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issue: #47420 ## What this PR does Project-wide migration of raw `fmt.Errorf` / `errors.New` in function bodies onto the `merr` framework, plus the Sys-vs-Input error classification and the machinery it drives (retriability, fine-grained metrics, segcore unification), plus the convention docs and a linter that keeps it from regressing. Scope: storage, proxy, coordinators (root/data/query), query node, data node, `pkg/util` & `internal/util`, expression parser, message queue, streaming, and misc packages. Bare raw-error usages went from ~3000 to a ~340 allowlist (package-level sentinels / build-tag / test sites). --- ## How to review this PR It is large but the vast majority is mechanical. Changes fall into three tiers; spend review budget on Part 2 and Part 3. ### Part 1 — Mechanical standardization (low risk, verify by rule) Each converted call follows one of a small fixed set of rules. To review, check that each site obeys the matching rule rather than reading every line: | Pattern | Rule | |---|---| | `fmt.Errorf("...")` originating a new error | → `merr.WrapErrXxxMsg("...")` with a code matching the failure's meaning | | Adding context to an existing typed error | → `merr.Wrap(err, "...")` / `merr.Wrapf(...)` — **preserves** the inner code (never `WrapErr*Err`, which overwrites it) | | Errors inside the streaming subsystem | → `status.New*` factories (StreamingError), **not** merr — this is the component-internal dialect (see `docs/dev/error_handling_guide.md`) | | Low-level / control-flow signal caught by `errors.Is` | → kept as a package-level `errors.New` sentinel (lowercase, same-package) | Conventions are documented in `docs/dev/error_handling_guide.md` (how-to) and `docs/dev/error_sentinel_convention.md` (rules + audit). A `gocritic`/`ruleguard` rule (`rawmerrerror`, in `rules.go`) enforces "no raw `return errors.New/fmt.Errorf`" under `make verifiers`. ### Part 2 — Behavior changes (review these closely) These are the sites where the wire contract or runtime behavior changes, not just the source text. Listed by category; representative locations given, full set in the diff. **A. gRPC wire-code shifts: `UnexpectedError(1)/Code 65535` → typed code.** Where a handler previously returned a raw error (collapsed to `Code=65535` on the wire), it now returns a typed merr, so the client sees a real code. The most common shift is to `IllegalArgument(5)/Code 1100` (ParameterInvalid). Touch points include datanode task handlers (CreateTask/Query/Drop), proxy Upsert, querynode GetMetrics, datacoord CreateIndex, httpserver query-response builder, and typeutil schema validation. One code refinement: an index-param validation moved `1100` → `1101` (ParameterMissing). **Client/SDK assertions and any code that switched on `Code=65535` for these paths must be re-checked** (the go_client e2e assertions were already aligned in this PR). **B. Prometheus `status` label contract change (externally visible).** The proxy metric's coarse `fail` / `rejected` values are split into `fail_input` / `fail_system` and `rejected_user` / `rejected_system` (in `requestutil.ParseMetricLabel`; auth/privilege rejections count as `rejected_user`), so dashboards can attribute a failure to caller vs operator. **Dashboards/alerts querying `status="fail"` must migrate to `status=~"fail_.*"`, and `status="rejected"` to `status=~"rejected_.*"`.** The in-repo Grafana dashboard is already migrated; external dashboards built on the old values silently go empty after upgrade. This is the one change that requires an ops-side migration. **C. Retriability semantics.** - C1: `merr.Status(err)` now forces `Retriable=false` when the error is an `InputError` — a malformed request can never succeed on blind retry, so clients never get the self-contradictory "your input is wrong but you may retry". - C2: `retry.Do` short-circuits an `InputError` (non-retriable) — **but only when the caller did not pass a `RetryErr` predicate**. The check is an `if c.isRetryErr != nil { ... } else if InputError { ... }` *mutually exclusive* branch (`pkg/util/retry/retry.go`): an explicit `RetryErr` takes precedence and bypasses the InputError abort. `retry.Handle` deliberately does **not** apply the InputError abort (its callers signal abort via `shouldRetry=false`). Four flusher startup callsites that must retry through transient "not ready" errors were given explicit `RetryErr` escape hatches. **D. segcore (C++→Go) error classification.** A single shared Go-side table (`pkg/util/merr/segcore.go`) maps each segcore code to a merr sentinel + InputError/signal category, replacing scattered hand-written `if errorCode == ...` switches in the cgo wrappers. **Wire `Code` values change for every segcore pass-through error, not just the remapped ones.** Named sentinels remap (C++ `2003` → merr `2001`, `2033` → `2002`, Folly/Knowhere codes likewise); **all remaining pass-through codes (`2004`–`2043`, previously surfaced to clients as raw C++ enum values) now serialize as `2000`** (`ErrSegcore`), with the original C++ code preserved in the `Reason` text (`segcoreCode=...