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...
54 Commits
Author SHA1 Message Date
Ian Renton 556ea56378 v2.1 release 2026-09-18 12:44:09 +01:00
Ian Renton a367888e14 Missed a couple of _stop_events 2026-09-18 09:27:15 +01:00
Ian Renton 29d8654234 Use _stop_event consistently across all threads as the way to signal that it should stop. Add thread joins with timeouts to allow the program to exit cleanly 2026-09-18 09:21:38 +01:00
Ian Renton d79c8f72c8 Add missing SIGs to OpenAPI spec 2026-09-18 07:58:55 +01:00
Ian Renton a03e1336c8 Code review fixes 2026-09-18 07:56:08 +01:00
Ian Renton 0fa8cd763d Add support for Diplôme des Moulins de France 2026-09-18 07:38:30 +01:00
Ian Renton 4261c60d74 Improve protection against old unsupported objects (e.g. LocationSourceForCallsign.NONE) coming back from the cache and throwing exceptions 2026-09-18 07:28:29 +01:00
Ian Renton 29eea1edc0 Telnet fixes and banner 2026-09-12 08:40:50 +01:00
Ian Renton 7c458a8c5b Extract webserver metrics into a separate class to avoid passing it into every API call. Change the display to requests per hour rather than just last request time. Add SSE and telnet client connected count. 2026-09-11 22:32:04 +01:00
Ian Renton 4a09e46fe0 Improve asyncio usage in telnet server 2026-09-11 21:38:22 +01:00
Ian Renton e3df512b9e Add telnet server 2026-09-11 16:23:10 +01:00
Ian Renton ee45a15b4e Add telnet server 2026-09-11 16:18:09 +01:00
Ian Renton 5e56cd3b19 Add telnet server 2026-09-11 15:55:57 +01:00
Ian Renton 04f5df5260 Alerts now displays a "Type" in the table not just the source. Closes #142 2026-09-11 14:43:33 +01:00
Ian Renton 8f8ff46426 country-files.com seems more reliable than Clublog at locating some calls, trying it out as higher priority 2026-09-11 09:47:53 +01:00
Ian Renton 2e51d5fdb2 Doc updates 2026-09-11 08:36:49 +01:00
Ian Renton 3bab3cb784 Add EME SIG and do some refactoring 2026-09-11 08:33:00 +01:00
Ian Renton a4245ed5ce Support Hamsat alerts and use an AMSAT SIG for satellite spots 2026-09-11 08:18:34 +01:00
Ian Renton 64bb8ef3eb Fix a potential NPE and a case where callsign location source could be reported as None instead of DXCC. 2026-09-11 07:32:15 +01:00
Ian Renton 3b575de36a Fix SSE timeout 2026-09-10 17:58:02 +01:00
Ian Renton 94dc9044c4 Add support for WA7BNM Contest Calendar. Closes #106 2026-09-10 16:45:40 +01:00
Ian Renton be625c40a4 Add "fields" query parameter to spots and alerts API calls. Closes #140 2026-09-10 07:54:34 +01:00
Ian Renton 0fcc459cc4 Fix some dodgy handling of DME references 2026-09-05 10:24:18 +01:00
Ian Renton e52790f07d Alerts page layout fixes 2026-09-05 10:19:53 +01:00
Ian Renton 237cdaa091 Fix icon and ref_type disappearing from SIG Ref lookups 2026-09-05 10:14:37 +01:00
Ian Renton df724409a5 Fix some dodgy handling of DME references 2026-09-05 09:57:05 +01:00
Ian Renton 3e4327ec0c Add icons back to spots & alerts 2026-09-05 09:48:56 +01:00
Ian Renton d6e53c14e9 Support RSGB contests 2026-09-05 09:00:32 +01:00
Ian Renton d3d1d20821 Support DMVE, DMUE, DCE, DEFE. Closes #137 2026-09-04 19:35:48 +01:00
Ian Renton ab86bdc4d6 Improve error handling and PWA manifest 2026-09-04 17:50:35 +01:00
Ian Renton d7202f208c Allow ACS as well as AS for aircraft scatter 2026-09-04 17:38:46 +01:00
Ian Renton 9d117a6069 Split out event type SIGs, and do other enum conversions. Closes #138 2026-09-02 09:38:05 +01:00
Ian Renton 606cf1be68 Start converting some enum-like strings to proper enums, plus global reformat 2026-09-02 08:37:13 +01:00
Ian Renton 5a6fc19ab5 dxstats.py now uses is_ham_hf flag on bands list instead of providing its own. Closes #139 2026-09-02 07:46:02 +01:00
Ian Renton 9258d680fc Overnight bug fixes 2026-09-02 07:40:57 +01:00
ian 8189be699e Consider 6m a de facto HF band 2026-09-02 06:33:13 +00:00
Ian Renton fa2e4b929a Start converting some enum-like strings to proper enums 2026-09-02 07:26:02 +01:00
Ian Renton 55eaa871e9 Remove accidentally committed debug code 2026-08-31 21:54:43 +01:00
Ian Renton 1b62d4742b Support PGA. Closes #135 2026-08-31 21:54:13 +01:00
Ian Renton b0caf697ae Support COTA. Closes #131 2026-08-31 21:17:55 +01:00
Ian Renton a33f02491d Avoid polling GIRO stations that don't return any data 2026-08-31 20:54:21 +01:00
Ian Renton 892827f1f8 Allow some SIG refs to be picked up from comments without separate SIG name. Closes #134 2026-08-31 20:49:15 +01:00
Ian Renton e4738b2c7d Split SIGs list into Worldwide, Regional and Other. Closes #133 2026-08-31 18:38:19 +01:00
Ian Renton f42fd237b1 Move icons back into SIG data 2026-08-31 17:57:04 +01:00
Ian Renton d83a979e46 Move icons back into SIG data 2026-08-31 17:31:13 +01:00
Ian Renton 12e9b6a4ca Remove distinction between DV modes and LSB/USB 2026-08-31 11:17:05 +01:00
Ian Renton 8345238d76 Tweak FEA reference handling, add understanding of BIWOTA, remove some unused junk from ui-ham.js 2026-08-31 11:05:53 +01:00
Ian Renton bc326388ac Add support for FEA 2026-08-31 09:39:05 +01:00
Ian Renton df684a601d Fix an exception on shutdown 2026-08-31 09:00:23 +01:00
Ian Renton 9083470482 Add support for DTMBA 2026-08-31 08:59:49 +01:00
Ian Renton ba56acd7ac Fix a bug where solar conditions and status data were not properly persisted to disk between restarts. Release v2.0.5 2026-08-29 09:17:24 +01:00
Ian Renton 8451ca2727 Release v2.0.4 2026-08-29 08:40:11 +01:00
Ian Renton 7ae77e9fb2 Encourage cluster spot sources to simply be named "Cluster" as the specific node shouldn't matter 2026-08-29 08:37:21 +01:00
Ian Renton c3a360e691 Consistency about whether "GMA Islands" is plural or not; widen columns on SIG list so it doesn't wrap 2026-08-29 08:34:04 +01:00
140 changed files with 2648 additions and 970 deletions
+7
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@@ -65,6 +65,13 @@
</list> </list>
</option> </option>
</inspection_tool> </inspection_tool>
<inspection_tool class="PyStubPackagesAdvertiser" enabled="true" level="WARNING" enabled_by_default="true">
<option name="ignoredPackages">
<list>
<option value="pandas" />
</list>
</option>
</inspection_tool>
<inspection_tool class="SpellCheckingInspection" enabled="false" level="TYPO" enabled_by_default="false"> <inspection_tool class="SpellCheckingInspection" enabled="false" level="TYPO" enabled_by_default="false">
<option name="processCode" value="true" /> <option name="processCode" value="true" />
<option name="processLiterals" value="true" /> <option name="processLiterals" value="true" />
+1 -1
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@@ -2,7 +2,7 @@
<project version="4"> <project version="4">
<component name="ProjectModuleManager"> <component name="ProjectModuleManager">
<modules> <modules>
<module fileurl="file://$PROJECT_DIR$/.idea/Spothole.iml" filepath="$PROJECT_DIR$/.idea/Spothole.iml" /> <module fileurl="file://$PROJECT_DIR$/.idea/spothole.iml" filepath="$PROJECT_DIR$/.idea/spothole.iml" />
</modules> </modules>
</component> </component>
</project> </project>
+1 -1
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@@ -1,6 +1,6 @@
<component name="ProjectRunConfigurationManager"> <component name="ProjectRunConfigurationManager">
<configuration default="false" name="Run" type="PythonConfigurationType" factoryName="Python"> <configuration default="false" name="Run" type="PythonConfigurationType" factoryName="Python">
<module name="Spothole" /> <module name="spothole" />
<option name="ENV_FILES" value="" /> <option name="ENV_FILES" value="" />
<option name="INTERPRETER_OPTIONS" value="" /> <option name="INTERPRETER_OPTIONS" value="" />
<option name="PARENT_ENVS" value="true" /> <option name="PARENT_ENVS" value="true" />
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+1
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@@ -4,5 +4,6 @@ WORKDIR /app
COPY . . COPY . .
RUN pip install --no-cache-dir -r requirements.txt RUN pip install --no-cache-dir -r requirements.txt
EXPOSE 8080 EXPOSE 8080
EXPOSE 7373
CMD ["python3", "spothole.py"] CMD ["python3", "spothole.py"]
+3 -5
View File
@@ -1,7 +1,7 @@
# ![Spothole](/static/img/logo.png) # ![Spothole](/static/img/logo.png)
Spothole is a utility to aggregate "spots" from amateur radio DX clusters and xOTA spotting sites, and provide an open Spothole is a utility to aggregate "spots" from amateur radio DX clusters and xOTA spotting sites, and provide an open
JSON API as well as a website to browse the data. JSON API as well as a website to browse the data, and its own telnet server for integration with desktop loggers.
![Screenshot](/images/screenshot.png) ![Screenshot](/images/screenshot.png)
@@ -17,10 +17,8 @@ Spothole itself is also open source, Public Domain licenced code that anyone can
Supported data sources include DX Clusters, the Reverse Beacon Network (RBN), the APRS Internet Service (APRS-IS), POTA, Supported data sources include DX Clusters, the Reverse Beacon Network (RBN), the APRS Internet Service (APRS-IS), POTA,
SOTA, WWFF, GMA, WWBOTA, HEMA, Parks 'n' Peaks, ZLOTA, WOTA, BOTA, LLOTA, WWTOTA, Tiles on the Air, the UK Packet SOTA, WWFF, GMA, WWBOTA, HEMA, Parks 'n' Peaks, ZLOTA, WOTA, BOTA, LLOTA, WWTOTA, Tiles on the Air, the UK Packet
Repeater Network, NG3K, and any site based on the xOTA software by nischu. Repeater Network, NG3K, and any site based on the xOTA software by nischu. It also integrates with QRZ.com and HamQTH,
retrieves solar data from various sources, provides information about upcoming contests, and more.
Additional Special Interest Groups (SIGs) without their own specific data source include KRMNPA, SANPCPA, WAB, WAI and
DME.
![Screenshot](/images/screenshot2.png) ![Screenshot](/images/screenshot2.png)
+53 -8
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@@ -17,6 +17,15 @@ api_only_mode: false
# The base URL at which the software runs. # The base URL at which the software runs.
base_url: "http://localhost:8080" base_url: "http://localhost:8080"
# Whether to run a telnet spot server as well as the web interface
telnet_server_enabled: false
# Telnet server address. This is not really needed by the software itself, just displayed in documentation.
telnet_server_address: "localhost"
# Port to run the telnet server on
telnet_server_port: 7373
# Spot providers to use. This is an example set, tailor it to your liking by commenting and uncommenting. # Spot providers to use. This is an example set, tailor it to your liking by commenting and uncommenting.
# RBN and APRS-IS are supported but have such a high data rate, you probably don't want them enabled. # RBN and APRS-IS are supported but have such a high data rate, you probably don't want them enabled.
# Each provider needs a class and an enabled/disabled state. Some require more config such as hostnames/IP # Each provider needs a class and an enabled/disabled state. Some require more config such as hostnames/IP
@@ -68,7 +77,7 @@ spot_providers:
- class: "DXCluster" - class: "DXCluster"
# Clusters have a "name" property in case you want to say which cluster node the data is from, or connect to # Clusters have a "name" property in case you want to say which cluster node the data is from, or connect to
# several clusters and name them separately. The name will be used as the "source" field for the spots received. # several clusters and name them separately. The name will be used as the "source" field for the spots received.
name: "HRD Cluster" name: "Cluster"
enabled: true enabled: true
host: "hrd.wa9pie.net" host: "hrd.wa9pie.net"
port: 8000 port: 8000
@@ -84,7 +93,7 @@ spot_providers:
allow_rbn_spots: false allow_rbn_spots: false
- class: "DXCluster" - class: "DXCluster"
name: "W3LPL Cluster" name: "Cluster"
enabled: false enabled: false
host: "w3lpl.net" host: "w3lpl.net"
port: 7373 port: 7373
@@ -162,9 +171,21 @@ alert_providers:
- class: "BOTA" - class: "BOTA"
enabled: true enabled: true
- class: "Hamsat"
enabled: true
- class: "NG3K" - class: "NG3K"
enabled: true enabled: true
- class: "WA7BNM"
enabled: true
- class: "RSGBHFContests"
enabled: true
- class: "RSGBVHFContests"
enabled: true
# Solar condition providers to use. These poll external APIs for solar propagation data (SFI, A/K indices, band # 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. # conditions, etc.) and make it available via the /api/v2/solar endpoint.
@@ -246,12 +267,36 @@ sig_ref_data_providers:
- class: "DME" - class: "DME"
enabled: true enabled: true
- class: "FEA"
enabled: true
- class: "DMVE"
enabled: true
- class: "DMUE"
enabled: true
- class: "DCE"
enabled: true
- class: "DEFE"
enabled: true
- class: "KRMNPA" - class: "KRMNPA"
enabled: true enabled: true
- class: "SANPCPA" - class: "SANPCPA"
enabled: true enabled: true
- class: "DTMBA"
enabled: true
- class: "COTA"
enabled: true
- class: "PGA"
enabled: true
- class: "Toilets" - class: "Toilets"
enabled: true enabled: true
@@ -275,27 +320,27 @@ callsign_data_providers:
priority: 2 priority: 2
# No server-side credentials for HamQTH. Users must provide their own. # No server-side credentials for HamQTH. Users must provide their own.
- class: "CountryFiles"
priority: 3
enabled: true
- class: "ClublogAPI" - class: "ClublogAPI"
# Querying the Clublog API directly doesn't provide any more data than the XML version, it just provides slightly # 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 # 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. # every callsign via an API call. Normally left disabled but it exists as an option.
enabled: false enabled: false
priority: 3 priority: 4
# API key for Clublog to look up information. Required in order to enable this provider. Unlike QRZ and HamQTH, # 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. # Clublog uses an API key issued to Spothole, not to the end user.
api_key: "" api_key: ""
- class: "ClublogXML" - class: "ClublogXML"
enabled: true enabled: true
priority: 4 priority: 5
# API key for Clublog to look up information. Required in order to enable this provider. You will need to request # 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. # one via their helpdesk portal if you want to use callsign lookups from Clublog.
api_key: "" api_key: ""
- class: "CountryFiles"
priority: 5
enabled: true
# Maximum time to keep spots and alerts in the system before deleting them. By default, one hour for spots and one week # Maximum time to keep spots and alerts in the system before deleting them. By default, one hour for spots and one week
# for alerts. # for alerts.
+4
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@@ -34,6 +34,10 @@ class CleanupTimer:
"""Stop any threads and prepare for application shutdown""" """Stop any threads and prepare for application shutdown"""
self._stop_event.set() self._stop_event.set()
if self._thread:
self._thread.join(timeout=15)
if self._thread.is_alive():
logger.warning("Cleanup worker thread did not exit on time and will be killed.")
def _run(self): def _run(self):
while not self._stop_event.wait(timeout=self._cleanup_interval): while not self._stop_event.wait(timeout=self._cleanup_interval):
+3
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@@ -24,6 +24,9 @@ MAX_SPOT_AGE = config.get("max_spot_age_sec", 3600)
MAX_ALERT_AGE = config.get("max_alert_age_sec", 604800) MAX_ALERT_AGE = config.get("max_alert_age_sec", 604800)
SERVER_OWNER_CALLSIGN = config.get("server_owner_callsign", "N0CALL") SERVER_OWNER_CALLSIGN = config.get("server_owner_callsign", "N0CALL")
WEB_SERVER_PORT = config.get("web_server_port", 8080) WEB_SERVER_PORT = config.get("web_server_port", 8080)
TELNET_SERVER_ENABLED = config.get("telnet_server_enabled", False)
TELNET_SERVER_ADDRESS = config.get("telnet_server_address", "localhost")
TELNET_SERVER_PORT = config.get("telnet_server_port", 7373)
ALLOW_SPOTTING = config.get("allow_spotting", True) ALLOW_SPOTTING = config.get("allow_spotting", True)
ALLOW_UPSTREAM_SPOTTING = config.get("allow_upstream_spotting", True) ALLOW_UPSTREAM_SPOTTING = config.get("allow_upstream_spotting", True)
WEB_UI_OPTIONS = config.get("web_ui_options", {}) WEB_UI_OPTIONS = config.get("web_ui_options", {})
+253 -65
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@@ -1,9 +1,10 @@
from core.config import SERVER_OWNER_CALLSIGN from core.config import SERVER_OWNER_CALLSIGN
from core.enums import SIGRefType, SIGType
from data.band import Band from data.band import Band
from data.sig import SIG from data.sig import SIG
# General software # General software
SOFTWARE_VERSION = "2.0.3" SOFTWARE_VERSION = "2.1"
# HTTP headers used for spot providers that use HTTP # HTTP headers used for spot providers that use HTTP
HTTP_HEADERS = {"User-Agent": f"Spothole v{SOFTWARE_VERSION} (operated by {SERVER_OWNER_CALLSIGN})"} HTTP_HEADERS = {"User-Agent": f"Spothole v{SOFTWARE_VERSION} (operated by {SERVER_OWNER_CALLSIGN})"}
@@ -11,203 +12,392 @@ HAMQTH_PRG = f"Spothole v{SOFTWARE_VERSION} operated by {SERVER_OWNER_CALLSIGN}"
# Special Interest Groups # Special Interest Groups
SIGS = [ SIGS = [
SIG(
name="AMSAT",
comment_names=[],
description="Amateur Radio Satellites",
sig_type=SIGType.WORLDWIDE,
icon="fa-satellite",
refs_globally_unique=False,
),
SIG(
name="EME",
comment_names=[],
description="Moonbounce",
sig_type=SIGType.WORLDWIDE,
icon="fa-moon",
refs_globally_unique=False,
),
SIG( SIG(
name="POTA", name="POTA",
comment_names=["POTA"], comment_names=["POTA"],
description="Parks on the Air", description="Parks on the Air",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.PARK,
ref_regex=r"[A-Z]{2}\-\d{4,5}|K\-TEST", ref_regex=r"[A-Z]{2}\-\d{4,5}|K\-TEST",
icon="fa-tree",
refs_globally_unique=False,
), ),
SIG( SIG(
name="SOTA", name="SOTA",
comment_names=["SOTA"], comment_names=["SOTA"],
description="Summits on the Air", description="Summits on the Air",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.SUMMIT,
ref_regex=r"[A-Z0-9]{1,3}\/[A-Z]{2}\-\d{3}", ref_regex=r"[A-Z0-9]{1,3}\/[A-Z]{2}\-\d{3}",
icon="fa-mountain-sun",
refs_globally_unique=False,
), ),
SIG( SIG(
name="WWFF", name="WWFF",
comment_names=["WWFF"], comment_names=["WWFF"],
description="World Wide Flora & Fauna", description="World Wide Flora & Fauna",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.PARK,
ref_regex=r"[A-Z0-9]{1,3}FF\-\d{4}", ref_regex=r"[A-Z0-9]{1,3}FF\-\d{4}",
icon="fa-seedling",
refs_globally_unique=True,
), ),
SIG( SIG(
name="GMA", name="GMA",
comment_names=["GMA"], comment_names=["GMA"],
description="Global Mountain Activity", description="Global Mountain Activity",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.SUMMIT,
ref_regex=r"[A-Z0-9]{1,3}\/[A-Z]{2}\-\d{3}", ref_regex=r"[A-Z0-9]{1,3}\/[A-Z]{2}\-\d{3}",
icon="fa-person-hiking",
refs_globally_unique=False,
), ),
SIG( SIG(
name="WWBOTA", name="WWBOTA",
comment_names=["WWBOTA", "BOTA"], comment_names=["WWBOTA", "BOTA"],
description="Worldwide Bunkers on the Air", description="Worldwide Bunkers on the Air",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.BUNKER,
ref_regex=r"B\/[A-Z0-9]{1,3}\-\d{3,4}", ref_regex=r"B\/[A-Z0-9]{1,3}\-\d{3,4}",
icon="fa-radiation",
refs_globally_unique=True,
), ),
SIG( SIG(
name="HEMA", name="HEMA",
comment_names=["HEMA"], comment_names=["HEMA"],
description="HuMPs Excluding Marilyns Award", description="HuMPs Excluding Marilyns Award",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.SUMMIT,
ref_regex=r"[A-Z0-9]{1,3}\/[A-Z]{3}\-\d{3}", ref_regex=r"[A-Z0-9]{1,3}\/[A-Z]{3}\-\d{3}",
icon="fa-mound",
refs_globally_unique=False,
), ),
SIG( SIG(
name="IOTA", name="IOTA",
comment_names=["IOTA"], comment_names=["IOTA"],
description="Islands on the Air", description="Islands on the Air",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.ISLAND,
ref_regex=r"[A-Z]{2}\-\d{3}", ref_regex=r"[A-Z]{2}\-\d{3}",
icon="fa-book-atlas",
refs_globally_unique=False,
), ),
SIG( SIG(
name="GMA Island", name="GMA Islands",
comment_names=[], comment_names=[],
description="Global Mountain Activity - Islands", description="Global Mountain Activity - Islands",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.ISLAND,
ref_regex=r"(([A-Z]{2}\-\d{3})|([A-Z0-9]{1,3}\/[A-Z]{2}\-\d{3}))", ref_regex=r"(([A-Z]{2}\-\d{3})|([A-Z0-9]{1,3}\/[A-Z]{2}\-\d{3}))",
), icon="fa-person-hiking",
SIG( refs_globally_unique=False,
name="MOTA",
comment_names=["MOTA"],
description="Mills on the Air",
ref_regex=r"X\d{4,6}",
), ),
SIG( SIG(
name="ARLHS", name="ARLHS",
comment_names=["ARLHS"], comment_names=["ARLHS"],
description="Amateur Radio Lighthouse Society", description="Amateur Radio Lighthouse Society",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.LIGHTHOUSE,
ref_regex=r"[A-Z]{3}[\- ]\d{3,4}", ref_regex=r"[A-Z]{3}[\- ]\d{3,4}",
icon="fa-house-flood-water",
refs_globally_unique=False,
), ),
SIG( SIG(
name="ILLW", name="ILLW",
comment_names=["ILLW"], comment_names=["ILLW"],
description="International Lighthouse & Lightship Weekend", description="International Lighthouse & Lightship Weekend",
sig_type=SIGType.EVENT,
ref_type=SIGRefType.LIGHTHOUSE,
ref_regex=r"[A-Z]{2}\d{4}", ref_regex=r"[A-Z]{2}\d{4}",
icon="fa-house-flood-water",
refs_globally_unique=False,
),
SIG(
name="MOTA",
comment_names=["MOTA"],
description="Mills on the Air",
sig_type=SIGType.EVENT,
ref_type=SIGRefType.MILL,
ref_regex=r"X\d{4,6}",
icon="fa-fan",
refs_globally_unique=True,
), ),
SIG( SIG(
name="SIOTA", name="SIOTA",
comment_names=["SIOTA"], comment_names=["SIOTA"],
description="Silos on the Air", description="Silos on the Air",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.SILO,
ref_regex=r"[A-Z]{2}\-[A-Z]{3}\d", ref_regex=r"[A-Z]{2}\-[A-Z]{3}\d",
icon="fa-wheat-awn",
refs_globally_unique=False,
), ),
SIG( SIG(
name="WCA", name="WCA",
comment_names=["WCA"], comment_names=["WCA"],
description="World Castles Award", description="World Castles Award",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.CASTLE,
ref_regex=r"[A-Z0-9]{1,3}\-\d{5}", ref_regex=r"[A-Z0-9]{1,3}\-\d{5}",
icon="fa-chess-rook",
refs_globally_unique=False,
), ),
SIG( SIG(
name="ZLOTA", name="ZLOTA",
comment_names=["ZLOTA"], comment_names=["ZLOTA"],
description="New Zealand on the Air", description="New Zealand on the Air",
sig_type=SIGType.REGIONAL,
ref_type=None,
ref_regex=r"ZL[A-Z]/[A-Z]{2}\-\d{3,4}", ref_regex=r"ZL[A-Z]/[A-Z]{2}\-\d{3,4}",
icon="fa-kiwi-bird",
region_flag="🇳🇿",
refs_globally_unique=True,
), ),
SIG( SIG(
name="WOTA", name="WOTA",
comment_names=["WOTA"], comment_names=["WOTA"],
description="Wainwrights on the Air", description="Wainwrights on the Air",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.SUMMIT,
ref_regex=r"[A-Z]{3}-[0-9]{2}", ref_regex=r"[A-Z]{3}-[0-9]{2}",
icon="fa-w",
region_flag="🇬🇧",
refs_globally_unique=False,
),
SIG(
name="BOTA",
comment_names=[],
description="Beaches on the Air",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.BEACH,
icon="fa-umbrella-beach",
refs_globally_unique=False,
), ),
SIG(name="BOTA", comment_names=[], description="Beaches on the Air"),
SIG( SIG(
name="KRMNPA", name="KRMNPA",
comment_names=["KRMNPA"], comment_names=["KRMNPA"],
description="Keith Roget Memorial National Parks Award", description="Keith Roget Memorial National Parks Award",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.PARK,
ref_regex=r"VKFF\-\d{4}", ref_regex=r"VKFF\-\d{4}",
icon="fa-earth-oceania",
region_flag="🇦🇺",
refs_globally_unique=False,
), ),
SIG( SIG(
name="SANPCPA", name="SANPCPA",
comment_names=["SANPCPA"], comment_names=["SANPCPA"],
description="South Australian National Parks and Conservation Parks Award", description="South Australian National Parks and Conservation Parks Award",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.PARK,
ref_regex=r"VKFF\-\d{4}", ref_regex=r"VKFF\-\d{4}",
icon="fa-earth-oceania",
region_flag="🇦🇺",
refs_globally_unique=False,
), ),
SIG( SIG(
name="LLOTA", name="LLOTA",
comment_names=["LLOTA"], comment_names=["LLOTA"],
description="Lagos y Lagunas on the Air", description="Lagos y Lagunas on the Air",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.LAKE,
ref_regex=r"LL[A-Z]{2}\-\d{4}", ref_regex=r"LL[A-Z]{2}\-\d{4}",
icon="fa-water",
refs_globally_unique=True,
), ),
SIG( SIG(
name="Towers", name="Towers",
comment_names=["TOTA"], comment_names=["TOTA"],
description="Towers on the Air", description="Towers on the Air",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.TOWER,
ref_regex=r"[A-Z]{2,3}R\-\d{4}", ref_regex=r"[A-Z]{2,3}R\-\d{4}",
icon="fa-tower-observation",
refs_globally_unique=False,
), ),
SIG( SIG(
name="Tiles", name="Tiles",
comment_names=[], comment_names=[],
description="Tiles on the Air", description="Tiles on the Air",
sig_type=SIGType.WORLDWIDE,
ref_type=SIGRefType.GRID,
ref_regex=r"[A-Za-z]{2}[0-9]{2}[A-Za-z]{2}", ref_regex=r"[A-Za-z]{2}[0-9]{2}[A-Za-z]{2}",
icon="fa-square",
refs_globally_unique=False,
), ),
SIG( SIG(
name="WAB", name="WAB",
comment_names=["WAB"], comment_names=["WAB"],
description="Worked All Britain", description="Worked All Britain",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.GRID,
ref_regex=r"[A-Z]{1,2}[0-9]{2}", ref_regex=r"[A-Z]{1,2}[0-9]{2}",
icon="fa-table-cells-large",
region_flag="🇬🇧",
refs_globally_unique=False,
), ),
SIG( SIG(
name="WAI", name="WAI",
comment_names=["WAI"], comment_names=["WAI"],
description="Worked All Ireland", description="Worked All Ireland",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.GRID,
ref_regex=r"[A-Z][0-9]{2}", ref_regex=r"[A-Z][0-9]{2}",
icon="fa-table-cells-large",
region_flag="🇮🇪",
refs_globally_unique=False,
),
SIG(
name="DMF",
comment_names=["DMF"],
description="Diplôme des Moulins de France",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.MILL,
icon="fa-fan",
region_flag="🇫🇷",
refs_globally_unique=False,
), ),
SIG( SIG(
name="DME", name="DME",
comment_names=["DME"], comment_names=["DME"],
description="Diplomas de Municipios Españoles", description="Diploma Municipios de España",
ref_regex=r"\d{4,5}", sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.TOWN,
ref_regex=r"DME[\- ]\d{3,5}",
icon="fa-building",
region_flag="🇪🇸",
refs_globally_unique=True,
),
SIG(
name="FEA",
comment_names=["FEA"],
description="Diploma Faros de España",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.LIGHTHOUSE,
