50 Commits
Author SHA1 Message Date
Ian Renton 1651629109 OpenAPI changelist tweaks. #119 2026-08-08 10:01:29 +01:00
Ian Renton ac35a920cf Hellmerge #95 branch into 2.0-pre. #119 2026-08-08 09:52:14 +01:00
Ian Renton 4e7c5a05aa Merge branch '95-send-spots-to-xota' into 2.0-pre
# Conflicts:
#	README.md
#	core/config.py
#	server/handlers/api/addspot.py
#	server/handlers/api/lookups.py
#	server/handlers/api/options.py
#	server/webserver.py
#	spothole.py
#	static/apidocs/openapi.yml
2026-08-08 09:32:27 +01:00
Ian Renton 981cea0866 Merge branch 'main' into 2.0-pre
# Conflicts:
#	README.md
#	core/constants.py
#	data/spot.py
#	templates/status.html
2026-08-08 09:15:04 +01:00
Ian Renton d9ce8db48b Release 1.5 2026-08-08 08:43:43 +01:00
Ian Renton f08ff030e3 Split up docs. Closes #122 2026-08-08 08:42:29 +01:00
Ian Renton 3ab2375a32 Capture comments like JO21sv -> IO70vt. Closes #121 2026-08-08 08:23:49 +01:00
Ian Renton 985646bb94 Improvements to getting lat/lon from spots. Closes #123 2026-08-08 08:19:51 +01:00
Ian Renton 8d28a29f82 Prepare for misc.ianrenton.com going offline 2026-08-08 08:04:59 +01:00
Ian Renton 4f9ec65d9a Prepare for misc.ianrenton.com going offline 2026-08-07 18:46:57 +01:00
Ian Renton 602551330e Prepare for misc.ianrenton.com going offline 2026-08-07 18:46:32 +01:00
Ian Renton f68b244e38 Fix docker compose file in readme 2026-08-07 06:52:15 +01:00
ian 56a29b6203 Update README.md 2026-08-06 06:32:08 +00:00
Ian Renton 7dfcdb00e8 Merge branch 'main' into 2.0-pre
# Conflicts:
#	core/constants.py
#	templates/status.html
2026-08-05 20:34:26 +01:00
Ian Renton 5699627069 Docker config 2026-08-05 20:28:11 +01:00
Ian Renton 66081f32f9 Docker config 2026-08-05 20:24:10 +01:00
Ian Renton 4f8f748d88 Docker config 2026-08-05 20:14:30 +01:00
Ian Renton 62b3414d29 Refactor of caching & data storage part 17 #118 2026-08-04 22:11:34 +01:00
Ian Renton 459d999f57 Refactor of caching & data storage part 16 #118 2026-08-03 22:15:29 +01:00
Ian Renton 27d73c27d6 Refactor of caching & data storage part 15 #118 2026-08-03 19:43:38 +01:00
Ian Renton f82d611b7e Refactor of caching & data storage part 14 #118 2026-08-03 19:25:25 +01:00
Ian Renton 50ab27e4a2 Refactor of caching & data storage part 13 #118 2026-08-03 08:56:34 +01:00
Ian Renton e31b145b8e Refactor of caching & data storage part 12 #118 2026-08-02 21:57:22 +01:00
Ian Renton cee9188538 Refactor of caching & data storage part 11 #118 2026-08-02 12:38:33 +01:00
Ian Renton 2e6d8e4b4a Version bump 2026-08-02 11:41:26 +01:00
Ian Renton c2ecef1003 Release 1.4 2026-08-02 11:40:28 +01:00
Ian Renton 11a236e668 Refactor of caching & data storage part 10 #118 2026-08-02 10:31:31 +01:00
Ian Renton fa6c3c0a55 Merge branch 'main' into 95-send-spots-to-xota
# Conflicts:
#	README.md
#	config-example.yml
#	core/config.py
#	server/handlers/api/addspot.py
#	server/handlers/api/options.py
#	static/js/add-spot.js
#	static/js/bands.js
#	static/js/map.js
2026-08-02 07:47:40 +01:00
Ian Renton 3b5a4efb0b Merge branch 'main' into 95-send-spots-to-xota
# Conflicts:
#	core/constants.py
#	data/spot.py
2026-06-26 08:16:09 +01:00
Ian Renton 59fa6500eb Merge branch 'main' into 95-send-spots-to-xota 2026-06-21 22:08:25 +01:00
Ian Renton 7a34526a91 Merge branch 'main' into 95-send-spots-to-xota 2026-06-21 21:28:20 +01:00
Ian Renton d1c4dd4e4c Merge branch 'main' into 95-send-spots-to-xota
# Conflicts:
#	webassets/apidocs/openapi.yml
2026-06-21 11:12:48 +01:00
Ian Renton 692fa83323 Merge branch 'main' into 95-send-spots-to-xota 2026-06-21 09:36:30 +01:00
Ian Renton 6062211bc7 Merge branch 'main' into 95-send-spots-to-xota
# Conflicts:
#	README.md
#	webassets/apidocs/openapi.yml
2026-06-21 09:03:31 +01:00
Ian Renton ec5984ec35 Updated README.md 2026-06-20 13:39:52 +01:00
Ian Renton 2affe460a5 Merge branch 'main' into 95-send-spots-to-xota 2026-06-20 13:29:00 +01:00
Ian Renton 277e374994 Merge branch 'main' into 95-send-spots-to-xota
# Conflicts:
#	README.md
2026-06-20 12:23:06 +01:00
Ian Renton 8d09484425 Move some of the "add spot" checks from client-side to server-side to avoid duplication and enforce them in the proper place. #95 2026-06-20 10:30:24 +01:00
Ian Renton e08a183d1b Move user credentials into HTTP request headers to prevent them being logged in the server logs 2026-06-20 10:15:35 +01:00
Ian Renton ae17839096 Stop fudging the server-side handling instructions for "add spot" into the spot data structure itself, instead break them out into a new area. This is a breaking change to the API so all API endpoints have been bumped to v2. 2026-06-20 09:57:09 +01:00
Ian Renton 1e42c69b78 Clear up one TODO and update comments on some more 2026-06-20 08:33:00 +01:00
Ian Renton 20966cc7cf IDE inspection fixes and global autoformat 2026-06-20 08:28:11 +01:00
Ian Renton 172a31bb18 Merge branch 'main' into 95-send-spots-to-xota
# Conflicts:
#	README.md
#	server/handlers/api/addspot.py
#	server/handlers/api/options.py
#	spotproviders/tiles.py
#	templates/about.html
#	templates/add_spot.html
#	templates/alerts.html
#	templates/api_only_home.html
#	templates/bands.html
#	templates/base.html
#	templates/conditions.html
#	templates/map.html
#	templates/spots.html
#	templates/status.html
#	webassets/css/style.css
#	webassets/js/add-spot.js
#	webassets/js/geo.js
#	webassets/js/ui-ham.js
#	webassets/js/utils.js
2026-06-19 21:48:10 +01:00
Ian Renton 88f055384d Internalise third-party dependencies
(cherry picked from commit 725eb619b4)
2026-06-18 20:36:46 +01:00
Ian Renton 4408203d55 Fix some IDE warnings
(cherry picked from commit 8fc3cfa56d)
2026-06-18 20:36:21 +01:00
Ian Renton af9f542740 Skip JS integrity checks since jsdelivr docs say they may re-minify sources as necessary, potentially resulting in different checksums
(cherry picked from commit e5b2afd765)
2026-06-18 20:36:03 +01:00
ian b81f5eeb5a Update webassets/js/add-spot.js 2026-06-13 08:24:30 +00:00
Ian Renton fd21e01c9d Implement spotting to Tiles on the Air. #95 2026-06-13 08:17:38 +01:00
Ian Renton 1afb407ca5 First stab at submitting spots upstream. POTA is working, all other providers still to do. #95 2026-06-12 09:14:21 +01:00
Ian Renton 930d5357fe Prevent "TOTA" in cluster comments being flagged as Toilets on the Air, as this is ambiguous 2026-06-12 07:18:46 +01:00
92 changed files with 3969 additions and 1696 deletions
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/.venv
__pycache__
*.pyc
/config.yml
/cache/
.git
.gitignore
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FROM python:3.13-slim
WORKDIR /app
COPY . .
RUN pip install --no-cache-dir -r requirements.txt
EXPOSE 8080
CMD ["python3", "spothole.py"]
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@@ -33,471 +33,17 @@ see [https://spothole.app/apidocs](https://spothole.app/apidocs) for the API det
This is a Progressive Web App, so you can also "install" it to your Android or iOS device by accessing it in Chrome or
Safari respectively, and following the menu-driven process for installing PWAs.
You are more than welcome to use the data and the API that Spothole provides to power your own software. There are many
ways to do this; see below.
## Embedding Spothole in another website
You can embed Spothole's web interface in another website, e.g. for use as part of a ham radio custom dashboard.
URL parameters can be used to trigger an "embedded" mode which hides the headers, footers and settings. In this mode,
you provide configuration for the various filter and display options via additional URL parameters. Any settings that
the user has set for Spothole are ignored. This is so that the embedding site can select, for example, their choice of
dark mode or SIG filters, which will not impact how Spothole appears when the user accesses it directly. Effectively, it
becomes separate to their normal Spothole settings.
Setting `embedded` to true is important for the rest of the settings to be applied; otherwise, the user's defaults will
be used in preference to the URL params.
These are supplied with the URL to the page you want to embed, for example for an embedded version of the band map in
dark mode, use `https://spothole.app/bands?embedded=true&dark-mode=true`. For an embedded version of the main spots/home
page in the system light/dark mode, use `https://spothole.app/?embedded=true`. For dark mode showing 70cm TOTA spots
only, use `https://spothole.app/?embedded=true&dark-mode=true&sig=TOTA&band=70cm`. Providing no URL params causes the
page to be loaded in the normal way it would when accessed directly in the user's browser.
The supported parameters are as follows. Generally these match the equivalent parameters in the real Spothole API, where
a mapping exists.
| Name | Allowed Values | Default | Example | Description |
|------------------|-------------------------|---------|-------------------------|-----------------------------------------------------------------------------------------------------------------------------------------------------------------------|
| `embedded` | `true`, `false` | `false` | `?embedded=true` | Enables embedded mode. |
| `color-scheme` | `light`, `dark`, `auto` | `auto` | `?color-scheme=dark` | Forces light or dark mode in preference to the operating system default. |
| `time-zone` | `UTC`, `local` | `UTC` | `?time-zone=local` | Sets times to be in UTC or local time. |
| `limit` | 10, 25, 50, 100 | 50 | `?limit=50` | Sets the number of spots that will be displayed on the main spots page |
| `limit` | 25, 50, 100, 200, 500 | 100 | `?limit=100` | Sets the number of alerts that will be displayed on the alerts page |
| `max_age` | 300, 600, 1800, 3600 | 1800 | `?max_age=1800` | Sets the maximum age of spots displayed on the map and bands pages, in seconds. |
| `band` | Comma-separated list | (all) | `?band=20m,40m` | Sets the list of bands that will be shown on the spots, bands and map pages. Available options match the labels of the buttons in the standard web interface. |
| `sig` | Comma-separated list | (all) | `?sig=POTA,SOTA,NO_SIG` | Sets the list of SIGs that will be shown on the spots, bands and map pages. Available options match the labels of the buttons in the standard web interface. |
| `source` | Comma-separated list | (all) | `?source=Cluster` | Sets the list of sources that will be shown on any spot or alert pages. Available options match the labels of the buttons in the standard web interface. |
| `mode_type` | Comma-separated list | (all) | `?mode_type=PHONE,CW` | Sets the list of mode types that will be shown on the spots, bands and map pages. Available options match the labels of the buttons in the standard web interface. |
| `dx_continent` | Comma-separated list | (all) | `?dx_continent=NA,SA` | Sets the list of DX Continents that will be shown on any spot or alert pages. Available options match the labels of the buttons in the standard web interface. |
| `de_continent` | Comma-separated list | (all) | `?de_continent=EU` | Sets the list of DE Continents that will be shown on the spots, bands and map pages. Available options match the labels of the buttons in the standard web interface. |
| `map-center-lat` | Numeric (decimal) | (auto) | `?map-center-lat=51.5` | Sets the initial latitude of the map centre on the map page. If omitted, the map auto-fits to the loaded spots. |
| `map-center-lon` | Numeric (decimal) | (auto) | `?map-center-lon=-0.1` | Sets the initial longitude of the map centre on the map page. If omitted, the map auto-fits to the loaded spots. |
| `map-zoom` | Numeric (integer) | (auto) | `?map-zoom=6` | Sets the initial zoom level of the map on the map page. If omitted, the map auto-fits to the loaded spots. |
See the comment at the end of the next section regarding reliability and uptime of the "main" server.
## Writing your own client
One of the key strengths of Spothole is that the API is well-defined and open to anyone to use. This means you can build
your own software that uses data from Spothole.
As well as the main API endpoints to fetch spots and alerts, with various possible query parameters, there are also
Server-Sent Events (SSE) API endpoints to receive a live feed, plus various utility lookup endpoints for things like
callsign and park data.
Various approaches exist to writing your own client, but in general:
* Refer to the API docs. These are built on an OpenAPI definition file (`/static/apidocs/openapi.yml`), which you can
automatically use to generate a client skeleton using various software.
* Call the main "spots" or "alerts" API endpoints to get the data you want. For example, your app could call
`https://spothole.app/api/v1/spots` once every few minutes. Apply filters if necessary.
* Call the "options" API to get an idea of which bands, modes etc. the server knows about. You might want to do that
first before calling the spots/alerts APIs, to allow you to populate your filters correctly.
* Refer to the provided HTML/JS interface for a reference on different approaches. For example, the "alerts"/"upcoming"
page simply query the main spot API on a timer, whereas the spots, map and bands pages combine this approach with
using the Server-Sent Events (SSE) endpoint to update live.
* Let me know if you get stuck, I'm happy to help.
Please don't hammer the API with an unnecessarily high request rate. For example, Spothole only queries the POTA API
once every two minutes, so if your client is interested in POTA data there's no need to poll Spothole any more often
than that.
If you absolutely must be informed within seconds of a spot arriving in Spothole, please use the SSE endpoints instead,
e.g. `https://spothole.app/api/v1/spots/stream`.
If you want to handle different types of spot or alert differently within your client, please consider making a single
request to the Spothole API to retrieve all the data, then filtering on your side. For example, call
`https://spothole.app/api/v1/spots?sig=POTA,SOTA` rather than making two separate calls to
`https://spothole.app/api/v1/spots?sig=POTA` and `https://spothole.app/api/v1/spots?sig=SOTA`.
Remember, here at Spothole Inc. we offer an industry-standard "five nines" uptime on our server, with our own unique
twist: we don't tell you which side of the decimal point the nines start! (Translation: This is a hobby project.
`spothole.app` runs on the same server as my blog and other stuff. It might go down without warning. By all means base
your own project on data from the main server if you like, but if you want any control over reliability and downtime,
please run your own copy instead.)
## Running your own copy
If you want to run a copy of Spothole with different configuration settings than the main instance, you can download it
and run it on your own local machine or server.
You will require Python version 3.8 or later. If you encounter an error about `gdal-config` during the following
process, you will also need `libgdal-dev` installed.
To download and set up Spothole on a Debian server, run the following commands. Other operating systems will likely be
similar.
```bash
git clone ssh://git@git.ianrenton.com/ian/spothole.git
cd spothole
python3 -m venv ./.venv
source .venv/bin/activate
pip install -r requirements.txt
deactivate
cp config-example.yml config.yml
```
Then edit `config.yml` in your text editor of choice to set up the software as you like it. Mostly, this will involve
enabling or disabling the various providers of spot, alert and other data.
By default, all outdoor programme providers are enabled, as is one cluster node and the NG3K DXpedition data. The RBN
spot providers are turned off by default due to the volume of traffic from CW/RTTY/FT8 skimmers, and the APRS and Packet
spot providers are off by default on the assumption that Spothole users want a spot with a human at the other end of it,
but all can be easily re-enabled.
Other parameters you will want to update include the base URL to your instance, and whether you want to serve a full
web-based DX cluster interface or just the API endpoints for client software to use.
`config.yml` has an entry for a Clublog API key. If provided, this will allow Spothole to retrieve some more information
about DX spots. The software will work just fine without it, but you may find a few country flags etc. are less accurate
or missing. Clublog API keys are free, but you'll need to get your own by submitting a helpdesk ticket and explaining
what you'll use it for. The admin team are happy with the rate of requests made by my Spothole server, so unless you
change the source code of yours to radically increase the rate of querying Clublog, I'm sure they will be fine with your
server too.
Once you're happy with the content of `config.yml`, you can proceed to running the software.
To run the software this time and any future times you want to run it directly from the command line:
```bash
source .venv/bin/activate
python3 spothole.py
```
The software can take a few seconds to start up, mostly because it is downloading an updated file to match callsigns to
countries. This is normal, don't panic!
If you see some errors on startup, check your configuration, e.g. in case you have specified a port for the web server
that is already in use by something else.
### Multiple cluster nodes with different settings
Dan, S50U has written in with his Spothole cluster settings. He is using a cluster node which provides RBN spots, and
uses different SSIDs on his callsign to get different settings when logged into the same cluster node. For example:
```
-
class: "DXCluster"
name: "S50CLX"
enabled: true
host: "s50clx.si"
port: 41112
login_prompt: "login: "
login_callsign: "callsign-10"
```
Telnet to DXSpider and log in with "callsign-10" and execute the following commands:
`CLEAR/SPOTS ALL` (delete all previous filters)<br/>
`UNSET/ANN` (stop announce messages)<br/>
`UNSET/WCY` (stop wcy messages)<br/>
`UNSET/WWV` (stop wwv messages)<br/>
`SET/DX` (enable human DX spots)
```
-
class: "DXCluster"
name: "RBN CW"
enabled: true
host: "s50clx.si"
port: 41112
login_prompt: "login: "
login_callsign: "callsign-11"
allow_rbn_spots: true
enabled-by-default-in-web-ui: false
```
Telnet to DXSpider and log in with "callsign-11" and execute the following commands:
`CLEAR/SPOTS ALL` (delete all previous filters)<br/>
`UNSET/ANN` (stop announce messages)<br/>
`UNSET/WCY` (stop wcy messages)<br/>
`UNSET/WWV` (stop wwv messages)<br/>
`UNSET/DX` (stop human DX spots)<br/>
`SET/SKIMMER CW` (enable CW RBN spots)
```
-
class: "DXCluster"
name: "RBN RTTY"
enabled: true
host: "s50clx.si"
port: 41112
login_prompt: "login: "
login_callsign: "callsign-12"
allow_rbn_spots: true
enabled-by-default-in-web-ui: false
```
Telnet to DXSpider and log in with "callsign-12" and execute the following commands:
`CLEAR/SPOTS ALL` (delete all previous filters)<br/>
`UNSET/ANN` (stop announce messages)<br/>
`UNSET/WCY` (stop wcy messages)<br/>
`UNSET/WWV` (stop wwv messages)<br/>
`UNSET/DX` (stop human DX spots)<br/>
`SET/SKIMMER RTTY` (enable RTTY RBN spots)
```
-
class: "DXCluster"
name: "RBN FT4/8"
enabled: true
host: "s50clx.si"
port: 41112
login_prompt: "login: "
login_callsign: "callsign-13"
allow_rbn_spots: true
enabled-by-default-in-web-ui: false
```
Telnet to DXSpider and log in with "callsign-13" and execute the following commands:
`CLEAR/SPOTS ALL` (delete all previous filters)<br/>
`UNSET/ANN` (stop announce messages)<br/>
`UNSET/WCY` (stop wcy messages)<br/>
`UNSET/WWV` (stop wwv messages)<br/>
`UNSET/DX` (stop human DX spots)<br/>
`SET/SKIMMER FT` (enable FT RBN spots)
For each callsign-SSID, we also specify our basic information with commands:
`SET/NAME Spothole10`, Spothole11... etc.<br/>
`SET/QTH Cerkno`<br/>
`SET/QRA JN66XD`<br/>
`SET/HOME S50CLX`
### systemd configuration
If you want Spothole to run automatically on startup on a Linux distribution that uses `systemd`, follow the
instructions here. For distros that don't use `systemd`, or Windows/OSX/etc., you can find generic instructions for your
OS online.
Create a file at `/etc/systemd/system/spothole.service`. Give it the following content, adjusting for the user you want
to run it as and the directory in which you have installed it:
```
[Unit]
Description=Spothole
After=syslog.target network.target
[Service]
Type=simple
User=spothole
WorkingDirectory=/home/spothole/spothole
ExecStart=/home/spothole/spothole/.venv/bin/python /home/spothole/spothole/spothole.py --serve-in-foreground
Restart=on-abort
[Install]
WantedBy=multi-user.target
```
Run the following:
```bash
sudo systemctl daemon-reload
sudo systemctl enable spothole
sudo systemctl start spothole
```
Check the service has started up correctly with `sudo journalctl -u spothole -f`.
### nginx Reverse Proxy configuration
Web servers generally serve their pages from port 80. However, it's best not to serve Spothole's web interface directly
on port 80, as that requires root privileges on a Linux system. It also and prevents us using HTTPS to serve a secure
site, since Spothole itself doesn't directly support acting as an HTTPS server. The normal solution to this is to use a
"reverse proxy" setup, where a general web server handles HTTP and HTTP requests (to port 80 & 443 respectively), then
passes on the request to the back-end application (in this case Spothole). nginx is a common choice for this general web
server.
To set up nginx as a reverse proxy that sits in front of Spothole, first ensure it's installed e.g.
`sudo apt install nginx`, and enabled e.g. `sudo systemd enable nginx`.
Create a file at `/etc/nginx/sites-available/` called `spothole`. Give it the following contents, replacing
`spothole.app` with the domain name on which you want to run Spothole. If you changed the port on which Spothole runs,
update that on the "proxy_pass" line, and if you installed Spothole somewhere other than `/home/spothole/spothole`,
adjust the alias location for serving static files.
(The latter section, configuring the nginx server to serve static files directly, improves efficiency because it saves
Spothole itself from serving JS, CSS etc. files. If you can't do this for some reason, e.g. your nginx and spothole are
on different computers, you can omit the `location /static/ {}` block.)
```nginx
server {
server_name spothole.app;
# Global proxy settings
proxy_http_version 1.1;
proxy_set_header Connection "";
proxy_connect_timeout 10s;
proxy_buffering on;
# Pass on IP address and host information to Spothole, in case logging this information is required
proxy_set_header X-Real-IP $remote_addr;
proxy_set_header X-Forwarded-For $proxy_add_x_forwarded_for;
proxy_set_header Host $http_host;
proxy_set_header X-Forwarded-Proto $scheme;
# Wellknown area for Lets Encrypt
location /.well-known/ {
alias /var/www/html/.well-known/;
}
# Load static assets directly from the Spothole static directory
location /static/ {
alias /home/spothole/spothole/static/;
expires 1h;
add_header Cache-Control "public, max-age=3600, must-revalidate";
}
# SSE endpoints
location ~ ^/api/v1/(spots|alerts)/stream/? {
proxy_pass http://127.0.0.1:8080;
# Remove buffering, remove caching, add suitable timeouts for SSE API calls
proxy_buffering off;
proxy_cache off;
proxy_read_timeout 24h;
proxy_send_timeout 24h;
proxy_set_header X-Accel-Buffering no;
add_header Cache-Control no-store always;
# Allow cross-origin requests to API
proxy_hide_header Access-Control-Allow-Origin;
add_header Access-Control-Allow-Origin * always;
}
# Other API endpoints
location /api/ {
proxy_pass http://127.0.0.1:8080;
# Remove buffering, remove caching, add suitable timeouts for API calls
proxy_buffering off;
proxy_cache off;
proxy_read_timeout 30s;
add_header Cache-Control no-store always;
# Allow cross-origin requests to API
proxy_hide_header Access-Control-Allow-Origin;
add_header Access-Control-Allow-Origin * always;
}
# Templated pages
location / {
proxy_pass http://127.0.0.1:8080;
proxy_read_timeout 30s;
add_header Cache-Control "no-cache, must-revalidate" always;
}
}
```
One further change you might want to make to the file above is the `add_header Access-Control-Allow-Origin` statements.
These are what's used on my own Spothole server to make sure that other third-party web-based software can get the data
from my instance, and applies to any endpoint underneath `/api`. If you want *your* Spothole instance to be set up the
same way, so that others can write software in JavaScript that can access it, leave this intact. But if you want your
Spothole instance to only be usable by scripts running on the web server you write, you can remove these lines. (Note
that this doesn't stop other people writing *non-web-based* software that accesses your Spothole API&mdash;the
enforcement of cross-origin headers only happens within the user's browser. If you need to lock your instance down so
that no-one else can access it with *any* software, that's an aspect of nginx or firewall config that you will need to
find help with elsewhere.)
Now, make a symbolic link to enable the site:
```bash
cd /etc/nginx/sites-enabled
sudo ln -sf ../sites-available/spothole
```
Test that your nginx config isn't broken using `nginx -t`. If it works, restart nginx with
`sudo systemctl restart nginx`.
If you haven't already done so, set up a DNS entry to make sure requests for your domain name end up at the server
that's running Spothole.
You should now be able to access the web interface by going to the domain from your browser.
Once that's working, [install certbot](https://certbot.eff.org/instructions?ws=nginx&os=snap) onto your server. Run it
as root, and when prompted pick your domain name from the list. After a few seconds, it should successfully provision a
certificate and modify your nginx config files automatically. You should then be able to access the site via HTTPS.
## Modifying the source code
Spothole is Public Domain licenced, so you can grab the source code and start modifying it for your own needs.
Contributions of code back to the main repository are encouraged, but completely optional.
### Code structure
To navigate your way around the source code, this list may help.
*Python back-end code*
* `/core` - Core classes and utilities
* `/data` - Data storage classes
* `/providers/spot` - Classes providing spots by accessing the APIs of other services
* `/providers/alert` - Classes providing alerts by accessing the APIs of other services
* `/providers/solarconditions` - Classes providing solar and propagation by accessing the APIs of other services
* `/providers/staticdata` - Classes providing static lookup data by accessing bundled data files or the APIs of other
services
* `/providers/sigrefdata` - Classes providing SIG reference lookup data by accessing bundled data files or the APIs of
other services
* `/server` - Classes for running Spothole's own web server
* `spothole.py` - Main application script
*Templates*
* `/templates` - Templates used for constructing Spothole's user-targeted HTML pages
*HTML/JS/CSS front-end code*
* `/static` - Root for static files served by the web server. These are all served from a path starting `/static/`.
* `/static/apidocs` - Contains the OpenAPI spec (`openapi.yml`)
* `/static/audio` - Audio files used by the web front-end
* `/static/css` - CSS files used by the web front-end
* `/static/img` - image files used by the web front-end
* `/static/js` - JavaScript used by the web front-end
* `/static/vendor` - Third-party libraries (CSS, JS, fonts and images)
*Miscellaneous*
* `/` - pip `requirements.txt`, config, README, etc.
* `/images` - Image sources
* `/datafiles` - Local data files, used by some providers when the data will never change and/or is not easily available
online in a format Spothole can handle
* `/cache` - Directory where Spothole stores all the data it uses that should be persisted to disk. Created on first
run.
### Extending the server
Spothole is designed to be easily extensible. If you want to write your own spot provider, for example, simply add a
module to the `providers.spot` package containing your class. (Currently, in order to be loaded correctly, the module
(file) name should be the same as the class name, but lower case.)
Your class should extend "SpotProvider"; if it operates by polling an HTTP Server on a timer, it can instead extend "
HTTPSpotProvider" where some of the work is done for you.
The class will need to implement a constructor that takes in the `provider_config` and provides it to the superclass
constructor, while also taking any other config parameters it needs.
If you're extending the base `SpotProvider` class, you will need to implement `start()` and `stop()` methods that start
and stop a separate thread which handles the provider's processing needs. The thread should call `submit()` or
`submit_batch()` when it has one or more spots to report.
If you're extending the `HTTPSpotProvider` class, you will need to provide a URI to query and an interval to the
superclass constructor. You'll then need to implement the `http_response_to_spots()` method which is called when new
data is retrieved. Your implementation should then call `submit()` or `submit_batch()` when it has one or more spots to
report.
When constructing spots, use the comments in the Spot class and the existing implementations as an example. All
parameters are optional, but you will at least want to provide a `time` (which must be timezone-aware) and a `dx_call`.
Finally, simply add the appropriate config to the `spot_providers` section of `config.yml`, and your provider should be
instantiated on startup.
The same approach as above is also used for alerts, and other types of providers. Give me a shout if you need any
advice.
You are more than welcome to use the data and the API that Spothole provides to power your own software, to run your
own Spothole server, or to modify it in any way. More details can be found in the following sections:
* [Embedding Spothole in another website](docs/embedding.md)
* [Writing your own client](docs/clients.md)
* [Running your own copy](docs/running.md)
* [nginx reverse proxy configuration](docs/nginx.md)
* [systemd service file](docs/systemd.md)
* [Running in Docker](docs/docker.md)
* [Use of multiple cluster logins](docs/multicluster.md)
* [Modifying the source code](docs/modifying.md)
## Thanks
@@ -518,8 +64,11 @@ This project would not have been possible without these libraries, so many thank
### Third Party Libraries
A number of third-party libraries are self-hosted in the `/static/vendor/` directory. These files are subject to their
own licences and are not covered by the overall licence declared in the `LICENSE` file.
A number of third-party libraries are self-hosted in the `/static/vendor/` directory. These files are subject to
their own licences and are not covered by the overall licence declared in the `LICENSE` file.
A number of third-party libraries are self-hosted in the `/webassets/vendor/` directory. These files are subject to
their own licences and are not covered by the overall licence declared in the `LICENSE` file.
Particular thanks go to country-files.com for providing country lookup data for amateur radio, to K0SWE
for [this JSON-formatted DXCC data](https://github.com/k0swe/dxcc-json/), and to the developers of `pyhamtools` for
+71 -18
View File
@@ -166,7 +166,23 @@ alert-providers:
enabled: true
# Static reference data providers to use. This allows Spothole to download data such as mapping between callsign
# Solar condition providers to use. These poll external APIs for solar propagation data (SFI, A/K indices, band
# conditions, etc.) and make it available via the /api/v2/solar endpoint.
solar-condition-providers:
- class: "HamQSL"
enabled: true
- class: "NOAA3dayForecast"
enabled: true
- class: "GIROIonosonde"
enabled: true
- class: "KC2GProp"
enabled: true
# Static reference data providers to use. These allow Spothole to download data such as mapping between callsign
# prefixes and DXCC entities.
static-data-providers:
- class: "K0SWE"
@@ -179,7 +195,7 @@ static-data-providers:
enabled: true
# SIG reference data providers to use. This allows Spothole to download, for example, the WWFF directory that maps WWFF
# SIG reference data providers to use. These allow Spothole to download, for example, the WWFF directory that maps WWFF
# park IDs to their name and location.
sig-ref-data-providers:
- class: "POTA"
@@ -233,33 +249,70 @@ sig-ref-data-providers:
- class: "Toilets"
enabled: true
# Solar condition providers to use. These poll external APIs for solar propagation data (SFI, A/K indices, band
# conditions, etc.) and make it available via the /api/v1/solar endpoint.
solar-condition-providers:
- class: "HamQSL"
# Callsign data providers to use. These allow Spothole to provide information about callsigns, either from static
# lookups or from web-based services such as QRZ. Note that use of QRZ and HamQTH is *on behalf of the user*, and
# requires the user to enter their credentials into the website UI or provide them in an API call. Spothole will not
# look up all calls via QRZ/HamQTH using the server owner's credentials, as this is against their usage policy.
callsign-data-providers:
- class: "QRZ"
enabled: true
# Callsign data providers can often provide conflicting data, e.g. a home location from QRZ vs the centre of the
# DXCC entity from a country file lookup. The priority flag sets which source "wins" in the event of conflict.
# Lower numbers take priority over higher numbers. Generally then, QRZ/HamQTH should have low numbers as they are
# likely to have the most accurate data.
priority: 1
# No server-side credentials for QRZ. Users must provide their own as per QRZ policy.
- class: "HamQTH"
enabled: true
priority: 2
# No server-side credentials for HamQTH. Users must provide their own.
- class: "ClublogAPI"
# Querying the Clublog API directly doesn't provide any more data than the XML version, it just provides slightly
# more up-to-date information in the rare case that the prefix data changes, at a significant cost of looking up
# every callsign via an API call. Normally left disabled but it exists as an option.
enabled: false
priority: 3
# API key for Clublog to look up information. Required in order to enable this provider. Unlike QRZ and HamQTH,
# Clublog uses an API key issued to Spothole, not to the end user.
api-key: ""
- class: "ClublogXML"
enabled: true
priority: 4
# API key for Clublog to look up information. Required in order to enable this provider. You will need to request
# one via their helpdesk portal if you want to use callsign lookups from Clublog.
api-key: ""
- class: "CountryFiles"
priority: 5
enabled: true
- class: "NOAA3dayForecast"
enabled: true
- class: "GIROIonosonde"
enabled: true
- class: "KC2GProp"
enabled: true
# Maximum time to keep spots and alerts in the system before deleting them. By default, one hour for spots and one week
# for alerts.
max-spot-age-sec: 3600
max-alert-age-sec: 604800
# API key for Clublog to look up information. Optional. You sill need to request one via their helpdesk portal if you
# want to use callsign lookups from Clublog.
clublog-api-key: ""
# Allow submitting spots to the Spothole API?
allow-spotting: true
# Allow upstream submission of spots to external providers (POTA, SOTA, etc.) via the API?
# Requires allow-spotting to also be true. Set to false to only accept spots into the local
# Spothole database, without forwarding them to any external service.
allow-upstream-spotting: true
# Google reCAPTCHA v2 keys for CAPTCHA protection on upstream spot submission. Both keys must be set to enable CAPTCHA.
# Leave both empty to disable CAPTCHA (e.g. for a private/trusted server) or if allow-spotting is false, in which case
# they will do nothing. Note that with CAPTCHA enabled, this will prevent third-party clients submitting spots through
# Spothole unless the clients are web-based, use the same site key, have their domains enabled in your reCAPTCHA config,
# and of course their user solves the CAPTCHA.
# You can sign up for reCAPTCHA at https://www.google.com/recaptcha/
recaptcha-site-key: ""
recaptcha-secret-key: ""
# Log web requests? Useful to see what your users are requesting in terms of pages and API endpoints, but will fill up
# your log quickly on a popular server.
log-web-requests: false
+30 -632
View File
@@ -1,632 +1,30 @@
import gzip
import logging
import urllib.parse
from datetime import timedelta
import xmltodict
from diskcache import Cache
from pyhamtools import LookupLib, Callinfo, callinfo
from pyhamtools.exceptions import APIKeyMissingError
from pyhamtools.locator import latlong_to_locator
from requests.exceptions import ConnectionError, ReadTimeout, ConnectTimeout
from requests_cache import CachedSession
from core.config import config
from core.constants import HTTP_HEADERS, HAMQTH_PRG
from core.data_store import DATA_STORE
from core.url_data_cache import URLDataCache
# QRZ XML field names differ from pyhamtools' normalised names; map them here.
_QRZ_FIELD_MAP = {
"lat": "latitude",
"lon": "longitude",
"grid": "locator",
"ituzone": "ituz",
"cqzone": "cqz",
}
_QRZ_INT_FIELDS = {"adif", "cqz", "ituz"}
_QRZ_FLOAT_FIELDS = {"latitude", "longitude"}
_URL_DATA_CACHE = URLDataCache("callsign_lookup")
def _normalize_qrz_data(raw):
data = {}
for k, v in raw.items():
if v is None:
continue
mapped_key = _QRZ_FIELD_MAP.get(k, k)
if mapped_key in _QRZ_INT_FIELDS:
try:
v = int(v)
except (ValueError, TypeError):
pass
elif mapped_key in _QRZ_FLOAT_FIELDS:
try:
v = float(v)
except (ValueError, TypeError):
pass
data[mapped_key] = v
return data
class LookupHelper:
"""Singleton class that provides lookup functionality."""
def __init__(self):
"""Create the lookup helper. Note that nothing actually happens until the start() method is called, and that all
lookup methods will fail if start() has not yet been called. This therefore needs starting before any spot or
alert handlers are created."""
self._clublog_callsign_data_cache = None
self._lookup_lib_clublog_xml = None
self._clublog_xml_available = None
self._lookup_lib_clublog_api = None
self._clublog_xml_download_location = None
self._clublog_api_available = None
self._clublog_cty_xml_cache = None
self._clublog_api_key = None
self._qrz_callsign_data_cache = None
self._qrz_base_url = "https://xmldata.qrz.com/xml/current/"
# QRZ session keys expire after an hour; cache the login response for 55 minutes.
self._qrz_session_cache = CachedSession("cache/qrz_session_cache",
expire_after=timedelta(minutes=55))
self._hamqth_callsign_data_cache = None
self._hamqth_base_url = "https://www.hamqth.com/xml.php"
# HamQTH session keys expire after an hour. Rather than working out how much time has passed manually, we cheat
# and cache the HTTP response for 55 minutes, so when the login URL is queried within 55 minutes of the previous
# time, you just get the cached response.
self._hamqth_session_lookup_cache = CachedSession("cache/hamqth_session_cache",
expire_after=timedelta(minutes=55))
self._call_info_basic = None
self._lookup_lib_basic = None
self._country_files_cty_plist_download_location = None
self._dxcc_json_download_location = None
def start(self):
# Lookup helpers from pyhamtools. We use five (!) of these. The simplest is country-files.com, which downloads
# the data once on startup, and requires no login/key, but does not have the best coverage.
# If the user provides login details/API keys, we also set up helpers for QRZ.com, HamQTH, Clublog (live API
# request), and Clublog (XML download). The lookup functions iterate through these in a sensible order, looking
# for suitable data.
self._country_files_cty_plist_download_location = "cache/cty.plist"
success = self._download_country_files_cty_plist()
if success:
self._lookup_lib_basic = LookupLib(lookuptype="countryfile",
filename=self._country_files_cty_plist_download_location)
else:
self._lookup_lib_basic = LookupLib(lookuptype="countryfile")
self._call_info_basic = Callinfo(self._lookup_lib_basic)
self._qrz_callsign_data_cache = Cache('cache/qrz_callsign_lookup_cache')
self._hamqth_callsign_data_cache = Cache('cache/hamqth_callsign_lookup_cache')
self._clublog_api_key = str(config["clublog-api-key"])
self._clublog_cty_xml_cache = CachedSession("cache/clublog_cty_xml_cache", expire_after=timedelta(days=10))
self._clublog_api_available = self._clublog_api_key != ""
self._clublog_xml_download_location = "cache/cty.xml"
if self._clublog_api_available:
self._lookup_lib_clublog_api = LookupLib(lookuptype="clublogapi", apikey=self._clublog_api_key)
success = self._download_clublog_ctyxml()
self._clublog_xml_available = success
if success:
self._lookup_lib_clublog_xml = LookupLib(lookuptype="clublogxml",
filename=self._clublog_xml_download_location)
self._clublog_callsign_data_cache = Cache('cache/clublog_callsign_lookup_cache')
def _download_country_files_cty_plist(self):
"""Download the cty.plist file from country-files.com on first startup. The pyhamtools lib can actually download and use
this itself, but it's occasionally offline which causes it to throw an error. By downloading it separately, we can
catch errors and handle them, falling back to a previous copy of the file in the cache, and we can use the
requests_cache library to prevent re-downloading too quickly if the software keeps restarting."""
