The previous attempt to flip `-DUSE_PNG=ON -DUSE_AEC=ON` on wgrib2
broke the image build because wgrib2 v3.6.0's CMakeLists.txt
line 94 forces `find_package(g2c 1.9.0 REQUIRED)` whenever PNG or
JPEG2000 is enabled, and NCEPLIBS-g2c wasn't installed in the
wgrib2-builder stage.
Install NCEPLIBS-g2c v1.9.0 (the version wgrib2 asks for) in the
wgrib2-builder stage ahead of wgrib2 itself, with:
- USE_PNG=ON (needs libpng-dev, already present)
- USE_AEC=ON (needs libaec-dev, already present)
- USE_Jasper=OFF (default ON — would need libjasper-dev
and another runtime dep we don't need)
- USE_OpenJPEG=OFF (same rationale)
- BUILD_G2C=OFF (new experimental API, not needed here)
Then flip wgrib2's PNG/AEC flags back on. wgrib2's binary links
dynamically against libg2c.so so the final stage copies
/usr/local/lib/libg2c.so* from the builder and refreshes the
loader cache with ldconfig.
With the decoder restored, re-add MrmsFetchWorker to the prod
cron in runtime.exs. That worker pulls NOAA MRMS PrecipRate grids
every 2 minutes, which use GRIB2 DRT 5.41 (PNG-compressed) — the
whole reason we needed the PNG decoder in the first place. ASOS
nudges will now have a live radar overlay again.
239 lines
9.7 KiB
Elixir
239 lines
9.7 KiB
Elixir
import Config
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# config/runtime.exs is executed for all environments, including
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# during releases. It is executed after compilation and before the
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# system starts, so it is typically used to load production configuration
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# and secrets from environment variables or elsewhere. Do not define
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# any compile-time configuration in here, as it won't be applied.
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# The block below contains prod specific runtime configuration.
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# ## Using releases
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#
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# If you use `mix release`, you need to explicitly enable the server
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# by passing the PHX_SERVER=true when you start it:
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#
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# PHX_SERVER=true bin/microwaveprop start
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#
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# Alternatively, you can use `mix phx.gen.release` to generate a `bin/server`
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# script that automatically sets the env var above.
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alias Microwaveprop.Workers.CanadianSoundingFetchWorker
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if System.get_env("PHX_SERVER") do
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config :microwaveprop, MicrowavepropWeb.Endpoint, server: true
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end
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config :microwaveprop, MicrowavepropWeb.Endpoint, http: [port: String.to_integer(System.get_env("PORT", "4000"))]
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if qrz_username = System.get_env("QRZ_USERNAME") do
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config :microwaveprop, Microwaveprop.Qrz.Client,
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username: qrz_username,
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password: System.get_env("QRZ_PASSWORD") || raise("QRZ_PASSWORD missing"),
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agent: System.get_env("QRZ_AGENT", "microwaveprop/1.0")
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end
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if google_api_key = System.get_env("GOOGLE_API_KEY") do
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config :microwaveprop, Microwaveprop.Geocoder, api_key: google_api_key
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end
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if config_env() == :prod do
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database_url =
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System.get_env("DATABASE_URL") ||
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raise """
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environment variable DATABASE_URL is missing.
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For example: ecto://USER:PASS@HOST/DATABASE
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"""
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maybe_ipv6 = if System.get_env("ECTO_IPV6") in ~w(true 1), do: [:inet6], else: []
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# The secret key base is used to sign/encrypt cookies and other secrets.
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# A default value is used in config/dev.exs and config/test.exs but you
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# want to use a different value for prod and you most likely don't want
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# to check this value into version control, so we use an environment
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# variable instead.
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secret_key_base =
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System.get_env("SECRET_KEY_BASE") ||
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raise """
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environment variable SECRET_KEY_BASE is missing.