# FEA references are technically [DE]\-\d{4}(\.\d)? but spotters always seem to miss out the D- or E-
# prefix and just use FEA-1234 or FEA 1234, so allow for that. The FEA sigref data provider adds both
# forms to the database.
ref_regex=r"([DE]|FEA)[\- ]\d{4}(\.\d)?",
icon="fa-house-flood-water",
region_flag="🇪🇸",
refs_globally_unique=True,
),
SIG(
name="DMUE",
comment_names=["DMUE"],
description="Diploma Museos de España",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.BUILDING,
ref_regex=r"MUE[A-Z]{2}-\d{3}",
icon="fa-landmark",
region_flag="🇪🇸",
refs_globally_unique=True,
),
SIG(
name="DMVE",
comment_names=["DMVE"],
description="Diploma Monumentos y Vestigios de España",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.BUILDING,
ref_regex=r"MV[A-Z]{1,2}-\d{4}",
icon="fa-monument",
region_flag="🇪🇸",
refs_globally_unique=True,
),
SIG(
name="DCE",
comment_names=["DCE"],
description="Diploma Castillos de España",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.CASTLE,
ref_regex=r"C[A-Z]{1,2}-\d{3}",
icon="fa-chess-rook",
region_flag="🇪🇸",
refs_globally_unique=False,
),
SIG(
name="DEFE",
comment_names=["DEFE"],
description="Diploma Estaciones de Ferrocarril de España",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.BUILDING,
ref_regex=r"EF[A-Z]{1,2}-\d{3}",
icon="fa-train",
region_flag="🇪🇸",
refs_globally_unique=True,
),
SIG(
name="DTMBA",
comment_names=["DTMBA"],
description="Diploma Teatri Musei e Belle Arti",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.BUILDING,
ref_regex=r"I-?[0-9]{3,4}\s?[A-Z]{2}",
icon="fa-landmark",
region_flag="🇮🇹",
refs_globally_unique=True,
),
SIG(
name="BIWOTA",
comment_names=["BIWOTA"],
description="British Inland Waterways on the Air",
sig_type=SIGType.EVENT,
ref_type=SIGRefType.WATERWAY,
icon="fa-ship",
region_flag="🇬🇧",
refs_globally_unique=False,
),
SIG(
name="COTA",
comment_names=["COTA"],
description="Castles on the Air",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.CASTLE,
ref_regex=r"[A-Z]{3}\-[0-9]{3,5}",
icon="fa-chess-rook",
region_flag="🇩🇪",
refs_globally_unique=False,
),
SIG(
name="PGA",
comment_names=["PGA"],
description="Polish Gmina Award",
sig_type=SIGType.REGIONAL,
ref_type=SIGRefType.REGION,
ref_regex=r"[A-Z]{2}[0-9]{2}",
icon="fa-g",
region_flag="🇵🇱",
refs_globally_unique=False,
), ),
SIG( SIG(
name="Toilets", name="Toilets",
comment_names=[], comment_names=[],
description="Toilets on the Air", description="Toilets on the Air",
sig_type=SIGType.EVENT,
ref_type=SIGRefType.TOILET,
ref_regex=r"T\-[0-9]{2}", ref_regex=r"T\-[0-9]{2}",
icon="fa-toilet",
region_flag="🏴‍☠️",
refs_globally_unique=True,
), ),
] ]
# 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",
"FUSION",
"M17",
]
DATA_MODES = [
"DATA",
"FT8",
"FT4",
"RTTY",
"SSTV",
"JS8",
"HELL",
"PSK",
"FSK",
"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
# that match a key in this table will be converted to the corresponding value, so only the modes above will actually be
# present in the spots.
MODE_ALIASES = {
"RTT": "RTTY",
"BPSK": "PSK",
"PSK31": "PSK",
"BPSK31": "PSK",
"MFSK": "FSK",
"MFSK32": "FSK",
"DIGI": "DATA",
"DIGITAL": "DATA",
}
# Band definitions # Band definitions
BANDS = [ BANDS = [
Band(name="2200m", start_freq=135700, end_freq=137800), Band(name="2200m", start_freq=135700, end_freq=137800),
@@ -223,7 +413,7 @@ BANDS = [
Band(name="12m", start_freq=24890000, end_freq=24990000, is_ham_hf=True), Band(name="12m", start_freq=24890000, end_freq=24990000, is_ham_hf=True),
Band(name="11m", start_freq=26965000, end_freq=27405000), Band(name="11m", start_freq=26965000, end_freq=27405000),
Band(name="10m", start_freq=28000000, end_freq=29700000, is_ham_hf=True), Band(name="10m", start_freq=28000000, end_freq=29700000, is_ham_hf=True),
Band(name="6m", start_freq=50000000, end_freq=54000000), Band(name="6m", start_freq=50000000, end_freq=54000000, is_ham_hf=True),
Band(name="5m", start_freq=56000000, end_freq=60500000), Band(name="5m", start_freq=56000000, end_freq=60500000),
Band(name="4m", start_freq=70000000, end_freq=70500000), Band(name="4m", start_freq=70000000, end_freq=70500000),
Band(name="2m", start_freq=144000000, end_freq=148000000), Band(name="2m", start_freq=144000000, end_freq=148000000),
@@ -239,9 +429,6 @@ BANDS = [
] ]
UNKNOWN_BAND = Band(name="Unknown", start_freq=0, end_freq=0) UNKNOWN_BAND = Band(name="Unknown", start_freq=0, end_freq=0)
# Continents
CONTINENTS = ["EU", "NA", "SA", "AS", "AF", "OC", "AN"]
# Propagation modes used in VHF/UHF DX cluster comments, e.g. "JN61ES<ES>JM56XT". I don't think there's an official list # Propagation modes used in VHF/UHF DX cluster comments, e.g. "JN61ES<ES>JM56XT". I don't think there's an official list
# of these anywhere, but here are some I've seen or seen reference to # of these anywhere, but here are some I've seen or seen reference to
PROPAGATION_MODES = { PROPAGATION_MODES = {
@@ -254,5 +441,6 @@ PROPAGATION_MODES = {
"MS": "Meteor scatter", "MS": "Meteor scatter",
"RS": "Rain scatter", "RS": "Rain scatter",
"AS": "Aircraft scatter", "AS": "Aircraft scatter",
"ACS": "Aircraft scatter",
"SAT": "Satellite", "SAT": "Satellite",
} }
+52 -33
View File
@@ -1,5 +1,6 @@
import logging import logging
import threading import threading
import time
from core.config import config, create_provider_from_config from core.config import config, create_provider_from_config
@@ -16,6 +17,7 @@ class DataProviders:
self.static_data_providers = [] self.static_data_providers = []
self.sig_ref_data_providers = [] self.sig_ref_data_providers = []
self.callsign_data_providers = [] self.callsign_data_providers = []
self._startup_timers = []
def setup(self): def setup(self):
for entry in config["spot_providers"]: for entry in config["spot_providers"]:
@@ -43,41 +45,58 @@ class DataProviders:
def start(self): def start(self):
# Start data providers before spot/alert providers so the lookup data is there already for incoming spots. # Start data providers before spot/alert providers so the lookup data is there already for incoming spots.
# Each category is fired off after a small delay to give the rest of Spothole chance to start up. # Each category is fired off after a small delay to give the rest of Spothole chance to start up.
threading.Timer(5.0, lambda: self.start_providers(self.static_data_providers, "static data")).start() self._startup_timers = [
threading.Timer( threading.Timer(5.0, lambda: self.start_providers(self.static_data_providers, "static data")),
10.0, threading.Timer(10.0, lambda: self.start_providers(self.callsign_data_providers, "callsign data")),
lambda: self.start_providers(self.callsign_data_providers, "callsign data"), threading.Timer(15.0, lambda: self.start_providers(self.spot_providers, "spot")),
).start() threading.Timer(20.0, lambda: self.start_providers(self.alert_providers, "alert")),
threading.Timer(15.0, lambda: self.start_providers(self.spot_providers, "spot")).start() threading.Timer(
threading.Timer(20.0, lambda: self.start_providers(self.alert_providers, "alert")).start() 25.0,
threading.Timer( lambda: self.start_providers(self.solar_condition_providers, "solar condition"),
25.0, ),
lambda: self.start_providers(self.solar_condition_providers, "solar condition"), threading.Timer(30.0, lambda: self.start_providers(self.sig_ref_data_providers, "SIG ref data")),
).start() ]
threading.Timer( for t in self._startup_timers:
30.0, t.daemon = True
lambda: self.start_providers(self.sig_ref_data_providers, "SIG ref data"), t.start()
).start()
def stop(self): def stop(self):
for sp in self.spot_providers: # Cancel any startup timers that haven't fired yet
if sp.enabled: for t in self._startup_timers:
sp.stop() t.cancel()
for ap in self.alert_providers:
if ap.enabled: # Stop all providers
ap.stop() all_providers = [
for scp in self.solar_condition_providers: p
if scp.enabled: for p in (
scp.stop() self.spot_providers
for srdp in self.sig_ref_data_providers: + self.alert_providers
if srdp.enabled: + self.solar_condition_providers
srdp.stop() + self.sig_ref_data_providers
for sdp in self.static_data_providers: + self.static_data_providers
if sdp.enabled: + self.callsign_data_providers
sdp.stop() )
for cdp in self.callsign_data_providers: if p.enabled
if cdp.enabled: ]
cdp.stop() if not all_providers:
return
def stop_provider(p):
try:
p.stop()
except Exception:
logger.exception("Exception stopping provider")
threads = [threading.Thread(target=stop_provider, args=(p,), daemon=True) for p in all_providers]
for t in threads:
t.start()
deadline = time.monotonic() + 40
for t in threads:
t.join(timeout=max(0.0, deadline - time.monotonic()))
still_running = [t for t in threads if t.is_alive()]
if still_running:
logger.warning("Some threads did not stop in time!")
# Global object # Global object
+11 -19
View File
@@ -6,6 +6,7 @@ import diskcache
from core.config import MAX_ALERT_AGE, MAX_SPOT_AGE from core.config import MAX_ALERT_AGE, MAX_SPOT_AGE
from core.live_data_cache import LiveDataCache from core.live_data_cache import LiveDataCache
from core.single_object_data_cache import SingleObjectDataCache
from data.solar_conditions import SolarConditions from data.solar_conditions import SolarConditions
logger = logging.getLogger(__name__) logger = logging.getLogger(__name__)
@@ -34,10 +35,8 @@ class DataStore:
self.dxcc_data = None self.dxcc_data = None
self.dxcc_lookup_by_call_regex = [] self.dxcc_lookup_by_call_regex = []
self.sigrefs = None self.sigrefs = None
self.status_data = {} self.status = None
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 # 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 # caches, they can just be straight objects
self.cq_zone_data = None self.cq_zone_data = None
@@ -46,16 +45,11 @@ class DataStore:
def setup(self): def setup(self):
Path(CACHE_DIR).mkdir(parents=True, exist_ok=True) Path(CACHE_DIR).mkdir(parents=True, exist_ok=True)
# Standard disk cache for solar data and status data, but each cache contains only a single object which we # For solar data and status data, we use a wrapper around disk cache where each cache contains only a single
# expose to the wider application # object exposed to the wider application, and provides a store() method for callers to notify diskcache that
self._solar = diskcache.Cache(f"{CACHE_DIR}solar") # the object has changed and needs to be re-cached.
if "solar_conditions" not in self._solar: self.solar_conditions = SingleObjectDataCache(f"{CACHE_DIR}solar", SolarConditions())
self._solar.add("solar_conditions", SolarConditions()) self.status = SingleObjectDataCache(f"{CACHE_DIR}status", {})
self.solar_conditions = self._solar.get("solar_conditions")
self._status = diskcache.Cache(f"{CACHE_DIR}status")
if "status_data" not in self._status:
self._status.add("status_data", {})
self.status_data = self._status.get("status_data")
# Standard disk cache for static reference and SIG ref data. Separate provider threads will repopulate these on # Standard disk cache for static reference and SIG ref data. Separate provider threads will repopulate these on
# a regular basis but there's no need for a TTL since old data is better than no data. # a regular basis but there's no need for a TTL since old data is better than no data.
@@ -112,17 +106,15 @@ class DataStore:
and testing the callsign every time is expensive. So instead we build a separate in-memory lookup of compiled and testing the callsign every time is expensive. So instead we build a separate in-memory lookup of compiled
regex against DXCC entity code, as a list of tuples we can iterate through.""" regex against DXCC entity code, as a list of tuples we can iterate through."""
self.dxcc_lookup_by_call_regex = []
for entry in [DATA_STORE.dxcc_data[key] for key in DATA_STORE.dxcc_data]: for entry in [DATA_STORE.dxcc_data[key] for key in DATA_STORE.dxcc_data]:
self.dxcc_lookup_by_call_regex.append((re.compile(entry["prefixRegex"]), entry["entityCode"])) self.dxcc_lookup_by_call_regex.append((re.compile(entry["prefixRegex"]), entry["entityCode"]))
def close(self): def close(self):
self.spots.save_snapshot()
self.alerts.save_snapshot()
self.spots.close() self.spots.close()
self.alerts.close() self.alerts.close()
self._solar.close() self.solar_conditions.close()
self._status.close() self.status.close()
self.dxcc_data.close() self.dxcc_data.close()
self.sigrefs.close() self.sigrefs.close()
self.callsign_data_countryfiles.close() self.callsign_data_countryfiles.close()
+154
View File
@@ -0,0 +1,154 @@
from enum import Enum
class Continent(str, Enum):
EU = "EU"
NA = "NA"
SA = "SA"
AS = "AS"
AF = "AF"
OC = "OC"
AN = "AN"
class Mode(str, Enum):
CW = "CW"
PHONE = "PHONE"
SSB = "SSB"
AM = "AM"
FM = "FM"
DV = "DV"
DATA = "DATA"
FT8 = "FT8"
FT4 = "FT4"
RTTY = "RTTY"
SSTV = "SSTV"
JS8 = "JS8"
HELL = "HELL"
PSK = "PSK"
FSK = "FSK"
OLIVIA = "OLIVIA"
PKT = "PKT"
MSK144 = "MSK144"
@property
def is_cw(self) -> bool:
return self == Mode.CW
@property
def is_phone(self) -> bool:
return self in {Mode.PHONE, Mode.SSB, Mode.AM, Mode.FM, Mode.DV}
@property
def is_data(self) -> bool:
return not (self.is_cw or self.is_phone)
@staticmethod
def from_name(name):
"""Convert a string to an enum mode using the alias table."""
if not name:
return None
try:
return Mode(name.upper())
except (KeyError, ValueError):
try:
return Mode(MODE_ALIASES[name.upper()])
except (KeyError, ValueError):
return None
class ModeType(str, Enum):
PHONE = "PHONE"
CW = "CW"
DATA = "DATA"
class ModeSource(str, Enum):
"""Where the mode data came from in a spot."""
SPOT = "SPOT"
COMMENT = "COMMENT"
BANDPLAN = "BANDPLAN"
class LocationSourceForSpot(str, Enum):
"""Where the location data came from in a spot."""
SPOT = "SPOT"
SIG_REF_LOOKUP = "SIG REF LOOKUP"
GRID = "GRID"
HOME_QTH = "HOME QTH"
DXCC = "DXCC"
class LocationSourceForCallsign(str, Enum):
"""Where the location data came from in a callsign data object."""
HOME_QTH = "HOME QTH"
DXCC = "DXCC"
class SIGRefType(str, Enum):
"""Type of a Special Interest Group reference."""
PARK = "PARK"
SUMMIT = "SUMMIT"
CASTLE = "CASTLE"
LIGHTHOUSE = "LIGHTHOUSE"
ISLAND = "ISLAND"
BUNKER = "BUNKER"
MILL = "MILL"
SILO = "SILO"
BEACH = "BEACH"
LAKE = "LAKE"
TOWER = "TOWER"
WATERWAY = "WATERWAY"
TOWN = "TOWN"
BUILDING = "BUILDING"
REGION = "REGION"
GRID = "GRID"
TOILET = "TOILET"
class AlertType(str, Enum):
"""Type of an alert."""
XOTA = "XOTA"
SATELLITE = "SATELLITE"
DXPEDITION = "DXPEDITION"
CONTEST = "CONTEST"
class SIGType(str, Enum):
"""Type of a Special Interest Group. Used to group them in the web UI."""
WORLDWIDE = "WORLDWIDE"
REGIONAL = "REGIONAL"
EVENT = "EVENT"
# 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
# that match a key in this table will be converted to the corresponding value, so only the modes above will actually be
# present in the spots.
MODE_ALIASES = {
"USB": "SSB",
"LSB": "SSB",
"DIGITALVOICE": "DV",
"DIGITALVOI": "DV",
"DMR": "DV",
"DSTAR": "DV",
"C4FM": "DV",
"FUSION": "DV",
"M17": "DV",
"RTT": "RTTY",
"BPSK": "PSK",
"PSK31": "PSK",
"BPSK31": "PSK",
"MFSK": "FSK",
"MFSK32": "FSK",
"DIGI": "DATA",
"DIGITAL": "DATA",
}
+12 -4
View File
@@ -22,6 +22,8 @@ class LiveDataCache:
self._listeners_lock = threading.Lock() self._listeners_lock = threading.Lock()
self._snapshot_dir = snapshot_dir self._snapshot_dir = snapshot_dir
self._disk_cache = diskcache.Cache(str(snapshot_dir)) self._disk_cache = diskcache.Cache(str(snapshot_dir))
self._stop_event = threading.Event()
self._snapshot_thread = None
self._load_snapshot() self._load_snapshot()
self._start_periodic_snapshot(snapshot_interval_sec) self._start_periodic_snapshot(snapshot_interval_sec)
@@ -89,13 +91,19 @@ class LiveDataCache:
def _start_periodic_snapshot(self, interval): def _start_periodic_snapshot(self, interval):
def loop(): def loop():
while True: while not self._stop_event.wait(timeout=interval):
time.sleep(interval)
self.save_snapshot() self.save_snapshot()
t = threading.Thread(target=loop, name=f"LiveDataCache-Snapshot-{self._snapshot_dir}") self._snapshot_thread = threading.Thread(
t.start() target=loop, name=f"LiveDataCache-Snapshot-{self._snapshot_dir}", daemon=True
)
self._snapshot_thread.start()
def close(self): def close(self):
self._stop_event.set()
if self._snapshot_thread:
self._snapshot_thread.join(timeout=15)
if self._snapshot_thread.is_alive():
logger.warning(f"LiveDataCache snapshot thread for {self._snapshot_dir} did not exit on time.")
self.save_snapshot() self.save_snapshot()
self._disk_cache.close() self._disk_cache.close()
+59 -28
View File
@@ -1,46 +1,70 @@
import logging import logging
import re
from pyhamtools.locator import latlong_to_locator, locator_to_latlong from pyhamtools.locator import latlong_to_locator, locator_to_latlong
from core.constants import SIGS
from core.data_store import DATA_STORE from core.data_store import DATA_STORE
from core.enums import SIGRefType
from core.geo_utils import wab_wai_square_to_lat_lon from core.geo_utils import wab_wai_square_to_lat_lon
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
logger = logging.getLogger(__name__) logger = logging.getLogger(__name__)
def get_sig_ref_info(sig, ref_id): def get_sig_ref_info(sig_name, 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 """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 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 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.""" SIG we are getting data for."""
if sig is None or sig == "" or ref_id is None or ref_id == "": if sig_name is None or sig_name == "" or ref_id is None or ref_id == "":
logger.debug("Failed to look up sig_ref info, sig or ref were not set.") logger.debug("Failed to look up sig_ref info, sig or ref were not set.")
return None return None
sig_ref = SIGRef(sig=sig, id=ref_id) # Sometimes we allow spaces instead of dashes in references due to common usage that way, but official reference
# lists never do, so convert them here.
ref_id = ref_id.replace(" ", "-")
# Prepare the object to be returned
sig_ref = SIGRef(sig=sig_name, id=ref_id)
# We can always get the reference type and the icon from the SIG itself
for sig in SIGS:
if sig.name.upper() == sig_name.upper():
sig_ref.ref_type = sig.ref_type
sig_ref.icon = sig.icon
try: try:
### FUDGES ### ### FUDGES ###
# #
# DME fudge. Our database has leading zeros padding to 5 digits which is the expected format, but not all # DME fudge. Our database has leading zeros padding to 5 digits which is the expected format, but not all
# activators add leading zeros. # activators add leading zeros. We also need to normalise "DME 01234" to "DME-01234" to match what's in our
if sig.upper() == "DME": # database.
ref_id = ref_id.zfill(5) if sig_name.upper() == "DME":
match = re.match(r"DME[\- ](\d{3,5})", ref_id, re.IGNORECASE)
if match:
number = match.group(1)
ref_id = f"DME-{number.zfill(5)}"
# If the SIG is HEMA, we have no current lookup for this so just skip the lookup here. # DTMBA spotters sometimes include spaces and dashes, our regex allows them but they must be removed here so we
if sig.upper() == "HEMA": # can look up against the official list which doesn't have them
sig_ref.ref_type = "Summit" if sig_name.upper() == "DTMBA":
ref_id = ref_id.replace("-", "").replace(" ", "")
### NO DATA SIGS ###
#
# If the SIG is HEMA or BIWOTA, we have no way to either generate useful data or look it up on a reference list,
# so just skip the lookup here.
if sig_name.upper() == "HEMA" or sig_name.upper() == "BIWOTA":
return sig_ref return sig_ref
### PROGRAMMATIC DATA GENERATION INSTEAD OF LOOKUPS ### ### PROGRAMMATIC DATA GENERATION INSTEAD OF LOOKUPS ###
# #
# If the SIG is Tiles, WAB, WAI or BOTA (Beaches), we don't have anything to look up from the data store, we can # If the SIG is Tiles, WAB, WAI or BOTA (Beaches), we don't have anything to look up from the data store, we can
# calculate all the information we are going to get directly. # calculate all the information we are going to get directly.
