Files
Maven/internal/ipc/client.go
T
kami 810076451f update: roll back what the restart actually deploys
On the deployment deploy/README.md documents, source_dir and install_dir are
the same tree and the restart command rebuilds the image from it. The
Dockerfile builds from cmd/ and internal/ and .dockerignore keeps the host
binaries out, so restoring the snapshotted binaries restored bytes nothing
reads. A bad commit therefore cost two health timeouts and two image builds
and ended in ErrRollbackFailed with an instruction to copy files back by hand,
which would not have helped either.

A deployment that rebuilds from source now has to say how the source is put
back. source_rollback "git" records the commit before the update and checks it
back out before the rollback restart. It refuses a dirty tree, because the
recorded commit does not describe one and a forced checkout would delete his
work. A build-from-source config that says nothing is refused by Validate, at
startup, rather than at the one rollback that mattered.

Also in this change, all from the same review:

  - MethodPing, the one method a locked daemon answers. Preflight passed on an
    unlocked daemon and the post-restart Presence read failed on a locked one,
    so a good update read as SHE IS PROBABLY DOWN once the env key is gone.
  - A dial failure is reported apart from a read failure. The documented
    socket is under /var/lib/docker, which a non-root operator cannot
    traverse, and "she is not answering" was the wrong diagnosis.
  - Verify refuses to run as root over a tree owned by someone else. It runs
    make build and make test in place, and root-owned artifacts break his next
    ordinary make.
  - A rollback no longer reverts config_files. That undid every config edit
    since the last apply, phraser.model_path among them.
  - The verify-failure path no longer reports rolled_back for a compile error.
  - waitHealthy caps each attempt at the remaining budget, so a 90s timeout
    cannot run to 99s.
  - tail cuts on a rune boundary. Russian test names showed the seam.
  - The claim that mavend does not import internal/update is replaced with
    what is enforced: mavend constructs no Updater and nothing can call Apply.
  - snapshot_dir inside source_dir is refused. It landed in the build context.

Found in review of #69.
2026-08-01 14:06:00 +04:00

653 lines
22 KiB
Go

package ipc
import (
"context"
"encoding/json"
"errors"
"fmt"
"net"
"sync"
"time"
)
// Client — the module side of the boundary. Wraps a unix-socket connection
// and satisfies CoreAPI, so a module imports ipc, holds a CoreAPI, and is
// agnostic to whether it's been wired in-process (tests / daemon-embedded)
// or over this socket (full topology). The swappability is the seam auth
// will insert into without touching module code.
//
// One Client ⇒ one conn ⇒ one concurrent request at a time. A module that
// wants parallel requests opens one Client per goroutine; the store is the
// bottleneck anyway (single writer), so pipelining buys nothing here and a
// per-Client lock keeps frame interleaving impossible by construction.
type Client struct {
conn net.Conn
path string // kept so a dropped conn can be re-dialed (core restart)
mu sync.Mutex
}
// errWriteLost marks a conn drop while sending the request frame: the request
// never reached the server (or the server never saw a complete frame), so
// retrying is always safe regardless of method — nothing was applied to
// retry twice.
var errWriteLost = errors.New("ipc: connection lost before request sent")
// errReadLost marks a conn drop while waiting for the reply: the request was
// sent and may have already been applied server-side before the connection
// died (core restart mid-request, crash after commit but before reply, etc).
// Retrying here can double-apply a mutation, which ECOSYSTEM-SPEC.md's
// "never retry an unknown outcome" invariant forbids. call() only auto-retries
// this for read-only methods (idempotent by construction); a mutation method
// returns ErrAmbiguousOutcome instead so the caller can decide — the outcome
// genuinely is unknown, not safely retryable and not safely reported as failed.
var errReadLost = errors.New("ipc: connection lost awaiting reply")
// ErrAmbiguousOutcome is returned when a mutation's request may or may not
// have been applied server-side (the connection dropped after the request was
// sent, before the reply arrived). Callers must not blindly retry — the retry
// itself could double-apply. Surface this to the user/operator rather than
// silently treating it as either success or failure.
var ErrAmbiguousOutcome = errors.New("ipc: mutation outcome unknown (connection lost awaiting reply)")
// readOnlyMethods are safe to retry on an ambiguous (post-send) connection
// loss: replaying a read cannot double-apply anything. Every method not
// listed here is treated as a mutation for retry purposes — being
// conservative (refusing to retry) is the safe default for a method added
// here by omission.