try:
logging.info("Downloading Country-files.com cty.plist...")
response = _URL_DATA_CACHE.get("https://www.country-files.com/cty/cty.plist",
headers=HTTP_HEADERS)
if response.ok:
with open(self._country_files_cty_plist_download_location, "w") as f:
f.write(response.text)
f.flush()
return True
else:
logging.warning(f"HTTP {response.status_code} when downloading Country-files.com cty.plist.")
return False
except ConnectionError:
logging.warning(f"Connection error when downloading Clublog cty.xml.")
except (ConnectTimeout, ReadTimeout):
logging.warning(f"Timeout when downloading Clublog cty.xml.")
except Exception as e:
logging.error("Exception when downloading Clublog cty.xml", e)
return False
def _download_clublog_ctyxml(self):
"""Download the cty.xml (gzipped) file from Clublog on first startup, so we can use it in preference to querying the
database live if possible."""
try:
logging.info("Downloading Clublog cty.xml.gz...")
response = self._clublog_cty_xml_cache.get("https://cdn.clublog.org/cty.php?api=" + self._clublog_api_key,
headers=HTTP_HEADERS)
logging.info("Caching Clublog cty.xml.gz...")
open(self._clublog_xml_download_location + ".gz", 'wb').write(response.content)
with gzip.open(self._clublog_xml_download_location + ".gz", "rb") as uncompressed:
file_content = uncompressed.read()
assert isinstance(file_content, bytes)
logging.info("Caching Clublog cty.xml...")
with open(self._clublog_xml_download_location, "wb") as f:
f.write(file_content)
f.flush()
return True
except Exception as e:
logging.error("Exception when downloading Clublog cty.xml", e)
return False
def infer_country_from_callsign(self, call, credentials=None):
"""Infer a country name from a callsign"""
try:
# Start with the basic country-files.com-based decoder.
country = self._call_info_basic.get_country_name(call)
except (KeyError, ValueError):
country = None
# Couldn't get anything from basic call info database, try QRZ.com
if not country:
qrz_data = self._get_qrz_data_for_callsign(call, credentials)
if qrz_data and "country" in qrz_data:
country = qrz_data["country"]
# Couldn't get anything from QRZ.com database, try HamQTH
if not country:
hamqth_data = self._get_hamqth_data_for_callsign(call, credentials)
if hamqth_data and "country" in hamqth_data:
country = hamqth_data["country"]
# Couldn't get anything from HamQTH database, try Clublog data
if not country:
clublog_data = self._get_clublog_xml_data_for_callsign(call)
if clublog_data and "Name" in clublog_data:
country = clublog_data["Name"]
if not country:
clublog_data = self._get_clublog_api_data_for_callsign(call)
if clublog_data and "Name" in clublog_data:
country = clublog_data["Name"]
# Couldn't get anything from Clublog database, try DXCC data
if not country:
dxcc_data = self._get_dxcc_data_for_callsign(call)
if dxcc_data and "name" in dxcc_data:
country = dxcc_data["name"]
return country
def infer_dxcc_id_from_callsign(self, call, credentials=None):
"""Infer a DXCC ID from a callsign"""
try:
# Start with the basic country-files.com-based decoder.
dxcc = self._call_info_basic.get_adif_id(call)
except (KeyError, ValueError):
dxcc = None
# Couldn't get anything from basic call info database, try QRZ.com
if not dxcc:
qrz_data = self._get_qrz_data_for_callsign(call, credentials)
if qrz_data and "adif" in qrz_data:
dxcc = qrz_data["adif"]
# Couldn't get anything from QRZ.com database, try HamQTH
if not dxcc:
hamqth_data = self._get_hamqth_data_for_callsign(call, credentials)
if hamqth_data and "adif" in hamqth_data:
dxcc = hamqth_data["adif"]
# Couldn't get anything from HamQTH database, try Clublog data
if not dxcc:
clublog_data = self._get_clublog_xml_data_for_callsign(call)
if clublog_data and "DXCC" in clublog_data:
dxcc = clublog_data["DXCC"]
if not dxcc:
clublog_data = self._get_clublog_api_data_for_callsign(call)
if clublog_data and "DXCC" in clublog_data:
dxcc = clublog_data["DXCC"]
# Couldn't get anything from Clublog database, try DXCC data
if not dxcc:
dxcc_data = self._get_dxcc_data_for_callsign(call)
if dxcc_data and "entityCode" in dxcc_data:
dxcc = dxcc_data["entityCode"]
return dxcc
def infer_continent_from_callsign(self, call, credentials=None):
"""Infer a continent shortcode from a callsign"""
try:
# Start with the basic country-files.com-based decoder.
continent = self._call_info_basic.get_continent(call)
except (KeyError, ValueError):
continent = None
# Couldn't get anything from basic call info database, try HamQTH
if not continent:
hamqth_data = self._get_hamqth_data_for_callsign(call, credentials)
if hamqth_data and "continent" in hamqth_data:
continent = hamqth_data["continent"]
# Couldn't get anything from HamQTH database, try Clublog data
if not continent:
clublog_data = self._get_clublog_xml_data_for_callsign(call)
if clublog_data and "Continent" in clublog_data:
continent = clublog_data["Continent"]
if not continent:
clublog_data = self._get_clublog_api_data_for_callsign(call)
if clublog_data and "Continent" in clublog_data:
continent = clublog_data["Continent"]
# Couldn't get anything from Clublog database, try DXCC data
if not continent:
dxcc_data = self._get_dxcc_data_for_callsign(call)
# Some DXCCs are in two continents, if so don't use the continent data as we can't be sure
if dxcc_data and "continent" in dxcc_data and len(dxcc_data["continent"]) == 1:
continent = dxcc_data["continent"][0]
return continent
def infer_cq_zone_from_callsign(self, call, credentials=None):
"""Infer a CQ zone from a callsign"""
try:
# Start with the basic country-files.com-based decoder.
cqz = self._call_info_basic.get_cqz(call)
except (KeyError, ValueError):
cqz = None
# Couldn't get anything from basic call info database, try QRZ.com
if not cqz:
qrz_data = self._get_qrz_data_for_callsign(call, credentials)
if qrz_data and "cqz" in qrz_data:
cqz = qrz_data["cqz"]
# Couldn't get anything from QRZ.com database, try HamQTH
if not cqz:
hamqth_data = self._get_hamqth_data_for_callsign(call, credentials)
if hamqth_data and "cq" in hamqth_data:
cqz = hamqth_data["cq"]
# Couldn't get anything from HamQTH database, try Clublog data
if not cqz:
clublog_data = self._get_clublog_xml_data_for_callsign(call)
if clublog_data and "CQZ" in clublog_data:
cqz = clublog_data["CQZ"]
if not cqz:
clublog_data = self._get_clublog_api_data_for_callsign(call)
if clublog_data and "CQZ" in clublog_data:
cqz = clublog_data["CQZ"]
# Couldn't get anything from Clublog database, try DXCC data
if not cqz:
dxcc_data = self._get_dxcc_data_for_callsign(call)
# Some DXCCs are in multiple zones, if so don't use the zone data as we can't be sure
if dxcc_data and "cq" in dxcc_data and len(dxcc_data["cq"]) == 1:
cqz = dxcc_data["cq"][0]
return cqz
def infer_itu_zone_from_callsign(self, call, credentials=None):
"""Infer a ITU zone from a callsign"""
try:
# Start with the basic country-files.com-based decoder.
ituz = self._call_info_basic.get_ituz(call)
except (KeyError, ValueError):
ituz = None
# Couldn't get anything from basic call info database, try QRZ.com
if not ituz:
qrz_data = self._get_qrz_data_for_callsign(call, credentials)
if qrz_data and "ituz" in qrz_data:
ituz = qrz_data["ituz"]
# Couldn't get anything from QRZ.com database, try HamQTH
if not ituz:
hamqth_data = self._get_hamqth_data_for_callsign(call, credentials)
if hamqth_data and "itu" in hamqth_data:
ituz = hamqth_data["itu"]
# Couldn't get anything from HamQTH database, Clublog doesn't provide this, so try DXCC data
if not ituz:
dxcc_data = self._get_dxcc_data_for_callsign(call)
# Some DXCCs are in multiple zones, if so don't use the zone data as we can't be sure
if dxcc_data and "itu" in dxcc_data and len(dxcc_data["itu"]) == 1:
ituz = dxcc_data["itu"]
return ituz
def infer_name_from_callsign_online_lookup(self, call, credentials=None):
"""Infer an operator name from a callsign (requires QRZ.com/HamQTH)"""
data = self._get_qrz_data_for_callsign(call, credentials)
if data and "name_fmt" in data:
return data["name_fmt"]
if data and "fname" in data:
name = data["fname"]
if "nick" in data:
name = name + " \"" + data["nick"] + "\""
if "name" in data:
name = name + " " + data["name"]
return name
data = self._get_hamqth_data_for_callsign(call, credentials)
if data and "nick" in data:
return data["nick"]
else:
return None
def infer_latlon_from_callsign_online_lookup(self, call, credentials=None):
"""Infer a latitude and longitude from a callsign (requires QRZ.com/HamQTH)
Coordinates that look default are rejected (apologies if your position really is 0,0, enjoy your voyage)"""
data = self._get_qrz_data_for_callsign(call, credentials)
if data and "latitude" in data and "longitude" in data and (
float(data["latitude"]) != 0 or float(data["longitude"]) != 0) and -89.9 < float(
data["latitude"]) < 89.9:
return [float(data["latitude"]), float(data["longitude"])]
data = self._get_hamqth_data_for_callsign(call, credentials)
if data and "latitude" in data and "longitude" in data and (
float(data["latitude"]) != 0 or float(data["longitude"]) != 0) and -89.9 < float(
data["latitude"]) < 89.9:
return [float(data["latitude"]), float(data["longitude"])]
else:
return None
def infer_grid_from_callsign_online_lookup(self, call, credentials=None):
"""Infer a grid locator from a callsign (requires QRZ.com/HamQTH).
Grids that look default are rejected (apologies if your grid really is AA00aa, enjoy your research)"""
data = self._get_qrz_data_for_callsign(call, credentials)
if data and "locator" in data and data["locator"].upper() != "AA00" and data["locator"].upper() != "AA00AA" and \
data["locator"].upper() != "AA00AA00":
return data["locator"]
data = self._get_hamqth_data_for_callsign(call, credentials)
if data and "grid" in data and data["grid"].upper() != "AA00" and data["grid"].upper() != "AA00AA" and data[
"grid"].upper() != "AA00AA00":
return data["grid"]
else:
return None
def infer_qth_from_callsign_online_lookup(self, call, credentials=None):
"""Infer a textual QTH from a callsign (requires QRZ.com/HamQTH)"""
data = self._get_qrz_data_for_callsign(call, credentials)
if data and "addr2" in data:
return data["addr2"]
data = self._get_hamqth_data_for_callsign(call, credentials)
if data and "qth" in data:
return data["qth"]
else:
return None
def infer_latlon_from_callsign_dxcc(self, call):
"""Infer a latitude and longitude from a callsign (using DXCC, probably very inaccurate)"""
try:
data = self._call_info_basic.get_lat_long(call)
if data and "latitude" in data and "longitude" in data:
loc = [float(data["latitude"]), float(data["longitude"])]
else:
loc = None
except KeyError:
loc = None
# Couldn't get anything from basic call info database, try Clublog data
if not loc:
data = self._get_clublog_xml_data_for_callsign(call)
if data and "Lat" in data and "Lon" in data:
loc = [float(data["Lat"]), float(data["Lon"])]
if not loc:
data = self._get_clublog_api_data_for_callsign(call)
if data and "Lat" in data and "Lon" in data:
loc = [float(data["Lat"]), float(data["Lon"])]
return loc
def infer_grid_from_callsign_dxcc(self, call):
"""Infer a grid locator from a callsign (using DXCC, probably very inaccurate)"""
latlon = self.infer_latlon_from_callsign_dxcc(call) or []
grid = None
if latlon:
try:
grid = latlong_to_locator(latlon[0], latlon[1], 8)
except:
logging.debug("Invalid lat/lon received for DXCC")
return grid
def _get_qrz_data_for_callsign(self, call, credentials) -> dict | None:
"""Utility method to get QRZ.com data from cache if possible, if not get it from the API and cache it.
Returns None immediately if no credentials are provided."""
# Return from cache if available (a cached None means 'not found in QRZ')
if call in self._qrz_callsign_data_cache:
return self._qrz_callsign_data_cache.get(call)
# Obtain session key from credentials
session_key = None
if credentials and credentials.qrz_session_key:
session_key = credentials.qrz_session_key
elif credentials and credentials.qrz_username and credentials.qrz_password:
try:
login_response = self._qrz_session_cache.get(
self._qrz_base_url + "?username=" + urllib.parse.quote_plus(credentials.qrz_username) +
"&password=" + urllib.parse.quote_plus(credentials.qrz_password) + "&agent=spothole",
headers=HTTP_HEADERS).content
login_data = xmltodict.parse(login_response)
session = login_data.get("QRZDatabase", {}).get("Session", {})
if "Key" in session:
session_key = str(session["Key"])
else:
logging.warning("QRZ.com login details incorrect, failed to look up with QRZ.")
return None
except Exception:
logging.error("Exception when getting QRZ.com session key")
return None
if not session_key:
return None
# Try the call as given, then fall back to the base call (strips /P, /M etc.)
calls_to_try = [call]
try:
home_call = callinfo.Callinfo.get_homecall(call)
if home_call != call:
calls_to_try.append(home_call)
except ValueError:
logging.debug("Could not look up home call for callsign %s", call)
for lookup_call in calls_to_try:
try:
response = _URL_DATA_CACHE.get(
self._qrz_base_url + "?s=" + session_key + "&callsign=" + urllib.parse.quote_plus(lookup_call),
headers=HTTP_HEADERS, timeout=10)
if response.ok:
qrz_response = xmltodict.parse(response.content).get("QRZDatabase", {})
if qrz_response:
if "Callsign" in qrz_response:
data = _normalize_qrz_data(qrz_response.get("Callsign"))
self._qrz_callsign_data_cache.add(call, data, expire=604800) # 1 week in seconds
return data
elif "Session" in qrz_response and "Error" in qrz_response.get("Session"):
# Errors here are normally just "callsign not in database", no need to log that ourselves
# above debug level.
logging.debug("QRZ returned an error looking up callsign %s: %s", lookup_call,
qrz_response.get("Session").get("Error"))
elif not response.from_cache:
logging.warning("QRZ returned a malformed response looking up callsign %s", lookup_call)
elif not response.from_cache:
logging.warning("HTTP %d looking up callsign %s using QRZ", lookup_call)
except (KeyError, ValueError):
continue
except ConnectionError:
logging.warning(f"Connection error when looking up callsign %s using QRZ", lookup_call)
continue
except (ConnectTimeout, ReadTimeout):
logging.warning(f"Timeout when looking up callsign %s using QRZ.", lookup_call)
continue
except Exception:
logging.error("Exception when looking up callsign %s using QRZ", lookup_call, exc_info=True)
continue
# Not found in QRZ; cache None so we don't keep retrying
self._qrz_callsign_data_cache.add(call, None, expire=604800) # 1 week in seconds
return None
def _get_hamqth_data_for_callsign(self, call, credentials) -> dict | None:
"""Utility method to get HamQTH data from cache if possible, if not get it from the API and cache it.
Returns None immediately if no credentials are provided."""
# Return from cache if available
if call in self._hamqth_callsign_data_cache:
return self._hamqth_callsign_data_cache.get(call)
# Obtain session ID from credentials
session_id = None
if credentials and credentials.hamqth_session_id:
session_id = credentials.hamqth_session_id
elif credentials and credentials.hamqth_username and credentials.hamqth_password:
try:
session_data = self._hamqth_session_lookup_cache.get(
self._hamqth_base_url + "?u=" + urllib.parse.quote_plus(credentials.hamqth_username) +
"&p=" + urllib.parse.quote_plus(credentials.hamqth_password), headers=HTTP_HEADERS).content
dict_data = xmltodict.parse(session_data)
if "session_id" in dict_data["HamQTH"]["session"]:
session_id = str(dict_data["HamQTH"]["session"]["session_id"])
else:
logging.warning("HamQTH login details incorrect, failed to look up with HamQTH.")
return None
except Exception:
logging.error("Exception when getting HamQTH session ID")
return None
if not session_id:
return None
# Try the call as given, then fall back to the base call (strips /P, /M etc.)
calls_to_try = [call]
try:
home_call = callinfo.Callinfo.get_homecall(call)
if home_call != call:
calls_to_try.append(home_call)
except ValueError:
logging.debug("Could not look up home call for callsign %s", call)
for lookup_call in calls_to_try:
try:
response = _URL_DATA_CACHE.get(
self._hamqth_base_url + "?id=" + session_id + "&callsign=" + urllib.parse.quote_plus(
lookup_call) + "&prg=" + HAMQTH_PRG, headers=HTTP_HEADERS)
if response.ok:
data = xmltodict.parse(response.content)["HamQTH"]["search"]
self._hamqth_callsign_data_cache.add(call, data, expire=604800) # 1 week in seconds
return data
elif not response.from_cache:
logging.warning("HTTP %d looking up callsign %s using HamQTH", response.status_code, lookup_call)
except (KeyError, ValueError):
continue
except ConnectionError:
logging.warning(f"Connection error when looking up callsign %s using HamQTH", lookup_call)
continue
except (ConnectTimeout, ReadTimeout):
logging.warning(f"Timeout when looking up callsign %s using HamQTH", lookup_call)
continue
except Exception:
logging.error("Exception when looking up callsign %s using HamQTH", lookup_call, exc_info=True)
continue
# Not found in HamQTH; cache None so we don't keep retrying
self._hamqth_callsign_data_cache.add(call, None, expire=604800) # 1 week in seconds
return None
def _get_clublog_api_data_for_callsign(self, call) -> dict | None:
"""Utility method to get Clublog API data from cache if possible, if not get it from the API and cache it"""
# Fetch from cache if we can, otherwise fetch from the API and cache it
if call in self._clublog_callsign_data_cache:
return self._clublog_callsign_data_cache.get(call)
elif self._clublog_api_available:
try:
data = self._lookup_lib_clublog_api.lookup_callsign(callsign=call)
self._clublog_callsign_data_cache.add(call, data, expire=604800) # 1 week in seconds
return data
except (KeyError, ValueError):
# Clublog had no info for the call, but maybe it had prefixes or suffixes. Try again with the base call.
try:
data = self._lookup_lib_clublog_api.lookup_callsign(callsign=callinfo.Callinfo.get_homecall(call))
self._clublog_callsign_data_cache.add(call, data, expire=604800) # 1 week in seconds
return data
except (KeyError, ValueError):
# Clublog had no info for the call, that's OK. Cache a None so we don't try to look this up again
self._clublog_callsign_data_cache.add(call, None, expire=604800) # 1 week in seconds
return None
except APIKeyMissingError:
# User API key was wrong, warn
logging.error("Could not look up via Clublog API, key " + self._clublog_api_key + " was rejected.")
return None
else:
return None
def _get_clublog_xml_data_for_callsign(self, call) -> dict | None:
"""Utility method to get Clublog XML data from file"""
if self._clublog_xml_available:
try:
data = self._lookup_lib_clublog_xml.lookup_callsign(callsign=call)
return data
except (KeyError, ValueError):
# Clublog had no info for the call, that's OK. Cache a None so we don't try to look this up again
self._clublog_callsign_data_cache.add(call, None, expire=604800) # 1 week in seconds
return None
else:
return None
def _get_dxcc_data_for_callsign(self, call) -> dict | None:
"""Utility method to get generic DXCC data from our lookup table, if we can find it"""
for pattern, entity_code in DATA_STORE.dxcc_lookup_by_call_regex:
if pattern.match(call):
return DATA_STORE.dxcc_data[entity_code]
return None
def stop(self):
"""Shutdown method to close down any caches neatly."""
self._qrz_callsign_data_cache.close()
self._hamqth_callsign_data_cache.close()
self._clublog_callsign_data_cache.close()
# Singleton object
lookup_helper = LookupHelper()
from core.data_providers import DATA_PROVIDERS
from data.callsign import Callsign
def get_call_info(callsign, lookup_credentials):
"""Utility method to get the best set of data for a callsign as we can, using all enabled providers.
lookup_credentials is an optional object that carries the user's QRZ.com/HamQTH credentials, if they provided them,
to enable lookup using those providers."""
callsign_data = Callsign(call=callsign)
if callsign:
# Sort callsign providers by priority order, so we query the highest priority (lowest numbers) first, and only
# query other providers for data we are missing as we go along.
for p in sorted(DATA_PROVIDERS.callsign_data_providers, key=lambda p: p.priority):
if p.enabled:
# Get new lookup data
data = p.lookup(callsign, lookup_credentials)
if data:
# If we have new data for fields that were previously unpopulated, add them in
for key, value in data.__dict__.items():
if value is not None and callsign_data.__dict__.get(key) is None:
callsign_data.__dict__[key] = value
# If callsign data is fully populated, avoid looking up using other providers as their data will not
# be used
if callsign_data.fully_populated():
break
return callsign_data
+21 -43
View File
@@ -15,14 +15,17 @@ with open("config.yml") as f:
config = yaml.safe_load(f)
logging.info("Loaded config.")
BASE_URL = config["base-url"]
MAX_SPOT_AGE = config["max-spot-age-sec"]
MAX_ALERT_AGE = config["max-alert-age-sec"]
SERVER_OWNER_CALLSIGN = config["server-owner-callsign"]
WEB_SERVER_PORT = config["web-server-port"]
ALLOW_SPOTTING = config["allow-spotting"]
WEB_UI_OPTIONS = config["web-ui-options"]
BASE_URL = config.get("base-url", "http://localhost:8080")
MAX_SPOT_AGE = config.get("max-spot-age-sec", 3600)
MAX_ALERT_AGE = config.get("max-alert-age-sec", 604800)
SERVER_OWNER_CALLSIGN = config.get("server-owner-callsign", "N0CALL")
WEB_SERVER_PORT = config.get("web-server-port", 8080)
ALLOW_SPOTTING = config.get("allow-spotting", True)
ALLOW_UPSTREAM_SPOTTING = config.get("allow-upstream-spotting", True)
WEB_UI_OPTIONS = config.get("web-ui-options", {})
API_ONLY_MODE = config.get("api-only-mode", False)
RECAPTCHA_SECRET_KEY = config.get("recaptcha-secret-key", "")
RECAPTCHA_SITE_KEY = config.get("recaptcha-site-key", "")
LOG_LEVEL = config.get("log-level", "INFO")
LOG_WEB_REQUESTS = config.get("log-web-requests", False)
@@ -30,47 +33,22 @@ LOG_WEB_REQUESTS = config.get("log-web-requests", False)
# but for consistency we provide this to the front-end in web-ui-options because it has no impact outside of the web UI.
WEB_UI_OPTIONS["spot-providers-enabled-by-default"] = [p["name"] for p in config["spot-providers"] if p["enabled"] and (
"enabled-by-default-in-web-ui" not in p or p["enabled-by-default-in-web-ui"])]
WEB_UI_OPTIONS["qrz-enabled"] = any(p["class"] == "QRZ" and p["enabled"] for p in config["callsign-data-providers"])
WEB_UI_OPTIONS["hamqth-enabled"] = any(p["class"] == "HamQTH" and p["enabled"] for p in config["callsign-data-providers"])
# If spotting to this server is enabled, "API" is another valid spot source even though it does not come from
# one of our proviers. We set that to also be enabled by default.
# one of our proviers. We set that to also be enabled by default. We can also include the reCaptcha site key so the UI
# can access it.
if ALLOW_SPOTTING:
WEB_UI_OPTIONS["spot-providers-enabled-by-default"].append("API")
WEB_UI_OPTIONS["recaptcha-site-key"] = RECAPTCHA_SITE_KEY
WEB_UI_OPTIONS["allow-upstream-spotting"] = ALLOW_SPOTTING and ALLOW_UPSTREAM_SPOTTING
def get_spot_provider_from_config(config_providers_entry):
"""Utility method to get a spot provider based on the class specified in its config entry."""
def create_provider_from_config(package, config_providers_entry):
"""Utility method to get a provider based on the class specified in its config entry. You must also provide the
package to look for it in, as there are several types of provider. e.g. package "providers.spot", where the config
entry is for a POTA spot provider."""
module = importlib.import_module('providers.spot.' + config_providers_entry["class"].lower())
provider_class = getattr(module, config_providers_entry["class"])
return provider_class(config_providers_entry)
def get_alert_provider_from_config(config_providers_entry):
"""Utility method to get an alert provider based on the class specified in its config entry."""
module = importlib.import_module('providers.alert.' + config_providers_entry["class"].lower())
provider_class = getattr(module, config_providers_entry["class"])
return provider_class(config_providers_entry)
def get_solar_conditions_provider_from_config(config_providers_entry):
"""Utility method to get a solar conditions provider based on the class specified in its config entry."""
module = importlib.import_module('providers.solarconditions.' + config_providers_entry["class"].lower())
provider_class = getattr(module, config_providers_entry["class"])
return provider_class(config_providers_entry)
def get_static_data_provider_from_config(config_providers_entry):
"""Utility method to get a static reference data provider based on the class specified in its config entry."""
module = importlib.import_module('providers.staticdata.' + config_providers_entry["class"].lower())
provider_class = getattr(module, config_providers_entry["class"])
return provider_class(config_providers_entry)
def get_sig_ref_data_provider_from_config(config_providers_entry):
"""Utility method to get a SIG reference data provider based on the class specified in its config entry."""
module = importlib.import_module('providers.sigrefdata.' + config_providers_entry["class"].lower())
module = importlib.import_module(package + "." + config_providers_entry["class"].lower())
provider_class = getattr(module, config_providers_entry["class"])
return provider_class(config_providers_entry)
+5 -3
View File
@@ -3,7 +3,7 @@ from data.band import Band
from data.sig import SIG
# General software
SOFTWARE_VERSION = "1.4-pre"
SOFTWARE_VERSION = "2.0-pre"
# HTTP headers used for spot providers that use HTTP
HTTP_HEADERS = {"User-Agent": "Spothole v" + SOFTWARE_VERSION + " (operated by " + SERVER_OWNER_CALLSIGN + ")"}
@@ -11,7 +11,7 @@ HAMQTH_PRG = ("Spothole v" + SOFTWARE_VERSION + " operated by " + SERVER_OWNER_C
# Special Interest Groups
SIGS = [
SIG(name="POTA", comment_names=["POTA"], description="Parks on the Air", ref_regex=r"[A-Z]{2}\-\d{4,5}"),
SIG(name="POTA", comment_names=["POTA"], description="Parks on the Air", ref_regex=r"[A-Z]{2}\-\d{4,5}|K\-TEST"),
SIG(name="SOTA", comment_names=["SOTA"], description="Summits on the Air", ref_regex=r"[A-Z0-9]{1,3}\/[A-Z]{2}\-\d{3}"),
SIG(name="WWFF", comment_names=["WWFF"], description="World Wide Flora & Fauna", ref_regex=r"[A-Z0-9]{1,3}FF\-\d{4}"),
SIG(name="GMA", comment_names=["GMA"], description="Global Mountain Activity", ref_regex=r"[A-Z0-9]{1,3}\/[A-Z]{2}\-\d{3}"),
@@ -39,10 +39,12 @@ SIGS = [
# Modes. Note "DIGI" and "DIGITAL" are also supported but are normalised into "DATA".
CW_MODES = ["CW"]
PHONE_MODES = ["PHONE", "SSB", "USB", "LSB", "AM", "FM", "DV", "DMR", "DSTAR", "C4FM", "M17"]
PHONE_MODES = ["PHONE", "SSB", "USB", "LSB", "AM", "FM", "DV", "DMR", "DSTAR", "C4FM", "FUSION", "M17"]
DATA_MODES = ["DATA", "FT8", "FT4", "RTTY", "SSTV", "JS8", "HELL", "PSK", "OLIVIA", "PKT", "MSK144"]
ALL_MODES = CW_MODES + PHONE_MODES + DATA_MODES
MODE_TYPES = ["CW", "PHONE", "DATA"]
SSB_SUB_MODES = ["USB", "LSB"]
DV_SUB_MODES = ["DMR", "DSTAR", "C4FM", "FUSION", "M17"]
# Mode aliases. Sometimes we get spots with a mode described in a different way that is effectively the same as a mode
# we already know, or we want to normalise things for consistency. The lookup table for this is here. Incoming spots
+73
View File
@@ -0,0 +1,73 @@
from core.config import config, create_provider_from_config
class DataProviders:
"""Global object for storing data providers."""
def __init__(self):
self.spot_providers = []
self.alert_providers = []
self.solar_condition_providers = []
self.static_data_providers = []
self.sig_ref_data_providers = []
self.callsign_data_providers = []
def setup(self):
for entry in config["spot-providers"]:
self.spot_providers.append(create_provider_from_config("providers.spot", entry))
for entry in config["alert-providers"]:
self.alert_providers.append(create_provider_from_config("providers.alert", entry))
for entry in config.get("solar-condition-providers", []):
self.solar_condition_providers.append(create_provider_from_config("providers.solarconditions", entry))
for entry in config.get("static-data-providers", []):
self.static_data_providers.append(create_provider_from_config("providers.staticdata", entry))
for entry in config.get("sig-ref-data-providers", []):
self.sig_ref_data_providers.append(create_provider_from_config("providers.sigrefdata", entry))
for entry in config.get("callsign-data-providers", []):
self.callsign_data_providers.append(create_provider_from_config("providers.callsigndata", entry))
def start(self):
# Start data providers before spot/alert providers so the lookup data is there already for incoming spots
for p in self.static_data_providers:
if p.enabled:
p.start()
for p in self.sig_ref_data_providers:
if p.enabled:
p.start()
for p in self.callsign_data_providers:
if p.enabled:
p.start()
for p in self.spot_providers:
if p.enabled:
p.start()
for p in self.alert_providers:
if p.enabled:
p.start()
for p in self.solar_condition_providers:
if p.enabled:
p.start()
def stop(self):
for sp in self.spot_providers:
if sp.enabled:
sp.stop()
for ap in self.alert_providers:
if ap.enabled:
ap.stop()
for scp in self.solar_condition_providers:
if scp.enabled:
scp.stop()
for srdp in self.sig_ref_data_providers:
if srdp.enabled:
srdp.stop()
for sdp in self.static_data_providers:
if sdp.enabled:
sdp.stop()
for cdp in self.callsign_data_providers:
if cdp.enabled:
cdp.stop()
# Global object
DATA_PROVIDERS = DataProviders()
+23 -7
View File
@@ -20,17 +20,21 @@ class DataStore:
self._MAX_SPOT_COUNT = 100000
self._MAX_ALERT_COUNT = 100000
self._SPOT_ALERT_SNAPSHOT_INTERVAL_SEC = 300
self._CALLSIGN_DATA_TTL_SEC = 30 * 24 * 60 * 60
self.CALLSIGN_DATA_TTL_SEC = 30 * 24 * 60 * 60
# Caches
self.alerts = None
self.spots = None
self.callsigns = None
self.callsign_data_countryfiles = None
self.callsign_data_clublogxml = None
self.callsign_data_clublogapi = None
self.callsign_data_qrz = None
self.callsign_data_hamqth = None
self.dxcc_data = None
self.dxcc_lookup_by_call_regex = []
self.sigrefs = None
self.status_data = None
self.status_data = {}
self._status = None
self.solar_conditions = None
self.solar_conditions = {}
self._solar = None
# ITU/CQ zone GeoJSON data is only ever loaded statically from a local file so these don't even need to be
# caches, they can just be straight objects
@@ -65,8 +69,16 @@ class DataStore:
# Standard disk cache for callsign data. This data does have a TTL to trigger an occasional re-lookup.
# Old data *is* better than no data, but we can't have a background thread re-looking-up every callsign
# we've seen, so we rely on them timing out and this triggering another lookup.
self.callsigns = diskcache.Cache(CACHE_DIR + "callsigns")
logging.info(f"Loaded data for %d callsigns.", len(self.callsigns))
self.callsign_data_countryfiles = diskcache.Cache(CACHE_DIR + "callsign_data_countryfiles")
self.callsign_data_clublogxml = diskcache.Cache(CACHE_DIR + "callsign_data_clublogxml")
self.callsign_data_clublogapi = diskcache.Cache(CACHE_DIR + "callsign_data_clublogapi")
self.callsign_data_qrz = diskcache.Cache(CACHE_DIR + "callsign_data_qrz")
self.callsign_data_hamqth = diskcache.Cache(CACHE_DIR + "callsign_data_hamqth")
unique_keys = set()
for c in [self.callsign_data_countryfiles, self.callsign_data_clublogxml, self.callsign_data_clublogapi,
self.callsign_data_qrz, self.callsign_data_hamqth]:
unique_keys.update(c)
logging.info(f"Loaded data for %d callsigns.", len(unique_keys))
# Special caches for spots and alerts, which have TTL and write snapshots to disk at an interval. We
# specifically load these caches *last* so that any sigref and callsign data is already loaded from disk cache
@@ -97,7 +109,11 @@ class DataStore:
self._status.close()
self.dxcc_data.close()
self.sigrefs.close()
self.callsigns.close()
self.callsign_data_countryfiles.close()
self.callsign_data_clublogxml.close()
self.callsign_data_clublogapi.close()
self.callsign_data_qrz.close()
self.callsign_data_hamqth.close()
# Global object
DATA_STORE = DataStore()
+1 -1
View File
@@ -92,7 +92,7 @@ class LiveDataCache:
time.sleep(interval)
self.save_snapshot()
t = threading.Thread(target=loop, daemon=True, name=f"snapshot-{self._snapshot_dir}")
t = threading.Thread(target=loop, name=f"LiveDataCache-Snapshot-{self._snapshot_dir}")
t.start()
def close(self):
+30 -15
View File
@@ -4,21 +4,20 @@ from pyhamtools.locator import locator_to_latlong, latlong_to_locator
from core.data_store import DATA_STORE
from core.geo_utils import wab_wai_square_to_lat_lon
from data.sig_ref import SIGRef
def populate_sig_ref_info(sig_ref):
"""Look up details of a SIG reference (e.g. POTA park) such as name, lat/lon, and grid. Takes in a sig_ref object
which must at minimum have a "sig" and an "id". The rest of the object will be populated and returned. This makes
def get_sig_ref_info(sig, ref_id):
"""Look up details of a SIG reference (e.g. POTA park) such as name, lat/lon, and grid. Takes in a sig name and
a reference ID (both strings) and returns a SigRef object populated with as much data as we can find. This makes
use of SIG ref data in the data store, live lookups from the web, or just automatic calculation depending on which
SIG we are getting data for. Any data currently in the object will be kept, only missing data in the object will
be populated if it can be determined."""
