)' },
lightning_distance: { type: 'number', description: 'Lightning strike distance (km)' },
// Sun
sun_elevation: { type: 'number', description: 'Solar elevation angle (°)' },
sun_azimuth: { type: 'number', description: 'Solar azimuth (°)' },
sunrise: { type: 'string', format: 'date-time', description: 'Sunrise time' },
sunset: { type: 'string', format: 'date-time', description: 'Sunset time' },
daytime: { type: 'boolean', description: 'True if between sunrise and sunset' },
// Moon
moon_phase: { type: 'string', description: 'Moon phase name' },
moon_illumination: { type: 'number', description: 'Moon illumination (%)' },
moon_elevation: { type: 'number', description: 'Moon elevation (°)' },
moon_azimuth: { type: 'number', description: 'Moon azimuth (°)' },
moonrise: { type: 'string', format: 'date-time', description: 'Moonrise time' },
moonset: { type: 'string', format: 'date-time', description: 'Moonset time' },
moon_new: { type: 'string', format: 'date-time', description: 'Next new moon' },
moon_full: { type: 'string', format: 'date-time', description: 'Next full moon' },
// Seismic
seismic_magnitude: { type: 'number', description: 'Peak seismic magnitude (g)' },
// Ground
ground_distance: { type: 'number', description: 'LIDAR ground distance (cm)' },
// GPS
latitude: { type: 'number', description: 'Latitude (°)' },
longitude: { type: 'number', description: 'Longitude (°)' },
altitude: { type: 'number', description: 'Altitude (m)' },
}
}
}
}
}

View File

@@ -3,22 +3,46 @@ set -e
SCRIPT_DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)" SCRIPT_DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)"
USER_NAME="$(whoami)" USER_NAME="$(whoami)"
VM_DIR="/opt/victoriametrics"
echo "🔧 Setting up Weather Station..." echo "🔧 Setting up Weather Station..."
# ── InfluxDB ────────────────────────────────────────────────────────────────── # ── VictoriaMetrics ───────────────────────────────────────────────────────────
if ! command -v influxd &> /dev/null; then if ! systemctl is-enabled --quiet victoriametrics 2>/dev/null; then
echo "📦 Installing InfluxDB..." echo "📦 Installing VictoriaMetrics..."
curl https://repos.influxdata.com/influxdata-archive.key | gpg --dearmor | sudo tee /usr/share/keyrings/influxdata-archive-keyring.gpg > /dev/null sudo mkdir -p $VM_DIR/data
echo "deb [signed-by=/usr/share/keyrings/influxdata-archive-keyring.gpg] https://repos.influxdata.com/debian stable main" | sudo tee /etc/apt/sources.list.d/influxdata.list cd $VM_DIR
sudo apt update && sudo apt install -y influxdb2 wget -qO vm.tar.gz "https://github.com/VictoriaMetrics/VictoriaMetrics/releases/download/v1.146.0/victoria-metrics-linux-arm64-v1.146.0.tar.gz"
sudo systemctl enable --now influxdb sudo tar -xzf vm.tar.gz
sudo chmod +x $VM_DIR/victoria-metrics-prod
rm /tmp/vm.tar.gz
sudo tee /etc/systemd/system/victoriametrics.service > /dev/null <<EOF
[Unit]
Description=VictoriaMetrics
After=network.target
[Service]
ExecStart=$VM_DIR/victoria-metrics-prod \
-storageDataPath=$VM_DIR/data \
-httpListenAddr=:8428 \
-retentionPeriod=12
Restart=always
RestartSec=5
User=root
[Install]
WantedBy=multi-user.target
EOF
sudo systemctl daemon-reload
sudo systemctl enable --now victoriametrics
else else
echo "✅ InfluxDB already installed, skipping..." echo "✅ VictoriaMetrics already installed, skipping..."
fi fi
# ── Node.js ─────────────────────────────────────────────────────────────────── # ── Server / Node.js ──────────────────────────────────────────────────────────
if ! command -v node &> /dev/null; then if ! command -v node &> /dev/null; then
echo "📦 Installing Node.js..." echo "📦 Installing Node.js..."
@@ -28,7 +52,47 @@ else
echo "✅ Node.js already installed, skipping..." echo "✅ Node.js already installed, skipping..."
fi fi
# ── Python venv ─────────────────────────────────────────────────────────────── if [ ! -d "$SCRIPT_DIR/server/public/index.html" ]; then
echo "🌐 Building Client..."
cd "$SCRIPT_DIR/client"
npm ci
npx vite build
else
echo "✅ Client installed, skipping..."
fi
if [ ! -d "$SCRIPT_DIR/server/node_modules" ]; then
echo "🌐 Installing Server..."
cd "$SCRIPT_DIR/server"
npm ci
else
echo "✅ Server installed, skipping..."
fi
if ! systemctl is-enabled --quiet weather-station 2>/dev/null; then
echo "⚙️ Installing server service..."
sudo tee /etc/systemd/system/weather-station.service > /dev/null <<EOF
[Unit]
Description=Weather Station API
After=network.target victoriametrics.service
[Service]
WorkingDirectory=$SCRIPT_DIR/server
ExecStart=npm run start
Restart=always
RestartSec=5
User=$USER_NAME
[Install]
WantedBy=multi-user.target
EOF
sudo systemctl daemon-reload
sudo systemctl enable --now weather-sensors
else
echo "✅ Server service already installed, skipping..."
fi
# ── Sensors / Python venv ─────────────────────────────────────────────────────
if [ ! -d "$SCRIPT_DIR/sensors/venv" ]; then if [ ! -d "$SCRIPT_DIR/sensors/venv" ]; then
echo "🐍 Setting up Python environment..." echo "🐍 Setting up Python environment..."
@@ -40,14 +104,12 @@ else
echo "✅ Python environment already set up, skipping..." echo "✅ Python environment already set up, skipping..."
fi fi
# ── Systemd service ───────────────────────────────────────────────────────────
if ! systemctl is-enabled --quiet weather-sensors 2>/dev/null; then if ! systemctl is-enabled --quiet weather-sensors 2>/dev/null; then
echo "⚙️ Installing systemd service..." echo "⚙️ Installing sensor service..."
sudo tee /etc/systemd/system/weather-sensors.service > /dev/null <<EOF sudo tee /etc/systemd/system/weather-sensors.service > /dev/null <<EOF
[Unit] [Unit]
Description=Weather Station Sensors Description=Weather Station Sensors
After=network.target After=network.target victoriametrics.service
[Service] [Service]
WorkingDirectory=$SCRIPT_DIR/sensors WorkingDirectory=$SCRIPT_DIR/sensors
@@ -62,10 +124,9 @@ EOF
sudo systemctl daemon-reload sudo systemctl daemon-reload
sudo systemctl enable --now weather-sensors sudo systemctl enable --now weather-sensors
else else
echo "✅ Systemd service already installed, skipping..." echo "✅ Sensor service already installed, skipping..."
fi fi
echo "✅ All done!" echo "✅ All done!"
echo " InfluxDB UI: http://localhost:8086" echo " VictoriaMetrics UI: http://localhost:8428"
echo " Sensor logs: journalctl -fu weather-sensors" echo " Sensor logs: journalctl -fu weather-sensors"

7
update.sh Executable file
View File

@@ -0,0 +1,7 @@
#!/bin/bash
git pull
cd client && npm i && npx vite build
cd ../server && npm i
sudo systemctl restart weather-sensors
sudo systemctl restart weather-station