var readOnlyMethods = map[Method]bool{
MethodLatestFact: true,
MethodLatestFactBySource: true,
MethodSince: true,
MethodPresence: true,
MethodListReminders: true,
MethodRecentOutcomes: true,
MethodRecentFacts: true,
MethodCalendarEvents: true,
MethodRecentNudges: true,
MethodQueryNotes: true,
MethodRecentNotes: true,
MethodLookupTool: true,
MethodListTools: true,
MethodListProposedRoutines: true,
MethodListTasks: true,
MethodTickTrace: true,
MethodMorningStatus: true,
MethodMCPServers: true,
MethodDayPlan: true,
MethodRecentEvents: true,
MethodPing: true,
}
// Dial connects to a core socket at path and returns a Client. The module
// owns its Client lifecycle; Close on shutdown.
func Dial(path string) (*Client, error) {
c, err := net.Dial("unix", path)
if err != nil {
return nil, fmt.Errorf("ipc: dial %s: %w", path, err)
}
return &Client{conn: c, path: path}, nil
}
func (c *Client) Close() error {
if c.conn == nil {
return nil
}
return c.conn.Close()
}
// DialWait is Dial with patience: it retries with capped backoff until the
// socket is reachable or timeout elapses. Core loads models on boot and may
// come up after its modules (compose depends_on orders container start, not
// socket readiness), so a module that Dial'd once would crash-loop on a cold
// start. Every core-dialing module should use this instead of Dial. Mid-life
// core restarts are handled separately by the Client's own redial-on-drop.
func DialWait(path string, timeout time.Duration) (*Client, error) {
deadline := time.Now().Add(timeout)
delay := 200 * time.Millisecond
for {
c, err := Dial(path)
if err == nil {
return c, nil
}
if time.Now().After(deadline) {
return nil, err
}
time.Sleep(delay)
if delay < 2*time.Second {
delay *= 2
}
}
}
// call — the single request/response engine. Serialized by c.mu so a frame
// and its reply always pair up; no interleaving to disambiguate. A wire
// RpcError is rehydrated into the matching package sentinel (errors.Is works
// the same as the in-process path — the boundary is transparent to callers).
func (c *Client) call(ctx context.Context, m Method, params, result any) error {
c.mu.Lock()
defer c.mu.Unlock()
// Honor ctx cancellation by closing the conn — a half-sent frame would
// desync the stream; tearing down is the clean recovery. A fresh Dial
// is the module's responsibility on the next call (modules are long-lived
// processes; a dropped conn is recoverable, not fatal).
select {
case <-ctx.Done():
c.drop()
return ctx.Err()
default:
}
var raw json.RawMessage
if params != nil {
b, err := json.Marshal(params)
if err != nil {
return fmt.Errorf("ipc: marshal params: %w", err)
}
raw = b
}
var resp Response
err := c.roundtrip(m, raw, &resp)
switch {
case errors.Is(err, errWriteLost):
// The request never left; a duplicate send can't double-apply.
// Redial (roundtrip re-dials on a nil conn) and retry exactly once.
err = c.roundtrip(m, raw, &resp)
case errors.Is(err, errReadLost):
if readOnlyMethods[m] {
// A duplicate read can't double-apply either — safe to replay.
err = c.roundtrip(m, raw, &resp)
} else {
// The mutation may have already committed server-side. Do not
// retry: report the ambiguity instead of guessing.
return fmt.Errorf("%w: %v", ErrAmbiguousOutcome, err)
}
}
if err != nil {
return err
}
if resp.Error != nil {
return hydrate(resp.Error)
}
if result == nil {
return nil
}
// "null" body into a pointer is valid (sets the zero value); marshal a
// RawMessage directly to avoid extra encode/decode churn.
return json.Unmarshal(resp.Result, result)
}
// roundtrip sends one request and reads its reply on c.conn, lazily (re)dialing
// if the conn is nil (fresh Client or a prior drop). A write-phase (or dial)
// failure is wrapped in errWriteLost (always safe to retry); a read-phase
// failure is wrapped in errReadLost (ambiguous — call() only retries it for
// read-only methods). Either way a failed conn is dropped so the next call
// re-dials clean. Caller holds c.mu.