SIG we are getting data for."""
if sig_ref.sig is None or sig_ref.sig == "" or sig_ref.id is None or sig_ref.id == "":
logging.debug("Failed to look up sig_ref info, sig or id were not set.")
return sig_ref
if sig is None or sig == "" or ref_id is None or ref_id == "":
logging.debug("Failed to look up sig_ref info, sig or ref were not set.")
return None
sig = sig_ref.sig
ref_id = sig_ref.id
sig_ref = SIGRef(sig=sig, id=ref_id)
try:
### FUDGES ###
@@ -81,13 +80,29 @@ def populate_sig_ref_info(sig_ref):
key = sig + ":" + ref_id
lookup_data = DATA_STORE.sigrefs.get(key) if key in DATA_STORE.sigrefs else None
if lookup_data:
# Copy new sig ref data into existing object where data was previously missing
for key, value in lookup_data.__dict__.items():
if value is not None and sig_ref.__dict__.get(key) is None:
sig_ref.__dict__[key] = value
return lookup_data
else:
logging.warning("%s database did not contain data for ref %s", sig, ref_id)
# Maybe a super new reference we don't know about yet, but more likely a typo or a test reference,
# just silently ignore it.
logging.debug("%s database did not contain data for ref %s", sig, ref_id)
except Exception:
logging.error("Exception when looking up sig_ref info for " + sig + " ref " + ref_id, exc_info=True)
return sig_ref
def populate_missing_sig_ref_info(sig_ref):
"""Look up details of a SIG reference (e.g. POTA park) such as name, lat/lon, and grid. Takes in a sig_ref object
which must at minimum have a "sig" and an "id". The rest of the object will be populated and returned. Any data
currently in the object will be kept, only missing data in the object will be populated if it can be determined."""
lookup_data = get_sig_ref_info(sig_ref.sig, sig_ref.id)
if lookup_data:
# Copy new sig ref data into existing object where data was previously missing
for key, value in lookup_data.__dict__.items():
if value is not None and sig_ref.__dict__.get(key) is None:
sig_ref.__dict__[key] = value
return sig_ref
+22 -21
View File
@@ -7,24 +7,19 @@ import pytz
from core.config import SERVER_OWNER_CALLSIGN
from core.constants import SOFTWARE_VERSION
from core.data_providers import DATA_PROVIDERS
from core.data_store import DATA_STORE
from core.prometheus_metrics_handler import memory_use_gauge, spots_gauge, alerts_gauge
from server.webserver import WEB_SERVER
class StatusReporter:
"""Provides a timed update of the application's status data."""
def __init__(self, run_interval, web_server, spot_providers, alert_providers, solar_condition_providers,
static_data_providers, sig_ref_data_providers):
def __init__(self, run_interval):
"""Constructor"""
self._run_interval = run_interval
self._web_server = web_server
self._spot_providers = spot_providers
self._alert_providers = alert_providers
self._solar_condition_providers = solar_condition_providers
self._static_data_providers = static_data_providers
self._sig_ref_data_providers = sig_ref_data_providers
self._thread = None
self._stop_event = Event()
self._startup_time = datetime.now(pytz.UTC)
@@ -35,7 +30,7 @@ class StatusReporter:
def start(self):
"""Start the reporter thread"""
self._thread = Thread(target=self._run, daemon=True)
self._thread = Thread(target=self._run, name="StatusReporter")
self._thread.start()
def stop(self):
@@ -64,39 +59,45 @@ class StatusReporter:
tzinfo=pytz.UTC).timestamp() if p.last_update_time.year > 2000 else 0,
"last_spot": p.last_spot_time.replace(
tzinfo=pytz.UTC).timestamp() if p.last_spot_time.year > 2000 else 0},
self._spot_providers))
DATA_PROVIDERS.spot_providers))
DATA_STORE.status_data["alert_providers"] = list(
map(lambda p: {"name": p.name, "enabled": p.enabled, "status": p.status,
"last_updated": p.last_update_time.replace(
tzinfo=pytz.UTC).timestamp() if p.last_update_time.year > 2000 else 0},
self._alert_providers))
DATA_PROVIDERS.alert_providers))
DATA_STORE.status_data["solar_condition_providers"] = list(
map(lambda p: {"name": p.name, "enabled": p.enabled, "status": p.status,
"last_updated": p.last_update_time.replace(
tzinfo=pytz.UTC).timestamp() if p.last_update_time.year > 2000 else 0},
self._solar_condition_providers))
DATA_PROVIDERS.solar_condition_providers))
DATA_STORE.status_data["static_data_providers"] = list(
map(lambda p: {"name": p.name, "enabled": p.enabled, "status": p.status,
"last_updated": p.last_update_time.replace(
tzinfo=pytz.UTC).timestamp() if p.last_update_time.year > 2000 else 0},
self._static_data_providers))
DATA_PROVIDERS.static_data_providers))
DATA_STORE.status_data["sig_ref_data_providers"] = list(
map(lambda p: {"sig_name": p.sig_name, "enabled": p.enabled, "status": p.status,
"last_updated": p.last_update_time.replace(
tzinfo=pytz.UTC).timestamp() if p.last_update_time.year > 2000 else 0,
"reference_count": p.reference_count},
self._sig_ref_data_providers))
DATA_STORE.status_data["webserver"] = {"status": self._web_server.web_server_metrics["status"],
"last_api_access": self._web_server.web_server_metrics[
DATA_PROVIDERS.sig_ref_data_providers))
DATA_STORE.status_data["callsign_data_providers"] = list(
map(lambda p: {"name": p.name, "enabled": p.enabled, "status": p.status,
"last_updated": p.last_update_time.replace(
tzinfo=pytz.UTC).timestamp() if p.last_update_time.year > 2000 else 0,
"lookup_count": p.lookup_count},
DATA_PROVIDERS.callsign_data_providers))
DATA_STORE.status_data["webserver"] = {"status": WEB_SERVER.web_server_metrics["status"],
"last_api_access": WEB_SERVER.web_server_metrics[
"last_api_access_time"].replace(
tzinfo=pytz.UTC).timestamp() if self._web_server.web_server_metrics[
tzinfo=pytz.UTC).timestamp() if WEB_SERVER.web_server_metrics[
"last_api_access_time"] else 0,
"api_access_count": self._web_server.web_server_metrics["api_access_counter"],
"last_page_access": self._web_server.web_server_metrics[
"api_access_count": WEB_SERVER.web_server_metrics["api_access_counter"],
"last_page_access": WEB_SERVER.web_server_metrics[
"last_page_access_time"].replace(
tzinfo=pytz.UTC).timestamp() if self._web_server.web_server_metrics[
tzinfo=pytz.UTC).timestamp() if WEB_SERVER.web_server_metrics[
"last_page_access_time"] else 0,
"page_access_count": self._web_server.web_server_metrics[
"page_access_count": WEB_SERVER.web_server_metrics[
"page_access_counter"]}
# Update Prometheus metrics
+38
View File
@@ -2,9 +2,11 @@ import logging
import simplejson
from pyhamtools.frequency import freq_to_band
from pyhamtools.locator import latlong_to_locator
from core.constants import UNKNOWN_BAND, BANDS, CW_MODES, PHONE_MODES, DATA_MODES, MODE_ALIASES, ALL_MODES
from core.data_store import DATA_STORE
from data.callsign import Callsign
def safe_json_dumps(obj):
@@ -77,3 +79,39 @@ def get_flag_for_dxcc(dxcc):
dxcc_data = DATA_STORE.dxcc_data[dxcc] if dxcc in DATA_STORE.dxcc_data else None
return dxcc_data["flag"] if dxcc_data else None
def get_callsign_object_from_pyhamtools_callinfo(callsign, callinfo):
"""Utility function to take the data provided by a PyHamTools CallInfo object and populate our own Callsign data
object from it"""
try:
home_call = callinfo.get_homecall(callsign)
data = callinfo.get_all(callsign)
country = data["country"] if "country" in data else None
dxcc_id = data["adif"] if "adif" in data else None
continent = data["continent"] if "continent" in data else None
cq_zone = data["cqz"] if "cqz" in data else None
itu_zone = data["ituz"] if "ituz" in data else None
lat = float(data["latitude"]) if "latitude" in data else None
lon = float(data["longitude"]) if "longitude" in data else None
grid = None
if lat and lon:
grid = latlong_to_locator(lat, lon)
return Callsign(call=callsign,
home_call=home_call,
country=country,
dxcc_id=dxcc_id,
continent=continent,
cq_zone=cq_zone,
itu_zone=itu_zone,
latitude=lat,
longitude=lon,
grid=grid,
location_source="DXCC")
except (KeyError, ValueError):
# Unknown callsign, can't look anything up, return a Callsign object with basic data so that gets cached
return Callsign(call=callsign)
+11 -12
View File
@@ -7,8 +7,8 @@ from datetime import datetime, timedelta
import pytz
from core.call_lookup_helper import lookup_helper
from core.sig_lookup_helper import populate_sig_ref_info
from core.call_lookup_helper import get_call_info
from core.sig_lookup_helper import populate_missing_sig_ref_info
from core.utils import get_flag_for_dxcc
@@ -86,16 +86,17 @@ class Alert:
# DX country, continent, zones etc. from callsign. CQ/ITU zone are better looked up with a location but we don't
# have a real location for alerts.
call_info = get_call_info(self.dx_calls[0], credentials)
if self.dx_calls and self.dx_calls[0] and not self.dx_country:
self.dx_country = lookup_helper.infer_country_from_callsign(self.dx_calls[0], credentials)
self.dx_country = call_info.country
if self.dx_calls and self.dx_calls[0] and not self.dx_continent:
self.dx_continent = lookup_helper.infer_continent_from_callsign(self.dx_calls[0], credentials)
self.dx_continent = call_info.continent
if self.dx_calls and self.dx_calls[0] and not self.dx_cq_zone:
self.dx_cq_zone = lookup_helper.infer_cq_zone_from_callsign(self.dx_calls[0], credentials)
self.dx_cq_zone = call_info.cq_zone
if self.dx_calls and self.dx_calls[0] and not self.dx_itu_zone:
self.dx_itu_zone = lookup_helper.infer_itu_zone_from_callsign(self.dx_calls[0], credentials)
self.dx_itu_zone = call_info.itu_zone
if self.dx_calls and self.dx_calls[0] and not self.dx_dxcc_id:
self.dx_dxcc_id = lookup_helper.infer_dxcc_id_from_callsign(self.dx_calls[0], credentials)
self.dx_dxcc_id = call_info.dxcc_id
if self.dx_dxcc_id and not self.dx_flag:
self.dx_flag = get_flag_for_dxcc(self.dx_dxcc_id)
@@ -104,7 +105,7 @@ class Alert:
# from WAB and WAI, which count as a SIG even though there's no real lookup, just maths
if self.sig_refs and len(self.sig_refs) > 0:
for sig_ref in self.sig_refs:
populate_sig_ref_info(sig_ref)
populate_missing_sig_ref_info(sig_ref)
# If the spot itself doesn't have a SIG yet, but we have at least one SIG reference, take that reference's SIG
# and apply it to the whole spot.
@@ -124,12 +125,10 @@ class Alert:
self_copy.received_time_iso = ""
self.id = hashlib.sha256(str(self_copy).encode("utf-8")).hexdigest()
# DX operator details lookup, using QRZ.com/HamQTH. This should be the last resort compared to taking the data
# from the actual alerting service, e.g. we don't want to accidentally use a user's QRZ.com home lat/lon
# instead of the one from the park reference they're at.
# DX operator name lookup, using QRZ.com/HamQTH.
if self.dx_calls and not self.dx_names:
self.dx_names = list(
map(lambda c: lookup_helper.infer_name_from_callsign_online_lookup(c, credentials), self.dx_calls))
map(lambda c: get_call_info(c, credentials).name, self.dx_calls))
except Exception as e:
logging.error("Exception while inferring missing data from spot", e, exc_info=True)
+15 -6
View File
@@ -11,7 +11,7 @@ class Callsign:
# Callsign as spotted
call: str
# "Home" call, i.e. with any prefixes and suffixes stripped off
home_call: str
home_call: str | None = None
# Operator name
name : str | None = None
# QTH (location), free text
@@ -26,13 +26,22 @@ class Callsign:
# the centre of the country they're operating in if no other data is available.
longitude : float | None = None
# Country in which the callsign indicates they are operating
dx_country: str | None = None
country: str | None = None
# Continent in which the callsign indicates they are operating
dx_continent: str | None = None
continent: str | None = None
# DXCC ID in which the callsign indicates they are operating
dx_dxcc_id: int | None = None
dxcc_id: int | None = None
# CQ zone in which the callsign indicates they are operating
dx_cq_zone: int | None = None
cq_zone: int | None = None
# ITU zone in which the callsign indicates they are operating
dx_itu_zone: int | None = None
itu_zone: int | None = None
# Location source. This can be "HOME QTH" or "DXCC" depending on which provider gave us a location
location_source: str | None = None
def fully_populated(self):
"""Utility method to indicate that the callsign data is fully populated. Multiple providers can return data for
a callsign, and we try them in sequence until we have all the data we can, in which case there's no point
querying any other providers."""
return self.home_call is not None and self.name is not None and self.qth is not None and self.grid is not None\
and self.latitude is not None and self.longitude is not None and self.country is not None and self.continent\
is not None and self.dxcc_id is not None and self.cq_zone is not None and self.itu_zone is not None
+8 -8
View File
@@ -12,15 +12,15 @@ class LookupCredentials:
hamqth_session_id: str = "" # alternative to username/password
def extract_credentials(query_params):
"""Build a LookupCredentials from HTTP query params; returns None if no usable credentials are present."""
def extract_credentials(headers):
"""Build a LookupCredentials from HTTP request headers; returns None if no usable credentials are present."""
creds = LookupCredentials(
qrz_username=query_params.get("qrz_username", ""),
qrz_password=query_params.get("qrz_password", ""),
qrz_session_key=query_params.get("qrz_session_key", ""),
hamqth_username=query_params.get("hamqth_username", ""),
hamqth_password=query_params.get("hamqth_password", ""),
hamqth_session_id=query_params.get("hamqth_session_id", ""),
qrz_username=headers.get("X-QRZ-Username", ""),
qrz_password=headers.get("X-QRZ-Password", ""),
qrz_session_key=headers.get("X-QRZ-Session-Key", ""),
hamqth_username=headers.get("X-HamQTH-Username", ""),
hamqth_password=headers.get("X-HamQTH-Password", ""),
hamqth_session_id=headers.get("X-HamQTH-Session-ID", ""),
)
has_qrz = creds.qrz_session_key or (creds.qrz_username and creds.qrz_password)
has_hamqth = creds.hamqth_session_id or (creds.hamqth_username and creds.hamqth_password)
+38 -55
View File
@@ -12,9 +12,9 @@ from pyhamtools.locator import locator_to_latlong, latlong_to_locator
from core.config import MAX_SPOT_AGE
from core.constants import MODE_ALIASES, PROPAGATION_MODES
from core.geo_utils import lat_lon_to_cq_zone, lat_lon_to_itu_zone
from core.call_lookup_helper import lookup_helper
from core.call_lookup_helper import get_call_info
from core.sig_utils import ANY_SIG_REGEX, get_ref_regex_for_sig, get_sig_name_from_comment_name
from core.sig_lookup_helper import populate_sig_ref_info
from core.sig_lookup_helper import populate_missing_sig_ref_info
from core.utils import infer_band_from_freq, infer_mode_from_comment, \
infer_mode_from_frequency, infer_mode_type_from_mode, get_flag_for_dxcc
from data.sig_ref import SIGRef
@@ -173,12 +173,13 @@ class Spot:
self.dx_ssid = split[1]
# DX country, continent etc. from callsign
dx_call_info = get_call_info(self.dx_call, credentials)
if self.dx_call and not self.dx_country:
self.dx_country = lookup_helper.infer_country_from_callsign(self.dx_call, credentials)
self.dx_country = dx_call_info.country
if self.dx_call and not self.dx_continent:
self.dx_continent = lookup_helper.infer_continent_from_callsign(self.dx_call, credentials)
self.dx_continent = dx_call_info.continent
if self.dx_call and not self.dx_dxcc_id:
self.dx_dxcc_id = lookup_helper.infer_dxcc_id_from_callsign(self.dx_call, credentials)
self.dx_dxcc_id = dx_call_info.dxcc_id
if self.dx_dxcc_id and not self.dx_flag:
self.dx_flag = get_flag_for_dxcc(self.dx_dxcc_id)
@@ -205,14 +206,15 @@ class Spot:
# Spotter country, continent, zones etc. from callsign.
# DE call with no digits, or APRS servers starting "T2" are not things we can look up location for
de_call_info = get_call_info(self.de_call, credentials)
if self.de_call and any(char.isdigit() for char in self.de_call) and not (
self.de_call.startswith("T2") and self.source == "APRS-IS"):
if not self.de_country:
self.de_country = lookup_helper.infer_country_from_callsign(self.de_call, credentials)
self.de_country = de_call_info.country
if not self.de_continent:
self.de_continent = lookup_helper.infer_continent_from_callsign(self.de_call, credentials)
self.de_continent = de_call_info.continent
if not self.de_dxcc_id:
self.de_dxcc_id = lookup_helper.infer_dxcc_id_from_callsign(self.de_call, credentials)
self.de_dxcc_id = de_call_info.dxcc_id
if self.de_dxcc_id and not self.de_flag:
self.de_flag = get_flag_for_dxcc(self.de_dxcc_id)
@@ -287,7 +289,7 @@ class Spot:
# from WAB and WAI, which count as a SIG even though there's no real lookup, just maths
if self.sig_refs and len(self.sig_refs) > 0:
for sig_ref in self.sig_refs:
sig_ref = populate_sig_ref_info(sig_ref)
sig_ref = populate_missing_sig_ref_info(sig_ref)
# If the spot itself doesn't have location yet, but the SIG ref does, extract it
if sig_ref.grid and not self.dx_grid:
self.dx_grid = sig_ref.grid
@@ -328,6 +330,19 @@ class Spot:
self.propagation_mode = mode_tag
logging.info("Seen a new propagation mode tag not yet in the system: %s", mode_tag)
# Parse "de_grid -> dx_grid" structures from the comment
if self.comment:
grid_mode_grid_match = re.search(
r'\b([A-Ra-r]{2}\d{2}(?:[A-Xa-x]{2}(?:\d{2})?)?)\s*->\s*([A-Ra-r]{2}\d{2}(?:[A-Xa-x]{2}(?:\d{2})?)?)\b',
self.comment)
if grid_mode_grid_match:
# regex matches, so extract grids:
if not self.dx_grid:
self.dx_grid = grid_mode_grid_match.group(1).upper()
self.dx_location_source = "SPOT"
if not self.de_grid:
self.de_grid = grid_mode_grid_match.group(2).upper()
# DX Grid to lat/lon and vice versa in case one is missing
if self.dx_grid and not self.dx_latitude:
try:
@@ -359,18 +374,16 @@ class Spot:
self_copy.received_time_iso = ""
self.id = hashlib.sha256(str(self_copy).encode("utf-8")).hexdigest()
# DX operator details lookup, using QRZ.com/HamQTH. This should be the last resort compared to taking the data
# from the actual spotting service, e.g. we don't want to accidentally use a user's QRZ.com home lat/lon
# DX operator details lookup. This should be the last resort compared to taking the data from the actual
# spotting service, e.g. we don't want to accidentally use a user's QRZ.com home lat/lon or DXCC lat/lon
# instead of the one from the park reference they're at.
if self.dx_call and not self.dx_name:
self.dx_name = lookup_helper.infer_name_from_callsign_online_lookup(self.dx_call, credentials)
self.dx_name = dx_call_info.name
if self.dx_call and not self.dx_latitude:
latlon = lookup_helper.infer_latlon_from_callsign_online_lookup(self.dx_call, credentials)
if latlon:
self.dx_latitude = latlon[0]
self.dx_longitude = latlon[1]
self.dx_grid = lookup_helper.infer_grid_from_callsign_online_lookup(self.dx_call, credentials)
self.dx_location_source = "HOME QTH"
self.dx_latitude = dx_call_info.latitude
self.dx_longitude = dx_call_info.longitude
self.dx_grid = dx_call_info.grid
self.dx_location_source = dx_call_info.location_source
# Determine a "QTH" string. If we have a SIG ref, pick the first one and turn it into a suitable string,
# otherwise see what they have set on an online lookup service.
@@ -380,39 +393,19 @@ class Spot:
qth += " " + self.sig_refs[0].name
self.dx_qth = qth
else:
self.dx_qth = lookup_helper.infer_qth_from_callsign_online_lookup(self.dx_call, credentials)
# Last resort for getting a DX position, use the DXCC entity.
if self.dx_call and not self.dx_latitude:
latlon = lookup_helper.infer_latlon_from_callsign_dxcc(self.dx_call)
if latlon:
self.dx_latitude = latlon[0]
self.dx_longitude = latlon[1]
self.dx_grid = lookup_helper.infer_grid_from_callsign_dxcc(self.dx_call)
self.dx_location_source = "DXCC"
# It looks like we can sometimes get a string into lat/lon, so try to parse as float, reject if not valid
if isinstance(self.dx_latitude, str) or isinstance(self.dx_longitude, str):
try:
self.dx_latitude = float(str(self.dx_latitude))
self.dx_longitude = float(str(self.dx_longitude))
except (TypeError, ValueError):
logging.warning("Received non-numeric strings in lat/lon (" + str(self.dx_latitude) + ", " + str(
self.dx_longitude) + ") for call " + str(self.dx_call) + ", rejecting it")
self.dx_latitude = None
self.dx_longitude = None
self.dx_qth = dx_call_info.qth
# CQ and ITU zone lookup, preferably from location but failing that, from callsign
if not self.dx_cq_zone:
if self.dx_latitude:
self.dx_cq_zone = lat_lon_to_cq_zone(self.dx_latitude, self.dx_longitude)
elif self.dx_call:
self.dx_cq_zone = lookup_helper.infer_cq_zone_from_callsign(self.dx_call, credentials)
self.dx_cq_zone = dx_call_info.cq_zone
if not self.dx_itu_zone:
if self.dx_latitude:
self.dx_itu_zone = lat_lon_to_itu_zone(self.dx_latitude, self.dx_longitude)
elif self.dx_call:
self.dx_itu_zone = lookup_helper.infer_itu_zone_from_callsign(self.dx_call, credentials)
self.dx_itu_zone = dx_call_info.itu_zone
# DX Location is "good" if it is from a spot, or from QRZ if the callsign doesn't contain a slash, so the operator
# is likely at home.
@@ -424,21 +417,11 @@ class Spot:
# DE with no digits and APRS servers starting "T2" are not things we can look up location for
if self.de_call and any(char.isdigit() for char in self.de_call) and not (
self.de_call.startswith("T2") and self.source == "APRS-IS"):
# DE operator position lookup, using QRZ.com/HamQTH.
# DE operator location lookup
if not self.de_latitude:
latlon = lookup_helper.infer_latlon_from_callsign_online_lookup(self.de_call, credentials)
if latlon:
self.de_latitude = latlon[0]
self.de_longitude = latlon[1]
self.de_grid = lookup_helper.infer_grid_from_callsign_online_lookup(self.de_call, credentials)
# Last resort for getting a DE position, use the DXCC entity.
if not self.de_latitude:
latlon = lookup_helper.infer_latlon_from_callsign_dxcc(self.de_call)
if latlon:
self.de_latitude = latlon[0]
self.de_longitude = latlon[1]
self.de_grid = lookup_helper.infer_grid_from_callsign_dxcc(self.de_call)
self.de_latitude = de_call_info.latitude
self.de_longitude = de_call_info.longitude
self.de_grid = de_call_info.grid
except Exception as e:
logging.error("Exception while inferring missing data from spot", e, exc_info=True)
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## Writing your own client
One of the key strengths of Spothole is that the API is well-defined and open to anyone to use. This means you can build
your own software that uses data from Spothole.
As well as the main API endpoints to fetch spots and alerts, with various possible query parameters, there are also
Server-Sent Events (SSE) API endpoints to receive a live feed, plus various utility lookup endpoints for things like
callsign and park data.
Various approaches exist to writing your own client, but in general:
* Refer to the API docs. These are built on an OpenAPI definition file (`/static/apidocs/openapi.yml`), which you can
automatically use to generate a client skeleton using various software.
* Call the main "spots" or "alerts" API endpoints to get the data you want. For example, your app could call
`https://spothole.app/api/v2/spots` once every few minutes. Apply filters if necessary.
* Call the "options" API to get an idea of which bands, modes etc. the server knows about. You might want to do that
first before calling the spots/alerts APIs, to allow you to populate your filters correctly.
* Refer to the provided HTML/JS interface for a reference on different approaches. For example, the "alerts"/"upcoming"
page simply query the main spot API on a timer, whereas the spots, map and bands pages combine this approach with
using the Server-Sent Events (SSE) endpoint to update live.
* Let me know if you get stuck, I'm happy to help.
Please don't hammer the API with an unnecessarily high request rate. For example, Spothole only queries the POTA API
once every two minutes, so if your client is interested in POTA data there's no need to poll Spothole any more often
than that.
If you absolutely must be informed within seconds of a spot arriving in Spothole, please use the SSE endpoints instead,
e.g. `https://spothole.app/api/v2/spots/stream`.
If you want to handle different types of spot or alert differently within your client, please consider making a single
request to the Spothole API to retrieve all the data, then filtering on your side. For example, call
`https://spothole.app/api/v2/spots?sig=POTA,SOTA` rather than making two separate calls to
`https://spothole.app/api/v2/spots?sig=POTA` and `https://spothole.app/api/v2/spots?sig=SOTA`.
Remember, here at Spothole Inc. we offer an industry-standard "five nines" uptime on our server, with our own unique
twist: we don't tell you which side of the decimal point the nines start! (Translation: This is a hobby project.
`spothole.app` runs on the same server as my blog and other stuff. It might go down without warning. By all means base
your own project on data from the main server if you like, but if you want any control over reliability and downtime,
please run your own copy instead.)
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## Running using Docker
Spothole comes with a Docker configuration to make it easy to run it in a containerised environment. To set it up using
Docker, the easiest way is to use a Docker Compose file. Create a new directory such as `/opt/docker/spothole` and
create a `compose.yaml` file inside it with the following contents:
```yaml
services:
spothole:
container_name: spothole
build:
context: https://git.ianrenton.com/ian/spothole.git#main
restart: unless-stopped
ports:
- "8080:8080"
volumes:
- ./config.yml:/app/config.yml
- ./cache:/app/cache
```
You can replace `#main` with any other branch or tag reference, for example `#1.5` to pin the build to tagged version
1.5.
Save the file. You will still need to create a copy of `config-example.yml` and name it `config.yml`, though with the
Docker setup nothing has actually been downloaded yet, so you will have to copy the example from the repository some
other way, e.g. [from the repo in a web browser](https://git.ianrenton.com/ian/spothole/src/branch/main/config-example.yml).
With that in place, run `docker compose up` and you should be good to go. To detach, press `d` or run the command with
the `-d` flag.
### nginx Reverse Proxy with Docker
In a containerised setup, it's typical to run an nginx reverse proxy in one container, alongside certbot for renewal
of HTTPS certificates, and then applications like Spothole in a separate container. In this case, there are a couple of
variations of the docker compose file above, and the nginx reverse proxy configuration covered [here](./nginx.md), that
you will want to make.
1. A port mapping is no longer required in the docker compose file; nginx will access into the docker container directly
on e.g. `http://spothole:8080`
2. Spothole and nginx will need to be on the same docker network.
So your `compose.yaml` might look like this:
```yaml
services:
spothole:
container_name: spothole
build:
context: https://git.ianrenton.com/ian/spothole.git#main
restart: unless-stopped
networks:
- docker-network
volumes:
- ./config.yml:/app/config.yml
- ./cache:/app/cache
networks:
docker-network:
external: true
```
In your nginx site configuration, you'll want to refer to the Spothole container directly, and drop the block that
allows nginx to access static files directly, as these will be inaccessible in another container. So you may end up
with something like:
```nginx
server {
server_name spothole.app;
# Global proxy settings
proxy_http_version 1.1;
proxy_set_header Connection "";
proxy_connect_timeout 10s;
proxy_buffering on;
# Pass on IP address and host information to Spothole, in case logging this information is required
proxy_set_header X-Real-IP $remote_addr;
proxy_set_header X-Forwarded-For $proxy_add_x_forwarded_for;
proxy_set_header Host $http_host;
proxy_set_header X-Forwarded-Proto $scheme;
# Wellknown area for Lets Encrypt
location /.well-known/acme-challenge/ {
root /var/www/certbot;
}
# SSE endpoints
location ~ ^/api/v2/(spots|alerts)/stream/? {
proxy_pass http://spothole:8080;
# Remove buffering, remove caching, add suitable timeouts for SSE API calls
proxy_buffering off;
proxy_cache off;
proxy_read_timeout 24h;
proxy_send_timeout 24h;
proxy_set_header X-Accel-Buffering no;
add_header Cache-Control no-store always;
# Allow cross-origin requests to API
proxy_hide_header Access-Control-Allow-Origin;
add_header Access-Control-Allow-Origin * always;
}
# Other API endpoints
location /api/ {
proxy_pass http://spothole:8080;
# Remove buffering, remove caching, add suitable timeouts for API calls
proxy_buffering off;
proxy_cache off;
proxy_read_timeout 30s;
add_header Cache-Control no-store always;
# Allow cross-origin requests to API
proxy_hide_header Access-Control-Allow-Origin;
add_header Access-Control-Allow-Origin * always;
}
# Templated pages and static assets
location / {
proxy_pass http://spothole:8080;
proxy_read_timeout 30s;
add_header Cache-Control "no-cache, must-revalidate" always;
}
listen 443 ssl;
listen [::]:443 ssl;
ssl_certificate /etc/letsencrypt/live/spothole.app/fullchain.pem;
ssl_certificate_key /etc/letsencrypt/live/spothole.app/privkey.pem;
include /etc/letsencrypt/options-ssl-nginx.conf;
ssl_dhparam /etc/letsencrypt/ssl-dhparams.pem;
}
server {
if ($host = spothole.app) {
return 301 https://$host$request_uri;
}
server_name spothole.app;
listen 80;
listen [::]:80;
return 404;
}
```
If desired, you could even change the port on which Spothole runs from 8080 to a plain 80, in which case your
`proxy_pass` statements could drop the `:8080` suffix. Since Spothole is in a container, it can serve HTTP on port 80
if desired, because it doesn't conflict with the host system.
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## Embedding Spothole in another website
You can embed Spothole's web interface in another website, e.g. for use as part of a ham radio custom dashboard.
URL parameters can be used to trigger an "embedded" mode which hides the headers, footers and settings. In this mode,
you provide configuration for the various filter and display options via additional URL parameters. Any settings that
the user has set for Spothole are ignored. This is so that the embedding site can select, for example, their choice of
dark mode or SIG filters, which will not impact how Spothole appears when the user accesses it directly. Effectively, it
becomes separate to their normal Spothole settings.
Setting `embedded` to true is important for the rest of the settings to be applied; otherwise, the user's defaults will
be used in preference to the URL params.
These are supplied with the URL to the page you want to embed, for example for an embedded version of the band map in
dark mode, use `https://spothole.app/bands?embedded=true&dark-mode=true`. For an embedded version of the main spots/home
page in the system light/dark mode, use `https://spothole.app/?embedded=true`. For dark mode showing 70cm TOTA spots
only, use `https://spothole.app/?embedded=true&dark-mode=true&sig=TOTA&band=70cm`. Providing no URL params causes the
page to be loaded in the normal way it would when accessed directly in the user's browser.
The supported parameters are as follows. Generally these match the equivalent parameters in the real Spothole API, where
a mapping exists.
| Name | Allowed Values | Default | Example | Description |
|------------------|-------------------------|---------|-------------------------|-----------------------------------------------------------------------------------------------------------------------------------------------------------------------|
| `embedded` | `true`, `false` | `false` | `?embedded=true` | Enables embedded mode. |
| `color-scheme` | `light`, `dark`, `auto` | `auto` | `?color-scheme=dark` | Forces light or dark mode in preference to the operating system default. |
| `time-zone` | `UTC`, `local` | `UTC` | `?time-zone=local` | Sets times to be in UTC or local time. |
| `limit` | 10, 25, 50, 100 | 50 | `?limit=50` | Sets the number of spots that will be displayed on the main spots page |
| `limit` | 25, 50, 100, 200, 500 | 100 | `?limit=100` | Sets the number of alerts that will be displayed on the alerts page |
| `max_age` | 300, 600, 1800, 3600 | 1800 | `?max_age=1800` | Sets the maximum age of spots displayed on the map and bands pages, in seconds. |
| `band` | Comma-separated list | (all) | `?band=20m,40m` | Sets the list of bands that will be shown on the spots, bands and map pages. Available options match the labels of the buttons in the standard web interface. |
| `sig` | Comma-separated list | (all) | `?sig=POTA,SOTA,NO_SIG` | Sets the list of SIGs that will be shown on the spots, bands and map pages. Available options match the labels of the buttons in the standard web interface. |
| `source` | Comma-separated list | (all) | `?source=Cluster` | Sets the list of sources that will be shown on any spot or alert pages. Available options match the labels of the buttons in the standard web interface. |
| `mode_type` | Comma-separated list | (all) | `?mode_type=PHONE,CW` | Sets the list of mode types that will be shown on the spots, bands and map pages. Available options match the labels of the buttons in the standard web interface. |
| `dx_continent` | Comma-separated list | (all) | `?dx_continent=NA,SA` | Sets the list of DX Continents that will be shown on any spot or alert pages. Available options match the labels of the buttons in the standard web interface. |
| `de_continent` | Comma-separated list | (all) | `?de_continent=EU` | Sets the list of DE Continents that will be shown on the spots, bands and map pages. Available options match the labels of the buttons in the standard web interface. |
| `map-center-lat` | Numeric (decimal) | (auto) | `?map-center-lat=51.5` | Sets the initial latitude of the map centre on the map page. If omitted, the map auto-fits to the loaded spots. |
| `map-center-lon` | Numeric (decimal) | (auto) | `?map-center-lon=-0.1` | Sets the initial longitude of the map centre on the map page. If omitted, the map auto-fits to the loaded spots. |
| `map-zoom` | Numeric (integer) | (auto) | `?map-zoom=6` | Sets the initial zoom level of the map on the map page. If omitted, the map auto-fits to the loaded spots. |
See the comment at the end of the next section regarding reliability and uptime of the "main" server.
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## Modifying the source code
Spothole is Public Domain licenced, so you can grab the source code and start modifying it for your own needs.
Contributions of code back to the main repository are encouraged, but completely optional.
### Code structure
To navigate your way around the source code, this list may help.
*Python back-end code*
* `/core` - Core classes and utilities
* `/data` - Data storage classes
* `/providers/spot` - Classes providing spots by accessing the APIs of other services
* `/providers/alert` - Classes providing alerts by accessing the APIs of other services
* `/providers/solarconditions` - Classes providing solar and propagation by accessing the APIs of other services
* `/providers/staticdata` - Classes providing static lookup data by accessing bundled data files or the APIs of other
services
* `/providers/sigrefdata` - Classes providing SIG reference lookup data by accessing bundled data files or the APIs of
other services
* `/server` - Classes for running Spothole's own web server
* `spothole.py` - Main application script
*Templates*
* `/templates` - Templates used for constructing Spothole's user-targeted HTML pages
*HTML/JS/CSS front-end code*
* `/static` - Root for static files served by the web server. These are all served from a path starting `/static/`.
* `/static/apidocs` - Contains the OpenAPI spec (`openapi.yml`)
* `/static/audio` - Audio files used by the web front-end
* `/static/css` - CSS files used by the web front-end
* `/static/img` - image files used by the web front-end
* `/static/js` - JavaScript used by the web front-end
* `/static/vendor` - Third-party libraries (CSS, JS, fonts and images)
*Miscellaneous*
* `/` - pip `requirements.txt`, config, README, etc.
* `/docs` - Documentation
* `/images` - Image sources
* `/datafiles` - Local data files, used by some providers when the data will never change and/or is not easily available
online in a format Spothole can handle
* `/cache` - Directory where Spothole stores all the data it uses that should be persisted to disk. Created on first
run.
### Extending the server
Spothole is designed to be easily extensible. If you want to write your own spot provider, for example, simply add a
module to the `providers.spot` package containing your class. (Currently, in order to be loaded correctly, the module (
file) name should be the same as the class name, but lower case.)
Your class should extend "SpotProvider"; if it operates by polling an HTTP Server on a timer, it can instead extend "
HTTPSpotProvider" where some of the work is done for you.
The class will need to implement a constructor that takes in the `provider_config` and provides it to the superclass
constructor, while also taking any other config parameters it needs.
If you're extending the base `SpotProvider` class, you will need to implement `start()` and `stop()` methods that start
and stop a separate thread which handles the provider's processing needs. The thread should call `submit()` or
`submit_batch()` when it has one or more spots to report.
If you're extending the `HTTPSpotProvider` class, you will need to provide a URI to query and an interval to the
superclass constructor. You'll then need to implement the `http_response_to_spots()` method which is called when new
data is retrieved. Your implementation should then call `submit()` or `submit_batch()` when it has one or more spots to
report.
When constructing spots, use the comments in the Spot class and the existing implementations as an example. All
parameters are optional, but you will at least want to provide a `time` (which must be timezone-aware) and a `dx_call`.
Finally, simply add the appropriate config to the `spot_providers` section of `config.yml`, and your provider should be
instantiated on startup.
The same approach as above is also used for alerts, and other types of providers. Give me a shout if you need any
advice.
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## Multiple cluster nodes with different settings
Dan, S50U has written in with his Spothole cluster settings. He is using a cluster node which provides RBN spots, and
uses different SSIDs on his callsign to get different settings when logged into the same cluster node. For example:
```
-
class: "DXCluster"
name: "S50CLX"
enabled: true
host: "s50clx.si"
port: 41112
login_prompt: "login: "
login_callsign: "callsign-10"
```
Telnet to DXSpider and log in with "callsign-10" and execute the following commands:
`CLEAR/SPOTS ALL` (delete all previous filters)<br/>
`UNSET/ANN` (stop announce messages)<br/>
`UNSET/WCY` (stop wcy messages)<br/>
`UNSET/WWV` (stop wwv messages)<br/>
`SET/DX` (enable human DX spots)
```
-
class: "DXCluster"
name: "RBN CW"
enabled: true
host: "s50clx.si"
port: 41112
login_prompt: "login: "
login_callsign: "callsign-11"
allow_rbn_spots: true
enabled-by-default-in-web-ui: false
```
Telnet to DXSpider and log in with "callsign-11" and execute the following commands:
`CLEAR/SPOTS ALL` (delete all previous filters)<br/>
`UNSET/ANN` (stop announce messages)<br/>
`UNSET/WCY` (stop wcy messages)<br/>
`UNSET/WWV` (stop wwv messages)<br/>
`UNSET/DX` (stop human DX spots)<br/>
`SET/SKIMMER CW` (enable CW RBN spots)
```
-
class: "DXCluster"
name: "RBN RTTY"
enabled: true
host: "s50clx.si"
port: 41112
login_prompt: "login: "
login_callsign: "callsign-12"
allow_rbn_spots: true
enabled-by-default-in-web-ui: false
```
Telnet to DXSpider and log in with "callsign-12" and execute the following commands:
`CLEAR/SPOTS ALL` (delete all previous filters)<br/>
`UNSET/ANN` (stop announce messages)<br/>
`UNSET/WCY` (stop wcy messages)<br/>
`UNSET/WWV` (stop wwv messages)<br/>
`UNSET/DX` (stop human DX spots)<br/>
`SET/SKIMMER RTTY` (enable RTTY RBN spots)
```
-
class: "DXCluster"
name: "RBN FT4/8"
enabled: true
host: "s50clx.si"
port: 41112
login_prompt: "login: "
login_callsign: "callsign-13"
allow_rbn_spots: true
enabled-by-default-in-web-ui: false
```
Telnet to DXSpider and log in with "callsign-13" and execute the following commands:
`CLEAR/SPOTS ALL` (delete all previous filters)<br/>
`UNSET/ANN` (stop announce messages)<br/>
`UNSET/WCY` (stop wcy messages)<br/>
`UNSET/WWV` (stop wwv messages)<br/>
`UNSET/DX` (stop human DX spots)<br/>
`SET/SKIMMER FT` (enable FT RBN spots)
For each callsign-SSID, we also specify our basic information with commands:
`SET/NAME Spothole10`, Spothole11... etc.<br/>
`SET/QTH Cerkno`<br/>
`SET/QRA JN66XD`<br/>
`SET/HOME S50CLX`
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## nginx Reverse Proxy configuration
Web servers generally serve their pages from port 80. However, it's best not to serve Spothole's web interface directly
on port 80, as that requires root privileges on a Linux system. It also and prevents us using HTTPS to serve a secure
site, since Spothole itself doesn't directly support acting as an HTTPS server. The normal solution to this is to use
a "reverse proxy" setup, where a general web server handles HTTP and HTTP requests (to port 80 & 443 respectively), then
passes on the request to the back-end application (in this case Spothole). nginx is a common choice for this general web
server.
To set up nginx as a reverse proxy that sits in front of Spothole, first ensure it's installed e.g.
`sudo apt install nginx`, and enabled e.g. `sudo systemd enable nginx`.
