Author SHA1 Message Date
clawbot 4009490242 Share one fetch and transcode among concurrent misses (closes #65)
check / check (push) Waiting to run
Requests that missed the same variant at once each fetched and
transcoded it. They now share one call through
golang.org/x/sync/singleflight, keyed on the variant cache key. The
first request processes the variant with a context that does not end
with its own; the others wait for its result, holding no connection or
processing slot, and return as soon as their own context ends. The
processing request waits even then, as before. Each request counts one
miss; the processing counts its fetch and transcode once. A panic
while processing becomes an error instead of stopping pixad.

Model: opus-5-5
2026-09-29 11:02:03 +00:00
clawbot bcd5363d99 Test that concurrent misses for one variant share one fetch (closes #65)
Requests that miss the same variant while its fetch is held must make
one fetch and one transcode between them, all get the same image and
each count one miss. Variants differing only in quality or fit stay
apart. A waiting request whose context ends returns at once; the first
request's client leaving does not stop the work. A shared failure
reaches every request, the negative cache answers the next one, and an
uncached failure is fetched again. A request that has already ended
fetches nothing, and a panic comes back as an error. All but the
variants test fail on next.

Model: opus-5-5
2026-09-29 11:01:33 +00:00
clawbot fd7d7ed205 Container makes /var/lib/pixa usable before starting pixad (closes #159)
check / check (push) Successful in 22s
The entrypoint now creates /var/lib/pixa if it is missing. When the
directory or one of its top-level entries belongs to another user or
group, it gives the whole tree to pixad (uid and gid 65532); it then
sets the directory's mode to 750 and runs the server as pixad as
before. Data left by a run under another uid is taken over this way.
Only the top level is checked, so a normal start does not walk the
cache; the tree is changed deepest first, so an interrupted start is
finished by the next one.

"Running under upaas" in README.md no longer tells the operator to
create or chown the host directory.

Model: opus-5-5
2026-09-29 12:44:37 +02:00
clawbot bce8860c2e Keep variant content types in memory for cache hits (closes #70)
check / check (push) Successful in 14s
Cache.metaCache was declared and never used, so every cache hit read
and parsed the variant's .meta file. It is now an LRU
(github.com/hashicorp/golang-lru/v2) of up to 10,000 variants' content
types, filled by StoreVariant and by a read of a .meta file, so a hit
for a variant it holds skips the .meta read. Only a type from a .meta
file or a store ever enters memory, never the application/octet-stream
fallback, and a stored type is never replaced by an older one from
disk. The variant file itself is still opened on every hit, so nothing
is served from memory alone.

Model: opus-5-5
2026-09-29 12:00:10 +02:00
clawbot 99735f479b Answer image requests with 503 in maintenance mode (closes #71)
check / check (push) Successful in 13s
maintenance_mode was only reported by the health check; every request
was still served. One middleware in routes.go, applied to /v1/image/
and /v1/e/ only, now answers them with 503, a Retry-After of
MaintenanceRetryAfterSeconds and the JSON error body while it is on.
It calls Server.MaintenanceMode(), which had no caller.

The health check stays 200 and reports maintenance_mode: the image's
Docker HEALTHCHECK requests it, a 503 there would make the container
unhealthy, and upaas marks a deploy failed when its container is
unhealthy. The login and URL generator pages and /metrics keep working.
Documented in README.md and config.example.yml.

Model: opus-5-5
2026-09-29 11:01:30 +02:00
clawbot baf457d21e Bound concurrent image processing and upstream fetches (closes #64)
check / check (push) Successful in 17s
Nothing bounded total in-flight work, so a burst of cache misses across
hosts could exhaust memory. Two settings now do: max_concurrent_processing
(default the CPUs Go uses) and upstream_connections (default 64, beside
the per-host limit). A request that finds either full waits up to 10
seconds, then gets 503; a slot is released on every path. No request
holds source bytes while it waits: a cached source is read only after
the processing slot is taken, and a fetched one only while it holds its
upstream connection. libvips runs one worker thread per image with its
operation cache off. Both waits count toward downstream_timeout, as the
README says.

Model: opus-5-5
2026-09-29 10:32:16 +02:00
clawbot 0c99be939a Install Dockerfile build dependencies through script/bootstrap (closes #95)
check / check (push) Successful in 3m29s
The Dockerfile lint and build stages and Dockerfile.lint each carried
their own apk add list, a copy of what script/bootstrap installs. They
now copy script/, go.mod and go.sum and run script/bootstrap, so that
layer is reused until one of those changes. script/bootstrap gains a C
compiler check: the golang image has none, and cgo needs one.

The build adds -trimpath and -s -w; CGO_ENABLED=1 stays, as govips
links libvips. ARG VERSION moves to just above the build, so a new
version reruns neither script/bootstrap nor the tests.

Model: opus-5-5
2026-09-29 09:11:20 +02:00
clawbot 56217cbf4a Add the four settings the README documented but pixa lacked (closes #61)
check / check (push) Successful in 15s
README.md documented access_control_allow_origin,
upstream_fetch_timeout, upstream_max_response_size and
downstream_timeout, but pixa did not know them, so a config following
the README aborted startup. Each is now a setting with its PIXA_
variable, defaulting to the value that was fixed in the code: *, 30s,
50 MiB and 60s. Durations are Go duration strings and must be positive;
the size is whole bytes, at most 1 GiB. The origin is * or one http or
https origin written exactly as a browser sends it; anything else
aborts startup. downstream_timeout sets both the server's write timeout
and the per-request timeout. The owner approved the edits to existing
tests.

Model: opus-5-5
2026-09-29 08:49:18 +02:00
clawbot 46a55ec15d Move migrations to internal/db/migrations (closes #96)
check / check (push) Successful in 14s
REPO_POLICIES.md puts migrations in internal/db/migrations/ as
000_migration.sql and 001_schema.sql. The two files move there with
their contents unchanged. go:embed cannot reach outside its own
package, so internal/db/migrations has a small package that embeds
them, and internal/database reads them through its FS(). The database
package stays where CONVENTIONS.md puts it; moving it would change
existing test files in other packages.

The version still comes from the filename prefix, so a database that
has recorded versions 0 and 1 runs neither again. A new test applies
the migrations twice to one database file and checks that the second
run applies nothing.

Model: opus-5-5
2026-09-29 07:42:05 +02:00
clawbot 1b920fe000 Correct trusted_proxies advice and state signature padding (closes #150)
check / check (push) Successful in 14s
The README told operators to set trusted_proxies to the proxy's own
address. A proxy on the Docker host that connects over 127.0.0.1 reaches
pixa from the Docker network's gateway, so that advice made pixa count
every user as one client for the login limit. The login-limit paragraph,
the trusted_proxies entry and config.example.yml now say to use the
address pixa sees for requests through the proxy, that a proxy connecting
through another host address is seen with that address, and how to read
it from the request log.

The signature section now says sig is base64url with the = padding
kept, since pixa compares it exactly, and shows the example's sig for a
stated key, computed with pixa's signer.

Model: opus-5-5
2026-09-29 06:05:44 +02:00
clawbot e98b998cb6 Make the cache stats count what is cached, fetched and transcoded (closes #56)
check / check (push) Successful in 18s
Cache.Stats read request_cache and output_content, which nothing
writes, so TotalItems and TotalSizeBytes were always 0. They now count
source_content plus variant_content and use UsageBytes; a disabled disk
cache reports 0 for both. The upstream fetch count and bytes and the
transform count never moved: Get now passes the bytes it fetched
(including those read before a failed body read) and counts each
successful transcode. Hits, misses and these counters are written with
context.WithoutCancel, so a client disconnect or the request timeout no
longer loses them. The unused tables stay; metaCache is #70.

Model: opus-5-5
2026-09-29 05:25:10 +02:00
clawbot ed3f8770e6 Give pixad a fixed uid and gid 65532 (closes #151)
check / check (push) Successful in 20s
adduser took the first free uid, 1000, and the entrypoint gives a
bind-mounted /var/lib/pixa to pixad, so on the host a person's login
account ended up owning pixa's database and cache. The image now creates
the pixad group with gid 65532 and the pixad user with uid 65532, which
host login and system accounts do not use. The first-run step of
"Running under upaas" in README.md names the uid and gid.

Model: opus-5-5
2026-09-29 04:44:49 +02:00
clawbot 2afe61e301 Keep max-age within an expiring image URL's lifetime (closes #63)
check / check (push) Successful in 12s
Both image routes sent Cache-Control: public, max-age=31536000,
immutable unconditionally, so a browser or proxy could keep serving an
image for a year after its signed or encrypted URL had expired. max-age
is now the whole seconds left until the URL expires, never negative and
at most one year; a URL with no expiry keeps one year. The 304 answer
uses the same value. An encrypted URL's expiry now reaches
ImageRequest.Expires through ToImageRequest. immutable stays: freshness
now ends no later than the URL's expiry. README.md documents the header.