`); unknown/future codes collapse to `2000` as well (pinned by the `wire_code_projection` test). Transient segcore classes (object storage / file IO / OOM / mmap / FieldNotLoaded — 11 codes) now report `Retriable=true`. **Any client switching on raw segcore codes in the `2004`–`2043` range must be re-checked**; the in-Reason code remains available for diagnostics. Signal codes (PretendFinished / FollyCancel) are recognized centrally. `errors.Is`-based control flow on these (e.g. scheduler skip/retry) is preserved. **E. InputError classification (25 sentinels + dynamic marks).** 25 sentinels in `errors.go` carry `WithErrorType(InputError)` (the Collection / ResourceGroup / Database families, `ErrIndexDuplicate`, `ErrParameterInvalid`, `ErrPrivilegeNotAuthenticated`, `ErrImportFailed`, `ErrQueryPlan`, ...), plus dynamic marks for the 8 segcore input codes (ExprInvalid, DimNotMatch, MetricTypeInvalid, FieldIDInvalid, ...) and `WrapErrAsInputError`. The widest blast radius is `ErrParameterInvalid` (1100): ~2335 `WrapErrParameterInvalid*` callsites now classify as input / non-retriable. Because of C1/C2 this changes retriability for any path that returns these. **The audit to confirm no transient path was mis-marked is the single most important review item** (see Part 3). One reverse correction: storage field-stats parsing moved from `ErrParameterInvalid` (input) to `ErrDataIntegrity` — a corrupted stored stat is data corruption, not user input. ### Part 3 — Known risks & traps (called out proactively) 1. **`merr.Wrap` vs `WrapErr*Err` (code-masking).** `WrapErr*Err` builds a `wrappedMilvusError{sentinel: ErrServiceInternal}` whose `code()` returns the *outer* sentinel — it overwrites the inner typed code and hides the `errors.Is` chain. This is intentional (use it to *deliberately* downgrade), but it was a recurring conversion defect; the rule "add context with `merr.Wrap`, downgrade with `WrapErr*Err`" is enforced by convention and reviewed across the diff. 2. **InputError × `retry.Do` blast radius.** Marking a sentinel `InputError` makes any `retry.Do(...)` without a `RetryErr` predicate stop retrying it. Reviewers should sanity-check that no transient use of the 19 newly-marked sentinels (especially `ErrParameterInvalid`) sits inside a retry loop that needed to keep spinning. The known flusher cases were handled (see C2). 3. **The ~340 raw-error allowlist.** What remains as bare `errors.New` is, by design: package-level sentinels (caught by `errors.Is`), `//go:build test` sites, and out-of-band trees (`cmd/`, `tests/`, codegen, walimpls). The linter only bans the *direct-return* form; assignment-then-return escapes and the full no-exceptions ban are deferred to an AST-based linter (Tier 2, documented). 4. **segcore C++ second step deferred.** This PR unifies classification on the Go side; splitting the dual-semantic C++ codes at the source is a follow-up. --- ## Validation - `make verifiers`: Go side clean (gofmt + static-check across modules, including the new `rawmerrerror` rule with a 0-hit baseline repo-wide). - `make test-go`: passing; the one real regression introduced (a datanode `invalid_task_type` assertion shifting `1` → `5` from a ParameterInvalid conversion) was fixed in-tree. - go_client e2e CreateIndex assertions aligned to the new merr messages. --------- Signed-off-by: zhenshan.cao <zhenshan.cao@zilliz.com> Co-authored-by: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
364 lines
15 KiB
Go
364 lines
15 KiB
Go
// Licensed to the LF AI & Data foundation under one
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// or more contributor license agreements. See the NOTICE file
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// distributed with this work for additional information
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// regarding copyright ownership. The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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// "License"); you may not use this file except in compliance
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// with the License. You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package grpcdatanodeclient
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import (
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"context"
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"fmt"
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"go.uber.org/zap"
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"google.golang.org/grpc"
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"github.com/milvus-io/milvus-proto/go-api/v3/commonpb"
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"github.com/milvus-io/milvus-proto/go-api/v3/milvuspb"
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"github.com/milvus-io/milvus/internal/distributed/utils"
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"github.com/milvus-io/milvus/internal/types"
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"github.com/milvus-io/milvus/internal/util/grpcclient"
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"github.com/milvus-io/milvus/internal/util/sessionutil"
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"github.com/milvus-io/milvus/pkg/v3/log"
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"github.com/milvus-io/milvus/pkg/v3/proto/datapb"