if sig.upper() == "TILES": if sig_name.upper() == "TILES":
# Tiles on the Air just uses Maidenhead 6-digit squares, so ID, Name and Grid are all the same # Tiles on the Air just uses Maidenhead 6-digit squares, so ID, Name and Grid are all the same
sig_ref.ref_type = "Grid"
if not sig_ref.name: if not sig_ref.name:
sig_ref.name = sig_ref.id sig_ref.name = sig_ref.id
if not sig_ref.grid: if not sig_ref.grid:
@@ -51,8 +75,7 @@ def get_sig_ref_info(sig, ref_id):
sig_ref.longitude = ll[1] sig_ref.longitude = ll[1]
return sig_ref return sig_ref
elif sig.upper() == "WAB" or sig.upper() == "WAI": elif sig_name.upper() == "WAB" or sig_name.upper() == "WAI":
sig_ref.ref_type = "Grid"
ll = wab_wai_square_to_lat_lon(ref_id) ll = wab_wai_square_to_lat_lon(ref_id)
if ll: if ll:
sig_ref.name = ref_id sig_ref.name = ref_id
@@ -64,16 +87,15 @@ def get_sig_ref_info(sig, ref_id):
logger.warning("Invalid lat/lon received for WAB/WAI reference") logger.warning("Invalid lat/lon received for WAB/WAI reference")
return sig_ref return sig_ref
elif sig.upper() == "BOTA": elif sig_name.upper() == "BOTA":
# For BOTA all we can ever generate is the URL, there is no data file or lookup for lat/longs # For BOTA all we can ever generate is the URL, there is no data file or lookup for lat/longs
sig_ref.ref_type = "Beach"
if not sig_ref.name: if not sig_ref.name:
sig_ref.name = sig_ref.id sig_ref.name = sig_ref.id
if sig_ref.name: if sig_ref.name:
sig_ref.url = f"https://www.beachesontheair.com/beaches/{sig_ref.name.lower().replace(' ', '-')}" sig_ref.url = f"https://www.beachesontheair.com/beaches/{sig_ref.name.lower().replace(' ', '-')}"
return sig_ref return sig_ref
elif sig.upper() == "GMA Islands": elif sig_name.upper() == "GMA Islands":
# GMA Islands is a bit of a mess of GMA and IOTA references. Try looking them both up and see what returns # GMA Islands is a bit of a mess of GMA and IOTA references. Try looking them both up and see what returns
# the best result. # the best result.
iota_lookup = get_sig_ref_info("IOTA", ref_id) iota_lookup = get_sig_ref_info("IOTA", ref_id)
@@ -84,25 +106,34 @@ def get_sig_ref_info(sig, ref_id):
for key, value in gma_lookup.__dict__.items(): for key, value in gma_lookup.__dict__.items():
if value is not None and sig_ref.__dict__.get(key) is None: if value is not None and sig_ref.__dict__.get(key) is None:
sig_ref.__dict__[key] = value sig_ref.__dict__[key] = value
sig_ref.ref_type = "Island" sig_ref.ref_type = SIGRefType.ISLAND
return sig_ref return sig_ref
### ACTUAL LOOKUP ### ### ACTUAL LOOKUP ###
# #
# OK, this is something we have to look up. Now check to see if our data store contains reference data and use # OK, this is something we have to look up. Now check to see if our data store contains reference data and if
# that. # so, copy the data into the sig_ref object
key = f"{sig}:{ref_id}" key = f"{sig_name}:{ref_id}"
lookup_data = DATA_STORE.sigrefs.get(key) if key in DATA_STORE.sigrefs else None try:
if lookup_data: lookup_data = DATA_STORE.sigrefs.get(key) if key in DATA_STORE.sigrefs else None
return lookup_data if lookup_data:
for attr, value in lookup_data.__dict__.items():
if value is not None and sig_ref.__dict__.get(attr) is None:
sig_ref.__dict__[attr] = value
else: else:
# Maybe a super new reference we don't know about yet, but more likely a typo or a test reference, # Maybe a super new reference we don't know about yet, but more likely a typo or a test reference,
# just silently ignore it. # just silently ignore it.
logger.debug(f"{sig} database did not contain data for ref {ref_id}") logger.debug(f"{sig_name} database did not contain data for ref {ref_id}")
except (ValueError, KeyError):
# Catch exceptions due to e.g. old versions of objects in the cache that are no longer compatible,
# and remove them from the cache.
del DATA_STORE.sigrefs[key]
return None
except Exception: except Exception:
logger.exception(f"Exception when looking up sig_ref info for {sig} ref {ref_id}") logger.exception(f"Exception when looking up sig_ref info for {sig_name} ref {ref_id}")
return sig_ref return sig_ref
+39
View File
@@ -0,0 +1,39 @@
import logging
import threading
import diskcache
logger = logging.getLogger(__name__)
class SingleObjectDataCache:
"""Cache for status and solar conditions. This uses DiskCache, but unlike the standard DiskCache users like SIG and
callsign lookup handlers, status and solar conditions are persisted as a single object. If we just load the object
from DiskCache and modify it, DiskCache doesn't know that it's been updated and needs re-caching, so we provide a
store() method that any functions updating the object can call afterwards."""
def __init__(self, cache_dir, object_if_empty):
"""Initialize a SingleObjectDataCache. Provide the directory to load the cache from and save it to. If the cache
is empty, the provided object_if_empty parameter will be used to initialise it."""
self._lock = threading.Lock()
self._cache = diskcache.Cache(cache_dir)
# This cache stores a single object, doesn't matter what it's called so "object" will do
if "object" not in self._cache:
self._cache.add("object", object_if_empty)
self._obj = self._cache.get("object")
def get(self):
"""Get the data object. This can then be manipulated as necessary across multiple threads. Any function
modifying the object must remember to call store() afterwards."""
return self._obj
def store(self):
"""Store the updated object in the cache. Any function modifying the object must remember to call this
afterwards."""
with self._lock:
self._cache.set("object", self._obj)
def close(self):
self.store()
self._cache.close()
+33 -29
View File
@@ -1,3 +1,4 @@
import logging
import os import os
from datetime import datetime from datetime import datetime
from threading import Event, Thread from threading import Event, Thread
@@ -11,7 +12,10 @@ from core.constants import SOFTWARE_VERSION
from core.data_providers import DATA_PROVIDERS from core.data_providers import DATA_PROVIDERS
from core.data_store import DATA_STORE from core.data_store import DATA_STORE
from core.prometheus_metrics_handler import alerts_gauge, memory_use_gauge, spots_gauge from core.prometheus_metrics_handler import alerts_gauge, memory_use_gauge, spots_gauge
from server.webserver import WEB_SERVER from telnetserver.telnetserver import TELNET_SERVER
from webserver.webserver import WEB_SERVER
logger = logging.getLogger(__name__)
class StatusReporter: class StatusReporter:
@@ -25,19 +29,24 @@ class StatusReporter:
self._stop_event = Event() self._stop_event = Event()
self._startup_time = datetime.now(pytz.UTC) self._startup_time = datetime.now(pytz.UTC)
DATA_STORE.status_data["software_version"] = SOFTWARE_VERSION DATA_STORE.status.get()["software_version"] = SOFTWARE_VERSION
DATA_STORE.status_data["server_owner_callsign"] = SERVER_OWNER_CALLSIGN DATA_STORE.status.get()["server_owner_callsign"] = SERVER_OWNER_CALLSIGN
DATA_STORE.status.store()
def start(self): def start(self):
"""Start the reporter thread""" """Start the reporter thread"""
self._thread = Thread(target=self._run, name="StatusReporter") self._thread = Thread(target=self._run, name="StatusReporter", daemon=True)
self._thread.start() self._thread.start()
def stop(self): def stop(self):
"""Stop any threads and prepare for application shutdown""" """Stop any threads and prepare for application shutdown"""
self._stop_event.set() self._stop_event.set()
if self._thread:
self._thread.join(timeout=15)
if self._thread.is_alive():
logger.warning("Status reporter worker thread did not exit on time and will be killed.")
def _run(self): def _run(self):
"""Thread entry point: report immediately on startup, then on each interval until stopped""" """Thread entry point: report immediately on startup, then on each interval until stopped"""
@@ -50,11 +59,11 @@ class StatusReporter:
def _report(self): def _report(self):
"""Write status information""" """Write status information"""
DATA_STORE.status_data["uptime"] = (datetime.now(pytz.UTC) - self._startup_time).total_seconds() DATA_STORE.status.get()["uptime"] = (datetime.now(pytz.UTC) - self._startup_time).total_seconds()
DATA_STORE.status_data["mem_use_mb"] = round(psutil.Process(os.getpid()).memory_info().rss / (1024 * 1024), 3) DATA_STORE.status.get()["mem_use_mb"] = round(psutil.Process(os.getpid()).memory_info().rss / (1024 * 1024), 3)
DATA_STORE.status_data["num_spots"] = len(DATA_STORE.spots.values()) DATA_STORE.status.get()["num_spots"] = len(DATA_STORE.spots.values())
DATA_STORE.status_data["num_alerts"] = len(DATA_STORE.alerts.values()) DATA_STORE.status.get()["num_alerts"] = len(DATA_STORE.alerts.values())
DATA_STORE.status_data["spot_providers"] = [ DATA_STORE.status.get()["spot_providers"] = [
{ {
"name": p.name, "name": p.name,
"enabled": p.enabled, "enabled": p.enabled,
@@ -69,7 +78,7 @@ class StatusReporter:
} }
for p in DATA_PROVIDERS.spot_providers for p in DATA_PROVIDERS.spot_providers
] ]
DATA_STORE.status_data["alert_providers"] = [ DATA_STORE.status.get()["alert_providers"] = [
{ {
"name": p.name, "name": p.name,
"enabled": p.enabled, "enabled": p.enabled,
@@ -80,7 +89,7 @@ class StatusReporter:
} }
for p in DATA_PROVIDERS.alert_providers for p in DATA_PROVIDERS.alert_providers
] ]
DATA_STORE.status_data["solar_condition_providers"] = [ DATA_STORE.status.get()["solar_condition_providers"] = [
{ {
"name": p.name, "name": p.name,
"enabled": p.enabled, "enabled": p.enabled,
@@ -91,7 +100,7 @@ class StatusReporter:
} }
for p in DATA_PROVIDERS.solar_condition_providers for p in DATA_PROVIDERS.solar_condition_providers
] ]
DATA_STORE.status_data["static_data_providers"] = [ DATA_STORE.status.get()["static_data_providers"] = [
{ {
"name": p.name, "name": p.name,
"enabled": p.enabled, "enabled": p.enabled,
@@ -102,7 +111,7 @@ class StatusReporter:
} }
for p in DATA_PROVIDERS.static_data_providers for p in DATA_PROVIDERS.static_data_providers
] ]
DATA_STORE.status_data["sig_ref_data_providers"] = [ DATA_STORE.status.get()["sig_ref_data_providers"] = [
{ {
"sig_name": p.sig_name, "sig_name": p.sig_name,
"enabled": p.enabled, "enabled": p.enabled,
@@ -114,7 +123,7 @@ class StatusReporter:
} }
for p in DATA_PROVIDERS.sig_ref_data_providers for p in DATA_PROVIDERS.sig_ref_data_providers
] ]
DATA_STORE.status_data["callsign_data_providers"] = [ DATA_STORE.status.get()["callsign_data_providers"] = [
{ {
"name": p.name, "name": p.name,
"enabled": p.enabled, "enabled": p.enabled,
@@ -126,27 +135,22 @@ class StatusReporter:
} }
for p in DATA_PROVIDERS.callsign_data_providers for p in DATA_PROVIDERS.callsign_data_providers
] ]
DATA_STORE.status_data["cleanup"] = { DATA_STORE.status.get()["cleanup"] = {
"status": CLEANUP_TIMER.status, "status": CLEANUP_TIMER.status,
"last_ran": CLEANUP_TIMER.last_cleanup_time.replace(tzinfo=pytz.UTC).timestamp() "last_ran": CLEANUP_TIMER.last_cleanup_time.replace(tzinfo=pytz.UTC).timestamp()
if CLEANUP_TIMER.last_cleanup_time if CLEANUP_TIMER.last_cleanup_time
else 0, else 0,
} }
DATA_STORE.status_data["webserver"] = { DATA_STORE.status.get()["webserver"] = {
"status": WEB_SERVER.web_server_metrics["status"], "status": WEB_SERVER.web_server_metrics.status,
"last_api_access": WEB_SERVER.web_server_metrics["last_api_access_time"] "api_requests_per_hour": WEB_SERVER.web_server_metrics.api_requests_per_hour(),
.replace(tzinfo=pytz.UTC) "page_requests_per_hour": WEB_SERVER.web_server_metrics.page_requests_per_hour(),
.timestamp() "sse_client_count": WEB_SERVER.sse_client_count,
if WEB_SERVER.web_server_metrics["last_api_access_time"]
else 0,
"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 WEB_SERVER.web_server_metrics["last_page_access_time"]
else 0,
"page_access_count": WEB_SERVER.web_server_metrics["page_access_counter"],
} }
DATA_STORE.status.get()["telnet"] = {
"client_count": TELNET_SERVER.client_count,
}
DATA_STORE.status.store()
# Update Prometheus metrics # Update Prometheus metrics
memory_use_gauge.set(psutil.Process(os.getpid()).memory_info().rss) memory_use_gauge.set(psutil.Process(os.getpid()).memory_info().rss)
+1 -2
View File
@@ -14,14 +14,13 @@ class URLDataCache(CachedSession):
used across multiple threads, though note that URL lookups will block each other this way, so it is still better to used across multiple threads, though note that URL lookups will block each other this way, so it is still better to
create one of these objects per thread if possible.""" create one of these objects per thread if possible."""
_lock = threading.Lock()
def __init__(self, name): def __init__(self, name):
super().__init__( super().__init__(
f"{CACHE_DIR}urls/{name}", f"{CACHE_DIR}urls/{name}",
expire_after=timedelta(days=1), expire_after=timedelta(days=1),
allowable_codes=(200, 400, 401, 403, 404), allowable_codes=(200, 400, 401, 403, 404),
) )
self._lock = threading.Lock()
def get(self, *args, **kwargs): def get(self, *args, **kwargs):
with self._lock: with self._lock:
+44 -29
View File
@@ -1,20 +1,14 @@
import logging import logging
import re
import simplejson import simplejson
from pyhamtools.frequency import freq_to_band from pyhamtools.frequency import freq_to_band
from pyhamtools.locator import latlong_to_locator from pyhamtools.locator import latlong_to_locator
from core.constants import ( from core.constants import BANDS, UNKNOWN_BAND
ALL_MODES,
BANDS,
CW_MODES,
DATA_MODES,
MODE_ALIASES,
PHONE_MODES,
UNKNOWN_BAND,
)
from core.data_store import DATA_STORE from core.data_store import DATA_STORE
from data.callsign import Callsign from core.enums import MODE_ALIASES, Continent, Mode, ModeType
from data.callsign import Callsign, LocationSourceForCallsign
logger = logging.getLogger(__name__) logger = logging.getLogger(__name__)
@@ -26,28 +20,40 @@ def safe_json_dumps(obj):
return simplejson.dumps(obj, ensure_ascii=False, ignore_nan=True, default=lambda o: o.__dict__) return simplejson.dumps(obj, ensure_ascii=False, ignore_nan=True, default=lambda o: o.__dict__)
def infer_mode_from_comment(comment): def infer_mode_from_comment(comment: str) -> Mode | None:
"""Infer a mode from the comment""" """Infer a mode from the comment"""
for mode in ALL_MODES: if not comment:
if mode in comment.upper(): return None
for mode in Mode:
if re.search(r"(^|\W)" + mode + r"($|\W)", comment, re.IGNORECASE):
return mode return mode
for mode in MODE_ALIASES: for alias in MODE_ALIASES:
if mode in comment.upper(): if re.search(r"(^|\W)" + alias + r"($|\W)", comment, re.IGNORECASE):
return MODE_ALIASES[mode] return Mode(MODE_ALIASES[alias])
return None return None
def infer_mode_type_from_mode(mode): def infer_mode_type_from_mode(mode: str) -> ModeType | None:
"""Infer a "mode family" from a mode.""" """Infer a "mode family" from a mode ."""
if mode.upper() in CW_MODES: if not mode:
return "CW" return None
elif mode.upper() in PHONE_MODES:
return "PHONE" if mode in MODE_ALIASES:
elif mode.upper() in DATA_MODES: mode = MODE_ALIASES[mode]
return "DATA"
else: try:
mode = Mode(mode.upper())
if mode.is_cw:
return ModeType.CW
if mode.is_phone:
return ModeType.PHONE
return ModeType.DATA
except ValueError:
if mode.upper() != "OTHER" and mode != "?": if mode.upper() != "OTHER" and mode != "?":
logger.warning(f"Found an unrecognised mode: {mode}. Developer should categorise this.") logger.warning(f"Found an unrecognised mode: {mode}. Developer should categorise this.")
return None return None
@@ -70,7 +76,7 @@ def infer_mode_from_frequency(freq):
mode = freq_to_band(khz)["mode"] mode = freq_to_band(khz)["mode"]
# Some additional common digimode ranges in addition to what the 3rd-party freq_to_band function returns. # Some additional common digimode ranges in addition to what the 3rd-party freq_to_band function returns.
# This is mostly here just because freq_to_band is very specific about things like FT8 frequencies, and e.g. # This is mostly here just because freq_to_band is very specific about things like FT8 frequencies, and e.g.
# a spot at 7074.5 kHz will be indicated as LSB, even though it's clearly in the FT8 range. Future updates # a spot at 7074.5 kHz will be indicated as SSB, even though it's clearly in the FT8 range. Future updates
# might include other common digimode centres of activity here, but this achieves the main goal of keeping # might include other common digimode centres of activity here, but this achieves the main goal of keeping
# large numbers of clearly-FT* spots off the list of people filtering out digimodes. # large numbers of clearly-FT* spots off the list of people filtering out digimodes.
if ( if (
@@ -93,7 +99,16 @@ def infer_mode_from_frequency(freq):
or (28180 <= khz < 28183) or (28180 <= khz < 28183)
): ):
mode = "FT4" mode = "FT4"
return mode
if not mode:
return None
mode = mode.upper()
if mode in MODE_ALIASES:
mode = MODE_ALIASES[mode]
return Mode(mode)
except KeyError: except KeyError:
return None return None
@@ -115,7 +130,7 @@ def get_callsign_object_from_pyhamtools_callinfo(callsign, callinfo):
country = data.get("country", None) country = data.get("country", None)
dxcc_id = data.get("adif", None) dxcc_id = data.get("adif", None)
continent = data.get("continent", None) continent = Continent(data["continent"]) if "continent" in data else None
cq_zone = data.get("cqz", None) cq_zone = data.get("cqz", None)
itu_zone = data.get("ituz", None) itu_zone = data.get("ituz", None)
lat = float(data["latitude"]) if "latitude" in data else None lat = float(data["latitude"]) if "latitude" in data else None
@@ -135,7 +150,7 @@ def get_callsign_object_from_pyhamtools_callinfo(callsign, callinfo):
latitude=lat, latitude=lat,
longitude=lon, longitude=lon,
grid=grid, grid=grid,
location_source="DXCC", location_source=LocationSourceForCallsign.DXCC,
) )
except (KeyError, ValueError): except (KeyError, ValueError):
+48 -14
View File
@@ -1,12 +1,13 @@
import hashlib import hashlib
import json import json
import logging import logging
from dataclasses import dataclass from dataclasses import dataclass, field
from datetime import datetime, timedelta from datetime import datetime, timedelta
import pytz import pytz
from core.call_lookup_helper import get_call_info from core.call_lookup_helper import get_call_info
from core.enums import AlertType, Continent
from core.sig_lookup_helper import populate_missing_sig_ref_info from core.sig_lookup_helper import populate_missing_sig_ref_info
from core.utils import get_flag_for_dxcc from core.utils import get_flag_for_dxcc
@@ -19,6 +20,9 @@ class Alert:
# Unique identifier for the alert # Unique identifier for the alert
id: str | None = None id: str | None = None
# DX (alerting) operator info
# Callsigns of the operators that has been alerted # Callsigns of the operators that has been alerted
dx_calls: list | None = None dx_calls: list | None = None
# Names of the operators that has been alerted # Names of the operators that has been alerted
@@ -28,13 +32,16 @@ class Alert:
# Country flag of the DX operator # Country flag of the DX operator
dx_flag: str | None = None dx_flag: str | None = None
# Continent of the DX operator # Continent of the DX operator
dx_continent: str | None = None dx_continent: Continent | None = None
# DXCC ID of the DX operator # DXCC ID of the DX operator
dx_dxcc_id: int | None = None dx_dxcc_id: int | None = None
# CQ zone of the DX operator # CQ zone of the DX operator
dx_cq_zone: int | None = None dx_cq_zone: int | None = None
# ITU zone of the DX operator # ITU zone of the DX operator
dx_itu_zone: int | None = None dx_itu_zone: int | None = None
# General alert info
# Intended frequencies & modes of operation. Essentially just a different kind of comment field. # Intended frequencies & modes of operation. Essentially just a different kind of comment field.
freqs_modes: str | None = None freqs_modes: str | None = None
# Start time of the activation, UTC seconds since UNIX epoch # Start time of the activation, UTC seconds since UNIX epoch
@@ -45,25 +52,41 @@ class Alert:
end_time: float | None = None end_time: float | None = None
# End time of the activation of the alert, ISO 8601 # End time of the activation of the alert, ISO 8601
end_time_iso: str | None = None end_time_iso: str | None = None
# Comment made by the alerter, if any
comment: str | None = None
# The type of alert this is: xOTA, DXpedition, or Contest.
alert_type: AlertType | None = None
# A URL link to more information, if any
url: str | None = None
# Special Interest Group info
# Special Interest Group (SIG), e.g. outdoor activity programme such as POTA
sig: str | None = None
# SIG references. We allow multiple here for e.g. n-fer activations, unlike ADIF SIG_INFO
sig_refs: list = field(default_factory=list)
# Timing info
# Time that this software received the alert, UTC seconds since UNIX epoch. This is used with the "since_received" # Time that this software received the alert, UTC seconds since UNIX epoch. This is used with the "since_received"
# call to our API to receive all data that is new to us, even if by a quirk of the API it might be older than the # call to our API to receive all data that is new to us, even if by a quirk of the API it might be older than the
# list time the client polled the API. # list time the client polled the API.
received_time: float | None = None received_time: float | None = None
# Time that this software received the alert, ISO 8601 # Time that this software received the alert, ISO 8601
received_time_iso: str | None = None received_time_iso: str | None = None
# Comment made by the alerter, if any
comment: str | None = None # Source info
# Special Interest Group (SIG), e.g. outdoor activity programme such as POTA
sig: str | None = None
# SIG references. We allow multiple here for e.g. n-fer activations, unlike ADIF SIG_INFO
sig_refs: list | None = None
# Whether this alert is for a DXpedition, as opposed to e.g. an xOTA programme.
is_dxpedition: bool = False
# Where we got the alert from, e.g. "POTA", "SOTA"... # Where we got the alert from, e.g. "POTA", "SOTA"...
source: str | None = None source: str | None = None
# The ID the source gave it, if any. # The ID the source gave it, if any.
source_id: str | None = None source_id: str | None = None
# Display info
# Icon to use when displaying this alert in the web UI. Chosen from the Font Awesome set.
icon: str | None = None
def infer_missing(self, credentials=None): def infer_missing(self, credentials=None):
"""Infer missing parameters where possible""" """Infer missing parameters where possible"""
@@ -91,8 +114,8 @@ class Alert:
call_info = get_call_info(self.dx_calls[0], credentials) call_info = get_call_info(self.dx_calls[0], credentials)
if self.dx_calls and self.dx_calls[0] and not self.dx_country: if self.dx_calls and self.dx_calls[0] and not self.dx_country:
self.dx_country = call_info.country self.dx_country = call_info.country
if self.dx_calls and self.dx_calls[0] and not self.dx_continent: if self.dx_calls and self.dx_calls[0] and call_info.continent and not self.dx_continent:
self.dx_continent = call_info.continent self.dx_continent = Continent(call_info.continent)
if self.dx_calls and self.dx_calls[0] and not self.dx_cq_zone: if self.dx_calls and self.dx_calls[0] and not self.dx_cq_zone:
self.dx_cq_zone = call_info.cq_zone self.dx_cq_zone = call_info.cq_zone
if self.dx_calls and self.dx_calls[0] and not self.dx_itu_zone: if self.dx_calls and self.dx_calls[0] and not self.dx_itu_zone:
@@ -105,13 +128,13 @@ class Alert:
# Fetch SIG data. In case a particular API doesn't provide a full set of name, lat, lon & grid for a reference # Fetch SIG data. In case a particular API doesn't provide a full set of name, lat, lon & grid for a reference
# in its initial call, we use this code to populate the rest of the data. This includes working out grid refs # in its initial call, we use this code to populate the rest of the data. This includes working out grid refs
# from WAB and WAI, which count as a SIG even though there's no real lookup, just maths # 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: if self.sig_refs:
for sig_ref in self.sig_refs: for sig_ref in self.sig_refs:
populate_missing_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 # 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. # and apply it to the whole spot.