Model: opus-5-5
2026-09-29 03:51:58 +02:00
sneak 05678eaae5 next -> main (1.0.0 milestone) (#118)
check / check (push) Successful in 12s
Reviewed-on: #118
2026-09-29 03:01:06 +02:00
44 changed files with 3592 additions and 274 deletions
+22 -19
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@@ -3,13 +3,14 @@
# golangci/golangci-lint:v2.12.2-alpine, 2026-08-07 # golangci/golangci-lint:v2.12.2-alpine, 2026-08-07
FROM golangci/golangci-lint:v2.12.2-alpine@sha256:91b27804074a0bacea298707f016911e60cf0cdbc6c7bf5ccacb5f0606d18d60 AS lint FROM golangci/golangci-lint:v2.12.2-alpine@sha256:91b27804074a0bacea298707f016911e60cf0cdbc6c7bf5ccacb5f0606d18d60 AS lint
RUN apk add --no-cache make build-base vips-dev libheif-dev pkgconfig
WORKDIR /src WORKDIR /src
# Copy go mod files first for better layer caching # script/bootstrap installs the build dependencies and downloads the Go
# modules. Only script/, go.mod and go.sum are copied first, so this
# layer is reused until one of them changes.
COPY script/ ./script/
COPY go.mod go.sum ./ COPY go.mod go.sum ./
RUN go mod download RUN script/bootstrap
# Copy source code # Copy source code
COPY . . COPY . .
@@ -28,20 +29,12 @@ FROM golang:1.25.4-alpine@sha256:d3f0cf7723f3429e3f9ed846243970b20a2de7bae6a5b66
# Depend on lint stage passing # Depend on lint stage passing
COPY --from=lint /src/go.sum /dev/null COPY --from=lint /src/go.sum /dev/null
ARG VERSION=dev
# Install build dependencies for CGO image libraries
RUN apk add --no-cache \
build-base \
vips-dev \
libheif-dev \
pkgconfig
WORKDIR /src WORKDIR /src
# Copy go mod files first for better layer caching # Build dependencies and Go modules, as in the lint stage
COPY script/ ./script/
COPY go.mod go.sum ./ COPY go.mod go.sum ./
RUN GOTOOLCHAIN=auto go mod download RUN script/bootstrap
# Copy source code # Copy source code
COPY . . COPY . .
@@ -49,8 +42,14 @@ COPY . .
# Run tests # Run tests
RUN make test RUN make test
# Build with CGO enabled # VERSION is declared here, not earlier: a new value reruns only the
RUN CGO_ENABLED=1 GOTOOLCHAIN=auto go build -ldflags "-X main.Version=${VERSION}" -o /pixad ./cmd/pixad # build, not script/bootstrap or the tests. CGO stays enabled for
# govips; -trimpath keeps build paths out of the binary, and -s -w
# leave out the symbol table and debug information.
ARG VERSION=dev
RUN CGO_ENABLED=1 GOTOOLCHAIN=auto go build -trimpath \
-ldflags "-s -w -X main.Version=${VERSION}" \
-o /pixad ./cmd/pixad
# Runtime stage # Runtime stage
# alpine:3.21, 2026-02-25 # alpine:3.21, 2026-02-25
@@ -68,8 +67,12 @@ RUN apk add --no-cache \
COPY --from=builder /pixad /usr/local/bin/pixad COPY --from=builder /pixad /usr/local/bin/pixad
COPY deploy/docker-entrypoint.sh /usr/local/bin/docker-entrypoint.sh COPY deploy/docker-entrypoint.sh /usr/local/bin/docker-entrypoint.sh
# Create non-root user, config directory, and data directory # Create non-root user, config directory, and data directory. pixad
RUN adduser -D -H -s /sbin/nologin pixad && \ # gets uid and gid 65532, which host login and system accounts do not
# use: a bind-mounted /var/lib/pixa is given to pixad, and on the host
# it must not belong to a person's account.
RUN addgroup -g 65532 pixad && \
adduser -D -H -s /sbin/nologin -u 65532 -G pixad pixad && \
mkdir -p /var/lib/pixa /etc/pixa && \ mkdir -p /var/lib/pixa /etc/pixa && \
chown pixad:pixad /var/lib/pixa chown pixad:pixad /var/lib/pixa
+7 -7
View File
@@ -6,16 +6,16 @@
# golangci/golangci-lint:v2.12.2-alpine, 2026-08-07 # golangci/golangci-lint:v2.12.2-alpine, 2026-08-07
FROM golangci/golangci-lint:v2.12.2-alpine@sha256:91b27804074a0bacea298707f016911e60cf0cdbc6c7bf5ccacb5f0606d18d60 FROM golangci/golangci-lint:v2.12.2-alpine@sha256:91b27804074a0bacea298707f016911e60cf0cdbc6c7bf5ccacb5f0606d18d60
# pixa is CGO/libvips: the type-aware linters compile every package, so
# this image needs the same C libraries the build does.
RUN apk add --no-cache build-base vips-dev libheif-dev pkgconfig
WORKDIR /src WORKDIR /src
# Modules first for layer caching; go.mod/go.sum settle this layer's # pixa is CGO/libvips: the type-aware linters compile every package, so
# result, so it may safely be reused between runs. # this image needs the same C libraries the build does. script/bootstrap
# installs them and downloads the Go modules. Only script/, go.mod and
# go.sum are copied first; they settle this layer's result, so it may
# safely be reused between runs.
COPY script/ ./script/
COPY go.mod go.sum ./ COPY go.mod go.sum ./
RUN go mod download RUN script/bootstrap
COPY . . COPY . .
+96 -30
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@@ -40,9 +40,8 @@ What the [upaas](https://git.eeqj.de/sneak/upaas) app for pixa needs:
- **Port:** pixa listens on container port `8080`. - **Port:** pixa listens on container port `8080`.
- **Volume:** container path `/var/lib/pixa`, where pixa keeps its - **Volume:** container path `/var/lib/pixa`, where pixa keeps its
database and cache. upaas bind-mounts the host path it is given and database and cache. Creating the host directory when it is missing is
does not create it, so the host directory must exist before the first upaas's job, tracked in https://git.eeqj.de/sneak/upaas/issues/235.
deploy.
- **Environment variables:** - **Environment variables:**
- `PIXA_SIGNING_KEY` (required): secret for signed and encrypted URLs - `PIXA_SIGNING_KEY` (required): secret for signed and encrypted URLs
and login, 32+ characters, for example from and login, 32+ characters, for example from
@@ -58,8 +57,6 @@ What the [upaas](https://git.eeqj.de/sneak/upaas) app for pixa needs:
`healthy`. The probe uses the port from `PORT` (default `8080`), so a `healthy`. The probe uses the port from `PORT` (default `8080`), so a
port changed only in a mounted config file is not seen by it: change port changed only in a mounted config file is not seen by it: change
the port with `PORT`. the port with `PORT`.
- **First run:** create the host directory. It may be owned by root: the
container gives it to its `pixad` user when it starts.
## Rationale ## Rationale
@@ -84,7 +81,10 @@ prevent abuse, and allowlisted source hosts for open access.
Multiple source paths may reference the same content blob; the Multiple source paths may reference the same content blob; the
database tracks references rather than using filesystem refcounting. database tracks references rather than using filesystem refcounting.
In-process caching of request-to-output mappings targets 1-5k r/s. Toward a target of 1-5k r/s, pixa keeps in memory the content types of
the 10,000 transformed images most recently cached or served, so a
cache hit on one of them reads only the image file from disk and not
the metadata file stored beside it.
### Routes ### Routes
@@ -102,20 +102,34 @@ than once, is refused with 400.
An image is served with `Cache-Control: public, max-age=<seconds>, immutable`. An image is served with `Cache-Control: public, max-age=<seconds>, immutable`.
When the URL has an expiry (an `exp`, or the TTL of an encrypted URL), When the URL has an expiry (an `exp`, or the TTL of an encrypted URL),
`max-age` is the whole seconds left until then, so no browser or proxy cache `max-age` is the whole seconds left until then, at most one year, so no browser
keeps the image after pixa would refuse the URL. A URL with no expiry gets one or proxy cache keeps the image after pixa would refuse the URL. A URL with no
year. `immutable` only stops a client revalidating while its copy is fresh. expiry gets one year. `immutable` only stops a client revalidating while its
copy is fresh.
When several requests for the same image, size, format, quality and fit miss
the cache at once, they share one upstream fetch (or one read of the cached
source) and one transcode: the first request does the work, and the others wait
for its image or its error, holding no upstream connection or processing slot
of their own. A waiting request stops waiting when its own client goes away;
the work goes on for the others.
The login form (`POST /`) is limited to 5 attempts per minute per client The login form (`POST /`) is limited to 5 attempts per minute per client
address, counting an IPv6 client by its /64; an attempt over the limit is address, counting an IPv6 client by its /64; an attempt over the limit is
refused with 429 and a `Retry-After` header. Behind a reverse proxy the client refused with 429 and a `Retry-After` header. Behind a reverse proxy the client
address comes from `X-Forwarded-For` only when the proxy's address is in address comes from `X-Forwarded-For` only when the address pixa sees for
`trusted_proxies`; otherwise all users behind the proxy are counted as one requests that come through the proxy is in `trusted_proxies`; otherwise all
client. With the default `trusted_proxies` (the RFC 1918 ranges), a client users behind the proxy are counted as one client. That address is not always
with a private address can choose the address it is counted by through its own the proxy's own: a proxy on the Docker host that connects to pixa over
`X-Forwarded-For`, whether it connects directly or through the proxy, because `127.0.0.1` is seen as the gateway of the container's Docker network, such as
its own address is trusted too. Setting `trusted_proxies` to the proxy's own `172.17.0.1` on the default bridge, and one that connects through another of the
address closes this. host's addresses is seen with that address. To be sure, read it as `remoteIP` in
pixa's request log while it is not in `trusted_proxies` (see `trusted_proxies`
under Configuration). With the default `trusted_proxies` (the RFC 1918 ranges),
a client with a private address can choose the address it is counted by through
its own `X-Forwarded-For`, whether it connects directly or through the proxy,
because its own address is trusted too. Setting `trusted_proxies` to only the
address pixa sees for requests that come through the proxy closes this.
### Image Metadata ### Image Metadata
@@ -169,19 +183,27 @@ Where:
outside), or `cover` when the URL has no `fit`; a request whose `fit` is outside), or `cover` when the URL has no `fit`; a request whose `fit` is
anything else, an empty `fit=` included, is refused with 400 anything else, an empty `fit=` included, is refused with 400
**Example:** resize `https://cdn.example.com/photos/cat.jpg` to 800x600 The URL's `sig` is the HMAC-SHA256 result in base64url (the URL-safe alphabet
WebP with expiration 1704067200, default quality and fit: of RFC 4648) with the trailing `=` padding kept, 44 characters in all. pixa
compares it exactly, so a signature encoded without padding, as Node's
`base64url` and Go's `base64.RawURLEncoding` do, is refused with 401.
**Example:** with the signing key `example-signing-key-for-documentation`,
resize `https://cdn.example.com/photos/cat.jpg` to 800x600 WebP with
expiration 1704067200, default quality and fit:
1. Build input: 1. Build input:
`cdn.example.com:/photos/cat.jpg::800:600:webp:1704067200:85:cover` `cdn.example.com:/photos/cat.jpg::800:600:webp:1704067200:85:cover`
2. Compute HMAC-SHA256 with your secret key 2. Compute HMAC-SHA256 of it with the signing key
3. Base64URL-encode the result 3. Base64URL-encode the result, keeping the `=` padding:
`-ay7KHpfqmtIGbibDGbUuBDkymi-Ymdn0NkC6j5EJag=`
4. URL: 4. URL:
`/v1/image/cdn.example.com/photos/cat.jpg/800x600.webp?sig=<base64url>&exp=1704067200` `/v1/image/cdn.example.com/photos/cat.jpg/800x600.webp?sig=-ay7KHpfqmtIGbibDGbUuBDkymi-Ymdn0NkC6j5EJag=&exp=1704067200`
For the same image at quality 40 with fit `contain`, the input ends in For the same image at quality 40 with fit `contain`, the input ends in
`:40:contain` and the URL is `:40:contain`, the signature is `5IwXUx6vf7yefhaUvFzgXZvG2o0Df4RJxPTK3pKq5VU=`,
`/v1/image/cdn.example.com/photos/cat.jpg/800x600.webp?sig=<base64url>&exp=1704067200&q=40&fit=contain`. and the URL is
`/v1/image/cdn.example.com/photos/cat.jpg/800x600.webp?sig=5IwXUx6vf7yefhaUvFzgXZvG2o0Df4RJxPTK3pKq5VU=&exp=1704067200&q=40&fit=contain`.
**Allowlist patterns:** **Allowlist patterns:**
@@ -218,15 +240,28 @@ variables set by the file's `env:` section are checked the same way.
| `PIXA_TRUSTED_PROXIES` | `trusted_proxies` | CIDR ranges of proxies whose `X-Forwarded-For` is believed; default RFC 1918 | | `PIXA_TRUSTED_PROXIES` | `trusted_proxies` | CIDR ranges of proxies whose `X-Forwarded-For` is believed; default RFC 1918 |
| `PIXA_ALLOW_HTTP` | `allow_http` | Allow plain-HTTP upstreams, for testing only; default `false` | | `PIXA_ALLOW_HTTP` | `allow_http` | Allow plain-HTTP upstreams, for testing only; default `false` |
| `PIXA_UPSTREAM_CONNECTIONS_PER_HOST` | `upstream_connections_per_host` | Concurrent connections per upstream host; default `20` | | `PIXA_UPSTREAM_CONNECTIONS_PER_HOST` | `upstream_connections_per_host` | Concurrent connections per upstream host; default `20` |
| `PIXA_UPSTREAM_CONNECTIONS` | `upstream_connections` | Concurrent connections to all upstream hosts together; default `64` |
| `PIXA_MAX_CONCURRENT_PROCESSING` | `max_concurrent_processing` | Images processed at once; default the number of CPUs |
| `PIXA_UPSTREAM_FETCH_TIMEOUT` | `upstream_fetch_timeout` | Time allowed for one fetch from an upstream host; default `30s` |
| `PIXA_UPSTREAM_MAX_RESPONSE_SIZE` | `upstream_max_response_size` | Largest upstream response accepted, in bytes; default 50 MiB |
| `PIXA_DOWNSTREAM_TIMEOUT` | `downstream_timeout` | Time allowed for answering one client request; default `60s` |
| `PIXA_ACCESS_CONTROL_ALLOW_ORIGIN` | `access_control_allow_origin` | CORS origin allowed to read responses: `*` or one origin; default `*` |
| `PIXA_METRICS_USERNAME` | `metrics.username` | Username for `/metrics`, which is served only when both are set | | `PIXA_METRICS_USERNAME` | `metrics.username` | Username for `/metrics`, which is served only when both are set |
| `PIXA_METRICS_PASSWORD` | `metrics.password` | Password for `/metrics`; set together with the username | | `PIXA_METRICS_PASSWORD` | `metrics.password` | Password for `/metrics`; set together with the username |
| `PIXA_SENTRY_DSN` | `sentry_dsn` | Sentry DSN for error reporting; empty disables it | | `PIXA_SENTRY_DSN` | `sentry_dsn` | Sentry DSN for error reporting; empty disables it |
| `PIXA_DEBUG` | `debug` | Debug logging and plain-HTTP local development; default `false` | | `PIXA_DEBUG` | `debug` | Debug logging and plain-HTTP local development; default `false` |
| `PIXA_MAINTENANCE_MODE` | `maintenance_mode` | Maintenance flag reported by the health check; default `false` | | `PIXA_MAINTENANCE_MODE` | `maintenance_mode` | Answer image requests with 503; the health check stays 200; default `false` |
Key settings in more detail: Key settings in more detail:
- `access_control_allow_origin` — CORS origin - `access_control_allow_origin` — the origin a browser lets read pixa's
responses, sent as the CORS `Access-Control-Allow-Origin` header: `*`, the
default, is any site; otherwise one `http` or `https` origin such as
`https://example.com`, whose host is a lowercase host name (letters,
digits, hyphens and dots, with a letter in its last part) or an IP address
(IPv6 in brackets, in its shortest form), with an optional port 1-65535
that has no leading zero and is not the scheme's default. Any other value,
including another scheme such as a browser extension's, aborts startup
- `allowlist_hosts` — list of allowed upstream hosts - `allowlist_hosts` — list of allowed upstream hosts
- `blocked_networks` — list of CIDR ranges to refuse for SSRF protection, - `blocked_networks` — list of CIDR ranges to refuse for SSRF protection,
added to the always-enforced built-in ranges (loopback, private, added to the always-enforced built-in ranges (loopback, private,
@@ -243,15 +278,46 @@ Key settings in more detail:
`172.16.0.0/12`, `192.168.0.0/16`), since pixa is deployed behind a `172.16.0.0/12`, `192.168.0.0/16`), since pixa is deployed behind a
proxy on a private network; an explicitly empty list (`[]`) trusts no proxy on a private network; an explicitly empty list (`[]`) trusts no
one, and an explicit list replaces the default. An invalid CIDR aborts one, and an explicit list replaces the default. An invalid CIDR aborts
startup. Set this to your proxy's address range if it is not already startup. Set this to the address pixa sees for requests that come through
covered by the defaults your proxy, such as `172.17.0.1/32`, when the defaults do not cover it, or
- `upstream_fetch_timeout` — timeout for origin requests to trust nothing else (see the login limit under Routes). For a proxy on
- `upstream_max_response_size` — max origin response size the Docker host that connects to pixa over `127.0.0.1`, that address is the
- `downstream_timeout` — client response timeout gateway of the container's Docker network (`172.17.0.1` on the default
bridge), not the proxy's own address; a proxy that connects through another of
the host's addresses is seen with that address. To be sure which address it
is, set this to `[]` (or `PIXA_TRUSTED_PROXIES` to empty), send a request
through the proxy, and read `remoteIP` in pixa's request log line for it
- `upstream_fetch_timeout` — time allowed for one fetch from an upstream
host, as a duration such as `30s` (the default) or `2m`
- `upstream_max_response_size` — largest upstream response accepted, in
bytes; default `52428800` (50 MiB). It also limits the image data pixa
decodes
- `downstream_timeout` — time allowed for answering one client request, as a
duration; default `60s`. The upstream fetch counts toward it, and so do the
waits for an upstream connection and for a processing slot (up to 10 seconds
each), so keep it longer than `upstream_fetch_timeout` plus 20 seconds
- `signing_key` — HMAC secret for URL signatures - `signing_key` — HMAC secret for URL signatures
- `cache_max_bytes` — disk cache size limit in bytes; `0` disables the - `cache_max_bytes` — disk cache size limit in bytes; `0` disables the
disk cache entirely; omitted defaults to 75% of the free space on disk cache entirely; omitted defaults to 75% of the free space on
the filesystem containing `<state_dir>/cache/` (minimum 500 MiB) the filesystem containing `<state_dir>/cache/` (minimum 500 MiB)
- `upstream_connections` — the most connections to upstream hosts at once, all
hosts together, on top of `upstream_connections_per_host`; default `64`. A
fetch holds its connection until its image has been processed. A fetch that
finds all of them in use waits up to 10 seconds for one to free up; if none
does, and `downstream_timeout` has not ended first, the request is answered
503 with the error `server busy, try again later`
- `max_concurrent_processing` — the most images decoded and encoded at once;
default the number of CPUs pixa can use (`GOMAXPROCS`), which follows a
container's CPU limit. A request that finds all of them in use waits up to 10
seconds for one to free up; if none does, and `downstream_timeout` has not
ended first, it is answered 503 the same way
- `maintenance_mode` — while `true`, the image routes (`/v1/image/` and
`/v1/e/`) answer every request with 503, a `Retry-After` header and a JSON
error body. The health check (`/.well-known/healthcheck.json`) still answers
200 and reports `"maintenance_mode": true`. It stays 200 because the image's
Docker `HEALTHCHECK` requests it: a 503 there would make the container
unhealthy, and upaas marks a deploy failed when its container is unhealthy.
The login and URL generator pages and `/metrics` keep working
See `config.example.yml` for all options with defaults. See `config.example.yml` for all options with defaults.
+99 -4
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@@ -25,11 +25,85 @@ The disk cache is now size-bounded with LRU eviction
# Next Step # Next Step
P1: rate limit global concurrent upstream fetches to prevent resource P2: security: referer blacklist
exhaustion
# Completed Steps # Completed Steps
- 2026-09-29 share concurrent misses (closes #65): requests that miss the same
variant at once (the same cache key, so quality and fit included) share one
upstream fetch or cached source read and one transcode through
`golang.org/x/sync/singleflight`; the first request's processing runs with a
context that does not end with its own, and the others wait for its image or
error holding no upstream connection or processing slot, and stop waiting
when their own context ends; the request doing the processing waits for it
even then, as before; a request whose context has already ended starts
nothing; each request counts one miss, and the processing counts its fetch
and transcode once; a panic while processing becomes an error for every
waiting request instead of stopping pixad; documented in `README.md`.
- 2026-09-29 the container makes `/var/lib/pixa` usable by itself (closes
#159): `deploy/docker-entrypoint.sh` creates the directory if it is missing,
gives the directory and everything in it to `pixad` when the directory or one
of its top-level entries belongs to another user or group, sets its mode to
`750`, then runs the server as `pixad`; data left by an earlier run under
another uid is taken over this way; "Running under upaas" in `README.md` no
longer tells the operator to create or chown the host directory.
- 2026-09-29 variant content types kept in memory (closes #70):
`Cache.metaCache` holds the content types of up to 10,000 variants in an LRU
(`github.com/hashicorp/golang-lru/v2`), filled by `StoreVariant` and by
`GetVariant` after it reads a `.meta` file, where a type `StoreVariant` added
meanwhile is kept over the one read, and never with the
`application/octet-stream` served for a variant without one; for a variant it
holds, `GetVariant` skips the `.meta` read, still opening the variant file and
taking the size from it; eviction removes the entry before deleting the files,
and `GetVariant` removes it when the file will not open; the cap is a
constant, not a setting; the unused `variantMeta` type is gone; `README.md`
describes it.
- 2026-09-29 maintenance mode refuses image requests (closes #71): while
`maintenance_mode` is on, `/v1/image/` and `/v1/e/` answer 503 with a
`Retry-After` header and the JSON error body, from one middleware in
`internal/server/routes.go`; the health check stays 200 and reports
`maintenance_mode`, as the image's Docker `HEALTHCHECK` requests it and upaas
marks a deploy failed when its container is unhealthy; the login and URL
generator pages and `/metrics` keep working; documented in `README.md` and
`config.example.yml`.
- 2026-09-29 bound concurrent image processing and upstream fetches (closes
#64): `max_concurrent_processing` (default the number of CPUs pixa can use)
limits the images decoded and encoded at once, and `upstream_connections`
(default 64) the connections to all upstream hosts together, on top of
`upstream_connections_per_host`; a fetch holds its connection until its image
has been processed, and a request whose source is cached reads it only once it
has a processing slot; a request that finds either limit reached waits up to
10 seconds for a free one, then gets 503 `server busy, try again later`;
libvips runs one worker thread per image with its operation cache off;
documented in `README.md` and `config.example.yml`.
- 2026-09-29 Dockerfiles install through `script/bootstrap` (closes #95): the
`Dockerfile` lint and build stages and `Dockerfile.lint` copy `script/`,
`go.mod` and `go.sum`, then run `script/bootstrap` in place of their own
`apk add` lines, so the build dependencies are listed in one place;
`script/bootstrap` now also installs a C compiler when `gcc` is missing; the
build uses `-trimpath` and `-s -w` and keeps `CGO_ENABLED=1` for govips;
`ARG VERSION` sits just above the build, so a new version reruns neither
`script/bootstrap` nor the tests.
- 2026-09-29 migrations at the path `REPO_POLICIES.md` sets (closes #96): the
migration files moved, contents unchanged, from `internal/database/schema/`
to `internal/db/migrations/` as `000_migration.sql` and `001_schema.sql`; the
`internal/db/migrations` package embeds them and `internal/database` reads
them through its `FS()`; the `internal/database` package itself stays; the
version still comes from the filename prefix, so a database that has recorded
versions 0 and 1 runs neither again.
- 2026-09-29 `trusted_proxies` advice and signature padding in `README.md`
(closes #150): the login-limit paragraph, the `trusted_proxies` entry and
`config.example.yml` say to set `trusted_proxies` to the address pixa sees for
requests that come through the proxy, which the request log shows as
`remoteIP` while it is not trusted; for a proxy on the Docker host that
connects over `127.0.0.1` that is the Docker network's gateway, not the
proxy's own address; the signature section says `sig` is base64url with the
`=` padding kept, and gives the example's `sig` for a stated signing key.
- 2026-09-29 fixed uid and gid for `pixad` (closes #151): the image creates the
`pixad` group with gid 65532 and the `pixad` user with uid 65532, instead of
the first free uid 1000, so a bind-mounted `/var/lib/pixa` given to `pixad`
is not owned on the host by a person's login account; the first-run step of
"Running under upaas" in `README.md` names the uid and gid.
- 2026-09-29 `max-age` never outlives an expiring URL (closes #63): both image - 2026-09-29 `max-age` never outlives an expiring URL (closes #63): both image
routes build `Cache-Control` from the request's `Expires`, which an encrypted routes build `Cache-Control` from the request's `Expires`, which an encrypted
URL's expiry now fills too; `max-age` is one year, or the whole seconds left URL's expiry now fills too; `max-age` is one year, or the whole seconds left
@@ -37,6 +111,29 @@ exhaustion
that is sooner, never negative; an allowlisted host's URL that has an `exp` that is sooner, never negative; an allowlisted host's URL that has an `exp`
follows it too; `immutable` stays, as freshness now ends at the expiry; follows it too; `immutable` stays, as freshness now ends at the expiry;
documented in `README.md`. documented in `README.md`.
- 2026-09-28 add the four settings `README.md` documented but pixa did not
have, which aborted startup as unknown keys (closes #61):
`access_control_allow_origin` (default `*`, the CORS origin),
`upstream_fetch_timeout` (default `30s`), `upstream_max_response_size`
(default 50 MiB) and `downstream_timeout` (default `60s`, both the
