* Configurable key prefix for object storage snapshots
Snapshot object keys were always derived from the local snapshots path,
so every deployment sharing a bucket wrote under the same `snapshots/`
root. Each cloud config block gains an optional `prefix`, and objects
become `<prefix>/snapshots/...`.
The prefix is applied by wrapping the client in `PrefixStore`, so the
snapshot operations and the names returned by the API are unchanged.
Leading, trailing and repeated slashes are dropped, and an empty prefix
is a no-op.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
* Test that snapshot operations cannot escape the storage prefix
Hostile targets are handed to the cloud manager directly, past
`validate_snapshot_name`: parent references, absolute paths, encoded
slashes, backslashes and empty paths. Writes must stay under the prefix,
and objects planted outside the prefix must be invisible to list,
download, stream and delete.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
* Normalize empty prefix components
Refactor prefix handling to remove empty components.
Co-authored-by: Copilot Autofix powered by AI <175728472+Copilot@users.noreply.github.com>
---------
Co-authored-by: Claude Fable 5.1 <noreply@anthropic.com>
Co-authored-by: Tim Visée <tim+github@visee.me>
Co-authored-by: Copilot Autofix powered by AI <175728472+Copilot@users.noreply.github.com>
Snapshot storage was limited to S3 although the object_store dependency
already ships the GCS and Azure backends. `snapshots_storage` now accepts
`gcs` (alias `gcp`) and `azure`, configured through `gcs_config` and
`azure_config` blocks next to the existing `s3_config`. The legacy S3
shape is unchanged.
Client construction is split into one builder per backend, all sharing
the Qdrant user agent and the plain-HTTP rule for `http://` endpoints.
Startup warns when a config block for an unselected backend is present.
The e2e snapshot recovery test is parameterized over the cloud backends.
The GCS case is skipped because fake-gcs-server does not implement the
XML multipart upload API that object_store uses for GCS uploads.
Co-authored-by: Claude Fable 5.1 <noreply@anthropic.com>
* tests: use local cache when building image for e2e tests
* tests: make e2e local-cache image build safe under pytest-xdist
- Serialize builder creation and the build with a `filelock` lock (the
approach recommended by pytest-xdist for session fixtures), since
every xdist worker runs the session fixture; workers that wait on the
lock reuse the image built by the first one instead of rebuilding.
- Keep the buildx builder between sessions instead of removing it in a
finalizer, which also avoided one worker deleting a shared builder.
- Fix README: CI pre-builds the image in the workflow (there is no
`build-e2e-image` artifact); note the cache dir is never pruned.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* test: cover TurboQuant, turbo4 datatype and keyword prefix in compat data
Extend the storage compatibility fixture with vector and payload index
features that landed since the generator was last updated:
* TurboQuant quantization, one collection per persisted blob layout
(bits1_5 and the default bits4)
* the turbo4 storage datatype, on both dense and multivector storage
* the keyword index `prefix` option, plus a matching prefix scroll in the
query battery
Sparse vector configs reject the turbo4 datatype, so create_collection omits
the sparse datatype for that collection rather than forwarding it. This is a
no-op for every other collection.
Archives are generated once per release and keep the collection set of their
own generation, so expected collections are now resolved per version and the
new ones are only required from v1.19.0 onward. The prefix scroll stays
ungated: archives without the prefix index answer it by scanning.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* test: fail instead of skip when a compatibility archive is missing
A 404 from the compatibility bucket means the archive was never published,
which no amount of retrying fixes. Skipping it reported the version as
covered while nothing ran, so a pull request adding a version could stay
green with its new coverage never executing.
Fail on 404 and keep skipping connection resets and timeouts, so a bucket
outage still does not turn unrelated pull requests red.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
---------
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
* feat: global quota API
Memory and disk are node-wide resources, so configuring their thresholds
per collection through strict mode makes little sense. Move them behind a
single cluster-wide `QuotaManager`.
The quota config is seeded from `storage.quotas` in the settings (and so
from env vars), overridden by `quota.json` in the storage directory, and
updated cluster-wide through a new `SetQuotaConfig` consensus operation
which rewrites that file on every peer. Raft snapshots carry it too, so a
peer that joins by snapshot picks it up.