if self.sig_refs and len(self.sig_refs) > 0 and self.sig_refs[0] and not self.sig: if self.sig_refs and self.sig_refs[0] and not self.sig:
self.sig = self.sig_refs[0].sig self.sig = self.sig_refs[0].sig
# Create an ID based on the source and source ID if possible, as these guaranee uniqueness. If there is no # Create an ID based on the source and source ID if possible, as these guaranee uniqueness. If there is no
@@ -129,6 +152,17 @@ class Alert:
if self.dx_calls and not self.dx_names: if self.dx_calls and not self.dx_names:
self.dx_names = [get_call_info(c, credentials).name for c in self.dx_calls] self.dx_names = [get_call_info(c, credentials).name for c in self.dx_calls]
# Icon for the spot should be the icon of the first SIG ref if present, otherwise a radio tower
self.icon = "fa-tower-cell"
if self.alert_type == AlertType.DXPEDITION:
self.icon = "fa-globe-africa"
elif self.alert_type == AlertType.CONTEST:
self.icon = "fa-trophy"
elif self.alert_type == AlertType.SATELLITE:
self.icon = "fa-satellite"
elif self.sig_refs and self.sig_refs[0].icon:
self.icon = self.sig_refs[0].icon
except Exception: except Exception:
logger.exception("Exception while inferring missing data from spot") logger.exception("Exception while inferring missing data from spot")
+5 -3
View File
@@ -1,5 +1,7 @@
from dataclasses import dataclass from dataclasses import dataclass
from core.enums import Continent, LocationSourceForCallsign
@dataclass @dataclass
class Callsign: class Callsign:
@@ -28,15 +30,15 @@ class Callsign:
# Country in which the callsign indicates they are operating # Country in which the callsign indicates they are operating
country: str | None = None country: str | None = None
# Continent in which the callsign indicates they are operating # Continent in which the callsign indicates they are operating
continent: str | None = None continent: Continent | None = None
# DXCC ID in which the callsign indicates they are operating # DXCC ID in which the callsign indicates they are operating
dxcc_id: int | None = None dxcc_id: int | None = None
# CQ zone in which the callsign indicates they are operating # CQ zone in which the callsign indicates they are operating
cq_zone: int | None = None cq_zone: int | None = None
# ITU zone in which the callsign indicates they are operating # ITU zone in which the callsign indicates they are operating
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
location_source: str | None = None location_source: LocationSourceForCallsign | None = None
def fully_populated(self): def fully_populated(self):
"""Utility method to indicate that the callsign data is fully populated. Multiple providers can return data for """Utility method to indicate that the callsign data is fully populated. Multiple providers can return data for
+18
View File
@@ -1,5 +1,7 @@
from dataclasses import dataclass, field from dataclasses import dataclass, field
from core.enums import SIGRefType, SIGType
@dataclass @dataclass
class SIG: class SIG:
@@ -15,7 +17,23 @@ class SIG:
name: str name: str
# Description, e.g. "Towers on the Air" # Description, e.g. "Towers on the Air"
description: str description: str
# Type, either Worldwide, Regional or Event. Used for sorting in the web UI.
sig_type: SIGType
# Identifies that the SIG's reference ID structure defined by its regex is unique across all programmes and
# anything else we expect a user to put in a spot comment, and therefore we can pull references out of
# spot comments without also needing to see the SIG name first. For example, "OHFF-1234" or "B/G-1234" are
# obviously WWFF and WWBOTA, nothing else looks like those. But "SZ09" could be WAB or Tiles, "GB1234" could
# conceivably be POTA or ILLW, etc.
refs_globally_unique: bool
# SIG names as they might appear in cluster spot comments, e.g. ["TOTA"] # SIG names as they might appear in cluster spot comments, e.g. ["TOTA"]
comment_names: list[str] = field(default_factory=list) comment_names: list[str] = field(default_factory=list)
# Reference type, what gets activated e.g. Park, Summit. May be None if the SIG is for multiple types of things, in
# which case the spot data will have to provide this instead.
ref_type: SIGRefType | None = None
# Regex matcher for references, e.g. for POTA r"[A-Z]{2}\-\d+". # Regex matcher for references, e.g. for POTA r"[A-Z]{2}\-\d+".
ref_regex: str | None = None ref_regex: str | None = None
# Icon to use in the UI when referencing this SIG. Chosen from the Font Awesome set.
icon: str | None = None
# Emoji flag for the country or region where this SIG is relevant, if any. If None, this implies the SIG is in
# worldwide usage.
region_flag: str | None = None
+7 -3
View File
@@ -1,21 +1,25 @@
from dataclasses import dataclass from dataclasses import dataclass
from core.enums import SIGRefType
@dataclass @dataclass
class SIGRef: class SIGRef:
"""Data class that defines a Special Interest Group "info" or reference. As well as the basic reference ID we include a """Data class that defines a Special Interest Group "info" or reference. As well as the basic reference ID we include a
name and a lookup URL.""" name and a lookup URL."""
# Reference ID, e.g. "GB-0001".
id: str
# SIG that this reference is in, e.g. "POTA". # SIG that this reference is in, e.g. "POTA".
sig: str sig: str
# Reference ID, e.g. "GB-0001".
id: str | None = None
# Name of the reference, e.g. "Null Country Park", if known. # Name of the reference, e.g. "Null Country Park", if known.
name: str | None = None name: str | None = None
# Type of the reference, e.g. "Park", if known. # Type of the reference, e.g. "Park", if known.
ref_type: str | None = None ref_type: SIGRefType | None = None
# URL to look up more information about the reference, if known. # URL to look up more information about the reference, if known.
url: str | None = None url: str | None = None
# Icon to use for the reference, derived from the SIG. Chosen from the Font Awesome set.
icon: str | None = None
# Latitude of the reference, in degrees, if known. # Latitude of the reference, in degrees, if known.
latitude: float | None = None latitude: float | None = None
# Longitude of the reference, in degrees, if known. # Longitude of the reference, in degrees, if known.
+82 -43
View File
@@ -2,7 +2,7 @@ import hashlib
import json import json
import logging import logging
import re import re
from dataclasses import dataclass from dataclasses import dataclass, field
from datetime import datetime, timedelta from datetime import datetime, timedelta
from math import isnan from math import isnan
@@ -11,7 +11,9 @@ from pyhamtools.locator import latlong_to_locator, locator_to_latlong
from core.call_lookup_helper import get_call_info from core.call_lookup_helper import get_call_info
from core.config import MAX_SPOT_AGE from core.config import MAX_SPOT_AGE
from core.constants import MODE_ALIASES, PROPAGATION_MODES from core.constants import PROPAGATION_MODES, SIGS
from core.data_store import DATA_STORE
from core.enums import Continent, LocationSourceForSpot, Mode, ModeSource, ModeType
from core.geo_utils import lat_lon_to_cq_zone, lat_lon_to_itu_zone from core.geo_utils import lat_lon_to_cq_zone, lat_lon_to_itu_zone
from core.sig_lookup_helper import populate_missing_sig_ref_info from core.sig_lookup_helper import populate_missing_sig_ref_info
from core.sig_utils import ( from core.sig_utils import (
@@ -52,7 +54,7 @@ class Spot:
# Country flag of the DX operator # Country flag of the DX operator
dx_flag: str | None = None dx_flag: str | None = None
# Continent of the DX operator # Continent of the DX operator
dx_continent: str | None = None dx_continent: Continent | None = None
# DXCC ID of the DX operator # DXCC ID of the DX operator
dx_dxcc_id: int | None = None dx_dxcc_id: int | None = None
# CQ zone of the DX operator # CQ zone of the DX operator
@@ -68,9 +70,8 @@ class Spot:
# lookup # lookup
dx_latitude: float | None = None dx_latitude: float | None = None
dx_longitude: float | None = None dx_longitude: float | None = None
# DX Location source. Indicates how accurate the location might be. Values: "SPOT", "GRID", "SIG REF LOOKUP", # DX Location source. Indicates how accurate the location might be.
# "HOME QTH", "DXCC", "NONE" dx_location_source: LocationSourceForSpot | None = None
dx_location_source: str = "NONE"
# DX Location good. Indicates that the software thinks the location data is good enough to plot on a map. This is # DX Location good. Indicates that the software thinks the location data is good enough to plot on a map. This is
# true if the location source is "SPOT", "SIG REF LOOKUP" or "GRID", or if the location source is "HOME QTH" and the # true if the location source is "SPOT", "SIG REF LOOKUP" or "GRID", or if the location source is "HOME QTH" and the
# DX callsign doesn't have a suffix like /P. # DX callsign doesn't have a suffix like /P.
@@ -85,7 +86,7 @@ class Spot:
# Country flag of the spotter # Country flag of the spotter
de_flag: str | None = None de_flag: str | None = None
# Continent of the spotter # Continent of the spotter
de_continent: str | None = None de_continent: Continent | None = None
# DXCC ID of the spotter # DXCC ID of the spotter
de_dxcc_id: int | None = None de_dxcc_id: int | None = None
# If this is an APRS/Packet/etc spot, what SSID was the spotter/receiver using? # If this is an APRS/Packet/etc spot, what SSID was the spotter/receiver using?
@@ -103,11 +104,11 @@ class Spot:
# General QSO info # General QSO info
# Reported mode, such as SSB, PHONE, CW, FT8... # Reported mode, such as SSB, PHONE, CW, FT8...
mode: str | None = None mode: Mode | None = None
# Inferred mode "family". One of "CW", "PHONE" or "DIGI". # Inferred mode "family".
mode_type: str | None = None mode_type: ModeType | None = None
# Source of the mode information. "SPOT", "COMMENT", "BANDPLAN" or "NONE" # Source of the mode information.
mode_source: str = "NONE" mode_source: ModeSource | None = None
# Frequency, in Hz # Frequency, in Hz
freq: float | None = None freq: float | None = None
# Band, defined by the frequency, e.g. "40m" or "70cm" # Band, defined by the frequency, e.g. "40m" or "70cm"
@@ -124,7 +125,7 @@ class Spot:
# Special Interest Group (SIG), e.g. outdoor activity programme such as POTA # Special Interest Group (SIG), e.g. outdoor activity programme such as POTA
sig: str | None = None sig: str | None = None
# SIG references. We allow multiple here for e.g. n-fer activations, unlike ADIF SIG_INFO # SIG references. We allow multiple here for e.g. n-fer activations, unlike ADIF SIG_INFO
sig_refs: list | None = None sig_refs: list = field(default_factory=list)
# Timing info # Timing info
@@ -146,6 +147,11 @@ class Spot:
# The ID the source gave it, if any. # The ID the source gave it, if any.
source_id: str | None = None source_id: str | None = None
# Display info
# Icon to use when displaying this spot in the web UI. Chosen from the Font Awesome set.
icon: str | None = None
def __post_init__(self): def __post_init__(self):
"""Normalise fields that don't survive a plain dict to Spot conversion. This is used in the "add spot" API """Normalise fields that don't survive a plain dict to Spot conversion. This is used in the "add spot" API
endpoint where the client is submitting JSON, and we want to recreate a full Spot object, including nested endpoint where the client is submitting JSON, and we want to recreate a full Spot object, including nested
@@ -184,8 +190,8 @@ class Spot:
dx_call_info = get_call_info(self.dx_call, credentials) dx_call_info = get_call_info(self.dx_call, credentials)
if self.dx_call and not self.dx_country: if self.dx_call and not self.dx_country:
self.dx_country = dx_call_info.country self.dx_country = dx_call_info.country
if self.dx_call and not self.dx_continent: if self.dx_call and dx_call_info.continent and not self.dx_continent:
self.dx_continent = dx_call_info.continent self.dx_continent = Continent(dx_call_info.continent)
if self.dx_call and not self.dx_dxcc_id: if self.dx_call and not self.dx_dxcc_id:
self.dx_dxcc_id = dx_call_info.dxcc_id self.dx_dxcc_id = dx_call_info.dxcc_id
if self.dx_dxcc_id and not self.dx_flag: if self.dx_dxcc_id and not self.dx_flag:
@@ -222,8 +228,8 @@ class Spot:
): ):
if not self.de_country: if not self.de_country:
self.de_country = de_call_info.country self.de_country = de_call_info.country
if not self.de_continent: if de_call_info.continent and not self.de_continent:
self.de_continent = de_call_info.continent self.de_continent = Continent(de_call_info.continent)
if not self.de_dxcc_id: if not self.de_dxcc_id:
self.de_dxcc_id = de_call_info.dxcc_id self.de_dxcc_id = de_call_info.dxcc_id
if self.de_dxcc_id and not self.de_flag: if self.de_dxcc_id and not self.de_flag:
@@ -240,17 +246,13 @@ class Spot:
# Mode from comments or bandplan # Mode from comments or bandplan
if self.mode: if self.mode:
self.mode_source = "SPOT" self.mode_source = ModeSource.SPOT
if self.comment and not self.mode: if self.comment and not self.mode:
self.mode = infer_mode_from_comment(self.comment) self.mode = infer_mode_from_comment(self.comment)
self.mode_source = "COMMENT" self.mode_source = ModeSource.COMMENT
if self.freq and not self.mode: if self.freq and not self.mode:
self.mode = infer_mode_from_frequency(self.freq) self.mode = infer_mode_from_frequency(self.freq)
self.mode_source = "BANDPLAN" self.mode_source = ModeSource.BANDPLAN
# Normalise mode if necessary.
if self.mode in MODE_ALIASES:
self.mode = MODE_ALIASES[self.mode]
# Mode type from mode # Mode type from mode
if self.mode and not self.mode_type: if self.mode and not self.mode_type:
@@ -258,19 +260,19 @@ class Spot:
# If we have a latitude or grid at this point, it can only have been provided by the spot itself # If we have a latitude or grid at this point, it can only have been provided by the spot itself
if self.dx_latitude or self.dx_grid: if self.dx_latitude or self.dx_grid:
self.dx_location_source = "SPOT" self.dx_location_source = LocationSourceForSpot.SPOT
# Set the top-level "SIG" if it is missing but we have at least one SIG ref. # Set the top-level "SIG" if it is missing but we have at least one SIG ref.
if not self.sig and self.sig_refs and len(self.sig_refs) > 0: if not self.sig and self.sig_refs:
self.sig = self.sig_refs[0].sig.upper() self.sig = self.sig_refs[0].sig.upper()
# See if we already have a SIG reference, but the comment looks like it contains more for the same SIG. This # See if we already have a SIG reference, but the comment looks like it contains more for the same SIG. This
# should catch e.g. POTA comments like "2-fer: GB-0001 GB-0002". # should catch e.g. POTA comments like "2-fer: GB-0001 GB-0002".
if self.comment and self.sig_refs and len(self.sig_refs) > 0 and self.sig_refs[0].sig: if self.comment and self.sig_refs and self.sig_refs[0].sig:
sig = self.sig_refs[0].sig.upper() sig = self.sig_refs[0].sig.upper()
regex = get_ref_regex_for_sig(sig) regex = get_ref_regex_for_sig(sig)
if regex: if regex:
all_comment_ref_matches = re.finditer(r"(^|\W)(" + regex + r")(^|\W)", self.comment, re.IGNORECASE) all_comment_ref_matches = re.finditer(r"(^|\W)(" + regex + r")($|\W)", self.comment, re.IGNORECASE)
for ref_match in all_comment_ref_matches: for ref_match in all_comment_ref_matches:
self._append_sig_ref_if_missing(SIGRef(id=ref_match.group(2).upper(), sig=sig)) self._append_sig_ref_if_missing(SIGRef(id=ref_match.group(2).upper(), sig=sig))
@@ -298,10 +300,23 @@ class Spot:
for ref_match in ref_matches: for ref_match in ref_matches:
self._append_sig_ref_if_missing(SIGRef(id=ref_match.group(3).upper(), sig=found_sig)) self._append_sig_ref_if_missing(SIGRef(id=ref_match.group(3).upper(), sig=found_sig))
# See if the comment looks like it contains any SIG references *without* the corresponding SIG name, but
# where the SIG reference is unique-looking enough that we can't confuse it with any other SIG.
if self.comment:
for sig in SIGS:
if sig.refs_globally_unique and sig.ref_regex:
ref_matches = re.finditer(r"(^|\W)(" + sig.ref_regex + r")($|\W)", self.comment, re.IGNORECASE)
for ref_match in ref_matches:
# First of all, if we haven't got a SIG for this spot set yet, now we have. This covers things
# like cluster spots where the comment is just "OHFF-1234", now we know it's WWFF.
if not self.sig:
self.sig = sig.name
self._append_sig_ref_if_missing(SIGRef(id=ref_match.group(2).upper(), sig=sig.name))
# Fetch SIG data. In case a particular API doesn't provide a full set of name, lat, lon & grid for a reference # Fetch SIG data. In case a particular API doesn't provide a full set of name, lat, lon & grid for a reference
# in its initial call, we use this code to populate the rest of the data. This includes working out grid refs # in its initial call, we use this code to populate the rest of the data. This includes working out grid refs
# from WAB and WAI, which count as a SIG even though there's no real lookup, just maths # 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: if self.sig_refs:
for sig_ref in self.sig_refs: for sig_ref in self.sig_refs:
sig_ref = populate_missing_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 the spot itself doesn't have location yet, but the SIG ref does, extract it
@@ -311,13 +326,13 @@ class Spot:
self.dx_latitude = sig_ref.latitude self.dx_latitude = sig_ref.latitude
self.dx_longitude = sig_ref.longitude self.dx_longitude = sig_ref.longitude
if self.sig == "WAB" or self.sig == "WAI" or self.sig == "Tiles": if self.sig == "WAB" or self.sig == "WAI" or self.sig == "Tiles":
self.dx_location_source = "GRID" self.dx_location_source = LocationSourceForSpot.GRID
else: else:
self.dx_location_source = "SIG REF LOOKUP" self.dx_location_source = LocationSourceForSpot.SIG_REF_LOOKUP
# If the spot itself doesn't have a SIG yet, but we have at least one SIG reference, take that reference's SIG # 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. # and apply it to the whole spot.
if self.sig_refs and len(self.sig_refs) > 0 and not self.sig: if self.sig_refs and not self.sig:
self.sig = self.sig_refs[0].sig self.sig = self.sig_refs[0].sig
# Parse "de_grid<prop_mode>dx_grid" structures from the comment, e.g. "JN61ES(ES)JM56XT" or "JO02GQ<>KN17LG". # Parse "de_grid<prop_mode>dx_grid" structures from the comment, e.g. "JN61ES(ES)JM56XT" or "JO02GQ<>KN17LG".
@@ -334,7 +349,7 @@ class Spot:
self.de_grid = grid_mode_grid_match.group(1).upper() self.de_grid = grid_mode_grid_match.group(1).upper()
if not self.dx_grid: if not self.dx_grid:
self.dx_grid = grid_mode_grid_match.group(4).upper() self.dx_grid = grid_mode_grid_match.group(4).upper()
self.dx_location_source = "GRID" self.dx_location_source = LocationSourceForSpot.GRID
# And extract propagation mode (group 2 for <...>, group 3 for (...)): # And extract propagation mode (group 2 for <...>, group 3 for (...)):
mode_tag = (grid_mode_grid_match.group(2) or grid_mode_grid_match.group(3) or "").upper() mode_tag = (grid_mode_grid_match.group(2) or grid_mode_grid_match.group(3) or "").upper()
@@ -345,6 +360,18 @@ class Spot:
self.propagation_mode = mode_tag self.propagation_mode = mode_tag
logger.info(f"Seen a new propagation mode tag not yet in the system: {mode_tag}") logger.info(f"Seen a new propagation mode tag not yet in the system: {mode_tag}")
# Set SIGs based on propagation mode
if self.propagation_mode == "Satellite":
if not self.sig:
self.sig = "AMSAT"
if not any(sig_ref.sig == "AMSAT" for sig_ref in self.sig_refs):
self.sig_refs.append(SIGRef(sig="AMSAT"))
if self.propagation_mode == "Earth-Moon-Earth":
if not self.sig:
self.sig = "EME"
if not any(sig_ref.sig == "EME" for sig_ref in self.sig_refs):
self.sig_refs.append(SIGRef(sig="EME"))
# Parse "de_grid -> dx_grid" structures from the comment # Parse "de_grid -> dx_grid" structures from the comment
if self.comment: if self.comment:
grid_mode_grid_match = re.search( grid_mode_grid_match = re.search(
@@ -355,7 +382,7 @@ class Spot:
# regex matches, so extract grids: # regex matches, so extract grids:
if not self.dx_grid: if not self.dx_grid:
self.dx_grid = grid_mode_grid_match.group(1).upper() self.dx_grid = grid_mode_grid_match.group(1).upper()
self.dx_location_source = "GRID" self.dx_location_source = LocationSourceForSpot.GRID
if not self.de_grid: if not self.de_grid:
self.de_grid = grid_mode_grid_match.group(2).upper() self.de_grid = grid_mode_grid_match.group(2).upper()
@@ -401,7 +428,7 @@ class Spot:
# Determine a "QTH" string. If we have a SIG ref, pick the first one and turn it into a suitable string, # 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. # otherwise see what they have set on an online lookup service.
if self.sig_refs and len(self.sig_refs) > 0: if self.sig_refs:
qth = self.sig_refs[0].id qth = self.sig_refs[0].id
if self.sig_refs[0].name: if self.sig_refs[0].name:
qth += f" {self.sig_refs[0].name}" qth += f" {self.sig_refs[0].name}"
@@ -421,16 +448,25 @@ class Spot:
elif self.dx_call: elif self.dx_call:
self.dx_itu_zone = dx_call_info.itu_zone self.dx_itu_zone = dx_call_info.itu_zone
# DXCC lookup from callsign if nothing else has provided it
if self.dx_call and not self.dx_dxcc_id:
for regex, entity_code in DATA_STORE.dxcc_lookup_by_call_regex:
if regex.pattern and regex.match(self.dx_call):
self.dx_dxcc_id = entity_code
break
if self.dx_dxcc_id and not self.dx_flag:
self.dx_flag = get_flag_for_dxcc(self.dx_dxcc_id)
# DX Location is "good" if it is from a spot, or from QRZ if the callsign doesn't contain a slash, so the operator # 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. # is likely at home.
self.dx_location_good = bool( self.dx_location_good = bool(
self.dx_latitude self.dx_latitude
and self.dx_longitude and self.dx_longitude
and ( and (
self.dx_location_source == "SPOT" self.dx_location_source == LocationSourceForSpot.SPOT
or self.dx_location_source == "SIG REF LOOKUP" or self.dx_location_source == LocationSourceForSpot.SIG_REF_LOOKUP
or self.dx_location_source == "GRID" or self.dx_location_source == LocationSourceForSpot.GRID
or (self.dx_location_source == "HOME QTH" and "/" not in (self.dx_call or "")) or (self.dx_location_source == LocationSourceForSpot.HOME_QTH and "/" not in (self.dx_call or ""))
) )
) )
@@ -446,6 +482,11 @@ class Spot:
self.de_longitude = de_call_info.longitude self.de_longitude = de_call_info.longitude
self.de_grid = de_call_info.grid self.de_grid = de_call_info.grid
# Icon for the spot should be the icon of the first SIG ref if present, otherwise a radio tower
self.icon = "fa-tower-cell"
if self.sig_refs and self.sig_refs[0].icon:
self.icon = self.sig_refs[0].icon
except Exception: except Exception:
logger.exception("Exception while inferring missing data from spot") logger.exception("Exception while inferring missing data from spot")
@@ -457,16 +498,14 @@ class Spot:
def _append_sig_ref_if_missing(self, new_sig_ref): def _append_sig_ref_if_missing(self, new_sig_ref):
"""Append a sig_ref to the list, so long as it's not already there.""" """Append a sig_ref to the list, so long as it's not already there."""
sig_refs = self.sig_refs or []
self.sig_refs = sig_refs
new_sig_ref.id = new_sig_ref.id.strip().upper() new_sig_ref.id = new_sig_ref.id.strip().upper()
new_sig_ref.sig = new_sig_ref.sig.strip().upper() new_sig_ref.sig = new_sig_ref.sig.strip().upper()
if new_sig_ref.id == "": if new_sig_ref.id == "":
return return
for sig_ref in sig_refs: for sig_ref in self.sig_refs:
if sig_ref.id == new_sig_ref.id and sig_ref.sig == new_sig_ref.sig: if sig_ref.id == new_sig_ref.id and sig_ref.sig == new_sig_ref.sig:
return return
sig_refs.append(new_sig_ref) self.sig_refs.append(new_sig_ref)
def expired(self): def expired(self):
"""Decide if this spot has expired (in which case it should not be added to the system in the first place, and not """Decide if this spot has expired (in which case it should not be added to the system in the first place, and not
+1 -10
View File
@@ -1,12 +1,9 @@
AA343,"Almaty, Kazakhstan" AA343,"Almaty, Kazakhstan"
AL945,"Alpena, United States" AL945,"Alpena, United States"
AT138,"Athens, Greece" AT138,"Athens, Greece"
AU930,"Austin, United States"
BR52P,"Brisbane, Australia"
BVJ03,"Boa Vista, Brazil" BVJ03,"Boa Vista, Brazil"
CAJ2M,"Cachoeira Paulista, Brazil" CAJ2M,"Cachoeira Paulista, Brazil"
CB53N,"Canberra, Australia" CB53N,"Canberra, Australia"
CGK21,"Campo Grande, Brazil"
DB049,"Dourbes, Belgium" DB049,"Dourbes, Belgium"
DW41K,"Darwin, Australia" DW41K,"Darwin, Australia"
EA036,"El Arenosillo, Spain" EA036,"El Arenosillo, Spain"
@@ -18,24 +15,18 @@ GM037,"Gibilmanna, Italy"
GR13L,"Grahamstown, South Africa" GR13L,"Grahamstown, South Africa"
HE13N,"Hermanus, South Africa" HE13N,"Hermanus, South Africa"
HO54K,"Hobart, Australia" HO54K,"Hobart, Australia"
IC437,"I-Cheon, South Korea"
IF843,"Idaho National Laboratory, United States" IF843,"Idaho National Laboratory, United States"
JI91J,"Jicamarca, Peru" JI91J,"Jicamarca, Peru"
JR055,"Juliusruh, Germany" JR055,"Juliusruh, Germany"
LAA38,"Lajes Terceira Island, Portugal" LAA38,"Lajes Terceira Island, Portugal"
LL721,"Lualualei, United States" LL721,"Lualualei, United States"
LM42B,"Learmonth, Australia"
LV12P,"Louisvale, South Africa"
MHJ45,"Millstone Hill, United States" MHJ45,"Millstone Hill, United States"
ML10L,"Malindi, Kenya"
NI135,"Nicosia, Cyprus" NI135,"Nicosia, Cyprus"
NI63_,"Norfolk, Australia" NI63_,"Norfolk, Australia"
PA836,"Portt Arguello, United States" PA836,"Port Arguello, United States"
PE43K,"Perth, Australia" PE43K,"Perth, Australia"
PF765,"Poker Flat, United States"
PQ052,"Pruhonice, Czechia" PQ052,"Pruhonice, Czechia"
RO041,"Rome, Italy" RO041,"Rome, Italy"
SAA0K,"Saoluis, Brazil"
SO148,"Sopron, Hungary" SO148,"Sopron, Hungary"
TR169,"Tromso, Norway" TR169,"Tromso, Norway"
TV51R,"Townsville, Australia" TV51R,"Townsville, Australia"
1 AA343 Almaty, Kazakhstan
2 AL945 Alpena, United States
3 AT138 Athens, Greece
AU930 Austin, United States
BR52P Brisbane, Australia
4 BVJ03 Boa Vista, Brazil
5 CAJ2M Cachoeira Paulista, Brazil
6 CB53N Canberra, Australia
CGK21 Campo Grande, Brazil
7 DB049 Dourbes, Belgium
8 DW41K Darwin, Australia
9 EA036 El Arenosillo, Spain
15 GR13L Grahamstown, South Africa
16 HE13N Hermanus, South Africa
17 HO54K Hobart, Australia
IC437 I-Cheon, South Korea
18 IF843 Idaho National Laboratory, United States
19 JI91J Jicamarca, Peru
20 JR055 Juliusruh, Germany
21 LAA38 Lajes Terceira Island, Portugal
22 LL721 Lualualei, United States
LM42B Learmonth, Australia
LV12P Louisvale, South Africa
23 MHJ45 Millstone Hill, United States
ML10L Malindi, Kenya
24 NI135 Nicosia, Cyprus
25 NI63_ Norfolk, Australia
26 PA836 Portt Arguello, United States Port Arguello, United States
27 PE43K Perth, Australia
PF765 Poker Flat, United States
28 PQ052 Pruhonice, Czechia
29 RO041 Rome, Italy
SAA0K Saoluis, Brazil
30 SO148 Sopron, Hungary
31 TR169 Tromso, Norway
32 TV51R Townsville, Australia
+13 -11
View File
@@ -13,6 +13,7 @@ services:
restart: unless-stopped restart: unless-stopped
ports: ports:
- "8080:8080" - "8080:8080"
- "7373:7373" # For telnet if required
volumes: volumes:
- ./config.yml:/app/config.yml - ./config.yml:/app/config.yml
- ./cache:/app/cache - ./cache:/app/cache
@@ -23,15 +24,16 @@ You can replace `#main` with any other branch or tag reference, for example `#1.