Create a file at `/etc/nginx/sites-available/` called `spothole`. Give it the following contents, replacing
`spothole.app` with the domain name on which you want to run Spothole. If you changed the port on which Spothole runs,
update that on the "proxy_pass" line, and if you installed Spothole somewhere other than `/home/spothole/spothole`,
adjust the alias location for serving static files.
(The latter section, configuring the nginx server to serve static files directly, improves efficiency because it saves
Spothole itself from serving JS, CSS etc. files. If you can't do this for some reason, e.g. your nginx and spothole are
on different computers, you can omit the `location /static/ {}` block.)
```nginx
server {
server_name spothole.app;
# Global proxy settings
proxy_http_version 1.1;
proxy_set_header Connection "";
proxy_connect_timeout 10s;
proxy_buffering on;
# Pass on IP address and host information to Spothole, in case logging this information is required
proxy_set_header X-Real-IP $remote_addr;
proxy_set_header X-Forwarded-For $proxy_add_x_forwarded_for;
proxy_set_header Host $http_host;
proxy_set_header X-Forwarded-Proto $scheme;
# Wellknown area for Lets Encrypt
location /.well-known/ {
alias /var/www/html/.well-known/;
}
# Load static assets directly from the Spothole static directory
location /static/ {
alias /home/spothole/spothole/static/;
expires 1h;
add_header Cache-Control "public, max-age=3600, must-revalidate";
}
# SSE endpoints
location ~ ^/api/v2/(spots|alerts)/stream/? {
proxy_pass http://127.0.0.1:8080;
# Remove buffering, remove caching, add suitable timeouts for SSE API calls
proxy_buffering off;
proxy_cache off;
proxy_read_timeout 24h;
proxy_send_timeout 24h;
proxy_set_header X-Accel-Buffering no;
add_header Cache-Control no-store always;
# Allow cross-origin requests to API
proxy_hide_header Access-Control-Allow-Origin;
add_header Access-Control-Allow-Origin * always;
}
# Other API endpoints
location /api/ {
proxy_pass http://127.0.0.1:8080;
# Remove buffering, remove caching, add suitable timeouts for API calls
proxy_buffering off;
proxy_cache off;
proxy_read_timeout 30s;
add_header Cache-Control no-store always;
# Allow cross-origin requests to API
proxy_hide_header Access-Control-Allow-Origin;
add_header Access-Control-Allow-Origin * always;
}
# Templated pages
location / {
proxy_pass http://127.0.0.1:8080;
proxy_read_timeout 30s;
add_header Cache-Control "no-cache, must-revalidate" always;
}
}
```
One further change you might want to make to the file above is the `add_header Access-Control-Allow-Origin` statements.
These are what's used on
my own Spothole server to make sure that other third-party web-based software can get the data from my instance, and
applies to any endpoint underneath `/api`. If you want
*your* Spothole instance to be set up the same way, so that others can write software in JavaScript that can access it,
leave this intact. But if you want your Spothole instance to only be usable by scripts running on the web server you
write,
you can remove these lines. (Note that this doesn't stop other people writing *non-web-based* software that accesses
your
Spothole API&mdash;the enforcement of cross-origin headers only happens within the user's browser. If you need to lock
your
instance down so that no-one else can access it with *any* software, that's an aspect of nginx or firewall config that
you will need
to find help with elsewhere.)
Now, make a symbolic link to enable the site:
```bash
cd /etc/nginx/sites-enabled
sudo ln -sf ../sites-available/spothole
```
Test that your nginx config isn't broken using `nginx -t`. If it works, restart nginx with
`sudo systemctl restart nginx`.
If you haven't already done so, set up a DNS entry to make sure requests for your domain name end up at the server
that's running Spothole.
You should now be able to access the web interface by going to the domain from your browser.
Once that's working, [install certbot](https://certbot.eff.org/instructions?ws=nginx&os=snap) onto your server. Run it
as root, and when prompted pick your domain name from the list. After a few seconds, it should successfully provision a
certificate and modify your nginx config files automatically. You should then be able to access the site via HTTPS.
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## Running your own copy
If you want to run a copy of Spothole with different configuration settings than the main instance, you can download it
and run it on your own local machine or server.
You will require Python version 3.8 or later. If you encounter an error about `gdal-config` during the following
process, you will also need `libgdal-dev` installed.
To download and set up Spothole on a Debian server, run the following commands. Other operating systems will likely be
similar.
```bash
git clone ssh://git@git.ianrenton.com/ian/spothole.git
cd spothole
python3 -m venv ./.venv
source .venv/bin/activate
pip install -r requirements.txt
deactivate
cp config-example.yml config.yml
```
Then edit `config.yml` in your text editor of choice to set up the software as you like it. Mostly, this will involve
enabling or disabling the various providers of spot and alert data.
By default, all outdoor programme providers are enabled, as is one cluster node and the NG3K DXpedition data. The RBN
spot providers are turned off by default due to the volume of traffic from CW/RTTY/FT8 skimmers, and the APRS and Packet
spot providers are off by default on the assumption that Spothole users want a spot with a human at the other end of it,
but all can be easily re-enabled.
Other parameters you will want to update include the base URL to your instance, and whether you want to serve a full
web-based DX cluster interface or just the API endpoints for client software to use.
`config.yml` has an entry for a Clublog API key. If provided, this will allow Spothole to retrieve some more information
about DX spots. The software will work just fine without it, but you may find a few country flags etc. are less accurate
or missing. Clublog API keys are free, but you'll need to get your own by submitting a helpdesk ticket and explaining
what you'll use it for. The admin team are happy with the rate of requests made by my Spothole server, so unless you
change the source code of yours to radically increase the rate of querying Clublog, I'm sure they will be fine with your
server too.
Once you're happy with the content of `config.yml`, you can proceed to running the software.
To run the software this time and any future times you want to run it directly from the command line:
```bash
source .venv/bin/activate
python3 spothole.py
```
The software can take a few seconds to start up, mostly because it is downloading an updated file to match callsigns to
countries. This is normal, don't panic! Once you see `You can access your copy of Spothole at
http://localhost:8080` in the log, your server is good to go.
If you see some errors on startup, check your configuration, e.g. in case you have specified a port for the web server
that is already in use by something else.
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## systemd configuration
If you want Spothole to run automatically on startup on a Linux distribution that uses `systemd`, follow the
instructions here. For distros that don't use `systemd`, or Windows/OSX/etc., you can find generic instructions for your
OS online.
Create a file at `/etc/systemd/system/spothole.service`. Give it the following content, adjusting for the user you want
to run it as and the directory in which you have installed it:
```
[Unit]
Description=Spothole
After=syslog.target network.target
[Service]
Type=simple
User=spothole
WorkingDirectory=/home/spothole/spothole
ExecStart=/home/spothole/spothole/.venv/bin/python /home/spothole/spothole/spothole.py --serve-in-foreground
Restart=on-abort
[Install]
WantedBy=multi-user.target
```
Run the following:
```bash
sudo systemctl daemon-reload
sudo systemctl enable spothole
sudo systemctl start spothole
```
Check the service has started up correctly with `sudo journalctl -u spothole -f`.
+1 -1
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@@ -25,7 +25,7 @@ class HTTPAlertProvider(AlertProvider):
# Fire off the polling thread. It will poll immediately on startup, then sleep for poll_interval between
# subsequent polls, so start() returns immediately and the application can continue starting.
logging.info("Set up query of " + self.name + " alert API every " + str(self._poll_interval) + " seconds.")
self._thread = Thread(target=self._run, daemon=True)
self._thread = Thread(target=self._run, name=f"HTTPAlertProvider-{self.name}")
self._thread.start()
def stop(self):
@@ -0,0 +1,28 @@
import logging
from datetime import datetime
from threading import Thread, Event
import pytz
from requests import ReadTimeout
from requests.exceptions import ConnectionError, ConnectTimeout
from core.constants import HTTP_HEADERS
from core.url_data_cache import URLDataCache
from providers.callsigndata.callsign_data_provider import CallsignDataProvider
class APIQueryCallsignDataProvider(CallsignDataProvider):
"""Generic callsign data provider class for providers that fetch their data from the web on-demand using an API."""
def __init__(self, name, provider_config, storage):
""" Set up the provider."""
super().__init__(name, provider_config, storage)
if self.enabled:
self.status = "Ready"
def start(self):
pass
def stop(self):
pass
@@ -0,0 +1,59 @@
import logging
from datetime import datetime
import pytz
from core.data_store import DATA_STORE
class CallsignDataProvider:
"""Generic callsign reference data provider class. Subclasses of this set up the various mechanisms via which
Spothole can look up data for callsigns."""
def __init__(self, name, provider_config, storage):
"""Constructor. As well as name and config, provide the storage object from DATA_STORE that will be used to
store the result of lookups to speed up future access."""
self.name = name
self.enabled = provider_config["enabled"]
self.priority = int(provider_config["priority"])
self.last_update_time = datetime.min.replace(tzinfo=pytz.UTC)
self.status = "Not Started" if self.enabled else "Disabled"
self.lookup_count = 0
self._storage = storage
def start(self):
"""Start the provider. This should return immediately after spawning threads to access remote resources, if
needed."""
raise NotImplementedError("Subclasses must implement this method")
def stop(self):
"""Stop any threads and prepare for application shutdown"""
raise NotImplementedError("Subclasses must implement this method")
def lookup(self, callsign, lookup_credentials):
"""Looks up data for the provided callsign. Takes a LookupCredentials object, which provides any credentials
that have been provided by the user for this session (QRZ.com/HamQTH) to allow us to look up using those
services on the user's behalf. (Clublog is looked up using an API key owned by the server and provided in its
config file, so users need not provide their own.) Returns a Callsign object with as much data populated as
possible. Data is cached internally for a set period of 30 days to avoid the need to request data from servers
each time."""
if self.enabled:
if callsign in self._storage:
return self._storage[callsign]
else:
c = self._perform_new_lookup(callsign, lookup_credentials)
if c:
self._storage.set(callsign, c, expire=DATA_STORE.CALLSIGN_DATA_TTL_SEC)
return c
else:
return None
def _perform_new_lookup(self, callsign, lookup_credentials):
"""Makes a new request to the data source for callsign data."""
raise NotImplementedError("Subclasses must implement this method")
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import logging
from datetime import datetime
import pytz
from pyhamtools import LookupLib, Callinfo
from core.data_store import DATA_STORE
from core.utils import get_callsign_object_from_pyhamtools_callinfo
from data.callsign import Callsign
from providers.callsigndata.api_query_callsign_data_provider import APIQueryCallsignDataProvider
class ClublogAPI(APIQueryCallsignDataProvider):
"""Callsign data provider for Clublog's API."""
_callinfo = None
def __init__(self, provider_config):
# API key required for this provider
self._api_key = provider_config.get("api-key", "")
if self._api_key != "":
lookuplib = LookupLib(lookuptype="clublogapi", apikey=self._api_key)
self._callinfo = Callinfo(lookuplib)
else:
provider_config["enabled"] = False
logging.warning(
"Clublog XML callsign data provider configured but no api key was provided, this has been disabled.")
super().__init__("Clublog API", provider_config, DATA_STORE.callsign_data_clublogapi)
def _perform_new_lookup(self, callsign, lookup_credentials):
callsign_data = Callsign(call=callsign)
try:
if self._callinfo:
callsign_data = get_callsign_object_from_pyhamtools_callinfo(callsign, self._callinfo)
self.status = "OK"
self.last_update_time = datetime.now(pytz.UTC)
self.lookup_count += 1
else:
return None
except Exception as e:
self.status = "Error"
logging.error("Exception when looking up data from Clublog API", e, exc_info=True)
return callsign_data
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import gzip
import logging
from datetime import datetime
import pytz
from pyhamtools import LookupLib, Callinfo
from core.data_store import DATA_STORE
from core.utils import get_callsign_object_from_pyhamtools_callinfo
from data.callsign import Callsign
from providers.callsigndata.file_download_callsign_data_provider import FileDownloadCallsignDataProvider
class ClublogXML(FileDownloadCallsignDataProvider):
"""Callsign data provider for ClubLog's Country File, which provides basic callsign to DXCC entity mapping."""
POLL_INTERVAL_DAYS = 30
DATA_URL = "https://cdn.clublog.org/cty.php"
CACHE_PATH_ZIPPED = "cache/cty.xml.gz"
CACHE_PATH_UNZIPPED = "cache/cty.xml"
_callinfo = None
def __init__(self, provider_config):
# API key required for this provider
self._api_key = provider_config.get("api-key", "")
if self._api_key == "":
provider_config["enabled"] = False
logging.warning(
"Clublog XML callsign data provider configured but no api key was provided, this has been disabled.")
super().__init__("Clublog XML", provider_config, self.DATA_URL + "?api=" + self._api_key,
self.CACHE_PATH_ZIPPED, self.POLL_INTERVAL_DAYS, DATA_STORE.callsign_data_clublogxml)
def _handle_file(self, path):
try:
# The download from Clublog is gzipped so we need to uncompress that and re-save as a separate file that
# the LookupLib can actually use.
with gzip.open(path, "rb") as uncompressed:
file_content = uncompressed.read()
assert isinstance(file_content, bytes)
with open(self.CACHE_PATH_UNZIPPED, "wb") as f:
f.write(file_content)
f.flush()
# Now load the data
lookuplib = LookupLib(lookuptype="clublogxml", filename=self.CACHE_PATH_UNZIPPED)
self._callinfo = Callinfo(lookuplib)
return True
except Exception as e:
logging.error("Exception when loading Clublog XML.", e, exc_info=True)
return False
def _perform_new_lookup(self, callsign, lookup_credentials):
callsign_data = Callsign(call=callsign)
try:
if self._callinfo:
callsign_data = get_callsign_object_from_pyhamtools_callinfo(callsign, self._callinfo)
self.status = "OK"
self.lookup_count += 1
else:
return None
except Exception as e:
self.status = "Error"
logging.error("Exception when looking up data from Clublog XML data", e, exc_info=True)
return callsign_data
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import logging
from pyhamtools import LookupLib, Callinfo
from core.data_store import DATA_STORE
from core.utils import get_callsign_object_from_pyhamtools_callinfo
from data.callsign import Callsign
from providers.callsigndata.file_download_callsign_data_provider import FileDownloadCallsignDataProvider
class CountryFiles(FileDownloadCallsignDataProvider):
"""Callsign data provider for Country-files.com, which provides basic callsign to DXCC entity mapping."""
POLL_INTERVAL_DAYS = 30
DATA_URL = "https://www.country-files.com/cty/cty.plist"
CACHE_PATH = "cache/cty.plist"
_callinfo = None
def __init__(self, provider_config):
super().__init__("CountryFiles.com", provider_config, self.DATA_URL, self.CACHE_PATH, self.POLL_INTERVAL_DAYS,
DATA_STORE.callsign_data_countryfiles)
def _handle_file(self, path):
try:
lookuplib = LookupLib(lookuptype="countryfile", filename=path)
self._callinfo = Callinfo(lookuplib)
return True
except Exception as e:
logging.error("Exception when loading Country Files cty.plist.", e, exc_info=True)
return False
def _perform_new_lookup(self, callsign, lookup_credentials):
callsign_data = Callsign(call=callsign)
try:
if self._callinfo:
callsign_data = get_callsign_object_from_pyhamtools_callinfo(callsign, self._callinfo)
self.status = "OK"
self.lookup_count += 1
else:
return None
except Exception as e:
self.status = "Error"
logging.error("Exception when looking up data from Country file", e, exc_info=True)
return callsign_data
@@ -0,0 +1,87 @@
import logging
from datetime import datetime
from threading import Thread, Event
import pytz
from requests import ReadTimeout
from requests.exceptions import ConnectionError, ConnectTimeout
from core.constants import HTTP_HEADERS
from core.url_data_cache import URLDataCache
from providers.callsigndata.callsign_data_provider import CallsignDataProvider
class FileDownloadCallsignDataProvider(CallsignDataProvider):
"""Generic callsign data provider class for providers that fetch their data from the web by downloading a file."""
def __init__(self, name, provider_config, url, cache_file_path, poll_interval, storage):
""" Set up the provider, note poll_interval is in *days*."""
super().__init__(name, provider_config, storage)
self._url = url
self._cache_file_path = cache_file_path
self._poll_interval = poll_interval
self._thread = None
self._stop_event = Event()
self._url_data_cache = URLDataCache("callsigndata_" + name)
if self.enabled:
self.status = "Ready"
def start(self):
# Fire off the polling thread. It will poll immediately on startup, then sleep for poll_interval between
# subsequent polls, so start() returns immediately and the application can continue starting.
logging.info(
"Set up query of " + self.name + " callsign reference data every " + str(self._poll_interval) + " days.")
self._thread = Thread(target=self._run, name=f"FileDownloadCallsignDataProvider-{self.name}")
self._thread.start()
def stop(self):
self._stop_event.set()
def _run(self):
while True:
self._poll()
if self._stop_event.wait(timeout=self._poll_interval * 60 * 60 * 24):
break
def _poll(self):
try:
# Request the file. Use the data cache (with a TTL of 1 day) here, not as the main mechanism for
# caching, but just so continual restarts of the software during testing don't hammer the servers.
logging.debug("Downloading " + self.name + " callsign reference data...")
http_response = self._url_data_cache.get(self._url, headers=HTTP_HEADERS)
# Check response code was good
if http_response.ok:
# Save the data to a local file
with open(self._cache_file_path, "wb") as f:
f.write(http_response.content)
f.flush()
# Pass off to the subclass for processing
ok = self._handle_file(self._cache_file_path)
if ok:
self.status = "OK"
self.last_update_time = datetime.now(pytz.UTC)
logging.info("Updated callsign reference data from " + self.name)
else:
self.status = "Error"
logging.warning(f"Error updating callsign reference data from {self.name}.")
else:
self.status = "Error"
logging.warning(f"HTTP {http_response.status_code} when downloading callsign reference data from {self.name}.")
except ConnectionError:
self.status = "Error"
logging.warning(f"Connection error when downloading callsign reference data from {self.name}.")
except (ConnectTimeout, ReadTimeout):
self.status = "Error"
logging.warning(f"Timeout when downloading callsign reference data from {self.name}.")
except Exception:
self.status = "Error"
logging.exception("Exception in callsign reference data provider (" + self.name + ")")
self._stop_event.wait(timeout=1)
def _handle_file(self, path):
"""Handle an updated file downloaded from the server. Return true if successful, false otherwise."""
raise NotImplementedError("Subclasses must implement this method")
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import logging
import urllib.parse
from datetime import timedelta, datetime
import pytz
import xmltodict
from pyhamtools import callinfo
from requests import ConnectTimeout, ReadTimeout
from requests_cache import CachedSession
from core.config import SERVER_OWNER_CALLSIGN
from core.constants import HTTP_HEADERS, SOFTWARE_VERSION
from core.data_store import DATA_STORE, CACHE_DIR
from core.url_data_cache import URLDataCache
from data.callsign import Callsign
from providers.callsigndata.api_query_callsign_data_provider import APIQueryCallsignDataProvider
class HamQTH(APIQueryCallsignDataProvider):
"""Callsign data provider for HamQTH."""
def __init__(self, provider_config):
super().__init__("HamQTH", provider_config, DATA_STORE.callsign_data_hamqth)
self._HAMQTH_BASE_URL = "https://www.hamqth.com/xml.php"
self._PRG = ("Spothole v" + SOFTWARE_VERSION + " operated by " + SERVER_OWNER_CALLSIGN).replace(" ", "_")
self._URL_DATA_CACHE = URLDataCache("hamqth")
# Separate URL cache for session key lookups. Once a session key is returned from logging in with a username
# and password, this is valid for an hour, so our cache stores this specifically for 55 minutes.
self._CREDENTIALS_CACHE = CachedSession(CACHE_DIR + "/urls/hamqth-creds",
expire_after=timedelta(minutes=55))
def _perform_new_lookup(self, callsign, lookup_credentials):
# If we don't have HamQTH credentials, skip this lookup Return None so we don't *cache* the lack of data, because
# # someone might provide credentials next time around.
if not lookup_credentials or not ((lookup_credentials.hamqth_username and lookup_credentials.hamqth_password)
or lookup_credentials.hamqth_session_id):
return None
try:
# Obtain session key from credentials, by looking it up from username & password if necessary.
session_id = None
if lookup_credentials.hamqth_session_id:
session_id = lookup_credentials.hamqth_session_id
elif lookup_credentials.hamqth_username and lookup_credentials.hamqth_password:
try:
session_data = self._CREDENTIALS_CACHE.get(
self._HAMQTH_BASE_URL + "?u=" + urllib.parse.quote_plus(lookup_credentials.hamqth_username) +
"&p=" + urllib.parse.quote_plus(lookup_credentials.hamqth_password),
headers=HTTP_HEADERS).content
dict_data = xmltodict.parse(session_data)
if "session_id" in dict_data["HamQTH"]["session"]:
session_id = str(dict_data["HamQTH"]["session"]["session_id"])
else:
# Log this failure at debug level only, not our problem if user entered the wrong password.
logging.debug("HamQTH login details incorrect, failed to look up with HamQTH.")
return None
except Exception:
logging.error("Exception when getting HamQTH session key")
return None
if not session_id:
return None
# Try the call as given, then fall back to the base call (strips /P, /M etc.)
calls_to_try = [callsign]
try:
home_call = callinfo.Callinfo.get_homecall(callsign)
if home_call != callsign:
calls_to_try.append(home_call)
except ValueError:
logging.debug("Could not look up home call for callsign %s", callsign)
# Try looking up each call using the API
for lookup_call in calls_to_try:
try:
response = self._URL_DATA_CACHE.get(
self._HAMQTH_BASE_URL + "?id=" + session_id + "&callsign=" + urllib.parse.quote_plus(
lookup_call) + "&prg=" + self._PRG, headers=HTTP_HEADERS, timeout=10)
if response.ok:
# Found data, convert it to our object and return it
data = xmltodict.parse(response.content)["HamQTH"]["search"]
self.status = "OK"
self.last_update_time = datetime.now(pytz.UTC)
self.lookup_count += 1
return self.hamqth_response_to_callsign(callsign, data)
elif not response.from_cache:
logging.warning("HTTP %d looking up callsign %s using HamQTH", response.status_code,
lookup_call)
except (KeyError, ValueError):
continue
except ConnectionError:
logging.warning(f"Connection error when looking up callsign %s using HamQTH", lookup_call)
continue
except (ConnectTimeout, ReadTimeout):
logging.warning(f"Timeout when looking up callsign %s using HamQTH", lookup_call)
continue
except Exception:
logging.error("Exception when looking up callsign %s using HamQTH", lookup_call, exc_info=True)
continue
# Not found in HamQTH; return a Callsign object with no data so we cache that and don't keep retrying
return Callsign(call=callsign)
except Exception as e:
self.status = "Error"
logging.error("Exception when looking up data from HamQTH", e, exc_info=True)
# Return None, this won't be cached so we will be asked to query data again for this call next time.
return None
@staticmethod
def hamqth_response_to_callsign(callsign, data):
"""Convert the "Callsign" block in HamQTH's API response to our own Callsign object."""
# Check for sensible latitudes
lat = None
lon = None
if "latitude" in data and "longitude" in data and (
float(data["latitude"]) != 0 or float(data["longitude"]) != 0) and -89.9 < float(
data["latitude"]) < 89.9:
lat = float(data["latitude"])
lon = float(data["longitude"])
# Check for sensible grids
grid = None
if "grid" in data and not data["grid"].startswith("AA00"):
grid = data["grid"]
return Callsign(call=callsign,
home_call=callinfo.Callinfo.get_homecall(callsign),
name=data["nick"] if "nick" in data else None,
qth=data["qth"] if "qth" in data else None,
country=data["country"] if "country" in data else None,
continent=data["continent"] if "continent" in data else None,
latitude=lat,
longitude=lon,
grid=grid,
dxcc_id=int(data["adif"]) if "adif" in data else None,
cq_zone=int(data["cq"]) if "cq" in data else None,
itu_zone=int(data["itu"]) if "itu" in data else None,
location_source="HOME QTH")
+162
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import logging
import urllib.parse
from datetime import timedelta, datetime
import pytz
import xmltodict
from pyhamtools import callinfo
from requests import ConnectTimeout, ReadTimeout
from requests_cache import CachedSession
from core.constants import HTTP_HEADERS
from core.data_store import DATA_STORE, CACHE_DIR
from core.url_data_cache import URLDataCache
from data.callsign import Callsign
from providers.callsigndata.api_query_callsign_data_provider import APIQueryCallsignDataProvider
class QRZ(APIQueryCallsignDataProvider):
"""Callsign data provider for QRZ.com."""
def __init__(self, provider_config):
super().__init__("QRZ.com", provider_config, DATA_STORE.callsign_data_qrz)
self._QRZ_BASE_URL = "https://xmldata.qrz.com/xml/current/"
self._URL_DATA_CACHE = URLDataCache("qrz")
# Separate URL cache for session key lookups. Once a session key is returned from logging in with a username
# and password, this is valid for an hour, so our cache stores this specifically for 55 minutes.
self._CREDENTIALS_CACHE = CachedSession(CACHE_DIR + "/urls/qrz-creds",
expire_after=timedelta(minutes=55))
def _perform_new_lookup(self, callsign, lookup_credentials):
# If we don't have QRZ credentials, skip this lookup. Return None so we don't *cache* the lack of data, because
# someone might provide credentials next time around.
if not lookup_credentials or not ((lookup_credentials.qrz_username and lookup_credentials.qrz_password)
or lookup_credentials.qrz_session_key):
return None
try:
# Obtain session key from credentials, by looking it up from username & password if necessary.
session_key = None
if lookup_credentials.qrz_session_key:
session_key = lookup_credentials.qrz_session_key
elif lookup_credentials.qrz_username and lookup_credentials.qrz_password:
try:
login_response = self._CREDENTIALS_CACHE.get(
self._QRZ_BASE_URL + "?username=" + urllib.parse.quote_plus(lookup_credentials.qrz_username) +
"&password=" + urllib.parse.quote_plus(lookup_credentials.qrz_password) + "&agent=spothole",
headers=HTTP_HEADERS).content
login_data = xmltodict.parse(login_response)
session = login_data.get("QRZDatabase", {}).get("Session", {})
if "Key" in session:
session_key = str(session["Key"])
else:
# Log this failure at debug level only, not our problem if user entered the wrong password.
logging.debug("QRZ.com login details incorrect, failed to look up with QRZ.")
return None
except Exception:
logging.error("Exception when getting QRZ.com session key")
return None
if not session_key:
return None
# Try the call as given, then fall back to the base call (strips /P, /M etc.)
calls_to_try = [callsign]
try:
home_call = callinfo.Callinfo.get_homecall(callsign)
if home_call != callsign:
calls_to_try.append(home_call)
except ValueError:
logging.debug("Could not look up home call for callsign %s", callsign)
# Try looking up each call using the API
for lookup_call in calls_to_try:
try:
response = self._URL_DATA_CACHE.get(
self._QRZ_BASE_URL + "?s=" + session_key + "&callsign=" + urllib.parse.quote_plus(lookup_call),
headers=HTTP_HEADERS, timeout=10)
if response.ok:
qrz_response = xmltodict.parse(response.content).get("QRZDatabase", {})
if qrz_response:
if "Callsign" in qrz_response:
qrz_data = qrz_response.get("Callsign")
self.status = "OK"
self.last_update_time = datetime.now(pytz.UTC)
self.lookup_count += 1
# Found data, convert it to our object and return it
return self.qrz_response_to_callsign(callsign, qrz_data)
elif "Session" in qrz_response and "Error" in qrz_response.get("Session"):
# Errors here are normally just "callsign not in database", no need to log that ourselves
# above debug level.
logging.debug("QRZ returned an error looking up callsign %s: %s", lookup_call,
qrz_response.get("Session").get("Error"))
elif not response.from_cache:
logging.warning("QRZ returned a malformed response looking up callsign %s", lookup_call)
elif not response.from_cache:
logging.warning("HTTP %d looking up callsign %s using QRZ", lookup_call)
except (KeyError, ValueError):
continue
except ConnectionError:
logging.warning(f"Connection error when looking up callsign %s using QRZ", lookup_call)
continue
except (ConnectTimeout, ReadTimeout):
logging.warning(f"Timeout when looking up callsign %s using QRZ.", lookup_call)
continue
except Exception:
logging.error("Exception when looking up callsign %s using QRZ", lookup_call, exc_info=True)
continue
# Not found in QRZ; return a Callsign object with no data so we cache that and don't keep retrying
return Callsign(call=callsign)
except Exception as e:
self.status = "Error"
logging.error("Exception when looking up data from QRZ.com", e, exc_info=True)
# Return None, this won't be cached so we will be asked to query data again for this call next time.
return None
@staticmethod
def qrz_response_to_callsign(callsign, data):
"""Convert the "Callsign" block in QRZ's API response to our own Callsign object."""
# Get a name
name = None
if "name_fmt" in data:
name = data["name_fmt"]
if "fname" in data:
name = data["fname"]
if "nick" in data:
name = name + " \"" + data["nick"] + "\""
if "name" in data:
name = name + " " + data["name"]
# Check for sensible latitudes
lat = None
lon = None
if "latitude" in data and "longitude" in data and (
float(data["latitude"]) != 0 or float(data["longitude"]) != 0) and -89.9 < float(
data["latitude"]) < 89.9:
lat = float(data["latitude"])
lon = float(data["longitude"])
# Check for sensible grids
grid = None
if "grid" in data and not data["grid"].startswith("AA00"):
grid = data["grid"]
return Callsign(call=callsign,
home_call=callinfo.Callinfo.get_homecall(callsign),
name=name,
qth=data["addr2"] if "addr2" in data else None,
country=data["country"] if "country" in data else None,
continent=data["continent"] if "continent" in data else None,
latitude=lat,
longitude=lon,
grid=grid,
dxcc_id=int(data["adif"]) if "adif" in data else None,
cq_zone=int(data["cqzone"]) if "cqzone" in data else None,
itu_zone=int(data["ituzone"]) if "ituzone" in data else None,
location_source="HOME QTH")
@@ -28,7 +28,7 @@ class FileDownloadSIGRefDataProvider(SIGRefDataProvider):
# subsequent polls, so start() returns immediately and the application can continue starting.
logging.info(
"Set up query of " + self.sig_name + " SIG ref data every " + str(self._poll_interval) + " days.")
self._thread = Thread(target=self._run, daemon=True)
self._thread = Thread(target=self._run, name=f"FileDownloadSIGRefDataProvider-{self.sig_name}")
self._thread.start()
def stop(self):
+1 -1
View File
@@ -58,7 +58,7 @@ class GIROIonosonde(SolarConditionsProvider):
def start(self):
logging.info(f"Set up query of GIRO ionosonde data API every {POLL_INTERVAL} seconds.")
self._thread = Thread(target=self._run, daemon=True)
self._thread = Thread(target=self._run, name="GIROIonosondeDataProvider")
self._thread.start()
def stop(self):
@@ -24,7 +24,7 @@ class HTTPSolarConditionsProvider(SolarConditionsProvider):
def start(self):
logging.info(
"Set up query of " + self.name + " solar conditions API every " + str(self._poll_interval) + " seconds.")
self._thread = Thread(target=self._run, daemon=True)
self._thread = Thread(target=self._run, name=f"HTTPSolarConditionsProvider-{self.name}")
self._thread.start()
def stop(self):
+1 -1
View File
@@ -30,7 +30,7 @@ class KC2GProp(SolarConditionsProvider):
def start(self):
logging.info(f"Set up query of KC2G ionosonde data API every {POLL_INTERVAL} seconds.")
self._thread = Thread(target=self._run, daemon=True)
self._thread = Thread(target=self._run, name="KC2GPropProvider")
self._thread.start()
def stop(self):
+1 -1
View File
@@ -15,7 +15,7 @@ class APRSIS(SpotProvider):
def __init__(self, provider_config):
super().__init__("APRS-IS", provider_config)
self._thread = Thread(target=self._connect)
self._thread = Thread(target=self._connect, name="APRSISSpotProvider")
self._thread.daemon = True
self._aprsis = None
+1 -1
View File
@@ -36,7 +36,7 @@ class DXCluster(SpotProvider):
self._allow_rbn_spots = provider_config["allow_rbn_spots"] if "allow_rbn_spots" in provider_config else False
self._spot_line_pattern = self._LINE_PATTERN_ALLOW_RBN if self._allow_rbn_spots else self._LINE_PATTERN_EXCLUDE_RBN
self._telnet = None
self._thread = Thread(target=self._handle)
self._thread = Thread(target=self._handle, name=f"DXClusterSpotProvider-{self.name}")
self._thread.daemon = True
self._running = True
+16 -6
View File
@@ -35,6 +35,10 @@ class GMA(HTTPSpotProvider):
if "RCD" in http_response.json():
for source_spot in http_response.json()["RCD"]:
# Convert to our spot format
# Seen GMA spots with no (or empty) lat/lon
lat = float(source_spot["LAT"]) if (source_spot["LAT"] and source_spot["LAT"] != "") else None
lon = float(source_spot["LON"]) if (source_spot["LON"] and source_spot["LON"] != "") else None
spot = Spot(source=self.name,
dx_call=source_spot["ACTIVATOR"].upper(),
de_call=source_spot["SPOTTER"].upper(),
@@ -44,14 +48,12 @@ class GMA(HTTPSpotProvider):
# Filter out some weird mode strings
mode=source_spot["MODE"].upper() if "<>" not in source_spot["MODE"] else None,
comment=source_spot["TEXT"],
sig_refs=[SIGRef(id=source_spot["REF"], sig="", name=source_spot["NAME"])],
sig_refs=[SIGRef(id=source_spot["REF"], sig="", name=source_spot["NAME"], latitude=lat,
longitude=lon)],
time=datetime.strptime(source_spot["DATE"] + source_spot["TIME"], "%Y%m%d%H%M").replace(
tzinfo=pytz.UTC).timestamp(),
# Seen GMA spots with no (or empty) lat/lon
dx_latitude=float(source_spot["LAT"]) if (
source_spot["LAT"] and source_spot["LAT"] != "") else None,
dx_longitude=float(source_spot["LON"]) if (
source_spot["LON"] and source_spot["LON"] != "") else None,
dx_latitude=lat,
dx_longitude=lon,
qrt=source_spot["QRG"] == "QRT")
# GMA doesn't give what programme (SIG) the reference is for until we separately look it up.
@@ -113,3 +115,11 @@ class GMA(HTTPSpotProvider):
logging.warning(f"The GMA API returned an unexpected response (HTTP {http_response.status_code}).")
return new_spots
def can_submit_spot(self, sig):
return sig == "GMA"
def submit_spot(self, spot, credentials):
# TODO: Implement.
# Spotting to GMA is documented: https://www.cqgma.org/api/doc/apigma_spot.pdf We (or the user) need a GMA account, and to send the password in plaintext(!!)
raise NotImplementedError("GMA upstream spot submission is not yet implemented")
+10 -1
View File
@@ -59,7 +59,8 @@ class HEMA(HTTPSpotProvider):
mode=freq_mode_match.group(2).upper(),
comment=spotter_comment_match.group(2),
sig="HEMA",
sig_refs=[SIGRef(id=spot_items[3].upper(), sig="HEMA", name=spot_items[4])],
sig_refs=[SIGRef(id=spot_items[3].upper(), sig="HEMA", name=spot_items[4],
latitude=float(spot_items[7]), longitude=float(spot_items[8]))],
time=datetime.strptime(spot_items[0], "%d/%m/%Y %H:%M").replace(
tzinfo=pytz.UTC).timestamp(),
dx_latitude=float(spot_items[7]),
@@ -73,3 +74,11 @@ class HEMA(HTTPSpotProvider):
except ConnectionError:
logging.warning("Connection error when accessing HEMA spots API.")
return new_spots
def can_submit_spot(self, sig):
return sig == "HEMA"
def submit_spot(self, spot, credentials):
# TODO: Implement. Currently blocked awaiting their API team to make a change to allow us to spot with a
# reference and not a reference *number*.
raise NotImplementedError("HEMA upstream spot submission is not yet implemented")
+11 -2
View File
@@ -21,21 +21,30 @@ class HTTPSpotProvider(SpotProvider):
self._poll_interval = poll_interval
self._thread = None
self._stop_event = Event()
self._wakeup_event = Event()
def start(self):
# Fire off the polling thread. It will poll immediately on startup, then sleep for poll_interval between
# subsequent polls, so start() returns immediately and the application can continue starting.
logging.info("Set up query of " + self.name + " spot API every " + str(self._poll_interval) + " seconds.")
self._thread = Thread(target=self._run, daemon=True)
self._thread = Thread(target=self._run, name=f"HTTPSpotProvider-{self.name}")
self._thread.start()
def stop(self):
self._stop_event.set()
self._wakeup_event.set()
def force_poll(self):
"""Trigger an immediate poll without waiting for the normal interval."""
self._wakeup_event.set()
def _run(self):
while True:
self._wakeup_event.clear()
self._poll()
if self._stop_event.wait(timeout=self._poll_interval):
self._wakeup_event.wait(timeout=self._poll_interval)
if self._stop_event.is_set():
break
def _poll(self):
+29
View File
@@ -3,7 +3,9 @@ import re
from datetime import datetime
import pytz
import requests
from core.constants import HTTP_HEADERS
from data.sig_ref import SIGRef
from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -14,7 +16,9 @@ class ParksNPeaks(HTTPSpotProvider):
POLL_INTERVAL_SEC = 120
SPOTS_URL = "https://www.parksnpeaks.org/api/ALL"
SUBMIT_URL = "https://www.parksnpeaks.org/api/SPOT/"
SIOTA_LIST_URL = "https://www.silosontheair.com/data/silos.csv"
SUBMITTABLE_SIGS = ["POTA", "SOTA", "WWFF", "HEMA", "WOTA", "ZLOTA", "SIOTA", "KRMNPA"]
def __init__(self, provider_config):
super().__init__("ParksNPeaks", provider_config, self.SPOTS_URL, self.POLL_INTERVAL_SEC)
@@ -63,3 +67,28 @@ class ParksNPeaks(HTTPSpotProvider):
# Add new spot to the list
new_spots.append(spot)
return new_spots
def can_submit_spot(self, sig):
return sig in self.SUBMITTABLE_SIGS
def submit_spot(self, spot, credentials):
# TODO test this works
user_id = credentials.get("user_id", "")
api_key = credentials.get("api_key", "")
if not user_id or not api_key:
raise ValueError(
"Parks N Peaks user ID and API key are required. Get yours from your Parks N Peaks account.")
sig_ref = spot.sig_refs[0].id if spot.sig_refs else ""
body = {
"actClass": spot.sig or "",
"actCallsign": spot.dx_call,
"actSite": sig_ref,
"mode": spot.mode or "",
"freq": str(spot.freq / 1000000.0),
"comments": spot.comment or "",
"userID": user_id,
"APIKey": api_key,
}
response = requests.post(self.SUBMIT_URL, json=body, headers=HTTP_HEADERS, timeout=(5, 30))
if not response.ok:
raise RuntimeError("Parks N Peaks API returned " + str(response.status_code) + ": " + response.text)
+27 -1
View File
@@ -1,7 +1,9 @@
from datetime import datetime
import pytz
import requests
from core.constants import HTTP_HEADERS
from data.sig_ref import SIGRef
from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -12,6 +14,7 @@ class POTA(HTTPSpotProvider):
POLL_INTERVAL_SEC = 120
SPOTS_URL = "https://api.pota.app/spot/activator"
SUBMIT_URL = "https://api.pota.app/spot"
def __init__(self, provider_config):
super().__init__("POTA", provider_config, self.SPOTS_URL, self.POLL_INTERVAL_SEC)
@@ -29,7 +32,8 @@ class POTA(HTTPSpotProvider):
mode=source_spot["mode"].upper(),
comment=source_spot["comments"],
sig="POTA",
sig_refs=[SIGRef(id=source_spot["reference"], sig="POTA", name=source_spot["name"])],
sig_refs=[SIGRef(id=source_spot["reference"], sig="POTA", name=source_spot["name"],
latitude=source_spot["latitude"], longitude=source_spot["longitude"])],
time=datetime.strptime(source_spot["spotTime"], "%Y-%m-%dT%H:%M:%S").replace(
tzinfo=pytz.UTC).timestamp(),
dx_grid=source_spot["grid6"],
@@ -40,3 +44,25 @@ class POTA(HTTPSpotProvider):
# that for us.
new_spots.append(spot)
return new_spots
def can_submit_spot(self, sig):
return sig == "POTA"
def submit_spot(self, spot, credentials):
sig_ref = spot.sig_refs[0].id if spot.sig_refs else None
if sig_ref:
body = {
"activator": spot.dx_call,
"spotter": spot.de_call,
"frequency": str(spot.freq / 1000.0),
"mode": spot.mode or "",
"reference": sig_ref,
"comments": spot.comment or "",
"source": "Spothole",
}
headers = {**HTTP_HEADERS, "Content-Type": "application/json"}
response = requests.post(self.SUBMIT_URL, json=body, headers=headers, timeout=(5, 30))
if not response.ok:
raise RuntimeError("POTA API returned " + str(response.status_code) + ": " + response.text)
else:
raise RuntimeError("Park reference is required for submitting POTA spots.")