func (c *Client) roundtrip(m Method, raw json.RawMessage, resp *Response) error {
if c.conn == nil {
conn, err := net.Dial("unix", c.path)
if err != nil {
return fmt.Errorf("%w: dial %s: %v", errWriteLost, c.path, err)
}
c.conn = conn
}
if err := writeFrame(c.conn, Request{Method: m, Params: raw}); err != nil {
c.drop()
return fmt.Errorf("%w: %v", errWriteLost, err)
}
if err := readFrame(c.conn, resp); err != nil {
c.drop()
return fmt.Errorf("%w: %v", errReadLost, err)
}
return nil
}
// drop closes and forgets the current conn so the next call re-dials.
func (c *Client) drop() {
if c.conn != nil {
_ = c.conn.Close()
c.conn = nil
}
}
// hydrate rehydrates a wire RpcError into the matching package sentinel. The
// code↔sentinel table is the only place the wire "knows" about errors; keep it
// in sync with codeOf in wire.go.
func hydrate(e *RpcError) error {
switch e.Code {
case codeNoFact:
return fmt.Errorf("%w: %s", ErrNoFact, e.Message)
case codeConfidence:
return fmt.Errorf("%w: %s", ErrConfidence, e.Message)
case codeVoidsMissing:
return fmt.Errorf("%w: %s", ErrVoidsMissing, e.Message)
case codeNudgeNotFound:
return fmt.Errorf("%w: %s", ErrNudgeNotFound, e.Message)
case codeNudgeOutcome:
return fmt.Errorf("%w: %s", ErrNudgeOutcome, e.Message)
case codeReminderMissing:
return fmt.Errorf("%w: %s", ErrReminderNotFound, e.Message)
case codeReminderState:
return fmt.Errorf("%w: %s", ErrReminderState, e.Message)
case codeToolNotFound:
return fmt.Errorf("%w: %s", ErrToolNotFound, e.Message)
case codeUnknownMethod:
return fmt.Errorf("%w: %s", ErrUnknownMethod, e.Message)
case codeBadParams:
return fmt.Errorf("%w: %s", ErrBadParams, e.Message)
case codeForbidden:
return fmt.Errorf("%w: %s", ErrForbidden, e.Message)
default:
return errors.New(e.Error())
}
}
// CoreAPI implementation on *Client. Each method is a thin call() shim; the
// shape mirrors the CoreAPI interface 1:1 so the embedded-doc intent (module
// holds a CoreAPI, transport-agnostic) reads straight off the signatures.
func (c *Client) WriteFact(ctx context.Context, req WriteFactReq) (int64, error) {
var r idResp
if err := c.call(ctx, MethodWriteFact, req, &r); err != nil {
return 0, err
}
return r.ID, nil
}
func (c *Client) LatestFact(ctx context.Context, key string) (Fact, error) {
var f Fact
if err := c.call(ctx, MethodLatestFact, keyReq{Key: key}, &f); err != nil {
return Fact{}, err
}
return f, nil
}
func (c *Client) LatestFactBySource(ctx context.Context, key, source string) (Fact, error) {
var f Fact
if err := c.call(ctx, MethodLatestFactBySource, keySourceReq{Key: key, Source: source}, &f); err != nil {
return Fact{}, err
}
return f, nil
}
func (c *Client) Since(ctx context.Context, key string, now time.Time) (time.Duration, error) {
var r sinceResp
if err := c.call(ctx, MethodSince, sinceReq{Key: key, Now: now}, &r); err != nil {
return 0, err
}
return r.Dur, nil
}
func (c *Client) Presence(ctx context.Context) (Presence, error) {
var p Presence
if err := c.call(ctx, MethodPresence, nil, &p); err != nil {
return Presence{}, err
}
return p, nil
}
func (c *Client) CreateReminder(ctx context.Context, fire time.Time, payload, cron string) (int64, error) {
var r idResp
if err := c.call(ctx, MethodCreateReminder, createReminderReq{Fire: fire, Payload: payload, Cron: cron}, &r); err != nil {
return 0, err
}
return r.ID, nil
}
func (c *Client) MarkReminder(ctx context.Context, id int64, status string) error {
return c.call(ctx, MethodMarkReminder, markReminderReq{ID: id, Status: status}, nil)
}
func (c *Client) ListReminders(ctx context.Context, n int) ([]Reminder, error) {