Save the file. You will still need to create a copy of `config-example.yml` and name it `config.yml`, though with the 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 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). 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 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. the `-d` flag.
### nginx Reverse Proxy with Docker ### 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 In a containerised setup, it's typical to run an nginx reverse proxy in one container, alongside certbot for renewal of
of HTTPS certificates, and then applications like Spothole in a separate container. In this case, there are a couple 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 variations of the docker compose file above, and the nginx reverse proxy configuration covered [here](./nginx.md), that
you will want to make. you will want to make.
@@ -60,8 +62,8 @@ networks:
``` ```
In your nginx site configuration, you'll want to refer to the Spothole container directly, and drop the block that 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 allows nginx to access static files directly, as these will be inaccessible in another container. So you may end up with
with something like: something like:
```nginx ```nginx
server { server {
@@ -146,13 +148,13 @@ server {
``` ```
If desired, you could even change the port on which Spothole runs from 8080 to a plain 80, in which case your 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 `proxy_pass` statements could drop the `:8080` suffix. Since Spothole is in a container, it can serve HTTP on port 80 if
if desired, because it doesn't conflict with the host system. desired, because it doesn't conflict with the host system.
### Restoring the static files bypass ### Restoring the static files bypass
If you would still like to bypass Spothole's web server for the static files, and serve them with nginx, you can If you would still like to bypass Spothole's web server for the static files, and serve them with nginx, you can do. The
do. The easiest way is to run another nginx container to serve the files, so your Spothole `compose.yaml` becomes: easiest way is to run another nginx container to serve the files, so your Spothole `compose.yaml` becomes:
```yaml ```yaml
services: services:
@@ -183,8 +185,8 @@ networks:
external: true external: true
``` ```
Then you can re-add the block that handles the `/static` path in your nginx reverse proxy config, but this time Then you can re-add the block that handles the `/static` path in your nginx reverse proxy config, but this time point it
point it at the new container rather than at a filesystem path: at the new container rather than at a filesystem path:
```nginx ```nginx
# Load static assets from the spothole-static-nginx container # Load static assets from the spothole-static-nginx container
+6 -3
View File
@@ -16,9 +16,12 @@ To navigate your way around the source code, this list may help.
* `/providers/solarconditions` - Classes providing solar and propagation 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 * `/providers/staticdata` - Classes providing static lookup data by accessing bundled data files or the APIs of other
services services
* `/providers/callsign` - Classes providing callsign 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 * `/providers/sigrefdata` - Classes providing SIG reference lookup data by accessing bundled data files or the APIs of
other services other services
* `/server` - Classes for running Spothole's own web server * `/webserver` - Classes for running Spothole's own web server
* `/telnetserver` - Classes for running Spothole's telnet server
* `spothole.py` - Main application script * `spothole.py` - Main application script
*Templates* *Templates*
@@ -48,8 +51,8 @@ To navigate your way around the source code, this list may help.
### Extending the server ### Extending the server
Spothole is designed to be easily extensible. If you want to write your own spot provider, for example, simply add a 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 ( 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.) (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 " 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. HTTPSpotProvider" where some of the work is done for you.
+10 -15
View File
@@ -2,8 +2,8 @@
Web servers generally serve their pages from port 80. However, it's best not to serve Spothole's web interface directly 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 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 site, since Spothole itself doesn't directly support acting as an HTTPS server. The normal solution to this is to use a
a "reverse proxy" setup, where a general web server handles HTTP and HTTP requests (to port 80 & 443 respectively), then "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 passes on the request to the back-end application (in this case Spothole). nginx is a common choice for this general web
server. server.
@@ -89,19 +89,14 @@ server {
``` ```
One further change you might want to make to the file above is the `add_header Access-Control-Allow-Origin` statements. 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 These are what's used on my own Spothole server to make sure that other third-party web-based software can get the data
my own Spothole server to make sure that other third-party web-based software can get the data from my instance, and from my instance, and applies to any endpoint underneath `/api`. If you want *your* Spothole instance to be set up the
applies to any endpoint underneath `/api`. If you want same way, so that others can write software in JavaScript that can access it, leave this intact. But if you want your
*your* Spothole instance to be set up the same way, so that others can write software in JavaScript that can access it, Spothole instance to only be usable by scripts running on the web server you write, you can remove these lines. (Note
leave this intact. But if you want your Spothole instance to only be usable by scripts running on the web server you that this doesn't stop other people writing *non-web-based* software that accesses your Spothole API&mdash;the
write, enforcement of cross-origin headers only happens within the user's browser. If you need to lock your instance down so
you can remove these lines. (Note that this doesn't stop other people writing *non-web-based* software that accesses that no-one else can access it with *any* software, that's an aspect of nginx or firewall config that you will need to
your find help with elsewhere.)
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: Now, make a symbolic link to enable the site:
+2 -1
View File
@@ -3,6 +3,7 @@ from datetime import datetime, timedelta
import pytz import pytz
from bs4 import BeautifulSoup from bs4 import BeautifulSoup
from core.enums import AlertType
from data.alert import Alert from data.alert import Alert
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.alert.http_alert_provider import HTTPAlertProvider from providers.alert.http_alert_provider import HTTPAlertProvider
@@ -57,7 +58,7 @@ class BOTA(HTTPAlertProvider):
dx_calls=[dx_call], dx_calls=[dx_call],
sig_refs=[SIGRef(id=ref_name, sig="BOTA")], sig_refs=[SIGRef(id=ref_name, sig="BOTA")],
start_time=date_time.timestamp(), start_time=date_time.timestamp(),
is_dxpedition=False, alert_type=AlertType.XOTA,
) )
new_alerts.append(alert) new_alerts.append(alert)
+56
View File
@@ -0,0 +1,56 @@
from datetime import datetime
import pytz
from core.enums import AlertType
from data.alert import Alert
from data.sig_ref import SIGRef
from providers.alert.http_alert_provider import HTTPAlertProvider
class Hamsat(HTTPAlertProvider):
"""Alert provider for Hamsat (hams.at)"""
POLL_INTERVAL_SEC = 1800
ALERTS_URL = "https://hams.at/api/alerts"
def __init__(self, provider_config):
super().__init__("Hamsat", provider_config, self.ALERTS_URL, self.POLL_INTERVAL_SEC)
def _http_response_to_alerts(self, http_response):
new_alerts = []
# Iterate through source data
for source_alert in http_response.json()["data"]:
# Convert to our alert format
freqs_modes = source_alert.get("mode", "")
if "mhz" in source_alert:
if "mhz_direction" in source_alert:
freqs_modes = f"{source_alert['mhz']!s} {source_alert['mhz_direction']}, {freqs_modes}"
else:
freqs_modes = f"{source_alert['mhz']!s}, {freqs_modes}"
alert = Alert(
source=self.name,
source_id=source_alert["id"],
dx_calls=[source_alert["callsign"].upper()],
freqs_modes=freqs_modes,
comment=source_alert["comment"],
# Fudge a SIG ref to provide the remaining bits of data we need: the satellite and the operator's grid
sig_refs=[
SIGRef(
sig="AMSAT",
id=f"{source_alert['satellite']['name']} from {source_alert['grids'][0]}",
)
],
start_time=datetime.strptime(source_alert["aos_at"], "%Y-%m-%dT%H:%M:%SZ")
.replace(tzinfo=pytz.UTC)
.timestamp(),
end_time=datetime.strptime(source_alert["los_at"], "%Y-%m-%dT%H:%M:%SZ")
.replace(tzinfo=pytz.UTC)
.timestamp(),
alert_type=AlertType.SATELLITE,
)
# Add to our list
new_alerts.append(alert)
return new_alerts
+5 -1
View File
@@ -27,11 +27,15 @@ class HTTPAlertProvider(AlertProvider):
# Fire off the polling thread. It will poll immediately on startup, then sleep for poll_interval between # 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. # subsequent polls, so start() returns immediately and the application can continue starting.
logger.info(f"Set up query of {self.name} alert API every {self._poll_interval!s} seconds.") logger.info(f"Set up query of {self.name} alert API every {self._poll_interval!s} seconds.")
self._thread = Thread(target=self._run, name=f"HTTPAlertProvider-{self.name}") self._thread = Thread(target=self._run, name=f"HTTPAlertProvider-{self.name}", daemon=True)
self._thread.start() self._thread.start()
def stop(self): def stop(self):
self._stop_event.set() self._stop_event.set()
if self._thread:
self._thread.join(timeout=35)
if self._thread.is_alive():
logger.warning(f"{self.name} alert worker thread did not exit on time and will be killed.")
def _run(self): def _run(self):
while True: while True:
+47
View File
@@ -0,0 +1,47 @@
from datetime import datetime, time
from typing import cast
import pytz
from icalendar import Calendar, Event
from data.alert import Alert
from providers.alert.http_alert_provider import HTTPAlertProvider
class ICALAlertProvider(HTTPAlertProvider):
"""Generic alert provider for iCal calendars. Defines an abstract method event_to_alert(event) that subclasses must
implement, and use it to convert an iCal event to an Alert object based on whatever format their iCal events use."""
def __init__(self, name, provider_config, url, poll_interval):
super().__init__(name, provider_config, url, poll_interval)
def _http_response_to_alerts(self, http_response):
new_alerts = []
cal = Calendar.from_ical(http_response.content)
# Iterate through events, passing each one in turn to the subclass' event_to_alert method to turn it into
# a Spothole alert object
for component in cal.walk():
if component.name != "VEVENT":
continue
event = cast(Event, component)
alert = self.event_to_alert(event)
new_alerts.append(alert)
return new_alerts
def event_to_alert(self, event: Event) -> Alert:
"""Convert an ICal event to an Alert object. Subclasses must implement this method."""
@staticmethod
def _to_utc_timestamp(value):
"""Convert a date or datetime value from an iCal field into a UTC UNIX timestamp."""
# Datetime object so we can treat it as-is, check if it has a non-UTC tz and convert it if necessary
if isinstance(value, datetime):
if value.tzinfo is None:
value = pytz.UTC.localize(value)
return value.astimezone(pytz.UTC).timestamp()
# Date object so this is an all day event
return pytz.UTC.localize(datetime.combine(value, time.min)).timestamp()
+5 -4
View File
@@ -6,19 +6,20 @@ import pytz
from rss_parser import Parser from rss_parser import Parser
from rss_parser.models.rss import RSS from rss_parser.models.rss import RSS
from core.enums import AlertType
from data.alert import Alert from data.alert import Alert
from providers.alert.http_alert_provider import HTTPAlertProvider from providers.alert.http_alert_provider import HTTPAlertProvider
class NG3K(HTTPAlertProvider): class NG3K(HTTPAlertProvider):
"""Alert provider NG3K DXpedition list""" """Alert provider for NG3K DXpedition list"""
POLL_INTERVAL_SEC = 1800 POLL_INTERVAL_DAYS = 1
ALERTS_URL = "https://www.ng3k.com/adxo.xml" ALERTS_URL = "https://www.ng3k.com/adxo.xml"
AS_CALL_PATTERN = re.compile("as ([a-z0-9/]+)", re.IGNORECASE) AS_CALL_PATTERN = re.compile("as ([a-z0-9/]+)", re.IGNORECASE)
def __init__(self, provider_config): def __init__(self, provider_config):
super().__init__("NG3K", provider_config, self.ALERTS_URL, self.POLL_INTERVAL_SEC) super().__init__("NG3K", provider_config, self.ALERTS_URL, self.POLL_INTERVAL_DAYS * 24 * 60 * 60)
def _http_response_to_alerts(self, http_response): def _http_response_to_alerts(self, http_response):
new_alerts = [] new_alerts = []
@@ -88,7 +89,7 @@ class NG3K(HTTPAlertProvider):
comment=f"{by}; {comment}; {qsl_info}", comment=f"{by}; {comment}; {qsl_info}",
start_time=start_timestamp, start_time=start_timestamp,
end_time=end_timestamp, end_time=end_timestamp,
is_dxpedition=True, alert_type=AlertType.DXPEDITION,
) )
# Add to our list. # Add to our list.
+3 -1
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@@ -3,6 +3,7 @@ from datetime import datetime
import pytz import pytz
from core.enums import AlertType
from data.alert import Alert from data.alert import Alert
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.alert.http_alert_provider import HTTPAlertProvider from providers.alert.http_alert_provider import HTTPAlertProvider
@@ -51,7 +52,7 @@ class ParksNPeaks(HTTPAlertProvider):
comment=source_alert["Comments"], comment=source_alert["Comments"],
sig_refs=sigrefs, sig_refs=sigrefs,
start_time=start_time, start_time=start_time,
is_dxpedition=False, alert_type=AlertType.XOTA,
) )
# Log a warning for the developer if PnP gives us an unknown programme we've never seen before # Log a warning for the developer if PnP gives us an unknown programme we've never seen before
@@ -59,6 +60,7 @@ class ParksNPeaks(HTTPAlertProvider):
"POTA", "POTA",
"SOTA", "SOTA",
"WWFF", "WWFF",
"HEMA",
"SIOTA", "SIOTA",
"ZLOTA", "ZLOTA",
"KRMNPA", "KRMNPA",
+2 -1
View File
@@ -2,6 +2,7 @@ from datetime import datetime
import pytz import pytz
from core.enums import AlertType
from data.alert import Alert from data.alert import Alert
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.alert.http_alert_provider import HTTPAlertProvider from providers.alert.http_alert_provider import HTTPAlertProvider
@@ -44,7 +45,7 @@ class POTA(HTTPAlertProvider):
end_time=datetime.strptime(source_alert["endDate"] + source_alert["endTime"], "%Y-%m-%d%H:%M") end_time=datetime.strptime(source_alert["endDate"] + source_alert["endTime"], "%Y-%m-%d%H:%M")
.replace(tzinfo=pytz.UTC) .replace(tzinfo=pytz.UTC)
.timestamp(), .timestamp(),
is_dxpedition=False, alert_type=AlertType.XOTA,
) )
# Add to our list, but exclude any old spots that POTA can sometimes give us where even the end time is # Add to our list, but exclude any old spots that POTA can sometimes give us where even the end time is
@@ -0,0 +1,75 @@
import re
from icalendar import Event
from core.enums import AlertType, Continent
from data.alert import Alert
from providers.alert.ical_alert_provider import ICALAlertProvider
class RSGBICALAlertProvider(ICALAlertProvider):
"""Generic alert provider for RSGB contest iCal calendars. Builds on the generic iCal alert provider by adding
handling specific to how RSGB's iCal events are formatted. This is still effectively an abstract class itself;
RSGB has two contest calendars (HF & VHF) that each subclass this."""
def __init__(self, name, provider_config, url, poll_interval):
super().__init__(name, provider_config, url, poll_interval)
FREQ_PATTERN = re.compile(r"([\d.]+(?:MHz|GHz))|SHF")
def event_to_alert(self, event: Event) -> Alert:
"""Convert an iCal event in RSGB's format to an Alert object."""
summary = str(event.get("summary", "")).strip()
# Ensure summaries start with "RSGB" to avoid any confusion
if not summary.startswith("RSGB "):
summary = "RSGB " + summary
# Extract freq from summary. HF contests don't give frequencies, all VHF ones do
match = self.FREQ_PATTERN.search(summary)
if match:
freqs_modes = match.group()
else:
freqs_modes = "HF bands"
freqs_modes = freqs_modes + ", "
# Extract mode from summary
if "FMAC" in summary:
freqs_modes = freqs_modes + "FM"
elif "CW" in summary:
freqs_modes = freqs_modes + "CW"
elif "SSB" in summary:
freqs_modes = freqs_modes + "SSB"
elif "FT8" in summary:
freqs_modes = freqs_modes + "FT8"
elif "FT4" in summary:
freqs_modes = freqs_modes + "FT4"
elif "DATA" in summary:
freqs_modes = freqs_modes + "Data modes"
else:
freqs_modes = freqs_modes + "All modes"
dtstart = event.get("dtstart")
dtend = event.get("dtend")
start_timestamp = self._to_utc_timestamp(dtstart.dt)
end_timestamp = self._to_utc_timestamp(dtend.dt) - 1 if dtend is not None else start_timestamp
# Convert to our alert format
alert = Alert(
source=self.name,
dx_calls=[],
dx_country="United Kingdom",
dx_dxcc_id=235,
dx_continent=Continent.EU,
dx_cq_zone=14,
dx_itu_zone=27,
dx_flag="🇬🇧",
freqs_modes=freqs_modes,
comment=summary,
start_time=start_timestamp,
end_time=end_timestamp,
alert_type=AlertType.CONTEST,
)
return alert
+11
View File
@@ -0,0 +1,11 @@
from providers.alert.rsgb_ical_alert_provider import RSGBICALAlertProvider
class RSGBHFContests(RSGBICALAlertProvider):
"""Alert provider for RSGB HF Contest calendar"""
POLL_INTERVAL_DAYS = 30
ALERTS_URL = "https://calendar.google.com/calendar/ical/a5ff31ebb1b4834dc7fff4c5415ae8251c6a9aa11f98c6af6e472b6c552b1915%40group.calendar.google.com/public/basic.ics"
def __init__(self, provider_config):
super().__init__("RSGB HF Contests", provider_config, self.ALERTS_URL, self.POLL_INTERVAL_DAYS * 24 * 60 * 60)
+11
View File
@@ -0,0 +1,11 @@
from providers.alert.rsgb_ical_alert_provider import RSGBICALAlertProvider
class RSGBVHFContests(RSGBICALAlertProvider):
"""Alert provider for RSGB VHF Contest calendar"""
POLL_INTERVAL_DAYS = 30
ALERTS_URL = "https://calendar.google.com/calendar/ical/40f3552bff39a016f1cdca205864177070dcad68d55be17eb061cb021f39f96c%40group.calendar.google.com/public/basic.ics"
def __init__(self, provider_config):
super().__init__("RSGB VHF Contests", provider_config, self.ALERTS_URL, self.POLL_INTERVAL_DAYS * 24 * 60 * 60)
+2 -1
View File
@@ -2,6 +2,7 @@ from datetime import datetime
import pytz import pytz
from core.enums import AlertType
from data.alert import Alert from data.alert import Alert
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.alert.http_alert_provider import HTTPAlertProvider from providers.alert.http_alert_provider import HTTPAlertProvider
@@ -44,7 +45,7 @@ class SOTA(HTTPAlertProvider):
start_time=datetime.strptime(source_alert["dateActivated"], "%Y-%m-%dT%H:%M:%SZ") start_time=datetime.strptime(source_alert["dateActivated"], "%Y-%m-%dT%H:%M:%SZ")
.replace(tzinfo=pytz.UTC) .replace(tzinfo=pytz.UTC)
.timestamp(), .timestamp(),
is_dxpedition=False, alert_type=AlertType.XOTA,
) )
# Add to our list # Add to our list
+41
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@@ -0,0 +1,41 @@
from icalendar import Event
from core.enums import AlertType
from data.alert import Alert
from providers.alert.ical_alert_provider import ICALAlertProvider
class WA7BNM(ICALAlertProvider):
"""Alert provider for the WA7BNM contest calendar."""