+1 -1
View File
@@ -27,7 +27,7 @@ class RBN(SpotProvider):
super().__init__(name, provider_config)
self._port = provider_config["port"]
self._telnet = None
self._thread = Thread(target=self._handle)
self._thread = Thread(target=self._handle, name=f"RBNSpotProvider-{self.name}")
self._thread.daemon = True
self._running = True
+52 -2
View File
@@ -4,7 +4,7 @@ from datetime import datetime
import requests
from requests.exceptions import ConnectionError, ReadTimeout, ConnectTimeout
from core.constants import HTTP_HEADERS
from core.constants import HTTP_HEADERS, SSB_SUB_MODES, DV_SUB_MODES
from data.sig_ref import SIGRef
from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -20,6 +20,9 @@ class SOTA(HTTPSpotProvider):
EPOCH_URL = "https://api-db2.sota.org.uk/api/spots/epoch"
SPOTS_URL = "https://api-db2.sota.org.uk/api/spots/60/all/all"
SUBMIT_URL = "https://api-db2.sota.org.uk/api/spots"
VALID_MODES = ["AM", "CW", "Data", "DV", "FM", "SSB"]
def __init__(self, provider_config):
super().__init__("SOTA", provider_config, self.EPOCH_URL, self.POLL_INTERVAL_SEC)
self._api_epoch = ""
@@ -49,8 +52,12 @@ class SOTA(HTTPSpotProvider):
mode=source_spot["mode"].upper(),
comment=source_spot["comments"],
sig="SOTA",
sig_refs=[SIGRef(id=source_spot["summitCode"], sig="SOTA", name=source_spot["summitName"],
sig_refs=[SIGRef(id=source_spot["summitCode"], sig="SOTA",
name=source_spot["summitName"], latitude=source_spot["latitude"],
longitude=source_spot["longitude"],
activation_score=source_spot["points"])],
dx_latitude=source_spot["latitude"],
dx_longitude=source_spot["longitude"],
time=datetime.fromisoformat(source_spot["timeStamp"].replace("Z", "+00:00")).timestamp())
# Add to our list. Don't worry about de-duping, removing old spots etc. at this point; other code will do
@@ -61,3 +68,46 @@ class SOTA(HTTPSpotProvider):
except (ConnectTimeout, ReadTimeout):
logging.warning(f"Timeout when accessing SOTA spots API.")
return new_spots
def can_submit_spot(self, sig):
return sig == "SOTA"
def submit_spot(self, spot, credentials):
# TODO test this method works
access_token = credentials.get("access_token", "")
id_token = credentials.get("id_token", "")
if not access_token or not id_token:
raise ValueError("SOTA API tokens are required. Please log into SOTA in order to spot to it.")
sig_ref = spot.sig_refs[0].id if spot.sig_refs else ""
if sig_ref:
# Split reference into association and summit codes
ref_split = sig_ref.split("/")
# Figure out a valid mode. Borrowed this from PoLo :)
# https://github.com/ham2k/app-polo/blob/main/src/extensions/activities/sota/SOTAPostSelfSpot.js
mode = spot.mode
if mode and mode not in self.VALID_MODES:
if mode in SSB_SUB_MODES:
mode = "SSB"
elif mode in DV_SUB_MODES:
mode = "DV"
else:
mode = "Data"
body = {
"activatorCallsign": spot.dx_call,
"associationCode": ref_split[0],
"summitCode": ref_split[1],
"frequency": spot.freq / 1000000.0,
"mode": mode or "",
"callsign": spot.de_call,
"comments": spot.comment or "",
"type": "TEST" # todo replatce with NORMAL/QRT once testing complete
}
headers = {**HTTP_HEADERS, "Authorization": "bearer " + access_token, "id_token": id_token,
"Content-Type": "application/json"}
response = requests.post(self.SUBMIT_URL, json=body, headers=headers, timeout=(5, 30))
if not response.ok:
raise RuntimeError("SOTA API returned " + str(response.status_code) + ": " + response.text)
else:
raise RuntimeError("Summit reference is required for submitting SOTA spots.")
+17
View File
@@ -58,3 +58,20 @@ class SpotProvider:
"""Stop any threads and prepare for application shutdown"""
raise NotImplementedError("Subclasses must implement this method")
def can_submit_spot(self, sig):
"""Return True if this provider supports submitting spots upstream for the given SIG."""
return False
def submit_spot(self, spot, credentials):
"""Submit a spot upstream to this provider's API. credentials is a dict with provider-specific keys.
Raises an exception with a descriptive message on failure."""
raise NotImplementedError("This provider does not support spot submission")
def force_poll(self):
"""Trigger an immediate poll without waiting for the normal interval. Default implementation here does nothing
because not all spot providers have a polling mechanism. Providers that do should override this method."""
return
+34 -15
View File
@@ -1,7 +1,6 @@
import logging
from datetime import datetime
from threading import Thread
from time import sleep
from threading import Event, Lock, Thread
import pytz
from requests_sse import EventSource
@@ -16,24 +15,35 @@ class SSESpotProvider(SpotProvider):
def __init__(self, name, provider_config, url):
super().__init__(name, provider_config)
self._url = url
self._event_source = None
self._thread = None
self._stopped = False
self._last_event_id = None
self._stop_event = Event()
self._event_source_lock = Lock()
self._event_source = None
def start(self):
logging.info("Set up SSE connection to " + self.name + " spot API.")
self._stopped = False
self._thread = Thread(target=self._run)
self._stop_event.clear()
self._thread = Thread(target=self._run, name=f"SSESpotProvider-{self.name}")
self._thread.daemon = True
self._thread.start()
def stop(self):
self._stopped = True
if self._event_source:
self._event_source.close()
self._stop_event.set()
with self._event_source_lock:
event_source = self._event_source
if event_source:
try:
event_source.close()
except Exception:
logging.exception(
"Exception closing SSE connection for " + self.name + " during stop()")
if self._thread:
self._thread.join()
self._thread.join(timeout=15)
if self._thread.is_alive():
logging.warning(self.name + " SSE worker thread did not exit on time and will be killed.")
def _on_open(self):
self.status = "Waiting for Data"
@@ -41,15 +51,22 @@ class SSESpotProvider(SpotProvider):
def _on_error(self):
self.status = "Connecting"
def _set_event_source(self, event_source):
with self._event_source_lock:
self._event_source = event_source
def _run(self):
while not self._stopped:
while not self._stop_event.is_set():
try:
logging.debug("Connecting to " + self.name + " spot API...")
self.status = "Connecting"
with EventSource(self._url, headers=HTTP_HEADERS, latest_event_id=self._last_event_id, timeout=30,
with EventSource(self._url, headers=HTTP_HEADERS, latest_event_id=self._last_event_id, timeout=10,
on_open=self._on_open, on_error=self._on_error) as event_source:
self._event_source = event_source
for event in self._event_source:
self._set_event_source(event_source)
try:
for event in event_source:
if self._stop_event.is_set():
break
if event.type == 'message':
try:
self._last_event_id = event.last_event_id
@@ -64,13 +81,15 @@ class SSESpotProvider(SpotProvider):
except Exception:
logging.exception(
"Exception processing message from SSE Spot Provider (" + self.name + ")")
finally:
self._set_event_source(None)
except Exception:
self.status = "Error"
logging.exception("Exception in SSE Spot Provider (" + self.name + ")")
else:
self.status = "Disconnected"
sleep(5) # Wait before trying to reconnect
self._stop_event.wait(timeout=5) # Wait before trying to reconnect
def _sse_message_to_spot(self, message_data):
"""Convert an SSE message received from the API into a spot. The whole message data is provided here so the subclass
+51 -1
View File
@@ -1,5 +1,8 @@
from datetime import datetime
import requests
from core.constants import HTTP_HEADERS, SSB_SUB_MODES
from data.sig_ref import SIGRef
from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -10,6 +13,9 @@ class Tiles(HTTPSpotProvider):
POLL_INTERVAL_SEC = 120
SPOTS_URL = "https://icneuzxitdqtofutxbla.supabase.co/functions/v1/spots?active_hours=24"
SUBMIT_URL = "https://icneuzxitdqtofutxbla.supabase.co/functions/v1/self-spot"
VALID_MODES = ["SSB", "CW", "FT8", "FT4", "FM", "DMR", "D-STAR", "M17", "AX.25", "JS8Call", "PSK31", "Olivia",
"VarAC", "Other"]
def __init__(self, provider_config):
super().__init__("Tiles", provider_config, self.SPOTS_URL, self.POLL_INTERVAL_SEC)
@@ -31,7 +37,8 @@ class Tiles(HTTPSpotProvider):
# Tiles spots can include POTA & SOTA references, but ignore those on the basis that we will get them separately from the POTA/SOTA providers anyway.
# Just take the grid reference itself as the single Tiles SIG reference.
sig_refs=[SIGRef(id=source_spot["maidenhead_grid"], sig="Tiles",
name=source_spot["maidenhead_grid"])],
name=source_spot["maidenhead_grid"], latitude=source_spot["latitude"],
longitude=source_spot["longitude"])],
time=datetime.fromisoformat(source_spot["created_at"].replace("Z", "+00:00")).timestamp(),
dx_grid=source_spot["maidenhead_grid"],
dx_latitude=source_spot["latitude"],
@@ -42,6 +49,49 @@ class Tiles(HTTPSpotProvider):
new_spots.append(spot)
return new_spots
def can_submit_spot(self, sig):
return sig == "Tiles"
def submit_spot(self, spot, credentials):
# Tiles on the air currently only supports *self* spots
if spot.dx_call == spot.de_call:
# Figure out a valid mode. Borrowed this from PoLo :)
# https://github.com/ham2k/app-polo/blob/main/src/extensions/activities/sota/SOTAPostSelfSpot.js
if spot.mode:
mode = spot.mode
if mode not in self.VALID_MODES:
if mode in SSB_SUB_MODES:
mode = "SSB"
elif mode == "OLIVIA":
mode = "Olivia"
elif mode == "JS8":
mode = "JS8Call"
else:
mode = "Other"
body = {
"call_sign": spot.dx_call,
"frequency": str(spot.freq / 1000000.0),
"mode": mode or "",
"grid": spot.dx_grid or "",
"comment": spot.comment or "",
"lat": spot.dx_latitude or None,
"lon": spot.dx_longitude or None,
"qrt": spot.qrt or False,
"pin": credentials.get("offline_spot_gateway_pin", "")
}
headers = {**HTTP_HEADERS, "Content-Type": "application/json"}
response = requests.post(self.SUBMIT_URL, json=body, headers=headers, timeout=(5, 30))
if not response.ok:
raise RuntimeError(
"Tiles on the Air API returned " + str(response.status_code) + ": " + response.text)
else:
raise RuntimeError("The Tiles on the Air API requires a mode to be set.")
else:
raise RuntimeError(
"The Tiles on the Air API only supports self-spots, the DX call and spotter call must match.")
# Utility function to keep the first decimal point in a given string but remove any others. Used to parse Tiles'
# strange frequency format where we can sometimes have e.g. "14.123.5".
+1 -1
View File
@@ -24,7 +24,7 @@ class WebsocketSpotProvider(SpotProvider):
def start(self):
logging.info("Set up websocket connection to " + self.name + " spot API.")
self._stopped = False
self._thread = Thread(target=self._run)
self._thread = Thread(target=self._run, name=f"WebsocketSpotProvider-{self.name}")
self._thread.daemon = True
self._thread.start()
+7
View File
@@ -79,3 +79,10 @@ class WOTA(HTTPSpotProvider):
except Exception as e:
logging.error("Exception parsing WOTA spot", e)
return new_spots
def can_submit_spot(self, sig):
return sig == "WOTA"
def submit_spot(self, spot, credentials):
# TODO Ask M5TEA if he's happy to share how this is done from his app
raise NotImplementedError("WOTA upstream spot submission is not yet implemented")
+9 -1
View File
@@ -20,7 +20,8 @@ class WWBOTA(SSESpotProvider):
# n-fer activations.
refs = []
for ref in source_spot["references"]:
sigref = SIGRef(id=ref["reference"], sig="WWBOTA", name=ref["name"])
sigref = SIGRef(id=ref["reference"], sig="WWBOTA", name=ref["name"], latitude=ref["lat"],
longitude=ref["long"])
refs.append(sigref)
spot = Spot(source=self.name,
@@ -41,3 +42,10 @@ class WWBOTA(SSESpotProvider):
# WWBOTA does support a special "Test" spot type, we need to avoid adding that.
return spot if source_spot["type"] != "Test" else None
def can_submit_spot(self, sig):
return sig == "WWBOTA"
def submit_spot(self, spot, credentials):
# TODO: Implement. WWBOTA API docs cover this: https://api.wwbota.org/#tag/Spots/operation/create_spot_spots__post
raise NotImplementedError("WWBOTA upstream spot submission is not yet implemented")
+10 -1
View File
@@ -29,7 +29,8 @@ class WWFF(HTTPSpotProvider):
mode=source_spot["mode"].upper(),
comment=source_spot["remarks"],
sig="WWFF",
sig_refs=[SIGRef(id=source_spot["reference"], sig="WWFF", name=source_spot["reference_name"])],
sig_refs=[SIGRef(id=source_spot["reference"], sig="WWFF", name=source_spot["reference_name"],
latitude=source_spot["latitude"], longitude=source_spot["longitude"])],
time=datetime.fromtimestamp(source_spot["spot_time"], tz=pytz.UTC).timestamp(),
dx_latitude=source_spot["latitude"],
dx_longitude=source_spot["longitude"])
@@ -38,3 +39,11 @@ class WWFF(HTTPSpotProvider):
# that for us.
new_spots.append(spot)
return new_spots
def can_submit_spot(self, sig):
return sig == "WWFF"
def submit_spot(self, spot, credentials):
# TODO: Implement. Spotting to WWFF should be possible, need to look up the Spotline docs or copy approach from
# PoLo. Either way I think we need an API key for the app (but maybe not for the user?)
raise NotImplementedError("WWFF upstream spot submission is not yet implemented")
+7
View File
@@ -41,3 +41,10 @@ class ZLOTA(HTTPSpotProvider):
new_spots.append(spot)
return new_spots
def can_submit_spot(self, sig):
return sig == "ZLOTA"
def submit_spot(self, spot, credentials):
# TODO: Implement. Spotting to ZLOTA is supported via POST, see https://ontheair.nz/api
raise NotImplementedError("ZLOTA upstream spot submission is not yet implemented")
@@ -29,7 +29,7 @@ class FileDownloadStaticDataProvider(StaticDataProvider):
# subsequent polls, so start() returns immediately and the application can continue starting.
logging.info(
"Set up query of " + self.name + " static reference data every " + str(self._poll_interval) + " days.")
self._thread = Thread(target=self._run, daemon=True)
self._thread = Thread(target=self._run, name=f"FileDownloadStaticDataProvider-{self.name}")
self._thread.start()
def stop(self):
+139 -12
View File
@@ -1,33 +1,40 @@
import logging
import re
import threading
from datetime import datetime
from typing import Any
import pytz
import requests
import tornado
from tornado import httputil
from tornado.web import Application
from core.config import ALLOW_SPOTTING
from core.config import ALLOW_SPOTTING, ALLOW_UPSTREAM_SPOTTING, RECAPTCHA_SECRET_KEY
from core.constants import UNKNOWN_BAND
from core.utils import infer_band_from_freq
from core.prometheus_metrics_handler import api_requests_counter
from core.sig_utils import get_ref_regex_for_sig
from core.utils import infer_band_from_freq
from core.utils import safe_json_dumps
from data.spot import Spot
from providers.spot.spot_provider import SpotProvider
RECAPTCHA_VERIFY_URL = "https://www.google.com/recaptcha/api/siteverify"
class APISpotHandler(tornado.web.RequestHandler):
"""API request handler for /api/v1/spot (POST)"""
"""API request handler for /api/v2/spot (POST)"""
def __init__(self, application: "Application", request: httputil.HTTPServerRequest, **kwargs: Any):
self._spots = None
self._web_server_metrics = None
self._spot_providers = None
super().__init__(application, request, **kwargs)
def initialize(self, spots, web_server_metrics):
def initialize(self, spots, web_server_metrics, spot_providers=None):
self._spots = spots
self._web_server_metrics = web_server_metrics
self._spot_providers = spot_providers or []
def post(self):
try:
@@ -62,14 +69,49 @@ class APISpotHandler(tornado.web.RequestHandler):
self.set_header("Content-Type", "application/json")
return
# Read in the request body as JSON then convert to a Spot object
json_spot = tornado.escape.json_decode(post_data)
spot = Spot(**json_spot)
# Read in the request body as JSON
json_body = tornado.escape.json_decode(post_data)
# Extract the "spot" and "handling" sub-objects from the request body
spot_data = json_body.get("spot", {})
handling = json_body.get("handling", {})
# Extract individual parameters that say how this spot should be handled by the server
submit_upstream = handling.get("submit_upstream", False)
upstream_provider_name = handling.get("upstream_provider", None)
upstream_credentials = handling.get("upstream_credentials", {})
captcha_token = handling.get("captcha_token", None)
# Spothole v2.0 release only: deny upstream spotting. Spothole API breaking changes were in v2.0 but
# functionality is not ready yet. TODO
submit_upstream = False
# Verify CAPTCHA if required
if RECAPTCHA_SECRET_KEY:
if not captcha_token:
self.set_status(422)
self.write(safe_json_dumps("Error - CAPTCHA token is required for spot submission."))
self.set_header("Cache-Control", "no-store")
self.set_header("Content-Type", "application/json")
return
if not self._verify_recaptcha(captcha_token):
self.set_status(422)
self.write(safe_json_dumps("Error - CAPTCHA verification failed."))
self.set_header("Cache-Control", "no-store")
self.set_header("Content-Type", "application/json")
return
# Convert spot field to a Spot object
spot = Spot(**spot_data)
# Reject if no timestamp, frequency, dx_call or de_call
if not spot.time or not spot.dx_call or not spot.freq or not spot.de_call:
self.set_status(422)
self.write(safe_json_dumps("Error - 'time', 'dx_call', 'freq' and 'de_call' must be provided as a minimum."))
self.write(
safe_json_dumps("Error - 'time', 'dx_call', 'freq' and 'de_call' must be provided as a minimum."))
self.set_header("Cache-Control", "no-store")
self.set_header("Content-Type", "application/json")
return
@@ -91,7 +133,8 @@ class APISpotHandler(tornado.web.RequestHandler):
# Reject if frequency not in a known band
if infer_band_from_freq(spot.freq) == UNKNOWN_BAND:
self.set_status(422)
self.write(safe_json_dumps("Error - Frequency of " + str(spot.freq / 1000.0) + "kHz is not in a known band."))
self.write(
safe_json_dumps("Error - Frequency of " + str(spot.freq / 1000.0) + "kHz is not in a known band."))
self.set_header("Cache-Control", "no-store")
self.set_header("Content-Type", "application/json")
return
@@ -101,7 +144,8 @@ class APISpotHandler(tornado.web.RequestHandler):
r"^([A-R]{2}[0-9]{2}[A-X]{2}[0-9]{2}[A-X]{2}|[A-R]{2}[0-9]{2}[A-X]{2}[0-9]{2}|[A-R]{2}[0-9]{2}[A-X]{2}|[A-R]{2}[0-9]{2})$",
spot.dx_grid.upper()):
self.set_status(422)
self.write(safe_json_dumps("Error - '" + spot.dx_grid + "' does not look like a valid Maidenhead grid."))
self.write(
safe_json_dumps("Error - '" + spot.dx_grid + "' does not look like a valid Maidenhead grid."))
self.set_header("Cache-Control", "no-store")
self.set_header("Content-Type", "application/json")
return
@@ -116,11 +160,73 @@ class APISpotHandler(tornado.web.RequestHandler):
self.set_header("Content-Type", "application/json")
return
# infer missing data, and add it to our database.
spot.source = "API"
# Reject upstream submission if not permitted
if submit_upstream and not ALLOW_UPSTREAM_SPOTTING:
self.set_status(403)
self.write(safe_json_dumps("Error - this server does not allow upstream spot submission."))
self.set_header("Cache-Control", "no-store")
self.set_header("Content-Type", "application/json")
return
# Validate upstream submission requirements
if submit_upstream and upstream_provider_name:
if not spot.sig:
self.set_status(422)
self.write(safe_json_dumps("Error - a SIG must be selected to submit upstream."))
self.set_header("Cache-Control", "no-store")
self.set_header("Content-Type", "application/json")
return
if not spot.sig_refs and upstream_provider_name != "Tiles":
self.set_status(422)
self.write(safe_json_dumps("Error - a SIG reference is required to submit upstream."))
self.set_header("Cache-Control", "no-store")
self.set_header("Content-Type", "application/json")
return
if not spot.dx_grid and upstream_provider_name == "Tiles":
self.set_status(422)
self.write(
safe_json_dumps("Error - a grid reference is required to submit upstream to Tiles on the Air."))
self.set_header("Cache-Control", "no-store")
self.set_header("Content-Type", "application/json")
return
if not spot.mode and upstream_provider_name == "Tiles":
self.set_status(422)
self.write(safe_json_dumps("Error - a mode is required to submit upstream to Tiles on the Air."))
self.set_header("Cache-Control", "no-store")
self.set_header("Content-Type", "application/json")
return
# Submit upstream if requested
upstream_warning = None
if submit_upstream and upstream_provider_name:
provider = self._find_provider(upstream_provider_name, spot.sig)
if provider:
try:
# Submit spot to the upstream provider
provider.submit_spot(spot, upstream_credentials)
# Trigger a re-poll after 1 second so the spot appears quickly
threading.Timer(1.0, provider.force_poll).start()
except NotImplementedError as e:
upstream_warning = str(e)
except Exception as e:
logging.warning("Failed to submit spot upstream to " + upstream_provider_name + ": " + str(e))
upstream_warning = "Spot was saved locally but upstream submission to " + upstream_provider_name + " failed: " + str(
e)
else:
upstream_warning = "No enabled provider named '" + upstream_provider_name + "' supports upstream submission for " + (
spot.sig if spot.sig else "") + " spots."
# If we successfully submitted the spot upstream, don't add it direct to Spothole, otherwise it will be a
# duplicate with what immediately comes back from the API. But if we weren't asked to send it upstream, or
# we were but it failed, we should still add it to our database anyway.
if not submit_upstream or upstream_warning:
spot.infer_missing()
self._spots.set(spot.id, spot)
if upstream_warning:
self.write(safe_json_dumps("Warning - " + upstream_warning))
self.set_status(201)
else:
self.write(safe_json_dumps("OK"))
self.set_status(201)
self.set_header("Cache-Control", "no-store")
@@ -132,3 +238,24 @@ class APISpotHandler(tornado.web.RequestHandler):
self.set_status(500)
self.set_header("Cache-Control", "no-store")
self.set_header("Content-Type", "application/json")
def _find_provider(self, provider_name, sig) -> SpotProvider | None:
"""Find an enabled provider by name that can submit spots for the given SIG."""
for p in self._spot_providers:
if p.enabled and p.name == provider_name and p.can_submit_spot(sig):
return p
return None
@staticmethod
def _verify_recaptcha(token):
"""Verify a Google reCAPTCHA v2 token. Returns True if valid."""
try:
response = requests.post(RECAPTCHA_VERIFY_URL,
data={"secret": RECAPTCHA_SECRET_KEY, "response": token},
timeout=(5, 10))
return response.ok and response.json().get("success", False)
except Exception as e:
logging.warning("reCAPTCHA verification request failed: " + str(e))
return False
+4 -4
View File
@@ -15,7 +15,7 @@ from data.lookup_credentials import extract_credentials
class APIAlertsHandler(tornado.web.RequestHandler):
"""API request handler for /api/v1/alerts"""
"""API request handler for /api/v2/alerts"""
def __init__(self, application: "Application", request: httputil.HTTPServerRequest, **kwargs: Any):
self._alerts = None
@@ -48,7 +48,7 @@ class APIAlertsHandler(tornado.web.RequestHandler):
query_params = {k: v[0].decode("utf-8") for k, v in self.request.arguments.items()}
# Fetch all alerts matching the query, then optionally enrich with online data
credentials = extract_credentials(query_params)
credentials = extract_credentials(self.request.headers)
data = get_alert_list_with_filters(self._alerts, query_params)
if credentials:
data = self._enrich(data, credentials)
@@ -66,7 +66,7 @@ class APIAlertsHandler(tornado.web.RequestHandler):
class APIAlertsStreamHandler(tornado_eventsource.handler.EventSourceHandler):
"""API request handler for /api/v1/alerts/stream"""
"""API request handler for /api/v2/alerts/stream"""
def __init__(self, application, request, **kwargs: Any):
self._sse_alert_broadcaster = None
@@ -96,7 +96,7 @@ class APIAlertsStreamHandler(tornado_eventsource.handler.EventSourceHandler):
# request.arguments contains lists for each param key because technically the client can supply multiple,
# reduce that to just the first entry, and convert bytes to string
self._query_params = {k: v[0].decode("utf-8") for k, v in self.request.arguments.items()}
self._credentials = extract_credentials(self._query_params)
self._credentials = extract_credentials(self.request.headers)
# Flush headers immediately so nginx doesn't time out waiting for a response
self.write_message("keepalive", "")
+1 -1
View File
@@ -19,7 +19,7 @@ BANDS_SET = frozenset(BANDS)
class APIDxStatsHandler(tornado.web.RequestHandler):
"""API request handler for /api/v1/dxstats"""
"""API request handler for /api/v2/dxstats"""
def __init__(self, application: "Application", request: httputil.HTTPServerRequest, **kwargs: Any):
self._spots = None
+9 -27
View File
@@ -8,19 +8,19 @@ import tornado
from tornado import httputil
from tornado.web import Application
from core.call_lookup_helper import get_call_info
from core.constants import SIGS
from core.geo_utils import lat_lon_for_grid_sw_corner_plus_size, lat_lon_to_cq_zone, lat_lon_to_itu_zone
from core.prometheus_metrics_handler import api_requests_counter
from core.sig_lookup_helper import populate_missing_sig_ref_info
from core.sig_utils import get_ref_regex_for_sig
from core.sig_lookup_helper import populate_sig_ref_info
from core.utils import safe_json_dumps
from data.lookup_credentials import extract_credentials
from data.sig_ref import SIGRef
from data.spot import Spot
class APILookupCallHandler(tornado.web.RequestHandler):
"""API request handler for /api/v1/lookup/call"""
"""API request handler for /api/v2/lookup/call"""
def __init__(self, application: "Application", request: httputil.HTTPServerRequest, **kwargs: Any):
self._web_server_metrics = None
@@ -45,27 +45,9 @@ class APILookupCallHandler(tornado.web.RequestHandler):
if "call" in query_params.keys():
call = str(query_params.get("call")).upper()
if re.match(r"^[A-Z0-9/\-]*$", call):
# Take the callsign, make a "fake spot" so we can run infer_missing() on it, then repack the
# resulting data in the correct way for the API response.
credentials = extract_credentials(query_params)
fake_spot = Spot(dx_call=call)
fake_spot.infer_missing(credentials)
data = {
"call": call,
"name": fake_spot.dx_name,
"qth": fake_spot.dx_qth,
"country": fake_spot.dx_country,
"flag": fake_spot.dx_flag,
"continent": fake_spot.dx_continent,
"dxcc_id": fake_spot.dx_dxcc_id,
"cq_zone": fake_spot.dx_cq_zone,
"itu_zone": fake_spot.dx_itu_zone,
"grid": fake_spot.dx_grid,
"latitude": fake_spot.dx_latitude,
"longitude": fake_spot.dx_longitude,
"location_source": fake_spot.dx_location_source
}
self.write(safe_json_dumps(data))
credentials = extract_credentials(self.request.headers)
callsign_data = get_call_info(call, credentials)
self.write(safe_json_dumps(callsign_data))
else:
self.write(safe_json_dumps("Error - '" + call + "' does not look like a valid callsign."))
@@ -84,7 +66,7 @@ class APILookupCallHandler(tornado.web.RequestHandler):
class APILookupSIGRefHandler(tornado.web.RequestHandler):
"""API request handler for /api/v1/lookup/sigref"""
"""API request handler for /api/v2/lookup/sigref"""
def __init__(self, application: "Application", request: httputil.HTTPServerRequest, **kwargs: Any):
self._web_server_metrics = None
@@ -112,7 +94,7 @@ class APILookupSIGRefHandler(tornado.web.RequestHandler):
ref_id = str(query_params.get("id")).upper()
if sig in list(map(lambda p: p.name.upper(), SIGS)):
if not get_ref_regex_for_sig(sig) or re.match(get_ref_regex_for_sig(sig), ref_id):
data = populate_sig_ref_info(SIGRef(id=ref_id, sig=sig))
data = populate_missing_sig_ref_info(SIGRef(id=ref_id, sig=sig))
self.write(safe_json_dumps(data))
else:
@@ -136,7 +118,7 @@ class APILookupSIGRefHandler(tornado.web.RequestHandler):
class APILookupGridHandler(tornado.web.RequestHandler):
"""API request handler for /api/v1/lookup/grid"""
"""API request handler for /api/v2/lookup/grid"""
def __init__(self, application: "Application", request: httputil.HTTPServerRequest, **kwargs: Any):
self._web_server_metrics = None
+33 -12
View File
@@ -14,16 +14,18 @@ from core.utils import safe_json_dumps
class APIOptionsHandler(tornado.web.RequestHandler):
"""API request handler for /api/v1/options"""
"""API request handler for /api/v2/options"""
def __init__(self, application: "Application", request: httputil.HTTPServerRequest, **kwargs: Any):
self._status_data = None
self._web_server_metrics = None
self._spot_providers = None
super().__init__(application, request, **kwargs)
def initialize(self, status_data, web_server_metrics):
def initialize(self, status_data, web_server_metrics, spot_providers=None):
self._status_data = status_data
self._web_server_metrics = web_server_metrics
self._spot_providers = spot_providers or []
def get(self):
try:
@@ -33,23 +35,42 @@ class APIOptionsHandler(tornado.web.RequestHandler):
self._web_server_metrics["status"] = "OK"
api_requests_counter.inc()
# Build a map of SIG name -> list of provider names that can submit spots for that SIG
spot_submit_providers = {}
# Spothole v2.0 - disable this for now, API changes are in but this functionality is not ready yet. TODO
# for provider in self._spot_providers:
# if not provider.enabled:
# continue
# for sig in SIGS:
# if provider.can_submit_spot(sig.name):
# spot_submit_providers.setdefault(sig.name, []).append(provider.name)
# Spot/alert sources are filtered for only ones that are enabled in config, no point letting the user toggle
# things that aren't even available.
spot_providers: list = list(
map(lambda p: p["name"], filter(lambda p: p["enabled"], self._status_data["spot_providers"])))
alert_providers = list(
map(lambda p: p["name"], filter(lambda p: p["enabled"], self._status_data["alert_providers"])))
callsign_data_providers = list(
map(lambda p: p["name"], filter(lambda p: p["enabled"], self._status_data["callsign_data_providers"])))
# If spotting to this server is enabled, "API" is another valid spot source even though it does not come from
# one of our providers.
if ALLOW_SPOTTING:
spot_providers.append("API")
options = {"bands": BANDS,
"modes": ALL_MODES,
"mode_types": MODE_TYPES,
"sigs": SIGS,
# Spot/alert sources are filtered for only ones that are enabled in config, no point letting the user toggle things that aren't even available.
"spot_sources": list(
map(lambda p: p["name"], filter(lambda p: p["enabled"], self._status_data["spot_providers"]))),
"alert_sources": list(
map(lambda p: p["name"], filter(lambda p: p["enabled"], self._status_data["alert_providers"]))),
"spot_providers": spot_providers,
"alert_providers": alert_providers,
"callsign_data_providers": callsign_data_providers,
"continents": CONTINENTS,
"propagation_modes": list(PROPAGATION_MODES.values()),
"max_spot_age": MAX_SPOT_AGE,
"spot_allowed": ALLOW_SPOTTING}
# If spotting to this server is enabled, "API" is another valid spot source even though it does not come from
# one of our proviers.
if ALLOW_SPOTTING:
options["spot_sources"].append("API")
"spot_allowed": ALLOW_SPOTTING,
"spot_submit_providers": spot_submit_providers}
self.write(safe_json_dumps(options))
self.set_status(200)
+1 -1
View File
@@ -12,7 +12,7 @@ from core.utils import safe_json_dumps
class APISolarConditionsHandler(tornado.web.RequestHandler):
"""API request handler for /api/v1/solar"""
"""API request handler for /api/v2/solar"""
def __init__(self, application: "Application", request: httputil.HTTPServerRequest, **kwargs: Any):
self._solar_conditions = None
+4 -4
View File
@@ -15,7 +15,7 @@ from data.lookup_credentials import extract_credentials
class APISpotsHandler(tornado.web.RequestHandler):
"""API request handler for /api/v1/spots"""
"""API request handler for /api/v2/spots"""
def __init__(self, application: "Application", request: httputil.HTTPServerRequest, **kwargs: Any):
self._spots = None
@@ -48,7 +48,7 @@ class APISpotsHandler(tornado.web.RequestHandler):
query_params = {k: v[0].decode("utf-8") for k, v in self.request.arguments.items()}
# Fetch all spots matching the query, then optionally enrich with online data
credentials = extract_credentials(query_params)
credentials = extract_credentials(self.request.headers)
data = get_spot_list_with_filters(self._spots, query_params)
if credentials:
data = self._enrich(data, credentials)
@@ -66,7 +66,7 @@ class APISpotsHandler(tornado.web.RequestHandler):
class APISpotsStreamHandler(tornado_eventsource.handler.EventSourceHandler):
"""API request handler for /api/v1/spots/stream"""
"""API request handler for /api/v2/spots/stream"""
def __init__(self, application, request, **kwargs: Any):
self._sse_spot_broadcaster = None
@@ -98,7 +98,7 @@ class APISpotsStreamHandler(tornado_eventsource.handler.EventSourceHandler):
# request.arguments contains lists for each param key because technically the client can supply multiple,
# reduce that to just the first entry, and convert bytes to string
self._query_params = {k: v[0].decode("utf-8") for k, v in self.request.arguments.items()}
self._credentials = extract_credentials(self._query_params)
self._credentials = extract_credentials(self.request.headers)
# Flush headers immediately so nginx doesn't time out waiting for a response
self.write_message("keepalive", "")
+1 -1
View File
@@ -12,7 +12,7 @@ from core.utils import safe_json_dumps
class APIStatusHandler(tornado.web.RequestHandler):
"""API request handler for /api/v1/status"""
"""API request handler for /api/v2/status"""
def __init__(self, application: "Application", request: httputil.HTTPServerRequest, **kwargs: Any):
self._status_data = None
+29
View File
@@ -0,0 +1,29 @@
import json
import tornado
from core.utils import safe_json_dumps
class V1GoneHandler(tornado.web.RequestHandler):
"""Returns 410 Gone with a message for any endpoints in the old API that have breaking changes in the new one or
have been retired."""
def post(self):
self.set_status(410)
self.write(safe_json_dumps(
"This API endpoint has a breaking change or has been removed in the current version of the Spothole API. Please see /apidocs for details of the current API version and the endpoints available."))
self.set_header("Cache-Control", "no-store")
self.set_header("Content-Type", "application/json")
class V1RedirectHandler(tornado.web.RequestHandler):
"""Returns 308 Permanent Redirect from any path in the old API to the new one, where there were no breaking changes."""
def get(self, path):
new_url = "/api/v2/" + path
if self.request.query:
new_url += "?" + self.request.query
self.set_status(308)
self.set_header("Location", new_url)
self.finish()
+5 -2
View File
@@ -11,6 +11,9 @@ class SSEBroadcaster:
def __init__(self):
self._handlers = set()
self._lock = threading.Lock()
self._loop = None
def bind_to_web_server_loop(self):
self._loop = IOLoop.current()
def register(self, handler):
@@ -22,9 +25,9 @@ class SSEBroadcaster:
self._handlers.discard(handler)
def publish(self, value):
self._loop.add_callback(self._fan_out, value)
self._loop.add_callback(self._broadcast, value)
def _fan_out(self, value):
def _broadcast(self, value):
with self._lock:
handlers = list(self._handlers)
for handler in handlers:
+33 -13
View File
@@ -6,6 +6,7 @@ import tornado
from tornado.web import StaticFileHandler
from core.config import ALLOW_SPOTTING, WEB_SERVER_PORT, API_ONLY_MODE, LOG_WEB_REQUESTS, BASE_URL
from core.data_providers import DATA_PROVIDERS
from core.data_store import DATA_STORE
from server.handlers.api.addspot import APISpotHandler
from server.handlers.api.alerts import APIAlertsHandler, APIAlertsStreamHandler
@@ -15,6 +16,7 @@ from server.handlers.api.options import APIOptionsHandler
from server.handlers.api.solar_conditions import APISolarConditionsHandler
from server.handlers.api.spots import APISpotsHandler, APISpotsStreamHandler
from server.handlers.api.status import APIStatusHandler
from server.handlers.api.v1_compatability import V1RedirectHandler, V1GoneHandler
from server.handlers.manifesthandler import ManifestHandler
from server.handlers.metrics import PrometheusMetricsHandler
from server.handlers.pagetemplate import PageTemplateHandler
@@ -30,6 +32,7 @@ class WebServer:
"""Constructor"""
self._data_store = DATA_STORE
self._data_providers = DATA_PROVIDERS
self._spot_broadcaster = SSEBroadcaster()
self._alert_broadcaster = SSEBroadcaster()
self._port = WEB_SERVER_PORT
@@ -43,6 +46,7 @@ class WebServer:
"status": "Starting"
}
def setup(self):
# Listen for new spots and alerts being added to the cache, so we can notify SSE clients immediately
DATA_STORE.spots.add_listener(self._spot_broadcaster.publish)
DATA_STORE.alerts.add_listener(self._alert_broadcaster.publish)
@@ -60,27 +64,39 @@ class WebServer:
async def _start_inner(self):
"""Start method (async). Sets up the Tornado application."""