var out []Reminder
if err := c.call(ctx, MethodListReminders, nReq{N: n}, &out); err != nil {
return nil, err
}
return out, nil
}
func (c *Client) RecordNudge(ctx context.Context, rule, channel, message string, ts time.Time) (int64, error) {
var r idResp
if err := c.call(ctx, MethodRecordNudge, recordNudgeReq{Rule: rule, Channel: channel, Message: message, Ts: ts}, &r); err != nil {
return 0, err
}
return r.ID, nil
}
func (c *Client) ResolveNudge(ctx context.Context, id int64, outcome string, ts time.Time) error {
return c.call(ctx, MethodResolveNudge, resolveNudgeReq{ID: id, Outcome: outcome, Ts: ts}, nil)
}
func (c *Client) RecentOutcomes(ctx context.Context, rule string, n int) ([]string, error) {
var out []string
if err := c.call(ctx, MethodRecentOutcomes, outcomesReq{Rule: rule, N: n}, &out); err != nil {
return nil, err
}
return out, nil
}
func (c *Client) RecentFacts(ctx context.Context, n int) ([]Fact, error) {
var out []Fact
if err := c.call(ctx, MethodRecentFacts, nReq{N: n}, &out); err != nil {
return nil, err
}
return out, nil
}
func (c *Client) CalendarEvents(ctx context.Context, from, to time.Time) ([]Fact, error) {
var out []Fact
if err := c.call(ctx, MethodCalendarEvents, calendarEventsReq{From: from, To: to}, &out); err != nil {
return nil, err
}
return out, nil
}
func (c *Client) RecentNudges(ctx context.Context, n int) ([]Nudge, error) {
var out []Nudge
if err := c.call(ctx, MethodRecentNudges, nReq{N: n}, &out); err != nil {
return nil, err
}
return out, nil
}
func (c *Client) WriteNote(ctx context.Context, ts time.Time, text string, embedding []float32, source string) (int64, error) {
var r idResp
if err := c.call(ctx, MethodWriteNote, writeNoteReq{Ts: ts, Text: text, Embedding: embedding, Source: source}, &r); err != nil {
return 0, err
}
return r.ID, nil
}
func (c *Client) QueryNotes(ctx context.Context, embedding []float32, k int) ([]Note, error) {
var out []Note
if err := c.call(ctx, MethodQueryNotes, queryNotesReq{Embedding: embedding, K: k}, &out); err != nil {
return nil, err
}
return out, nil
}
func (c *Client) RecentNotes(ctx context.Context, n int) ([]Note, error) {
var out []Note
if err := c.call(ctx, MethodRecentNotes, nReq{N: n}, &out); err != nil {
return nil, err
}
return out, nil
}
func (c *Client) ProposeTool(ctx context.Context, name, utterance, scope string, ts time.Time) (bool, error) {
var r proposeToolResp
if err := c.call(ctx, MethodProposeTool, proposeToolReq{Name: name, Scope: scope, Utterance: utterance, Ts: ts}, &r); err != nil {
return false, err
}
return r.Proposed, nil
}
func (c *Client) EnableTool(ctx context.Context, name string, cmd []string, destructive bool, scope string, ts time.Time) error {
return c.call(ctx, MethodEnableTool, enableToolReq{Name: name, Scope: scope, Cmd: cmd, Destructive: destructive, Ts: ts}, nil)
}
func (c *Client) DisableTool(ctx context.Context, name string) error {
return c.call(ctx, MethodDisableTool, disableToolReq{Name: name}, nil)
}
func (c *Client) AssertStepUp(ctx context.Context) error {
return c.call(ctx, MethodAssertStepUp, nil, nil)
}
// StoreEncryptionKey wraps the daemon's at-rest key under secret, the 32-byte
// WebAuthn PRF output for the freshly enrolled credential.
func (c *Client) StoreEncryptionKey(ctx context.Context, secret []byte) error {
return c.call(ctx, MethodStoreEncryptionKey, storeEncryptionKeyReq{Secret: secret}, nil)
}
// Unlock hands the daemon the PRF secret so it can unwrap its at-rest key and
// open the store. Refused unless a passkey assertion was verified first.