POLL_INTERVAL_DAYS = 1
ALERTS_URL = "https://contestcalendar.com/weeklycontcustom.php"
def __init__(self, provider_config):
super().__init__(
"WA7BNM Contest Calendar", provider_config, self.ALERTS_URL, self.POLL_INTERVAL_DAYS * 24 * 60 * 60
)
def event_to_alert(self, event: Event) -> Alert:
"""Convert an iCal event in WA7BNM's format to an Alert object."""
summary = str(event.get("summary", ""))
url = str(event.get("url", ""))
dtstart = event.get("dtstart")
dtend = event.get("dtend")
start_timestamp = self._to_utc_timestamp(dtstart.dt)
end_timestamp = self._to_utc_timestamp(dtend.dt) - 1 if dtend is not None else start_timestamp
# Convert to our alert format
alert = Alert(
source=self.name,
dx_calls=[],
comment=summary,
url=url,
start_time=start_timestamp,
end_time=end_timestamp,
alert_type=AlertType.CONTEST,
)
return alert
+2 -1
View File
@@ -2,6 +2,7 @@ from datetime import datetime
import pytz import pytz
from core.enums import AlertType
from data.alert import Alert from data.alert import Alert
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.alert.http_alert_provider import HTTPAlertProvider from providers.alert.http_alert_provider import HTTPAlertProvider
@@ -34,7 +35,7 @@ class WWFF(HTTPAlertProvider):
end_time=datetime.strptime(source_alert["utc_end"], "%Y-%m-%d %H:%M:%S") end_time=datetime.strptime(source_alert["utc_end"], "%Y-%m-%d %H:%M:%S")
.replace(tzinfo=pytz.UTC) .replace(tzinfo=pytz.UTC)
.timestamp(), .timestamp(),
is_dxpedition=False, alert_type=AlertType.XOTA,
) )
# Add to our list # Add to our list
@@ -42,7 +42,13 @@ class CallsignDataProvider:
if self.enabled: if self.enabled:
if callsign in self._storage: if callsign in self._storage:
return self._storage[callsign] try:
return self._storage[callsign]
except (ValueError, KeyError):
# Catch exceptions due to e.g. old versions of objects in the cache that are no longer compatible,
# and remove them from the cache.
del self._storage[callsign]
return None
else: else:
c = self._perform_new_lookup(callsign, lookup_credentials) c = self._perform_new_lookup(callsign, lookup_credentials)
if c: if c:
@@ -32,11 +32,15 @@ class FileDownloadCallsignDataProvider(CallsignDataProvider):
# Fire off the polling thread. It will poll immediately on startup, then sleep for poll_interval between # 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. # subsequent polls, so start() returns immediately and the application can continue starting.
logger.info(f"Set up query of {self.name} callsign reference data every {self._poll_interval!s} days.") logger.info(f"Set up query of {self.name} callsign reference data every {self._poll_interval!s} days.")
self._thread = Thread(target=self._run, name=f"FileDownloadCallsignDataProvider-{self.name}") self._thread = Thread(target=self._run, name=f"FileDownloadCallsignDataProvider-{self.name}", daemon=True)
self._thread.start() self._thread.start()
def stop(self): def stop(self):
self._stop_event.set() self._stop_event.set()
if self._thread:
self._thread.join(timeout=35)
if self._thread.is_alive():
logger.warning(f"{self.name} callsign data worker thread did not exit on time and will be killed.")
def _run(self): def _run(self):
while True: while True:
+4 -3
View File
@@ -11,8 +11,9 @@ from requests_cache import CachedSession
from core.config import SERVER_OWNER_CALLSIGN from core.config import SERVER_OWNER_CALLSIGN
from core.constants import HTTP_HEADERS, SOFTWARE_VERSION from core.constants import HTTP_HEADERS, SOFTWARE_VERSION
from core.data_store import CACHE_DIR, DATA_STORE from core.data_store import CACHE_DIR, DATA_STORE
from core.enums import Continent
from core.url_data_cache import URLDataCache from core.url_data_cache import URLDataCache
from data.callsign import Callsign from data.callsign import Callsign, LocationSourceForCallsign
from providers.callsigndata.api_query_callsign_data_provider import ( from providers.callsigndata.api_query_callsign_data_provider import (
APIQueryCallsignDataProvider, APIQueryCallsignDataProvider,
) )
@@ -142,12 +143,12 @@ class HamQTH(APIQueryCallsignDataProvider):
name=data.get("nick", None), name=data.get("nick", None),
qth=data.get("qth", None), qth=data.get("qth", None),
country=data.get("country", None), country=data.get("country", None),
continent=data.get("continent", None), continent=Continent(data["continent"]) if "continent" in data else None,
latitude=lat, latitude=lat,
longitude=lon, longitude=lon,
grid=grid, grid=grid,
dxcc_id=int(data["adif"]) if "adif" in data else None, dxcc_id=int(data["adif"]) if "adif" in data else None,
cq_zone=int(data["cq"]) if "cq" 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, itu_zone=int(data["itu"]) if "itu" in data else None,
location_source="HOME QTH", location_source=LocationSourceForCallsign.HOME_QTH,
) )
+4 -5
View File
@@ -10,11 +10,10 @@ from requests_cache import CachedSession
from core.constants import HTTP_HEADERS from core.constants import HTTP_HEADERS
from core.data_store import CACHE_DIR, DATA_STORE from core.data_store import CACHE_DIR, DATA_STORE
from core.enums import Continent, LocationSourceForCallsign
from core.url_data_cache import URLDataCache from core.url_data_cache import URLDataCache
from data.callsign import Callsign from data.callsign import Callsign
from providers.callsigndata.api_query_callsign_data_provider import ( from providers.callsigndata.api_query_callsign_data_provider import APIQueryCallsignDataProvider
APIQueryCallsignDataProvider,
)
logger = logging.getLogger(__name__) logger = logging.getLogger(__name__)
@@ -170,12 +169,12 @@ class QRZ(APIQueryCallsignDataProvider):
name=name, name=name,
qth=data.get("addr2", None), qth=data.get("addr2", None),
country=data.get("country", None), country=data.get("country", None),
continent=data.get("continent", None), continent=Continent(data["continent"]) if "continent" in data else None,
latitude=lat, latitude=lat,
longitude=lon, longitude=lon,
grid=grid, grid=grid,
dxcc_id=int(data["adif"]) if "adif" in data else None, dxcc_id=int(data["adif"]) if "adif" in data else None,
cq_zone=int(data["cqzone"]) if "cqzone" 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, itu_zone=int(data["ituzone"]) if "ituzone" in data else None,
location_source="HOME QTH", location_source=LocationSourceForCallsign.HOME_QTH,
) )
+2 -1
View File
@@ -1,6 +1,7 @@
import csv import csv
from time import sleep from time import sleep
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -27,7 +28,7 @@ class ARLHS(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=row.get("Name", None), name=row.get("Name", None),
ref_type="Lighthouse", ref_type=SIGRefType.LIGHTHOUSE,
url=f"https://www.cqgma.org/zinfo.php?ref={ref_id}", url=f"https://www.cqgma.org/zinfo.php?ref={ref_id}",
latitude=float(row["Latitude"]) if "Latitude" in row and row["Latitude"] != "" else None, latitude=float(row["Latitude"]) if "Latitude" in row and row["Latitude"] != "" else None,
longitude=float(row["Longitude"]) if "Longitude" in row and row["Longitude"] != "" else None, longitude=float(row["Longitude"]) if "Longitude" in row and row["Longitude"] != "" else None,
+52
View File
@@ -0,0 +1,52 @@
from time import sleep
from pyhamtools.locator import latlong_to_locator
from core.enums import SIGRefType
from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import FileDownloadSIGRefDataProvider
class COTA(FileDownloadSIGRefDataProvider):
"""SIG ref data provider for Castles on the Air"""
POLL_INTERVAL_DAYS = 30
SIG = "COTA"
DATA_URL = "https://www.cotagroup.org/cotagroup/map/data/castles-all-7d90ee2a5e1175e5dece1bbf9dc87504.json"
def __init__(self, provider_config):
super().__init__(self.SIG, provider_config, self.DATA_URL, self.POLL_INTERVAL_DAYS)
def _http_response_to_data(self, http_response):
new_data = []
data = http_response.json()
if isinstance(data, list):
for ref in data[2]:
ref_id = ref[3]
name = ref[4]
lat = float(ref[0])
lon = float(ref[1])
grid = latlong_to_locator(lat, lon)
new_data.append(
SIGRef(
sig=self.SIG,
id=ref_id,
name=name,
ref_type=SIGRefType.CASTLE,
grid=grid,
latitude=lat,
longitude=lon,
)
)
# Bail out if a stop has been requested, i.e. the program is shutting down - no need to parse the rest
# of the data in this case
if self._stop_event.is_set():
break
# Very short pause. This will extend the time to handle sig refs by a few seconds but will ensure some time
# is available for other threads e.g. the web server.
sleep(0.001)
return new_data
+42
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@@ -0,0 +1,42 @@
import io
from time import sleep
import pandas as pd
from core.enums import SIGRefType
from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import FileDownloadSIGRefDataProvider
class DCE(FileDownloadSIGRefDataProvider):
"""SIG ref data provider for Diploma Castillos de España"""
POLL_INTERVAL_DAYS = 365
SIG = "DCE"
DATA_URL = "https://www.acracb.org/dce/descargas/General/directorio_referencias_dce.xls"
def __init__(self, provider_config):
super().__init__(self.SIG, provider_config, self.DATA_URL, self.POLL_INTERVAL_DAYS)
def _http_response_to_data(self, http_response):
new_data = []
file_stream = io.BytesIO(http_response.content)
df = pd.read_excel(file_stream, engine="xlrd", header=None)
for index, row in df.iterrows():
if row.iloc[0] and row.iloc[2]:
new_data.append(
SIGRef(sig=self.SIG, id=row.iloc[0].strip(), name=row.iloc[2].strip(), ref_type=SIGRefType.CASTLE)
)
# Bail out if a stop has been requested, i.e. the program is shutting down - no need to parse the rest of
# the data in this case
if self._stop_event.is_set():
break
# Very short pause. This will extend the time to handle sig refs by a few seconds but will ensure some time
# is available for other threads e.g. the web server.
sleep(0.001)
return new_data
+46
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@@ -0,0 +1,46 @@
import io
from time import sleep
import pandas as pd
from core.enums import SIGRefType
from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import FileDownloadSIGRefDataProvider
class DEFE(FileDownloadSIGRefDataProvider):
"""SIG ref data provider for Diploma Estationes de Ferrocarril de España"""
POLL_INTERVAL_DAYS = 365
SIG = "DEFE"
DATA_URL = "https://www.acracb.org/defe/descargas/General/directorio_referencias_defe.xls"
def __init__(self, provider_config):
super().__init__(self.SIG, provider_config, self.DATA_URL, self.POLL_INTERVAL_DAYS)
def _http_response_to_data(self, http_response):
new_data = []
file_stream = io.BytesIO(http_response.content)
df = pd.read_excel(file_stream, engine="xlrd", header=None)
for index, row in df.iterrows():
# Skip the header row
if str(row.iloc[0]) == "NºDEFE":
continue
if row.iloc[0] and row.iloc[1]:
new_data.append(
SIGRef(sig=self.SIG, id=row.iloc[0].strip(), name=row.iloc[1].strip(), ref_type=SIGRefType.BUILDING)
)
# Bail out if a stop has been requested, i.e. the program is shutting down - no need to parse the rest of
# the data in this case
if self._stop_event.is_set():
break
# Very short pause. This will extend the time to handle sig refs by a few seconds but will ensure some time
# is available for other threads e.g. the web server.
sleep(0.001)
return new_data
+8 -3
View File
@@ -3,6 +3,7 @@ from time import sleep
from pyhamtools.locator import latlong_to_locator from pyhamtools.locator import latlong_to_locator
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.local_file_sig_ref_data_provider import ( from providers.sigrefdata.local_file_sig_ref_data_provider import (
LocalFileSIGRefDataProvider, LocalFileSIGRefDataProvider,
@@ -22,7 +23,11 @@ class DME(LocalFileSIGRefDataProvider):
new_data = [] new_data = []
with open(path, encoding="latin-1") as _f: with open(path, encoding="latin-1") as _f:
for row in csv.DictReader(_f, delimiter=";"): for row in csv.DictReader(_f, delimiter=";"):
ref_id = row["COD_INE"][:5] # Store reference IDs with the "DME-" prefix rather than just the number. This will prevent Spothole
# from agressively thinking every number in a spot comment is DME after it's seen "DME" once. The only
# numbers that count are straight after "DME " or "DME-". The dash versus space is normalised in
# sig_lookup_helper.py.
ref_id = "DME-" + row["COD_INE"][:5]
latitude = ( latitude = (
float(row["LATITUD_ETRS89_REGCAN95"].replace(",", ".")) float(row["LATITUD_ETRS89_REGCAN95"].replace(",", "."))
if row.get("LATITUD_ETRS89_REGCAN95") if row.get("LATITUD_ETRS89_REGCAN95")
@@ -37,7 +42,7 @@ class DME(LocalFileSIGRefDataProvider):
ref = SIGRef( ref = SIGRef(
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
ref_type="Town", ref_type=SIGRefType.TOWN,
name=f"{row['NOMBRE_ACTUAL']}, {row['PROVINCIA']}", name=f"{row['NOMBRE_ACTUAL']}, {row['PROVINCIA']}",
latitude=latitude, latitude=latitude,
longitude=longitude, longitude=longitude,
@@ -48,7 +53,7 @@ class DME(LocalFileSIGRefDataProvider):
# Bail out if a stop has been requested, i.e. the program is shutting down - no need to parse the rest # Bail out if a stop has been requested, i.e. the program is shutting down - no need to parse the rest
# of the data in this case # of the data in this case
if self._stop: if self._stop_event.is_set():
break break
# Very short pause. This will extend the time to handle sig refs by a few seconds but will ensure some time # Very short pause. This will extend the time to handle sig refs by a few seconds but will ensure some time
+37
View File
@@ -0,0 +1,37 @@
import csv
from time import sleep
from core.enums import SIGRefType
from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import FileDownloadSIGRefDataProvider
class DMUE(FileDownloadSIGRefDataProvider):
"""SIG ref data provider for Diploma Museos de España"""
POLL_INTERVAL_DAYS = 365
SIG = "DMUE"
DATA_URL = "https://dmue.radiogalena.es/nom_dmue.csv"
def __init__(self, provider_config):
super().__init__(self.SIG, provider_config, self.DATA_URL, self.POLL_INTERVAL_DAYS)
def _http_response_to_data(self, http_response):
new_data = []
for row in csv.reader(http_response.content.decode("utf-8-sig").splitlines(), delimiter=";"):
if len(row) > 1 and row[0] and row[1]:
new_data.append(
SIGRef(sig=self.SIG, id=row[0].strip(), name=row[1].strip(), ref_type=SIGRefType.BUILDING)
)
# Bail out if a stop has been requested, i.e. the program is shutting down - no need to parse the rest of
# the data in this case
if self._stop_event.is_set():
break
# Very short pause. This will extend the time to handle sig refs by a few seconds but will ensure some time
# is available for other threads e.g. the web server.
sleep(0.001)
return new_data
+50
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@@ -0,0 +1,50 @@
import io
from time import sleep
import pandas as pd
from core.enums import SIGRefType
from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import FileDownloadSIGRefDataProvider
class DMVE(FileDownloadSIGRefDataProvider):
"""SIG ref data provider for Diploma Monumentos y Vestigios de España"""
POLL_INTERVAL_DAYS = 365
SIG = "DMVE"
DATA_URL = "https://www.acracb.org/dmve/descargas/General/directorio_referencias_dmve.xls"
def __init__(self, provider_config):
super().__init__(self.SIG, provider_config, self.DATA_URL, self.POLL_INTERVAL_DAYS)
def _http_response_to_data(self, http_response):
new_data = []
file_stream = io.BytesIO(http_response.content)
# Despide the .xls extension this is actually an xlsx file, so we need openpyxl not xlrd
df = pd.read_excel(file_stream, engine="openpyxl", header=None)
for index, row in df.iterrows():
ref = row.iloc[0]
name = row.iloc[1]
# Skip the header row and blank rows
if str(ref) == "REF.":
continue
if pd.isna(ref) or pd.isna(name):
continue
if ref and name:
new_data.append(SIGRef(sig=self.SIG, id=ref.strip(), name=name.strip(), ref_type=SIGRefType.BUILDING))
# Bail out if a stop has been requested, i.e. the program is shutting down - no need to parse the rest of
# the data in this case
if self._stop_event.is_set():
break
# Very short pause. This will extend the time to handle sig refs by a few seconds but will ensure some time
# is available for other threads e.g. the web server.
sleep(0.001)
return new_data
+35
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@@ -0,0 +1,35 @@
from time import sleep
from core.enums import SIGRefType
from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import FileDownloadSIGRefDataProvider
class DTMBA(FileDownloadSIGRefDataProvider):
"""SIG ref data provider for Diploma Teatri Musei Belle Arti"""
POLL_INTERVAL_DAYS = 30
SIG = "DTMBA"
DATA_URL = "https://www.iu1fig.com/share/iz0eik/dtmba/export.php"
def __init__(self, provider_config):
super().__init__(self.SIG, provider_config, self.DATA_URL, self.POLL_INTERVAL_DAYS)
def _http_response_to_data(self, http_response):
new_data = []
for row in http_response.content.decode("utf-8-sig").splitlines():
split = row.split(";")
ref_id = split[0]
ref_name = split[1]
new_data.append(SIGRef(sig=self.SIG, id=ref_id, name=ref_name, ref_type=SIGRefType.BUILDING))
# Bail out if a stop has been requested, i.e. the program is shutting down - no need to parse the rest of
# the data in this case
if self._stop_event.is_set():
break
# Very short pause. This will extend the time to handle sig refs by a few seconds but will ensure some time
# is available for other threads e.g. the web server.
sleep(0.001)
return new_data
+56
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@@ -0,0 +1,56 @@
from io import BytesIO
from time import sleep
import pdfplumber
from core.enums import SIGRefType
from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import FileDownloadSIGRefDataProvider
class FEA(FileDownloadSIGRefDataProvider):
"""SIG ref data provider for Diploma Faros de España"""
POLL_INTERVAL_DAYS = 30
SIG = "FEA"
DATA_URL = "http://ea5ol.net/Lista%20Faros.pdf"
def __init__(self, provider_config):
super().__init__(self.SIG, provider_config, self.DATA_URL, self.POLL_INTERVAL_DAYS)
def _http_response_to_data(self, http_response):
new_data = []
# Use PDFPlumber to extract the tables in the PDF
with pdfplumber.open(BytesIO(http_response.content)) as pdf:
all_rows = []
for page_number, page in enumerate(pdf.pages, start=1):
tables = page.extract_tables()
for table_number, table in enumerate(tables, start=1):
if not table:
continue
rows = [row for row in table if any(cell and cell.strip() for cell in row)]
all_rows.extend(rows)
for row in all_rows:
if not "REF" in row[0] and not "\n" in row[0]:
# FEA references are technically [DE]\-\d{4}(\.\d)? but spotters always seem to miss out the D- or E-
# prefix and just use FEA-1234 or FEA 1234, so we add both copies to the database.
ref_id_1 = row[0].strip()
ref_id_2 = ref_id_1.replace("D-", "FEA-").replace("E-", "FEA-")
new_data.append(SIGRef(sig=self.SIG, id=ref_id_1, name=row[1].strip(), ref_type=SIGRefType.LIGHTHOUSE))
new_data.append(SIGRef(sig=self.SIG, id=ref_id_2, name=row[1].strip(), ref_type=SIGRefType.LIGHTHOUSE))
# Bail out if a stop has been requested, i.e. the program is shutting down - no need to parse the rest of
# the data in this case
if self._stop_event.is_set():
break
# Very short pause. This will extend the time to handle sig refs by a few seconds but will ensure some time
# is available for other threads e.g. the web server.
sleep(0.001)
return new_data
@@ -1,6 +1,6 @@
import logging import logging
from datetime import datetime from datetime import datetime
from threading import Event, Thread from threading import Thread
import pytz import pytz
from requests.exceptions import ConnectionError, ConnectTimeout, ReadTimeout from requests.exceptions import ConnectionError, ConnectTimeout, ReadTimeout
@@ -21,19 +21,21 @@ class FileDownloadSIGRefDataProvider(SIGRefDataProvider):
self._url = url self._url = url
self._poll_interval = poll_interval self._poll_interval = poll_interval
self._thread = None self._thread = None
self._stop_event = Event()
self._url_data_cache = URLDataCache(f"sigrefdata_{sig_name}") self._url_data_cache = URLDataCache(f"sigrefdata_{sig_name}")
def start(self): def start(self):
# Fire off the polling thread. It will poll immediately on startup, then sleep for poll_interval between # 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. # subsequent polls, so start() returns immediately and the application can continue starting.
logger.info(f"Set up query of {self.sig_name} SIG ref data every {self._poll_interval!s} days.") logger.info(f"Set up query of {self.sig_name} SIG ref data every {self._poll_interval!s} days.")
self._thread = Thread(target=self._run, name=f"FileDownloadSIGRefDataProvider-{self.sig_name}") self._thread = Thread(target=self._run, name=f"FileDownloadSIGRefDataProvider-{self.sig_name}", daemon=True)
self._thread.start() self._thread.start()
def stop(self): def stop(self):
super().stop() super().stop()
self._stop_event.set() if self._thread:
self._thread.join(timeout=35)
if self._thread.is_alive():
logger.warning(f"{self.sig_name} SIG ref data worker thread did not exit on time and will be killed.")
def _run(self): def _run(self):
while True: while True:
+2 -1
View File
@@ -1,6 +1,7 @@
import csv import csv
from time import sleep from time import sleep
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -26,7 +27,7 @@ class GMA(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=row.get("Name", None), name=row.get("Name", None),
ref_type="Summit", ref_type=SIGRefType.SUMMIT,
url=f"https://www.cqgma.org/zinfo.php?ref={ref_id}", url=f"https://www.cqgma.org/zinfo.php?ref={ref_id}",
latitude=float(row["Latitude"]) if "Latitude" in row and row["Latitude"] != "" else None, latitude=float(row["Latitude"]) if "Latitude" in row and row["Latitude"] != "" else None,
longitude=float(row["Longitude"]) if "Longitude" in row and row["Longitude"] != "" else None, longitude=float(row["Longitude"]) if "Longitude" in row and row["Longitude"] != "" else None,
+2 -1
View File
@@ -1,6 +1,7 @@
import csv import csv
from time import sleep from time import sleep
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -27,7 +28,7 @@ class ILLW(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=row.get("Name", None), name=row.get("Name", None),
ref_type="Lighthouse", ref_type=SIGRefType.LIGHTHOUSE,
url=f"https://www.cqgma.org/zinfo.php?ref={ref_id}", url=f"https://www.cqgma.org/zinfo.php?ref={ref_id}",
latitude=float(row["Latitude"]) if "Latitude" in row and row["Latitude"] != "" else None, latitude=float(row["Latitude"]) if "Latitude" in row and row["Latitude"] != "" else None,
longitude=float(row["Longitude"]) if "Longitude" in row and row["Longitude"] != "" else None, longitude=float(row["Longitude"]) if "Longitude" in row and row["Longitude"] != "" else None,
+2 -1
View File
@@ -3,6 +3,7 @@ from time import sleep
from pyhamtools.locator import latlong_to_locator from pyhamtools.locator import latlong_to_locator
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -44,7 +45,7 @@ class IOTA(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=ref["name"], name=ref["name"],
ref_type="Island", ref_type=SIGRefType.ISLAND,
grid=grid, grid=grid,
latitude=latitude, latitude=latitude,
longitude=longitude, longitude=longitude,
+2 -1
View File
@@ -2,6 +2,7 @@ from time import sleep
from pyhamtools.locator import locator_to_latlong from pyhamtools.locator import locator_to_latlong
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -32,7 +33,7 @@ class LLOTA(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=str(ref["name"]), name=str(ref["name"]),
ref_type="Lake", ref_type=SIGRefType.LAKE,
url=f"https://llota.app/list/ref/{ref_id}", url=f"https://llota.app/list/ref/{ref_id}",
grid=grid, grid=grid,
latitude=ll[0], latitude=ll[0],
+2 -1
View File
@@ -1,6 +1,7 @@
import csv import csv
from time import sleep from time import sleep
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -26,7 +27,7 @@ class MOTA(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=row.get("Name", None), name=row.get("Name", None),
ref_type="Mill", ref_type=SIGRefType.MILL,
url=f"https://www.cqgma.org/zinfo.php?ref={ref_id}", url=f"https://www.cqgma.org/zinfo.php?ref={ref_id}",
latitude=float(row["Latitude"]) if "Latitude" in row and row["Latitude"] != "" else None, latitude=float(row["Latitude"]) if "Latitude" in row and row["Latitude"] != "" else None,
longitude=float(row["Longitude"]) if "Longitude" in row and row["Longitude"] != "" else None, longitude=float(row["Longitude"]) if "Longitude" in row and row["Longitude"] != "" else None,
+58
View File
@@ -0,0 +1,58 @@
from time import sleep
from bs4 import BeautifulSoup
from core.enums import SIGRefType
from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import FileDownloadSIGRefDataProvider
class PGA(FileDownloadSIGRefDataProvider):
"""SIG ref data provider for Polish Gmina Award"""
POLL_INTERVAL_DAYS = 30
SIG = "PGA"
DATA_URL = "http://www.spga.pl/lista_pga2.php"
def __init__(self, provider_config):
super().__init__(self.SIG, provider_config, self.DATA_URL, self.POLL_INTERVAL_DAYS)
def _http_response_to_data(self, http_response):
new_data = []
soup = BeautifulSoup(http_response.text, "html.parser")
# Iterate through tables in the page
for table in soup.find_all("table"):
header_cells = table.find_all(["th", "td"], limit=10)
header_texts = [c.get_text(strip=True) for c in header_cells]
# If it has "PGA" and "Nazwa" in the header, it's the main data table
if any("PGA" in t for t in header_texts) and any("Nazwa" in t for t in header_texts):
# Iterate through all rows except the first
rows = table.find_all("tr")
for row in rows[1:]:
cells = row.find_all("td")
ref_id = cells[0].get_text(strip=True)
name = cells[1].get_text(strip=True)
if not ref_id:
continue
new_data.append(
SIGRef(
sig=self.SIG,
id=ref_id,
name=name,
ref_type=SIGRefType.REGION,
)
)
# Bail out if a stop has been requested, i.e. the program is shutting down - no need to parse the rest
# of the data in this case
if self._stop_event.is_set():
break
# Very short pause. This will extend the time to handle sig refs by a few seconds but will ensure some time
# is available for other threads e.g. the web server.
sleep(0.001)
return new_data
@@ -4,6 +4,7 @@ from time import sleep
from fastkml import kml from fastkml import kml
from pyhamtools.locator import latlong_to_locator from pyhamtools.locator import latlong_to_locator
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -43,7 +44,7 @@ class ParksNPeaksKMLSIGRefDataProvider(FileDownloadSIGRefDataProvider):
sig=self.sig_name, sig=self.sig_name,
id=ref_id, id=ref_id,
name=placemark.name, name=placemark.name,
ref_type="Park", ref_type=SIGRefType.PARK,
url=f"https://parksnpeaks.org/getPark.php?actPark={ref_id}", url=f"https://parksnpeaks.org/getPark.php?actPark={ref_id}",
latitude=latitude, latitude=latitude,
longitude=longitude, longitude=longitude,
+2 -1
View File
@@ -1,6 +1,7 @@
import csv import csv
from time import sleep from time import sleep
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -26,7 +27,7 @@ class POTA(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=row.get("name", None), name=row.get("name", None),
ref_type="Park", ref_type=SIGRefType.PARK,
url=f"https://pota.app/#/park/{ref_id}", url=f"https://pota.app/#/park/{ref_id}",
grid=row.get("grid", None), grid=row.get("grid", None),
latitude=float(row["latitude"]) if "latitude" in row and row["latitude"] != "" else None, latitude=float(row["latitude"]) if "latitude" in row and row["latitude"] != "" else None,
@@ -1,5 +1,6 @@
import logging import logging
from datetime import datetime from datetime import datetime
from threading import Event
import pytz import pytz
@@ -19,7 +20,7 @@ class SIGRefDataProvider:
self.last_update_time = datetime.min.replace(tzinfo=pytz.UTC) self.last_update_time = datetime.min.replace(tzinfo=pytz.UTC)
self.status = "Not Started" if self.enabled else "Disabled" self.status = "Not Started" if self.enabled else "Disabled"
self.reference_count = 0 self.reference_count = 0
self._stop = False self._stop_event = Event()
def start(self): def start(self):
"""Start the provider. This should return immediately after spawning threads to access the remote resources""" """Start the provider. This should return immediately after spawning threads to access the remote resources"""
@@ -30,7 +31,7 @@ class SIGRefDataProvider:
"""Stop any threads and prepare for application shutdown. Subclasses should implement this method and call """Stop any threads and prepare for application shutdown. Subclasses should implement this method and call
super().""" super()."""
self._stop = True self._stop_event.set()
def _add_data(self, new_data): def _add_data(self, new_data):
"""Add all the provided reference data objects to the data store.""" """Add all the provided reference data objects to the data store."""