Quotas are enforced wherever the strict mode memory and disk checks used
to run, but no longer gated behind `strict_mode.enabled`: a value set in
an enabled strict mode config still wins per resource, the quota is the
default. Rejections name both the condition that tripped and the config
that governs it.
`GET /quotas` reports the config plus current utilization to global read
users; `PUT /quotas` replaces it for global manage users.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* fix: cover the quota endpoints in the API consistency checks
`test_all_rest_endpoints_are_covered` and the OpenAPI endpoint count both
break on any new REST endpoint. Add `GET`/`PUT /quotas` to `ACTION_ACCESS`
with their JWT access tests, and bump the expected API count. The quota
endpoints stay out of `REST_ENDPOINT_WHITELIST`: that list is for
data-plane endpoints reported per-endpoint in metrics.
Also add a Raft snapshot CBOR compatibility test — snapshots are exchanged
between peers of different versions during a rolling upgrade, so
`quota_config` must be absent-tolerant in both directions.
Review feedback: persist through `SaveOnDisk`, which already implements the
write-before-swap protocol this was doing by hand; validate the config at
both persistence boundaries, since a hand-edited quota file or a config
arriving through consensus does not pass the REST handler's validation, and
a `0%` limit would reject every update forever.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* test: assert seeding a quota from invalid settings persists nothing
Follow-up to review feedback claiming `SaveOnDisk::load_or_init` writes the
init value before it is validated. It does not — only `SaveOnDisk::new`
persists — but the property matters: were seeding to persist first, invalid
settings would leave a `quota.json` that fails validation on every
subsequent start, and the node could only be recovered by deleting it by
hand. Pin it down with a test.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* refactor: make QuotaManager the single reader of memory and disk
The quota checks measured memory and disk themselves, while the optimizer
and the WAL disk watcher each called `fs4::available_space` behind their
own ad-hoc caches. Fold all of it into QuotaManager: it owns the readings,
the freshness policy, and the limits they are compared against.
Moves the module to `lib/shard`, since the optimizer sits below `storage`
and has to reach it; `storage::quota` re-exports it, so consensus, the
`/quotas` API and StorageConfig are unchanged. The manager is installed as
a process singleton by TableOfContent, ahead of loading any collection.
- Callers hand in QuotaLimits overrides instead of a StrictModeConfig, and
an override can now only tighten. A collection-level admin could raise
`max_disk_usage_percent` past a cluster-wide limit that needed global
manage rights to set; ties resolve to the quota so the rejection names
the knob that actually has to change.
- Measurements are cached for 5s, but a reading at or above its limit is
never reused: a rejected client retries, and freeing the resource has to
take effect on the next request rather than a TTL later.
- `fits_on_disk` sizes an optimization against physical free space only,
never the configured limits. Optimizations are what free a full disk, so
the quota must not be what stops one.
- `percent_of` widens to u128 instead of saturating the multiply, which
under-reported utilization (failing open) above ~184 PB.
- StorageConfig::quotas is optional; absent means no quota is enforced.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* feat: don't recover dead replicas onto a node at a resource limit
Recovering a dead replica pulls a whole copy of its shard onto this node.
If it is already at its memory or disk quota that transfer cannot finish,
and starting it only pushes the node further past the limit. Skip it and
reconsider on a later sync, once the resource frees up.
Adds QuotaManager::check_capacity for work that lands bytes here without
being an update. Unlike fits_on_disk the configured limits do apply:
taking on a replica is not what frees a full node, so there is no deadlock
to avoid by letting it through.
The check is hoisted out of the per-shard loop because a node over its
limit re-measures on every call, so checking per dead shard would cost a
statvfs each. It is free when no quota is configured.
Also trims the comments across the quota module, which had grown well past
what the code needs.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* test: drop trivial and duplicated quota tests
Six tests removed, ~140 lines, with no loss of coverage:
- a_rejection_names_the_knob_that_has_to_change asserted that a format!
contains its own literals; the message is covered end-to-end by the
override test and by test_global_quota.py.
- a_node_over_its_quota_has_no_capacity_to_take_on_a_replica was 30 lines
for check_capacity, a one-line delegation to check_update the test above
it already calls.