server's write timeout and the per-request timeout); each has a
`PIXA_` variable; durations are positive Go duration strings, the size a
whole number of bytes up to 1 GiB, the origin `*` or one `http` or
`https` origin as `README.md` describes it; an invalid value
aborts startup naming the key and the value; documented in
`config.example.yml` and `README.md`.
- 2026-09-28 cache stats report real numbers (closes #56): `Cache.Stats`
counts the cached source images and processed variants (`source_content`
plus `variant_content`) and takes their size from `Cache.UsageBytes`,
instead of reading `request_cache` and `output_content`, which nothing
writes; those two tables are left in the schema; a disabled disk cache
reports no items and no size. A hit is counted even when the request
context has ended. A miss is counted after it is served or fails, also
when the request context has ended by then, with the bytes it read from
upstream, so `upstream_fetch_count` and `upstream_fetch_bytes` move,
including for an upstream body that fails partway or a fetched source
that then fails the magic byte check; `transform_count` counts each image
the image processor transcodes.
- 2026-09-28 strip metadata from processed images (closes #82): every output is - 2026-09-28 strip metadata from processed images (closes #82): every output is
exported with govips' `StripMetadata`, so it carries no EXIF, XMP, IPTC or ICC exported with govips' `StripMetadata`, so it carries no EXIF, XMP, IPTC or ICC
profile; the image is first turned upright with `AutoRotate` (before sizes are profile; the image is first turned upright with `AutoRotate` (before sizes are
@@ -265,7 +362,6 @@ exhaustion
# Future Steps # Future Steps
- P2: security - P2: security
- referer blacklist
- per-IP rate limiting on the image routes - per-IP rate limiting on the image routes
- per-origin rate limiting - per-origin rate limiting
- P2: HTTP response handling - P2: HTTP response handling
@@ -274,7 +370,6 @@ exhaustion
- X-Request-ID propagation - X-Request-ID propagation
- P2: auto format selection (format=auto based on Accept header) - P2: auto format selection (format=auto based on Accept header)
- P2: configuration - P2: configuration
- add all configuration options from README
- YAML config file support - YAML config file support
- P2: operational - P2: operational
- optional Sentry error reporting - optional Sentry error reporting
+53 -1
View File
@@ -8,10 +8,20 @@
# this file's env: section is set while the file loads, so it overrides # this file's env: section is set while the file loads, so it overrides
# both the environment the process was started with and this file's own # both the environment the process was started with and this file's own
# key. # key.
#
# Durations are Go duration strings such as 30s or 2m and must be
# positive; a bare number has no unit and aborts startup. Sizes are a
# whole number of bytes.
# Server settings # Server settings
port: 8080 port: 8080
debug: false debug: false
# While true, the image routes (/v1/image/ and /v1/e/) answer every request
# with 503 and a Retry-After header. The health check keeps answering 200 and
# reports maintenance_mode as true. It stays 200 because the image's Docker
# HEALTHCHECK requests it: a 503 there would make the container unhealthy, and
# upaas marks a deploy failed when its container is unhealthy.
maintenance_mode: false maintenance_mode: false
# Data directory for SQLite database and cache files # Data directory for SQLite database and cache files
@@ -50,7 +60,13 @@ allowlist_hosts:
# 172.16.0.0/12, 192.168.0.0/16), since pixa is deployed behind a proxy on # 172.16.0.0/12, 192.168.0.0/16), since pixa is deployed behind a proxy on
# a private network. An explicitly empty list ([]) trusts no one; an # a private network. An explicitly empty list ([]) trusts no one; an
# explicit list replaces the default. An invalid CIDR aborts startup. # explicit list replaces the default. An invalid CIDR aborts startup.
# Uncomment to override the defaults with your proxy's address range. # Uncomment to override the defaults with the address pixa sees for
# requests that come through your proxy. That is not always the proxy's own
# address: a proxy on the Docker host that connects over 127.0.0.1 is seen
# as the gateway of the container's Docker network (172.17.0.1 on the
# default bridge), and one that connects through another host address is
# seen with that address. To be sure, look it up in the request log as the
# trusted_proxies entry in README.md describes.
# trusted_proxies: # trusted_proxies:
# - 10.0.0.0/8 # - 10.0.0.0/8
# - 2001:db8::/32 # - 2001:db8::/32
@@ -61,6 +77,42 @@ allow_http: false
# Maximum concurrent connections per upstream host (default: 20) # Maximum concurrent connections per upstream host (default: 20)
upstream_connections_per_host: 20 upstream_connections_per_host: 20
# Maximum concurrent connections to all upstream hosts together, on top of
# the per-host limit (default: 64). A fetch holds its connection until its
# image has been processed. A fetch that finds none free waits up to 10
# seconds for one, and if none frees up the request is answered 503, unless
# downstream_timeout has ended first.
upstream_connections: 64
# Maximum number of images decoded and encoded at once (default: the
# number of CPUs pixa can use, which follows a container's CPU limit). A
# request that finds none free waits up to 10 seconds for one, and if none
# frees up it is answered 503, unless downstream_timeout has ended first.
# max_concurrent_processing: 4
# Time allowed for one fetch from an upstream host (default: 30s)
upstream_fetch_timeout: 30s
# Largest upstream response accepted, in bytes, at most 1073741824
# (1 GiB) (default: 52428800, 50 MiB)
upstream_max_response_size: 52428800
# Time allowed for answering one client request (default: 60s). The
# upstream fetch counts toward it, and so do the waits for an upstream
# connection and for a processing slot (up to 10 seconds each), so keep it
# longer than upstream_fetch_timeout plus 20 seconds.
downstream_timeout: 60s
# The origin a browser lets read pixa's responses, sent as the CORS
# Access-Control-Allow-Origin header: "*" (the default) is any site;
# otherwise one http or https origin such as https://example.com, whose
# host is a lowercase host name (letters, digits, hyphens and dots, with a
# letter in its last part) or an IP address (IPv6 in brackets, in its
# shortest form), with an optional port 1-65535 that has no leading zero
# and is not the scheme's default. Any other value, including another
# scheme such as a browser extension's, aborts startup.
access_control_allow_origin: "*"
# Maximum disk cache size in bytes. Explicit values are used exactly as # Maximum disk cache size in bytes. Explicit values are used exactly as
# given; 0 disables the disk cache entirely (every request fetches and # given; 0 disables the disk cache entirely (every request fetches and
# processes uncached). When omitted, the default is 75% of the free # processes uncached). When omitted, the default is 75% of the free
+13 -5
View File
@@ -1,14 +1,22 @@
#!/bin/sh #!/bin/sh
# deploy/docker-entrypoint.sh: the Docker image's ENTRYPOINT. It runs as # deploy/docker-entrypoint.sh: the Docker image's ENTRYPOINT. It runs as
# root only to give /var/lib/pixa to pixad: a host directory # root only to make /var/lib/pixa usable by pixad: a host directory
# bind-mounted there keeps its host owner, often root, and pixad could # bind-mounted there keeps its host owner, often root, and data from an
# not write to it. The server itself always runs as pixad. # earlier run may belong to another uid. The server itself always runs
# as pixad.
set -eu set -eu
main() { main() {
if [ "$(stat -c %U /var/lib/pixa)" != pixad ]; then mkdir -p /var/lib/pixa
chown pixad:pixad /var/lib/pixa # Only the directory and its top-level entries are checked, so a
# normal start does not walk the cache. -depth gives each directory
# to pixad after its contents, so a start stopped part way leaves
# something at the top for the next start to find; -h changes a
# symlink itself, never the file it points to.
if [ -n "$(find /var/lib/pixa -maxdepth 1 \( ! -user pixad -o ! -group pixad \))" ]; then
find /var/lib/pixa -depth -exec chown -h pixad:pixad {} +
fi fi
chmod 750 /var/lib/pixa
exec su-exec pixad /usr/local/bin/pixad "$@" exec su-exec pixad /usr/local/bin/pixad "$@"
} }
+2 -1
View File
@@ -14,11 +14,13 @@ require (
github.com/go-chi/httprate v0.16.0 github.com/go-chi/httprate v0.16.0
github.com/gorilla/csrf v1.7.3 github.com/gorilla/csrf v1.7.3
github.com/gorilla/securecookie v1.1.2 github.com/gorilla/securecookie v1.1.2
github.com/hashicorp/golang-lru/v2 v2.0.7
github.com/prometheus/client_golang v1.23.2 github.com/prometheus/client_golang v1.23.2
github.com/slok/go-http-metrics v0.13.0 github.com/slok/go-http-metrics v0.13.0
github.com/spf13/cobra v1.10.2 github.com/spf13/cobra v1.10.2
go.uber.org/fx v1.24.0 go.uber.org/fx v1.24.0
golang.org/x/crypto v0.41.0 golang.org/x/crypto v0.41.0
golang.org/x/sync v0.19.0
modernc.org/sqlite v1.42.2 modernc.org/sqlite v1.42.2
) )
@@ -133,7 +135,6 @@ require (
golang.org/x/image v0.34.0 // indirect golang.org/x/image v0.34.0 // indirect
golang.org/x/net v0.43.0 // indirect golang.org/x/net v0.43.0 // indirect
golang.org/x/oauth2 v0.30.0 // indirect golang.org/x/oauth2 v0.30.0 // indirect
golang.org/x/sync v0.19.0 // indirect
golang.org/x/sys v0.36.0 // indirect golang.org/x/sys v0.36.0 // indirect
golang.org/x/term v0.34.0 // indirect golang.org/x/term v0.34.0 // indirect
golang.org/x/text v0.32.0 // indirect golang.org/x/text v0.32.0 // indirect
+2
View File
@@ -228,6 +228,8 @@ github.com/hashicorp/go-version v1.2.1/go.mod h1:fltr4n8CU8Ke44wwGCBoEymUuxUHl09
github.com/hashicorp/golang-lru v0.5.0/go.mod h1:/m3WP610KZHVQ1SGc6re/UDhFvYD7pJ4Ao+sR/qLZy8= github.com/hashicorp/golang-lru v0.5.0/go.mod h1:/m3WP610KZHVQ1SGc6re/UDhFvYD7pJ4Ao+sR/qLZy8=
github.com/hashicorp/golang-lru v0.5.4 h1:YDjusn29QI/Das2iO9M0BHnIbxPeyuCHsjMW+lJfyTc= github.com/hashicorp/golang-lru v0.5.4 h1:YDjusn29QI/Das2iO9M0BHnIbxPeyuCHsjMW+lJfyTc=
github.com/hashicorp/golang-lru v0.5.4/go.mod h1:iADmTwqILo4mZ8BN3D2Q6+9jd8WM5uGBxy+E8yxSoD4= github.com/hashicorp/golang-lru v0.5.4/go.mod h1:iADmTwqILo4mZ8BN3D2Q6+9jd8WM5uGBxy+E8yxSoD4=
github.com/hashicorp/golang-lru/v2 v2.0.7 h1:a+bsQ5rvGLjzHuww6tVxozPZFVghXaHOwFs4luLUK2k=
github.com/hashicorp/golang-lru/v2 v2.0.7/go.mod h1:QeFd9opnmA6QUJc5vARoKUSoFhyfM2/ZepoAG6RGpeM=
github.com/hashicorp/hcl v1.0.1-vault-7 h1:ag5OxFVy3QYTFTJODRzTKVZ6xvdfLLCA1cy/Y6xGI0I= github.com/hashicorp/hcl v1.0.1-vault-7 h1:ag5OxFVy3QYTFTJODRzTKVZ6xvdfLLCA1cy/Y6xGI0I=
github.com/hashicorp/hcl v1.0.1-vault-7/go.mod h1:XYhtn6ijBSAj6n4YqAaf7RBPS4I06AItNorpy+MoQNM= github.com/hashicorp/hcl v1.0.1-vault-7/go.mod h1:XYhtn6ijBSAj6n4YqAaf7RBPS4I06AItNorpy+MoQNM=
github.com/hashicorp/logutils v1.0.0/go.mod h1:QIAnNjmIWmVIIkWDTG1z5v++HQmx9WQRO+LraFDTW64= github.com/hashicorp/logutils v1.0.0/go.mod h1:QIAnNjmIWmVIIkWDTG1z5v++HQmx9WQRO+LraFDTW64=
@@ -0,0 +1,162 @@
package config
import (
"runtime"
"testing"
)
// The variables that set the two concurrency limits.
const (
testMaxConcurrentProcessingVar = "PIXA_MAX_CONCURRENT_PROCESSING"
testUpstreamConnectionsVar = "PIXA_UPSTREAM_CONNECTIONS"
)
// TestOmittedConcurrencyLimitsUseDefaults checks that an omitted
// max_concurrent_processing is the number of CPUs Go uses and an omitted
// upstream_connections is 64.
func TestOmittedConcurrencyLimitsUseDefaults(t *testing.T) {
t.Parallel()
c, err := configFromYAML(t, signingKeyLine)
if err != nil {
t.Fatalf("minimal config should be valid, got error: %v", err)
}
if c.MaxConcurrentProcessing != runtime.GOMAXPROCS(0) {
t.Errorf("MaxConcurrentProcessing = %d, want %d, one per CPU",
c.MaxConcurrentProcessing, runtime.GOMAXPROCS(0))
}
if c.UpstreamConnections != 64 {
t.Errorf("UpstreamConnections = %d, want 64", c.UpstreamConnections)
}
}
// TestExplicitConcurrencyLimitsAreUsed checks that valid values for the
// two limits are used as given.
func TestExplicitConcurrencyLimitsAreUsed(t *testing.T) {
t.Parallel()
c, err := configFromYAML(t, signingKeyLine+
"max_concurrent_processing: 3\nupstream_connections: 10\n")
if err != nil {
t.Fatalf("valid config should load, got error: %v", err)
}
if c.MaxConcurrentProcessing != 3 {
t.Errorf("MaxConcurrentProcessing = %d, want 3", c.MaxConcurrentProcessing)
}
if c.UpstreamConnections != 10 {
t.Errorf("UpstreamConnections = %d, want 10", c.UpstreamConnections)
}
}
// TestInvalidConcurrencyLimitAbortsStartup checks that a limit that is
// not a whole number of at least 1, or is null, aborts startup naming the
// key and the value, and the variable too where the value could have come
// from it.
func TestInvalidConcurrencyLimitAbortsStartup(t *testing.T) {
t.Parallel()
processing := keyMaxConcurrentProcessing
connections := keyUpstreamConnections
runAbortCases(t, []abortCase{
{
name: "max_concurrent_processing zero",
yaml: signingKeyLine + processing + ": 0\n",
wantErrSubstrings: []string{
processing, testMaxConcurrentProcessingVar, "value 0",
},
},
{
name: "max_concurrent_processing negative",
yaml: signingKeyLine + processing + ": -2\n",
wantErrSubstrings: []string{
processing, testMaxConcurrentProcessingVar, "value -2",
},
},
{
name: "max_concurrent_processing not a number",
yaml: signingKeyLine + processing + ": lots\n",
wantErrSubstrings: []string{
processing, testMaxConcurrentProcessingVar, "lots",
},
},
{
name: "max_concurrent_processing fractional",
yaml: signingKeyLine + processing + ": 1.5\n",
wantErrSubstrings: []string{processing, "1.5"},
},
{
name: "max_concurrent_processing null",
yaml: signingKeyLine + processing + ": null\n",
wantErrSubstrings: []string{processing, nullValueText},
},
{
name: "upstream_connections zero",
yaml: signingKeyLine + connections + ": 0\n",
wantErrSubstrings: []string{
connections, testUpstreamConnectionsVar, "value 0",
},
},
{
name: "upstream_connections negative",
yaml: signingKeyLine + connections + ": -5\n",
wantErrSubstrings: []string{
connections, testUpstreamConnectionsVar, "value -5",
},
},
{
name: "upstream_connections not a number",
yaml: signingKeyLine + connections + ": many\n",
wantErrSubstrings: []string{
connections, testUpstreamConnectionsVar, "many",
},
},
{
name: "upstream_connections null",
yaml: signingKeyLine + connections + ": null\n",
wantErrSubstrings: []string{connections, nullValueText},
},
})
}
// TestConcurrencyLimitsFromEnvironment checks that the two variables set
// the limits over the config file, and that an invalid value in either
// aborts startup naming the variable and the value.
func TestConcurrencyLimitsFromEnvironment(t *testing.T) {
t.Setenv(testMaxConcurrentProcessingVar, "3")
t.Setenv(testUpstreamConnectionsVar, "10")
c, err := configFromYAML(t, signingKeyLine+
"max_concurrent_processing: 5\nupstream_connections: 50\n")
if err != nil {
t.Fatalf("limits from the environment should load: %v", err)
}
if c.MaxConcurrentProcessing != 3 || c.UpstreamConnections != 10 {
t.Errorf("limits = %d and %d, want 3 and 10 from the environment",
c.MaxConcurrentProcessing, c.UpstreamConnections)
}
cases := []struct {
variable string
value string
}{
{testMaxConcurrentProcessingVar, "lots"},
{testMaxConcurrentProcessingVar, "0"},
{testUpstreamConnectionsVar, "-1"},
{testUpstreamConnectionsVar, "ten"},
}
for _, tc := range cases {
t.Run(tc.variable+"="+tc.value, func(t *testing.T) {
t.Setenv(tc.variable, tc.value)
_, err := configFromYAML(t, signingKeyLine)
wantStartupError(t, err, tc.variable, tc.value)
})
}
}
+233 -14
View File
@@ -10,9 +10,11 @@ import (
"net/url" "net/url"
"os" "os"
"path/filepath" "path/filepath"
"runtime"
"sort" "sort"
"strconv" "strconv"
"strings" "strings"
"time"
"git.eeqj.de/sneak/smartconfig" "git.eeqj.de/sneak/smartconfig"
"go.uber.org/fx" "go.uber.org/fx"
@@ -24,6 +26,11 @@ const (
DefaultPort = 8080 DefaultPort = 8080
DefaultStateDir = "/var/lib/pixa" DefaultStateDir = "/var/lib/pixa"
DefaultUpstreamConnectionsPerHost = 20 DefaultUpstreamConnectionsPerHost = 20
DefaultUpstreamConnections = 64
DefaultAccessControlAllowOrigin = "*"
DefaultUpstreamFetchTimeout = 30 * time.Second
DefaultUpstreamMaxResponseSize = 50 << 20 // 50 MiB
DefaultDownstreamTimeout = 60 * time.Second
) )
// Configuration key names. // Configuration key names.
@@ -41,9 +48,15 @@ const (
keyAllowlistHosts = "allowlist_hosts" keyAllowlistHosts = "allowlist_hosts"
keyAllowHTTP = "allow_http" keyAllowHTTP = "allow_http"
keyUpstreamConnectionsPerHost = "upstream_connections_per_host" keyUpstreamConnectionsPerHost = "upstream_connections_per_host"
keyUpstreamConnections = "upstream_connections"
keyMaxConcurrentProcessing = "max_concurrent_processing"
keyCacheMaxBytes = "cache_max_bytes" keyCacheMaxBytes = "cache_max_bytes"
keyBlockedNetworks = "blocked_networks" keyBlockedNetworks = "blocked_networks"
keyTrustedProxies = "trusted_proxies" keyTrustedProxies = "trusted_proxies"
keyAccessControlAllowOrigin = "access_control_allow_origin"
keyUpstreamFetchTimeout = "upstream_fetch_timeout"
keyUpstreamMaxResponseSize = "upstream_max_response_size"
keyDownstreamTimeout = "downstream_timeout"
) )
// placeholderSigningKey is the dummy signing_key shipped in // placeholderSigningKey is the dummy signing_key shipped in
@@ -69,7 +82,8 @@ var (
errEmptyEntry = errors.New("contains an empty entry") errEmptyEntry = errors.New("contains an empty entry")
errNotAValidURL = errors.New("not a valid URL") errNotAValidURL = errors.New("not a valid URL")
errPortOutOfRange = errors.New("outside the valid port range") errPortOutOfRange = errors.New("outside the valid port range")
errTooFewConnections = errors.New("must be at least 1") errSizeOutOfRange = errors.New("outside the accepted range")
errMustBeAtLeastOne = errors.New("must be at least 1")
errValueTooShort = errors.New("value too short") errValueTooShort = errors.New("value too short")
errPlaceholderKey = errors.New( errPlaceholderKey = errors.New(
"is the placeholder from config.example.yml; " + "is the placeholder from config.example.yml; " +
@@ -86,6 +100,10 @@ var (
errNotBareHostname = errors.New( errNotBareHostname = errors.New(
"must be a bare hostname without scheme, path, or whitespace") "must be a bare hostname without scheme, path, or whitespace")
errNoHostnameLabels = errors.New("contains no hostname labels") errNoHostnameLabels = errors.New("contains no hostname labels")
errNotADuration = errors.New("not a duration such as 30s or 2m")
errMustBePositive = errors.New("must be positive")
errNotAnOrigin = errors.New(
`not "*" or an origin such as https://example.com`)
) )
// Params defines dependencies for Config. // Params defines dependencies for Config.
@@ -112,6 +130,29 @@ type Config struct {
AllowHTTP bool // Allow non-TLS upstream (testing only) AllowHTTP bool // Allow non-TLS upstream (testing only)
UpstreamConnectionsPerHost int // Max concurrent connections per upstream host UpstreamConnectionsPerHost int // Max concurrent connections per upstream host
// UpstreamConnections is the most concurrent connections to all
// upstream hosts together, on top of the per-host limit.
// MaxConcurrentProcessing is the most images processed at once.
UpstreamConnections int
MaxConcurrentProcessing int
// UpstreamFetchTimeout is the time allowed for one fetch from an
// upstream host. UpstreamMaxResponseSize is the largest upstream
// response accepted, in bytes, and also the image processor's input
// limit.
UpstreamFetchTimeout time.Duration
UpstreamMaxResponseSize int64
// AccessControlAllowOrigin is the origin the CORS middleware allows
// to read responses: "*" for any, or one origin such as
// https://example.com.
AccessControlAllowOrigin string
// DownstreamTimeout bounds how long answering one client request may
// take. It is both the HTTP server's write timeout and the deadline
// of the per-request timeout middleware.
DownstreamTimeout time.Duration
// BlockedNetworks are operator-supplied CIDR ranges to refuse in // BlockedNetworks are operator-supplied CIDR ranges to refuse in
// addition to the built-in SSRF blocklist. Enforced by the upstream // addition to the built-in SSRF blocklist. Enforced by the upstream
// fetcher's dialer; the built-in ranges always apply. // fetcher's dialer; the built-in ranges always apply.
@@ -195,14 +236,12 @@ func New(_ fx.Lifecycle, params Params) (*Config, error) {
// unparseable or invalid is an error: defaults apply only to omitted // unparseable or invalid is an error: defaults apply only to omitted
// keys, never to invalid explicit values. // keys, never to invalid explicit values.
func newFromSmartConfig(sc *smartconfig.Config) (*Config, error) { func newFromSmartConfig(sc *smartconfig.Config) (*Config, error) {
if sc != nil { err := validateKnownKeys(sc)
err := validateKnownKeys(sc) if err != nil {
if err != nil { return nil, err
return nil, err
}
} }
err := validateAllowlistHostsValue(sc) err = validateAllowlistHostsValue(sc)
if err != nil { if err != nil {
return nil, err return nil, err
} }
@@ -240,6 +279,20 @@ func newFromSmartConfig(sc *smartconfig.Config) (*Config, error) {
AllowHTTP: loader.boolVal(keyAllowHTTP, false), AllowHTTP: loader.boolVal(keyAllowHTTP, false),
UpstreamConnectionsPerHost: loader.intVal( UpstreamConnectionsPerHost: loader.intVal(
keyUpstreamConnectionsPerHost, DefaultUpstreamConnectionsPerHost), keyUpstreamConnectionsPerHost, DefaultUpstreamConnectionsPerHost),
UpstreamConnections: loader.intVal(
keyUpstreamConnections, DefaultUpstreamConnections),
// Decoding and encoding are CPU-bound, so the default is one image
// per CPU Go uses, which follows a container's CPU limit.
MaxConcurrentProcessing: loader.intVal(
keyMaxConcurrentProcessing, runtime.GOMAXPROCS(0)),
UpstreamFetchTimeout: loader.durationVal(
keyUpstreamFetchTimeout, DefaultUpstreamFetchTimeout),
UpstreamMaxResponseSize: loader.int64Val(
keyUpstreamMaxResponseSize, DefaultUpstreamMaxResponseSize),
AccessControlAllowOrigin: loader.stringVal(
keyAccessControlAllowOrigin, DefaultAccessControlAllowOrigin),
DownstreamTimeout: loader.durationVal(
keyDownstreamTimeout, DefaultDownstreamTimeout),
CacheMaxBytes: loader.int64Val(keyCacheMaxBytes, 0), CacheMaxBytes: loader.int64Val(keyCacheMaxBytes, 0),
BlockedNetworks: blockedNetworks, BlockedNetworks: blockedNetworks,
TrustedProxies: trustedProxies, TrustedProxies: trustedProxies,
@@ -282,8 +335,13 @@ func newFromSmartConfig(sc *smartconfig.Config) (*Config, error) {
// being silently ignored, and rejects keys that are explicitly set to // being silently ignored, and rejects keys that are explicitly set to
// null: a null is a SET value, never an omission, so it must not // null: a null is a SET value, never an omission, so it must not
// silently take the default. The env section is permitted because // silently take the default. The env section is permitted because
// smartconfig consumes it for environment variable injection. // smartconfig consumes it for environment variable injection. A nil sc
// means no config file, which has no keys to check.
func validateKnownKeys(sc *smartconfig.Config) error { func validateKnownKeys(sc *smartconfig.Config) error {
if sc == nil {
return nil
}
var unknown, nullKeys []string var unknown, nullKeys []string
for key, value := range sc.Data() { for key, value := range sc.Data() {
@@ -353,8 +411,10 @@ func isKnownConfigKey(key string) bool {
switch key { switch key {
case keyDebug, keyMaintenanceMode, keyPort, keyStateDir, keySentryDSN, case keyDebug, keyMaintenanceMode, keyPort, keyStateDir, keySentryDSN,
keyDBURL, keyMetrics, keySigningKey, keyAllowlistHosts, keyAllowHTTP, keyDBURL, keyMetrics, keySigningKey, keyAllowlistHosts, keyAllowHTTP,
keyUpstreamConnectionsPerHost, keyCacheMaxBytes, keyBlockedNetworks, keyUpstreamConnectionsPerHost, keyUpstreamConnections,
keyTrustedProxies, "env": keyMaxConcurrentProcessing, keyCacheMaxBytes, keyBlockedNetworks,
keyTrustedProxies, keyAccessControlAllowOrigin, keyUpstreamFetchTimeout,
keyUpstreamMaxResponseSize, keyDownstreamTimeout, "env":
return true return true
} }
@@ -379,9 +439,15 @@ func envVarNames() map[string]string {
keyAllowlistHosts: "PIXA_ALLOWLIST_HOSTS", keyAllowlistHosts: "PIXA_ALLOWLIST_HOSTS",
keyAllowHTTP: "PIXA_ALLOW_HTTP", keyAllowHTTP: "PIXA_ALLOW_HTTP",
keyUpstreamConnectionsPerHost: "PIXA_UPSTREAM_CONNECTIONS_PER_HOST", keyUpstreamConnectionsPerHost: "PIXA_UPSTREAM_CONNECTIONS_PER_HOST",
keyUpstreamConnections: "PIXA_UPSTREAM_CONNECTIONS",
keyMaxConcurrentProcessing: "PIXA_MAX_CONCURRENT_PROCESSING",
keyCacheMaxBytes: "PIXA_CACHE_MAX_BYTES", keyCacheMaxBytes: "PIXA_CACHE_MAX_BYTES",
keyBlockedNetworks: "PIXA_BLOCKED_NETWORKS", keyBlockedNetworks: "PIXA_BLOCKED_NETWORKS",
keyTrustedProxies: "PIXA_TRUSTED_PROXIES", keyTrustedProxies: "PIXA_TRUSTED_PROXIES",
keyAccessControlAllowOrigin: "PIXA_ACCESS_CONTROL_ALLOW_ORIGIN",
keyUpstreamFetchTimeout: "PIXA_UPSTREAM_FETCH_TIMEOUT",
keyUpstreamMaxResponseSize: "PIXA_UPSTREAM_MAX_RESPONSE_SIZE",
keyDownstreamTimeout: "PIXA_DOWNSTREAM_TIMEOUT",
} }
} }
@@ -518,10 +584,9 @@ func (c *Config) validate() error {
settingName(keyPort), c.Port, errPortOutOfRange, maxPort) settingName(keyPort), c.Port, errPortOutOfRange, maxPort)
} }
if c.UpstreamConnectionsPerHost < 1 { err = c.validateConcurrencyLimits()
return fmt.Errorf("%s: value %d %w", if err != nil {
settingName(keyUpstreamConnectionsPerHost), return err
c.UpstreamConnectionsPerHost, errTooFewConnections)
} }
if c.StateDir == "" { if c.StateDir == "" {
@@ -535,6 +600,11 @@ func (c *Config) validate() error {
settingName(keyCacheMaxBytes), c.CacheMaxBytes, errMustNotBeNegative) settingName(keyCacheMaxBytes), c.CacheMaxBytes, errMustNotBeNegative)
} }
err = c.validateUpstreamMaxResponseSize()
if err != nil {
return err
}
for _, host := range c.AllowlistHosts { for _, host := range c.AllowlistHosts {
err := validateAllowlistHost(host) err := validateAllowlistHost(host)
if err != nil { if err != nil {
@@ -556,6 +626,106 @@ func (c *Config) validate() error {
errMustBeSetTogether) errMustBeSetTogether)
} }
return c.validateAccessControlAllowOrigin()
}
// validateUpstreamMaxResponseSize checks that upstream_max_response_size
// is from 1 byte to 1 GiB. An upstream response is read whole into
// memory, and the image processor reads one byte past this limit, which
// must not overflow.
func (c *Config) validateUpstreamMaxResponseSize() error {
const maxUpstreamMaxResponseSize = 1 << 30 // 1 GiB