@@ -43,7 +44,7 @@ class SIGRefDataProvider:
# For the big data sources, loading will take a few minutes. If we want to shut down the software neatly # For the big data sources, loading will take a few minutes. If we want to shut down the software neatly
# within the first few minutes of startup, we need a way to abort this expensive process of filling up the # within the first few minutes of startup, we need a way to abort this expensive process of filling up the
# disk cache. # disk cache.
if self._stop: if self._stop_event.is_set():
break break
self.reference_count = len(new_data) self.reference_count = len(new_data)
+2 -1
View File
@@ -1,6 +1,7 @@
import csv import csv
from time import sleep from time import sleep
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -26,7 +27,7 @@ class SIOTA(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=row.get("NAME", None), name=row.get("NAME", None),
ref_type="Silo", ref_type=SIGRefType.SILO,
grid=row.get("LOCATOR", None), grid=row.get("LOCATOR", None),
latitude=float(row["LAT"]) if "LAT" in row else None, latitude=float(row["LAT"]) if "LAT" in row else None,
longitude=float(row["LNG"]) if "LNG" in row else None, longitude=float(row["LNG"]) if "LNG" in row else None,
+2 -1
View File
@@ -3,6 +3,7 @@ from time import sleep
from pyhamtools.locator import latlong_to_locator from pyhamtools.locator import latlong_to_locator
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -30,7 +31,7 @@ class SOTA(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=row.get("SummitName", None), name=row.get("SummitName", None),
ref_type="Summit", ref_type=SIGRefType.SUMMIT,
url=f"https://www.sotadata.org.uk/en/summit/{ref_id}", url=f"https://www.sotadata.org.uk/en/summit/{ref_id}",
latitude=latitude, latitude=latitude,
longitude=longitude, longitude=longitude,
+3 -2
View File
@@ -1,5 +1,6 @@
import csv import csv
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.local_file_sig_ref_data_provider import ( from providers.sigrefdata.local_file_sig_ref_data_provider import (
LocalFileSIGRefDataProvider, LocalFileSIGRefDataProvider,
@@ -26,7 +27,7 @@ class Toilets(LocalFileSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=row["ref"], id=row["ref"],
name=row["ref"], name=row["ref"],
ref_type="Toilet", ref_type=SIGRefType.TOILET,
latitude=float(row["lat"]), latitude=float(row["lat"]),
longitude=float(row["lon"]), longitude=float(row["lon"]),
) )
@@ -34,7 +35,7 @@ class Toilets(LocalFileSIGRefDataProvider):
# Bail out if a stop has been requested, i.e. the program is shutting down - no need to parse the rest # Bail out if a stop has been requested, i.e. the program is shutting down - no need to parse the rest
# of the data in this case # of the data in this case
if self._stop: if self._stop_event.is_set():
break break
return new_data return new_data
+2 -1
View File
@@ -1,6 +1,7 @@
import csv import csv
from time import sleep from time import sleep
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -26,7 +27,7 @@ class Towers(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=row.get("Nazev", None), name=row.get("Nazev", None),
ref_type="Tower", ref_type=SIGRefType.TOWER,
url=f"https://wwtota.com/seznam/karta_rozhledny.php?ref={ref_id}", url=f"https://wwtota.com/seznam/karta_rozhledny.php?ref={ref_id}",
grid=row["Lokator"] if "Lokator" in row and row["Lokator"] != "" else None, grid=row["Lokator"] if "Lokator" in row and row["Lokator"] != "" else None,
latitude=float(row["Lat"]) if "Lat" in row and row["Lat"] != "" else None, latitude=float(row["Lat"]) if "Lat" in row and row["Lat"] != "" else None,
+2 -1
View File
@@ -4,6 +4,7 @@ from time import sleep
from pyhamtools.locator import latlong_to_locator from pyhamtools.locator import latlong_to_locator
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -45,7 +46,7 @@ class WCA(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=row.get("CLEAN NAME", None), name=row.get("CLEAN NAME", None),
ref_type="Castle", ref_type=SIGRefType.CASTLE,
url=f"https://www.cqgma.org/zinfo.php?ref={ref_id}", url=f"https://www.cqgma.org/zinfo.php?ref={ref_id}",
latitude=latitude, latitude=latitude,
longitude=longitude, longitude=longitude,
+2 -1
View File
@@ -1,5 +1,6 @@
from time import sleep from time import sleep
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -33,7 +34,7 @@ class WOTA(FileDownloadSIGRefDataProvider):
id=ref_id, id=ref_id,
name=feature["properties"]["title"], name=feature["properties"]["title"],
url=url, url=url,
ref_type="Summit", ref_type=SIGRefType.SUMMIT,
grid=feature["properties"]["qthLocator"], grid=feature["properties"]["qthLocator"],
latitude=feature["geometry"]["coordinates"][1], latitude=feature["geometry"]["coordinates"][1],
longitude=feature["geometry"]["coordinates"][0], longitude=feature["geometry"]["coordinates"][0],
+2 -1
View File
@@ -1,6 +1,7 @@
import csv import csv
from time import sleep from time import sleep
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -26,7 +27,7 @@ class WWBOTA(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=row.get("Name", None), name=row.get("Name", None),
ref_type="Bunker", ref_type=SIGRefType.BUNKER,
url=f"https://bunkerwiki.org/?s={ref_id}" if ref_id.startswith("B/G") else None, url=f"https://bunkerwiki.org/?s={ref_id}" if ref_id.startswith("B/G") else None,
grid=row["Locator"] if "Locator" in row and row["Locator"] != "" else None, grid=row["Locator"] if "Locator" in row and row["Locator"] != "" else None,
latitude=float(row["Lat"]) if "Lat" in row and row["Lat"] != "" else None, latitude=float(row["Lat"]) if "Lat" in row and row["Lat"] != "" else None,
+2 -1
View File
@@ -1,6 +1,7 @@
import csv import csv
from time import sleep from time import sleep
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -26,7 +27,7 @@ class WWFF(FileDownloadSIGRefDataProvider):
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=row.get("name", None), name=row.get("name", None),
ref_type="Park", ref_type=SIGRefType.PARK,
url=f"https://wwff.co/directory/?showRef={ref_id}", url=f"https://wwff.co/directory/?showRef={ref_id}",
grid=row["iaruLocator"] if "iaruLocator" in row and row["iaruLocator"] != "-" else None, grid=row["iaruLocator"] if "iaruLocator" in row and row["iaruLocator"] != "-" else None,
latitude=float(row["latitude"]) latitude=float(row["latitude"])
+6 -1
View File
@@ -2,6 +2,7 @@ from time import sleep
from pyhamtools.locator import latlong_to_locator from pyhamtools.locator import latlong_to_locator
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from providers.sigrefdata.file_download_sig_ref_data_provider import ( from providers.sigrefdata.file_download_sig_ref_data_provider import (
FileDownloadSIGRefDataProvider, FileDownloadSIGRefDataProvider,
@@ -26,12 +27,16 @@ class ZLOTA(FileDownloadSIGRefDataProvider):
ref_id = ref["code"] ref_id = ref["code"]
latitude = ref["latitude"] latitude = ref["latitude"]
longitude = ref["longitude"] longitude = ref["longitude"]
try:
ref_type = SIGRefType(ref["asset_type"].title().upper())
except ValueError:
ref_type = None
new_ref = SIGRef( new_ref = SIGRef(
sig=self.SIG, sig=self.SIG,
id=ref_id, id=ref_id,
name=ref["name"], name=ref["name"],
ref_type=ref["asset_type"].title(), ref_type=ref_type,
url=f"https://ontheair.nz/assets/{ref_id.replace('/', '_')}", url=f"https://ontheair.nz/assets/{ref_id.replace('/', '_')}",
latitude=latitude, latitude=latitude,
longitude=longitude, longitude=longitude,
+5 -1
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@@ -67,11 +67,15 @@ class GIROIonosonde(SolarConditionsProvider):
def start(self): def start(self):
logger.info(f"Set up query of GIRO ionosonde data API every {POLL_INTERVAL} seconds.") logger.info(f"Set up query of GIRO ionosonde data API every {POLL_INTERVAL} seconds.")
self._thread = Thread(target=self._run, name="GIROIonosondeDataProvider") self._thread = Thread(target=self._run, name="GIROIonosondeDataProvider", daemon=True)
self._thread.start() self._thread.start()
def stop(self): def stop(self):
self._stop_event.set() self._stop_event.set()
if self._thread:
self._thread.join(timeout=35)
if self._thread.is_alive():
logger.warning("GIRO ionosonde worker thread did not exit on time and will be killed.")
def _run(self): def _run(self):
# Real interval at which we poll is the "once per hour" divided by the number of stations, so each one gets # Real interval at which we poll is the "once per hour" divided by the number of stations, so each one gets
@@ -25,11 +25,15 @@ class HTTPSolarConditionsProvider(SolarConditionsProvider):
def start(self): def start(self):
logger.info(f"Set up query of {self.name} solar conditions API every {self._poll_interval!s} seconds.") logger.info(f"Set up query of {self.name} solar conditions API every {self._poll_interval!s} seconds.")
self._thread = Thread(target=self._run, name=f"HTTPSolarConditionsProvider-{self.name}") self._thread = Thread(target=self._run, name=f"HTTPSolarConditionsProvider-{self.name}", daemon=True)
self._thread.start() self._thread.start()
def stop(self): def stop(self):
self._stop_event.set() self._stop_event.set()
if self._thread:
self._thread.join(timeout=35)
if self._thread.is_alive():
logger.warning(f"{self.name} solar conditions worker thread did not exit on time and will be killed.")
def _run(self): def _run(self):
while True: while True:
+5 -1
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@@ -32,11 +32,15 @@ class KC2GProp(SolarConditionsProvider):
def start(self): def start(self):
logger.info(f"Set up query of KC2G ionosonde data API every {POLL_INTERVAL} seconds.") logger.info(f"Set up query of KC2G ionosonde data API every {POLL_INTERVAL} seconds.")
self._thread = Thread(target=self._run, name="KC2GPropProvider") self._thread = Thread(target=self._run, name="KC2GPropProvider", daemon=True)
self._thread.start() self._thread.start()
def stop(self): def stop(self):
self._stop_event.set() self._stop_event.set()
if self._thread:
self._thread.join(timeout=35)
if self._thread.is_alive():
logger.warning("KC2G ionosonde worker thread did not exit on time and will be killed.")
def _run(self): def _run(self):
while True: while True:
@@ -16,7 +16,7 @@ class SolarConditionsProvider:
self.enabled = provider_config.get("enabled", True) self.enabled = provider_config.get("enabled", True)
self.last_update_time = datetime.min.replace(tzinfo=pytz.UTC) self.last_update_time = datetime.min.replace(tzinfo=pytz.UTC)
self.status = "Not Started" if self.enabled else "Disabled" self.status = "Not Started" if self.enabled else "Disabled"
self._solar_conditions = DATA_STORE.solar_conditions self._solar_conditions = DATA_STORE.solar_conditions.get()
def start(self): def start(self):
"""Start the provider. This should return immediately after spawning threads to access the remote resources""" """Start the provider. This should return immediately after spawning threads to access the remote resources"""
@@ -36,3 +36,4 @@ class SolarConditionsProvider:
if hasattr(self._solar_conditions, key): if hasattr(self._solar_conditions, key):
setattr(self._solar_conditions, key, value) setattr(self._solar_conditions, key, value)
self._solar_conditions.infer_descriptions() self._solar_conditions.infer_descriptions()
DATA_STORE.solar_conditions.store()
+55 -35
View File
@@ -1,6 +1,6 @@
import logging import logging
from datetime import datetime from datetime import datetime
from threading import Thread from threading import Event, Thread
import aprslib import aprslib
import pytz import pytz
@@ -17,49 +17,69 @@ class APRSIS(SpotProvider):
def __init__(self, provider_config): def __init__(self, provider_config):
super().__init__("APRS-IS", provider_config) super().__init__("APRS-IS", provider_config)
self._thread = Thread(target=self._connect, name="APRSISSpotProvider") self._thread = None
self._thread.daemon = True
self._aprsis = None self._aprsis = None
self._stop_event = Event()
def start(self): def start(self):
self._thread = Thread(target=self._run, name="APRSISSpotProvider", daemon=True)
self._thread.start() self._thread.start()
def _connect(self): def _run(self):
self._aprsis = aprslib.IS(SERVER_OWNER_CALLSIGN) while not self._stop_event.is_set():
self.status = "Connecting" try:
logger.info("APRS-IS connecting...") self._aprsis = aprslib.IS(SERVER_OWNER_CALLSIGN)
self._aprsis.connect() self.status = "Connecting"
self._aprsis.consumer(self._handle) logger.info("APRS-IS connecting...")
logger.info("APRS-IS connected.") self._aprsis.connect()
logger.info("APRS-IS connected.")
self._aprsis.consumer(self._handle, immortal=True)
except Exception:
if not self._stop_event.is_set():
self.status = "Error"
logger.exception("Exception in APRS-IS provider")
if not self._stop_event.is_set():
self._stop_event.wait(timeout=5)
def stop(self): def stop(self):
self.status = "Shutting down" self.status = "Shutting down"
self._aprsis.close() self._stop_event.set()
self._thread.join() if self._aprsis:
self._aprsis.close()
if self._thread:
self._thread.join(timeout=15)
if self._thread.is_alive():
logger.warning("APRS-IS worker thread did not exit on time and will be killed.")
def _handle(self, data): def _handle(self, data):
# Split SSID in "from" call and store separately try:
from_parts = str(data["from"]).split("-") # Split SSID in "from" call and store separately
dx_call = from_parts[0].upper() from_parts = str(data["from"]).split("-")
dx_ssid = from_parts[1].upper() if len(from_parts) > 1 else None dx_call = from_parts[0].upper()
via_parts = str(data["via"]).split("-") dx_ssid = from_parts[1].upper() if len(from_parts) > 1 else None
de_call = via_parts[0].upper() via_parts = str(data["via"]).split("-")
de_ssid = via_parts[1].upper() if len(via_parts) > 1 else None de_call = via_parts[0].upper()
spot = Spot( de_ssid = via_parts[1].upper() if len(via_parts) > 1 else None
source="APRS-IS", spot = Spot(
dx_call=dx_call, source="APRS-IS",
dx_ssid=dx_ssid, dx_call=dx_call,
de_call=de_call, dx_ssid=dx_ssid,
de_ssid=de_ssid, de_call=de_call,
comment=str(data["comment"]) if "comment" in data else None, de_ssid=de_ssid,
dx_latitude=float(data["latitude"]) if "latitude" in data else None, comment=str(data["comment"]) if "comment" in data else None,
dx_longitude=float(data["longitude"]) if "longitude" in data else None, dx_latitude=float(data["latitude"]) if "latitude" in data else None,
time=datetime.now(pytz.UTC).timestamp(), dx_longitude=float(data["longitude"]) if "longitude" in data else None,
) # APRS-IS spots are live so we can assume spot time is "now" time=datetime.now(pytz.UTC).timestamp(),
) # APRS-IS spots are live so we can assume spot time is "now"
# Add to our list # Add to our list
self._submit(spot) self._submit(spot)
self.status = "OK" self.status = "OK"
self.last_update_time = datetime.now(pytz.UTC) self.last_update_time = datetime.now(pytz.UTC)
logger.debug("Data received from APRS-IS.") logger.debug("Data received from APRS-IS.")
except Exception:
logger.exception("Exception handling APRS-IS packet")
+18 -16
View File
@@ -1,8 +1,7 @@
import logging import logging
import re import re
from datetime import datetime from datetime import datetime
from threading import Thread from threading import Event, Thread
from time import sleep
import pytz import pytz
import telnetlib3 import telnetlib3
@@ -41,23 +40,26 @@ class DXCluster(SpotProvider):
self._LINE_PATTERN_ALLOW_RBN if self._allow_rbn_spots else self._LINE_PATTERN_EXCLUDE_RBN self._LINE_PATTERN_ALLOW_RBN if self._allow_rbn_spots else self._LINE_PATTERN_EXCLUDE_RBN
) )
self._telnet = None self._telnet = None
self._thread = Thread(target=self._handle, name=f"DXClusterSpotProvider-{self.name}") self._thread = None
self._thread.daemon = True self._stop_event = Event()
self._running = True
def start(self): def start(self):
self._thread = Thread(target=self._handle, name=f"DXClusterSpotProvider-{self.name}", daemon=True)
self._thread.start() self._thread.start()
def stop(self): def stop(self):
self._running = False self._stop_event.set()
if self._telnet: if self._telnet:
self._telnet.close() self._telnet.close()
self._thread.join() if self._thread:
self._thread.join(timeout=15)
if self._thread.is_alive():
logger.warning(f"DX Cluster {self._hostname} worker thread did not exit on time and will be killed.")
def _handle(self): def _handle(self):
while self._running: while not self._stop_event.is_set():
connected = False connected = False
while not connected and self._running: while not connected and not self._stop_event.is_set():
try: try:
self.status = "Connecting" self.status = "Connecting"
logger.info(f"DX Cluster {self._hostname} connecting...") logger.info(f"DX Cluster {self._hostname} connecting...")
@@ -69,14 +71,14 @@ class DXCluster(SpotProvider):
except ConnectionRefusedError: except ConnectionRefusedError:
self.status = "Error" self.status = "Error"
logger.warning(f"Connection refused to DX cluster {self._hostname}") logger.warning(f"Connection refused to DX cluster {self._hostname}")
sleep(300) self._stop_event.wait(timeout=300)
except Exception: except Exception:
self.status = "Error" self.status = "Error"
logger.exception(f"Exception while connecting to DX Cluster Provider ({self._hostname}).") logger.exception(f"Exception while connecting to DX Cluster Provider ({self._hostname}).")
sleep(5) self._stop_event.wait(timeout=5)
self.status = "Waiting for Data" self.status = "Waiting for Data"
while connected and self._running: while connected and not self._stop_event.is_set():
try: try:
# Check new telnet info against regular expression # Check new telnet info against regular expression
telnet_output = self._telnet.read_until("\n".encode("latin-1")) telnet_output = self._telnet.read_until("\n".encode("latin-1"))
@@ -106,19 +108,19 @@ class DXCluster(SpotProvider):
except EOFError: except EOFError:
connected = False connected = False
if self._running: if not self._stop_event.is_set():
self.status = "Restarting" self.status = "Restarting"
logger.warning(f"Disconnected from DX Cluster {self._hostname}. Reconnecting...") logger.warning(f"Disconnected from DX Cluster {self._hostname}. Reconnecting...")
sleep(5) self._stop_event.wait(timeout=5)
else: else:
logger.info(f"DX Cluster {self._hostname} shutting down...") logger.info(f"DX Cluster {self._hostname} shutting down...")
self.status = "Shutting down" self.status = "Shutting down"
except Exception: except Exception:
connected = False connected = False
if self._running: if not self._stop_event.is_set():
self.status = "Error" self.status = "Error"
logger.exception(f"Exception in DX Cluster Provider ({self._hostname})") logger.exception(f"Exception in DX Cluster Provider ({self._hostname})")
sleep(5) self._stop_event.wait(timeout=5)
else: else:
logger.info(f"DX Cluster {self._hostname} shutting down...") logger.info(f"DX Cluster {self._hostname} shutting down...")
self.status = "Shutting down" self.status = "Shutting down"
+11 -3
View File
@@ -4,6 +4,7 @@ from datetime import datetime
import pytz import pytz
from core.constants import HTTP_HEADERS from core.constants import HTTP_HEADERS
from core.enums import Mode, SIGRefType
from core.url_data_cache import URLDataCache from core.url_data_cache import URLDataCache
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
@@ -65,7 +66,7 @@ class GMA(HTTPSpotProvider):
if (source_spot["QRG"] != "" and source_spot["QRG"] != "QRT") if (source_spot["QRG"] != "" and source_spot["QRG"] != "QRT")
else None, else None,
# Filter out some weird mode strings # Filter out some weird mode strings
mode=source_spot["MODE"].upper() if "<>" not in source_spot["MODE"] else None, mode=Mode.from_name(source_spot["MODE"].upper()) if "<>" not in source_spot["MODE"] else None,
comment=source_spot["TEXT"], comment=source_spot["TEXT"],
sig_refs=[ sig_refs=[
SIGRef( SIGRef(
@@ -113,24 +114,31 @@ class GMA(HTTPSpotProvider):
match ref_info["reftype"]: match ref_info["reftype"]:
case "Summit": case "Summit":
spot.sig_refs[0].sig = "GMA" spot.sig_refs[0].sig = "GMA"
spot.sig_refs[0].ref_type = SIGRefType.SUMMIT
spot.sig = "GMA" spot.sig = "GMA"
case "IOTA Island": case "IOTA Island":
spot.sig_refs[0].sig = "IOTA" spot.sig_refs[0].sig = "IOTA"
spot.sig_refs[0].ref_type = SIGRefType.ISLAND
spot.sig = "IOTA" spot.sig = "IOTA"
case "GMA Island": case "GMA Island":
spot.sig_refs[0].sig = "GMA Island" spot.sig_refs[0].sig = "GMA Islands"
spot.sig = "GMA Island" spot.sig_refs[0].ref_type = SIGRefType.ISLAND
spot.sig = "GMA Islands"
case "Lighthouse (ILLW)": case "Lighthouse (ILLW)":
spot.sig_refs[0].sig = "ILLW" spot.sig_refs[0].sig = "ILLW"
spot.sig_refs[0].ref_type = SIGRefType.LIGHTHOUSE
spot.sig = "ILLW" spot.sig = "ILLW"
case "Lighthouse (ARLHS)": case "Lighthouse (ARLHS)":
spot.sig_refs[0].sig = "ARLHS" spot.sig_refs[0].sig = "ARLHS"
spot.sig_refs[0].ref_type = SIGRefType.LIGHTHOUSE
spot.sig = "ARLHS" spot.sig = "ARLHS"
case "Castle": case "Castle":
spot.sig_refs[0].sig = "WCA" spot.sig_refs[0].sig = "WCA"
spot.sig_refs[0].ref_type = SIGRefType.CASTLE
spot.sig = "WCA" spot.sig = "WCA"
case "Mill": case "Mill":
spot.sig_refs[0].sig = "MOTA" spot.sig_refs[0].sig = "MOTA"
spot.sig_refs[0].ref_type = SIGRefType.MILL
spot.sig = "MOTA" spot.sig = "MOTA"
case _: case _:
logger.warning( logger.warning(
+3 -1
View File
@@ -7,6 +7,7 @@ import requests
from requests.exceptions import ConnectionError, ConnectTimeout, ReadTimeout from requests.exceptions import ConnectionError, ConnectTimeout, ReadTimeout
from core.constants import HTTP_HEADERS from core.constants import HTTP_HEADERS
from core.enums import Mode, SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -59,7 +60,7 @@ class HEMA(HTTPSpotProvider):
dx_call=spot_items[2].upper(), dx_call=spot_items[2].upper(),
de_call=spotter_comment_match.group(1).upper(), de_call=spotter_comment_match.group(1).upper(),
freq=float(freq_mode_match.group(1)) * 1000000, freq=float(freq_mode_match.group(1)) * 1000000,
mode=freq_mode_match.group(2).upper(), mode=Mode.from_name(freq_mode_match.group(2).upper()),
comment=spotter_comment_match.group(2), comment=spotter_comment_match.group(2),
sig="HEMA", sig="HEMA",
sig_refs=[ sig_refs=[
@@ -69,6 +70,7 @@ class HEMA(HTTPSpotProvider):
name=spot_items[4], name=spot_items[4],
latitude=float(spot_items[7]), latitude=float(spot_items[7]),
longitude=float(spot_items[8]), longitude=float(spot_items[8]),
ref_type=SIGRefType.SUMMIT,
) )
], ],
time=datetime.strptime(spot_items[0], "%d/%m/%Y %H:%M") time=datetime.strptime(spot_items[0], "%d/%m/%Y %H:%M")
+5 -1
View File
@@ -28,12 +28,16 @@ class HTTPSpotProvider(SpotProvider):
# Fire off the polling thread. It will poll immediately on startup, then sleep for poll_interval between # 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. # subsequent polls, so start() returns immediately and the application can continue starting.
logger.info(f"Set up query of {self.name} spot API every {self._poll_interval!s} seconds.") logger.info(f"Set up query of {self.name} spot API every {self._poll_interval!s} seconds.")
self._thread = Thread(target=self._run, name=f"HTTPSpotProvider-{self.name}") self._thread = Thread(target=self._run, name=f"HTTPSpotProvider-{self.name}", daemon=True)
self._thread.start() self._thread.start()
def stop(self): def stop(self):
self._stop_event.set() self._stop_event.set()
self._wakeup_event.set() self._wakeup_event.set()
if self._thread:
self._thread.join(timeout=35)
if self._thread.is_alive():
logger.warning(f"{self.name} spot worker thread did not exit on time and will be killed.")
def force_poll(self): def force_poll(self):
"""Trigger an immediate poll without waiting for the normal interval.""" """Trigger an immediate poll without waiting for the normal interval."""