func (c *Client) Unlock(ctx context.Context, secret []byte) error {
return c.call(ctx, MethodUnlock, unlockReq{Secret: secret}, nil)
}
func (c *Client) LookupTool(ctx context.Context, name string) (Tool, error) {
var t Tool
if err := c.call(ctx, MethodLookupTool, lookupToolReq{Name: name}, &t); err != nil {
return Tool{}, err
}
return t, nil
}
func (c *Client) ListTools(ctx context.Context, status string) ([]Tool, error) {
var r listToolsResp
if err := c.call(ctx, MethodListTools, listToolsReq{Status: status}, &r); err != nil {
return nil, err
}
return r.Tools, nil
}
func (c *Client) DeleteTool(ctx context.Context, name string) error {
return c.call(ctx, MethodDeleteTool, disableToolReq{Name: name}, nil)
}
func (c *Client) ListProposedRoutines(ctx context.Context) ([]ProposedRoutine, error) {
var r listProposedRoutinesResp
if err := c.call(ctx, MethodListProposedRoutines, nil, &r); err != nil {
return nil, err
}
return r.Routines, nil
}
func (c *Client) CaptureTask(ctx context.Context, req CaptureTaskReq) (CaptureTaskResp, error) {
var r CaptureTaskResp
if err := c.call(ctx, MethodCaptureTask, req, &r); err != nil {
return CaptureTaskResp{}, err
}
return r, nil
}
func (c *Client) ListTasks(ctx context.Context, status string) ([]Task, error) {
var r listTasksResp
if err := c.call(ctx, MethodListTasks, listTasksReq{Status: status}, &r); err != nil {
return nil, err
}
return r.Tasks, nil
}
func (c *Client) SetTaskStatus(ctx context.Context, id int64, status string, ts time.Time) error {
return c.call(ctx, MethodSetTaskStatus, setTaskStatusReq{ID: id, Status: status, Ts: ts}, nil)
}
// IngestMail hands one fetched message to core for extraction. ErrUnknownMethod
// means core has no email block configured — the caller should stop asking, not
// retry.
func (c *Client) IngestMail(ctx context.Context, req IngestMailReq) (IngestMailResp, error) {
var r IngestMailResp
if err := c.call(ctx, MethodIngestMail, req, &r); err != nil {
return IngestMailResp{}, err
}
return r, nil
}
// DescribeImage hands one image to core to look at (Vikunja #252).
// ErrUnknownMethod means core has no media store or vision is off — the caller
// should stop asking, not retry. A response with an ID and an empty Description
// means the bytes were stored but nothing could describe them yet, which is the
// expected state on a box with no vision model on disk.
func (c *Client) DescribeImage(ctx context.Context, req DescribeImageReq) (DescribeImageResp, error) {
var r DescribeImageResp
if err := c.call(ctx, MethodDescribeImage, req, &r); err != nil {
return DescribeImageResp{}, err
}
return r, nil
}
// CaptureStart begins recording a meeting (Vikunja #253). ErrUnknownMethod
// means the operator has not enabled capture — the caller should say so and stop
// asking, not retry.
func (c *Client) CaptureStart(ctx context.Context, req CaptureStartReq) (CaptureStartResp, error) {
var r CaptureStartResp
if err := c.call(ctx, MethodCaptureStart, req, &r); err != nil {
return CaptureStartResp{}, err
}
return r, nil
}
// CaptureAppend hands one chunk of audio to the running session. An error means
// the frame was not kept: either nothing is being recorded, or the session hit
// its time limit. Either way the client stops sending.
func (c *Client) CaptureAppend(ctx context.Context, req CaptureAppendReq) (CaptureAppendResp, error) {
var r CaptureAppendResp
if err := c.call(ctx, MethodCaptureAppend, req, &r); err != nil {
return CaptureAppendResp{}, err
}
return r, nil
}
// CaptureStop ends the session. Slow — it transcribes and summarises the whole
// recording — so pass a context with room. Set Discard to throw the recording
// away instead.
func (c *Client) CaptureStop(ctx context.Context, req CaptureStopReq) (CaptureStopResp, error) {
var r CaptureStopResp
if err := c.call(ctx, MethodCaptureStop, req, &r); err != nil {
return CaptureStopResp{}, err
}
return r, nil
}
// CaptureStatus reports the running session, if any.
func (c *Client) CaptureStatus(ctx context.Context) (CaptureStatusResp, error) {
var r CaptureStatusResp
if err := c.call(ctx, MethodCaptureStatus, nil, &r); err != nil {
return CaptureStatusResp{}, err
}
return r, nil
}
// EnrollSpeaker registers a voice from several deliberately recorded samples
// (Vikunja #255). ErrUnknownMethod means no speaker block is configured, which
// is the default: on an unconfigured box there is no way to take a voiceprint.