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"github.com/milvus-io/milvus/pkg/v3/proto/internalpb"
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"github.com/milvus-io/milvus/pkg/v3/proto/workerpb"
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"github.com/milvus-io/milvus/pkg/v3/util/commonpbutil"
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"github.com/milvus-io/milvus/pkg/v3/util/funcutil"
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"github.com/milvus-io/milvus/pkg/v3/util/merr"
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"github.com/milvus-io/milvus/pkg/v3/util/paramtable"
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"github.com/milvus-io/milvus/pkg/v3/util/typeutil"
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)
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var Params *paramtable.ComponentParam = paramtable.Get()
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type DataNodeClient struct {
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datapb.DataNodeClient
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workerpb.IndexNodeClient
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}
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// Client is the grpc client for DataNode
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type Client struct {
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grpcClient grpcclient.GrpcClient[DataNodeClient]
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addr string
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serverID int64
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}
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// NewClient creates a client for DataNode.
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func NewClient(ctx context.Context, addr string, serverID int64, encryption bool) (types.DataNodeClient, error) {
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if addr == "" {
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return nil, merr.WrapErrParameterInvalidMsg("address is empty")
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}
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sess := sessionutil.NewSession(context.Background())
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if sess == nil {
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err := merr.WrapErrServiceUnavailable("new session error, maybe can not connect to etcd")
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log.Ctx(ctx).Debug("DataNodeClient New Etcd Session failed", zap.Error(err))
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return nil, err
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}
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config := &Params.DataNodeGrpcClientCfg
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client := &Client{
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addr: addr,
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grpcClient: grpcclient.NewClientBase[DataNodeClient](config, "milvus.proto.data.DataNode"),
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serverID: serverID,
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}
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// node shall specify node id
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client.grpcClient.SetRole(fmt.Sprintf("%s-%d", typeutil.DataNodeRole, serverID))
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client.grpcClient.SetGetAddrFunc(client.getAddr)
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client.grpcClient.SetNewGrpcClientFunc(client.newGrpcClient)
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client.grpcClient.SetNodeID(serverID)
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client.grpcClient.SetSession(sess)
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if encryption {
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client.grpcClient.EnableEncryption()
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}
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if Params.InternalTLSCfg.InternalTLSEnabled.GetAsBool() {
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client.grpcClient.EnableEncryption()
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cp, err := utils.CreateCertPoolforClient(Params.InternalTLSCfg.InternalTLSCaPemPath.GetValue(), "DataNode")
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if err != nil {
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log.Ctx(ctx).Error("Failed to create cert pool for DataNode client")
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return nil, err
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}
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client.grpcClient.SetInternalTLSCertPool(cp)
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client.grpcClient.SetInternalTLSServerName(Params.InternalTLSCfg.InternalTLSSNI.GetValue())
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}
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return client, nil
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}
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// Close stops the client.