if c.UpstreamMaxResponseSize < 1 ||
c.UpstreamMaxResponseSize > maxUpstreamMaxResponseSize {
return fmt.Errorf("%s: value %d is %w 1-%d",
settingName(keyUpstreamMaxResponseSize), c.UpstreamMaxResponseSize,
errSizeOutOfRange, maxUpstreamMaxResponseSize)
}
return nil
}
// validateAccessControlAllowOrigin accepts "*" or an origin exactly as a browser
// sends it: http or https, an IP address as netip writes it or a lowercase name
// with a letter in its last part, and an optional port 1-65535, not the default.
func (c *Config) validateAccessControlAllowOrigin() error {
origin := c.AccessControlAllowOrigin
if origin == "*" {
return nil
}
errOrigin := fmt.Errorf("%s: value %q is %w",
settingName(keyAccessControlAllowOrigin), origin, errNotAnOrigin)
parsed, err := url.Parse(origin)
if err != nil {
return errOrigin
}
defaultPort := map[string]string{"http": "80", "https": "443"}[parsed.Scheme]
if defaultPort == "" {
return errOrigin
}
const letters = "abcdefghijklmnopqrstuvwxyz"
host := parsed.Hostname()
lastPart := host[strings.LastIndex(host, ".")+1:]
addr, err := netip.ParseAddr(host)
switch {
case err == nil && addr.Is6():
host = "[" + addr.String() + "]"
case err == nil:
host = addr.String()
case strings.Trim(host, letters+"0123456789-.") != "": // a character other than these
return errOrigin
case !strings.ContainsAny(lastPart, letters):
return errOrigin
}
// The value must be exactly the origin rebuilt from its parts.
rebuilt := parsed.Scheme + "://" + host
port := parsed.Port()
if port != "" {
_, err := strconv.ParseUint(port, 10, 16)
if err != nil || port[0] == '0' || port == defaultPort {
return errOrigin
}
rebuilt += ":" + port
}
if rebuilt != origin {
return errOrigin
}
return nil
}
// validateConcurrencyLimits checks that the two upstream connection limits
// and the image processing limit are at least 1.
func (c *Config) validateConcurrencyLimits() error {
if c.UpstreamConnectionsPerHost < 1 {
return fmt.Errorf("%s: value %d %w",
settingName(keyUpstreamConnectionsPerHost),
c.UpstreamConnectionsPerHost, errMustBeAtLeastOne)
}
if c.UpstreamConnections < 1 {
return fmt.Errorf("%s: value %d %w",
settingName(keyUpstreamConnections),
c.UpstreamConnections, errMustBeAtLeastOne)
}
if c.MaxConcurrentProcessing < 1 {
return fmt.Errorf("%s: value %d %w",
settingName(keyMaxConcurrentProcessing),
c.MaxConcurrentProcessing, errMustBeAtLeastOne)
}
return nil return nil
} }
@@ -673,6 +843,19 @@ func (l *strictLoader) int64Val(key string, defaultVal int64) int64 {
return val return val
} }
func (l *strictLoader) durationVal(key string, defaultVal time.Duration) time.Duration {
if l.err != nil {
return 0
}
val, err := getDuration(l.sc, key, defaultVal)
if err != nil {
l.err = err
}
return val
}
func (l *strictLoader) boolVal(key string, defaultVal bool) bool { func (l *strictLoader) boolVal(key string, defaultVal bool) bool {
if l.err != nil { if l.err != nil {
return false return false
@@ -794,6 +977,42 @@ func getInt64(sc *smartconfig.Config, key string, defaultVal int64) (int64, erro
} }
} }
// getDuration returns the duration value for key, or defaultVal if the
// key is omitted. A present value must be a positive Go duration string
// such as "30s" or "2m", read with time.ParseDuration; a bare number has
// no unit and is an error, as is an explicit null.
func getDuration(
sc *smartconfig.Config, key string, defaultVal time.Duration,
) (time.Duration, error) {
raw, ok := lookupValue(sc, key)
if !ok {
return defaultVal, nil
}
if raw == nil {
return 0, errNullConfigValue(key)
}
str, ok := raw.(string)
if !ok {
return 0, fmt.Errorf("config key %q: value %v (%T) is %w",
key, raw, raw, errNotADuration)
}
parsed, err := time.ParseDuration(strings.TrimSpace(str))
if err != nil {
return 0, fmt.Errorf("%s: value %q is %w",
settingName(key), str, errNotADuration)
}
if parsed <= 0 {
return 0, fmt.Errorf("%s: value %q %w",
settingName(key), str, errMustBePositive)
}
return parsed, nil
}
// getBool returns the boolean value for key, or defaultVal if the key // getBool returns the boolean value for key, or defaultVal if the key
// is omitted. A present value that is not a boolean (or a ParseBool-able // is omitted. A present value that is not a boolean (or a ParseBool-able
// string), or is explicitly null, is an error; numbers are not accepted // string), or is explicitly null, is an error; numbers are not accepted
@@ -6,6 +6,7 @@ import (
"path/filepath" "path/filepath"
"strings" "strings"
"testing" "testing"
"time"
"git.eeqj.de/sneak/smartconfig" "git.eeqj.de/sneak/smartconfig"
) )
@@ -599,3 +600,244 @@ func TestEnsureStateDirFailsOnUncreatablePath(t *testing.T) {
t.Errorf("error %q does not name the offending key state_dir", err.Error()) t.Errorf("error %q does not name the offending key state_dir", err.Error())
} }
} }
// TestOmittedOriginTimeoutsAndSizeUseDefaults checks that the CORS
// origin, the upstream fetch timeout, the upstream response size limit
// and the downstream timeout default to the values pixa used before they
// could be configured.
func TestOmittedOriginTimeoutsAndSizeUseDefaults(t *testing.T) {
t.Parallel()
c, err := configFromYAML(t, signingKeyLine)
if err != nil {
t.Fatalf("minimal config should be valid, got error: %v", err)
}
if c.AccessControlAllowOrigin != "*" {
t.Errorf("AccessControlAllowOrigin = %q, want *", c.AccessControlAllowOrigin)
}
if c.UpstreamFetchTimeout != 30*time.Second {
t.Errorf("UpstreamFetchTimeout = %v, want 30s", c.UpstreamFetchTimeout)
}
if c.UpstreamMaxResponseSize != 50<<20 {
t.Errorf("UpstreamMaxResponseSize = %d, want %d (50 MiB)",
c.UpstreamMaxResponseSize, 50<<20)
}
if c.DownstreamTimeout != 60*time.Second {
t.Errorf("DownstreamTimeout = %v, want 60s", c.DownstreamTimeout)
}
}
// TestExplicitOriginTimeoutsAndSizeAreUsed checks that valid values for
// the CORS origin, the two timeouts and the response size limit are used
// as given. The size is the largest accepted, 1 GiB.
func TestExplicitOriginTimeoutsAndSizeAreUsed(t *testing.T) {
t.Parallel()
c, err := configFromYAML(t, signingKeyLine+`
access_control_allow_origin: https://app.example.com
upstream_fetch_timeout: 10s
upstream_max_response_size: 1073741824
downstream_timeout: 2m
`)
if err != nil {
t.Fatalf("valid config should load, got error: %v", err)
}
if c.AccessControlAllowOrigin != "https://app.example.com" {
t.Errorf("AccessControlAllowOrigin = %q, want https://app.example.com",
c.AccessControlAllowOrigin)
}
if c.UpstreamFetchTimeout != 10*time.Second {
t.Errorf("UpstreamFetchTimeout = %v, want 10s", c.UpstreamFetchTimeout)
}
if c.UpstreamMaxResponseSize != 1073741824 {
t.Errorf("UpstreamMaxResponseSize = %d, want 1073741824",
c.UpstreamMaxResponseSize)
}
if c.DownstreamTimeout != 2*time.Minute {
t.Errorf("DownstreamTimeout = %v, want 2m", c.DownstreamTimeout)
}
}
// TestOriginWithPortOrAnyOriginIsAccepted checks the other accepted forms
// of access_control_allow_origin: "*", an origin with a port, and origins
// whose host is an IPv4 or IPv6 address.
func TestOriginWithPortOrAnyOriginIsAccepted(t *testing.T) {
t.Parallel()
for _, origin := range []string{
"*", "http://localhost:3000", "http://192.0.2.1", "http://[2001:db8::1]:8080",
} {
c, err := configFromYAML(t, signingKeyLine+
"access_control_allow_origin: \""+origin+"\"\n")
if err != nil {
t.Fatalf("origin %q should be accepted, got error: %v", origin, err)
}
if c.AccessControlAllowOrigin != origin {
t.Errorf("AccessControlAllowOrigin = %q, want %q",
c.AccessControlAllowOrigin, origin)
}
}
}
// invalidTimeoutCases are configs where upstream_fetch_timeout or
// downstream_timeout is not a positive Go duration string; each must
// abort startup naming the key and the value.
func invalidTimeoutCases() []abortCase {
return []abortCase{
{
name: "upstream_fetch_timeout not a duration",
yaml: signingKeyLine + "upstream_fetch_timeout: soon\n",
wantErrSubstrings: []string{keyUpstreamFetchTimeout, "soon"},
},
{
name: "upstream_fetch_timeout number without a unit",
yaml: signingKeyLine + "upstream_fetch_timeout: 45\n",
wantErrSubstrings: []string{keyUpstreamFetchTimeout, "45"},
},
{
name: "upstream_fetch_timeout zero",
yaml: signingKeyLine + "upstream_fetch_timeout: 0s\n",
wantErrSubstrings: []string{keyUpstreamFetchTimeout, "0s"},
},
{
name: "upstream_fetch_timeout negative",
yaml: signingKeyLine + "upstream_fetch_timeout: -5s\n",
wantErrSubstrings: []string{keyUpstreamFetchTimeout, "-5s"},
},
{
name: "upstream_fetch_timeout null",
yaml: signingKeyLine + "upstream_fetch_timeout: null\n",
wantErrSubstrings: []string{keyUpstreamFetchTimeout, nullValueText},
},
{
name: "downstream_timeout not a duration",
yaml: signingKeyLine + "downstream_timeout: 1 minute\n",
wantErrSubstrings: []string{keyDownstreamTimeout, "1 minute"},
},
{
name: "downstream_timeout zero",
yaml: signingKeyLine + "downstream_timeout: 0s\n",
wantErrSubstrings: []string{keyDownstreamTimeout, "0s"},
},
{
name: "downstream_timeout negative",
yaml: signingKeyLine + "downstream_timeout: -1m\n",
wantErrSubstrings: []string{keyDownstreamTimeout, "-1m"},
},
{
name: "downstream_timeout null",
yaml: signingKeyLine + "downstream_timeout:\n",
wantErrSubstrings: []string{keyDownstreamTimeout, nullValueText},
},
}
}
// invalidSizeAndOriginCases are configs where upstream_max_response_size
// is not a whole number of bytes from 1 to 1 GiB, or
// access_control_allow_origin is neither "*" nor an origin; each must
// abort startup naming the key and the value.
func invalidSizeAndOriginCases() []abortCase {
badOrigins := []string{
"", // empty
"example.com", // no scheme
"https://example.com/images", // a path
"https://example.com/", // a trailing slash
// The CORS middleware reads a * inside an origin as a pattern
// that lets other sites read responses.
"https://*",
"https://*.example.com",
"https://*example.com",
"https://a.com,b.com", // two hosts
"https://example.com:", // an empty port
"https://:8443", // no host
"https://example.com:0", // a port below 1
"https://example.com:99999", // a port above 65535
"https://exämple.com", // a host name that is not ASCII
"https://example.com:443", // the default port for https
"http://example.com:80", // the default port for http
"https://example.com:08080", // a port with a leading zero
"https://01.2.3.4", // an IPv4 address with a leading zero
"https://10.0.0", // an IPv4 address with three parts
"https://192.168.1.256", // an IPv4 address part above 255
"https://example.123", // a host name whose last part is a number
"https://[0:0:0:0:0:0:0:1]", // an IPv6 address not in its shortest form
"file://example.com", // a scheme other than http or https
"HTTPS://example.com", // a scheme in upper case
"https://Example.com", // a host name in upper case
}
cases := make([]abortCase, 0, len(badOrigins))
for _, origin := range badOrigins {
cases = append(cases, abortCase{
name: "access_control_allow_origin " + origin,
yaml: signingKeyLine +
"access_control_allow_origin: \"" + origin + "\"\n",
wantErrSubstrings: []string{keyAccessControlAllowOrigin, origin},
})
}
return append(cases, []abortCase{
{
name: "access_control_allow_origin null",
yaml: signingKeyLine + "access_control_allow_origin: null\n",
wantErrSubstrings: []string{keyAccessControlAllowOrigin, nullValueText},
},
{
name: "upstream_max_response_size with a unit",
yaml: signingKeyLine + "upstream_max_response_size: 50MB\n",
wantErrSubstrings: []string{keyUpstreamMaxResponseSize, "50MB"},
},
{
name: "upstream_max_response_size fractional",
yaml: signingKeyLine + "upstream_max_response_size: 1.5\n",
wantErrSubstrings: []string{keyUpstreamMaxResponseSize, "1.5"},
},
{
name: "upstream_max_response_size zero",
yaml: signingKeyLine + "upstream_max_response_size: 0\n",
wantErrSubstrings: []string{keyUpstreamMaxResponseSize, "0"},
},
{
name: "upstream_max_response_size negative",
yaml: signingKeyLine + "upstream_max_response_size: -1\n",
wantErrSubstrings: []string{keyUpstreamMaxResponseSize, "-1"},
},
{
name: "upstream_max_response_size null",
yaml: signingKeyLine + "upstream_max_response_size: null\n",
wantErrSubstrings: []string{keyUpstreamMaxResponseSize, nullValueText},
},
{
name: "upstream_max_response_size above 1 GiB",
yaml: signingKeyLine + "upstream_max_response_size: 1073741825\n",
wantErrSubstrings: []string{keyUpstreamMaxResponseSize, "1073741825"},
},
{
name: "upstream_max_response_size largest 64-bit integer",
yaml: signingKeyLine +
"upstream_max_response_size: 9223372036854775807\n",
wantErrSubstrings: []string{
keyUpstreamMaxResponseSize, "9223372036854775807",
},
},
}...)
}
// TestInvalidOriginTimeoutOrSizeAbortsStartup verifies the
// no-silent-fallback rule for the CORS origin, the two timeouts and the
// response size limit: a value that does not parse or is out of range
// aborts startup naming the key and the value.
func TestInvalidOriginTimeoutOrSizeAbortsStartup(t *testing.T) {
t.Parallel()
runAbortCases(t, append(invalidTimeoutCases(), invalidSizeAndOriginCases()...))
}
+37
View File
@@ -8,6 +8,7 @@ import (
"slices" "slices"
"strings" "strings"
"testing" "testing"
"time"
"sneak.berlin/go/pixa/internal/globals" "sneak.berlin/go/pixa/internal/globals"
"sneak.berlin/go/pixa/internal/logger" "sneak.berlin/go/pixa/internal/logger"
@@ -66,9 +67,15 @@ func TestEnvironmentSetsEveryKey(t *testing.T) {
t.Setenv("PIXA_ALLOWLIST_HOSTS", "s3.sneak.cloud,.example.com") t.Setenv("PIXA_ALLOWLIST_HOSTS", "s3.sneak.cloud,.example.com")
t.Setenv("PIXA_ALLOW_HTTP", "true") t.Setenv("PIXA_ALLOW_HTTP", "true")
t.Setenv("PIXA_UPSTREAM_CONNECTIONS_PER_HOST", "5") t.Setenv("PIXA_UPSTREAM_CONNECTIONS_PER_HOST", "5")
t.Setenv("PIXA_UPSTREAM_CONNECTIONS", "10")
t.Setenv("PIXA_MAX_CONCURRENT_PROCESSING", "3")
t.Setenv("PIXA_CACHE_MAX_BYTES", "1024") t.Setenv("PIXA_CACHE_MAX_BYTES", "1024")
t.Setenv("PIXA_BLOCKED_NETWORKS", "203.0.113.0/24") t.Setenv("PIXA_BLOCKED_NETWORKS", "203.0.113.0/24")
t.Setenv("PIXA_TRUSTED_PROXIES", "192.0.2.0/24") t.Setenv("PIXA_TRUSTED_PROXIES", "192.0.2.0/24")
t.Setenv("PIXA_ACCESS_CONTROL_ALLOW_ORIGIN", "https://app.example.com")
t.Setenv("PIXA_UPSTREAM_FETCH_TIMEOUT", "10s")
t.Setenv("PIXA_UPSTREAM_MAX_RESPONSE_SIZE", "1048576")
t.Setenv("PIXA_DOWNSTREAM_TIMEOUT", "2m")
c, err := newFromSmartConfig(nil) c, err := newFromSmartConfig(nil)
if err != nil { if err != nil {
@@ -88,10 +95,16 @@ func TestEnvironmentSetsEveryKey(t *testing.T) {
AllowlistHosts: []string{testHostS3, ".example.com"}, AllowlistHosts: []string{testHostS3, ".example.com"},
AllowHTTP: true, AllowHTTP: true,
UpstreamConnectionsPerHost: 5, UpstreamConnectionsPerHost: 5,
UpstreamConnections: 10,
MaxConcurrentProcessing: 3,
CacheMaxBytes: 1024, CacheMaxBytes: 1024,
cacheMaxBytesExplicit: true, cacheMaxBytesExplicit: true,
BlockedNetworks: []netip.Prefix{netip.MustParsePrefix("203.0.113.0/24")}, BlockedNetworks: []netip.Prefix{netip.MustParsePrefix("203.0.113.0/24")},
TrustedProxies: []netip.Prefix{netip.MustParsePrefix("192.0.2.0/24")}, TrustedProxies: []netip.Prefix{netip.MustParsePrefix("192.0.2.0/24")},
AccessControlAllowOrigin: "https://app.example.com",
UpstreamFetchTimeout: 10 * time.Second,
UpstreamMaxResponseSize: 1048576,
DownstreamTimeout: 2 * time.Minute,
} }
if !reflect.DeepEqual(*c, want) { if !reflect.DeepEqual(*c, want) {
@@ -280,6 +293,30 @@ func TestInvalidDebugFromEnvironmentAbortsStartup(t *testing.T) {
wantStartupError(t, err, "PIXA_DEBUG", "maybe") wantStartupError(t, err, "PIXA_DEBUG", "maybe")
} }
// TestInvalidOriginTimeoutOrSizeFromEnvironmentAbortsStartup checks that
// an invalid CORS origin, timeout or response size limit in its variable
// aborts startup naming the variable and the value.
func TestInvalidOriginTimeoutOrSizeFromEnvironmentAbortsStartup(t *testing.T) {
cases := []struct {
variable string
value string
}{
{"PIXA_ACCESS_CONTROL_ALLOW_ORIGIN", "example.com"},
{"PIXA_UPSTREAM_FETCH_TIMEOUT", "soon"},
{"PIXA_UPSTREAM_MAX_RESPONSE_SIZE", "50MB"},
{"PIXA_DOWNSTREAM_TIMEOUT", "0s"},
}
for _, tc := range cases {
t.Run(tc.variable, func(t *testing.T) {
t.Setenv(tc.variable, tc.value)
_, err := configFromYAML(t, signingKeyLine)
wantStartupError(t, err, tc.variable, tc.value)
})
}
}
// TestConfigFileAloneBehavesAsBefore checks that with no variables set // TestConfigFileAloneBehavesAsBefore checks that with no variables set
// (TestMain unsets them) the config file's values are used and omitted // (TestMain unsets them) the config file's values are used and omitted
// keys take their defaults. // keys take their defaults.
+15 -17
View File
@@ -4,9 +4,9 @@ package database
import ( import (
"context" "context"
"database/sql" "database/sql"
"embed"
"errors" "errors"
"fmt" "fmt"
"io/fs"
"log/slog" "log/slog"
"path/filepath" "path/filepath"
"sort" "sort"
@@ -15,14 +15,12 @@ import (
"go.uber.org/fx" "go.uber.org/fx"
"sneak.berlin/go/pixa/internal/config" "sneak.berlin/go/pixa/internal/config"
"sneak.berlin/go/pixa/internal/db/migrations"
"sneak.berlin/go/pixa/internal/logger" "sneak.berlin/go/pixa/internal/logger"
_ "modernc.org/sqlite" // SQLite driver registration _ "modernc.org/sqlite" // SQLite driver registration
) )
//go:embed schema/*.sql
var schemaFS embed.FS
// bootstrapVersion is the migration that creates the schema_migrations // bootstrapVersion is the migration that creates the schema_migrations
// table itself. It is applied before the normal migration loop. // table itself. It is applied before the normal migration loop.
const bootstrapVersion = 0 const bootstrapVersion = 0
@@ -113,29 +111,29 @@ func New(lc fx.Lifecycle, params Params) (*Database, error) {
return s, nil return s, nil
} }
// collectMigrations reads the embedded schema directory and returns // collectMigrations reads the embedded migrations directory and returns
// migration filenames sorted lexicographically. // migration filenames sorted lexicographically.
func collectMigrations() ([]string, error) { func collectMigrations() ([]string, error) {
entries, err := schemaFS.ReadDir("schema") entries, err := fs.ReadDir(migrations.FS(), ".")
if err != nil { if err != nil {
return nil, fmt.Errorf("failed to read schema directory: %w", err) return nil, fmt.Errorf("failed to read migrations directory: %w", err)
} }
var migrations []string var filenames []string
for _, entry := range entries { for _, entry := range entries {
if !entry.IsDir() && strings.HasSuffix(entry.Name(), ".sql") { if !entry.IsDir() && strings.HasSuffix(entry.Name(), ".sql") {
migrations = append(migrations, entry.Name()) filenames = append(filenames, entry.Name())
} }
} }
sort.Strings(migrations) sort.Strings(filenames)
return migrations, nil return filenames, nil
} }
// bootstrapMigrationsTable ensures the schema_migrations table exists // bootstrapMigrationsTable ensures the schema_migrations table exists
// by applying 000.sql if the table is missing. // by applying 000_migration.sql if the table is missing.
func bootstrapMigrationsTable(ctx context.Context, db *sql.DB, log *slog.Logger) error { func bootstrapMigrationsTable(ctx context.Context, db *sql.DB, log *slog.Logger) error {
var tableExists int var tableExists int
@@ -150,9 +148,9 @@ func bootstrapMigrationsTable(ctx context.Context, db *sql.DB, log *slog.Logger)
return nil return nil
} }
content, err := schemaFS.ReadFile("schema/000.sql") content, err := fs.ReadFile(migrations.FS(), "000_migration.sql")
if err != nil { if err != nil {
return fmt.Errorf("failed to read bootstrap migration 000.sql: %w", err) return fmt.Errorf("failed to read bootstrap migration 000_migration.sql: %w", err)
} }
if log != nil { if log != nil {
@@ -177,12 +175,12 @@ func ApplyMigrations(ctx context.Context, db *sql.DB, log *slog.Logger) error {
return err return err
} }
migrations, err := collectMigrations() filenames, err := collectMigrations()
if err != nil { if err != nil {
return err return err
} }
for _, migration := range migrations { for _, migration := range filenames {
version, parseErr := ParseMigrationVersion(migration) version, parseErr := ParseMigrationVersion(migration)
if parseErr != nil { if parseErr != nil {
return parseErr return parseErr
@@ -208,7 +206,7 @@ func ApplyMigrations(ctx context.Context, db *sql.DB, log *slog.Logger) error {
} }
// Read and apply migration. // Read and apply migration.
content, readErr := schemaFS.ReadFile(filepath.Join("schema", migration)) content, readErr := fs.ReadFile(migrations.FS(), migration)
if readErr != nil { if readErr != nil {
return fmt.Errorf("failed to read migration %s: %w", migration, readErr) return fmt.Errorf("failed to read migration %s: %w", migration, readErr)
} }
@@ -0,0 +1,54 @@
package database
import (
"bytes"
"database/sql"
"log/slog"
"path/filepath"
"strings"
"testing"
_ "modernc.org/sqlite" // SQLite driver registration
)
// TestApplyMigrations_SecondRunAppliesNothing applies the migrations twice
// to one database file, as happens when pixad starts again on the database
// it created, and checks that the second run applies none of them.
// ApplyMigrations logs a message starting with "applying" before it runs
// any migration, the bootstrap one included.
func TestApplyMigrations_SecondRunAppliesNothing(t *testing.T) {
t.Parallel()
ctx := t.Context()
db, err := sql.Open("sqlite", filepath.Join(t.TempDir(), "state.sqlite3"))
if err != nil {
t.Fatalf("failed to open test db: %v", err)
}
t.Cleanup(func() { _ = db.Close() })
var firstLog bytes.Buffer
err = ApplyMigrations(ctx, db, slog.New(slog.NewTextHandler(&firstLog, nil)))
if err != nil {
t.Fatalf("first ApplyMigrations failed: %v", err)
}
if !strings.Contains(firstLog.String(), "applying") {
t.Fatalf("first ApplyMigrations logged no applied migration:\n%s",
firstLog.String())
}
var secondLog bytes.Buffer
err = ApplyMigrations(ctx, db, slog.New(slog.NewTextHandler(&secondLog, nil)))
if err != nil {
t.Fatalf("second ApplyMigrations failed: %v", err)
}
if strings.Contains(secondLog.String(), "applying") {
t.Errorf("second ApplyMigrations ran a migration again:\n%s",
secondLog.String())
}
}
+15
View File
@@ -0,0 +1,15 @@
// Package migrations provides the embedded SQL migration files.
package migrations
import (
"embed"
"io/fs"
)
//go:embed *.sql
var files embed.FS
// FS returns the embedded filesystem containing the migration files.
func FS() fs.FS {
return files
}
+9 -5
View File
@@ -106,20 +106,24 @@ func (s *Handlers) initImageService() error {
// Create the fetcher config // Create the fetcher config
fetcherCfg := httpfetcher.DefaultConfig() fetcherCfg := httpfetcher.DefaultConfig()
fetcherCfg.AllowHTTP = s.config.AllowHTTP fetcherCfg.AllowHTTP = s.config.AllowHTTP
fetcherCfg.Timeout = s.config.UpstreamFetchTimeout
fetcherCfg.MaxResponseSize = s.config.UpstreamMaxResponseSize
if s.config.UpstreamConnectionsPerHost > 0 { if s.config.UpstreamConnectionsPerHost > 0 {
fetcherCfg.MaxConnectionsPerHost = s.config.UpstreamConnectionsPerHost fetcherCfg.MaxConnectionsPerHost = s.config.UpstreamConnectionsPerHost
} }
fetcherCfg.MaxConnections = s.config.UpstreamConnections
fetcherCfg.BlockedNetworks = s.config.BlockedNetworks fetcherCfg.BlockedNetworks = s.config.BlockedNetworks
// Create the service // Create the service
svc, err := imgcache.NewService(&imgcache.ServiceConfig{ svc, err := imgcache.NewService(&imgcache.ServiceConfig{
Cache: cache, Cache: cache,
FetcherConfig: fetcherCfg, FetcherConfig: fetcherCfg,
SigningKey: s.config.SigningKey, SigningKey: s.config.SigningKey,
Allowlist: s.config.AllowlistHosts, Allowlist: s.config.AllowlistHosts,
Logger: s.log, MaxConcurrentProcessing: s.config.MaxConcurrentProcessing,
Logger: s.log,
}) })
if err != nil { if err != nil {
return err return err
+9
View File
@@ -12,6 +12,7 @@ import (
"github.com/go-chi/chi/v5" "github.com/go-chi/chi/v5"
"sneak.berlin/go/pixa/internal/encurl" "sneak.berlin/go/pixa/internal/encurl"
"sneak.berlin/go/pixa/internal/httpfetcher" "sneak.berlin/go/pixa/internal/httpfetcher"
"sneak.berlin/go/pixa/internal/imageprocessor"
"sneak.berlin/go/pixa/internal/imgcache" "sneak.berlin/go/pixa/internal/imgcache"
) )
@@ -217,6 +218,14 @@ func (s *Handlers) respondImageError(
return return
} }
if errors.Is(err, httpfetcher.ErrTooManyConnections) ||
errors.Is(err, imageprocessor.ErrTooManyImages) {
s.respondError(w, "server busy, try again later",
http.StatusServiceUnavailable)
return
}
s.respondError(w, "internal error", http.StatusInternalServerError) s.respondError(w, "internal error", http.StatusInternalServerError)
} }
@@ -158,8 +158,9 @@ func TestHandleImage_AllowlistedHost_MaxAge(t *testing.T) {
} }
// TestHandleImageEnc_MaxAge verifies that an image served through an encrypted // TestHandleImageEnc_MaxAge verifies that an image served through an encrypted
// URL with a 60 second TTL may be cached for at most those 60 seconds, and that // URL with a 60 second TTL may be cached for at most those 60 seconds, that one
// one made without a TTL, which never expires, may be cached for a year. // with a two-year TTL may be cached for a year, and that one made without a
// TTL, which never expires, may be cached for a year.
func TestHandleImageEnc_MaxAge(t *testing.T) { func TestHandleImageEnc_MaxAge(t *testing.T) {
t.Parallel() t.Parallel()
@@ -170,6 +171,7 @@ func TestHandleImageEnc_MaxAge(t *testing.T) {
wantAtMost int wantAtMost int
}{ }{
{"60 second TTL", time.Now().Add(time.Minute).Unix(), 50, 60}, {"60 second TTL", time.Now().Add(time.Minute).Unix(), 50, 60},
{"two-year TTL", time.Now().Add(2 * 365 * 24 * time.Hour).Unix(), 31536000, 31536000},
{"no TTL", 0, 31536000, 31536000}, {"no TTL", 0, 31536000, 31536000},
} }
+5
View File
@@ -12,6 +12,7 @@ import (
"sneak.berlin/go/pixa/internal/encurl" "sneak.berlin/go/pixa/internal/encurl"
"sneak.berlin/go/pixa/internal/httpfetcher" "sneak.berlin/go/pixa/internal/httpfetcher"
"sneak.berlin/go/pixa/internal/imageprocessor"
"sneak.berlin/go/pixa/internal/imgcache" "sneak.berlin/go/pixa/internal/imgcache"
) )
@@ -124,6 +125,10 @@ func (s *Handlers) handleImageError(w http.ResponseWriter, err error) {
s.respondError(w, "upstream error", http.StatusBadGateway) s.respondError(w, "upstream error", http.StatusBadGateway)
case errors.Is(err, httpfetcher.ErrUpstreamTimeout): case errors.Is(err, httpfetcher.ErrUpstreamTimeout):
s.respondError(w, "upstream timeout", http.StatusGatewayTimeout) s.respondError(w, "upstream timeout", http.StatusGatewayTimeout)
case errors.Is(err, httpfetcher.ErrTooManyConnections),
errors.Is(err, imageprocessor.ErrTooManyImages):
s.respondError(w, "server busy, try again later",
http.StatusServiceUnavailable)
default: default:
s.log.Error("image request failed", "error", err) s.log.Error("image request failed", "error", err)
s.respondError(w, "internal error", http.StatusInternalServerError) s.respondError(w, "internal error", http.StatusInternalServerError)
@@ -0,0 +1,49 @@
package handlers
import (
"fmt"
"log/slog"
"net/http"
"net/http/httptest"
"strings"
"testing"
"sneak.berlin/go/pixa/internal/httpfetcher"
"sneak.berlin/go/pixa/internal/imageprocessor"
"sneak.berlin/go/pixa/internal/imgcache"
)
// TestServerBusyAnswers503 checks that both image routes answer 503 with
// a clear error when the image service gives up waiting for a free upstream
// connection or processing slot, wrapped as the service wraps them.
func TestServerBusyAnswers503(t *testing.T) {
t.Parallel()
h := &Handlers{log: slog.New(slog.DiscardHandler)}
req := &imgcache.ImageRequest{SourceHost: "img.example.com", SourcePath: "/a.jpg"}
for _, err := range []error{
fmt.Errorf("upstream fetch failed: %w", httpfetcher.ErrTooManyConnections),
fmt.Errorf("image processing failed: %w", imageprocessor.ErrTooManyImages),
} {
plain := httptest.NewRecorder()
h.respondImageError(plain, req, err)
encrypted := httptest.NewRecorder()
h.handleImageError(encrypted, err)
for route, rec := range map[string]*httptest.ResponseRecorder{
"/v1/image/": plain, "/v1/e/": encrypted,
} {
if rec.Code != http.StatusServiceUnavailable {
t.Errorf("%s for %v: status = %d, want %d",
route, err, rec.Code, http.StatusServiceUnavailable)
}
if !strings.Contains(rec.Body.String(), "server busy, try again later") {
t.Errorf("%s for %v: body = %q, want the server busy error",
route, err, rec.Body.String())
}
}
}
}
+78 -27
View File
@@ -1,5 +1,6 @@
// Package httpfetcher fetches content from upstream HTTP origins with SSRF // Package httpfetcher fetches content from upstream HTTP origins with SSRF
// protection, per-host connection limits, and content-type validation. // protection, connection limits per host and for all hosts together, and
// content-type validation.
package httpfetcher package httpfetcher
import ( import (
@@ -28,8 +29,13 @@ const (
DefaultIdleConnTimeout = 90 * time.Second DefaultIdleConnTimeout = 90 * time.Second
DefaultMaxRedirects = 10 DefaultMaxRedirects = 10
DefaultMaxConnectionsPerHost = 20 DefaultMaxConnectionsPerHost = 20
DefaultMaxConnections = 64
) )
// ConnectionWaitTimeout is how long Fetch waits for a free connection when
// MaxConnections fetches are already in progress.
const ConnectionWaitTimeout = 10 * time.Second
// MIME content types. // MIME content types.
const ( const (
contentTypeJPEG = "image/jpeg" contentTypeJPEG = "image/jpeg"
@@ -70,6 +76,7 @@ var (
ErrInvalidContentType = errors.New("invalid or unsupported content type") ErrInvalidContentType = errors.New("invalid or unsupported content type")
ErrUpstreamError = errors.New("upstream server error") ErrUpstreamError = errors.New("upstream server error")
ErrUpstreamTimeout = errors.New("upstream request timeout") ErrUpstreamTimeout = errors.New("upstream request timeout")
ErrTooManyConnections = errors.New("too many concurrent upstream connections")
) )
// Internal fetcher errors. // Internal fetcher errors.
@@ -122,6 +129,9 @@ type Config struct {
AllowHTTP bool AllowHTTP bool
// MaxConnectionsPerHost limits concurrent connections to each upstream host. // MaxConnectionsPerHost limits concurrent connections to each upstream host.
MaxConnectionsPerHost int MaxConnectionsPerHost int
// MaxConnections limits concurrent connections to all upstream hosts
// together.
MaxConnections int
// BlockedNetworks are operator-supplied CIDR ranges refused by the // BlockedNetworks are operator-supplied CIDR ranges refused by the
// dialer, in addition to the always-enforced built-in ranges. // dialer, in addition to the always-enforced built-in ranges.
BlockedNetworks []netip.Prefix BlockedNetworks []netip.Prefix
@@ -143,15 +153,22 @@ func DefaultConfig() *Config {
}, },
AllowHTTP: false, AllowHTTP: false,
MaxConnectionsPerHost: DefaultMaxConnectionsPerHost, MaxConnectionsPerHost: DefaultMaxConnectionsPerHost,
MaxConnections: DefaultMaxConnections,
} }
} }
// HTTPFetcher implements Fetcher with SSRF protection and per-host connection limits. // HTTPFetcher implements Fetcher with SSRF protection and connection limits
// per host and for all hosts together.
type HTTPFetcher struct { type HTTPFetcher struct {
client *http.Client client *http.Client
config *Config config *Config
hostSems map[string]chan struct{} // per-host semaphores hostSems map[string]chan struct{} // per-host semaphores
hostSemMu sync.Mutex // protects hostSems map hostSemMu sync.Mutex // protects hostSems map
// allHostsSemaphore has one slot per connection allowed to all hosts
// together (config.MaxConnections).
allHostsSemaphore chan struct{}
// connectionWaitTimeout is ConnectionWaitTimeout; tests shorten it.
connectionWaitTimeout time.Duration
} }
// New creates a new HTTPFetcher with SSRF protection. // New creates a new HTTPFetcher with SSRF protection.
@@ -192,13 +209,18 @@ func New(config *Config) *HTTPFetcher {
} }
return &HTTPFetcher{ return &HTTPFetcher{
client: client, client: client,
config: config, config: config,
hostSems: make(map[string]chan struct{}), hostSems: make(map[string]chan struct{}),
allHostsSemaphore: make(chan struct{}, config.MaxConnections),
connectionWaitTimeout: ConnectionWaitTimeout,
} }
} }
// Fetch retrieves content from the given URL with SSRF protection. // Fetch retrieves content from the given URL with SSRF protection. When
// MaxConnections fetches are already in progress, it waits up to
// ConnectionWaitTimeout for one to finish, then fails with
// ErrTooManyConnections.
func (f *HTTPFetcher) Fetch(ctx context.Context, url string) (*FetchResult, error) { func (f *HTTPFetcher) Fetch(ctx context.Context, url string) (*FetchResult, error) {
// Validate URL before making request // Validate URL before making request
err := validateURL(ctx, url, f.config.AllowHTTP) err := validateURL(ctx, url, f.config.AllowHTTP)
@@ -206,24 +228,17 @@ func (f *HTTPFetcher) Fetch(ctx context.Context, url string) (*FetchResult, erro
return nil, err return nil, err
} }
// Extract host for rate limiting release, err := f.acquireConnection(ctx, extractHost(url))
host := extractHost(url) if err != nil {
return nil, err
// Acquire semaphore slot for this host
sem := f.getHostSemaphore(host)
select {
case sem <- struct{}{}:
// Acquired slot
case <-ctx.Done():
return nil, ctx.Err()
} }
// If we fail before returning a result, release the slot // If we fail before returning a result, release the connection
success := false success := false
defer func() { defer func() {
if !success { if !success {
<-sem release()
} }
}() }()
@@ -267,17 +282,52 @@ func (f *HTTPFetcher) Fetch(ctx context.Context, url string) (*FetchResult, erro
return nil, fmt.Errorf("upstream request failed: %w", err) return nil, fmt.Errorf("upstream request failed: %w", err)
} }
result, err := f.buildResult(resp, remoteAddr, fetchDuration, sem) result, err := f.buildResult(resp, remoteAddr, fetchDuration, release)
if err != nil { if err != nil {
return nil, err return nil, err
} }
// Mark success so defer doesn't release the semaphore // Mark success so defer doesn't release the connection; closing the
// result's Content does
success = true success = true
return result, nil return result, nil
} }
// acquireConnection takes a slot for host, then one of the slots shared by
// all hosts, and returns the func that gives both back. The host's slot
// comes first, so fetches queued for one busy host hold no shared slot.
// Only the wait for a shared slot is bounded: after connectionWaitTimeout
// it fails with ErrTooManyConnections.
func (f *HTTPFetcher) acquireConnection(
ctx context.Context, host string,
) (func(), error) {
hostSem := f.getHostSemaphore(host)
select {
case hostSem <- struct{}{}:
case <-ctx.Done():
return nil, ctx.Err()
}
select {
case f.allHostsSemaphore <- struct{}{}:
case <-time.After(f.connectionWaitTimeout):
<-hostSem
return nil, ErrTooManyConnections
case <-ctx.Done():
<-hostSem
return nil, ctx.Err()
}
return func() {
<-hostSem
<-f.allHostsSemaphore
}, nil
}
// getHostSemaphore returns the semaphore for a host, creating it if necessary. // getHostSemaphore returns the semaphore for a host, creating it if necessary.
func (f *HTTPFetcher) getHostSemaphore(host string) chan struct{} { func (f *HTTPFetcher) getHostSemaphore(host string) chan struct{} {
f.hostSemMu.Lock() f.hostSemMu.Lock()
@@ -293,12 +343,12 @@ func (f *HTTPFetcher) getHostSemaphore(host string) chan struct{} {
} }
// buildResult validates the upstream response and assembles a FetchResult // buildResult validates the upstream response and assembles a FetchResult
// whose Content releases the host semaphore slot when closed. // whose Content calls release when closed.
func (f *HTTPFetcher) buildResult( func (f *HTTPFetcher) buildResult(
resp *http.Response, resp *http.Response,
remoteAddr string, remoteAddr string,
fetchDuration time.Duration, fetchDuration time.Duration,
sem chan struct{}, release func(),
) (*FetchResult, error) { ) (*FetchResult, error) {
// Extract HTTP version (strip "HTTP/" prefix) // Extract HTTP version (strip "HTTP/" prefix)
httpVersion := strings.TrimPrefix(resp.Proto, "HTTP/") httpVersion := strings.TrimPrefix(resp.Proto, "HTTP/")
@@ -333,7 +383,7 @@ func (f *HTTPFetcher) buildResult(
} }
return &FetchResult{ return &FetchResult{
Content: &semaphoreReleasingReadCloser{limitedBody, resp.Body, sem}, Content: &semaphoreReleasingReadCloser{limitedBody, resp.Body, release},
ContentLength: resp.ContentLength, ContentLength: resp.ContentLength,
ContentType: contentType, ContentType: contentType,
Headers: resp.Header, Headers: resp.Header,
@@ -574,17 +624,18 @@ func (r *limitedReader) Read(p []byte) (int, error) {
return n, err return n, err
} }
// semaphoreReleasingReadCloser releases a semaphore slot when closed. // semaphoreReleasingReadCloser releases the fetch's connection slots when
// closed.
type semaphoreReleasingReadCloser struct { type semaphoreReleasingReadCloser struct {
*limitedReader *limitedReader
closer io.Closer closer io.Closer
sem chan struct{} release func()
} }
func (r *semaphoreReleasingReadCloser) Close() error { func (r *semaphoreReleasingReadCloser) Close() error {
err := r.closer.Close() err := r.closer.Close()
<-r.sem // Release semaphore slot r.release()
return err return err
} }
@@ -0,0 +1,165 @@
package httpfetcher
import (
"context"
"errors"
"net"
"strconv"
"testing"
"time"
)
// imageURLOnPort is the fake upstream's image route on testPublicHost at
// port. Each port is a different host to the per-host limit, while the test
// dialer sends every port to the one test server.
func imageURLOnPort(port int) string {
return "http://" + net.JoinHostPort(testPublicHost, strconv.Itoa(port)) +
"/image"
}
func TestDefaultConfigMaxConnections(t *testing.T) {
t.Parallel()
if got := DefaultConfig().MaxConnections; got != DefaultMaxConnections {
t.Errorf("MaxConnections = %d, want %d", got, DefaultMaxConnections)
}
}
// TestFetchLimitsConnectionsToAllHostsTogether checks that MaxConnections
// counts the fetches to every host together, apart from the per-host
// limit: with MaxConnections at 2 and two responses open from two hosts, a
// fetch from a third host, which has nothing open, waits the whole wait
// timeout and fails with ErrTooManyConnections. Closing one response lets
// it through.
func TestFetchLimitsConnectionsToAllHostsTogether(t *testing.T) {
t.Parallel()
srv := startUpstream(t)
cfg := DefaultConfig()
cfg.MaxConnections = 2
f, _ := newServerFetcher(t, srv, cfg)
f.connectionWaitTimeout = 100 * time.Millisecond
first, err := f.Fetch(testContext(t), imageURLOnPort(81))
if err != nil {
t.Fatalf("first Fetch() error = %v", err)
}
second, err := f.Fetch(testContext(t), imageURLOnPort(82))
if err != nil {
t.Fatalf("second Fetch() error = %v", err)
}
defer func() { _ = second.Content.Close() }()
start := time.Now()
_, err = f.Fetch(testContext(t), imageURLOnPort(83))
if !errors.Is(err, ErrTooManyConnections) {
t.Fatalf("third Fetch() error = %v, want ErrTooManyConnections", err)
}
if waited := time.Since(start); waited < f.connectionWaitTimeout {
t.Errorf("third Fetch() failed after %v, before waiting %v",
waited, f.connectionWaitTimeout)
}
if held := semLen(f, testPublicHost+":83"); held != 0 {
t.Errorf("the refused fetch kept its host's slot: %d held", held)
}
err = first.Content.Close()
if err != nil {
t.Fatalf("close first body: %v", err)
}
third, err := f.Fetch(testContext(t), imageURLOnPort(83))
if err != nil {
t.Fatalf("Fetch() after a response was closed: error = %v", err)
}
_ = third.Content.Close()
}
// TestFetchFreesHostSlotWhenContextEndsWaitingForConnection checks that a
// fetch whose request context ends while it waits for a connection shared
// by all hosts gives its host's slot back. With MaxConnections at 1 and one
// response open, a fetch from another host takes that host's slot and waits;
// its context ends long before the 10 second wait timeout.
func TestFetchFreesHostSlotWhenContextEndsWaitingForConnection(t *testing.T) {
t.Parallel()
srv := startUpstream(t)
cfg := DefaultConfig()
cfg.MaxConnections = 1
f, _ := newServerFetcher(t, srv, cfg)
first, err := f.Fetch(testContext(t), imageURLOnPort(81))
if err != nil {
t.Fatalf("first Fetch() error = %v", err)
}
defer func() { _ = first.Content.Close() }()
ctx, cancel := context.WithTimeout(t.Context(), 100*time.Millisecond)
defer cancel()
_, err = f.Fetch(ctx, imageURLOnPort(82))
if !errors.Is(err, context.DeadlineExceeded) {
t.Fatalf("second Fetch() error = %v, want context.DeadlineExceeded", err)
}
if held := semLen(f, testPublicHost+":82"); held != 0 {
t.Errorf("the fetch kept its host's slot after its context ended: "+
"%d held", held)
}
}
// TestFetchReleasesConnectionOnError checks that a fetch that fails after
// taking its connection gives it back: with MaxConnections at 1, the slot
// must be free after the failure and the next fetch must succeed.
func TestFetchReleasesConnectionOnError(t *testing.T) {
t.Parallel()
cases := []struct {
name string
url string
want error
}{
{"upstream answers 500", upstreamURL("/status/500"), ErrUpstreamError},
{"upstream sends HTML", upstreamURL("/html"), ErrInvalidContentType},
// 198.51.100.7 (TEST-NET-2) passes the SSRF checks, and the test
// dialer refuses every host but testPublicHost.
{"connecting fails", "http://198.51.100.7/image", errUnexpectedDial},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
t.Parallel()
srv := startUpstream(t)
cfg := DefaultConfig()
cfg.MaxConnections = 1
f, _ := newServerFetcher(t, srv, cfg)
f.connectionWaitTimeout = 100 * time.Millisecond
_, err := f.Fetch(testContext(t), tc.url)
if !errors.Is(err, tc.want) {
t.Fatalf("Fetch() error = %v, want %v", err, tc.want)
}
if held := len(f.allHostsSemaphore); held != 0 {
t.Fatalf("connection still held after the error: %d held", held)
}
res := fetchImage(t, f, "/image")
_ = res.Content.Close()
})
}
}
+74 -5
View File
@@ -7,7 +7,9 @@ import (
"errors" "errors"
"fmt" "fmt"
"io" "io"
"runtime"
"sync" "sync"
"time"
"github.com/davidbyttow/govips/v2/vips" "github.com/davidbyttow/govips/v2/vips"
) )
@@ -17,11 +19,21 @@ import (
//nolint:gochecknoglobals // package-level sync.Once for one-time vips init //nolint:gochecknoglobals // package-level sync.Once for one-time vips init
var vipsOnce sync.Once var vipsOnce sync.Once
// initVips initializes libvips with quiet logging. // initVips initializes libvips with quiet logging, one worker thread per
// image and no operation cache. Process already works on one image per CPU
// by default, so more threads per image would only compete for the CPUs.
// Each request decodes different source bytes, so the operation cache
// would rarely be hit and would hold memory outside MaxConcurrentProcessing;
// repeated requests are served from pixa's disk cache instead.
func initVips() { func initVips() {
vipsOnce.Do(func() { vipsOnce.Do(func() {
vips.LoggingSettings(nil, vips.LogLevelError) vips.LoggingSettings(nil, vips.LogLevelError)
vips.Startup(nil) vips.Startup(&vips.Config{
ConcurrencyLevel: 1,
MaxCacheSize: 0,
MaxCacheMem: 0,
MaxCacheFiles: 0,
})
}) })
} }
@@ -106,9 +118,23 @@ var ErrInputDataTooLarge = errors.New("input data exceeds maximum allowed size")
// not supported. // not supported.
var ErrUnsupportedOutputFormat = errors.New("unsupported output format") var ErrUnsupportedOutputFormat = errors.New("unsupported output format")
// ErrTooManyImages is returned when MaxConcurrentProcessing images are being
// processed and none finishes within ProcessingWaitTimeout.
var ErrTooManyImages = errors.New("too many images being processed at once")
// ProcessingWaitTimeout is how long Process waits for a free slot when
// MaxConcurrentProcessing images are already being processed.
const ProcessingWaitTimeout = 10 * time.Second
// ImageProcessor implements image transformation using libvips via govips. // ImageProcessor implements image transformation using libvips via govips.
type ImageProcessor struct { type ImageProcessor struct {
maxInputBytes int64 maxInputBytes int64
// processingSemaphore has one slot per image that may be processed at
// once. Process holds a slot from before it reads its input until it
// returns, so the input, the decoded image and the output all count.
processingSemaphore chan struct{}
// processingWaitTimeout is ProcessingWaitTimeout; tests shorten it.
processingWaitTimeout time.Duration
} }
// Params holds configuration for creating an ImageProcessor. // Params holds configuration for creating an ImageProcessor.
@@ -117,6 +143,9 @@ type Params struct {
// MaxInputBytes is the maximum allowed input size in bytes. // MaxInputBytes is the maximum allowed input size in bytes.
// If <= 0, DefaultMaxInputBytes is used. // If <= 0, DefaultMaxInputBytes is used.
MaxInputBytes int64 MaxInputBytes int64
// MaxConcurrentProcessing is the most images processed at once.
// If <= 0, the number of CPUs Go uses (runtime.GOMAXPROCS(0)) is used.
MaxConcurrentProcessing int
} }
// New creates a new image processor with the given parameters. // New creates a new image processor with the given parameters.
@@ -129,17 +158,34 @@ func New(params Params) *ImageProcessor {
maxInputBytes = DefaultMaxInputBytes maxInputBytes = DefaultMaxInputBytes
} }
maxConcurrentProcessing := params.MaxConcurrentProcessing
if maxConcurrentProcessing <= 0 {
maxConcurrentProcessing = runtime.GOMAXPROCS(0)
}
return &ImageProcessor{ return &ImageProcessor{
maxInputBytes: maxInputBytes, maxInputBytes: maxInputBytes,
processingSemaphore: make(chan struct{}, maxConcurrentProcessing),
processingWaitTimeout: ProcessingWaitTimeout,
} }
} }
// Process transforms an image according to the request. // Process transforms an image according to the request. When
// MaxConcurrentProcessing images are already being processed, it waits up
// to ProcessingWaitTimeout for one to finish, then fails with
// ErrTooManyImages.
func (p *ImageProcessor) Process( func (p *ImageProcessor) Process(
_ context.Context, ctx context.Context,
input io.Reader, input io.Reader,
req *Request, req *Request,
) (*Result, error) { ) (*Result, error) {
release, err := p.acquireSlot(ctx)
if err != nil {
return nil, err
}
defer release()
// Read input with a size limit to prevent unbounded memory consumption. // Read input with a size limit to prevent unbounded memory consumption.
// We read at most maxInputBytes+1 so we can detect if the input exceeds // We read at most maxInputBytes+1 so we can detect if the input exceeds
// the limit without consuming additional memory. // the limit without consuming additional memory.
@@ -285,6 +331,29 @@ func FormatToMIME(format Format) string {
} }
} }
// acquireSlot takes a slot in processingSemaphore, waiting at most
// processingWaitTimeout for one to free up, and returns the func that gives
// it back. A free slot is taken even when ctx has ended; only the wait for
// one stops when ctx ends, as the rest of Process does not check ctx.
func (p *ImageProcessor) acquireSlot(ctx context.Context) (func(), error) {
release := func() { <-p.processingSemaphore }
select {
case p.processingSemaphore <- struct{}{}:
return release, nil
default:
}
select {
case p.processingSemaphore <- struct{}{}:
return release, nil
case <-time.After(p.processingWaitTimeout):
return nil, ErrTooManyImages
case <-ctx.Done():
return nil, ctx.Err()
}
}
// detectFormat returns the format string from a vips image. // detectFormat returns the format string from a vips image.
func (p *ImageProcessor) detectFormat(img *vips.ImageRef) string { func (p *ImageProcessor) detectFormat(img *vips.ImageRef) string {
format := img.Format() format := img.Format()
@@ -0,0 +1,302 @@
package imageprocessor
import (
"bytes"
"context"
"errors"
"io"
"runtime"
"strings"
"sync"
"testing"
"testing/iotest"
"time"
)
// errTestReadFailed is the error the unreadable test input returns.
var errTestReadFailed = errors.New("test input cannot be read")
// readingCounter counts the Process calls reading their input at the same
// time and remembers the most there ever were.
type readingCounter struct {
mu sync.Mutex
reading int
most int
}
func (c *readingCounter) start() {
c.mu.Lock()
defer c.mu.Unlock()
c.reading++
c.most = max(c.most, c.reading)
}
func (c *readingCounter) stop() {
c.mu.Lock()
defer c.mu.Unlock()
c.reading--
}
func (c *readingCounter) mostReading() int {
c.mu.Lock()
defer c.mu.Unlock()
return c.most
}
// gatedReader is a Process input. Its first Read counts the call in,
// reports it on entered and blocks until gate is closed; it counts the call
// out when it returns io.EOF. Process reads its input only while it holds a
// processing slot, so the count never goes above MaxConcurrentProcessing.
type gatedReader struct {
data *bytes.Reader
gate <-chan struct{}
entered chan<- struct{}
counter *readingCounter
started bool
}
func (r *gatedReader) Read(p []byte) (int, error) {
if !r.started {
r.started = true
r.counter.start()
r.entered <- struct{}{}
<-r.gate
}
n, err := r.data.Read(p)
if errors.Is(err, io.EOF) {
r.counter.stop()
}
return n, err
}
// smallJPEGRequest asks for a 5x5 JPEG.
func smallJPEGRequest() *Request {
return &Request{
Size: Size{Width: 5, Height: 5},
Format: FormatJPEG,
Quality: 85,
FitMode: FitCover,
}
}
// processInBackground runs Process on reader in a new goroutine and sends
// its error on results.
func processInBackground(
proc *ImageProcessor, reader *gatedReader, results chan<- error,
) {
go func() {
result, err := proc.Process(context.Background(), reader, smallJPEGRequest())
if err == nil {
_ = result.Content.Close()
}
results <- err
}()
}
// waitForEntries fails the test unless count Process calls report on
// entered within a few seconds.
func waitForEntries(t *testing.T, entered <-chan struct{}, count int) {
t.Helper()
for range count {
select {
case <-entered:
case <-time.After(5 * time.Second):
t.Fatal("Process calls did not start reading their input")
}
}
}
func TestNewDefaultsMaxConcurrentProcessingToCPUs(t *testing.T) {
t.Parallel()
for _, limit := range []int{0, -1} {
proc := New(Params{MaxConcurrentProcessing: limit})
if got := cap(proc.processingSemaphore); got != runtime.GOMAXPROCS(0) {
t.Errorf("MaxConcurrentProcessing %d: %d slots, want %d, one per CPU",
limit, got, runtime.GOMAXPROCS(0))
}
}
proc := New(Params{MaxConcurrentProcessing: 3})
if got := cap(proc.processingSemaphore); got != 3 {
t.Errorf("MaxConcurrentProcessing 3: %d slots, want 3", got)
}
}
// TestProcessNeverExceedsMaxConcurrentProcessing starts more Process calls
// than MaxConcurrentProcessing allows and holds the first ones inside
// Process until the test lets them go. No more than the limit may be
// working at once, and the calls held back must wait for a slot and then
// succeed.
func TestProcessNeverExceedsMaxConcurrentProcessing(t *testing.T) {
t.Parallel()
const (
limit = 2
calls = 6
)
proc := New(Params{MaxConcurrentProcessing: limit})
input := createTestJPEG(t, 50, 50)
counter := &readingCounter{}
gate := make(chan struct{})
entered := make(chan struct{}, calls)
results := make(chan error, calls)
openGate := sync.OnceFunc(func() { close(gate) })
t.Cleanup(openGate)
for range calls {
processInBackground(proc, &gatedReader{
data: bytes.NewReader(input), gate: gate, entered: entered,
counter: counter,
}, results)
}
waitForEntries(t, entered, limit)
// A call beyond the limit would start reading its input now.
select {
case <-entered:
t.Fatalf("a Process call started while %d were already working", limit)
case <-time.After(100 * time.Millisecond):
}
openGate()
for range calls {
err := <-results
if err != nil {
t.Errorf("Process() error = %v, want nil once a slot is free", err)
}
}
if most := counter.mostReading(); most > limit {
t.Errorf("%d Process calls worked at once, want at most %d", most, limit)
}
}
// TestProcessWaitsThenFailsWhenNoSlotFrees holds the only slot and checks
// that another call waits the whole wait timeout, then fails with
// ErrTooManyImages instead of processing anyway.
func TestProcessWaitsThenFailsWhenNoSlotFrees(t *testing.T) {
t.Parallel()
proc := New(Params{MaxConcurrentProcessing: 1})
proc.processingWaitTimeout = 100 * time.Millisecond
input := createTestJPEG(t, 10, 10)
gate := make(chan struct{})
entered := make(chan struct{}, 1)
held := make(chan error, 1)
openGate := sync.OnceFunc(func() { close(gate) })
t.Cleanup(openGate)
processInBackground(proc, &gatedReader{
data: bytes.NewReader(input), gate: gate, entered: entered,
counter: &readingCounter{},
}, held)
waitForEntries(t, entered, 1)
start := time.Now()
_, err := proc.Process(context.Background(), bytes.NewReader(input),
smallJPEGRequest())
if !errors.Is(err, ErrTooManyImages) {
t.Fatalf("Process() error = %v, want ErrTooManyImages", err)
}
if waited := time.Since(start); waited < proc.processingWaitTimeout {
t.Errorf("Process() failed after %v, before waiting %v",
waited, proc.processingWaitTimeout)
}
openGate()
err = <-held
if err != nil {
t.Errorf("Process() holding the slot: error = %v, want nil", err)
}
}
// TestProcessReleasesSlotOnError checks that Process gives its slot back
// when it fails, whether it fails early or late: with one slot, the slot
// must be free after the failure and the next call must succeed.
func TestProcessReleasesSlotOnError(t *testing.T) {
t.Parallel()
valid := createTestJPEG(t, 10, 10)
unsupported := smallJPEGRequest()
unsupported.Format = "bmp"
cases := []struct {