# Bind the SSE broadcasters to the web server's loop, so they fire correctly
self._spot_broadcaster.bind_to_web_server_loop()
self._alert_broadcaster.bind_to_web_server_loop()
# Prepare a list of common arguments that are passed in to every API & page handler. This is just a basic thing
# to avoid copy-pasting the same thing to every route declaration below.
handler_opts = {"web_server_metrics": self.web_server_metrics}
# API endpoints are always enabled
api_routes = [
(r"/api/v1/spots", APISpotsHandler, {"spots": self._data_store.spots, **handler_opts}),
(r"/api/v1/alerts", APIAlertsHandler, {"alerts": self._data_store.alerts, **handler_opts}),
(r"/api/v1/spots/stream", APISpotsStreamHandler,
(r"/api/v2/spots", APISpotsHandler, {"spots": self._data_store.spots, **handler_opts}),
(r"/api/v2/alerts", APIAlertsHandler, {"alerts": self._data_store.alerts, **handler_opts}),
(r"/api/v2/spots/stream", APISpotsStreamHandler,
{"sse_spot_broadcaster": self._spot_broadcaster, **handler_opts}),
(r"/api/v1/alerts/stream", APIAlertsStreamHandler,
(r"/api/v2/alerts/stream", APIAlertsStreamHandler,
{"sse_alert_broadcaster": self._alert_broadcaster, **handler_opts}),
(r"/api/v1/solar", APISolarConditionsHandler, {"solar_conditions": self._data_store.solar_conditions,
(r"/api/v2/solar", APISolarConditionsHandler, {"solar_conditions": self._data_store.solar_conditions,
**handler_opts}),
(r"/api/v1/dxstats", APIDxStatsHandler, {"spots": self._data_store.spots, **handler_opts}),
(r"/api/v1/options", APIOptionsHandler, {"status_data": self._data_store.status_data, **handler_opts}),
(r"/api/v1/status", APIStatusHandler, {"status_data": self._data_store.status_data, **handler_opts}),
(r"/api/v1/lookup/call", APILookupCallHandler, {**handler_opts}),
(r"/api/v1/lookup/sigref", APILookupSIGRefHandler, {**handler_opts}),
(r"/api/v1/lookup/grid", APILookupGridHandler, {**handler_opts}),
(r"/api/v1/spot", APISpotHandler, {"spots": self._data_store.spots, **handler_opts}),
(r"/api/v2/dxstats", APIDxStatsHandler, {"spots": self._data_store.spots, **handler_opts}),
(r"/api/v2/options", APIOptionsHandler, {"status_data": self._data_store.status_data, **handler_opts}),
(r"/api/v2/status", APIStatusHandler, {"status_data": self._data_store.status_data, **handler_opts}),
(r"/api/v2/lookup/call", APILookupCallHandler, {**handler_opts}),
(r"/api/v2/lookup/sigref", APILookupSIGRefHandler, {**handler_opts}),
(r"/api/v2/lookup/grid", APILookupGridHandler, {**handler_opts}),
(r"/api/v2/spot", APISpotHandler,
{"spots": self._data_store.spots, "spot_providers": self._data_providers, **handler_opts}),
]
# v1 API redirects. Most v1 enpoints are unchanged in v2, and get an HTTP 308 redirect to the v2 API. The ones
# that have the major breaking changes get a bespoke handler.
v1_compat_routes = [
(r"/api/v1/spot", V1GoneHandler),
(r"/api/v1/(.*)", V1RedirectHandler),
]
# If in API-only mode, serve a basic homepage; in normal mode, serve the usual UI routes
@@ -115,7 +131,7 @@ class WebServer:
(r"/static/(.*)", StaticFileHandler, {"path": os.path.join(_HERE, "../static")})
]
app = tornado.web.Application(api_routes + ui_routes + misc_routes,
app = tornado.web.Application(api_routes + v1_compat_routes + ui_routes + misc_routes,
template_path=os.path.join(_HERE, "../templates"),
log_function=request_log,
debug=False)
@@ -145,3 +161,7 @@ def request_log(handler):
f'{handler.get_status()} {request.request_time():.2f}ms | '
f'Ref: {referrer} | UA: {user_agent}'
)
# Global object
WEB_SERVER = WebServer()
+14 -76
View File
@@ -4,49 +4,24 @@ import os
import signal
import sys
from core.config import config, SERVER_OWNER_CALLSIGN, LOG_LEVEL, get_sig_ref_data_provider_from_config, \
get_spot_provider_from_config, get_alert_provider_from_config, get_solar_conditions_provider_from_config, \
get_static_data_provider_from_config
from core.config import SERVER_OWNER_CALLSIGN, LOG_LEVEL
from core.constants import SOFTWARE_VERSION
from core.data_providers import DATA_PROVIDERS
from core.data_store import DATA_STORE
from core.call_lookup_helper import lookup_helper
from core.status_reporter import StatusReporter
from server.webserver import WebServer
from server.webserver import WEB_SERVER
# Globals
web_server = None
spot_providers = []
alert_providers = []
solar_condition_providers = []
static_data_providers = []
sig_ref_data_providers = []
cleanup_timer = None
run = True
def shutdown(_signum=None, _frame=None):
"""Shutdown function"""
global run
logging.info("Stopping program...")
if web_server:
web_server.stop()
for sp in spot_providers:
if sp.enabled:
sp.stop()
for ap in alert_providers:
if ap.enabled:
ap.stop()
for scp in solar_condition_providers:
if scp.enabled:
scp.stop()
for srdp in sig_ref_data_providers:
if srdp.enabled:
srdp.stop()
for srdp in static_data_providers:
if srdp.enabled:
srdp.stop()
WEB_SERVER.stop()
DATA_PROVIDERS.stop()
DATA_STORE.close()
os._exit(0)
@@ -73,57 +48,20 @@ if __name__ == '__main__':
# Set up data store
DATA_STORE.setup()
# Set up lookup helper
lookup_helper.start()
# Set up and start data providers
DATA_PROVIDERS.setup()
DATA_PROVIDERS.start()
# Set up web server
web_server = WebServer()
# Fetch, set up and start spot providers
for entry in config["spot-providers"]:
spot_providers.append(get_spot_provider_from_config(entry))
for p in spot_providers:
if p.enabled:
p.start()
# Fetch, set up and start alert providers
for entry in config["alert-providers"]:
alert_providers.append(get_alert_provider_from_config(entry))
for p in alert_providers:
if p.enabled:
p.start()
# Fetch, set up and start solar conditions providers
for entry in config.get("solar-condition-providers", []):
solar_condition_providers.append(get_solar_conditions_provider_from_config(entry))
for p in solar_condition_providers:
if p.enabled:
p.start()
# Fetch, set up and start static reference data providers
for entry in config.get("static-data-providers", []):
static_data_providers.append(get_static_data_provider_from_config(entry))
for p in static_data_providers:
if p.enabled:
p.start()
# Fetch, set up and start SIG reference data providers
for entry in config.get("sig-ref-data-providers", []):
sig_ref_data_providers.append(get_sig_ref_data_provider_from_config(entry))
for p in sig_ref_data_providers:
if p.enabled:
p.start()
# Set up status reporter
status_reporter = StatusReporter(web_server=web_server, spot_providers=spot_providers,
alert_providers=alert_providers, static_data_providers=static_data_providers,
sig_ref_data_providers=sig_ref_data_providers,
solar_condition_providers=solar_condition_providers, run_interval=5)
# Set up and start status reporter
status_reporter = StatusReporter(run_interval=5)
status_reporter.start()
# Set up the web server
WEB_SERVER.setup()
logging.info("Startup complete.")
# Run the web server. This is the blocking call that keeps the application running in the main thread, so this must
# be the last thing we do. web_server.stop() triggers an await condition in the web server which finishes the main
# thread.
web_server.start()
WEB_SERVER.start()
+164 -44
View File
@@ -15,6 +15,21 @@ info:
## Changelog
### 2.0
* **Breaking change:** The "add spot" API has changed to enable future support for upstream submission to the spotting services associated with various SIGs. Instead of just posting the spot object itself as the JSON content of the POST, this has moved into a `spot` object within the structure. A new `handling` object alongside it contains the `submit_upstream`, `upstream_provider`, `upstream_credentials`, and `captcha_token` fields which control the server handling of the spot.
* **Breaking change:** Removed `cleanup` from `/status` response
* **Breaking change:** in the `/options` response, renamed `spot_sources` and `alert_sources` to `spot_providers` and `alert_providers`
* **Breaking change:** A user's QRZ.com and HamQTH credentials are now supplied as request headers (`X-QRZ-Username`, `X-QRZ-Password`, `X-QRZ-Session-Key`, `X-HamQTH-Username`, `X-HamQTH-Password`, `X-HamQTH-Session-ID`) rather than query parameters, to keep credentials out of server logs.
* POST `/spot` now supports Google reCaptcha and (if the site owner has set it up) now requires `captcha_token` in order to successfully submit. (This is used to lock down the submit function and prevent submission via Spothole by bots or third-party clients.)
* GET `/options` now returns `spot_submit_providers`, a map of SIG names to the names of providers that support upstream spot submission for that SIG. (This allows clients to present the user with options of where a new spot can be sent to.)
* Added `sig_ref_data_providers`, `static_data_providers` and `callsign_data_providers` to `/status` response
* Added `callsign_data_providers` to `/options` response
### 1.5
No API changes.
### 1.4
* Spots can now include a "propagation_mode" field, and the `/options` call enumerates the options that can have.
@@ -22,8 +37,6 @@ info:
* Renamed some SIGs to avoid confusion between Towers, Tiles and Toilets
* Added `comment_names` to SIGs in the `/options`, to reflect how they might be referred to in spot comments where
it differs from their `name`.
* Added `propagation_mode` field to spots
* Added `sig_ref_data_providers` and `static_data_providers` to status and removed `cleanup`
### 1.3
@@ -46,10 +59,10 @@ info:
license:
name: The Unlicense
url: https://unlicense.org/#the-unlicense
version: v1.4
version: 2.0
servers:
- url: https://spothole.app/api/v1
- url: https://spothole.app/api/v2
tags:
- name: Spots
@@ -324,13 +337,14 @@ paths:
content:
application/json:
schema:
$ref: '#/components/schemas/CallLookup'
$ref: '#/components/schemas/CallsignData'
'422':
description: Validation error e.g. callsign missing or format incorrect
content:
application/json:
schema:
$ref: '#/components/schemas/ErrorResponse'
type: string
example: "Failed"
/lookup/sigref:
@@ -358,7 +372,8 @@ paths:
content:
application/json:
schema:
$ref: '#/components/schemas/ErrorResponse'
type: string
example: "Failed"
@@ -384,7 +399,8 @@ paths:
content:
application/json:
schema:
$ref: '#/components/schemas/ErrorResponse'
type: string
example: "Failed"
/spot:
@@ -393,50 +409,53 @@ paths:
- Spots
summary: Add a spot
description: >
Supply a new spot object, which will be added to the system. Currently, this will not be
reported up the chain to a cluster, POTA, SOTA etc. This may be introduced in a future version.
cURL example: `curl --request POST --header "Content-Type: application/json" --data
'{"dx_call":"M0TRT","time":1760019539, "freq":14200000, "comment":"Test spot please ignore",
"de_call":"M0TRT"}' https://spothole.app/api/v1/spot`
Supply a JSON object containing a `spot` sub-object (the spot data) and an optional `handling` sub-object
containing server-side instructions such as upstream submission). Check `spot_submit_providers` in the
`/options` response to see which SIGs and providers support upstream submission. cURL example:
`curl --request POST --header \"Content-Type: application/json\" --data '{\"spot\":{\"dx_call\":\"M0TRT\",\"time\":1760019539,\"freq\":14200000,\"comment\":\"Test spot please ignore\",\"de_call\":\"M0TRT\"}}' https://spothole.app/api/v2/spot`"
operationId: spot
requestBody:
description: The JSON spot object
description: Object containing a "spot" sub-object with the spot data, and an optional "handling" sub-object with server-side instructions of what to do with it.
required: true
content:
application/json:
schema:
$ref: '#/components/schemas/Spot'
$ref: '#/components/schemas/SpotSubmission'
responses:
'200':
'201':
description: Success
content:
application/json:
schema:
$ref: '#/components/schemas/OkResponse'
type: string
example: "OK"
'415':
description: Incorrect Content-Type
content:
application/json:
schema:
$ref: '#/components/schemas/ErrorResponse'
type: string
example: "Failed"
'422':
description: Validation error
content:
application/json:
schema:
$ref: '#/components/schemas/ErrorResponse'
type: string
example: "Failed"
'500':
description: Internal server error
content:
application/json:
schema:
$ref: '#/components/schemas/ErrorResponse'
type: string
example: "Failed"
components:
parameters:
QrzUsername:
name: qrz_username
in: query
name: X-QRZ-Username
in: header
description: >
QRZ.com username for online callsign lookup, which will enrich the returned spots and alerts
with extra data. Requires a QRZ.com XML Subscriber (paid) account. Supply together with
@@ -444,14 +463,14 @@ components:
schema:
type: string
QrzPassword:
name: qrz_password
in: query
name: X-QRZ-Password
in: header
description: QRZ.com password. Supply together with `qrz_username`.
schema:
type: string
QrzSessionKey:
name: qrz_session_key
in: query
name: X-QRZ-Session-Key
in: header
description: >
A pre-obtained QRZ.com XML session key, as an alternative to supplying `qrz_username` and
`qrz_password`. See https://www.qrz.com/docs/xml/current_spec.html for details on how to
@@ -459,22 +478,22 @@ components:
schema:
type: string
HamqthUsername:
name: hamqth_username
in: query
name: X-HamQTH-Username
in: header
description: >
HamQTH username for online callsign lookup, which will enrich the returned spots and alerts
with extra data. Supply together with `hamqth_password`, or supply `hamqth_session_id` instead.
schema:
type: string
HamqthPassword:
name: hamqth_password
in: query
name: X-HamQTH-Password
in: header
description: HamQTH password. Supply together with `hamqth_username`.
schema:
type: string
HamqthSessionId:
name: hamqth_session_id
in: query
name: X-HamQTH-Session-ID
in: header
description: >
A pre-obtained HamQTH session ID, as an alternative to supplying `hamqth_username` and
`hamqth_password`. See https://www.hamqth.com/developers.php for details on how to retrieve
@@ -1185,6 +1204,54 @@ components:
$ref: "#/components/schemas/PropagationMode"
SpotSubmission:
description: >
Request body for POST /spot. Contains a "spot" sub-object with the spot data, and an optional
"handling" sub-object with server-side instructions consumed by Spothole.
type: object
required:
- spot
properties:
spot:
$ref: '#/components/schemas/Spot'
handling:
type: object
description: >
Optional server-side instructions for how to process this spot submission.
properties:
submit_upstream:
type: boolean
description: >
If true, forward the spot to an external upstream provider (e.g. POTA, SOTA) rather
than only adding it to this Spothole server. Requires `sig`, at least one `sig_refs`
entry, and `upstream_provider` to be set. Check `spot_submit_providers` in the
/options response to see which SIGs and providers support this.
default: false
upstream_provider:
type: string
description: >
Name of the upstream provider to submit the spot to, e.g. "POTA" or "SOTA". Must
match one of the provider names returned in `spot_submit_providers` for the chosen SIG.
example: POTA
upstream_credentials:
type: object
description: >
Provider-specific credentials required to authenticate the upstream submission.
The required keys depend on the provider. Credentials are used only for the upstream
call and are never stored by Spothole.
additionalProperties:
type: string
example:
user_id: "12345"
api_key: "abc123"
captcha_token:
type: string
description: >
A Google reCAPTCHA v2 response token. Required when submitting upstream if the
server has reCAPTCHA configured. Obtain the token by completing the reCAPTCHA
widget rendered on the Add Spot page.
example: "03AFY_a8Xq..."
SpotStream:
type: object
description: A server-sent event containing a spot
@@ -1769,6 +1836,32 @@ components:
description: The number of references fetched using this provider.
example: 1234
CallsignDataProviderStatus:
type: object
properties:
sig_name:
type: string
description: The name of the provider.
example: Country Files
enabled:
type: boolean
description: Whether the provider is enabled or not.
example: true
status:
type: string
description: The status of the provider.
example: OK
last_updated:
type: number
description: >
The last time at which this provider received data, UTC seconds since UNIX epoch. If this
is zero, the provider has never updated.
example: 1759579508
lookup_count:
type: number
description: The number of callsign lookups performed using this provider since the server was started.
example: 1234
SpotList:
type: array
items:
@@ -1779,14 +1872,6 @@ components:
items:
$ref: '#/components/schemas/Alert'
OkResponse:
type: string
example: "OK"
ErrorResponse:
type: string
example: "Failed"
DxStats:
type: object
description: Spot counts keyed by DE continent
@@ -1876,6 +1961,11 @@ components:
description: An array of all the SIG reference data providers.
items:
$ref: '#/components/schemas/SIGRefDataProviderStatus'
callsign_data_providers:
type: array
description: An array of all the callsign data providers.
items:
$ref: '#/components/schemas/CallsignDataProviderStatus'
Options:
type: object
@@ -1902,12 +1992,24 @@ components:
description: An array of all the supported Special Interest Groups.
items:
$ref: '#/components/schemas/SIG'
sources:
spot_providers:
type: array
description: An array of all the supported data sources.
description: An array of all the supported spot data sources.
items:
type: string
example: "Cluster"
alert_providers:
type: array
description: An array of all the supported alert data sources.
items:
type: string
example: "POTA"
callsign_data_providers:
type: array
description: An array of all the supported callsign lookup providers.
items:
type: string
example: "QRZ.com"
continents:
type: array
description: An array of all the supported continents.
@@ -1923,7 +2025,7 @@ components:
type: integer
description: >
The maximum age, in seconds, of any spot before it will be deleted by the system. When
querying the /api/v1/spots endpoint and providing a "max_age" or "since" parameter, there
querying the /api/v2/spots endpoint and providing a "max_age" or "since" parameter, there
is no point providing a number larger than this, because the system drops all spots older
than this.
example: 3600
@@ -1933,13 +2035,31 @@ components:
Whether the POST /spot call, to add spots to the server directly via its API, is permitted
on this server.
example: true
spot_submit_providers:
type: object
description: >
A map of SIG name to a list of provider names that support upstream spot submission for that SIG.
If a SIG appears as a key here, the POST /spot endpoint accepts `submit_upstream: true` for
spots with that SIG, and will forward the spot to one of the listed providers. Omitted if no
providers support upstream submission.
additionalProperties:
type: array
items:
type: string
example:
POTA: [ POTA ]
SOTA: [ SOTA, GMA, ParksNPeaks ]
CallLookup:
CallsignData:
type: object
properties:
call:
type: string
description: Callsign, as provided to the API
example: DL/M0TRT/P
home_call:
type: string
description: The "home" call, without prefixes or suffixes
example: M0TRT
name:
type: string
+212 -45
View File
@@ -1,7 +1,35 @@
// Credentials schema per provider name. Defines the fields to collect and how to label them.
const PROVIDER_CREDENTIAL_SCHEMAS = {
// todo Figure out SOTA authentication
// see e.g. https://github.com/ham2k/app-polo/blob/main/src/extensions/activities/sota/SOTAAccount.jsx
// https://github.com/ham2k/app-polo/blob/main/src/store/apis/apiSOTA/apiSOTA.js
// Refresh token? Way to show user that they need to log in again because cached credentials aren't valid?
// todo type: text/password distinction on text boxes so API keys can be obscured
"SOTA": [
{key: "access_token", label: "SOTA Access Token", help: ""},
{key: "id_token", label: "SOTA ID Token", help: "TODO SOTA authentication to provide this..."}
],
"ParksNPeaks": [
{key: "user_id", label: "Parks N Peaks User ID", help: ""},
{key: "api_key", label: "Parks N Peaks API Key", help: "Get your API key from your Parks N Peaks account."}
],
"ZLOTA": [
{key: "user_id", label: "ZLOTA User ID", help: ""},
{key: "api_key", label: "ZLOTA User PIN", help: "Get your PIN from your ZLOTA account."}
],
"Tiles": [
{
key: "offline_spot_gateway_pin",
label: "Offline Spot Gateway PIN",
help: "Get your PIN from your Tiles on the Air account profile."
}
]
};
// Load server options. Once a successful callback is made from this, we can populate the choice boxes in the form and load
// any saved values from local storage.
function loadOptions() {
$.getJSON('/api/v1/options', function (jsonData) {
$.getJSON('/api/v2/options', function (jsonData) {
// Store options
options = jsonData;
@@ -21,11 +49,144 @@ function loadOptions() {
}));
});
// Load reCAPTCHA if a site key is configured (key is inlined into page by server)
if (window._recaptchaSiteKey) {
loadRecaptcha(window._recaptchaSiteKey);
}
// Load settings from settings storage now all the controls are available
loadSettings();
// Update the upstream area for any pre-selected SIG
updateUpstreamArea();
});
}
// Load and inject the reCAPTCHA script
function loadRecaptcha(siteKey) {
window._recaptchaSiteKey = siteKey;
if (!document.getElementById('recaptcha-script')) {
const script = document.createElement('script');
script.id = 'recaptcha-script';
script.src = 'https://www.google.com/recaptcha/api.js?render=explicit&onload=renderRecaptcha';
script.async = true;
script.defer = true;
document.head.appendChild(script);
}
$("#recaptcha-area").show();
}
// Called by reCAPTCHA after its script loads
function renderRecaptcha() {
window._recaptchaWidgetId = grecaptcha.render('recaptcha-widget', {
sitekey: window._recaptchaSiteKey,
size: 'normal'
});
}
// Update the "Send spot to..." area based on the currently selected SIG
function updateUpstreamArea() {
if (!window._allowUpstreamSpotting || !options || !options["spot_submit_providers"]) {
$("#upstream-area").hide();
return;
}
const sig = $("#sig").val();
const providers = (sig && options["spot_submit_providers"][sig]) ? options["spot_submit_providers"][sig] : [];
if (providers.length === 0) {
$("#upstream-area").hide();
return;
}
$("#upstream-area").show();
// Update the provider selector
$("#upstream-provider-select").empty();
$.each(providers, function (i, name) {
$("#upstream-provider-select").append($('<option>', {value: name, text: name}));
});
if (providers.length > 1) {
$("#upstream-provider-label").text("upstream spot sources:");
$("#upstream-provider-select-col").show();
} else {
$("#upstream-provider-label").text(providers[0]);
$("#upstream-provider-select-col").hide();
}
// Show the credentials button if this provider has an authentication mechanism and we need input from the user
updateCredentialsButton();
}
// Update the credentials button visibility based on selected provider
function updateCredentialsButton() {
const providerName = getSelectedUpstreamProvider();
if (providerName && PROVIDER_CREDENTIAL_SCHEMAS[providerName]) {
$("#upstream-credentials-btn").show();
} else {
$("#upstream-credentials-btn").hide();
}
}
// Get the currently selected upstream provider name
function getSelectedUpstreamProvider() {
const providers = (options && options["spot_submit_providers"] && $("#sig").val())
? (options["spot_submit_providers"][$("#sig").val()] || [])
: [];
if (providers.length === 0) return null;
if (providers.length === 1) return providers[0];
return $("#upstream-provider-select").val();
}
// Show the credentials modal for the currently selected upstream provider
function showCredentialsModal() {
const providerName = getSelectedUpstreamProvider();
if (!providerName || !PROVIDER_CREDENTIAL_SCHEMAS[providerName]) return;
const schema = PROVIDER_CREDENTIAL_SCHEMAS[providerName];
const stored = loadCredentials(providerName);
$("#credentials-provider-name").text(providerName);
$("#credentials-fields").empty();
$.each(schema, function (i, field) {
const val = stored[field.key] || "";
let html = '<div class="mb-3">';
html += '<label for="cred-' + field.key + '" class="form-label">' + field.label + '</label>';
html += '<input type="text" class="form-control" id="cred-' + field.key + '" value="' + $('<div>').text(val).html() + '">';
if (field.help) {
html += '<div class="form-text">' + field.help + '</div>';
}
html += '</div>';
$("#credentials-fields").append(html);
});
// Store provider name for saveCredentials()
$("#credentials-modal").data("provider", providerName);
new bootstrap.Modal(document.getElementById('credentials-modal')).show();
}
// Save credentials from the modal to local storage
function saveCredentials() {
const providerName = $("#credentials-modal").data("provider");
if (!providerName || !PROVIDER_CREDENTIAL_SCHEMAS[providerName]) return;
const schema = PROVIDER_CREDENTIAL_SCHEMAS[providerName];
const creds = {};
$.each(schema, function (i, field) {
creds[field.key] = $("#cred-" + field.key).val();
});
localStorage.setItem("upstream-credentials-" + providerName, JSON.stringify(creds));
bootstrap.Modal.getInstance(document.getElementById('credentials-modal')).hide();
}
// Load credentials for a provider from local storage
function loadCredentials(providerName) {
const stored = localStorage.getItem("upstream-credentials-" + providerName);
return stored ? JSON.parse(stored) : {};
}
// Method called to add a spot to the server
function addSpot() {
try {
@@ -42,57 +203,65 @@ function addSpot() {
const comment = $("#comment").val();
const de = $("#de-call").val().toUpperCase();
// Prepare the spot object for the server
const spot = {};
if (dx !== "") {
spot["dx_call"] = dx;
} else {
showAddSpotError("A DX callsign is required in order to spot.");
return;
}
if (freqStr !== "") {
spot["freq"] = parseFloat(freqStr) * 1000;
} else {
showAddSpotError("A frequency is required in order to spot.");
return;
}
if (mode !== "") {
spot["mode"] = mode;
}
if (sig !== "") {
spot["sig"] = sig;
}
if (sigRef !== "") {
spot["sig_refs"] = [{sig: sig, id: sigRef}];
}
if (dxGrid !== "") {
spot["dx_grid"] = dxGrid;
}
if (comment !== "") {
spot["comment"] = comment;
}
if (de !== "") {
if (mode !== "") spot["mode"] = mode;
if (sig !== "") spot["sig"] = sig;
if (sigRef !== "") spot["sig_refs"] = [{sig: sig, id: sigRef}];
if (dxGrid !== "") spot["dx_grid"] = dxGrid;
if (comment !== "") spot["comment"] = comment;
spot["de_call"] = de;
} else {
showAddSpotError("A spotter callsign is required in order to spot.");
return;
}
spot["time"] = moment.utc().valueOf() / 1000.0;
$.ajax("/api/v1/spot", {
data: JSON.stringify(spot),
// Prepare "handling" structure to tell the server what to do with this spot
const handling = {};
// Add CAPTCHA token if reCAPTCHA is loaded
if (window._recaptchaWidgetId !== undefined) {
handling["captcha_token"] = grecaptcha.getResponse(window._recaptchaWidgetId);
}
// Upstream submission
const submitUpstream = $("#submit-upstream").is(":checked");
const upstreamProviderName = getSelectedUpstreamProvider();
if (submitUpstream && upstreamProviderName) {
handling["submit_upstream"] = true;
handling["upstream_provider"] = upstreamProviderName;
handling["upstream_credentials"] = loadCredentials(upstreamProviderName);
}
$.ajax("/api/v2/spot", {
data: JSON.stringify({spot, handling}),
contentType: 'application/json',
type: 'POST',
timeout: 10000,
success: async function () {
success: async function (result) {
// Reset CAPTCHA for next use
if (window._recaptchaWidgetId !== undefined) {
grecaptcha.reset(window._recaptchaWidgetId);
}
if (result && result.startsWith && result.startsWith("Warning")) {
$("#result-good").html("<div class='alert alert-warning fade show mb-0 mt-4' role='alert'><i class='fa-solid fa-triangle-exclamation'></i> " + result + " Returning you to the spots list...</div>");
} else {
$("#result-good").html("<div class='alert alert-success fade show mb-0 mt-4' role='alert'><i class='fa-solid fa-check'></i> Spot submitted. Returning you to the spots list...</div>");
}
$("#result-bad").html("");
setTimeout(() => {
$("#result-good").hide();
window.location.replace("/");
}, 1000);
}, 2000);
},
error: function (result) {
if (window._recaptchaWidgetId !== undefined) {
grecaptcha.reset(window._recaptchaWidgetId);
}
if (result.responseText) {
showAddSpotError(result.responseText.slice(1, -1));
} else {
showAddSpotError("The server did not return a response.");
}
}
});
} catch (error) {
@@ -121,20 +290,18 @@ $("#mode").change(function () {
$(this).val($(this).val().trim().toUpperCase());
});
// Display the intro box, unless the user has already dismissed it once.
function displayIntroBox() {
if (localStorage.getItem("add-spot-intro-box-dismissed") == null) {
$("#add-spot-intro-box").show();
}
$("#add-spot-intro-box-dismiss").click(function () {
localStorage.setItem("add-spot-intro-box-dismissed", true);
// Update upstream area and credentials button when SIG changes
$("#sig").change(function () {
updateUpstreamArea();
});
// Update credentials button when provider selector changes
$("#upstream-provider-select").change(function () {
updateCredentialsButton();
});
}
// Startup
$(document).ready(function () {
// Load options
loadOptions();
// Display intro box
displayIntroBox();
});
+5 -8
View File
@@ -8,7 +8,7 @@ let alerts = [];
// Load alerts and populate the table.
function loadAlerts() {
$.getJSON('/api/v1/alerts' + buildQueryString(false), function (jsonData) {
$.ajax({url: '/api/v2/alerts' + buildQueryString(), dataType: 'json', headers: getCredentialHeaders(), success: function (jsonData) {
// Store last updated time
lastUpdateTime = moment.utc();
updateRefreshDisplay();
@@ -16,11 +16,11 @@ function loadAlerts() {
alerts = jsonData;
// Update table
updateTable();
});
}});
}
// Build a query string for the API, based on the filters that the user has selected.
function buildQueryString(includeCredentials) {
function buildQueryString() {
let str = "?";
["dx_continent", "source"].forEach(fn => {
if (!allFilterOptionsSelected(fn)) {
@@ -35,9 +35,6 @@ function buildQueryString(includeCredentials) {
if ($("#dxpeditions_skip_max_duration_check")[0].checked) {
str = str + "&dxpeditions_skip_max_duration_check=true";
}
if (includeCredentials) {
str = str + getCredentialQueryString();
}
return str;
}
@@ -282,13 +279,13 @@ function addAlertRowsToTable(tbody, alerts) {
// Load server options. Once a successful callback is made from this, we then query alerts.
function loadOptions() {
$.getJSON('/api/v1/options', function (jsonData) {
$.getJSON('/api/v2/options', function (jsonData) {
// Store options
options = jsonData;
// Populate the filters panel
generateMultiToggleFilterCard("#dx-continent-options", "dx_continent", options["continents"]);
generateMultiToggleFilterCard("#source-options", "source", options["alert_sources"]);
generateMultiToggleFilterCard("#source-options", "source", options["alert_providers"]);
// Load URL params. These may select things from the various filter & display options, so the function needs
// to be called after these are set up, but if the URL params ask for "embedded mode", this will suppress
+5 -4
View File
@@ -20,13 +20,14 @@ function loadSpots() {
if (evtSource != null) {
evtSource.close();
}
$.getJSON('/api/v1/spots' + buildQueryString(), function (jsonData) {
$.ajax({url: '/api/v2/spots' + buildQueryString(), dataType: 'json', headers: getCredentialHeaders(), success: function (jsonData) {
// Store data
spots = jsonData;
// Update bands display
updateBands();
// Start the ongoing SSE connection
startSSEConnection();
}
});
}
@@ -35,7 +36,7 @@ function startSSEConnection() {
if (evtSource != null) {
evtSource.close();
}
evtSource = new EventSource('/api/v1/spots/stream' + buildQueryString());
evtSource = new EventSource('/api/v2/spots/stream' + buildQueryString());
evtSource.onmessage = function (event) {
const newSpot = JSON.parse(event.data);
@@ -273,7 +274,7 @@ function removeDuplicatesForBandPanel(spotList) {
// Load server options. Once a successful callback is made from this, we then query spots and set up the timer to query
// spots repeatedly.
function loadOptions() {
$.getJSON('/api/v1/options', function (jsonData) {
$.getJSON('/api/v2/options', function (jsonData) {
// Store options
options = jsonData;
@@ -291,7 +292,7 @@ function loadOptions() {
generateMultiToggleFilterCard("#dx-continent-options", "dx_continent", options["continents"]);
generateMultiToggleFilterCard("#de-continent-options", "de_continent", options["continents"]);
generateModesMultiToggleFilterCard(options["modes"]);
generateSourcesMultiToggleFilterCard(options["spot_sources"], spotProvidersEnabledByDefault);
generateSourcesMultiToggleFilterCard(options["spot_providers"], spotProvidersEnabledByDefault);
// Load URL params. These may select things from the various filter & display options, so the function needs
// to be called after these are set up, but if the URL params ask for "embedded mode", this will suppress
+8 -8
View File
@@ -250,23 +250,23 @@ function closeDataPanel() {
closePanel("#data-area");
}
// Build a query string fragment containing any QRZ.com / HamQTH credentials the user has supplied,
// Build a headers object containing any QRZ.com / HamQTH credentials the user has supplied,
// provided the corresponding "enabled" checkbox is ticked.
function getCredentialQueryString() {
let str = "";
function getCredentialHeaders() {
const headers = {};
if ($("#qrz-enabled")[0] && $("#qrz-enabled")[0].checked) {
const qrzUsername = $("#qrz-username").val();
const qrzPassword = $("#qrz-password").val();
if (qrzUsername) str += "&qrz_username=" + encodeURIComponent(qrzUsername);
if (qrzPassword) str += "&qrz_password=" + encodeURIComponent(qrzPassword);
if (qrzUsername) headers["X-QRZ-Username"] = qrzUsername;
if (qrzPassword) headers["X-QRZ-Password"] = qrzPassword;
}
if ($("#hamqth-enabled")[0] && $("#hamqth-enabled")[0].checked) {
const hamqthUsername = $("#hamqth-username").val();
const hamqthPassword = $("#hamqth-password").val();
if (hamqthUsername) str += "&hamqth_username=" + encodeURIComponent(hamqthUsername);
if (hamqthPassword) str += "&hamqth_password=" + encodeURIComponent(hamqthPassword);
if (hamqthUsername) headers["X-HamQTH-Username"] = hamqthUsername;
if (hamqthPassword) headers["X-HamQTH-Password"] = hamqthPassword;
}
return str;
return headers;
}
+3 -3
View File
@@ -10,7 +10,7 @@ let ionosondeChart = null;
// Load solar conditions
function loadSolarConditions() {
$.getJSON('/api/v1/solar', function (jsonData) {
$.getJSON('/api/v2/solar', function (jsonData) {
// HF
@@ -539,7 +539,7 @@ function renderIonosondeData() {
ctx.strokeStyle = gridColor;
ctx.lineWidth = 1;
ctx.setLineDash([]);
// Add an extra vertical line for 30MHz, which should correspond to the top of the chart and avoid having
// Add an extra horizontal line for 30MHz, which should correspond to the top of the chart and avoid having
// no top "border" gridline
const y30 = scales.y.getPixelForValue(30);
if (y30 >= chartArea.top && y30 <= chartArea.bottom) {
@@ -660,7 +660,7 @@ function dxStatsContientChanged() {
// Fetch DX stats from the API and render
function loadDxStats() {
$.getJSON('/api/v1/dxstats', function (jsonData) {
$.getJSON('/api/v2/dxstats', function (jsonData) {
dxStatsData = jsonData;
renderDxStats();
});
+5 -8
View File
@@ -45,7 +45,7 @@ function loadSpots() {
// 2) (If we have credentials) reload with them, replacing what's already there,
// 3) Subscribe to the SSE endpoint (with credentials if we have them) so that updates come with augmented
// data if they can.