- a_rejecting_measurement_is_never_served_from_the_cache duplicated the
meter test, which proves the same rule with an injected reader instead
of inferring it from the real filesystem.
- free_space_is_reported_without_enforcing_anything covered a one-line
accessor, and its point is what the fits_on_disk test is for.
- The two resolve tests and the three meter tests each collapse into one.
DiskFit::Unknown keeps its coverage as two lines inside the fits_on_disk
test rather than its own fixture. The snapshot compat pair becomes one
test: the second only asserted cluster_metadata.is_empty(), which says
nothing about quotas — the real check was the deserialize, now an expect
that states it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* fix: re-measure free space as the disk fills, and drop a Windows-only assert
Two CI failures, both from this branch.
e2e test_low_disk: the DiskUsageWatcher I replaced escalated to checking
on every call once free space fell below 512 MB. Folding it into the quota
manager lost that — available_bytes passed no limit, so a reading was
reused for the full 5s however little space was left. On a disk filling as
fast as that test fills it, 5s blind is enough to actually run out and the
WAL write dies instead of returning "No space left on device".
available_bytes now takes a watch_below level and never reuses a reading
under it, which is what the old ladder was expressing. The watcher passes
max(min_free, 512 MB), so the escalation point is back; above it the 5s
cache still costs fewer syscalls than the old 128-call ladder. fits_on_disk
gets the same rule by passing required_bytes, so a merge that does not fit
re-checks rather than sitting on a stale sample.
Windows: fits_on_disk on a missing path was asserted to be Unknown, but
GetDiskFreeSpaceEx resolves up to the containing drive and succeeds — as
common::disk_usage's own test documents. Dropped; the branch is a two-line
else and is not portably reachable.
Also renames an_optimization_is_sized_against_the_disk_not_the_quota, which
needed explaining to be understood.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* feat: report the quota config in telemetry
Reads it from the quota manager rather than the settings, so it is the
config the node is actually enforcing: a peer that missed a consensus
update reports what it is applying, not what the cluster agreed on.
Gated on global access, the same access `GET /quotas` requires, and left
out of `PeerTelemetry` — a quota is per-node state, so each peer reports
its own.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* fix: regenerate OpenAPI, and cover the quota in the telemetry key sets
Two CI failures from the previous commit.
Referencing QuotaConfig from TelemetryData moves its definition earlier
in `components/schemas`, because TelemetryData is generated ahead of
QuotaStatus. Regenerated rather than hand-patched, so the schema is a
pure move.
test_telemetry_detail asserts the exact set of top-level telemetry keys.
The quota is reported at every level, including 0 — it is three scalars,
it is the default the endpoint serves, and it is what explains an update
being rejected — so both key sets gain it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* feat: remove `max_disk_usage_percent` from strict mode
Disk is a node-wide resource, so a per-collection percentage of it never
meant anything a caller could act on: the limit describes how full the
*node* is, and which collection the write happens to target has nothing
to do with it. The global quota is where it belongs.
It shipped in 1.18.2 without documentation, so this drops it outright
rather than deprecating. Removal is soft in every direction: StrictModeConfig
has no `deny_unknown_fields`, so a client still sending it gets it ignored
rather than a 400, and the same struct deserializes the persisted collection
config, so collections created on 1.18.2+ keep loading. Proto field 22 is
reserved so the number is never reused.
The e2e test becomes a quota test — the fixture and the timing are the
interesting parts and they carry over unchanged; only how the threshold is
configured differs.
`max_resident_memory_percent` was documented and stays for now.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* refactor: enforce the strict mode memory limit outside the quota
`max_resident_memory_percent` was folded into the quota as an override,
which meant the quota check had to know about strict mode, and retiring
the setting would mean unpicking `EffectiveLimit` and `LimitSource` from
the resolution logic.
It is now a check of its own in `verification/mod.rs`, next to the strict
mode checks it belongs with, borrowing only the measurement from the quota
manager — which stays the node's single reader of process memory, so both
checks still share one reading. Deleting the setting later is deleting one
function and its one caller.