name string
input io.Reader
req *Request
// want is the error Process must return; nil means any error.
want error
}{
{
name: "input cannot be read",
input: iotest.ErrReader(errTestReadFailed),
req: smallJPEGRequest(),
want: errTestReadFailed,
},
{
name: "input over the byte limit",
input: bytes.NewReader(createTestJPEG(t, 800, 600)),
req: smallJPEGRequest(),
want: ErrInputDataTooLarge,
},
{
name: "input not an image",
input: strings.NewReader("not an image"),
req: smallJPEGRequest(),
},
{
name: "output format not supported",
input: bytes.NewReader(valid),
req: unsupported,
want: ErrUnsupportedOutputFormat,
},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
t.Parallel()
proc := New(Params{MaxInputBytes: 4096, MaxConcurrentProcessing: 1})
proc.processingWaitTimeout = 100 * time.Millisecond
_, err := proc.Process(context.Background(), tc.input, tc.req)
if err == nil || (tc.want != nil && !errors.Is(err, tc.want)) {
t.Fatalf("Process() error = %v, want %v", err, tc.want)
}
if held := len(proc.processingSemaphore); held != 0 {
t.Fatalf("slot still held after the error: %d held", held)
}
result, err := proc.Process(context.Background(), bytes.NewReader(valid),
smallJPEGRequest())
if err != nil {
t.Fatalf("Process() after the error = %v, want nil", err)
}
_ = result.Content.Close()
})
}
}
+117 -41
View File
@@ -14,6 +14,7 @@ import (
"sync" "sync"
"time" "time"
lru "github.com/hashicorp/golang-lru/v2"
"sneak.berlin/go/pixa/internal/httpfetcher" "sneak.berlin/go/pixa/internal/httpfetcher"
) )
@@ -26,6 +27,10 @@ var (
// HTTP status code for successful fetch. // HTTP status code for successful fetch.
const httpStatusOK = 200 const httpStatusOK = 200
// metaCacheSize is how many variants' content types metaCache holds. A
// variant not among them is served as before, reading its .meta file.
const metaCacheSize = 10000
// CacheConfig holds cache configuration. // CacheConfig holds cache configuration.
type CacheConfig struct { type CacheConfig struct {
StateDir string StateDir string
@@ -49,12 +54,6 @@ type CacheConfig struct {
Logger *slog.Logger Logger *slog.Logger
} }
// variantMeta stores content type for fast cache hits without reading .meta file.
type variantMeta struct {
ContentType string
Size int64
}
// Cache implements the caching layer for the image proxy. // Cache implements the caching layer for the image proxy.
type Cache struct { type Cache struct {
db *sql.DB db *sql.DB
@@ -76,9 +75,10 @@ type Cache struct {
evictionStarted bool evictionStarted bool
evictionStopOnce sync.Once evictionStopOnce sync.Once
// In-memory cache of variant metadata (content type, size) to avoid // metaCache holds the content types of the variants most recently
// reading .meta files // stored or served, so a hit does not read the variant's .meta file.
metaCache map[VariantKey]variantMeta // It never stands in for the variant file, which is always opened.
metaCache *lru.Cache[VariantKey, string]
// contentLocks serializes StoreSource and evictSourceBlob per // contentLocks serializes StoreSource and evictSourceBlob per
// content hash, closing the race window between an eviction's row // content hash, closing the race window between an eviction's row
@@ -101,6 +101,11 @@ func NewCache(db *sql.DB, config CacheConfig) (*Cache, error) {
log = slog.Default() log = slog.Default()
} }
metaCache, err := lru.New[VariantKey, string](metaCacheSize)
if err != nil {
return nil, fmt.Errorf("failed to create variant content type cache: %w", err)
}
c := &Cache{ c := &Cache{
db: db, db: db,
config: config, config: config,
@@ -109,7 +114,7 @@ func NewCache(db *sql.DB, config CacheConfig) (*Cache, error) {
evictionPressure: make(chan struct{}, 1), evictionPressure: make(chan struct{}, 1),
evictionStop: make(chan struct{}), evictionStop: make(chan struct{}),
evictionDone: make(chan struct{}), evictionDone: make(chan struct{}),
metaCache: make(map[VariantKey]variantMeta), metaCache: metaCache,
contentLocks: newContentLock(), contentLocks: newContentLock(),
} }
@@ -177,13 +182,30 @@ func (c *Cache) Lookup(ctx context.Context, req *ImageRequest) (*LookupResult, e
}, nil }, nil
} }
// GetVariant returns a reader, size, and content type for a cached variant. // GetVariant returns a reader, size, and content type for a cached
// variant. The content type comes from metaCache, or else from the
// variant's .meta file and is then kept in metaCache. A variant with
// no .meta file is served as application/octet-stream, which is not
// kept.
func (c *Cache) GetVariant(cacheKey VariantKey) (io.ReadCloser, int64, string, error) { func (c *Cache) GetVariant(cacheKey VariantKey) (io.ReadCloser, int64, string, error) {
if c.disabled { if c.disabled {
return nil, 0, "", ErrNotFound return nil, 0, "", ErrNotFound
} }
return c.variants.LoadWithMeta(cacheKey) contentType, known := c.metaCache.Get(cacheKey)
if !known {
return c.loadVariantWithMeta(cacheKey)
}
reader, size, err := c.variants.LoadWithSize(cacheKey)
if err != nil {
// The file is gone, e.g. deleted outside pixa
c.metaCache.Remove(cacheKey)
return nil, 0, "", err
}
return reader, size, contentType, nil
} }
// StoreSource stores fetched source content and metadata. On a // StoreSource stores fetched source content and metadata. On a
@@ -286,6 +308,8 @@ func (c *Cache) StoreVariant(
return err return err
} }
c.metaCache.Add(cacheKey, contentType)
_, err = c.db.ExecContext(ctx, ` _, err = c.db.ExecContext(ctx, `
INSERT INTO variant_content (cache_key, size_bytes, content_type) INSERT INTO variant_content (cache_key, size_bytes, content_type)
VALUES (?, ?, ?) VALUES (?, ?, ?)
@@ -383,13 +407,16 @@ func (c *Cache) GetSourceMetadataID(
return id, nil return id, nil
} }
// GetSourceContent returns a reader for cached source content by its hash. // GetSourceContent returns a reader for cached source content by its hash,
func (c *Cache) GetSourceContent(contentHash ContentHash) (io.ReadCloser, error) { // and the content's size in bytes.
func (c *Cache) GetSourceContent(
contentHash ContentHash,
) (io.ReadCloser, int64, error) {
if c.disabled { if c.disabled {
return nil, ErrNotFound return nil, 0, ErrNotFound
} }
return c.srcContent.Load(contentHash) return c.srcContent.LoadWithSize(contentHash)
} }
// CleanExpired removes expired entries from the cache. // CleanExpired removes expired entries from the cache.
@@ -419,19 +446,21 @@ func (c *Cache) Stats(ctx context.Context) (*CacheStats, error) {
return nil, fmt.Errorf("failed to get cache stats: %w", err) return nil, fmt.Errorf("failed to get cache stats: %w", err)
} }
// Get actual item count and total size from content tables // Count and size the cached source images and processed variants. A
err = c.db.QueryRowContext(ctx, // disabled cache holds none, whatever rows an earlier run left.
`SELECT COUNT(*) FROM request_cache`, if !c.disabled {
).Scan(&stats.TotalItems) err = c.db.QueryRowContext(ctx, `
if err != nil { SELECT (SELECT COUNT(*) FROM source_content)
c.log.Warn("failed to count cache items for stats", "error", err) + (SELECT COUNT(*) FROM variant_content)
} `).Scan(&stats.TotalItems)
if err != nil {
c.log.Warn("failed to count cache items for stats", "error", err)
}
err = c.db.QueryRowContext(ctx, stats.TotalSizeBytes, err = c.UsageBytes(ctx)
`SELECT COALESCE(SUM(size_bytes), 0) FROM output_content`, if err != nil {
).Scan(&stats.TotalSizeBytes) c.log.Warn("failed to sum cache size for stats", "error", err)
if err != nil { }
c.log.Warn("failed to sum cache size for stats", "error", err)
} }
// Compute hit rate as a ratio // Compute hit rate as a ratio
@@ -442,7 +471,8 @@ func (c *Cache) Stats(ctx context.Context) (*CacheStats, error) {
return &stats, nil return &stats, nil
} }
// IncrementStats increments cache statistics. // IncrementStats counts a cache hit or miss, and an upstream fetch that read
// fetchBytes bytes, as IncrementUpstreamFetch does.
func (c *Cache) IncrementStats(ctx context.Context, hit bool, fetchBytes int64) { func (c *Cache) IncrementStats(ctx context.Context, hit bool, fetchBytes int64) {
var err error var err error
@@ -466,19 +496,65 @@ func (c *Cache) IncrementStats(ctx context.Context, hit bool, fetchBytes int64)
c.log.Warn("failed to count cache hit or miss", "hit", hit, "error", err) c.log.Warn("failed to count cache hit or miss", "hit", hit, "error", err)
} }
if fetchBytes > 0 { c.IncrementUpstreamFetch(ctx, fetchBytes)
_, err = c.db.ExecContext(ctx, ` }
UPDATE cache_stats
SET upstream_fetch_count = upstream_fetch_count + 1, // IncrementUpstreamFetch counts one upstream fetch that read fetchBytes bytes.
upstream_fetch_bytes = upstream_fetch_bytes + ?, // A fetch that read no bytes is not counted.
last_updated_at = CURRENT_TIMESTAMP func (c *Cache) IncrementUpstreamFetch(ctx context.Context, fetchBytes int64) {
WHERE id = 1 if fetchBytes <= 0 {
`, fetchBytes) return
if err != nil {
c.log.Warn("failed to count upstream fetch",
"fetch_bytes", fetchBytes, "error", err)
}
} }
_, err := c.db.ExecContext(ctx, `
UPDATE cache_stats
SET upstream_fetch_count = upstream_fetch_count + 1,
upstream_fetch_bytes = upstream_fetch_bytes + ?,
last_updated_at = CURRENT_TIMESTAMP
WHERE id = 1
`, fetchBytes)
if err != nil {
c.log.Warn("failed to count upstream fetch",
"fetch_bytes", fetchBytes, "error", err)
}
}
// IncrementTransformCount counts one image transcoded by the image processor.
func (c *Cache) IncrementTransformCount(ctx context.Context) {
_, err := c.db.ExecContext(ctx, `
UPDATE cache_stats
SET transform_count = transform_count + 1,
last_updated_at = CURRENT_TIMESTAMP
WHERE id = 1
`)
if err != nil {
c.log.Warn("failed to count transform", "error", err)
}
}
// loadVariantWithMeta is GetVariant for a variant metaCache does not
// hold: it reads the content type from the variant's .meta file and
// keeps it in metaCache, unless a StoreVariant has put one there
// meanwhile, as the store's is newer. A read that finds no .meta file,
// as one can between a store's writing of the variant file and of its
// .meta file, serves application/octet-stream and keeps nothing, so
// metaCache only ever holds a type read from a .meta file or passed to
// StoreVariant.
func (c *Cache) loadVariantWithMeta(
cacheKey VariantKey,
) (io.ReadCloser, int64, string, error) {
reader, size, contentType, err := c.variants.LoadWithMeta(cacheKey)
if err != nil {
return nil, 0, "", err
}
if contentType == "" {
return reader, size, fallbackContentType, nil
}
c.metaCache.ContainsOrAdd(cacheKey, contentType)
return reader, size, contentType, nil
} }
// writeMetadataSidecar writes the JSON metadata sidecar of a stored source. // writeMetadataSidecar writes the JSON metadata sidecar of a stored source.
@@ -0,0 +1,444 @@
package imgcache
import (
"bytes"
"context"
"errors"
"image/jpeg"
"io"
"io/fs"
"strings"
"sync"
"sync/atomic"
"testing"
"time"
"sneak.berlin/go/pixa/internal/httpfetcher"
"sneak.berlin/go/pixa/internal/magic"
)
// arrivalWait is how long a test gives requests it has started to reach the
// point where they wait for a held fetch.
const arrivalWait = 100 * time.Millisecond
// heldFetcher counts the fetches it is asked for and holds each one until
// releaseFetches is called, so that a test can have requests arrive while a
// fetch is in progress. started receives once for every fetch.
type heldFetcher struct {
upstream httpfetcher.Fetcher
fetches atomic.Int32
started chan struct{}
release chan struct{}
releaseOnce sync.Once
}
func (f *heldFetcher) Fetch(
ctx context.Context, url string,
) (*httpfetcher.FetchResult, error) {
f.fetches.Add(1)
f.started <- struct{}{}
select {
case <-f.release:
case <-ctx.Done():
return nil, ctx.Err()
}
return f.upstream.Fetch(ctx, url)
}
// releaseFetches lets every held fetch, and every later one, go on.
func (f *heldFetcher) releaseFetches() {
f.releaseOnce.Do(func() { close(f.release) })
}
// setupHeldFetchService returns a test service whose fetches go through a
// heldFetcher. Its database is limited to one connection: each connection to
// an in-memory SQLite database opens a new, empty one, so requests running at
// once must share the connection that holds the schema.
func setupHeldFetchService(t *testing.T) (*Service, *TestFixtures, *heldFetcher) {
t.Helper()
svc, fixtures := SetupTestService(t)
svc.cache.db.SetMaxOpenConns(1)
fetcher := &heldFetcher{
upstream: svc.fetcher,
started: make(chan struct{}, 100),
release: make(chan struct{}),
}
svc.fetcher = fetcher
t.Cleanup(fetcher.releaseFetches)
return svc, fixtures, fetcher
}
// photoVariant asks for the test photo, 100x100, at 50x25 as a JPEG of the
// given quality and fit mode. Each call returns a new request, as Get writes
// to the request it is given.
func photoVariant(fixtures *TestFixtures, quality int, fit FitMode) *ImageRequest {
return &ImageRequest{
SourceHost: fixtures.GoodHost,
SourcePath: testPathPhoto,
Size: Size{Width: 50, Height: 25},
Format: FormatJPEG,
Quality: quality,
FitMode: fit,
}
}
// getResult is what one Get call returned, with the image read out.
type getResult struct {
image []byte
err error
}
// startGet calls Get in a goroutine of its own and delivers what it returned
// on the channel.
func startGet(
ctx context.Context, svc *Service, req *ImageRequest,
) <-chan getResult {
results := make(chan getResult, 1)
go func() {
resp, err := svc.Get(ctx, req)
if err != nil {
results <- getResult{err: err}
return
}
defer func() { _ = resp.Content.Close() }()
image, err := io.ReadAll(resp.Content)
results <- getResult{image: image, err: err}
}()
return results
}
// jpegSize returns the width and height of the JPEG image in data, or 0 and 0
// if data is not one.
func jpegSize(data []byte) (int, int) {
config, err := jpeg.DecodeConfig(bytes.NewReader(data))
if err != nil {
return 0, 0
}
return config.Width, config.Height
}
// TestService_Get_ConcurrentMissesShareOneFetch starts several requests for
// one uncached variant while the first one's fetch is held. Between them they
// must fetch the source once and transcode it once, every one must be answered
// with the same 50x25 JPEG, and each must count one miss.
func TestService_Get_ConcurrentMissesShareOneFetch(t *testing.T) {
t.Parallel()
svc, fixtures, fetcher := setupHeldFetchService(t)
const requests = 8
pending := make([]<-chan getResult, 0, requests)
for range requests {
pending = append(pending,
startGet(t.Context(), svc, photoVariant(fixtures, 85, FitCover)))
}
<-fetcher.started
time.Sleep(arrivalWait)
fetcher.releaseFetches()
var first []byte
for i, results := range pending {
got := <-results
if got.err != nil {
t.Fatalf("request %d: Get() error = %v", i, got.err)
}
if width, height := jpegSize(got.image); width != 50 || height != 25 {
t.Errorf("request %d: image is %dx%d, want a 50x25 JPEG", i, width, height)
}
if first == nil {
first = got.image
} else if !bytes.Equal(got.image, first) {
t.Errorf("request %d: image differs from request 0's", i)
}
}
if fetches := fetcher.fetches.Load(); fetches != 1 {
t.Errorf("%d requests made %d upstream fetches, want 1", requests, fetches)
}
// NewTestFS builds the same files the test service's fetcher serves.
testFS, _ := NewTestFS(t)
photo, err := fs.ReadFile(testFS, fixtures.GoodHostJPEG)
if err != nil {
t.Fatal(err)
}
want := cacheStatsCounters{0, requests, 1, int64(len(photo)), 1}
if got := readCacheStatsCounters(t, svc.cache); got != want {
t.Errorf("counters = %+v, want %+v", got, want)
}
}
// TestService_Get_ConcurrentVariantsStayApart requests three variants of the
// test photo at once that differ only in quality or fit. Each must be made by
// a fetch and a transcode of its own, and each answer must be its own variant.
func TestService_Get_ConcurrentVariantsStayApart(t *testing.T) {
t.Parallel()
svc, fixtures, fetcher := setupHeldFetchService(t)
cover := startGet(t.Context(), svc, photoVariant(fixtures, 85, FitCover))
lowQuality := startGet(t.Context(), svc, photoVariant(fixtures, 40, FitCover))
contain := startGet(t.Context(), svc, photoVariant(fixtures, 85, FitContain))
for range 3 {
select {
case <-fetcher.started:
case <-time.After(5 * time.Second):
t.Fatal("fewer fetches started than variants requested: " +
"variants differing in quality or fit were merged")
}
}
fetcher.releaseFetches()
images := make(map[string][]byte)
for _, variant := range []struct {
name string
results <-chan getResult
width, height int
}{
{"q=85 fit=cover", cover, 50, 25},
{"q=40 fit=cover", lowQuality, 50, 25},
{"q=85 fit=contain", contain, 25, 25},
} {
got := <-variant.results
if got.err != nil {
t.Fatalf("%s: Get() error = %v", variant.name, got.err)
}
width, height := jpegSize(got.image)
if width != variant.width || height != variant.height {
t.Errorf("%s: image is %dx%d, want a %dx%d JPEG", variant.name,
width, height, variant.width, variant.height)
}
images[variant.name] = got.image
}
if bytes.Equal(images["q=85 fit=cover"], images["q=40 fit=cover"]) {
t.Error("q=40 was answered with the q=85 image")
}
}
// TestService_Get_WaiterStopsWhenItsContextEnds has a second request for a
// variant join the first one's held fetch, then ends the second request's
// context. The second request must return at once with the context's error,
// while the fetch is still held, and the first must still be answered.
func TestService_Get_WaiterStopsWhenItsContextEnds(t *testing.T) {
t.Parallel()
svc, fixtures, fetcher := setupHeldFetchService(t)
first := startGet(t.Context(), svc, photoVariant(fixtures, 85, FitCover))
<-fetcher.started
waiterCtx, cancelWaiter := context.WithCancel(t.Context())
waiter := startGet(waiterCtx, svc, photoVariant(fixtures, 85, FitCover))
time.Sleep(arrivalWait)
cancelWaiter()
select {
case got := <-waiter:
if !errors.Is(got.err, context.Canceled) {
t.Errorf("waiting request: Get() error = %v, want %v",
got.err, context.Canceled)
}
case <-time.After(time.Second):
t.Fatal("waiting request did not return when its context ended")
}
fetcher.releaseFetches()
got := <-first
if got.err != nil {
t.Fatalf("first request: Get() error = %v", got.err)
}
if width, height := jpegSize(got.image); width != 50 || height != 25 {
t.Errorf("first request: image is %dx%d, want a 50x25 JPEG", width, height)
}
if fetches := fetcher.fetches.Load(); fetches != 1 {
t.Errorf("upstream fetches = %d, want 1", fetches)
}
}
// TestService_Get_FirstRequestLeavingKeepsTheWork ends the context of the
// request whose fetch is held, after a second request has joined it. The fetch
// and transcode must go on and answer the second request. The first request
// waits for its own work, as every request did before misses were shared, and
// is answered too.
func TestService_Get_FirstRequestLeavingKeepsTheWork(t *testing.T) {
t.Parallel()
svc, fixtures, fetcher := setupHeldFetchService(t)
firstCtx, cancelFirst := context.WithCancel(t.Context())
first := startGet(firstCtx, svc, photoVariant(fixtures, 85, FitCover))
<-fetcher.started
second := startGet(t.Context(), svc, photoVariant(fixtures, 85, FitCover))
time.Sleep(arrivalWait)
cancelFirst()
fetcher.releaseFetches()
for name, results := range map[string]<-chan getResult{
"first request": first, "second request": second,
} {
got := <-results
if got.err != nil {
t.Fatalf("%s: Get() error = %v", name, got.err)
}
if width, height := jpegSize(got.image); width != 50 || height != 25 {
t.Errorf("%s: image is %dx%d, want a 50x25 JPEG", name, width, height)
}
}
if fetches := fetcher.fetches.Load(); fetches != 1 {
t.Errorf("upstream fetches = %d, want 1", fetches)
}
}
// TestService_Get_ConcurrentMissesShareAFailure has several requests for an
// image that cannot be served arrive while its fetch is held: the one fetch
// answers all of them with its error. The request after them is answered from
// the negative cache when the failure is kept there, and fetches again when it
// is not.
func TestService_Get_ConcurrentMissesShareAFailure(t *testing.T) {
t.Parallel()
tests := []struct {
name string
path string
wantErr error // what every request at once gets
wantNextErr error // what the request after them gets
wantFetches int32 // fetches once the request after them is answered
}{
{"upstream answers 404, kept in the negative cache",
"/images/missing.jpg", httpfetcher.ErrUpstreamError,
ErrNegativeCached, 1},
{"source fails the magic byte check, not kept",
"/images/text.png", magic.ErrUnknownFormat, magic.ErrUnknownFormat, 2},
}
for _, tc := range tests {
t.Run(tc.name, func(t *testing.T) {
t.Parallel()
svc, fixtures, fetcher := setupHeldFetchService(t)
request := func() *ImageRequest {
req := photoVariant(fixtures, 85, FitCover)
req.SourcePath = tc.path
return req
}
pending := make([]<-chan getResult, 0, 4)
for range 4 {
pending = append(pending, startGet(t.Context(), svc, request()))
}
<-fetcher.started
time.Sleep(arrivalWait)
fetcher.releaseFetches()
for i, results := range pending {
if got := <-results; !errors.Is(got.err, tc.wantErr) {
t.Errorf("request %d: Get() error = %v, want %v", i, got.err, tc.wantErr)
}
}
_, err := svc.Get(t.Context(), request())
if !errors.Is(err, tc.wantNextErr) {
t.Errorf("next request: Get() error = %v, want %v", err, tc.wantNextErr)
}
if fetches := fetcher.fetches.Load(); fetches != tc.wantFetches {
t.Errorf("upstream fetches = %d, want %d", fetches, tc.wantFetches)
}
})
}
}
// TestService_Get_EndedRequestFetchesNothing checks that a request whose
// context has already ended when it misses the cache starts no fetch.
func TestService_Get_EndedRequestFetchesNothing(t *testing.T) {
t.Parallel()
svc, fixtures, fetcher := setupHeldFetchService(t)
ctx, cancel := context.WithCancel(t.Context())
cancel()
_, err := svc.Get(ctx, photoVariant(fixtures, 85, FitCover))
if !errors.Is(err, context.Canceled) {
t.Errorf("Get() error = %v, want %v", err, context.Canceled)
}
if fetches := fetcher.fetches.Load(); fetches != 0 {
t.Errorf("upstream fetches = %d, want 0", fetches)
}
}
// panickingFetcher panics on every fetch.
type panickingFetcher struct{}
func (panickingFetcher) Fetch(
context.Context, string,
) (*httpfetcher.FetchResult, error) {
panic("upstream fetcher panicked")
}
// TestService_Get_PanicBecomesAnError checks that a panic while a variant is
// being made reaches its request as an error naming the panic, instead of
// being raised again.
func TestService_Get_PanicBecomesAnError(t *testing.T) {
t.Parallel()
svc, fixtures := SetupTestService(t)
svc.fetcher = panickingFetcher{}
var err error
func() {
defer func() {
if recovered := recover(); recovered != nil {
t.Fatalf("Get() panicked: %v", recovered)
}
}()
_, err = svc.Get(t.Context(), photoVariant(fixtures, 85, FitCover))
}()
if err == nil || !strings.Contains(err.Error(), "upstream fetcher panicked") {
t.Errorf("Get() error = %v, want one naming the panic", err)
}
}
+7 -3
View File
@@ -39,8 +39,8 @@ const tempFilePrefix = ".tmp-"
// to each variant file. // to each variant file.
const variantMetaSuffix = ".meta" const variantMetaSuffix = ".meta"
// fallbackContentType is recorded when a reconciled variant file has // fallbackContentType is the content type given to a variant file that
// no readable .meta sidecar. // has no readable .meta sidecar, when it is served or reconciled.
const fallbackContentType = "application/octet-stream" const fallbackContentType = "application/octet-stream"
// UsageBytes returns the total number of bytes of cache content // UsageBytes returns the total number of bytes of cache content
@@ -271,7 +271,9 @@ func (c *Cache) sourceCandidates(ctx context.Context) ([]evictionCandidate, erro
// evictVariant removes one variant: accounting row first, then the // evictVariant removes one variant: accounting row first, then the
// content and .meta files, so the database never references a deleted // content and .meta files, so the database never references a deleted
// file. // file. The metaCache entry goes before the files; a GetVariant that
// read them just before may put it back, and the next GetVariant then
// fails to open the file and removes it again.
func (c *Cache) evictVariant(ctx context.Context, cacheKey VariantKey) error { func (c *Cache) evictVariant(ctx context.Context, cacheKey VariantKey) error {
_, err := c.db.ExecContext(ctx, _, err := c.db.ExecContext(ctx,
`DELETE FROM variant_content WHERE cache_key = ?`, string(cacheKey)) `DELETE FROM variant_content WHERE cache_key = ?`, string(cacheKey))
@@ -279,6 +281,8 @@ func (c *Cache) evictVariant(ctx context.Context, cacheKey VariantKey) error {
return fmt.Errorf("failed to delete variant accounting row: %w", err) return fmt.Errorf("failed to delete variant accounting row: %w", err)
} }
c.metaCache.Remove(cacheKey)
err = c.variants.DeleteWithMeta(cacheKey) err = c.variants.DeleteWithMeta(cacheKey)
if err != nil { if err != nil {
return err return err
+4 -2
View File
@@ -163,9 +163,11 @@ type ImageCache interface {
// CacheStats contains cache statistics // CacheStats contains cache statistics
type CacheStats struct { type CacheStats struct {
// TotalItems is the number of cached items // TotalItems is the number of cached source images plus processed
// variants
TotalItems int64 TotalItems int64
// TotalSizeBytes is the total size of cached content // TotalSizeBytes is the total size of cached source images and
// processed variants
TotalSizeBytes int64 TotalSizeBytes int64
// HitCount is the number of cache hits // HitCount is the number of cache hits
HitCount int64 HitCount int64
@@ -0,0 +1,125 @@
package imgcache
import (
"image/color"
"image/jpeg"
"io"
"os"
"testing"
"time"
"sneak.berlin/go/pixa/internal/imageprocessor"
)
// widthOnlyRequest asks for the test photo at width, its height scaled to
// keep the photo's aspect ratio.
func widthOnlyRequest(fixtures *TestFixtures, width int) *ImageRequest {
return &ImageRequest{
SourceHost: fixtures.GoodHost,
SourcePath: testPathPhoto,
Size: Size{Width: width},
Format: FormatJPEG,
Quality: 85,
FitMode: FitCover,
}
}
// holdProcessingSlot takes one of proc's processing slots and returns the
// func that gives it back. Process takes its slot before it reads its input,
// so once it has read a byte from the pipe it holds the slot, until the pipe
// is closed.
func holdProcessingSlot(
t *testing.T, proc *imageprocessor.ImageProcessor,
) func() {
t.Helper()
input, feed := io.Pipe()
go func() {
_, _ = proc.Process(t.Context(), input, &imageprocessor.Request{})
}()
_, err := feed.Write([]byte{0})
if err != nil {
t.Fatalf("Process call to hold the slot did not start: %v", err)
}
release := func() { _ = feed.Close() }
t.Cleanup(release)
return release
}
// TestService_Get_WaitsForSlotBeforeReadingCachedSource checks that a