$.getJSON('/api/v1/spots' + buildQueryString(false), function (jsonData) {
$.ajax({url: '/api/v2/spots' + buildQueryString(), dataType: 'json', headers: getCredentialHeaders(), success: function (jsonData) {
// Store data
spots = jsonData;
// Update map
@@ -68,7 +68,7 @@ function loadSpots() {
// now
startSSEConnection();
}
});
}});
}
// Start the SSE connection to receive new spots as they arrive
@@ -163,7 +163,7 @@ function removeSpotFromMap(key) {
}
// Build a query string for the API, based on the filters that the user has selected.
function buildQueryString(includeCredentials) {
function buildQueryString() {
let str = "?";
["dx_continent", "de_continent", "mode", "source", "band", "sig"].forEach(fn => {
if (!allFilterOptionsSelected(fn)) {
@@ -173,9 +173,6 @@ function buildQueryString(includeCredentials) {
str = str + "max_age=" + $("#max-spot-age option:selected").val();
// Additional filters for the map view: No dupes, no QRT, only spots with good locations
str = str + "&dedupe=true&allow_qrt=false";
if (includeCredentials) {
str = str + getCredentialQueryString();
}
return str;
}
@@ -304,7 +301,7 @@ function getTooltipText(s) {
// Load server options. Once a successful callback is made from this, we then query spots and set up the timer to query
// spots repeatedly.
function loadOptions() {
$.getJSON('/api/v1/options', function (jsonData) {
$.getJSON('/api/v2/options', function (jsonData) {
// Store options
options = jsonData;
@@ -322,7 +319,7 @@ function loadOptions() {
generateMultiToggleFilterCard("#dx-continent-options", "dx_continent", options["continents"]);
generateMultiToggleFilterCard("#de-continent-options", "de_continent", options["continents"]);
generateModesMultiToggleFilterCard(options["modes"]);
generateSourcesMultiToggleFilterCard(options["spot_sources"], spotProvidersEnabledByDefault);
generateSourcesMultiToggleFilterCard(options["spot_providers"], spotProvidersEnabledByDefault);
// Load URL params. These may select things from the various filter & display options, so the function needs
// to be called after these are set up, but if the URL params ask for "embedded mode", this will suppress
+6 -9
View File
@@ -20,7 +20,7 @@ function loadSpots() {
}
// Make the new query
$.getJSON('/api/v1/spots' + buildQueryString(false), function (jsonData) {
$.ajax({url: '/api/v2/spots' + buildQueryString(), dataType: 'json', headers: getCredentialHeaders(), success: function (jsonData) {
// Store data
spots = jsonData;
// Update table
@@ -30,7 +30,7 @@ function loadSpots() {
if (run) {
startSSEConnection();
}
});
}});
}
// Start an SSE connection (closing an existing one if it exists). This will then be used to add to the table on the
@@ -39,7 +39,7 @@ function startSSEConnection() {
if (evtSource != null) {
evtSource.close();
}
evtSource = new EventSource('/api/v1/spots/stream' + buildQueryString(true));
evtSource = new EventSource('/api/v2/spots/stream' + buildQueryString());
evtSource.onmessage = function (event) {
// Get the new spot
@@ -86,7 +86,7 @@ function startSSEConnection() {
}
// Build a query string for the API, based on the filters that the user has selected.
function buildQueryString(includeCredentials) {
function buildQueryString() {
let str = "?";
["dx_continent", "de_continent", "mode", "source", "band", "sig"].forEach(fn => {
if (!allFilterOptionsSelected(fn)) {
@@ -97,9 +97,6 @@ function buildQueryString(includeCredentials) {
if ($("#search").val() !== "") {
str = str + "&text_includes=" + encodeURIComponent($("#search").val());
}
if (includeCredentials) {
str = str + getCredentialQueryString();
}
return str;
}
@@ -418,7 +415,7 @@ function createNewTableRowsForSpot(s, highlightNew) {
// Load server options. Once a successful callback is made from this, we then query spots and set up the timer to query
// spots repeatedly.
function loadOptions() {
$.getJSON('/api/v1/options', function (jsonData) {
$.getJSON('/api/v2/options', function (jsonData) {
// Store options
options = jsonData;
@@ -436,7 +433,7 @@ function loadOptions() {
generateMultiToggleFilterCard("#dx-continent-options", "dx_continent", options["continents"]);
generateMultiToggleFilterCard("#de-continent-options", "de_continent", options["continents"]);
generateModesMultiToggleFilterCard(options["modes"]);
generateSourcesMultiToggleFilterCard(options["spot_sources"], spotProvidersEnabledByDefault);
generateSourcesMultiToggleFilterCard(options["spot_providers"], spotProvidersEnabledByDefault);
// Load URL params. These may select things from the various filter & display options, so the function needs
// to be called after these are set up, but if the URL params ask for "embedded mode", this will suppress
+17 -7
View File
@@ -1,6 +1,6 @@
// Load server status
function loadStatus() {
$.getJSON('/api/v1/status', function (jsonData) {
$.getJSON('/api/v2/status', function (jsonData) {
$("#software-version").text(jsonData["software-version"]);
$("#server-owner-callsign").text(jsonData["server-owner-callsign"]);
$("#up-since").text(moment().subtract(jsonData["uptime"], 'seconds').fromNow());
@@ -14,7 +14,7 @@ function loadStatus() {
jsonData["spot_providers"].forEach(p => {
$("#spot-providers-status-container").append(`
<div class="row row-cols-1 row-cols-md-4 g-4 mb-2">
<div class="row row-cols-1 row-cols-md-4 g-4 mb-4 mb-md-2">
<div class="col"><strong>${p["name"]}</strong></div>
<div class="col">Status: ${p["status"]}</div>
<div class="col">Last updated: ${(p["enabled"] && p["last_updated"] > 0) ? moment.unix(p["last_updated"]).utc().fromNow() : "N/A"}</div>
@@ -24,7 +24,7 @@ function loadStatus() {
jsonData["alert_providers"].forEach(p => {
$("#alert-providers-status-container").append(`
<div class="row row-cols-1 row-cols-md-4 g-4 mb-2">
<div class="row row-cols-1 row-cols-md-4 g-4 mb-4 mb-md-2">
<div class="col"><strong>${p["name"]}</strong></div>
<div class="col">Status: ${p["status"]}</div>
<div class="col">Last updated: ${(p["enabled"] && p["last_updated"] > 0) ? moment.unix(p["last_updated"]).utc().fromNow() : "N/A"}</div>
@@ -33,7 +33,7 @@ function loadStatus() {
jsonData["solar_condition_providers"].forEach(p => {
$("#condition-providers-status-container").append(`
<div class="row row-cols-1 row-cols-md-4 g-4 mb-2">
<div class="row row-cols-1 row-cols-md-4 g-4 mb-4 mb-md-2">
<div class="col"><strong>${p["name"]}</strong></div>
<div class="col">Status: ${p["status"]}</div>
<div class="col">Last updated: ${(p["enabled"] && p["last_updated"] > 0) ? moment.unix(p["last_updated"]).utc().fromNow() : "N/A"}</div>
@@ -42,7 +42,7 @@ function loadStatus() {
jsonData["static_data_providers"].forEach(p => {
$("#static-data-providers-status-container").append(`
<div class="row row-cols-1 row-cols-md-4 g-4 mb-2">
<div class="row row-cols-1 row-cols-md-4 g-4 mb-4 mb-md-2">
<div class="col"><strong>${p["name"]}</strong></div>
<div class="col">Status: ${p["status"]}</div>
<div class="col">Last updated: ${(p["enabled"] && p["last_updated"] > 0) ? moment.unix(p["last_updated"]).utc().fromNow() : "N/A"}</div>
@@ -51,11 +51,21 @@ function loadStatus() {
jsonData["sig_ref_data_providers"].forEach(p => {
$("#sig-ref-data-providers-status-container").append(`
<div class="row row-cols-1 row-cols-md-4 g-4 mb-2">
<div class="row row-cols-1 row-cols-md-4 g-4 mb-4 mb-md-2">
<div class="col"><strong>${p["sig_name"]}</strong></div>
<div class="col">Status: ${p["status"]}</div>
<div class="col">Last updated: ${(p["enabled"] && p["last_updated"] > 0) ? moment.unix(p["last_updated"]).utc().fromNow() : "N/A"}</div>
<div class="col">References: ${(p["enabled"] && p["reference_count"] > 0) ? p["reference_count"] : "N/A"}</div>
<div class="col">References: ${p["enabled"] ? p["reference_count"] : "N/A"}</div>
</div>`);
});
jsonData["callsign_data_providers"].forEach(p => {
$("#callsign-data-providers-status-container").append(`
<div class="row row-cols-1 row-cols-md-4 g-4 mb-4 mb-md-2">
<div class="col"><strong>${p["name"]}</strong></div>
<div class="col">Status: ${p["status"]}</div>
<div class="col">Last updated: ${(p["enabled"] && p["last_updated"] > 0) ? moment.unix(p["last_updated"]).utc().fromNow() : "N/A"}</div>
<div class="col">Lookups: ${p["enabled"] ? p["lookup_count"] : "N/A"}</div>
</div>`);
});
});
+83
View File
@@ -296,6 +296,16 @@ function setBandColorScheme(scheme) {
return ret;
}
// Get the list of known bands
function getKnownBands() {
return Array.from(Object.keys(BAND_COLOR_SCHEMES[bandColorScheme]));
}
// Get the list of available band colour schemes
function getAvailableBandColorSchemes() {
return Array.from(Object.keys(BAND_COLOR_SCHEMES));
}
// Band name to colour (in the current colour scheme). If the band is unknown, black will be returned.
function bandToColor(band) {
let col = (band != null) ? BAND_COLOR_SCHEMES[bandColorScheme][band] : null;
@@ -314,6 +324,22 @@ function bandToContrastColor(band) {
return (lum > 128) ? "#000000" : "#ffffff";
}
const MODE_TYPE_COLOR_SCHEMES = {
"CW": "red",
"PHONE": "green",
"DATA": "blue"
}
// Mode type (CW, PHONE, DATA) to colour. If the mode type is unknown, black will be returned.
function modeTypeToColor(modeType) {
let col = (modeType != null) ? MODE_TYPE_COLOR_SCHEMES[modeType.toUpperCase()] : null;
if (col) {
return col;
} else {
return "#000000";
}
}
const SIG_ICONS = {
"POTA": "fa-tree",
"SOTA": "fa-mountain-sun",
@@ -340,6 +366,31 @@ const SIG_ICONS = {
"Toilets": "fa-toilet"
}
const SIG_NAMES = {
"POTA": "Parks on the Air",
"SOTA": "Summits on the Air",
"WWFF": "Worldwide Flora & Fauna",
"GMA": "Global Mountain Activity",
"WWBOTA": "Bunkers on the Air",
"HEMA": "Humps Excluding Marilyns Award",
"IOTA": "Islands on the Air",
"MOTA": "Mills on the Air",
"ARLHS": "Amateur Radio Lighthouse Society",
"ILLW": "International Lighthouse Lightship Weekend",
"SIOTA": "Silos on the Air",
"WCA": "World Castles Award",
"ZLOTA": "New Zealand on the Air",
"WOTA": "Wainwrights on the Air",
"BOTA": "Beaches on the Air",
"KRMNPA": "Keith Roget Memorial National Parks Award",
"LLOTA": "Lagos y Lagunas on the Air",
"WWTOTA": "Towers on the Air",
"WAB": "Worked All Britain",
"WAI": "Worked All Ireland",
"Tiles": "Tiles on the Air",
"TOTA": "Toilets on the Air"
}
// Get the Font Awesome icon for a given SIG. If the SIG is unknown, the provided default symbol will be returned
function sigToIcon(sig, defaultIcon) {
let col = (sig != null) ? SIG_ICONS[sig] : null;
@@ -354,3 +405,35 @@ function sigToIcon(sig, defaultIcon) {
}
}
}
// Get the full name for a given SIG abbreviation. If the SIG is unknown, an empty string will be returned.
function sigToName(sig) {
let col = (sig != null) ? SIG_NAMES[sig] : null;
if (col) {
return col;
} else {
let col = (sig != null) ? SIG_NAMES[sig.toUpperCase()] : null;
if (col) {
return col;
} else {
return "";
}
}
}
// Get the list of known SIGs
function getKnownSIGs() {
return Array.from(Object.keys(SIG_ICONS));
}
// Format a Maidenhead grid with alternating alphabetic blocks in lower case
function formatGrid(grid) {
grid = grid.toUpperCase();
if (grid.length >= 6) {
grid = grid.substring(0, 4) + grid.substring(4, 6).toLowerCase() + grid.substring(6);
}
if (grid.length >= 12) {
grid = grid.substring(0, 10) + grid.substring(10, 12).toLowerCase() + grid.substring(14);
}
return grid;
}
+3 -3
View File
@@ -16,7 +16,7 @@ L.WorkedAllBritainIreland = L.LayerGroup.extend({
// Workaround to load the geodesy modules in non-modular code. Once we have loaded all three modules, trigger a
// first draw.
import("https://misc.ianrenton.com/Leaflet.WorkedAllBritainIreland/modules/geodesy/osgridref.js")
import(new URL('./modules/geodesy/osgridref.js', import.meta.url).href)
.then(module => {
this._osGridLibrary = module;
if (this._ieGridLibrary && this._utmLibrary) {
@@ -27,7 +27,7 @@ L.WorkedAllBritainIreland = L.LayerGroup.extend({
console.log("Error loading OS Grid Ref library, GB WAB squares may not be available.");
console.log(error);
});
import("https://misc.ianrenton.com/Leaflet.WorkedAllBritainIreland/modules/geodesy/iegridref.js")
import(new URL('./modules/geodesy/iegridref.js', import.meta.url).href)
.then(module => {
this._ieGridLibrary = module;
if (this._osGridLibrary && this._utmLibrary) {
@@ -38,7 +38,7 @@ L.WorkedAllBritainIreland = L.LayerGroup.extend({
console.log("Error loading IE Grid Ref library, NI WAB squares may not be available.");
console.log(error);
});
import("https://misc.ianrenton.com/Leaflet.WorkedAllBritainIreland/modules/geodesy/utm_ci.js")
import(new URL('./modules/geodesy/utm_ci.js', import.meta.url).href)
.then(module => {
this._utmLibrary = module;
if (this._osGridLibrary && this._ieGridLibrary) {
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The MIT License (MIT)
Copyright (c) 2014 Chris Veness
With some additional code & modifications by Ian Renton, 2025
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in all
copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
SOFTWARE.
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/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
/* Ordnance Survey of Ireland Grid Reference funcs (c) Chris Veness 2005-2021 & Ian Renton 2025 */
/* MIT Licence */
/* www.movable-type.co.uk/scripts/latlong-gridref.html */
/* www.movable-type.co.uk/scripts/geodesy-library.html#IeGridRef */
/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
import LatLonEllipsoidal, { Dms } from 'https://cdn.jsdelivr.net/npm/geodesy@2/latlon-ellipsoidal-datum.js';
/**
* Ordnance Survey of Ireland & Northern Ireland grid reference calculations, based on the
* IeGridRef class in the geodesy library at https://github.com/chrisveness/geodesy
*/
/* IeGridRef - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
const nationalGrid = {
trueOrigin: { lat: 53.5, lon: -8 }, // true origin of Irish grid 53°30N, 8°W
falseOrigin: { easting: -200e3, northing: -250e3 }, // easting & northing of false origin, metres from true origin
scaleFactor: 1.000035, // scale factor on central meridian
ellipsoid: LatLonEllipsoidal.ellipsoids.Airy1830,
};
/**
* Irish Grid References with methods to parse and convert them to latitude/longitude points.
*/
class IeGridRef {
/**
* Creates an IeGridRef object.
*
* @param {number} easting - Easting in metres from OS Grid false origin.
* @param {number} northing - Northing in metres from OS Grid false origin.
*
* @example
* import IeGridRef from '/js/geodesy/IeGridRef.js';
* const gridref = new IeGridRef(651409, 313177);
*/
constructor(easting, northing) {
this.easting = Number(easting);
this.northing = Number(northing);
if (isNaN(easting) || this.easting<0 || this.easting>7000e3) throw new RangeError(`invalid easting ${easting}`);
if (isNaN(northing) || this.northing<0 || this.northing>13000e3) throw new RangeError(`invalid northing ${northing}`);
}
/**
* Converts this Irish Grid Reference easting/northing coordinate to latitude/longitude
* (SW corner of grid square).
*
* While OS Grid References are based on OSGB-36, the Ordnance Survey have deprecated the use of
* OSGB-36 for latitude/longitude coordinates (in favour of WGS-84), hence this function returns
* WGS-84 by default, with OSGB-36 as an option. See www.ordnancesurvey.co.uk/blog/2014/12/2.
*
* Note formulation implemented here due to Thomas, Redfearn, etc is as published by OS, but is
* inferior to Krüger as used by e.g. Karney 2011.
*
* @param {LatLon.datum} [datum=WGS84] - Datum to convert grid reference into.
* @returns {LatLon} Latitude/longitude of supplied grid reference.
*
* @example
* const gridref = new IeGridRef(651409.903, 313177.270);
* const pWgs84 = gridref.toLatLon(); // 52°3928.723″N, 001°4257.787″E
* // to obtain (historical) OSGB36 lat/lon point:
* const pOsgb = gridref.toLatLon(LatLon.datums.OSGB36); // 52°3927.253″N, 001°4304.518″E
*/
toLatLon(datum=LatLonEllipsoidal.datums.WGS84) {
const { easting: E, northing: N } = this;
const { a, b } = nationalGrid.ellipsoid; // a = 6377563.396, b = 6356256.909
const φ0 = nationalGrid.trueOrigin.lat.toRadians(); // latitude of true origin
const λ0 = nationalGrid.trueOrigin.lon.toRadians(); // longitude of true origin
const E0 = -nationalGrid.falseOrigin.easting; // easting of true origin
const N0 = -nationalGrid.falseOrigin.northing; // northing of true origin
const F0 = nationalGrid.scaleFactor; // scale factor
const e2 = 1 - (b*b)/(a*a); // eccentricity squared
const n = (a-b)/(a+b), n2 = n*n, n3 = n*n*n; // n, n², n³
let φ=φ0, M=0;
do {
φ = (N-N0-M)/(a*F0) + φ;
const Ma = (1 + n + (5/4)*n2 + (5/4)*n3) * (φ-φ0);
const Mb = (3*n + 3*n2 + (21/8)*n3) * Math.sin(φ-φ0) * Math.cos(φ+φ0);
const Mc = ((15/8)*n2 + (15/8)*n3) * Math.sin(2*(φ-φ0)) * Math.cos(2*(φ+φ0));
const Md = (35/24)*n3 * Math.sin(3*(φ-φ0)) * Math.cos(3*(φ+φ0));
M = b * F0 * (Ma - Mb + Mc - Md); // meridional arc
} while (Math.abs(N-N0-M) >= 0.00001); // ie until < 0.01mm
const cosφ = Math.cos(φ), sinφ = Math.sin(φ);
const ν = a*F0/Math.sqrt(1-e2*sinφ*sinφ); // nu = transverse radius of curvature
const ρ = a*F0*(1-e2)/Math.pow(1-e2*sinφ*sinφ, 1.5); // rho = meridional radius of curvature
const η2 = ν/ρ-1; // eta = ?
const tanφ = Math.tan(φ);
const tan2φ = tanφ*tanφ, tan4φ = tan2φ*tan2φ, tan6φ = tan4φ*tan2φ;
const secφ = 1/cosφ;
const ν3 = ν*ν*ν, ν5 = ν3*ν*ν, ν7 = ν5*ν*ν;
const VII = tanφ/(2*ρ*ν);
const VIII = tanφ/(24*ρ*ν3)*(5+3*tan2φ+η2-9*tan2φ*η2);
const IX = tanφ/(720*ρ*ν5)*(61+90*tan2φ+45*tan4φ);
const X = secφ/ν;
const XI = secφ/(6*ν3)*(ν/ρ+2*tan2φ);
const XII = secφ/(120*ν5)*(5+28*tan2φ+24*tan4φ);
const XIIA = secφ/(5040*ν7)*(61+662*tan2φ+1320*tan4φ+720*tan6φ);
const dE = (E-E0), dE2 = dE*dE, dE3 = dE2*dE, dE4 = dE2*dE2, dE5 = dE3*dE2, dE6 = dE4*dE2, dE7 = dE5*dE2;
φ = φ - VII*dE2 + VIII*dE4 - IX*dE6;
const λ = λ0 + X*dE - XI*dE3 + XII*dE5 - XIIA*dE7;
let point = new LatLon_IeGridRef(φ.toDegrees(), λ.toDegrees(), 0, LatLonEllipsoidal.datums.OSGB36);
if (datum != LatLonEllipsoidal.datums.OSGB36) {
// if point is required in datum other than OSGB36, convert it
point = point.convertDatum(datum);
// convertDatum() gives us a LatLon: convert to LatLon_IeGridRef which includes toOsGrid()
point = new LatLon_IeGridRef(point.lat, point.lon, point.height, point.datum);
}
return point;
}
/**
* Parses grid reference to IeGridRef object.
*
* Accepts standard grid references (eg 'G 387 148'), with or without whitespace separators, from
* two-digit references up to 10-digit references (1m × 1m square), or fully numeric comma-separated
* references in metres (eg '438700,114800').
*
* @param {string} gridref - Standard format OS Grid Reference.
* @returns {IeGridRef} Numeric version of grid reference in metres from false origin (SW corner of
* supplied grid square).
* @throws {Error} Invalid grid reference.
*
* @example
* const grid = IeGridRef.parse('G 51409 13177'); // grid: { easting: 651409, northing: 313177 }
*/
static parse(gridref) {
gridref = String(gridref).trim();
// check for fully numeric comma-separated gridref format
let match = gridref.match(/^(\d+),\s*(\d+)$/);
if (match) return new IeGridRef(match[1], match[2]);
// validate format
match = gridref.match(/^[ABCDEFGHJKLMNOPQRSTUVWXYZ]\s*[0-9]+\s*[0-9]+$/i);
if (!match) throw new Error(`invalid grid reference ${gridref}`);
// get numeric values of letter references, mapping A->0, B->1, C->2, etc:
let l1 = gridref.toUpperCase().charCodeAt(0) - 'A'.charCodeAt(0); // 100km square
// shuffle down letters after 'I' since 'I' is not used in grid:
if (l1 > 7) l1--;
// convert grid letters into 100km-square indexes from false origin (grid square SV):
const e100km = l1 % 5;
const n100km = 4 - Math.floor(l1 / 5);
// skip grid letters to get numeric (easting/northing) part of ref
let en = gridref.slice(1).trim().split(/\s+/);
// if e/n not whitespace separated, split half way
if (en.length == 1) en = [ en[0].slice(0, en[0].length / 2), en[0].slice(en[0].length / 2) ];
// validation
if (en[0].length != en[1].length) throw new Error(`invalid grid reference ${gridref}`);
// standardise to 10-digit refs (metres)
en[0] = en[0].padEnd(5, '0');
en[1] = en[1].padEnd(5, '0');
const e = e100km + en[0];
const n = n100km + en[1];
return new IeGridRef(e, n);
}
/**
* Converts this numeric grid reference to standard OS of Ireland Grid Reference.
*
* @param {number} [digits=10] - Precision of returned grid reference (10 digits = metres);
* digits=0 will return grid reference in numeric format.
* @returns {string} This grid reference in standard format.
*
* @example
* const gridref = new IeGridRef(651409, 313177).toString(8); // 'TG 5140 1317'
* const gridref = new IeGridRef(651409, 313177).toString(0); // '651409,313177'
*/
toString(digits=10) {
if (![ 0,2,4,6,8,10,12,14,16 ].includes(Number(digits))) throw new RangeError(`invalid precision ${digits}`); // eslint-disable-line comma-spacing
let { easting: e, northing: n } = this;
// use digits = 0 to return numeric format (in metres) - note northing may be >= 1e7
if (digits == 0) {
const format = { useGrouping: false, minimumIntegerDigits: 6, maximumFractionDigits: 3 };
const ePad = e.toLocaleString('en', format);
const nPad = n.toLocaleString('en', format);
return `${ePad},${nPad}`;
}
// get the 100km-grid indices
const e100km = Math.floor(e / 100000), n100km = Math.floor(n / 100000);
// translate those into the numeric equivalent of the grid letters
let l1 = (n100km) * 5 % 25 + e100km % 5;
return null; // haven't done this maths yet
// compensate for skipped 'I' and calculate grid letter
if (l1 > 7) l1++;
const letter = String.fromCharCode(l1 + 'A'.charCodeAt(0));
// strip 100km-grid indices from easting & northing, and reduce precision
e = Math.floor((e % 100000) / Math.pow(10, 5 - digits / 2));
n = Math.floor((n % 100000) / Math.pow(10, 5 - digits / 2));
// pad eastings & northings with leading zeros
e = e.toString().padStart(digits/2, '0');
n = n.toString().padStart(digits/2, '0');
return `${letter} ${e} ${n}`;
}
}
/* LatLon_IeGridRef - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
/**
* Extends LatLon class with method to convert LatLon point to Irish Grid Reference.
*
* @extends LatLonEllipsoidal
*/
class LatLon_IeGridRef extends LatLonEllipsoidal {
/**
* Converts latitude/longitude to Ordnance Survey of Ireland grid reference easting/northing coordinate.
*
* @returns {IeGridRef} Irish Grid Reference easting/northing.
*
* @example
* const grid = new LatLon(52.65798, 1.71605).toOsGrid(); // TG 51409 13177
* // for conversion of (historical) OSGB36 latitude/longitude point:
* const grid = new LatLon(52.65798, 1.71605).toOsGrid(LatLon.datums.OSGB36);
*/
toOsGrid() {
// if necessary convert to OSGB36 first
const point = this.datum == LatLonEllipsoidal.datums.OSGB36
? this
: this.convertDatum(LatLonEllipsoidal.datums.OSGB36);
const φ = point.lat.toRadians();
const λ = point.lon.toRadians();
const { a, b } = nationalGrid.ellipsoid; // a = 6377563.396, b = 6356256.909
const φ0 = nationalGrid.trueOrigin.lat.toRadians(); // latitude of true origin
const λ0 = nationalGrid.trueOrigin.lon.toRadians(); // longitude of true origin
const E0 = -nationalGrid.falseOrigin.easting; // easting of true origin
const N0 = -nationalGrid.falseOrigin.northing; // northing of true origin
const F0 = nationalGrid.scaleFactor; // scale factor
const e2 = 1 - (b*b)/(a*a); // eccentricity squared
const n = (a-b)/(a+b), n2 = n*n, n3 = n*n*n; // n, n², n³
const cosφ = Math.cos(φ), sinφ = Math.sin(φ);
const ν = a*F0/Math.sqrt(1-e2*sinφ*sinφ); // nu = transverse radius of curvature
const ρ = a*F0*(1-e2)/Math.pow(1-e2*sinφ*sinφ, 1.5); // rho = meridional radius of curvature
const η2 = ν/ρ-1; // eta = ?
const Ma = (1 + n + (5/4)*n2 + (5/4)*n3) * (φ-φ0);
const Mb = (3*n + 3*n2 + (21/8)*n3) * Math.sin(φ-φ0) * Math.cos(φ+φ0);
const Mc = ((15/8)*n2 + (15/8)*n3) * Math.sin(2*(φ-φ0)) * Math.cos(2*(φ+φ0));
const Md = (35/24)*n3 * Math.sin(3*(φ-φ0)) * Math.cos(3*(φ+φ0));
const M = b * F0 * (Ma - Mb + Mc - Md); // meridional arc
const cos3φ = cosφ*cosφ*cosφ;
const cos5φ = cos3φ*cosφ*cosφ;
const tan2φ = Math.tan(φ)*Math.tan(φ);
const tan4φ = tan2φ*tan2φ;
const I = M + N0;
const II = (ν/2)*sinφ*cosφ;
const III = (ν/24)*sinφ*cos3φ*(5-tan2φ+9*η2);
const IIIA = (ν/720)*sinφ*cos5φ*(61-58*tan2φ+tan4φ);
const IV = ν*cosφ;
const V = (ν/6)*cos3φ*(ν/ρ-tan2φ);
const VI = (ν/120) * cos5φ * (5 - 18*tan2φ + tan4φ + 14*η2 - 58*tan2φ*η2);
const Δλ = λ-λ0;
const Δλ2 = Δλ*Δλ, Δλ3 = Δλ2*Δλ, Δλ4 = Δλ3*Δλ, Δλ5 = Δλ4*Δλ, Δλ6 = Δλ5*Δλ;
let N = I + II*Δλ2 + III*Δλ4 + IIIA*Δλ6;
let E = E0 + IV*Δλ + V*Δλ3 + VI*Δλ5;
N = Number(N.toFixed(3)); // round to mm precision
E = Number(E.toFixed(3));
try {
return new IeGridRef(E, N); // note: gets truncated to SW corner of 1m grid square
} catch (e) {
throw new Error(`${e.message} from (${point.lat.toFixed(6)},${point.lon.toFixed(6)}).toOsGrid()`);
}
}
/**
* Override LatLonEllipsoidal.convertDatum() with version which returns LatLon_IeGridRef.
*/
convertDatum(toDatum) {
const osieED = super.convertDatum(toDatum); // returns LatLonEllipsoidal_Datum
const osieOSGR = new LatLon_IeGridRef(osieED.lat, osieED.lon, osieED.height, osieED.datum);
return osieOSGR;
}
}
/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
export { IeGridRef as default, LatLon_IeGridRef as LatLon, Dms };
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/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
/* Ordnance Survey Grid Reference functions (c) Chris Veness 2005-2021 */
/* MIT Licence */
/* www.movable-type.co.uk/scripts/latlong-gridref.html */
/* www.movable-type.co.uk/scripts/geodesy-library.html#osgridref */
/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
import LatLonEllipsoidal, { Dms } from 'https://cdn.jsdelivr.net/npm/geodesy@2/latlon-ellipsoidal-datum.js';
/**
* Ordnance Survey OSGB grid references provide geocoordinate references for UK mapping purposes.
*
* Formulation implemented here due to Thomas, Redfearn, etc is as published by OS, but is inferior
* to Krüger as used by e.g. Karney 2011.
*
* www.ordnancesurvey.co.uk/documents/resources/guide-coordinate-systems-great-britain.pdf.
*
* Note OSGB grid references cover Great Britain only; Ireland and the Channel Islands have their
* own references.
*
* Note that these formulae are based on ellipsoidal calculations, and according to the OS are
* accurate to about 45 metres for greater accuracy, a geoid-based transformation (OSTN15) must
* be used.
*/
/*
* Converted 2015 to work with WGS84 by default, OSGB36 as option;
* www.ordnancesurvey.co.uk/blog/2014/12/confirmation-on-changes-to-latitude-and-longitude
*/
/* OsGridRef - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
const nationalGrid = {
trueOrigin: { lat: 49, lon: -2 }, // true origin of grid 49°N,2°W on OSGB36 datum
falseOrigin: { easting: -400e3, northing: 100e3 }, // easting & northing of false origin, metres from true origin
scaleFactor: 0.9996012717, // scale factor on central meridian
ellipsoid: LatLonEllipsoidal.ellipsoids.Airy1830,
};
// note Irish National Grid uses t/o 53°30N, 8°W, f/o 200kmW, 250kmS, scale factor 1.000035, on Airy 1830 Modified ellipsoid
/**
* OS Grid References with methods to parse and convert them to latitude/longitude points.
*/
class OsGridRef {
/**
* Creates an OsGridRef object.
*
* @param {number} easting - Easting in metres from OS Grid false origin.
* @param {number} northing - Northing in metres from OS Grid false origin.
*
* @example
* import OsGridRef from '/js/geodesy/osgridref.js';
* const gridref = new OsGridRef(651409, 313177);
*/
constructor(easting, northing) {
this.easting = Number(easting);
this.northing = Number(northing);
if (isNaN(easting) || this.easting<0 || this.easting>700e3) throw new RangeError(`invalid easting ${easting}`);
if (isNaN(northing) || this.northing<0 || this.northing>1300e3) throw new RangeError(`invalid northing ${northing}`);
}
/**
* Converts this Ordnance Survey Grid Reference easting/northing coordinate to latitude/longitude
* (SW corner of grid square).
*
* While OS Grid References are based on OSGB-36, the Ordnance Survey have deprecated the use of
* OSGB-36 for latitude/longitude coordinates (in favour of WGS-84), hence this function returns
* WGS-84 by default, with OSGB-36 as an option. See www.ordnancesurvey.co.uk/blog/2014/12/2.
*
* Note formulation implemented here due to Thomas, Redfearn, etc is as published by OS, but is
* inferior to Krüger as used by e.g. Karney 2011.
*
* @param {LatLon.datum} [datum=WGS84] - Datum to convert grid reference into.
* @returns {LatLon} Latitude/longitude of supplied grid reference.
*
* @example
* const gridref = new OsGridRef(651409.903, 313177.270);
* const pWgs84 = gridref.toLatLon(); // 52°3928.723″N, 001°4257.787″E
* // to obtain (historical) OSGB36 lat/lon point:
* const pOsgb = gridref.toLatLon(LatLon.datums.OSGB36); // 52°3927.253″N, 001°4304.518″E
*/
toLatLon(datum=LatLonEllipsoidal.datums.WGS84) {
const { easting: E, northing: N } = this;
const { a, b } = nationalGrid.ellipsoid; // a = 6377563.396, b = 6356256.909
const φ0 = nationalGrid.trueOrigin.lat.toRadians(); // latitude of true origin, 49°N
const λ0 = nationalGrid.trueOrigin.lon.toRadians(); // longitude of true origin, 2°W
const E0 = -nationalGrid.falseOrigin.easting; // easting of true origin, 400km
const N0 = -nationalGrid.falseOrigin.northing; // northing of true origin, -100km
const F0 = nationalGrid.scaleFactor; // 0.9996012717
const e2 = 1 - (b*b)/(a*a); // eccentricity squared
const n = (a-b)/(a+b), n2 = n*n, n3 = n*n*n; // n, n², n³
let φ=φ0, M=0;
do {
φ = (N-N0-M)/(a*F0) + φ;
const Ma = (1 + n + (5/4)*n2 + (5/4)*n3) * (φ-φ0);
const Mb = (3*n + 3*n2 + (21/8)*n3) * Math.sin(φ-φ0) * Math.cos(φ+φ0);
const Mc = ((15/8)*n2 + (15/8)*n3) * Math.sin(2*(φ-φ0)) * Math.cos(2*(φ+φ0));
const Md = (35/24)*n3 * Math.sin(3*(φ-φ0)) * Math.cos(3*(φ+φ0));
M = b * F0 * (Ma - Mb + Mc - Md); // meridional arc
} while (Math.abs(N-N0-M) >= 0.00001); // ie until < 0.01mm
const cosφ = Math.cos(φ), sinφ = Math.sin(φ);
const ν = a*F0/Math.sqrt(1-e2*sinφ*sinφ); // nu = transverse radius of curvature
const ρ = a*F0*(1-e2)/Math.pow(1-e2*sinφ*sinφ, 1.5); // rho = meridional radius of curvature
const η2 = ν/ρ-1; // eta = ?
const tanφ = Math.tan(φ);
const tan2φ = tanφ*tanφ, tan4φ = tan2φ*tan2φ, tan6φ = tan4φ*tan2φ;
const secφ = 1/cosφ;
const ν3 = ν*ν*ν, ν5 = ν3*ν*ν, ν7 = ν5*ν*ν;
const VII = tanφ/(2*ρ*ν);
const VIII = tanφ/(24*ρ*ν3)*(5+3*tan2φ+η2-9*tan2φ*η2);
const IX = tanφ/(720*ρ*ν5)*(61+90*tan2φ+45*tan4φ);
const X = secφ/ν;
const XI = secφ/(6*ν3)*(ν/ρ+2*tan2φ);
const XII = secφ/(120*ν5)*(5+28*tan2φ+24*tan4φ);
const XIIA = secφ/(5040*ν7)*(61+662*tan2φ+1320*tan4φ+720*tan6φ);
const dE = (E-E0), dE2 = dE*dE, dE3 = dE2*dE, dE4 = dE2*dE2, dE5 = dE3*dE2, dE6 = dE4*dE2, dE7 = dE5*dE2;
φ = φ - VII*dE2 + VIII*dE4 - IX*dE6;
const λ = λ0 + X*dE - XI*dE3 + XII*dE5 - XIIA*dE7;
let point = new LatLon_OsGridRef(φ.toDegrees(), λ.toDegrees(), 0, LatLonEllipsoidal.datums.OSGB36);
if (datum != LatLonEllipsoidal.datums.OSGB36) {
// if point is required in datum other than OSGB36, convert it
point = point.convertDatum(datum);
// convertDatum() gives us a LatLon: convert to LatLon_OsGridRef which includes toOsGrid()
point = new LatLon_OsGridRef(point.lat, point.lon, point.height, point.datum);
}
return point;
}
/**
* Parses grid reference to OsGridRef object.
*
* Accepts standard grid references (eg 'SU 387 148'), with or without whitespace separators, from
* two-digit references up to 10-digit references (1m × 1m square), or fully numeric comma-separated
* references in metres (eg '438700,114800').
*
* @param {string} gridref - Standard format OS Grid Reference.
* @returns {OsGridRef} Numeric version of grid reference in metres from false origin (SW corner of
* supplied grid square).
* @throws {Error} Invalid grid reference.
*
* @example
* const grid = OsGridRef.parse('TG 51409 13177'); // grid: { easting: 651409, northing: 313177 }
*/
static parse(gridref) {
gridref = String(gridref).trim();
// check for fully numeric comma-separated gridref format
let match = gridref.match(/^(\d+),\s*(\d+)$/);
if (match) return new OsGridRef(match[1], match[2]);
// validate format
match = gridref.match(/^[HNOST][ABCDEFGHJKLMNOPQRSTUVWXYZ]\s*[0-9]+\s*[0-9]+$/i);
if (!match) throw new Error(`invalid grid reference ${gridref}`);
// get numeric values of letter references, mapping A->0, B->1, C->2, etc:
let l1 = gridref.toUpperCase().charCodeAt(0) - 'A'.charCodeAt(0); // 500km square
let l2 = gridref.toUpperCase().charCodeAt(1) - 'A'.charCodeAt(0); // 100km square
// shuffle down letters after 'I' since 'I' is not used in grid:
if (l1 > 7) l1--;
if (l2 > 7) l2--;
// convert grid letters into 100km-square indexes from false origin (grid square SV):
const e100km = ((l1 - 2) % 5) * 5 + (l2 % 5);
const n100km = (19 - Math.floor(l1 / 5) * 5) - Math.floor(l2 / 5);
// skip grid letters to get numeric (easting/northing) part of ref
let en = gridref.slice(2).trim().split(/\s+/);
// if e/n not whitespace separated, split half way
if (en.length == 1) en = [ en[0].slice(0, en[0].length / 2), en[0].slice(en[0].length / 2) ];
// validation
if (en[0].length != en[1].length) throw new Error(`invalid grid reference ${gridref}`);
// standardise to 10-digit refs (metres)
en[0] = en[0].padEnd(5, '0');
en[1] = en[1].padEnd(5, '0');
const e = e100km + en[0];
const n = n100km + en[1];
return new OsGridRef(e, n);
}
/**
* Converts this numeric grid reference to standard OS Grid Reference.
*
* @param {number} [digits=10] - Precision of returned grid reference (10 digits = metres);
* digits=0 will return grid reference in numeric format.