`QuotaManager::check_update` takes no arguments and consults the quota
alone. A collection can still only tighten the limit for itself, because
its own check runs in addition rather than in place of the quota's, and
each rejection now names the config that has to change without having to
carry a `LimitSource` to say so.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* refactor: enforce the quota on the update path, not in strict mode
The quota check sat inside `check_strict_mode_toc_batch` only because that
was the one place holding the collection's strict mode config. It doesn't
need one any more, and the placement had a real cost: coverage depended on
each handler remembering to ask for a strict mode check, and four of the
internal update RPCs do — `sync_internal`, which moves the most bytes onto
a node, does not.
It now runs in `Collection::update_from_client` and `update_from_peer`,
which every update passes through. `update_from_client` checks ahead of the
shard split, so an operation is accepted or refused whole rather than
landing on some shards and being refused by others.
Classification moves with it, from ~10 `consumes_memory` impls on request
DTOs to one exhaustive `CollectionUpdateOperations::consumes_quota`. The
internal enum has variants — raw upserts, conditional upserts, the syncs —
that have no client-facing request type, so per-DTO impls structurally
could not classify them.
Shard-transfer syncs stay excluded, as they are today: a transfer is sized
up once before it starts, and refusing its batches partway abandons work
that is nearly done only for it to restart from the beginning.
Index and named-vector creation reach shards through consensus, past this
check — a peer must not refuse what the cluster agreed to — so they keep
their pre-consensus check, now against the quota manager directly.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* feat: deprecate `max_resident_memory_percent` in strict mode
Same reason the disk threshold went: memory is node-wide, so a
per-collection percentage of it caps how full the *node* is, which has
nothing to do with which collection is being written to. The node-wide
quota caps it once for everything.
Unlike the disk threshold this one shipped documented, in 1.18.0, so it
keeps working — as a limit a collection can tighten for itself, never lift
— and gets the usual markers: `#[deprecated]` on both Rust structs,
`[deprecated = true]` on proto field 21, and `deprecated: true` in the
OpenAPI schema, which schemars derives from the attribute.
The note names 1.21 as the removal. Recording a version matters here: the
audit in docs/plans/overdue-deprecations.md found that this repo has never
written a removal deadline down, and members of the 1.15.0 deprecation
batch are still in tree.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* fix: reconcile the quota readers with #9891#9891 landed effective (cgroup) figures in telemetry while this branch was
making QuotaManager the single reader of memory and disk. Two collisions,
neither of which git sees.
`segment::utils::mem::total_memory_bytes` is now a shared accessor with a
5s TTL, so a cgroup resize is picked up. The quota module had its own
`OnceLock` copy that froze the value at startup — exactly what #9891 set
out to fix — so it delegates to the shared one instead.
Telemetry's new `disk_size` called `common::disk_usage::disk_usage`
directly. That reader lost its TTL cache on this branch when the caching
moved into the quota manager's meter, so it would have taken an uncached
`statvfs` on every telemetry request, and it put a second disk reader back
in the tree. It goes through `QuotaManager::disk_capacity_bytes` now,
sharing the reading the quota check already takes. Verified it still
reports the storage filesystem, matching `df`.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* refactor: split the quota manager by what each half does
`manager.rs` had grown to 450 lines holding three separate jobs: owning
the config and its file, taking the readings, and comparing one against
the other.
- `manager/store.rs` — the `Store` enum, `QUOTA_CONFIG_FILE`, and config
validation, which is now the store's own business rather than something
every caller has to remember to do first.
- `manager/measure.rs` — every reading, and `DiskFit`. The "nothing else
calls `statvfs` or reads process RSS" claim is now checkable by looking
at one file.
- `manager/enforce.rs` — `check_update` / `check_capacity` and the
threshold comparison.
- `manager/mod.rs` — the struct, its construction, and the config
accessors: what a reader needs to see first.
Tests move with their subject. No behaviour change: `set_config` used to
validate before delegating to the store, and now the store validates on
write, which is the same order of operations from the outside.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* fix: count copy-on-write deletes toward the quota
Dropping a vector or a payload key does not free anything on its own:
copy-on-write rewrites the point to produce the version without that
field, so storage grows first and is only reclaimed once the optimizer
gets to it. Gating those as if they were reclaiming space let a full node
keep taking writes that make it fuller.