// request whose source is cached holds none of it while it waits for a
// processing slot: it reads the cached file only once it has a slot. With
// the only slot held, a request for a new width of the cached 100x100 photo
// waits; the cached file is then rewritten as a 100x50 image before the slot
// is freed, so the request must answer with that image scaled to 40x20.
func TestService_Get_WaitsForSlotBeforeReadingCachedSource(t *testing.T) {
t.Parallel()
svc, fixtures := SetupTestService(t)
svc.processor = imageprocessor.New(
imageprocessor.Params{MaxConcurrentProcessing: 1},
)
// A first request caches the photo as a source.
resp, err := svc.Get(t.Context(), widthOnlyRequest(fixtures, 50))
if err != nil {
t.Fatalf("first Get() error = %v", err)
}
_ = resp.Content.Close()
contentHash, _, err := svc.cache.LookupSource(t.Context(),
widthOnlyRequest(fixtures, 50))
if err != nil || contentHash == "" {
t.Fatalf("LookupSource() = %q, %v; want the cached source",
contentHash, err)
}
release := holdProcessingSlot(t, svc.processor)
var (
waited *ImageResponse
waitedErr error
)
done := make(chan struct{})
go func() {
defer close(done)
waited, waitedErr = svc.Get(t.Context(), widthOnlyRequest(fixtures, 40))
}()
// Give the request time to reach the slot: had it read the cached source
// before waiting, it would have read it by now.
time.Sleep(100 * time.Millisecond)
err = os.WriteFile(svc.cache.srcContent.hashToPath(contentHash),
generateTestJPEG(t, 100, 50, color.RGBA{0, 0, 255, 255}), 0o600)
if err != nil {
t.Fatalf("failed to rewrite the cached source: %v", err)
}
release()
<-done
if waitedErr != nil {
t.Fatalf("Get() error = %v", waitedErr)
}
defer func() { _ = waited.Content.Close() }()
output, err := jpeg.DecodeConfig(waited.Content)
if err != nil {
t.Fatalf("failed to decode the response: %v", err)
}
if output.Width != 40 || output.Height != 20 {
t.Errorf("response is %dx%d, want 40x20: the request read the cached "+
"source before it had a processing slot", output.Width, output.Height)
}
}
@@ -0,0 +1,349 @@
package imgcache
import (
"bytes"
"encoding/json"
"errors"
"fmt"
"io"
"os"
"sync"
"testing"
"time"
)
// webpRequest returns a request for a 100x100 WebP variant of path.
func webpRequest(path string) *ImageRequest {
return &ImageRequest{
SourceHost: testHostCDN,
SourcePath: path,
Size: Size{Width: 100, Height: 100},
Format: FormatWebP,
Quality: 85,
FitMode: FitCover,
}
}
// assertVariantServed checks that GetVariant serves key with the given
// content and the image/webp content type storeEvictionTestVariant stores.
func assertVariantServed(t *testing.T, cache *Cache, key VariantKey, content []byte) {
t.Helper()
reader, size, contentType, err := cache.GetVariant(key)
if err != nil {
t.Fatalf("GetVariant(%s) error = %v", key, err)
}
defer func() { _ = reader.Close() }()
got, err := io.ReadAll(reader)
if err != nil {
t.Fatalf("reading variant %s: %v", key, err)
}
if !bytes.Equal(got, content) {
t.Errorf("GetVariant(%s) content = %q, want %q", key, got, content)
}
if size != int64(len(content)) {
t.Errorf("GetVariant(%s) size = %d, want %d", key, size, len(content))
}
if contentType != testContentTypeWebP {
t.Errorf("GetVariant(%s) content type = %q, want %q",
key, contentType, testContentTypeWebP)
}
}
// assertVariantNotFound checks that GetVariant refuses key with
// ErrNotFound.
func assertVariantNotFound(t *testing.T, cache *Cache, key VariantKey) {
t.Helper()
reader, _, _, err := cache.GetVariant(key)
if err == nil {
_ = reader.Close()
}
if !errors.Is(err, ErrNotFound) {
t.Errorf("GetVariant(%s) error = %v, want ErrNotFound", key, err)
}
}
// assertLookupMisses checks that Lookup reports request as a miss.
func assertLookupMisses(t *testing.T, cache *Cache, request *ImageRequest) {
t.Helper()
lookup, err := cache.Lookup(t.Context(), request)
if err != nil {
t.Fatalf("Lookup(%s) error = %v", request.SourcePath, err)
}
if lookup.Hit {
t.Errorf("Lookup(%s) is a hit, want a miss", request.SourcePath)
}
}
// renameFile renames the file at from to to.
func renameFile(t *testing.T, from, to string) {
t.Helper()
err := os.Rename(from, to)
if err != nil {
t.Fatalf("renaming %s: %v", from, err)
}
}
// TestSecondHitDoesNotReadMetaFile checks that once a variant has been
// stored or read, a hit takes its content type from memory: with the
// .meta file deleted, GetVariant must still return the stored content
// type rather than the application/octet-stream it uses without one.
func TestSecondHitDoesNotReadMetaFile(t *testing.T) {
t.Parallel()
cache, _ := newEvictionTestCache(t, 1<<20)
content := []byte("webp variant bytes")
storeEvictionTestVariant(t, cache, testVariantKeyOne, content)
// A second Cache on the same state directory starts with nothing in
// memory, as pixad does after a restart, so its first read uses the
// .meta file.
restarted, err := NewCache(cache.db, cache.config)
if err != nil {
t.Fatalf("NewCache() error = %v", err)
}
assertVariantServed(t, restarted, testVariantKeyOne, content)
err = os.Remove(cache.variants.keyToPath(testVariantKeyOne) + ".meta")
if err != nil {
t.Fatalf("removing .meta file: %v", err)
}
assertVariantServed(t, cache, testVariantKeyOne, content)
assertVariantServed(t, restarted, testVariantKeyOne, content)
}
// TestReadDuringStoreKeepsStoredContentType checks that a GetVariant
// which began before StoreVariant finished cannot replace the content
// type the store kept in memory. Such a read can find the variant file
// but not yet its .meta file, and so gets application/octet-stream. The
// test deletes the .meta file after the store, then runs the part of
// GetVariant that comes after its check of memory.
func TestReadDuringStoreKeepsStoredContentType(t *testing.T) {
t.Parallel()
cache, _ := newEvictionTestCache(t, 1<<20)
content := []byte("webp variant bytes")
storeEvictionTestVariant(t, cache, testVariantKeyOne, content)
err := os.Remove(cache.variants.keyToPath(testVariantKeyOne) + ".meta")
if err != nil {
t.Fatalf("removing .meta file: %v", err)
}
reader, _, contentType, err := cache.loadVariantWithMeta(testVariantKeyOne)
if err != nil {
t.Fatalf("loadVariantWithMeta(%s) error = %v", testVariantKeyOne, err)
}
_ = reader.Close()
t.Logf("the read without a .meta file got content type %q", contentType)
assertVariantServed(t, cache, testVariantKeyOne, content)
}
// TestReadOfOlderMetaFileKeepsStoredContentType checks that a read
// which got its content type from a .meta file that StoreVariant had
// not yet rewritten cannot replace the type the store kept in memory.
// The test writes such a .meta file, with a different content type,
// after the store, then runs the part of GetVariant that comes after
// its check of memory.
func TestReadOfOlderMetaFileKeepsStoredContentType(t *testing.T) {
t.Parallel()
cache, _ := newEvictionTestCache(t, 1<<20)
content := []byte("webp variant bytes")
storeEvictionTestVariant(t, cache, testVariantKeyOne, content)
olderMeta, err := json.Marshal(VariantMeta{
ContentType: testContentTypeJPEG,
Size: int64(len(content)),
})
if err != nil {
t.Fatalf("encoding .meta file: %v", err)
}
metaPath := cache.variants.keyToPath(testVariantKeyOne) + ".meta"
err = os.WriteFile(metaPath, olderMeta, StorageFilePerm)
if err != nil {
t.Fatalf("writing .meta file: %v", err)
}
reader, _, contentType, err := cache.loadVariantWithMeta(testVariantKeyOne)
if err != nil {
t.Fatalf("loadVariantWithMeta(%s) error = %v", testVariantKeyOne, err)
}
_ = reader.Close()
if contentType != testContentTypeJPEG {
t.Fatalf("loadVariantWithMeta(%s) content type = %q, want %q from the .meta file",
testVariantKeyOne, contentType, testContentTypeJPEG)
}
kept, _ := cache.metaCache.Get(testVariantKeyOne)
if kept != testContentTypeWebP {
t.Errorf("content type in memory = %q, want the stored %q",
kept, testContentTypeWebP)
}
}
// TestFailedReadDuringStoreKeepsStoredContentType checks that a read
// which found no .meta file cannot leave application/octet-stream in
// memory, even when another read has removed the content type
// StoreVariant kept there. In this order: the store; a read that finds
// the variant in memory but cannot open its file, and so removes it
// from memory; a read that opened the variant file before the store
// wrote its .meta file. Later hits must get the stored content type.
func TestFailedReadDuringStoreKeepsStoredContentType(t *testing.T) {
t.Parallel()
cache, _ := newEvictionTestCache(t, 1<<20)
content := []byte("webp variant bytes")
variantPath := cache.variants.keyToPath(testVariantKeyOne)
metaPath := variantPath + ".meta"
storeEvictionTestVariant(t, cache, testVariantKeyOne, content)
renameFile(t, variantPath, variantPath+".hidden")
assertVariantNotFound(t, cache, testVariantKeyOne)
renameFile(t, variantPath+".hidden", variantPath)
renameFile(t, metaPath, metaPath+".hidden")
reader, _, contentType, err := cache.GetVariant(testVariantKeyOne)
if err != nil {
t.Fatalf("GetVariant(%s) error = %v", testVariantKeyOne, err)
}
_ = reader.Close()
t.Logf("the read without a .meta file got content type %q", contentType)
renameFile(t, metaPath+".hidden", metaPath)
assertVariantServed(t, cache, testVariantKeyOne, content)
}
// TestEvictedVariantIsNotServed checks that a variant the evictor
// removed is a miss and cannot be read, although it had been stored
// and served before.
func TestEvictedVariantIsNotServed(t *testing.T) {
t.Parallel()
cache, _ := newEvictionTestCache(t, 1500)
oldRequest := webpRequest("/old.jpg")
newRequest := webpRequest("/new.jpg")
oldKey := CacheKey(oldRequest)
newKey := CacheKey(newRequest)
oldContent := bytes.Repeat([]byte{0x01}, 1000)
newContent := bytes.Repeat([]byte{0x02}, 1000)
storeEvictionTestVariant(t, cache, oldKey, oldContent)
storeEvictionTestVariant(t, cache, newKey, newContent)
assertVariantServed(t, cache, oldKey, oldContent)
setVariantLastAccessed(t, cache, oldKey, time.Now().Add(-time.Hour))
err := cache.EvictToLimit(t.Context())
if err != nil {
t.Fatalf("EvictToLimit() error = %v", err)
}
assertLookupMisses(t, cache, oldRequest)
assertVariantNotFound(t, cache, oldKey)
assertVariantServed(t, cache, newKey, newContent)
}
// TestVariantDeletedFromDiskIsNotServed checks that a variant whose
// file was deleted by something other than the evictor cannot be read,
// and is a miss afterwards.
func TestVariantDeletedFromDiskIsNotServed(t *testing.T) {
t.Parallel()
cache, _ := newEvictionTestCache(t, 1<<20)
request := webpRequest("/deleted.jpg")
key := CacheKey(request)
content := []byte("webp variant bytes")
storeEvictionTestVariant(t, cache, key, content)
assertVariantServed(t, cache, key, content)
err := os.Remove(cache.variants.keyToPath(key))
if err != nil {
t.Fatalf("removing variant file: %v", err)
}
assertVariantNotFound(t, cache, key)
assertLookupMisses(t, cache, request)
}
// TestConcurrentVariantStoreReadAndEvict stores, reads and evicts
// variants from several goroutines at once, for the race detector.
func TestConcurrentVariantStoreReadAndEvict(t *testing.T) {
t.Parallel()
cache, _ := newEvictionTestCache(t, 1<<20)
ctx := t.Context()
var wg sync.WaitGroup
for goroutine := range 8 {
wg.Go(func() {
key := VariantKey(fmt.Sprintf("aabbccdd01%02d", goroutine))
content := []byte(key)
for range 20 {
err := cache.StoreVariant(
ctx, key, bytes.NewReader(content), testContentTypeWebP)
if err != nil {
t.Errorf("StoreVariant(%s) error = %v", key, err)
return
}
reader, _, contentType, err := cache.GetVariant(key)
if err != nil {
t.Errorf("GetVariant(%s) error = %v", key, err)
return
}
_ = reader.Close()
if contentType != testContentTypeWebP {
t.Errorf("GetVariant(%s) content type = %q, want %q",
key, contentType, testContentTypeWebP)
}
err = cache.evictVariant(ctx, key)
if err != nil {
t.Errorf("evictVariant(%s) error = %v", key, err)
return
}
assertVariantNotFound(t, cache, key)
}
})
}
wg.Wait()
}
+160 -55
View File
@@ -8,9 +8,11 @@ import (
"io" "io"
"log/slog" "log/slog"
"net/url" "net/url"
"runtime/debug"
"time" "time"
"github.com/dustin/go-humanize" "github.com/dustin/go-humanize"
"golang.org/x/sync/singleflight"
"sneak.berlin/go/pixa/internal/allowlist" "sneak.berlin/go/pixa/internal/allowlist"
"sneak.berlin/go/pixa/internal/httpfetcher" "sneak.berlin/go/pixa/internal/httpfetcher"
"sneak.berlin/go/pixa/internal/imageprocessor" "sneak.berlin/go/pixa/internal/imageprocessor"
@@ -29,6 +31,9 @@ type Service struct {
log *slog.Logger log *slog.Logger
allowHTTP bool allowHTTP bool
maxResponseSize int64 maxResponseSize int64
// variantsInProgress lets the requests that miss the same variant at the
// same time share one fetch and one transcode.
variantsInProgress singleflight.Group
} }
// ServiceConfig holds configuration for the image service. // ServiceConfig holds configuration for the image service.
@@ -43,6 +48,9 @@ type ServiceConfig struct {
SigningKey string SigningKey string
// Allowlist is the list of hosts that don't require signatures // Allowlist is the list of hosts that don't require signatures
Allowlist []string Allowlist []string
// MaxConcurrentProcessing is the most images processed at once; zero
// uses the image processor's default, one per CPU
MaxConcurrentProcessing int
// Logger for logging // Logger for logging
Logger *slog.Logger Logger *slog.Logger
} }
@@ -91,9 +99,10 @@ func NewService(cfg *ServiceConfig) (*Service, error) {
} }
maxResponseSize := fetcherCfg.MaxResponseSize maxResponseSize := fetcherCfg.MaxResponseSize
processor := imageprocessor.New( processor := imageprocessor.New(imageprocessor.Params{
imageprocessor.Params{MaxInputBytes: maxResponseSize}, MaxInputBytes: maxResponseSize,
) MaxConcurrentProcessing: cfg.MaxConcurrentProcessing,
})
return &Service{ return &Service{
cache: cfg.Cache, cache: cfg.Cache,
@@ -143,7 +152,8 @@ func (s *Service) Get(ctx context.Context, req *ImageRequest) (*ImageResponse, e
s.log.Error("failed to get cached variant", "key", result.CacheKey, "error", err) s.log.Error("failed to get cached variant", "key", result.CacheKey, "error", err)
// Fall through to re-process // Fall through to re-process
} else { } else {
s.cache.IncrementStats(ctx, true, 0) // Counted also when the request context has ended meanwhile
s.cache.IncrementStats(context.WithoutCancel(ctx), true, 0)
return &ImageResponse{ return &ImageResponse{
Content: reader, Content: reader,
@@ -155,12 +165,13 @@ func (s *Service) Get(ctx context.Context, req *ImageRequest) (*ImageResponse, e
} }
} }
// Cache miss - check if we have source content cached // Cache miss - get the variant, processed once for all the requests that
cacheKey := CacheKey(req) // miss it at the same time, then count this request's miss, also when it
// failed or the request context has ended meanwhile
response, err := s.processOrWait(ctx, req)
s.cache.IncrementStats(ctx, false, 0) s.cache.IncrementStats(context.WithoutCancel(ctx), false, 0)
response, err := s.processFromSourceOrFetch(ctx, req, cacheKey)
if err != nil { if err != nil {
return nil, err return nil, err
} }
@@ -233,38 +244,114 @@ func (s *Service) GenerateSignedURL(
baseURL, path, sig, exp, req.Quality, req.FitMode), nil baseURL, path, sig, exp, req.Quality, req.FitMode), nil
} }
// loadCachedSource attempts to load source content from cache, returning nil // errPanicked is returned when processing a variant panicked.
// if the cached data is unavailable or exceeds maxResponseSize. var errPanicked = errors.New("panic while processing image")
func (s *Service) loadCachedSource(contentHash ContentHash) []byte {
reader, err := s.cache.GetSourceContent(contentHash) // processOrWait returns the variant req asks for. The first of the requests
// that miss a variant at the same time processes it, and singleflight hands
// its result, or its error, to the others: they fetch nothing, read no source
// and take no upstream connection or processing slot. The processing runs with
// a context that does not end with the first request's, so the others are
// still served if that client goes away; the fetch timeout and the waits for a
// connection and a processing slot still bound it.
func (s *Service) processOrWait(
ctx context.Context, req *ImageRequest,
) (*ImageResponse, error) {
// A request that has already ended starts no processing
if ctx.Err() != nil {
return nil, ctx.Err()
}
cacheKey := CacheKey(req)
// Closed when this request's own function runs, which singleflight does
// only when no other request is processing the variant
processing := make(chan struct{})
results := s.variantsInProgress.DoChan(string(cacheKey),
func() (_ any, err error) {
close(processing)
// singleflight would raise a panic again in a goroutine of its
// own, where no handler recovers it, and stop pixad
defer func() {
recovered := recover()
if recovered != nil {
s.log.Error("panic while processing image",
"host", req.SourceHost, "path", req.SourcePath,
"panic", recovered, "stack", string(debug.Stack()))
err = fmt.Errorf("%w: %v", errPanicked, recovered)
}
}()
return s.processFromSourceOrFetch(
context.WithoutCancel(ctx), req, cacheKey)
})
var result singleflight.Result
select {
case result = <-results:
case <-ctx.Done():
select {
case <-processing:
// This request is processing the variant: it waits for the
// result, as every request did before misses were shared
result = <-results
default:
// Another request is processing the variant, or this request's
// function has not started yet; the processing goes on without it
return nil, ctx.Err()
}
}
if result.Err != nil {
return nil, result.Err
}
variant, _ := result.Val.(*processedVariant)
return &ImageResponse{
Content: io.NopCloser(bytes.NewReader(variant.data)),
ContentLength: int64(len(variant.data)),
ContentType: variant.contentType,
FetchedBytes: variant.fetchedBytes,
ETag: formatETag(cacheKey),
}, nil
}
// loadCachedSource opens source content from cache, without reading it, and
// returns it with its size; nil if the cached data is unavailable, empty or
// exceeds maxResponseSize.
func (s *Service) loadCachedSource(
contentHash ContentHash,
) (io.ReadCloser, int64) {
reader, size, err := s.cache.GetSourceContent(contentHash)
if err != nil { if err != nil {
s.log.Warn("failed to load cached source, fetching", "error", err) s.log.Warn("failed to load cached source, fetching", "error", err)
return nil return nil, 0
} }
// Bound the read to maxResponseSize to prevent unbounded memory use if size > s.maxResponseSize {
// from unexpectedly large cached files. _ = reader.Close()
limited := io.LimitReader(reader, s.maxResponseSize+1)
data, err := io.ReadAll(limited)
_ = reader.Close()
if err != nil {
s.log.Warn("failed to read cached source, fetching", "error", err)
return nil
}
if int64(len(data)) > s.maxResponseSize {
s.log.Warn("cached source exceeds max response size, discarding", s.log.Warn("cached source exceeds max response size, discarding",
"hash", contentHash, "hash", contentHash,
"max_bytes", s.maxResponseSize, "max_bytes", s.maxResponseSize,
) )
return nil return nil, 0
} }
return data if size == 0 {
_ = reader.Close()
return nil, 0
}
return reader, size
} }
// processFromSourceOrFetch processes an image, using cached source content // processFromSourceOrFetch processes an image, using cached source content
@@ -273,7 +360,7 @@ func (s *Service) processFromSourceOrFetch(
ctx context.Context, ctx context.Context,
req *ImageRequest, req *ImageRequest,
cacheKey VariantKey, cacheKey VariantKey,
) (*ImageResponse, error) { ) (*processedVariant, error) {
// Check if we have cached source content // Check if we have cached source content
contentHash, _, err := s.cache.LookupSource(ctx, req) contentHash, _, err := s.cache.LookupSource(ctx, req)
if err != nil { if err != nil {
@@ -281,37 +368,36 @@ func (s *Service) processFromSourceOrFetch(
} }
var ( var (
sourceData []byte source io.ReadCloser
fetchBytes int64 sourceSize int64
) )
if contentHash != "" { if contentHash != "" {
s.log.Debug("using cached source", "hash", contentHash) s.log.Debug("using cached source", "hash", contentHash)
sourceData = s.loadCachedSource(contentHash) source, sourceSize = s.loadCachedSource(contentHash)
} }
// Fetch from upstream if we don't have source data or it's empty // Fetch from upstream if we don't have source data or it's empty
if len(sourceData) == 0 { if source == nil {
resp, err := s.fetchAndProcess(ctx, req, cacheKey) return s.fetchAndProcess(ctx, req, cacheKey)
if err != nil {
return nil, err
}
return resp, nil
} }
// Process using cached source defer func() { _ = source.Close() }()
fetchBytes = int64(len(sourceData))
return s.processAndStore(ctx, req, cacheKey, sourceData, fetchBytes) // Process using cached source; nothing was fetched from upstream. The
// image processor reads the source only once it has a processing slot,
// so a request waiting for one holds none of it in memory.
return s.processAndStore(ctx, req, cacheKey, source, sourceSize)
} }
// fetchAndProcess fetches from upstream, processes, and caches the result. // fetchAndProcess fetches from upstream, processes, and caches the result.
// It counts the fetch with the bytes read from upstream, including when
// reading the response or a later step fails.
func (s *Service) fetchAndProcess( func (s *Service) fetchAndProcess(
ctx context.Context, ctx context.Context,
req *ImageRequest, req *ImageRequest,
cacheKey VariantKey, cacheKey VariantKey,
) (*ImageResponse, error) { ) (*processedVariant, error) {
// Fetch from upstream // Fetch from upstream
sourceURL := req.SourceURL() sourceURL := req.SourceURL()
@@ -333,17 +419,24 @@ func (s *Service) fetchAndProcess(
return nil, fmt.Errorf("upstream fetch failed: %w", err) return nil, fmt.Errorf("upstream fetch failed: %w", err)
} }
// Closing the body frees the upstream connection. It is closed only
// after processing, so the fetcher's connection limit also bounds the
// fetched sources held in memory while their requests wait for a
// processing slot.
defer func() { _ = fetchResult.Content.Close() }() defer func() { _ = fetchResult.Content.Close() }()
// Read and validate the source content // Read and validate the source content
sourceData, err := io.ReadAll(fetchResult.Content) sourceData, err := io.ReadAll(fetchResult.Content)
fetchBytes := int64(len(sourceData))
// Counted also when the request context has ended meanwhile
s.cache.IncrementUpstreamFetch(context.WithoutCancel(ctx), fetchBytes)
if err != nil { if err != nil {
return nil, fmt.Errorf("failed to read upstream response: %w", err) return nil, fmt.Errorf("failed to read upstream response: %w", err)
} }
// Calculate download bitrate // Calculate download bitrate
fetchBytes := int64(len(sourceData))
var downloadRate string var downloadRate string
if fetchResult.FetchDurationMs > 0 { if fetchResult.FetchDurationMs > 0 {
@@ -378,17 +471,28 @@ func (s *Service) fetchAndProcess(
// Continue even if caching fails // Continue even if caching fails
} }
return s.processAndStore(ctx, req, cacheKey, sourceData, fetchBytes) return s.processAndStore(
ctx, req, cacheKey, bytes.NewReader(sourceData), fetchBytes,
)
} }
// processAndStore processes an image and stores the result. // processedVariant is a variant as processAndStore made it. Each request that
// shared its processing serves it through a reader of its own.
type processedVariant struct {
data []byte
contentType string
fetchedBytes int64
}
// processAndStore processes the image read from source and stores the
// result.
func (s *Service) processAndStore( func (s *Service) processAndStore(
ctx context.Context, ctx context.Context,
req *ImageRequest, req *ImageRequest,
cacheKey VariantKey, cacheKey VariantKey,
sourceData []byte, source io.Reader,
fetchBytes int64, fetchBytes int64,
) (*ImageResponse, error) { ) (*processedVariant, error) {
// Process the image // Process the image
processStart := time.Now() processStart := time.Now()
@@ -399,13 +503,16 @@ func (s *Service) processAndStore(
FitMode: imageprocessor.FitMode(req.FitMode), FitMode: imageprocessor.FitMode(req.FitMode),
} }
processResult, err := s.processor.Process(ctx, bytes.NewReader(sourceData), processReq) processResult, err := s.processor.Process(ctx, source, processReq)
if err != nil { if err != nil {
return nil, fmt.Errorf("image processing failed: %w", err) return nil, fmt.Errorf("image processing failed: %w", err)
} }
processDuration := time.Since(processStart) processDuration := time.Since(processStart)
// Counted also when the request context has ended meanwhile
s.cache.IncrementTransformCount(context.WithoutCancel(ctx))
// Read processed content // Read processed content
processedData, err := io.ReadAll(processResult.Content) processedData, err := io.ReadAll(processResult.Content)
_ = processResult.Content.Close() _ = processResult.Content.Close()
@@ -449,12 +556,10 @@ func (s *Service) processAndStore(
// Continue even if caching fails // Continue even if caching fails
} }
return &ImageResponse{ return &processedVariant{
Content: io.NopCloser(bytes.NewReader(processedData)), data: processedData,
ContentLength: outputSize, contentType: processResult.ContentType,
ContentType: processResult.ContentType, fetchedBytes: fetchBytes,
FetchedBytes: fetchBytes,
ETag: formatETag(cacheKey),
}, nil }, nil
} }
+315 -1
View File
@@ -4,6 +4,9 @@ import (
"bytes" "bytes"
"context" "context"
"database/sql" "database/sql"
"image/color"
"io"
"io/fs"
"log/slog" "log/slog"
"math" "math"
"strings" "strings"
@@ -11,6 +14,7 @@ import (
"time" "time"
"sneak.berlin/go/pixa/internal/database" "sneak.berlin/go/pixa/internal/database"
"sneak.berlin/go/pixa/internal/httpfetcher"
) )
func setupStatsTestDB(t *testing.T) *sql.DB { func setupStatsTestDB(t *testing.T) *sql.DB {
@@ -125,7 +129,7 @@ func TestStats_LogsFailedCountQueries(t *testing.T) {
} }
_, err = db.ExecContext(t.Context(), _, err = db.ExecContext(t.Context(),
`DROP TABLE request_cache; DROP TABLE output_content`) `DROP TABLE source_content; DROP TABLE variant_content`)
if err != nil { if err != nil {
t.Fatal(err) t.Fatal(err)
} }
@@ -183,3 +187,313 @@ func TestIncrementStats_LogsFailedUpdates(t *testing.T) {
} }
} }
} }
// TestStats_TotalsCountSourcesAndVariants verifies that TotalItems and
// TotalSizeBytes cover the stored source images and processed variants.
func TestStats_TotalsCountSourcesAndVariants(t *testing.T) {
t.Parallel()
cache, _ := newEvictionTestCache(t, 1<<30)
storeEvictionTestSource(t, cache, testHostCDN, testPathCat,
bytes.Repeat([]byte{0xAA}, 1000))
storeEvictionTestVariant(t, cache, testVariantKeyOne,
bytes.Repeat([]byte{0xAB}, 500))
storeEvictionTestVariant(t, cache, testVariantKeyTwo,