* @returns {string} This grid reference in standard format.
*
* @example
* const gridref = new OsGridRef(651409, 313177).toString(8); // 'TG 5140 1317'
* const gridref = new OsGridRef(651409, 313177).toString(0); // '651409,313177'
*/
toString(digits=10) {
if (![ 0,2,4,6,8,10,12,14,16 ].includes(Number(digits))) throw new RangeError(`invalid precision ${digits}`); // eslint-disable-line comma-spacing
let { easting: e, northing: n } = this;
// use digits = 0 to return numeric format (in metres) - note northing may be >= 1e7
if (digits == 0) {
const format = { useGrouping: false, minimumIntegerDigits: 6, maximumFractionDigits: 3 };
const ePad = e.toLocaleString('en', format);
const nPad = n.toLocaleString('en', format);
return `${ePad},${nPad}`;
}
// get the 100km-grid indices
const e100km = Math.floor(e / 100000), n100km = Math.floor(n / 100000);
// translate those into numeric equivalents of the grid letters
let l1 = (19 - n100km) - (19 - n100km) % 5 + Math.floor((e100km + 10) / 5);
let l2 = (19 - n100km) * 5 % 25 + e100km % 5;
// compensate for skipped 'I' and build grid letter-pairs
if (l1 > 7) l1++;
if (l2 > 7) l2++;
const letterPair = String.fromCharCode(l1 + 'A'.charCodeAt(0), l2 + 'A'.charCodeAt(0));
// strip 100km-grid indices from easting & northing, and reduce precision
e = Math.floor((e % 100000) / Math.pow(10, 5 - digits / 2));
n = Math.floor((n % 100000) / Math.pow(10, 5 - digits / 2));
// pad eastings & northings with leading zeros
e = e.toString().padStart(digits/2, '0');
n = n.toString().padStart(digits/2, '0');
return `${letterPair} ${e} ${n}`;
}
}
/* LatLon_OsGridRef - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
/**
* Extends LatLon class with method to convert LatLon point to OS Grid Reference.
*
* @extends LatLonEllipsoidal
*/
class LatLon_OsGridRef extends LatLonEllipsoidal {
/**
* Converts latitude/longitude to Ordnance Survey grid reference easting/northing coordinate.
*
* @returns {OsGridRef} OS Grid Reference easting/northing.
*
* @example
* const grid = new LatLon(52.65798, 1.71605).toOsGrid(); // TG 51409 13177
* // for conversion of (historical) OSGB36 latitude/longitude point:
* const grid = new LatLon(52.65798, 1.71605).toOsGrid(LatLon.datums.OSGB36);
*/
toOsGrid() {
// if necessary convert to OSGB36 first
const point = this.datum == LatLonEllipsoidal.datums.OSGB36
? this
: this.convertDatum(LatLonEllipsoidal.datums.OSGB36);
const φ = point.lat.toRadians();
const λ = point.lon.toRadians();
const { a, b } = nationalGrid.ellipsoid; // a = 6377563.396, b = 6356256.909
const φ0 = nationalGrid.trueOrigin.lat.toRadians(); // latitude of true origin, 49°N
const λ0 = nationalGrid.trueOrigin.lon.toRadians(); // longitude of true origin, 2°W
const E0 = -nationalGrid.falseOrigin.easting; // easting of true origin, 400km
const N0 = -nationalGrid.falseOrigin.northing; // northing of true origin, -100km
const F0 = nationalGrid.scaleFactor; // 0.9996012717
const e2 = 1 - (b*b)/(a*a); // eccentricity squared
const n = (a-b)/(a+b), n2 = n*n, n3 = n*n*n; // n, n², n³
const cosφ = Math.cos(φ), sinφ = Math.sin(φ);
const ν = a*F0/Math.sqrt(1-e2*sinφ*sinφ); // nu = transverse radius of curvature
const ρ = a*F0*(1-e2)/Math.pow(1-e2*sinφ*sinφ, 1.5); // rho = meridional radius of curvature
const η2 = ν/ρ-1; // eta = ?
const Ma = (1 + n + (5/4)*n2 + (5/4)*n3) * (φ-φ0);
const Mb = (3*n + 3*n2 + (21/8)*n3) * Math.sin(φ-φ0) * Math.cos(φ+φ0);
const Mc = ((15/8)*n2 + (15/8)*n3) * Math.sin(2*(φ-φ0)) * Math.cos(2*(φ+φ0));
const Md = (35/24)*n3 * Math.sin(3*(φ-φ0)) * Math.cos(3*(φ+φ0));
const M = b * F0 * (Ma - Mb + Mc - Md); // meridional arc
const cos3φ = cosφ*cosφ*cosφ;
const cos5φ = cos3φ*cosφ*cosφ;
const tan2φ = Math.tan(φ)*Math.tan(φ);
const tan4φ = tan2φ*tan2φ;
const I = M + N0;
const II = (ν/2)*sinφ*cosφ;
const III = (ν/24)*sinφ*cos3φ*(5-tan2φ+9*η2);
const IIIA = (ν/720)*sinφ*cos5φ*(61-58*tan2φ+tan4φ);
const IV = ν*cosφ;
const V = (ν/6)*cos3φ*(ν/ρ-tan2φ);
const VI = (ν/120) * cos5φ * (5 - 18*tan2φ + tan4φ + 14*η2 - 58*tan2φ*η2);
const Δλ = λ-λ0;
const Δλ2 = Δλ*Δλ, Δλ3 = Δλ2*Δλ, Δλ4 = Δλ3*Δλ, Δλ5 = Δλ4*Δλ, Δλ6 = Δλ5*Δλ;
let N = I + II*Δλ2 + III*Δλ4 + IIIA*Δλ6;
let E = E0 + IV*Δλ + V*Δλ3 + VI*Δλ5;
N = Number(N.toFixed(3)); // round to mm precision
E = Number(E.toFixed(3));
try {
return new OsGridRef(E, N); // note: gets truncated to SW corner of 1m grid square
} catch (e) {
throw new Error(`${e.message} from (${point.lat.toFixed(6)},${point.lon.toFixed(6)}).toOsGrid()`);
}
}
/**
* Override LatLonEllipsoidal.convertDatum() with version which returns LatLon_OsGridRef.
*/
convertDatum(toDatum) {
const osgbED = super.convertDatum(toDatum); // returns LatLonEllipsoidal_Datum
const osgbOSGR = new LatLon_OsGridRef(osgbED.lat, osgbED.lon, osgbED.height, osgbED.datum);
return osgbOSGR;
}
}
/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
export { OsGridRef as default, LatLon_OsGridRef as LatLon, Dms };
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/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
/* UTM / WGS-84 Conversion Functions (c) Chris Veness 2014-2022 & Ian Renton 2025 */
/* MIT Licence */
/* www.movable-type.co.uk/scripts/latlong-utm-mgrs.html */
/* www.movable-type.co.uk/scripts/geodesy-library.html#utm */
/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
/* eslint-disable indent */
import LatLonEllipsoidal, { Dms } from 'https://cdn.jsdelivr.net/npm/geodesy@2/latlon-ellipsoidal-datum.js';
/**
* The Universal Transverse Mercator (UTM) system is a 2-dimensional Cartesian coordinate system
* providing locations on the surface of the Earth.
*
* UTM is a set of 60 transverse Mercator projections, normally based on the WGS-84 ellipsoid.
* Within each zone, coordinates are represented as eastings and northings, measures in metres; e.g.
* 31 N 448251 5411932.
*
* This method based on Karney 2011 Transverse Mercator with an accuracy of a few nanometers,
* building on Krüger 1912 Konforme Abbildung des Erdellipsoids in der Ebene.
*
* @module utm
*/
/* Utm - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
/**
* UTM coordinates, with functions to parse them and convert them to LatLon points.
*/
class Utm {
/**
* Creates a Utm coordinate object comprising zone, hemisphere, easting, northing on a given
* datum (normally WGS84).
*
* @param {number} zone - UTM 6° longitudinal zone (1..60 covering 180°W..180°E).
* @param {string} hemisphere - N for northern hemisphere, S for southern hemisphere.
* @param {number} easting - Easting in metres from false easting (-500km from central meridian).
* @param {number} northing - Northing in metres from equator (N) or from false northing -10,000km (S).
* @param {LatLon.datums} [datum=WGS84] - Datum UTM coordinate is based on.
* @param {number} [convergence=null] - Meridian convergence (bearing of grid north
* clockwise from true north), in degrees.
* @param {number} [scale=null] - Grid scale factor.
* @params {boolean=true} verifyEN - Check easting/northing is within 'normal' values (may be
* suppressed for extended coherent coordinates or alternative datums
* e.g. ED50 (epsg.io/23029).
* @throws {TypeError} Invalid UTM coordinate.
*
* @example
* import Utm from '/js/geodesy/utm.js';
* const utmCoord = new Utm(31, 'N', 448251, 5411932);
*/
constructor(zone, hemisphere, easting, northing, datum=LatLonEllipsoidal.datums.WGS84, convergence=null, scale=null, verifyEN=true) {
if (!(1<=zone && zone<=60)) throw new RangeError(`invalid UTM zone ${zone}`);
if (zone != parseInt(zone)) throw new RangeError(`invalid UTM zone ${zone}`);
if (typeof hemisphere != 'string' || !hemisphere.match(/[NS]/i)) throw new RangeError(`invalid UTM hemisphere ${hemisphere}`);
if (verifyEN) { // (rough) range-check of E/N values
if (!(0<=easting && easting<=1000e3)) throw new RangeError(`invalid UTM easting ${easting}`);
if (hemisphere.toUpperCase()=='N' && !(0<=northing && northing<9329006)) throw new RangeError(`invalid UTM northing ${northing}`);
if (hemisphere.toUpperCase()=='S' && !(1116914<northing && northing<=10000e3)) throw new RangeError(`invalid UTM northing ${northing}`);
}
if (!datum || datum.ellipsoid==undefined) throw new TypeError(`unrecognised datum ${datum}`);
this.zone = Number(zone);
this.hemisphere = hemisphere.toUpperCase();
this.easting = Number(easting);
this.northing = Number(northing);
this.datum = datum;
this.convergence = convergence===null ? null : Number(convergence);
this.scale = scale===null ? null : Number(scale);
}
/**
* Converts UTM zone/easting/northing coordinate to latitude/longitude.
*
* Implements Karneys method, using Krüger series to order n⁶, giving results accurate to 5nm
* for distances up to 3900km from the central meridian.
*
* @param {Utm} utmCoord - UTM coordinate to be converted to latitude/longitude.
* @returns {LatLon} Latitude/longitude of supplied grid reference.
*
* @example
* const grid = new Utm(31, 'N', 448251.795, 5411932.678);
* const latlong = grid.toLatLon(); // 48°5129.52″N, 002°1740.20″E
*/
toLatLon() {
const { zone: z, hemisphere: h } = this;
const falseEasting = 500e3, falseNorthing = 10000e3;
const { a, f } = this.datum.ellipsoid; // WGS-84: a = 6378137, f = 1/298.257223563;
const k0 = 0.9996; // UTM scale on the central meridian
const x = this.easting - falseEasting; // make x ± relative to central meridian
const y = h=='S' ? this.northing - falseNorthing : this.northing; // make y ± relative to equator
// ---- from Karney 2011 Eq 15-22, 36:
const e = Math.sqrt(f*(2-f)); // eccentricity
const n = f / (2 - f); // 3rd flattening
const n2 = n*n, n3 = n*n2, n4 = n*n3, n5 = n*n4, n6 = n*n5;
const A = a/(1+n) * (1 + 1/4*n2 + 1/64*n4 + 1/256*n6); // 2πA is the circumference of a meridian
const η = x / (k0*A);
const ξ = y / (k0*A);
const β = [ null, // note β is one-based array (6th order Krüger expressions)
1/2*n - 2/3*n2 + 37/96*n3 - 1/360*n4 - 81/512*n5 + 96199/604800*n6,
1/48*n2 + 1/15*n3 - 437/1440*n4 + 46/105*n5 - 1118711/3870720*n6,
17/480*n3 - 37/840*n4 - 209/4480*n5 + 5569/90720*n6,
4397/161280*n4 - 11/504*n5 - 830251/7257600*n6,
4583/161280*n5 - 108847/3991680*n6,
20648693/638668800*n6 ];
let ξʹ = ξ;
for (let j=1; j<=6; j++) ξʹ -= β[j] * Math.sin(2*j*ξ) * Math.cosh(2*j*η);
let ηʹ = η;
for (let j=1; j<=6; j++) ηʹ -= β[j] * Math.cos(2*j*ξ) * Math.sinh(2*j*η);
const sinhηʹ = Math.sinh(ηʹ);
const sinξʹ = Math.sin(ξʹ), cosξʹ = Math.cos(ξʹ);
const τʹ = sinξʹ / Math.sqrt(sinhηʹ*sinhηʹ + cosξʹ*cosξʹ);
let δτi = null;
let τi = τʹ;
do {
const σi = Math.sinh(e*Math.atanh(e*τi/Math.sqrt(1+τi*τi)));
const τiʹ = τi * Math.sqrt(1+σi*σi) - σi * Math.sqrt(1+τi*τi);
δτi = (τʹ - τiʹ)/Math.sqrt(1+τiʹ*τiʹ)
* (1 + (1-e*e)*τi*τi) / ((1-e*e)*Math.sqrt(1+τi*τi));
τi += δτi;
} while (Math.abs(δτi) > 1e-12); // using IEEE 754 δτi -> 0 after 2-3 iterations
// note relatively large convergence test as δτi toggles on ±1.12e-16 for eg 31 N 400000 5000000
const τ = τi;
const φ = Math.atan(τ);
let λ = Math.atan2(sinhηʹ, cosξʹ);
// ---- convergence: Karney 2011 Eq 26, 27
let p = 1;
for (let j=1; j<=6; j++) p -= 2*j*β[j] * Math.cos(2*j*ξ) * Math.cosh(2*j*η);
let q = 0;
for (let j=1; j<=6; j++) q += 2*j*β[j] * Math.sin(2*j*ξ) * Math.sinh(2*j*η);
const γʹ = Math.atan(Math.tan(ξʹ) * Math.tanh(ηʹ));
const γʺ = Math.atan2(q, p);
const γ = γʹ + γʺ;
// ---- scale: Karney 2011 Eq 28
const sinφ = Math.sin(φ);
const kʹ = Math.sqrt(1 - e*e*sinφ*sinφ) * Math.sqrt(1 + τ*τ) * Math.sqrt(sinhηʹ*sinhηʹ + cosξʹ*cosξʹ);
const = A / a / Math.sqrt(p*p + q*q);
const k = k0 * kʹ * ;
// ------------
const λ0 = ((z-1)*6 - 180 + 3).toRadians(); // longitude of central meridian
λ += λ0; // move λ from zonal to global coordinates
// round to reasonable precision
const lat = Number(φ.toDegrees().toFixed(14)); // nm precision (1nm = 10^-14°)
const lon = Number(λ.toDegrees().toFixed(14)); // (strictly lat rounding should be φ⋅cosφ!)
const convergence = Number(γ.toDegrees().toFixed(9));
const scale = Number(k.toFixed(12));
const latLong = new LatLon_Utm(lat, lon, 0, this.datum);
// ... and add the convergence and scale into the LatLon object ... wonderful JavaScript!
latLong.convergence = convergence;
latLong.scale = scale;
return latLong;
}
/**
* Parses a Channel Islands (WA/WV) grid reference.
*/
static parseChannelIslandGrid(gridref) {
// validate format
let match = gridref.match(/^W[AV]\s*[0-9]+\s*[0-9]+$/i);
if (!match) throw new Error(`invalid grid reference ${gridref}`);
// skip grid letters to get numeric (easting/northing) part of ref
let en = gridref.slice(2).trim().split(/\s+/);
// if e/n not whitespace separated, split half way
if (en.length == 1) en = [ en[0].slice(0, en[0].length / 2), en[0].slice(en[0].length / 2) ];
// validation
if (en[0].length != en[1].length) throw new Error(`invalid grid reference ${gridref}`);
// standardise to 10-digit refs (metres)
en[0] = en[0].padEnd(5, '0');
en[1] = en[1].padEnd(5, '0');
let utmCoord = "30 N ";
const e = 5 + en[0];
utmCoord += e + " ";
if (gridref.substring(0, 2) === "WA") {
const n = 55 + en[1];
utmCoord += n;
} else if (gridref.substring(0, 2) === "WV") {
const n = 54 + en[1];
utmCoord += n;
}
return Utm.parse(utmCoord);
}
/**
* Parses string representation of UTM coordinate.
*
* A UTM coordinate comprises (space-separated)
* - zone
* - hemisphere
* - easting
* - northing.
*
* @param {string} utmCoord - UTM coordinate (WGS 84).
* @param {Datum} [datum=WGS84] - Datum coordinate is defined in (default WGS 84).
* @returns {Utm} Parsed UTM coordinate.
* @throws {TypeError} Invalid UTM coordinate.
*
* @example
* const utmCoord = Utm.parse('31 N 448251 5411932');
* // utmCoord: {zone: 31, hemisphere: 'N', easting: 448251, northing: 5411932 }
*/
static parse(utmCoord, datum=LatLonEllipsoidal.datums.WGS84) {
// match separate elements (separated by whitespace)
utmCoord = utmCoord.trim().match(/\S+/g);
if (utmCoord==null || utmCoord.length!=4) throw new Error(`invalid UTM coordinate ${utmCoord}`);
const zone = utmCoord[0], hemisphere = utmCoord[1], easting = utmCoord[2], northing = utmCoord[3];
return new this(zone, hemisphere, easting, northing, datum); // 'new this' as may return subclassed types
}
/**
* Returns a string representation of a UTM coordinate.
*
* To distinguish from MGRS grid zone designators, a space is left between the zone and the
* hemisphere.
*
* Note that UTM coordinates get rounded, not truncated (unlike MGRS grid references).
*
* @param {number} [digits=0] - Number of digits to appear after the decimal point (3 mm).
* @returns {string} A string representation of the coordinate.
*
* @example
* const utm = new Utm('31', 'N', 448251, 5411932).toString(4); // 31 N 448251.0000 5411932.0000
*/
toString(digits=0) {
const z = this.zone.toString().padStart(2, '0');
const h = this.hemisphere;
const e = this.easting.toFixed(digits);
const n = this.northing.toFixed(digits);
return `${z} ${h} ${e} ${n}`;
}
}
/* LatLon_Utm - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
/**
* Extends LatLon with method to convert LatLon points to UTM coordinates.
*
* @extends LatLon
*/
class LatLon_Utm extends LatLonEllipsoidal {
/**
* Converts latitude/longitude to UTM coordinate.
*
* Implements Karneys method, using Krüger series to order n⁶, giving results accurate to 5nm
* for distances up to 3900km from the central meridian.
*
* @param {number} [zoneOverride] - Use specified zone rather than zone within which point lies;
* note overriding the UTM zone has the potential to result in negative eastings, and
* perverse results within Norway/Svalbard exceptions.
* @returns {Utm} UTM coordinate.
* @throws {TypeError} Latitude outside UTM limits.
*
* @example
* const latlong = new LatLon(48.8582, 2.2945);
* const utmCoord = latlong.toUtm(); // 31 N 448252 5411933
*/
toUtm(zoneOverride=undefined) {
if (!(-80<=this.lat && this.lat<=84)) throw new RangeError(`latitude ${this.lat} outside UTM limits`);
const falseEasting = 500e3, falseNorthing = 10000e3;
let zone = zoneOverride || Math.floor((this.lon+180)/6) + 1; // longitudinal zone
let λ0 = ((zone-1)*6 - 180 + 3).toRadians(); // longitude of central meridian
// ---- handle Norway/Svalbard exceptions
// grid zones are 8° tall; 0°N is offset 10 into latitude bands array
const mgrsLatBands = 'CDEFGHJKLMNPQRSTUVWXX'; // X is repeated for 80-84°N
const latBand = mgrsLatBands.charAt(Math.floor(this.lat/8+10));
// adjust zone & central meridian for Norway
if (zone==31 && latBand=='V' && this.lon>= 3) { zone++; λ0 += (6).toRadians(); }
// adjust zone & central meridian for Svalbard
if (zone==32 && latBand=='X' && this.lon< 9) { zone--; λ0 -= (6).toRadians(); }
if (zone==32 && latBand=='X' && this.lon>= 9) { zone++; λ0 += (6).toRadians(); }
if (zone==34 && latBand=='X' && this.lon< 21) { zone--; λ0 -= (6).toRadians(); }
if (zone==34 && latBand=='X' && this.lon>=21) { zone++; λ0 += (6).toRadians(); }
if (zone==36 && latBand=='X' && this.lon< 33) { zone--; λ0 -= (6).toRadians(); }
if (zone==36 && latBand=='X' && this.lon>=33) { zone++; λ0 += (6).toRadians(); }
const φ = this.lat.toRadians(); // latitude ± from equator
const λ = this.lon.toRadians() - λ0; // longitude ± from central meridian
// allow alternative ellipsoid to be specified
const ellipsoid = this.datum ? this.datum.ellipsoid : LatLonEllipsoidal.ellipsoids.WGS84;
const { a, f } = ellipsoid; // WGS-84: a = 6378137, f = 1/298.257223563;
const k0 = 0.9996; // UTM scale on the central meridian
// ---- easting, northing: Karney 2011 Eq 7-14, 29, 35:
const e = Math.sqrt(f*(2-f)); // eccentricity
const n = f / (2 - f); // 3rd flattening
const n2 = n*n, n3 = n*n2, n4 = n*n3, n5 = n*n4, n6 = n*n5;
const cosλ = Math.cos(λ), sinλ = Math.sin(λ), tanλ = Math.tan(λ);
const τ = Math.tan(φ); // τ ≡ tanφ, τʹ ≡ tanφʹ; prime (ʹ) indicates angles on the conformal sphere
const σ = Math.sinh(e*Math.atanh(e*τ/Math.sqrt(1+τ*τ)));
const τʹ = τ*Math.sqrt(1+σ*σ) - σ*Math.sqrt(1+τ*τ);
const ξʹ = Math.atan2(τʹ, cosλ);
const ηʹ = Math.asinh(sinλ / Math.sqrt(τʹ*τʹ + cosλ*cosλ));
const A = a/(1+n) * (1 + 1/4*n2 + 1/64*n4 + 1/256*n6); // 2πA is the circumference of a meridian
const α = [ null, // note α is one-based array (6th order Krüger expressions)
1/2*n - 2/3*n2 + 5/16*n3 + 41/180*n4 - 127/288*n5 + 7891/37800*n6,
13/48*n2 - 3/5*n3 + 557/1440*n4 + 281/630*n5 - 1983433/1935360*n6,
61/240*n3 - 103/140*n4 + 15061/26880*n5 + 167603/181440*n6,
49561/161280*n4 - 179/168*n5 + 6601661/7257600*n6,
34729/80640*n5 - 3418889/1995840*n6,
212378941/319334400*n6 ];
let ξ = ξʹ;
for (let j=1; j<=6; j++) ξ += α[j] * Math.sin(2*j*ξʹ) * Math.cosh(2*j*ηʹ);
let η = ηʹ;
for (let j=1; j<=6; j++) η += α[j] * Math.cos(2*j*ξʹ) * Math.sinh(2*j*ηʹ);
let x = k0 * A * η;
let y = k0 * A * ξ;
// ---- convergence: Karney 2011 Eq 23, 24
let pʹ = 1;
for (let j=1; j<=6; j++) pʹ += 2*j*α[j] * Math.cos(2*j*ξʹ) * Math.cosh(2*j*ηʹ);
let qʹ = 0;
for (let j=1; j<=6; j++) qʹ += 2*j*α[j] * Math.sin(2*j*ξʹ) * Math.sinh(2*j*ηʹ);
const γʹ = Math.atan(τʹ / Math.sqrt(1+τʹ*τʹ)*tanλ);
const γʺ = Math.atan2(qʹ, pʹ);
const γ = γʹ + γʺ;
// ---- scale: Karney 2011 Eq 25
const sinφ = Math.sin(φ);
const kʹ = Math.sqrt(1 - e*e*sinφ*sinφ) * Math.sqrt(1 + τ*τ) / Math.sqrt(τʹ*τʹ + cosλ*cosλ);
const = A / a * Math.sqrt(pʹ*pʹ + qʹ*qʹ);
const k = k0 * kʹ * ;
// ------------
// shift x/y to false origins
x = x + falseEasting; // make x relative to false easting
if (y < 0) y = y + falseNorthing; // make y in southern hemisphere relative to false northing
// round to reasonable precision
x = Number(x.toFixed(9)); // nm precision
y = Number(y.toFixed(9)); // nm precision
const convergence = Number(γ.toDegrees().toFixed(9));
const scale = Number(k.toFixed(12));
const h = this.lat>=0 ? 'N' : 'S'; // hemisphere
return new Utm(zone, h, x, y, this.datum, convergence, scale, !!zoneOverride);
}
}
/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
export { Utm as default, LatLon_Utm as LatLon, Dms };
+7 -7
View File
@@ -2,7 +2,7 @@
{% block content %}
<div id="add-spot-intro-box" class="permanently-dismissible-box mt-3">
<div class="alert alert-primary alert-dismissible fade show" role="alert">
<div class="alert alert-primary alert-dismissible fade show" role="alert"> <!-- TODO Remove when feature available -->
<i class="fa-solid fa-circle-info"></i> <strong>Adding spots to Spothole</strong><br/>This page is implemented
as a proof of concept for adding spots to the Spothole system. Currently, spots added in this way are only
visible within Spothole and are not sent "upstream" to DX clusters or xOTA spotting sites. The functionality
@@ -24,14 +24,14 @@
</div>
</div>
<div class="card-body">
<form class="row g-3">
<form class="row g-3" onsubmit="return addSpot();">
<div class="col-auto">
<label for="dx-call" class="form-label">DX Call *</label>
<input type="text" class="form-control input-narrow" id="dx-call" placeholder="N0CALL">
<input type="text" class="form-control input-narrow" id="dx-call" placeholder="N0CALL" required>
</div>
<div class="col-auto">
<label for="freq" class="form-label">Frequency (kHz) *</label>
<input type="text" class="form-control input-narrow" id="freq" placeholder="e.g. 14100">
<input type="text" class="form-control input-narrow" id="freq" placeholder="e.g. 14100" required>
</div>
<div class="col-auto">
<label for="mode" class="form-label">Mode</label>
@@ -60,10 +60,10 @@
<div class="col-auto">
<label for="de-call" class="form-label">Your Call *</label>
<input type="text" class="form-control storeable-text input-narrow" id="de-call"
placeholder="N0CALL">
placeholder="N0CALL" required>
</div>
<div class="col-auto">
<button type="button" class="btn btn-primary mt-2em" onclick="addSpot();">Spot</button>
<button type="submit" class="btn btn-primary mt-2em">Spot</button>
</div>
</form>
@@ -76,7 +76,7 @@
</div>
<script src="/static/js/add-spot.js?v=1785434214"></script>
<script src="/static/js/add-spot.js?v=1786175023"></script>
<script>$(document).ready(function () {
$("#nav-link-add-spot").addClass("active");
}); <!-- highlight active page in nav --></script>
+9 -2
View File
@@ -8,7 +8,8 @@
</div>
<div class="col-auto">
<div class="d-inline-flex gap-1">
{% module Template("widgets/filters-display-data-buttons.html", web_ui_options=web_ui_options) %}
{% module Template("widgets/filters-display-data-buttons.html", web_ui_options=web_ui_options,
show_data_button=web_ui_options["qrz-enabled"] or web_ui_options["hamqth-enabled"]) %}
</div>
</div>
</div>
@@ -50,19 +51,25 @@
</div>
</div>
{% if web_ui_options["qrz-enabled"] or web_ui_options["hamqth-enabled"] %}
<div id="data-area" class="appearing-panel card mb-3">
{% module Template("widgets/data-area-header.html", web_ui_options=web_ui_options) %}
<div class="card-body">
<div class="row row-cols-1 row-cols-md-4 g-4">
{% if web_ui_options["qrz-enabled"] %}
<div class="col">
{% module Template("cards/qrz.html", web_ui_options=web_ui_options) %}
</div>
{% end %}
{% if web_ui_options["hamqth-enabled"] %}
<div class="col">
{% module Template("cards/hamqth.html", web_ui_options=web_ui_options) %}
</div>
{% end %}
</div>
</div>
</div>
{% end %}
<div id="table-container">
<table id="table" class="table">
@@ -75,7 +82,7 @@
</div>
<script src="/static/js/alerts.js?v=1785434213"></script>
<script src="/static/js/alerts.js?v=1786175024"></script>
<script>$(document).ready(function () {
$("#nav-link-alerts").addClass("active");
}); <!-- highlight active page in nav --></script>
+10 -3
View File
@@ -6,7 +6,8 @@
<div class="col-auto me-auto pt-3"></div>
<div class="col-auto">
<div class="d-inline-flex gap-1">
{% module Template("widgets/filters-display-data-buttons.html", web_ui_options=web_ui_options) %}
{% module Template("widgets/filters-display-data-buttons.html", web_ui_options=web_ui_options,
show_data_button=web_ui_options["qrz-enabled"] or web_ui_options["hamqth-enabled"]) %}
</div>
</div>
</div>
@@ -54,19 +55,25 @@
</div>
</div>
{% if web_ui_options["qrz-enabled"] or web_ui_options["hamqth-enabled"] %}
<div id="data-area" class="appearing-panel card mb-3">
{% module Template("widgets/data-area-header.html", web_ui_options=web_ui_options) %}
<div class="card-body">
<div class="row row-cols-1 row-cols-md-4 g-4">
{% if web_ui_options["qrz-enabled"] %}
<div class="col">
{% module Template("cards/qrz.html", web_ui_options=web_ui_options) %}
</div>
{% end %}
{% if web_ui_options["hamqth-enabled"] %}
<div class="col">
{% module Template("cards/hamqth.html", web_ui_options=web_ui_options) %}
</div>
{% end %}
</div>
</div>
</div>
{% end %}
<div id="bands-container"></div>
@@ -75,8 +82,8 @@
<script>
let spotProvidersEnabledByDefault = {% raw json_encode(web_ui_options["spot-providers-enabled-by-default"]) %};
</script>
<script src="/static/js/spotsbandsandmap.js?v=1785434214"></script>
<script src="/static/js/bands.js?v=1785434214"></script>
<script src="/static/js/spotsbandsandmap.js?v=1786175023"></script>
<script src="/static/js/bands.js?v=1786175023"></script>
<script>$(document).ready(function () {
$("#nav-link-bands").addClass("active");
}); <!-- highlight active page in nav --></script>
+5 -5
View File
@@ -1,6 +1,6 @@
{% extends "skeleton.html" %}
{% block head_extra %}
<link rel="stylesheet" href="/static/css/style.css?v=1785434213" type="text/css">
<link rel="stylesheet" href="/static/css/style.css?v=1786175023" type="text/css">
<link href="/static/vendor/css/bootstrap-5.3.8.min.css" rel="stylesheet">
<link href="/static/vendor/css/fontawesome-6.7.2.min.css" rel="stylesheet">
<link href="/static/vendor/css/solid-6.7.2.min.css" rel="stylesheet">
@@ -10,10 +10,10 @@
<script src="/static/vendor/js/bootstrap-5.3.8.bundle.min.js"></script>
<script src="/static/vendor/js/tinycolor2-1.6.0.min.js"></script>
<script src="/static/js/utils.js?v=1785434213"></script>
<script src="/static/js/ui-ham.js?v=1785434213"></script>
<script src="/static/js/geo.js?v=1785434213"></script>
<script src="/static/js/common.js?v=1785434213"></script>
<script src="/static/js/utils.js?v=1786175023"></script>
<script src="/static/js/ui-ham.js?v=1786175023"></script>
<script src="/static/js/geo.js?v=1786175023"></script>
<script src="/static/js/common.js?v=1786175023"></script>
{% end %}
{% block body %}
<div class="container">
+1 -1
View File
@@ -284,7 +284,7 @@
</div>
<script src="/static/vendor/js/chart-4.4.9.umd.min.js"></script>
<script src="/static/js/conditions.js?v=1785434213"></script>
<script src="/static/js/conditions.js?v=1786175023"></script>
<script>$(document).ready(function () {
$("#nav-link-conditions").addClass("active");
}); <!-- highlight active page in nav --></script>
+11 -4
View File
@@ -20,7 +20,8 @@
<div class="col-auto me-auto pt-3"></div>
<div class="col-auto">
<div class="d-inline-flex gap-1">
{% module Template("widgets/filters-display-data-buttons.html", web_ui_options=web_ui_options) %}
{% module Template("widgets/filters-display-data-buttons.html", web_ui_options=web_ui_options,
show_data_button=web_ui_options["qrz-enabled"] or web_ui_options["hamqth-enabled"]) %}
</div>
</div>
</div>
@@ -74,19 +75,25 @@
</div>
</div>
{% if web_ui_options["qrz-enabled"] or web_ui_options["hamqth-enabled"] %}
<div id="data-area" class="appearing-panel card mb-3">
{% module Template("widgets/data-area-header.html", web_ui_options=web_ui_options) %}
<div class="card-body">
<div class="row row-cols-1 row-cols-md-4 g-4">
{% if web_ui_options["qrz-enabled"] %}
<div class="col">
{% module Template("cards/qrz.html", web_ui_options=web_ui_options) %}
</div>
{% end %}
{% if web_ui_options["hamqth-enabled"] %}
<div class="col">
{% module Template("cards/hamqth.html", web_ui_options=web_ui_options) %}
</div>
{% end %}
</div>
</div>
</div>
{% end %}
</div>
</div>
@@ -103,13 +110,13 @@
<script src="/static/vendor/js/leaflet-maidenhead.js"></script>
<script src="/static/vendor/js/leaflet-ituzones.js"></script>
<script src="/static/vendor/js/leaflet-cqzones.js"></script>
<script src="/static/vendor/js/leaflet-workedallbritainireland.js"></script>
<script src="/static/vendor/js/leaflet-workedallbritainireland.js" type="module"></script>
<script>
let spotProvidersEnabledByDefault = {% raw json_encode(web_ui_options["spot-providers-enabled-by-default"]) %};
</script>
<script src="/static/js/spotsbandsandmap.js?v=1785434213"></script>
<script src="/static/js/map.js?v=1785434213"></script>
<script src="/static/js/spotsbandsandmap.js?v=1786175024"></script>
<script src="/static/js/map.js?v=1786175024"></script>
<script>$(document).ready(function () {
$("#nav-link-map").addClass("active");
}); <!-- highlight active page in nav --></script>
+8 -3
View File
@@ -25,7 +25,8 @@
<div class="col-md-8 text-end">
<div class="d-inline-flex gap-3">
{% module Template("widgets/search.html", web_ui_options=web_ui_options) %}
{% module Template("widgets/filters-display-data-buttons.html", web_ui_options=web_ui_options) %}
{% module Template("widgets/filters-display-data-buttons.html", web_ui_options=web_ui_options,
show_data_button=web_ui_options["qrz-enabled"] or web_ui_options["hamqth-enabled"]) %}
</div>
</div>
</div>
@@ -86,12 +87,16 @@
{% module Template("widgets/data-area-header.html", web_ui_options=web_ui_options) %}
<div class="card-body">
<div class="row row-cols-1 row-cols-md-4 g-4">
{% if web_ui_options["qrz-enabled"] %}
<div class="col">
{% module Template("cards/qrz.html", web_ui_options=web_ui_options) %}
</div>
{% end %}
{% if web_ui_options["hamqth-enabled"] %}
<div class="col">
{% module Template("cards/hamqth.html", web_ui_options=web_ui_options) %}
</div>
{% end %}
<div class="col">
{% module Template("cards/location.html", web_ui_options=web_ui_options) %}
</div>
@@ -116,8 +121,8 @@
<script>
let spotProvidersEnabledByDefault = {% raw json_encode(web_ui_options["spot-providers-enabled-by-default"]) %};
</script>
<script src="/static/js/spotsbandsandmap.js?v=1785434213"></script>
<script src="/static/js/spots.js?v=1785434213"></script>
<script src="/static/js/spotsbandsandmap.js?v=1786175023"></script>
<script src="/static/js/spots.js?v=1786175023"></script>
<script>$(document).ready(function () {
$("#nav-link-spots").addClass("active");
}); <!-- highlight active page in nav --></script>
+13 -4
View File
@@ -6,19 +6,19 @@
Spothole
</div>
<div class="card-body">
<div class="row row-cols-1 row-cols-md-4 g-4 mb-2">
<div class="row row-cols-1 row-cols-md-4 g-4 mb-4 mb-md-2">
<div class="col"><strong>Metadata</strong></div>
<div class="col">Software Version: <span id="software-version"></span></div>
<div class="col">Owner Callsign: <span id="server-owner-callsign"></span></div>
<div class="col">Up since: <span id="up-since"></span></div>
</div>
<div class="row row-cols-1 row-cols-md-4 g-4 mb-2">
<div class="row row-cols-1 row-cols-md-4 g-4 mb-4 mb-md-2">
<div class="col"><strong>Performance</strong></div>
<div class="col">Memory Use: <span id="memory-use"></span></div>
<div class="col">Total Spots: <span id="total-spots"></span></div>
<div class="col">Total Alerts: <span id="total-alerts"></span></div>
</div>
<div class="row row-cols-1 row-cols-md-4 g-4 mb-2">
<div class="row row-cols-1 row-cols-md-4 g-4 mb-4 mb-md-2">
<div class="col"><strong>Web Server</strong></div>
<div class="col">Status: <span id="web-server-status"></span></div>
<div class="col">Last API call: <span id="web-server-last-api"></span></div>
@@ -72,7 +72,16 @@
</div>
</div>
<script src="/static/js/status.js?v=1785434213"></script>
<div class="card mt-3">
<div class="card-header">
Callsign Data Providers
</div>
<div class="card-body" id="callsign-data-providers-status-container">
</div>
</div>
<script src="/static/js/status.js?v=1786175023"></script>
<script>
$(document).ready(function () {
$("#nav-link-status").addClass("active");
@@ -5,7 +5,9 @@
<button id="display-button" type="button" class="btn btn-outline-secondary" data-bs-toggle="button"
onclick="toggleDisplayPanel();"><i class="fa-solid fa-desktop"></i><span
class="hideonmobile">&nbsp;Display</span></button>
{% if show_data_button %}
<button id="data-button" type="button" class="btn btn-outline-secondary" data-bs-toggle="button"
onclick="toggleDataPanel();"><i class="fa-solid fa-database"></i><span
class="hideonmobile">&nbsp;Your data</span></button>
{% end %}
</div>