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You can generate one by calling: mix phx.gen.secret
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"""
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host = System.get_env("PHX_HOST") || "example.com"
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# ## SSL Support
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#
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# To get SSL working, you will need to add the `https` key
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# to your endpoint configuration:
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#
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# config :microwaveprop, MicrowavepropWeb.Endpoint,
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# https: [
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# ...,
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# port: 443,
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# cipher_suite: :strong,
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# keyfile: System.get_env("SOME_APP_SSL_KEY_PATH"),
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# certfile: System.get_env("SOME_APP_SSL_CERT_PATH")
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# ]
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#
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# The `cipher_suite` is set to `:strong` to support only the
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# latest and more secure SSL ciphers. This means old browsers
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# and clients may not be supported. You can set it to
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# `:compatible` for wider support.
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#
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# `:keyfile` and `:certfile` expect an absolute path to the key
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# and cert in disk or a relative path inside priv, for example
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# "priv/ssl/server.key". For all supported SSL configuration
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# options, see https://hexdocs.pm/plug/Plug.SSL.html#configure/1
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#
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# We also recommend setting `force_ssl` in your config/prod.exs,
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# ensuring no data is ever sent via http, always redirecting to https:
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#
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# config :microwaveprop, MicrowavepropWeb.Endpoint,
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# force_ssl: [hsts: true]
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#
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# Check `Plug.SSL` for all available options in `force_ssl`.
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# ## Configuring the mailer
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#
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# In production you need to configure the mailer to use a different adapter.
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# Here is an example configuration for Mailgun:
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#
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# config :microwaveprop, Microwaveprop.Mailer,
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# adapter: Swoosh.Adapters.Mailgun,
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# tls: :always + explicit tls_options is required — SMTP2GO's endpoint sits
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# behind a wildcard cert (*.smtp2go.com) so SNI is mandatory, and gen_smtp
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# won't set it without explicit server_name_indication. Without this, the
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# handshake fails with an "unexpected_message" TLS alert.
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email_server = System.get_env("EMAIL_SERVER")
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config :libcluster,
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topologies: [
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k8s: [
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strategy: Cluster.Strategy.Kubernetes,
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config: [
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mode: :ip,
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kubernetes_ip_lookup_mode: :pods,
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kubernetes_node_basename: "microwaveprop",
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kubernetes_selector: "app=prop",
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kubernetes_namespace: "prop"
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]
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]
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]
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config :microwaveprop, Microwaveprop.Mailer,
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adapter: Swoosh.Adapters.SMTP,
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relay: email_server,
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port: 587,
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username: System.get_env("EMAIL_USERNAME"),
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password: System.get_env("EMAIL_PASSWORD"),
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tls: :always,
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tls_options: [
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server_name_indication: String.to_charlist(email_server || ""),
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versions: [:"tlsv1.2", :"tlsv1.3"],
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verify: :verify_none
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],
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auth: :always
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config :microwaveprop, Microwaveprop.Repo,
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# ssl: true,
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url: database_url,
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pool_size: String.to_integer(System.get_env("POOL_SIZE") || "20"),
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# For machines with several cores, consider starting multiple pools of `pool_size`
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# pool_count: 4,
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socket_options: maybe_ipv6
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config :microwaveprop, MicrowavepropWeb.Endpoint,
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# SSL terminated by Cloudflare tunnel; generated URLs still use https
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url: [host: host, port: 443, scheme: "https"],
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http: [
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# Enable IPv6 and bind on all interfaces.
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# Set it to {0, 0, 0, 0, 0, 0, 0, 1} for local network only access.
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# See the documentation on https://hexdocs.pm/bandit/Bandit.html#t:options/0
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# for details about using IPv6 vs IPv4 and loopback vs public addresses.
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ip: {0, 0, 0, 0, 0, 0, 0, 0}
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],
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secret_key_base: secret_key_base
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# Production Oban: live scoring, polling, and on-demand QSO enrichment.
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# Runs on the Oban Pro Smart engine so we can use global_limit / rate_limit
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# to protect rate-limited upstreams (Copernicus CDS in particular).
