Extends the agent, ingest, storage, api, and web with Windows Event Log/ETW sourcing and Tantivy-backed free-text search, per the approved Phase 1 plan. - CLAUDE.md: materialized on disk (never existed as a file before) with a new Phase 1 "done looks like" section. - agent: Windows Event Log (EvtSubscribe) and ETW sources, Windows service wrapper (install/uninstall/run-service), both feature- and target_os-gated so Linux builds/tests/clippy stay unaffected. Also fixed two pre-existing Phase 0 clippy gaps (dead-code on default-features-only builds, a type-inference edge case) found while testing every feature combination properly for the first time. UNVERIFIED on real Windows -- no Windows toolchain existed anywhere in the build environment; flagged prominently in three places. - proto/ingest: new record_id field, assigned once server-side in ingest's gRPC front end so ClickHouse and Tantivy agree on the same ID for the same record. - storage: record_id column + bloom filter index, verified against a live ClickHouse. - search: new service, Tantivy index, rskafka consumer as an independent second consumer group on the same Redpanda topic ingest already reads. - api/web: new /search endpoint and page, sharing the query page's result-table shape and component. - hack/windows-fixture: sends realistic Windows-shaped data straight to ingest, so the pipeline's handling of it is verifiable without a Windows host. Verified end-to-end on the live docker-compose stack: the same record_id comes back from both /query and /search for the same log line, including for windows-fixture's synthetic Windows Event Log data. Real bugs found and fixed along the way: api/Dockerfile missing proto/ in its build context, search's logs being completely silent (RUST_LOG gap), and search/target/ missing from .gitignore/.dockerignore.
112 lines
3.6 KiB
Go
112 lines
3.6 KiB
Go
// Package queryapi is Sentry's query API: POST /query (Phase 0, a crude
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// raw-SQL passthrough allowlisted to SELECT) and POST /search (Phase 1,
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// free-text search via the search service, joined back against
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// ClickHouse). This is a deliberate simplification of the pinned "gRPC +
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// REST gateway" control-plane pattern (see CLAUDE.md's tech stack table):
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// plain net/http REST handlers, not a gRPC service transcoded through
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// grpc-gateway. That machinery (proto definitions, googleapis
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// annotations, gateway codegen) doesn't buy much for two crude endpoints
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// that Phase 2's real SPL-like query layer replaces outright. Revisit
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// gRPC+gateway once /api's endpoint count and lifespan justify it.
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package queryapi
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import (
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"context"
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"encoding/json"
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"log/slog"
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"net/http"
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"time"
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)
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// queryExecutor is the narrow interface handleQuery depends on, so tests
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// can substitute a fake without a real ClickHouse connection. *Executor
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// satisfies it.
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type queryExecutor interface {
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Execute(ctx context.Context, sql string) (*QueryResult, error)
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}
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type Handler struct {
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logger *slog.Logger
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exec queryExecutor
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search searchClient
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queryTimeout time.Duration
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allowedOrigin string
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}
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func NewHandler(logger *slog.Logger, exec queryExecutor, search searchClient, queryTimeout time.Duration, allowedOrigin string) *Handler {
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return &Handler{logger: logger, exec: exec, search: search, queryTimeout: queryTimeout, allowedOrigin: allowedOrigin}
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}
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func (h *Handler) Routes() http.Handler {
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mux := http.NewServeMux()
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mux.HandleFunc("POST /query", h.handleQuery)
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mux.HandleFunc("POST /search", h.handleSearch)
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mux.HandleFunc("GET /healthz", h.handleHealthz)
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return h.withCORS(mux)
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}
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// withCORS is deliberately permissive by default (see CORSAllowedOrigin in
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// internal/config) since Phase 0 has no auth and the SvelteKit dev server
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// runs on a different origin. Tighten alongside adding real auth.
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func (h *Handler) withCORS(next http.Handler) http.Handler {
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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w.Header().Set("Access-Control-Allow-Origin", h.allowedOrigin)
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w.Header().Set("Access-Control-Allow-Methods", "POST, OPTIONS")
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w.Header().Set("Access-Control-Allow-Headers", "Content-Type")
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if r.Method == http.MethodOptions {
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w.WriteHeader(http.StatusNoContent)
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return
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}
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next.ServeHTTP(w, r)
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})
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}
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func (h *Handler) handleHealthz(w http.ResponseWriter, _ *http.Request) {
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w.WriteHeader(http.StatusOK)
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}
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type queryRequest struct {
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SQL string `json:"sql"`
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}
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type errorResponse struct {
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Error string `json:"error"`
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}
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// maxBodyBytes caps the request body: a raw SQL string has no legitimate
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// reason to be larger than this.
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const maxBodyBytes = 1 << 20 // 1 MiB
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func (h *Handler) handleQuery(w http.ResponseWriter, r *http.Request) {
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r.Body = http.MaxBytesReader(w, r.Body, maxBodyBytes)
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var req queryRequest
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if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
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writeError(w, http.StatusBadRequest, "invalid JSON body: "+err.Error())
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return
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}
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if err := validateSelectOnly(req.SQL); err != nil {
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writeError(w, http.StatusBadRequest, err.Error())
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return
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}
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ctx, cancel := context.WithTimeout(r.Context(), h.queryTimeout)
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defer cancel()
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result, err := h.exec.Execute(ctx, req.SQL)
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if err != nil {
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h.logger.Error("query execution failed", "error", err)
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writeError(w, http.StatusBadGateway, "query failed: "+err.Error())
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return
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}
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writeJSON(w, result)
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}
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func writeError(w http.ResponseWriter, status int, msg string) {
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w.Header().Set("Content-Type", "application/json")
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w.WriteHeader(status)
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_ = json.NewEncoder(w).Encode(errorResponse{Error: msg})
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}
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