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// Currently, it closes the grpc connection with the DataNode.
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func (c *Client) Close() error {
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return c.grpcClient.Close()
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}
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func (c *Client) newGrpcClient(cc *grpc.ClientConn) DataNodeClient {
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return DataNodeClient{
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DataNodeClient: datapb.NewDataNodeClient(cc),
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IndexNodeClient: workerpb.NewIndexNodeClient(cc),
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}
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}
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func (c *Client) getAddr() (string, error) {
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return c.addr, nil
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}
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func wrapGrpcCall[T any](ctx context.Context, c *Client, call func(grpcClient DataNodeClient) (*T, error)) (*T, error) {
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ret, err := c.grpcClient.ReCall(ctx, func(client DataNodeClient) (any, error) {
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if !funcutil.CheckCtxValid(ctx) {
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return nil, ctx.Err()
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}
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return call(client)
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})
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if err != nil || ret == nil {
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return nil, err
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}
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return ret.(*T), err
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}
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// GetComponentStates returns ComponentStates
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func (c *Client) GetComponentStates(ctx context.Context, req *milvuspb.GetComponentStatesRequest, opts ...grpc.CallOption) (*milvuspb.ComponentStates, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*milvuspb.ComponentStates, error) {
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return client.GetComponentStates(ctx, &milvuspb.GetComponentStatesRequest{})
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})
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}
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// GetStatisticsChannel return the statistics channel in string
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// Statistics channel contains statistics infos of query nodes, such as segment infos, memory infos
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func (c *Client) GetStatisticsChannel(ctx context.Context, req *internalpb.GetStatisticsChannelRequest, opts ...grpc.CallOption) (*milvuspb.StringResponse, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*milvuspb.StringResponse, error) {
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return client.GetStatisticsChannel(ctx, &internalpb.GetStatisticsChannelRequest{})
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})
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}
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// Deprecated
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// WatchDmChannels create consumers on dmChannels to reveive Incremental data
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func (c *Client) WatchDmChannels(ctx context.Context, req *datapb.WatchDmChannelsRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
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req = typeutil.Clone(req)
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commonpbutil.UpdateMsgBase(
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req.GetBase(),
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commonpbutil.FillMsgBaseFromClient(c.serverID))
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
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return client.WatchDmChannels(ctx, req)
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})
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}
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// FlushSegments notifies DataNode to flush the segments req provids. The flush tasks are async to this
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//
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// rpc, DataNode will flush the segments in the background.