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config :microwaveprop, Oban,
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engine: Oban.Pro.Engines.Smart,
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# Per-pod concurrency (×3 pods = effective cluster total)
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queues: [
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propagation: 1,
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commercial: 1,
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solar: 1,
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weather: 3,
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hrrr: 1,
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terrain: 3,
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iemre: 3,
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era5: 2,
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# Split-worker ERA5 pipeline:
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#
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# `era5_submit` runs Era5SubmitWorker, which POSTs two CDS requests
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# and writes an era5_cds_jobs row. Each job is ~1s of real work, so
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# local_limit is the gate on how fast we burn CDS submission quota.
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# rate_limit protects CDS from submit bursts; the per-pod ceiling
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# (local_limit × replicas) determines peak concurrent in-flight.
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era5_submit: [
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local_limit: 4,
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rate_limit: [allowed: 30, period: {1, :hour}]
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],
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# `era5_poll` runs Era5PollWorker, which does a tiny GET per run and
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# either snoozes (releasing the slot) or streams the completed GRIB
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# and inserts. Needs high local_limit because in-flight CDS jobs
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# scale independently of concurrent poll work — a pod may have 50
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# tile-months in flight but be doing ~1 actual poll GET at a time.
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era5_poll: [
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local_limit: 20
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],
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# Legacy queue name retained briefly so any in-flight Era5MonthBatchWorker
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# jobs from the pre-split deploy drain cleanly (the worker now just
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# forwards to :era5_submit). Safe to delete after one rolling deploy.
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era5_batch: 1,
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rtma: 2,
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backfill_enqueue: 1,
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admin: 1,
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nexrad: 2
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],
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plugins: [
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{Oban.Plugins.Pruner, max_age: 3600 * 24},
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# Lifeline rescues jobs stuck in `executing` after this window.
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# MUST be larger than the longest `timeout/1` callback on any worker
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# or Lifeline races the job's own deadline: PropagationGridWorker
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# caps itself at 90 min and a real run is ~95 min of wall time, so
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# 120 min gives enough headroom for the hourly sweep to finish
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# before the safety net trips. Setting it shorter caused the grid
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# job to be rescued mid-run and retried from f00, which discarded
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# with empty errors after 3 rescues and left only 4-5 valid_times
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# in propagation_scores.
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{Oban.Plugins.Lifeline, rescue_after: to_timeout(minute: 120)},
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{Oban.Plugins.Cron,
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crontab: [
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{"0 8 * * *", Microwaveprop.Workers.SolarIndexWorker},
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{"*/5 * * * *", Microwaveprop.Commercial.PollWorker},
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# Every 3 hours: one full run does f00–f18 (~5 min/hour × 19 ≈ 95 min).
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# Hourly cron caused overlapping/failed runs because one full sweep
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# exceeds a 60-minute window.
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{"5 */3 * * *", Microwaveprop.Workers.PropagationGridWorker},
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# MRMS refreshes the PrecipRate cache that AsosAdjustmentWorker
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# overlays onto the score grid. Both must run together — an
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# ASOS nudge without a fresh MRMS frame reverts to HRRR-only
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# rain. Requires wgrib2 built with PNG decoder support (DRT
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# 5.41), which the Dockerfile now enables via NCEPLIBS-g2c.
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{"*/2 * * * *", Microwaveprop.Workers.MrmsFetchWorker},
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{"*/10 * * * *", Microwaveprop.Workers.AsosAdjustmentWorker},
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{"*/15 * * * *", Microwaveprop.Workers.PropagationPruneWorker},
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{"*/30 * * * *", Microwaveprop.Workers.BackfillEnqueueWorker,
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args: %{"limit" => 500, "types" => ["hrrr", "weather", "terrain", "iemre"]}},
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# UWYO publishes the 00Z/12Z Canadian radiosondes ~90 minutes after launch
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{"30 1 * * *", CanadianSoundingFetchWorker},
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{"30 13 * * *", CanadianSoundingFetchWorker}
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]}
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]
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config :microwaveprop, :email_from, {"NTMS Propagation", "graham@w5isp.com"}
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config :microwaveprop, hrrr_base_url: System.get_env("HRRR_BASE_URL", "http://skippy.w5isp.com:8080")
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config :microwaveprop, srtm_tiles_dir: "/srtm"
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# config :microwaveprop, start_freshness_monitor: true
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config :microwaveprop, start_freshness_monitor: false
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end
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