+3 -1
View File
@@ -1,5 +1,6 @@
from datetime import datetime from datetime import datetime
from core.enums import Mode, SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -31,7 +32,7 @@ class LLOTA(HTTPSpotProvider):
dx_call=source_spot["callsign"].upper(), dx_call=source_spot["callsign"].upper(),
de_call=spotter.upper() if spotter else None, de_call=spotter.upper() if spotter else None,
freq=float(source_spot["frequency"]) * 1000000, freq=float(source_spot["frequency"]) * 1000000,
mode=source_spot["mode"].upper(), mode=Mode.from_name(source_spot["mode"].upper()),
comment=comment, comment=comment,
sig="LLOTA", sig="LLOTA",
sig_refs=[ sig_refs=[
@@ -39,6 +40,7 @@ class LLOTA(HTTPSpotProvider):
id=source_spot["reference"], id=source_spot["reference"],
sig="LLOTA", sig="LLOTA",
name=source_spot["reference_name"], name=source_spot["reference_name"],
ref_type=SIGRefType.LAKE,
) )
], ],
time=datetime.fromisoformat(source_spot["updated_at"].replace("Z", "+00:00")).timestamp(), time=datetime.fromisoformat(source_spot["updated_at"].replace("Z", "+00:00")).timestamp(),
+3 -2
View File
@@ -6,6 +6,7 @@ import pytz
import requests import requests
from core.constants import HTTP_HEADERS from core.constants import HTTP_HEADERS
from core.enums import Mode
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -19,7 +20,6 @@ class ParksNPeaks(HTTPSpotProvider):
POLL_INTERVAL_SEC = 120 POLL_INTERVAL_SEC = 120
SPOTS_URL = "https://www.parksnpeaks.org/api/ALL" SPOTS_URL = "https://www.parksnpeaks.org/api/ALL"
SUBMIT_URL = "https://www.parksnpeaks.org/api/SPOT/" SUBMIT_URL = "https://www.parksnpeaks.org/api/SPOT/"
SIOTA_LIST_URL = "https://www.silosontheair.com/data/silos.csv"
SUBMITTABLE_SIGS = [ SUBMITTABLE_SIGS = [
"POTA", "POTA",
"SOTA", "SOTA",
@@ -52,7 +52,7 @@ class ParksNPeaks(HTTPSpotProvider):
if (source_spot["actFreq"] != "") if (source_spot["actFreq"] != "")
else None, else None,
# Seen PNP spots with empty frequency, and with comma-separated thousands digits # Seen PNP spots with empty frequency, and with comma-separated thousands digits
mode=source_spot["actMode"].upper(), mode=Mode.from_name(source_spot["actMode"].upper()),
comment=source_spot["actComments"], comment=source_spot["actComments"],
time=datetime.strptime(source_spot["actTime"], "%Y-%m-%d %H:%M:%S") time=datetime.strptime(source_spot["actTime"], "%Y-%m-%d %H:%M:%S")
.replace(tzinfo=pytz.UTC) .replace(tzinfo=pytz.UTC)
@@ -87,6 +87,7 @@ class ParksNPeaks(HTTPSpotProvider):
"POTA", "POTA",
"SOTA", "SOTA",
"WWFF", "WWFF",
"HEMA",
"SIOTA", "SIOTA",
"ZLOTA", "ZLOTA",
"KRMNPA", "KRMNPA",
+4 -2
View File
@@ -4,6 +4,7 @@ import pytz
import requests import requests
from core.constants import HTTP_HEADERS from core.constants import HTTP_HEADERS
from core.enums import Mode, SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -29,8 +30,8 @@ class POTA(HTTPSpotProvider):
source_id=source_spot["spotId"], source_id=source_spot["spotId"],
dx_call=source_spot["activator"].upper(), dx_call=source_spot["activator"].upper(),
de_call=source_spot["spotter"].upper(), de_call=source_spot["spotter"].upper(),
freq=float(source_spot["frequency"]) * 1000, freq=float(source_spot["frequency"]) * 1000 if source_spot["frequency"] != "INVALID" else None,
mode=source_spot["mode"].upper(), mode=Mode.from_name(source_spot["mode"].upper()),
comment=source_spot["comments"], comment=source_spot["comments"],
sig="POTA", sig="POTA",
sig_refs=[ sig_refs=[
@@ -40,6 +41,7 @@ class POTA(HTTPSpotProvider):
name=source_spot["name"], name=source_spot["name"],
latitude=source_spot["latitude"], latitude=source_spot["latitude"],
longitude=source_spot["longitude"], longitude=source_spot["longitude"],
ref_type=SIGRefType.PARK
) )
], ],
time=datetime.strptime(source_spot["spotTime"], "%Y-%m-%dT%H:%M:%S") time=datetime.strptime(source_spot["spotTime"], "%Y-%m-%dT%H:%M:%S")
+17 -15
View File
@@ -1,8 +1,7 @@
import logging import logging
import re import re
from datetime import datetime from datetime import datetime
from threading import Thread from threading import Event, Thread
from time import sleep
import pytz import pytz
import telnetlib3 import telnetlib3
@@ -30,23 +29,26 @@ class RBN(SpotProvider):
super().__init__(name, provider_config) super().__init__(name, provider_config)
self._port = provider_config["port"] self._port = provider_config["port"]
self._telnet = None self._telnet = None
self._thread = Thread(target=self._handle, name=f"RBNSpotProvider-{self.name}") self._thread = None
self._thread.daemon = True self._stop_event = Event()
self._running = True
def start(self): def start(self):
self._thread = Thread(target=self._handle, name=f"RBNSpotProvider-{self.name}", daemon=True)
self._thread.start() self._thread.start()
def stop(self): def stop(self):
self._running = False self._stop_event.set()
if self._telnet: if self._telnet:
self._telnet.close() self._telnet.close()
self._thread.join() if self._thread:
self._thread.join(timeout=15)
if self._thread.is_alive():
logger.warning(f"RBN (port {self._port!s}) worker thread did not exit on time and will be killed.")
def _handle(self): def _handle(self):
while self._running: while not self._stop_event.is_set():
connected = False connected = False
while not connected and self._running: while not connected and not self._stop_event.is_set():
try: try:
self.status = "Connecting" self.status = "Connecting"
logger.info(f"RBN port {self._port!s} connecting...") logger.info(f"RBN port {self._port!s} connecting...")
@@ -58,10 +60,10 @@ class RBN(SpotProvider):
except Exception: except Exception:
self.status = "Error" self.status = "Error"
logger.exception(f"Exception while connecting to RBN (port {self._port!s}).") logger.exception(f"Exception while connecting to RBN (port {self._port!s}).")
sleep(5) self._stop_event.wait(timeout=5)
self.status = "Waiting for Data" self.status = "Waiting for Data"
while connected and self._running: while connected and not self._stop_event.is_set():
try: try:
# Check new telnet info against regular expression # Check new telnet info against regular expression
telnet_output = self._telnet.read_until("\n".encode("latin-1")) telnet_output = self._telnet.read_until("\n".encode("latin-1"))
@@ -91,19 +93,19 @@ class RBN(SpotProvider):
except EOFError: except EOFError:
connected = False connected = False
if self._running: if not self._stop_event.is_set():
self.status = "Restarting" self.status = "Restarting"
logger.warning(f"Disconnected from RBN provider (port {self._port!s}). Reconnecting...") logger.warning(f"Disconnected from RBN provider (port {self._port!s}). Reconnecting...")
sleep(5) self._stop_event.wait(timeout=5)
else: else:
logger.info(f"RBN provider (port {self._port!s}) shutting down...") logger.info(f"RBN provider (port {self._port!s}) shutting down...")
self.status = "Shutting down" self.status = "Shutting down"
except Exception: except Exception:
connected = False connected = False
if self._running: if not self._stop_event.is_set():
self.status = "Error" self.status = "Error"
logger.exception(f"Exception in RBN provider (port {self._port!s})") logger.exception(f"Exception in RBN provider (port {self._port!s})")
sleep(5) self._stop_event.wait(timeout=5)
else: else:
logger.info(f"RBN provider (port {self._port!s}) shutting down...") logger.info(f"RBN provider (port {self._port!s}) shutting down...")
self.status = "Shutting down" self.status = "Shutting down"
+5 -8
View File
@@ -4,7 +4,8 @@ from datetime import datetime
import requests import requests
from requests.exceptions import ConnectionError, ConnectTimeout, ReadTimeout from requests.exceptions import ConnectionError, ConnectTimeout, ReadTimeout
from core.constants import DV_SUB_MODES, HTTP_HEADERS, SSB_SUB_MODES from core.constants import HTTP_HEADERS
from core.enums import Mode, SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -53,7 +54,7 @@ class SOTA(HTTPSpotProvider):
if (source_spot["frequency"] is not None) if (source_spot["frequency"] is not None)
else None, else None,
# Seen SOTA spots with no frequency! # Seen SOTA spots with no frequency!
mode=source_spot["mode"].upper(), mode=Mode.from_name(source_spot["mode"].upper()),
comment=source_spot["comments"], comment=source_spot["comments"],
sig="SOTA", sig="SOTA",
sig_refs=[ sig_refs=[
@@ -64,6 +65,7 @@ class SOTA(HTTPSpotProvider):
latitude=source_spot["latitude"], latitude=source_spot["latitude"],
longitude=source_spot["longitude"], longitude=source_spot["longitude"],
activation_score=source_spot["points"], activation_score=source_spot["points"],
ref_type=SIGRefType.SUMMIT,
) )
], ],
dx_latitude=source_spot["latitude"], dx_latitude=source_spot["latitude"],
@@ -98,12 +100,7 @@ class SOTA(HTTPSpotProvider):
# https://github.com/ham2k/app-polo/blob/main/src/extensions/activities/sota/SOTAPostSelfSpot.js # https://github.com/ham2k/app-polo/blob/main/src/extensions/activities/sota/SOTAPostSelfSpot.js
mode = spot.mode mode = spot.mode
if mode and mode not in self.VALID_MODES: if mode and mode not in self.VALID_MODES:
if mode in SSB_SUB_MODES: mode = "Data"
mode = "SSB"
elif mode in DV_SUB_MODES:
mode = "DV"
else:
mode = "Data"
body = { body = {
"activatorCallsign": spot.dx_call, "activatorCallsign": spot.dx_call,
+1 -1
View File
@@ -65,7 +65,7 @@ class SSESpotProvider(SpotProvider):
self._url, self._url,
headers=HTTP_HEADERS, headers=HTTP_HEADERS,
latest_event_id=self._last_event_id, latest_event_id=self._last_event_id,
timeout=10, timeout=30,
on_open=self._on_open, on_open=self._on_open,
on_error=self._on_error, on_error=self._on_error,
) as event_source: ) as event_source:
+6 -6
View File
@@ -3,7 +3,8 @@ from datetime import datetime
import requests import requests
from core.constants import HTTP_HEADERS, SSB_SUB_MODES from core.constants import HTTP_HEADERS
from core.enums import LocationSourceForSpot, Mode, SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -55,7 +56,7 @@ class Tiles(HTTPSpotProvider):
# No separate spotter callsign, assume all spots are self-spots # No separate spotter callsign, assume all spots are self-spots
de_call=source_spot["call_sign"].upper(), de_call=source_spot["call_sign"].upper(),
freq=freq, freq=freq,
mode=source_spot["mode"].upper(), mode=Mode.from_name(source_spot["mode"].upper()),
comment=source_spot["notes"], comment=source_spot["notes"],
sig="Tiles", sig="Tiles",
# 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. # 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.
@@ -67,13 +68,14 @@ class Tiles(HTTPSpotProvider):
name=source_spot["maidenhead_grid"], name=source_spot["maidenhead_grid"],
latitude=source_spot["latitude"], latitude=source_spot["latitude"],
longitude=source_spot["longitude"], longitude=source_spot["longitude"],
ref_type=SIGRefType.GRID
) )
], ],
time=datetime.fromisoformat(source_spot["created_at"].replace("Z", "+00:00")).timestamp(), time=datetime.fromisoformat(source_spot["created_at"].replace("Z", "+00:00")).timestamp(),
dx_grid=source_spot["maidenhead_grid"], dx_grid=source_spot["maidenhead_grid"],
dx_latitude=source_spot["latitude"], dx_latitude=source_spot["latitude"],
dx_longitude=source_spot["longitude"], dx_longitude=source_spot["longitude"],
dx_location_source="GRID", dx_location_source=LocationSourceForSpot.GRID,
) )
# Add to our list. Don't worry about de-duping, removing old spots etc. at this point; other code will do # Add to our list. Don't worry about de-duping, removing old spots etc. at this point; other code will do
@@ -92,9 +94,7 @@ class Tiles(HTTPSpotProvider):
if spot.mode: if spot.mode:
mode = spot.mode mode = spot.mode
if mode not in self.VALID_MODES: if mode not in self.VALID_MODES:
if mode in SSB_SUB_MODES: if mode == "OLIVIA":
mode = "SSB"
elif mode == "OLIVIA":
mode = "Olivia" mode = "Olivia"
elif mode == "JS8": elif mode == "JS8":
mode = "JS8Call" mode = "JS8Call"
+7 -4
View File
@@ -1,6 +1,9 @@
import json import json
from datetime import datetime from datetime import datetime
import pytz
from core.enums import SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -32,10 +35,10 @@ class Towers(HTTPSpotProvider):
freq=likely_freq, freq=likely_freq,
comment=source_spot["comment"], comment=source_spot["comment"],
sig="Towers", sig="Towers",
sig_refs=[SIGRef(id=source_spot["ref"], sig="Towers")], sig_refs=[SIGRef(id=source_spot["ref"], sig="Towers", ref_type=SIGRefType.TOWER)],
time=datetime.strptime( time=datetime.strptime(response_json["updated"][:10] + source_spot["time"], "%Y-%m-%d%H:%M")
response_json["updated"][:10] + source_spot["time"], "%Y-%m-%d%H:%M" .replace(tzinfo=pytz.utc)
).timestamp(), .timestamp(),
) )
# Add to our list. Don't worry about de-duping, removing old spots etc. at this point; other code will do # Add to our list. Don't worry about de-duping, removing old spots etc. at this point; other code will do
+2 -1
View File
@@ -3,6 +3,7 @@ from datetime import datetime
import pytz import pytz
from core.enums import Mode
from data.spot import Spot from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -77,7 +78,7 @@ class UKPacketNet(HTTPSpotProvider):
dx_call=heard["callsign"].upper(), dx_call=heard["callsign"].upper(),
de_call=node["callsign"].upper(), de_call=node["callsign"].upper(),
freq=freq, freq=freq,
mode="PKT", mode=Mode.PKT,
comment=comment, comment=comment,
time=datetime.strptime(heard["lastHeard"], "%Y-%m-%d %H:%M:%S") time=datetime.strptime(heard["lastHeard"], "%Y-%m-%d %H:%M:%S")
.replace(tzinfo=pytz.UTC) .replace(tzinfo=pytz.UTC)
+25 -10
View File
@@ -1,7 +1,6 @@
import logging import logging
from datetime import datetime from datetime import datetime
from threading import Thread from threading import Event, Thread
from time import sleep
import pytz import pytz
from websocket import create_connection from websocket import create_connection
@@ -20,22 +19,24 @@ class WebsocketSpotProvider(SpotProvider):
self._url = url self._url = url
self._ws = None self._ws = None
self._thread = None self._thread = None
self._stopped = False self._stop_event = Event()
self._last_event_id = None self._last_event_id = None
def start(self): def start(self):
logger.info(f"Set up websocket connection to {self.name} spot API.") logger.info(f"Set up websocket connection to {self.name} spot API.")
self._stopped = False self._stop_event.clear()
self._thread = Thread(target=self._run, name=f"WebsocketSpotProvider-{self.name}") self._thread = Thread(target=self._run, name=f"WebsocketSpotProvider-{self.name}")
self._thread.daemon = True self._thread.daemon = True
self._thread.start() self._thread.start()
def stop(self): def stop(self):
self._stopped = True self._stop_event.set()
if self._ws: if self._ws:
self._ws.close() self._ws.close()
if self._thread: if self._thread:
self._thread.join() self._thread.join(timeout=15)
if self._thread.is_alive():
logger.warning(f"{self.name} websocket worker thread did not exit on time and will be killed.")
def _on_open(self): def _on_open(self):
self.status = "Waiting for Data" self.status = "Waiting for Data"
@@ -44,14 +45,19 @@ class WebsocketSpotProvider(SpotProvider):
self.status = "Connecting" self.status = "Connecting"
def _run(self): def _run(self):
while not self._stopped: while not self._stop_event.is_set():
try: try:
logger.debug(f"Connecting to {self.name} spot API...") logger.debug(f"Connecting to {self.name} spot API...")
self.status = "Connecting" self.status = "Connecting"
self._ws = create_connection(self._url, header=HTTP_HEADERS) self._ws = create_connection(self._url, header=HTTP_HEADERS)
self.status = "Connected" self.status = "Connected"
data = self._ws.recv()
if data: # Keep reading from this same connection until it drops or we're asked to stop, rather than
# reconnecting for every message.
while not self._stop_event.is_set():
data = self._ws.recv()
if not data:
break
try: try:
new_spot = self._ws_message_to_spot(data) new_spot = self._ws_message_to_spot(data)
if new_spot: if new_spot:
@@ -69,7 +75,16 @@ class WebsocketSpotProvider(SpotProvider):
logger.exception(f"Exception in Websocket Spot Provider ({self.name})") logger.exception(f"Exception in Websocket Spot Provider ({self.name})")
else: else:
self.status = "Disconnected" self.status = "Disconnected"
sleep(5) # Wait before trying to reconnect finally:
if self._ws:
try:
self._ws.close()
except Exception:
# No problem, we were getting rid of this object anyway.
pass
self._ws = None
if not self._stop_event.is_set():
self._stop_event.wait(timeout=5) # Wait before trying to reconnect
def _ws_message_to_spot(self, b): def _ws_message_to_spot(self, b):
"""Convert a WS message received from the API into a spot. The exact message data (in bytes) is provided here so the """Convert a WS message received from the API into a spot. The exact message data (in bytes) is provided here so the
+6 -3
View File
@@ -8,6 +8,7 @@ import pytz
from rss_parser import Parser from rss_parser import Parser
from rss_parser.models.rss import RSS from rss_parser.models.rss import RSS
from core.enums import Mode, SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -76,7 +77,9 @@ class WOTA(HTTPSpotProvider):
except Exception: except Exception:
logger.warning(f"Could not parse WOTA spot description: {source_spot.description}") logger.warning(f"Could not parse WOTA spot description: {source_spot.description}")
time = datetime.strptime(source_spot.pub_date.content, self.RSS_DATE_TIME_FORMAT).astimezone(pytz.UTC) time = datetime.strptime(source_spot.pub_date.content, self.RSS_DATE_TIME_FORMAT).astimezone(
pytz.UTC
)
# Convert to our spot format # Convert to our spot format
spot = Spot( spot = Spot(
@@ -85,10 +88,10 @@ class WOTA(HTTPSpotProvider):
dx_call=dx_call, dx_call=dx_call,
de_call=spotter, de_call=spotter,
freq=freq_hz, freq=freq_hz,
mode=mode, mode=Mode.from_name(mode),
comment=comment, comment=comment,
sig="WOTA", sig="WOTA",
sig_refs=[SIGRef(id=ref, sig="WOTA", name=ref_name)] if ref else [], sig_refs=[SIGRef(id=ref, sig="WOTA", name=ref_name, ref_type=SIGRefType.SUMMIT)] if ref else [],
time=time.timestamp(), time=time.timestamp(),
) )
+3 -1
View File
@@ -1,6 +1,7 @@
import json import json
from datetime import datetime from datetime import datetime
from core.enums import Mode, SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
from providers.spot.sse_spot_provider import SSESpotProvider from providers.spot.sse_spot_provider import SSESpotProvider
@@ -26,6 +27,7 @@ class WWBOTA(SSESpotProvider):
name=ref["name"], name=ref["name"],
latitude=ref["lat"], latitude=ref["lat"],
longitude=ref["long"], longitude=ref["long"],
ref_type=SIGRefType.BUNKER,
) )
refs.append(sigref) refs.append(sigref)
@@ -34,7 +36,7 @@ class WWBOTA(SSESpotProvider):
dx_call=source_spot["call"].upper(), dx_call=source_spot["call"].upper(),
de_call=source_spot["spotter"].upper(), de_call=source_spot["spotter"].upper(),
freq=float(source_spot["freq"]) * 1000000, freq=float(source_spot["freq"]) * 1000000,
mode=source_spot["mode"].upper() if "mode" in source_spot else None, mode=Mode.from_name(source_spot["mode"].upper()) if "mode" in source_spot else None,
comment=source_spot["comment"], comment=source_spot["comment"],
sig="WWBOTA", sig="WWBOTA",
sig_refs=refs, sig_refs=refs,
+3 -1
View File
@@ -2,6 +2,7 @@ from datetime import datetime
import pytz import pytz
from core.enums import Mode, SIGRefType
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -27,7 +28,7 @@ class WWFF(HTTPSpotProvider):
dx_call=source_spot["activator"].upper(), dx_call=source_spot["activator"].upper(),
de_call=source_spot["spotter"].upper(), de_call=source_spot["spotter"].upper(),
freq=float(source_spot["frequency_khz"]) * 1000, freq=float(source_spot["frequency_khz"]) * 1000,
mode=source_spot["mode"].upper(), mode=Mode.from_name(source_spot["mode"].upper()),
comment=source_spot["remarks"], comment=source_spot["remarks"],
sig="WWFF", sig="WWFF",
sig_refs=[ sig_refs=[
@@ -37,6 +38,7 @@ class WWFF(HTTPSpotProvider):
name=source_spot["reference_name"], name=source_spot["reference_name"],
latitude=source_spot["latitude"], latitude=source_spot["latitude"],
longitude=source_spot["longitude"], longitude=source_spot["longitude"],
ref_type=SIGRefType.PARK
) )
], ],
time=datetime.fromtimestamp(source_spot["spot_time"], tz=pytz.UTC).timestamp(), time=datetime.fromtimestamp(source_spot["spot_time"], tz=pytz.UTC).timestamp(),
+2 -1
View File
@@ -3,6 +3,7 @@ from datetime import datetime
import pytz import pytz
from core.enums import Mode
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
from providers.spot.websocket_spot_provider import WebsocketSpotProvider from providers.spot.websocket_spot_provider import WebsocketSpotProvider
@@ -34,7 +35,7 @@ class XOTA(WebsocketSpotProvider):
source_id=source_spot["id"], source_id=source_spot["id"],
dx_call=source_spot["stationCallSign"].upper(), dx_call=source_spot["stationCallSign"].upper(),
freq=float(source_spot["freq"]) * 1000, freq=float(source_spot["freq"]) * 1000,
mode=source_spot["mode"].upper(), mode=Mode.from_name(source_spot["mode"].upper()),
sig=self.SIG, sig=self.SIG,
sig_refs=[ sig_refs=[
SIGRef( SIGRef(
+2 -1
View File
@@ -2,6 +2,7 @@ from datetime import datetime
import pytz import pytz
from core.enums import Mode
from data.sig_ref import SIGRef from data.sig_ref import SIGRef
from data.spot import Spot from data.spot import Spot
from providers.spot.http_spot_provider import HTTPSpotProvider from providers.spot.http_spot_provider import HTTPSpotProvider
@@ -32,7 +33,7 @@ class ZLOTA(HTTPSpotProvider):
dx_call=source_spot["activator"].upper(), dx_call=source_spot["activator"].upper(),
de_call=source_spot["spotter"].upper(), de_call=source_spot["spotter"].upper(),
freq=freq_hz, freq=freq_hz,
mode=source_spot["mode"].upper().strip(), mode=Mode.from_name(source_spot["mode"].upper().strip()),
comment=source_spot["comments"], comment=source_spot["comments"],
sig="ZLOTA", sig="ZLOTA",
sig_refs=[ sig_refs=[
@@ -29,11 +29,15 @@ class FileDownloadStaticDataProvider(StaticDataProvider):
# Fire off the polling thread. It will poll immediately on startup, then sleep for poll_interval between # 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. # subsequent polls, so start() returns immediately and the application can continue starting.
logger.info(f"Set up query of {self.name} static reference data every {self._poll_interval!s} days.") logger.info(f"Set up query of {self.name} static reference data every {self._poll_interval!s} days.")
self._thread = Thread(target=self._run, name=f"FileDownloadStaticDataProvider-{self.name}") self._thread = Thread(target=self._run, name=f"FileDownloadStaticDataProvider-{self.name}", daemon=True)
self._thread.start() self._thread.start()
def stop(self): def stop(self):
self._stop_event.set() self._stop_event.set()
if self._thread:
self._thread.join(timeout=35)
if self._thread.is_alive():
logger.warning(f"{self.name} static data worker thread did not exit on time and will be killed.")
def _run(self): def _run(self):
while True: while True:
+3 -3
View File
@@ -1,8 +1,8 @@
[project] [project]
name = "Spothole" name = "spothole"
version = "2.0.3" version = "2.1"
authors = [ authors = [
{ name="Ian Renton", email="ian@ianrenton.com" }, { name = "Ian Renton", email = "ian@ianrenton.com" },
] ]
description = "Spothole is a utility to aggregate \"spots\" from amateur radio DX clusters and xOTA spotting sites, and provide an open JSON API as well as a website to browse the data." description = "Spothole is a utility to aggregate \"spots\" from amateur radio DX clusters and xOTA spotting sites, and provide an open JSON API as well as a website to browse the data."
readme = "README.md" readme = "README.md"
+7 -2
View File
@@ -1,6 +1,6 @@
pyyaml~=6.0.3 pyyaml~=6.0.3
requests-cache~=1.2.1 requests-cache~=1.2.1
pyhamtools~=0.12.0 pyhamtools~=0.13.2
telnetlib3~=2.0.8 telnetlib3~=2.0.8
pytz~=2025.2 pytz~=2025.2
requests~=2.32.4 requests~=2.32.4
@@ -16,8 +16,13 @@ beautifulsoup4~=4.14.2
websocket-client~=1.8.0 websocket-client~=1.8.0
tornado~=6.4.2 tornado~=6.4.2
tornado_eventsource~=3.0.0 tornado_eventsource~=3.0.0
pandas~=3.0.0
geopandas~=0.13.2 geopandas~=0.13.2
simplejson~=4.1.1 simplejson~=4.1.1
cachetools~=7.1.6 cachetools~=7.1.6
fastkml~=1.4.0 fastkml~=1.4.0
ruff~=0.16.3 ruff~=0.16.3
pdfplumber~=0.11.10
xlrd~=2.0.2
openpyxl~=3.1.5
icalendar~=7.3.0

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