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//
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// Return UnexpectedError code in status:
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//
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// If DataNode isn't in HEALTHY: states not HEALTHY or dynamic checks not HEALTHY
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// If DataNode doesn't find the correspounding segmentID in its memeory replica
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//
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// Return Success code in status and trigers background flush:
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//
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// Log an info log if a segment is under flushing
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func (c *Client) FlushSegments(ctx context.Context, req *datapb.FlushSegmentsRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
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req = typeutil.Clone(req)
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commonpbutil.UpdateMsgBase(
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req.GetBase(),
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commonpbutil.FillMsgBaseFromClient(c.serverID))
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
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return client.FlushSegments(ctx, req)
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})
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}
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// ShowConfigurations gets specified configurations para of DataNode
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func (c *Client) ShowConfigurations(ctx context.Context, req *internalpb.ShowConfigurationsRequest, opts ...grpc.CallOption) (*internalpb.ShowConfigurationsResponse, error) {
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req = typeutil.Clone(req)
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commonpbutil.UpdateMsgBase(
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req.GetBase(),
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commonpbutil.FillMsgBaseFromClient(c.serverID))
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*internalpb.ShowConfigurationsResponse, error) {
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return client.ShowConfigurations(ctx, req)
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})
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}
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// GetMetrics returns metrics
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func (c *Client) GetMetrics(ctx context.Context, req *milvuspb.GetMetricsRequest, opts ...grpc.CallOption) (*milvuspb.GetMetricsResponse, error) {
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req = typeutil.Clone(req)
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commonpbutil.UpdateMsgBase(
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req.GetBase(),
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commonpbutil.FillMsgBaseFromClient(c.serverID))
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*milvuspb.GetMetricsResponse, error) {
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return client.DataNodeClient.GetMetrics(ctx, req)
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})
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}
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// CompactionV2 return compaction by given plan
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func (c *Client) CompactionV2(ctx context.Context, req *datapb.CompactionPlan, opts ...grpc.CallOption) (*commonpb.Status, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
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return client.CompactionV2(ctx, req)
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})
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}
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func (c *Client) GetCompactionState(ctx context.Context, req *datapb.CompactionStateRequest, opts ...grpc.CallOption) (*datapb.CompactionStateResponse, error) {
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req = typeutil.Clone(req)
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commonpbutil.UpdateMsgBase(
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req.GetBase(),
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commonpbutil.FillMsgBaseFromClient(c.serverID))
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*datapb.CompactionStateResponse, error) {
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return client.GetCompactionState(ctx, req)
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})
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}
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func (c *Client) ResendSegmentStats(ctx context.Context, req *datapb.ResendSegmentStatsRequest, opts ...grpc.CallOption) (*datapb.ResendSegmentStatsResponse, error) {
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req = typeutil.Clone(req)
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commonpbutil.UpdateMsgBase(
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req.GetBase(),
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commonpbutil.FillMsgBaseFromClient(c.serverID))
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*datapb.ResendSegmentStatsResponse, error) {
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return client.ResendSegmentStats(ctx, req)
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})
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}
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// SyncSegments is the DataNode client side code for SyncSegments call.
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func (c *Client) SyncSegments(ctx context.Context, req *datapb.SyncSegmentsRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
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return client.SyncSegments(ctx, req)
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})
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}
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// FlushChannels notifies DataNode to sync all the segments belongs to the target channels.
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func (c *Client) FlushChannels(ctx context.Context, req *datapb.FlushChannelsRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
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return client.FlushChannels(ctx, req)
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})
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}
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func (c *Client) NotifyChannelOperation(ctx context.Context, req *datapb.ChannelOperationsRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
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return client.NotifyChannelOperation(ctx, req)
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})
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}
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func (c *Client) CheckChannelOperationProgress(ctx context.Context, req *datapb.ChannelWatchInfo, opts ...grpc.CallOption) (*datapb.ChannelOperationProgressResponse, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*datapb.ChannelOperationProgressResponse, error) {
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return client.CheckChannelOperationProgress(ctx, req)
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})
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}
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func (c *Client) PreImport(ctx context.Context, req *datapb.PreImportRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
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return client.PreImport(ctx, req)
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})
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}
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func (c *Client) ImportV2(ctx context.Context, req *datapb.ImportRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
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return client.ImportV2(ctx, req)
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})
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}
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func (c *Client) QueryPreImport(ctx context.Context, req *datapb.QueryPreImportRequest, opts ...grpc.CallOption) (*datapb.QueryPreImportResponse, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*datapb.QueryPreImportResponse, error) {
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return client.QueryPreImport(ctx, req)
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})
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}
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func (c *Client) QueryImport(ctx context.Context, req *datapb.QueryImportRequest, opts ...grpc.CallOption) (*datapb.QueryImportResponse, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*datapb.QueryImportResponse, error) {
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return client.QueryImport(ctx, req)
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})
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}
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func (c *Client) DropImport(ctx context.Context, req *datapb.DropImportRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
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return client.DropImport(ctx, req)
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})
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}
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func (c *Client) QuerySlot(ctx context.Context, req *datapb.QuerySlotRequest, opts ...grpc.CallOption) (*datapb.QuerySlotResponse, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*datapb.QuerySlotResponse, error) {
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return client.QuerySlot(ctx, req)
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})
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}
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func (c *Client) DropCompactionPlan(ctx context.Context, req *datapb.DropCompactionPlanRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
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return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
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return client.DropCompactionPlan(ctx, req)
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})
|
|
}
|
|
|
|
// CreateJob sends the build index request to IndexNode.