Deleting whole points stays exempt. That is the one operation that has to
work on a node at its limit, or there is no way back under it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* docs: say that the quota's reported usage is per node
`GET /quotas` returns one cluster-wide config and one set of utilization
figures, which reads as though both describe the cluster. They do not:
memory and disk are node-local, so `usage` is whatever the peer that
served the request is seeing, and a peer under its limit says nothing
about the others.
Also corrects `resident_memory_percent`, which claimed to be a share of
total system memory. It is a share of the memory available to the
process, which under a cgroup is the limit rather than the host's RAM.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* feat: treat a node over its quota as a failed replica, not a bad request
A quota rejection described the request as invalid (400) and was classified
non-transient, which is how the replica set recognises errors that every
replica would produce alike. A quota is the opposite: the input is fine and
the answer depends on which machine you ask. On the default `wait=false`
path that combination silently dropped the write — `update.rs` only
deactivates transient failures when nothing completed — leaving the replica
Active and permanently missing data its co-replicas had.
It is now `InsufficientStorage`, transient, HTTP 507 / gRPC
`ResourceExhausted`. So a node that is out of room is handled like one that
is offline:
- last active replica, or every replica over quota: nothing could take the
write, and the client is told the cluster is out of room.
- more than one replica: the full node is deactivated through the same path
a dead peer takes, and the update stands if enough replicas accepted it.
`check_capacity` already keeps recovery off that node until it has room.
The check also moves off `update_from_client`, which applied the
coordinator's own limit to the whole operation even when it held no replica
of the shards being written. Each replica set now gates its own local write
and records the refusal as a failure of this peer, so a node only ever
answers for itself.
`ResourceExhausted` is shared with rate limiting, and the reverse conversion
mapped it straight to `RateLimitExceeded` — a forwarded rejection came back
as 429. Statuses now carry a marker so the two stay distinguishable across
the wire.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* feat: report quota pressure per node, and across the cluster
A quota is node-local, so finding out which node has hit one meant asking
each of them in turn — and nothing at all showed up in monitoring.
`/metrics` gains a `quota_exceeded` gauge for the local node. It is emitted
only while the quota is enabled: with it off the value would be a constant
0 that says nothing about the node, and an alert built on it would go quiet
rather than fire if someone disabled the quota. Telemetry's `quota` field
carries the same verdict alongside the config, since that is where the
metric is derived from.
`GET /quotas` now answers for the whole cluster. A new `GetQuotaUsage` RPC
on the internal `QdrantInternal` service returns what one peer is using,
and the handler fans it out to every known peer in parallel. Peers that do
not answer are left out rather than failing the request — the nodes that
are out of room are exactly the ones most likely to time out, and a partial
answer still names them. Outside distributed mode the field is absent
rather than a map of one.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* feat: report the quota metric per resource
`quota_exceeded` was one flag for the whole node, which does not say what
to go and fix — disk is freed by deleting or optimizing, memory by
unloading. It now carries a `resource` label:
quota_exceeded{resource="memory"} 0
quota_exceeded{resource="disk"} 1
A resource with no limit gets no series at all, for the same reason the
metric is absent while the quota is disabled: a series that can never reach
1 reads as healthy and would quietly carry an alert that cannot fire.
`QuotaManager::exceeded` returns the per-resource verdict, with `None` for
a resource this node does not cap. Telemetry reports the same breakdown,
since the metric is derived from it. The peer usage RPC keeps a single
flag — it sits next to both percentages, so it only has to answer "is this
peer refusing writes".
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* fix: drop a no-op error conversion the linter caught
`check_global_access` already returns a `StorageError`, so mapping it
through `StorageError::from` converted the type to itself and tripped
`clippy::useless_conversion`.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* feat: hold a tripped quota until usage clears a release margin
A resource resting on its limit crosses it in both directions on the noise
between two readings, and each crossing is expensive: the node refuses a
write, its replica is deactivated, usage dips, recovery starts sending a
whole shard copy back, and the arriving data pushes it over again. The loop
sustains itself, and every lap costs a shard transfer.