func (c *Client) EnrollSpeaker(ctx context.Context, req EnrollSpeakerReq) (EnrollSpeakerResp, error) {
var r EnrollSpeakerResp
if err := c.call(ctx, MethodEnrollSpeaker, req, &r); err != nil {
return EnrollSpeakerResp{}, err
}
return r, nil
}
// ListSpeakers reports who is enrolled. The voiceprints themselves stay in
// core. Enabled is false when profiles exist but no embedding model is wired,
// so a surface can say "enrolled, not recognising" rather than implying Maven
// knows who is talking.
func (c *Client) ListSpeakers(ctx context.Context) (ListSpeakersResp, error) {
var r ListSpeakersResp
if err := c.call(ctx, MethodListSpeakers, nil, &r); err != nil {
return ListSpeakersResp{}, err
}
return r, nil
}
// ForgetSpeaker deletes one voiceprint.
func (c *Client) ForgetSpeaker(ctx context.Context, id string) error {
return c.call(ctx, MethodForgetSpeaker, ForgetSpeakerReq{ID: id}, nil)
}
// SwapModel asks core to load another resident model (Vikunja #250).
// ErrUnknownMethod means core has no phraser.swap_models allowlist configured;
// ErrForbidden means the path is not on it, or step-up was not asserted. A
// non-nil error with RolledBack set means nothing changed — the old model is
// still serving.
func (c *Client) SwapModel(ctx context.Context, req SwapModelReq) (SwapModelResp, error) {
var r SwapModelResp
if err := c.call(ctx, MethodSwapModel, req, &r); err != nil {
return SwapModelResp{}, err
}
return r, nil
}
// ModelStatus reports the resident model and the swap allowlist. Read-only.
func (c *Client) ModelStatus(ctx context.Context) (ModelStatusResp, error) {
var r ModelStatusResp
if err := c.call(ctx, MethodModelStatus, nil, &r); err != nil {
return ModelStatusResp{}, err
}
return r, nil
}
func (c *Client) DismissProposedRoutine(ctx context.Context, id int64) error {
return c.call(ctx, MethodDismissProposedRoutine, dismissProposedRoutineReq{ID: id}, nil)
}
func (c *Client) AcceptProposedRoutine(ctx context.Context, id int64) error {
return c.call(ctx, MethodAcceptProposedRoutine, acceptProposedRoutineReq{ID: id}, nil)
}
func (c *Client) Chat(ctx context.Context, text string) (string, error) {
var r chatResp
if err := c.call(ctx, MethodChat, chatReq{Text: text}, &r); err != nil {
return "", err
}
return r.Reply, nil
}
func (c *Client) TickTrace(ctx context.Context) (TickTrace, error) {
var t TickTrace
if err := c.call(ctx, MethodTickTrace, nil, &t); err != nil {
return TickTrace{}, err
}
return t, nil
}
func (c *Client) RecentEvents(ctx context.Context, n int) ([]IntakeEvent, error) {
var e []IntakeEvent
if err := c.call(ctx, MethodRecentEvents, nReq{N: n}, &e); err != nil {
return nil, err
}
return e, nil
}
func (c *Client) MCPServers(ctx context.Context) ([]MCPServerStatus, error) {
var s []MCPServerStatus
if err := c.call(ctx, MethodMCPServers, nil, &s); err != nil {
return nil, err
}
return s, nil
}
func (c *Client) MorningStatus(ctx context.Context) ([]MorningRoutineStatus, error) {
var s []MorningRoutineStatus
if err := c.call(ctx, MethodMorningStatus, nil, &s); err != nil {
return nil, err
}
return s, nil
}
func (c *Client) DayPlan(ctx context.Context) (DayPlan, error) {
var p DayPlan
if err := c.call(ctx, MethodDayPlan, nil, &p); err != nil {
return DayPlan{}, err
}
return p, nil
}
func (c *Client) RevertFact(ctx context.Context, key string) (int64, error) {
var result struct {
NewID int64 `json:"new_id"`
}
if err := c.call(ctx, MethodRevertFact, map[string]string{"key": key}, &result); err != nil {
return 0, err
}
return result.NewID, nil
}
// Ping asks whether the daemon is there, and whether it is locked. It is not a
// CoreAPI method: it touches no store, so it answers before the passkey
// assertion that every other read waits for.
func (c *Client) Ping(ctx context.Context) (PingResp, error) {
var r PingResp
if err := c.call(ctx, MethodPing, nil, &r); err != nil {
return PingResp{}, err
}
return r, nil
}
// Compile-time check: *Client satisfies CoreAPI.
var _ CoreAPI = (*Client)(nil)