|
|
func (c *Client) CreateJob(ctx context.Context, req *workerpb.CreateJobRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
|
|
return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
|
|
return client.CreateJob(ctx, req)
|
|
})
|
|
}
|
|
|
|
// QueryJobs query the task info of the index task.
|
|
func (c *Client) QueryJobs(ctx context.Context, req *workerpb.QueryJobsRequest, opts ...grpc.CallOption) (*workerpb.QueryJobsResponse, error) {
|
|
return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*workerpb.QueryJobsResponse, error) {
|
|
return client.QueryJobs(ctx, req)
|
|
})
|
|
}
|
|
|
|
// DropJobs query the task info of the index task.
|
|
func (c *Client) DropJobs(ctx context.Context, req *workerpb.DropJobsRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
|
|
return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
|
|
return client.DropJobs(ctx, req)
|
|
})
|
|
}
|
|
|
|
// GetJobStats query the task info of the index task.
|
|
func (c *Client) GetJobStats(ctx context.Context, req *workerpb.GetJobStatsRequest, opts ...grpc.CallOption) (*workerpb.GetJobStatsResponse, error) {
|
|
return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*workerpb.GetJobStatsResponse, error) {
|
|
return client.GetJobStats(ctx, req)
|
|
})
|
|
}
|
|
|
|
func (c *Client) CreateJobV2(ctx context.Context, req *workerpb.CreateJobV2Request, opts ...grpc.CallOption) (*commonpb.Status, error) {
|
|
return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
|
|
return client.CreateJobV2(ctx, req)
|
|
})
|
|
}
|
|
|
|
func (c *Client) QueryJobsV2(ctx context.Context, req *workerpb.QueryJobsV2Request, opts ...grpc.CallOption) (*workerpb.QueryJobsV2Response, error) {
|
|
return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*workerpb.QueryJobsV2Response, error) {
|
|
return client.QueryJobsV2(ctx, req)
|
|
})
|
|
}
|
|
|
|
func (c *Client) DropJobsV2(ctx context.Context, req *workerpb.DropJobsV2Request, opt ...grpc.CallOption) (*commonpb.Status, error) {
|
|
return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
|
|
return client.DropJobsV2(ctx, req)
|
|
})
|
|
}
|
|
|
|
func (c *Client) CreateTask(ctx context.Context, in *workerpb.CreateTaskRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
|
|
return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
|
|
return client.CreateTask(ctx, in)
|
|
})
|
|
}
|
|
|
|
func (c *Client) QueryTask(ctx context.Context, in *workerpb.QueryTaskRequest, opts ...grpc.CallOption) (*workerpb.QueryTaskResponse, error) {
|
|
return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*workerpb.QueryTaskResponse, error) {
|
|
return client.QueryTask(ctx, in)
|
|
})
|
|
}
|
|
|
|
func (c *Client) DropTask(ctx context.Context, in *workerpb.DropTaskRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
|
|
return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
|
|
return client.DropTask(ctx, in)
|
|
})
|
|
}
|
|
|
|
func (c *Client) SyncFileResource(ctx context.Context, req *internalpb.SyncFileResourceRequest, opts ...grpc.CallOption) (*commonpb.Status, error) {
|
|
return wrapGrpcCall(ctx, c, func(client DataNodeClient) (*commonpb.Status, error) {
|
|
return client.SyncFileResource(ctx, req)
|
|
})
|
|
}
|