A limit now trips at its configured value but only clears once usage has
fallen 5 percentage points below it, so the crossing has to be real. The
margin is floored at 1%, since a limit smaller than the margin would
otherwise be impossible to fall back under and would strand the node.
The verdict is carried on the manager rather than recomputed, which makes
it the thing reporting shows: expect `exceeded` to be set while the
utilization next to it is already back under the limit. Rejections say so
too, rather than claiming a limit that is no longer exceeded:
Disk usage is at 87% of total capacity. It reached the configured limit
of 90% and has to fall below 85% before this node takes writes again.
Changing the config clears the verdicts. New limits are a deliberate act,
and should not be held back by the margin of a limit that no longer exists.
Both resources are now evaluated on every check instead of stopping at the
first failure, so a verdict is never left behind reporting a reading that
has since been superseded.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* feat: make the quota release margin configurable
5 points is a guess about how noisy a deployment's usage is, which is not
something one number can be right about: a node whose disk moves in
gigabyte steps needs a wider margin than one that creeps, and an operator
who wants the old flip-on-every-reading behaviour should be able to ask
for it.
`release_margin_percent` joins the rest of the quota config, so it seeds
from `QDRANT__STORAGE__QUOTAS__RELEASE_MARGIN_PERCENT`, replicates through
consensus, and changes with `PUT /quotas`. Defaults to 5 and is filled in
when a request omits it, so it always answers with the margin actually in
force rather than leaving the caller to assume one. `0` releases as soon as
usage is back under the limit.
`QuotaConfig` grows a hand-written `Default` for it, since deriving one
would have quietly defaulted the margin to 0 and disabled the hysteresis
for anyone constructing a config in code.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* refactor: leave the release margin unset by default, and hold verdicts in atomics
`release_margin_percent` is `null` unless someone sets it, rather than
materialising 5 into every config. A quota written today then does not pin a
number a later release may want to revise, and `{"enabled": false}` still
round-trips as itself. `QuotaConfig::limits` resolves it, next to `enabled`,
so enforcement never sees the unset case.
The verdicts move from a `Mutex<QuotaExceeded>` to one `AtomicBool` per
resource. They are judged independently and nothing reads them as a pair, so
the lock only added contention to the path every update takes; a verdict
that races a concurrent check is re-decided by the next one from a fresh
reading.
That also drops the tri-state. Only "was this over its limit" has to survive
between checks — whether a resource is enforced at all follows from the
config and the reading, so it is derived when reporting rather than stored.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* docs: drop a comment arguing with a design that was never here
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
---------
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
TestSnapshotsInterferenceWithConsensus flakes when the initial
create_collection exceeds the 10s client read timeout. Cluster logs
from a failing run show the primary stalling its consensus loop for
~5s while creating local shards on a loaded runner, which triggered
a leader election that delayed full shard activation to ~10.3s.
Setup operations now get a 30s client timeout. The regression check
for #7489 is unaffected: it relies on the server-side operation
timeout passed to delete_collection, not the client read timeout.
Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
* Strict mode: add `max_disk_usage_percent`
Mirrors `max_resident_memory_percent`: rejects disk-consuming update ops
(upsert, set/overwrite payload, update vectors) when the filesystem hosting
Qdrant storage is filled above the configured percentage. Delete-style ops
remain allowed so callers can free disk.
Disk usage is sampled via `statvfs` and TTL-cached for 5s (same cadence as
the resident-memory reader) so high-RPS request paths don't hammer the
syscall. Reader is keyed by path in `common::disk_usage` and returns `None`
on stat failure — callers (the strict-mode check) treat `None` as "skip",
matching the memory-check behaviour.
Plumbing follows the existing pattern: field on `StrictModeConfig` (+
output/diff/Hash), gRPC proto field `22`, validation 1..=100, REST/proto
conversions, and the hook into `check_strict_mode_toc_batch` alongside the
memory check (both guarded by `any_consumes_memory`).