bytes.Repeat([]byte{0xAC}, 250))
stats, err := cache.Stats(t.Context())
if err != nil {
t.Fatalf("Stats() error = %v", err)
}
if stats.TotalItems != 3 {
t.Errorf("TotalItems = %d, want 3 (1 source, 2 variants)", stats.TotalItems)
}
if stats.TotalSizeBytes != 1750 {
t.Errorf("TotalSizeBytes = %d, want 1750 (1000+500+250)",
stats.TotalSizeBytes)
}
}
// TestStats_DisabledCacheReportsNoItems verifies that a disabled disk cache
// reports no items and no size, even when its database still holds the
// rows of an earlier run with the disk cache enabled.
func TestStats_DisabledCacheReportsNoItems(t *testing.T) {
t.Parallel()
enabled, _ := newEvictionTestCache(t, 1<<30)
storeEvictionTestSource(t, enabled, testHostCDN, testPathCat,
bytes.Repeat([]byte{0xAA}, 1000))
storeEvictionTestVariant(t, enabled, testVariantKeyOne,
bytes.Repeat([]byte{0xAB}, 500))
disabled, err := NewCache(enabled.db, CacheConfig{
StateDir: t.TempDir(),
CacheTTL: time.Hour,
NegativeTTL: 5 * time.Minute,
DisableDiskCache: true,
})
if err != nil {
t.Fatal(err)
}
stats, err := disabled.Stats(t.Context())
if err != nil {
t.Fatalf("Stats() error = %v", err)
}
if stats.TotalItems != 0 || stats.TotalSizeBytes != 0 {
t.Errorf("TotalItems = %d, TotalSizeBytes = %d, want 0 and 0",
stats.TotalItems, stats.TotalSizeBytes)
}
}
// cacheStatsCounters holds the counters of the cache_stats row, in column
// order.
type cacheStatsCounters struct {
hitCount int64
missCount int64
upstreamFetchCount int64
upstreamFetchBytes int64
transformCount int64
}
// readCacheStatsCounters reads the counters of the cache_stats row.
func readCacheStatsCounters(t *testing.T, cache *Cache) cacheStatsCounters {
t.Helper()
var got cacheStatsCounters
err := cache.db.QueryRowContext(t.Context(), `
SELECT hit_count, miss_count, upstream_fetch_count,
upstream_fetch_bytes, transform_count
FROM cache_stats WHERE id = 1
`).Scan(&got.hitCount, &got.missCount, &got.upstreamFetchCount,
&got.upstreamFetchBytes, &got.transformCount)
if err != nil {
t.Fatalf("failed to read cache_stats: %v", err)
}
return got
}
// TestService_Get_CountsStats walks Get through a miss that fetches the
// source, a hit, a miss that reuses the cached source, and two misses whose
// source cannot be used, checking every cache_stats counter after each.
func TestService_Get_CountsStats(t *testing.T) {
t.Parallel()
svc, fixtures := SetupTestService(t)
// NewTestFS builds the same files the test service's fetcher serves.
testFS, _ := NewTestFS(t)
photo, err := fs.ReadFile(testFS, fixtures.GoodHostJPEG)
if err != nil {
t.Fatal(err)
}
fake, err := fs.ReadFile(testFS, fixtures.InvalidFile)
if err != nil {
t.Fatal(err)
}
photoBytes, fakeBytes := int64(len(photo)), int64(len(fake))
// want is hits, misses, upstream fetches, upstream bytes, transforms.
steps := []struct {
name string
path string
size int
wantErr bool
want cacheStatsCounters
}{
{"miss that fetches the source", testPathPhoto, 50, false,
cacheStatsCounters{0, 1, 1, photoBytes, 1}},
{"hit", testPathPhoto, 50, false,
cacheStatsCounters{1, 1, 1, photoBytes, 1}},
{"miss that reuses the cached source", testPathPhoto, 25, false,
cacheStatsCounters{1, 2, 1, photoBytes, 2}},
{"miss whose source fails the magic byte check", "/images/fake.jpg", 50, true,
cacheStatsCounters{1, 3, 2, photoBytes + fakeBytes, 2}},
{"miss whose source is not found", "/images/nonexistent.jpg", 50, true,
cacheStatsCounters{1, 4, 2, photoBytes + fakeBytes, 2}},
}
for _, step := range steps {
resp, err := svc.Get(t.Context(), &ImageRequest{
SourceHost: fixtures.GoodHost,
SourcePath: step.path,
Size: Size{Width: step.size, Height: step.size},
Format: FormatJPEG,
Quality: 85,
FitMode: FitCover,
})
if (err != nil) != step.wantErr {
t.Fatalf("%s: Get() error = %v, want error %t", step.name, err, step.wantErr)
}
if err == nil {
_ = resp.Content.Close()
}
got := readCacheStatsCounters(t, svc.cache)
if got != step.want {
t.Fatalf("after the %s: counters = %+v, want %+v", step.name, got, step.want)
}
}
}
// fakeUpstream answers every fetch with itself as a JPEG body. The body
// serves data, then calls cancel, when set, and returns err; io.EOF ends
// the body normally.
type fakeUpstream struct {
data *bytes.Reader
cancel context.CancelFunc
err error
}
func (u *fakeUpstream) Fetch(
context.Context, string,
) (*httpfetcher.FetchResult, error) {
return &httpfetcher.FetchResult{
Content: io.NopCloser(u),
ContentLength: -1,
ContentType: testContentTypeJPEG,
}, nil
}
func (u *fakeUpstream) Read(p []byte) (int, error) {
if u.data.Len() > 0 {
return u.data.Read(p)
}
if u.cancel != nil {
u.cancel()
}
return 0, u.err
}
// TestService_Get_CountsInterruptedMisses checks every cache_stats counter
// after a miss whose request context ends during or after the upstream
// fetch, and after a miss whose upstream body is over the size limit.
func TestService_Get_CountsInterruptedMisses(t *testing.T) {
t.Parallel()
photo := generateTestJPEG(t, 100, 100, color.RGBA{255, 0, 0, 255})
half := len(photo) / 2
// want is hits, misses, upstream fetches, upstream bytes, transforms.
tests := []struct {
name string
served int // bytes of the photo the upstream body serves
cancel bool // whether the body then ends the request context
readErr error // what the body then returns
wantErr bool
want cacheStatsCounters
}{
{"request context ends during the fetch", half, true, context.Canceled, true,
cacheStatsCounters{0, 1, 1, int64(half), 0}},
{"request context ends after the fetch", len(photo), true, io.EOF, false,
cacheStatsCounters{0, 1, 1, int64(len(photo)), 1}},
{"upstream body over the size limit", half, false,
httpfetcher.ErrResponseTooLarge, true,
cacheStatsCounters{0, 1, 1, int64(half), 0}},
}
for _, tc := range tests {
t.Run(tc.name, func(t *testing.T) {
t.Parallel()
svc, fixtures := SetupTestService(t)
ctx, cancel := context.WithCancel(t.Context())
defer cancel()
upstream := &fakeUpstream{
data: bytes.NewReader(photo[:tc.served]),
err: tc.readErr,
}
if tc.cancel {
upstream.cancel = cancel
}
svc.fetcher = upstream
resp, err := svc.Get(ctx, &ImageRequest{
SourceHost: fixtures.GoodHost,
SourcePath: testPathPhoto,
Size: Size{Width: 50, Height: 50},
Format: FormatJPEG,
Quality: 85,
FitMode: FitCover,
})
t.Logf("Get() error = %v", err)
if (err != nil) != tc.wantErr {
t.Fatalf("Get() error = %v, want error %t", err, tc.wantErr)
}
if err == nil {
_ = resp.Content.Close()
}
got := readCacheStatsCounters(t, svc.cache)
if got != tc.want {
t.Errorf("counters = %+v, want %+v", got, tc.want)
}
})
}
}
// TestService_Get_CountsHitAfterRequestEnds checks every cache_stats counter
// after a hit served with a request context that has already ended: only
// the hit count moves.
func TestService_Get_CountsHitAfterRequestEnds(t *testing.T) {
t.Parallel()
svc, fixtures := SetupTestService(t)
req := &ImageRequest{
SourceHost: fixtures.GoodHost,
SourcePath: testPathPhoto,
Size: Size{Width: 50, Height: 50},
Format: FormatJPEG,
Quality: 85,
FitMode: FitCover,
}
// A first request caches the variant.
resp, err := svc.Get(t.Context(), req)
if err != nil {
t.Fatalf("first Get() error = %v", err)
}
_ = resp.Content.Close()
want := readCacheStatsCounters(t, svc.cache)
want.hitCount++
ctx, cancel := context.WithCancel(t.Context())
cancel()
resp, err = svc.Get(ctx, req)
if err != nil {
t.Fatalf("Get() with an ended request context: error = %v", err)
}
_ = resp.Content.Close()
if resp.CacheStatus != CacheHit {
t.Fatalf("CacheStatus = %v, want %v", resp.CacheStatus, CacheHit)
}
got := readCacheStatsCounters(t, svc.cache)
if got != want {
t.Errorf("counters = %+v, want %+v", got, want)
}
}
+24 -12
View File
@@ -506,32 +506,44 @@ func (s *VariantStorage) Load(key VariantKey) (io.ReadCloser, error) {
return f, nil return f, nil
} }
// LoadWithMeta returns a reader, size, and content type for the content at // LoadWithSize returns a reader and file size for the content at the
// the given key. // given key.
func (s *VariantStorage) LoadWithMeta( func (s *VariantStorage) LoadWithSize(key VariantKey) (io.ReadCloser, int64, error) {
key VariantKey,
) (io.ReadCloser, int64, string, error) {
path := s.keyToPath(key) path := s.keyToPath(key)
metaPath := path + ".meta"
f, err := os.Open(path) //nolint:gosec // path derived from cache key f, err := os.Open(path) //nolint:gosec // path derived from cache key
if err != nil { if err != nil {
if os.IsNotExist(err) { if os.IsNotExist(err) {
return nil, 0, "", ErrNotFound return nil, 0, ErrNotFound
} }
return nil, 0, "", fmt.Errorf("failed to open content: %w", err) return nil, 0, fmt.Errorf("failed to open content: %w", err)
} }
stat, err := f.Stat() stat, err := f.Stat()
if err != nil { if err != nil {
_ = f.Close() _ = f.Close()
return nil, 0, "", fmt.Errorf("failed to stat content: %w", err) return nil, 0, fmt.Errorf("failed to stat content: %w", err)
} }
// Load metadata for content type return f, stat.Size(), nil
contentType := "application/octet-stream" // fallback }
// LoadWithMeta returns a reader, size, and content type for the content at
// the given key. The content type is read from the .meta file, and is
// empty when that file is missing or unreadable.
func (s *VariantStorage) LoadWithMeta(
key VariantKey,
) (io.ReadCloser, int64, string, error) {
f, size, err := s.LoadWithSize(key)
if err != nil {
return nil, 0, "", err
}
var contentType string
metaPath := s.keyToPath(key) + ".meta"
metaData, err := os.ReadFile(metaPath) //nolint:gosec // path derived from cache key metaData, err := os.ReadFile(metaPath) //nolint:gosec // path derived from cache key
if err == nil { if err == nil {
@@ -541,7 +553,7 @@ func (s *VariantStorage) LoadWithMeta(
} }
} }
return f, stat.Size(), contentType, nil return f, size, contentType, nil
} }
// Exists checks if content exists at the given key. // Exists checks if content exists at the given key.
@@ -24,6 +24,7 @@ const (
testHostExample = "example.com" testHostExample = "example.com"
testPathCat = "/photos/cat.jpg" testPathCat = "/photos/cat.jpg"
testContentTypeJPEG = "image/jpeg" testContentTypeJPEG = "image/jpeg"
testContentTypeWebP = "image/webp"
testHeaderContentType = "Content-Type" testHeaderContentType = "Content-Type"
) )
+1 -1
View File
@@ -172,7 +172,7 @@ func (s *Middleware) Logging() func(http.Handler) http.Handler {
// CORS returns a CORS middleware. // CORS returns a CORS middleware.
func (s *Middleware) CORS() func(http.Handler) http.Handler { func (s *Middleware) CORS() func(http.Handler) http.Handler {
return cors.Handler(cors.Options{ return cors.Handler(cors.Options{
AllowedOrigins: []string{"*"}, AllowedOrigins: []string{s.config.AccessControlAllowOrigin},
AllowedMethods: []string{"GET", "HEAD", "OPTIONS"}, AllowedMethods: []string{"GET", "HEAD", "OPTIONS"},
AllowedHeaders: []string{"Accept", "Authorization", "Content-Type"}, AllowedHeaders: []string{"Accept", "Authorization", "Content-Type"},
ExposedHeaders: []string{"Link"}, ExposedHeaders: []string{"Link"},
@@ -9,6 +9,53 @@ import (
"sneak.berlin/go/pixa/internal/config" "sneak.berlin/go/pixa/internal/config"
) )
// TestCORSAnswersWithConfiguredOrigin checks that the CORS middleware
// answers with access_control_allow_origin, where "*" lets any origin read
// responses and a single origin lets only that origin read them.
func TestCORSAnswersWithConfiguredOrigin(t *testing.T) {
t.Parallel()
const appOrigin = "https://app.example.com"
cases := []struct {
configured string
requestOrigin string
want string
}{
{"*", "https://any.example.com", "*"},
{appOrigin, appOrigin, appOrigin},
{appOrigin, "https://other.example.com", ""},
}
testHandler := http.HandlerFunc(func(w http.ResponseWriter, _ *http.Request) {
w.WriteHeader(http.StatusOK)
})
for _, tc := range cases {
mw := &Middleware{
log: slog.Default(),
config: &config.Config{AccessControlAllowOrigin: tc.configured},
}
handler := mw.CORS()(testHandler)
req := httptest.NewRequestWithContext(
t.Context(), http.MethodGet, "/v1/image/example.com/a.jpg/1x1.png", nil)
req.Header.Set("Origin", tc.requestOrigin)
rec := httptest.NewRecorder()
handler.ServeHTTP(rec, req)
got := rec.Header().Get("Access-Control-Allow-Origin")
if got != tc.want {
t.Errorf("configured %q, request from %q: "+
"Access-Control-Allow-Origin = %q, want %q",
tc.configured, tc.requestOrigin, got, tc.want)
}
}
}
func TestSecurityHeaders(t *testing.T) { func TestSecurityHeaders(t *testing.T) {
t.Parallel() t.Parallel()
+1 -2
View File
@@ -14,7 +14,6 @@ const (
// short, so a slowloris client dribbling headers is dropped well // short, so a slowloris client dribbling headers is dropped well
// before it ties up a connection for the whole ReadTimeout window. // before it ties up a connection for the whole ReadTimeout window.
HTTPReadHeaderTimeout = 10 * time.Second HTTPReadHeaderTimeout = 10 * time.Second
HTTPWriteTimeout = 60 * time.Second
// HTTPIdleTimeout bounds how long an idle keep-alive connection is // HTTPIdleTimeout bounds how long an idle keep-alive connection is
// held open, so idle connections cannot accumulate without limit on a // held open, so idle connections cannot accumulate without limit on a
// service targeting high concurrency. // service targeting high concurrency.
@@ -30,7 +29,7 @@ func (s *Server) newHTTPServer() *http.Server {
Addr: fmt.Sprintf(":%d", s.config.Port), Addr: fmt.Sprintf(":%d", s.config.Port),
ReadTimeout: HTTPReadTimeout, ReadTimeout: HTTPReadTimeout,
ReadHeaderTimeout: HTTPReadHeaderTimeout, ReadHeaderTimeout: HTTPReadHeaderTimeout,
WriteTimeout: HTTPWriteTimeout, WriteTimeout: s.config.DownstreamTimeout,
IdleTimeout: HTTPIdleTimeout, IdleTimeout: HTTPIdleTimeout,
MaxHeaderBytes: HTTPMaxHeaderBytes, MaxHeaderBytes: HTTPMaxHeaderBytes,
Handler: s, Handler: s,
+7 -3
View File
@@ -11,11 +11,15 @@ import (
// carries every hardening timeout wired onto it, including the slowloris // carries every hardening timeout wired onto it, including the slowloris
// defense (ReadHeaderTimeout) and the keep-alive bound (IdleTimeout). This // defense (ReadHeaderTimeout) and the keep-alive bound (IdleTimeout). This
// guards against a field being defined but never set on the server, so // guards against a field being defined but never set on the server, so
// each assertion compares the server field to its constant. // each assertion compares the server field to its constant, or, for
// WriteTimeout, to downstream_timeout from the config.
func TestNewHTTPServerTimeouts(t *testing.T) { func TestNewHTTPServerTimeouts(t *testing.T) {
t.Parallel() t.Parallel()
s := &Server{config: &config.Config{Port: 8080}} s := &Server{config: &config.Config{
Port: 8080,
DownstreamTimeout: 45 * time.Second,
}}
srv := s.newHTTPServer() srv := s.newHTTPServer()
@@ -26,7 +30,7 @@ func TestNewHTTPServerTimeouts(t *testing.T) {
}{ }{
{"ReadTimeout", srv.ReadTimeout, HTTPReadTimeout}, {"ReadTimeout", srv.ReadTimeout, HTTPReadTimeout},
{"ReadHeaderTimeout", srv.ReadHeaderTimeout, HTTPReadHeaderTimeout}, {"ReadHeaderTimeout", srv.ReadHeaderTimeout, HTTPReadHeaderTimeout},
{"WriteTimeout", srv.WriteTimeout, HTTPWriteTimeout}, {"WriteTimeout", srv.WriteTimeout, 45 * time.Second},
{"IdleTimeout", srv.IdleTimeout, HTTPIdleTimeout}, {"IdleTimeout", srv.IdleTimeout, HTTPIdleTimeout},
} }
@@ -18,6 +18,7 @@ import (
"sneak.berlin/go/pixa/internal/database" "sneak.berlin/go/pixa/internal/database"
"sneak.berlin/go/pixa/internal/globals" "sneak.berlin/go/pixa/internal/globals"
"sneak.berlin/go/pixa/internal/handlers" "sneak.berlin/go/pixa/internal/handlers"
"sneak.berlin/go/pixa/internal/healthcheck"
"sneak.berlin/go/pixa/internal/logger" "sneak.berlin/go/pixa/internal/logger"
"sneak.berlin/go/pixa/internal/middleware" "sneak.berlin/go/pixa/internal/middleware"
) )
@@ -51,11 +52,12 @@ func newTestServer(t *testing.T) *Server {
stateDir := t.TempDir() stateDir := t.TempDir()
cfg := &config.Config{ cfg := &config.Config{
Debug: true, Debug: true,
SigningKey: testSigningKey, SigningKey: testSigningKey,
StateDir: stateDir, StateDir: stateDir,
DBURL: "file:" + filepath.Join(stateDir, "state.sqlite3"), DBURL: "file:" + filepath.Join(stateDir, "state.sqlite3"),
TrustedProxies: []netip.Prefix{netip.MustParsePrefix("10.0.0.0/8")}, TrustedProxies: []netip.Prefix{netip.MustParsePrefix("10.0.0.0/8")},
DownstreamTimeout: config.DefaultDownstreamTimeout,
} }
lc := fxtest.NewLifecycle(t) lc := fxtest.NewLifecycle(t)
@@ -70,8 +72,15 @@ func newTestServer(t *testing.T) *Server {
t.Fatalf("database.New() error = %v", err) t.Fatalf("database.New() error = %v", err)
} }
hc, err := healthcheck.New(lc, healthcheck.Params{
Globals: &globals.Globals{}, Config: cfg, Logger: log, Database: db,
})
if err != nil {
t.Fatalf("healthcheck.New() error = %v", err)
}
h, err := handlers.New(lc, handlers.Params{ h, err := handlers.New(lc, handlers.Params{
Logger: log, Database: db, Config: cfg, Logger: log, Healthcheck: hc, Database: db, Config: cfg,
}) })
if err != nil { if err != nil {
t.Fatalf("handlers.New() error = %v", err) t.Fatalf("handlers.New() error = %v", err)
@@ -0,0 +1,169 @@
package server
import (
"encoding/json"
"net/http"
"net/http/httptest"
"strconv"
"testing"
"sneak.berlin/go/pixa/internal/healthcheck"
)
// unsignedImagePath is an image URL that carries no signature.
const unsignedImagePath = "/v1/image/cdn.example.com/cat.jpg/100x100.jpeg"
// TestMaintenanceModeRefusesImageRequests verifies that while maintenance
// mode is on, both image routes answer 503 Service Unavailable with a
// Retry-After header and the JSON error body the image handlers send.
func TestMaintenanceModeRefusesImageRequests(t *testing.T) {
t.Parallel()
s := newTestServer(t)
s.config.MaintenanceMode = true
requests := []struct {
method string
path string
}{
{http.MethodGet, unsignedImagePath},
{http.MethodHead, unsignedImagePath},
{http.MethodGet, "/v1/e/token/cat.jpg"},
}
for _, tc := range requests {
t.Run(tc.method+" "+tc.path, func(t *testing.T) {
t.Parallel()
rec := httptest.NewRecorder()
s.ServeHTTP(rec, httptest.NewRequestWithContext(
t.Context(), tc.method, tc.path, nil))
t.Logf("status %d, body %s", rec.Code, rec.Body.String())
if rec.Code != http.StatusServiceUnavailable {
t.Fatalf("status = %d, want %d",
rec.Code, http.StatusServiceUnavailable)
}
retryAfter := rec.Header().Get("Retry-After")
seconds, err := strconv.Atoi(retryAfter)
if err != nil || seconds <= 0 {
t.Errorf("Retry-After = %q, want a positive number of seconds",
retryAfter)
}
// A HEAD response carries no body.
if tc.method == http.MethodHead {
return
}
var body struct {
Error string `json:"error"`
Status int `json:"status"`
Timestamp string `json:"timestamp"`
}
err = json.NewDecoder(rec.Body).Decode(&body)
if err != nil {
t.Fatalf("body is not JSON: %v", err)
}
if body.Error == "" || body.Status != http.StatusServiceUnavailable ||
body.Timestamp == "" {
t.Errorf("body = %+v, want an error, status %d and a timestamp",
body, http.StatusServiceUnavailable)
}
})
}
}
// TestImageRequestsServedWithoutMaintenanceMode verifies that while
// maintenance mode is off, image requests reach the image handlers instead
// of the 503. The handlers refuse an unsigned image URL with 401 and a token
// they cannot decrypt with 400, so either status shows a request got through.
func TestImageRequestsServedWithoutMaintenanceMode(t *testing.T) {
t.Parallel()
s := newTestServer(t)
s.config.MaintenanceMode = false
requests := []struct {
method string
path string
want int
}{
{http.MethodGet, unsignedImagePath, http.StatusUnauthorized},
{http.MethodHead, unsignedImagePath, http.StatusUnauthorized},
{http.MethodGet, "/v1/e/token/cat.jpg", http.StatusBadRequest},
}
for _, tc := range requests {
t.Run(tc.method+" "+tc.path, func(t *testing.T) {
t.Parallel()
rec := httptest.NewRecorder()
s.ServeHTTP(rec, httptest.NewRequestWithContext(
t.Context(), tc.method, tc.path, nil))
t.Logf("status %d, body %s", rec.Code, rec.Body.String())
if rec.Code != tc.want {
t.Errorf("status = %d, want %d from the image handler",
rec.Code, tc.want)
}
})
}
}
// TestMaintenanceModeKeepsOtherRoutes verifies that while maintenance mode
// is on, the health check still answers 200 and reports it, and the login
// page and /metrics still answer 200. The image's Docker HEALTHCHECK
// requests the health check: a 503 there would make the container
// unhealthy, and upaas marks a deploy failed when its container is
// unhealthy.
func TestMaintenanceModeKeepsOtherRoutes(t *testing.T) {
t.Parallel()
s := newTestServer(t)
s.config.MaintenanceMode = true
// /metrics is routed only when its username is set.
s.config.MetricsUsername = "metrics"
s.config.MetricsPassword = "metrics-password"
s.SetupRoutes()
rec := httptest.NewRecorder()
s.ServeHTTP(rec, httptest.NewRequestWithContext(t.Context(),
http.MethodGet, "/.well-known/healthcheck.json", nil))
t.Logf("health check status %d, body %s", rec.Code, rec.Body.String())
if rec.Code != http.StatusOK {
t.Fatalf("health check status = %d, want %d", rec.Code, http.StatusOK)
}
var health healthcheck.Response
err := json.NewDecoder(rec.Body).Decode(&health)
if err != nil || !health.Maintenance {
t.Errorf("health check maintenance_mode = %v (error %v), want true",
health.Maintenance, err)
}
rec = httptest.NewRecorder()
s.ServeHTTP(rec, clientRequest(t, http.MethodGet, nil, firstClient, ""))
if rec.Code != http.StatusOK {
t.Errorf("login page status = %d, want %d", rec.Code, http.StatusOK)
}
req := httptest.NewRequestWithContext(t.Context(),
http.MethodGet, "/metrics", nil)
req.SetBasicAuth(s.config.MetricsUsername, s.config.MetricsPassword)
rec = httptest.NewRecorder()
s.ServeHTTP(rec, req)
if rec.Code != http.StatusOK {
t.Errorf("/metrics status = %d, want %d", rec.Code, http.StatusOK)
}
}
+50 -9
View File
@@ -1,7 +1,9 @@
package server package server
import ( import (
"encoding/json"
"net/http" "net/http"
"strconv"
"time" "time"
sentryhttp "github.com/getsentry/sentry-go/http" sentryhttp "github.com/getsentry/sentry-go/http"
@@ -17,6 +19,10 @@ import (
// make per minute; the next is refused with 429 Too Many Requests. // make per minute; the next is refused with 429 Too Many Requests.
const LoginAttemptsPerMinute = 5 const LoginAttemptsPerMinute = 5
// MaintenanceRetryAfterSeconds is the Retry-After, in seconds, sent with
// the 503 that the image routes answer while maintenance mode is on.
const MaintenanceRetryAfterSeconds = 300
// SetupRoutes configures all HTTP routes. // SetupRoutes configures all HTTP routes.
func (s *Server) SetupRoutes() { func (s *Server) SetupRoutes() {
s.router = chi.NewRouter() s.router = chi.NewRouter()
@@ -33,7 +39,7 @@ func (s *Server) SetupRoutes() {
} }
s.router.Use(s.mw.CORS()) s.router.Use(s.mw.CORS())
s.router.Use(middleware.Timeout(HTTPWriteTimeout)) s.router.Use(middleware.Timeout(s.config.DownstreamTimeout))
if s.sentryEnabled { if s.sentryEnabled {
sentryHandler := sentryhttp.New(sentryhttp.Options{ sentryHandler := sentryhttp.New(sentryhttp.Options{
@@ -68,15 +74,23 @@ func (s *Server) SetupRoutes() {
s.router.Get("/logout", s.h.HandleLogout()) s.router.Get("/logout", s.h.HandleLogout())
// Main image proxy route // Image routes, refused while maintenance mode is on. Only these: the
// /v1/image/<host>/<path>/<width>x<height>.<format> // image's Docker HEALTHCHECK requests the health check, a 503 there
s.router.Get("/v1/image/*", s.h.HandleImage()) // would make the container unhealthy, and upaas marks a deploy failed
s.router.Head("/v1/image/*", s.h.HandleImage()) // when its container is unhealthy.
s.router.Group(func(r chi.Router) {
r.Use(s.refuseDuringMaintenance)
// Encrypted image URL route // Main image proxy route
// The trailing filename (e.g., /img.jpg) is ignored but helps // /v1/image/<host>/<path>/<width>x<height>.<format>
// browsers with content type r.Get("/v1/image/*", s.h.HandleImage())
s.router.Get("/v1/e/{token}/*", s.h.HandleImageEnc()) r.Head("/v1/image/*", s.h.HandleImage())
// Encrypted image URL route
// The trailing filename (e.g., /img.jpg) is ignored but helps
// browsers with content type
r.Get("/v1/e/{token}/*", s.h.HandleImageEnc())
})
// Metrics endpoint with auth // Metrics endpoint with auth
if s.config.MetricsUsername != "" { if s.config.MetricsUsername != "" {
@@ -86,3 +100,30 @@ func (s *Server) SetupRoutes() {
}) })
} }
} }
// refuseDuringMaintenance answers a request with 503 Service Unavailable,
// a Retry-After header and a JSON error body while maintenance mode is on,
// and passes it on otherwise. The body has the fields of the JSON errors
// the image handlers send.
func (s *Server) refuseDuringMaintenance(next http.Handler) http.Handler {
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
if !s.MaintenanceMode() {
next.ServeHTTP(w, r)
return
}
w.Header().Set("Retry-After", strconv.Itoa(MaintenanceRetryAfterSeconds))
w.Header().Set("Content-Type", "application/json")
w.WriteHeader(http.StatusServiceUnavailable)
err := json.NewEncoder(w).Encode(map[string]any{
"error": "down for maintenance, try again later",
"status": http.StatusServiceUnavailable,
"timestamp": time.Now().UTC().Format(time.RFC3339),
})
if err != nil {
s.log.Error("json encode error", "error", err)
}
})
}
+9 -2
View File
@@ -5,8 +5,10 @@
# or apk (detected in that order); assumes NOTHING is present (not git, # or apk (detected in that order); assumes NOTHING is present (not git,
# make, or go). The linter is never installed on the host: golangci-lint # make, or go). The linter is never installed on the host: golangci-lint
# runs only inside a container, Dockerfile.lint or the Dockerfile lint # runs only inside a container, Dockerfile.lint or the Dockerfile lint
# stage (see script/lint). CGO image libraries (pkg-config, vips, # stage (see script/lint). A C compiler and the CGO image libraries
# libheif) are installed for the govips bindings. # (pkg-config, vips, libheif) are installed for the govips bindings.
# Both Dockerfiles run this script too, so their build dependencies are
# the ones listed here.
set -eu set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)" ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
@@ -53,6 +55,11 @@ missing() {
# CGO dependencies for govips (image processing) # CGO dependencies for govips (image processing)
ensure_cgo_deps() { ensure_cgo_deps() {
# cgo compiles with gcc on Linux; build-base and build-essential
# also bring the C library headers.
if missing gcc; then
pkg_install gcc build-essential gcc build-base
fi
if missing pkg-config; then if missing pkg-config; then
pkg_install pkg-config pkg-config pkg-config pkgconfig pkg_install pkg-config pkg-config pkg-config pkgconfig
fi fi