Co-authored-by: Cursor <cursoragent@cursor.com>
* Fix CI: Windows disk_usage test + e2e WAL config
- `missing_path_returns_none` panicked on Windows because
`GetDiskFreeSpaceEx` succeeds for non-existent paths (it resolves up to
the containing drive). Relax the assertion to "must not panic; if a
value is returned it must be well-formed". The contract we care about
(None on failure) is platform-defined, not something we can portably
force.
- e2e test failed at batch 0 with "WAL buffer size exceeds available disk
space": Qdrant's existing per-shard `DiskUsageWatcher` enforces
`free >= 2 * wal_capacity_mb` and the default WAL didn't fit in the
50 MB tmpfs. Bump tmpfs to 200 MB and shrink `wal_capacity_mb` to 1 MB
(same pattern as `test_low_disk.py`) so our strict-mode gate is the
one that fires, not the WAL pre-check. Raise the gate threshold to
50% to match the larger headroom.
Co-authored-by: Cursor <cursoragent@cursor.com>
---------
Co-authored-by: Cursor <cursoragent@cursor.com>
Pre-pull the fullstorydev/grpcurl Docker image before running the test
and retry the gRPC health check up to 3 times, so transient Docker
networking hiccups on CI runners no longer cause a hard failure.
Co-authored-by: Cursor Agent <agent@cursor.com>
Co-authored-by: Cursor <cursoragent@cursor.com>
The compatibility tests previously only checked that collections loaded
with "ok" status. This adds actual queries against every collection to
catch errors/panics in on-disk code paths during version upgrades.
For each collection, we now run:
- Dense vector search (image, dim 256)
- Sparse vector search (text)
- Multivector search (multi-image, dim 128)
- Scroll with filters for all payload index types: keyword, float,
integer, boolean, geo bounding box, full-text, uuid, datetime
Made-with: Cursor
Co-authored-by: Cursor Agent <agent@cursor.com>
* [AI] strict mode parameter for limiting update requests if ram usage is over threshold
* opanAPI update
* [AI] end-to-end test
* fmt
* Fix e2e test: memory rejection check broken by string truncation
UnexpectedResponse.__str__() truncates the raw response body, cutting
off the `max_resident_memory_percent` hint at the end of the error
message. Use `resident memory usage` instead, which appears early
enough to survive the truncation.
Made-with: Cursor
* add grpc validation
* test check_resident_memory
---------
Co-authored-by: Cursor Agent <agent@cursor.com>
Co-authored-by: Arnaud Gourlay <arnaud.gourlay@gmail.com>
* Skip broken tests
* Add rocksdb dropper
This is a temporary tool. It will be removed later in this PR.
* [automated] Drop rocksdb
This commit is made by running tools/rocksdb/drop.sh
* Touch-up after ast-grep
The previous automated commit removed items, but not their comments.
Also, some blocks are left with only one item.
Also, ast-grep can't handle macros like `vec![]`.
This commit completes the job.
* Remove RocksDB dropper
* Remove mentions of rocksdb feature in CI
* Fix clippy warnings
These `FIXME` comments added previously in this PR by ast-grep by
"peeling" cfg_attr like this:
-#[cfg_attr(not(feature = "rocksdb"), expect(...))]
+#[expect(...)] // FIXME(rocksdb): ...
This commit removes these allow/expect attributes and fixes clippy
lints.
* Remove leftover rocksdb-related code
Removed:
- Cargo.toml: rocksdb cargo feature flag and dependencies.
- code: rocksdb-related items that was not under feature flag.
- flags.rs: rocksdb-related qdrant feature flags.
Disabled:
- Some benchmarks because these do not compile now.
* Print warning if rocksdb leftovers found in snapshots
* Remove Clone from tokenizer
* Regenerate openapi.json
* Storage compat. tests all supported versions
* v1.15.0 creates problems
* less parallelism to not blow the disk
* Add xdist group (#7568)
* Add session fixture and xdist group
* Increase number of workers back to 4
* Revert caching
* Remove folders with docker_client
* Fix --dist=loadgroup
* Disable v1.15.0
---------
Co-authored-by: tellet-q <166374656+tellet-q@users.noreply.github.com>
* Add unit test
* Flush text index deletes before reopening them
* Fix unused warning if compiling without RocksDB
* Add e2e test
---------
Co-authored-by: timvisee <tim@visee.me>