28c2ffb84f
Reference-count the process-global ONNX Runtime across embedder and routing-head sessions, make close idempotent, and require named proof that both aggregate routing gates executed rather than self-skipped (V-716). Owner explicitly requested direct commits to master.
365 lines
17 KiB
Makefile
365 lines
17 KiB
Makefile
# GOTOOLCHAIN=local pins us to the vendored deps/go tree. Without it, a go.mod
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# `go` directive newer than deps/go re-execs into a downloaded toolchain module,
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# and those ship only 7 of the 15 GOROOT tools (no covdata) -- which makes
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# `test` below fail on the two packages that have no test files. deps-go builds
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# the missing tools in, so the vendored tree is self-sufficient. Keep the version
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# here in step with the `go` directive in go.mod.
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GO_VERSION := 1.25.12
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GO := $(shell pwd)/deps/go/go/bin/go
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export GOTOOLCHAIN := local
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GOFLAGS :=
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CGO_LDFLAGS := -L$(shell pwd)/deps/lib -Wl,-rpath,$(shell pwd)/deps/lib
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CGO_CFLAGS := -I$(shell pwd)/deps/include -I$(shell pwd)/deps/whisper.cpp/ggml/include
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WHISPER_MODEL := $(shell pwd)/models/stt/ggml-small.bin
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PIPER_BIN := $(shell pwd)/deps/piper/piper
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PIPER_MODEL := $(shell pwd)/models/tts/ru_RU-irina-medium.onnx
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PIPER_ESPEAK := $(shell pwd)/deps/piper/espeak-ng-data
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.PHONY: t audit simulate stt-fixtures test-stt-golden test-cw2-config all build build-stt build-tts build-daemon build-client build-waked build-web build-poll build-caldav clean test fmt-check vet run-stt run-tts run-web download-embedder deps-go deps-sentinel deps-vuln vuln deps-lint lint deadcode analyze tidy eval-router eval-reach eval-recall eval-phrasing eval-models build-gpud
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all: build
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build: build-stt build-tts build-daemon build-client build-waked build-web build-poll build-caldav build-mail build-update build-gpud
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build-stt:
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CGO_CFLAGS="$(CGO_CFLAGS)" CGO_LDFLAGS="$(CGO_LDFLAGS)" LD_LIBRARY_PATH="$(shell pwd)/deps/lib" \
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$(GO) build $(GOFLAGS) -o mavsttd ./cmd/mavsttd/
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build-tts:
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CGO_CFLAGS="$(CGO_CFLAGS)" CGO_LDFLAGS="$(CGO_LDFLAGS)" LD_LIBRARY_PATH="$(shell pwd)/deps/lib" \
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$(GO) build $(GOFLAGS) -o mavttsd ./cmd/mavttsd/
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build-daemon:
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CGO_CFLAGS="$(CGO_CFLAGS)" CGO_LDFLAGS="$(CGO_LDFLAGS)" LD_LIBRARY_PATH="$(shell pwd)/deps/lib" \
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$(GO) build $(GOFLAGS) -o mavend ./cmd/mavend/
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build-client:
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CGO_CFLAGS="$(CGO_CFLAGS)" CGO_LDFLAGS="$(CGO_LDFLAGS)" LD_LIBRARY_PATH="$(shell pwd)/deps/lib" \
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$(GO) build $(GOFLAGS) -o mavenclient ./cmd/mavenclient/
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build-waked:
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$(GO) build $(GOFLAGS) -o mavwaked ./cmd/mavwaked/
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build-web:
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$(GO) build $(GOFLAGS) -o mavweb ./cmd/mavweb/
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build-poll:
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$(GO) build $(GOFLAGS) -o mavpoll ./cmd/mavpoll/
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build-caldav:
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$(GO) build $(GOFLAGS) -o mavcaldav ./cmd/mavcaldav/
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build-mail:
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$(GO) build $(GOFLAGS) -o mavmaild ./cmd/mavmaild/
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# mavupdate is an operator CLI, not a daemon: nothing runs it but a human on the
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# box. It is built with the rest so a broken update path is caught by `make
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# build` rather than the first time it is needed.
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build-update:
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$(GO) build $(GOFLAGS) -o mavupdate ./cmd/mavupdate/
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# mavgpud runs on the workstation, not here. It is built with the rest so a
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# broken supervisor is caught by `make build` on homesrv rather than by the
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# workstation refusing to serve. Copy the binary over, do not `make deploy` it.
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build-gpud:
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$(GO) build $(GOFLAGS) -o mavgpud ./cmd/mavgpud/
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run-web: build-web
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./mavweb -addr :9200 -voice 127.0.0.1:9100
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# Install the vendored Go toolchain from scratch. Go 1.24+ release tarballs no
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# longer ship covdata/pprof/test2json/nm/objdump/trace prebuilt -- `go tool X`
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# builds them on demand, but `go test -coverprofile` calls covdata through
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# base.Tool(), which only stats pkg/tool and exits. So build them in once here.
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GO_TARBALL := go$(GO_VERSION).linux-amd64.tar.gz
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GO_SHA256 := 234828b7a89e0e303d2556310ee549fbcf253d28de937bac3da13d6294262ac1
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deps-go: deps-sentinel
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@mkdir -p deps/go
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cd deps/go && curl -fLO 'https://go.dev/dl/$(GO_TARBALL)'
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cd deps/go && echo '$(GO_SHA256) $(GO_TARBALL)' | sha256sum -c -
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cd deps/go && rm -rf go && tar xzf $(GO_TARBALL) && rm $(GO_TARBALL)
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cd deps/go/go/src && for t in covdata pprof test2json nm objdump trace addr2line buildid; do \
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GOROOT="$(shell pwd)/deps/go/go" $(GO) build -o "$(shell pwd)/deps/go/go/pkg/tool/linux_amd64/$$t" "cmd/$$t" || exit 1; \
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done
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$(GO) version
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# deps/go.mod — the sentinel that stops the module walk at deps/ (Vikunja #454).
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# The vendored toolchain lives inside the module tree, so `go mod tidy` walked
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# Go's own compiler-error fixtures and died on files that are malformed on
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# purpose ("unicode//utf8": double slash). A nested module is not part of the
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# parent, so one three-line file ends the walk. deps/ is gitignored, so it is
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# generated here rather than committed, and every target that populates deps/
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# writes it.
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deps-sentinel:
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@mkdir -p deps
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@printf 'module github.com/kami/maven/deps\n\ngo 1.21\n' > deps/go.mod
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# vuln — the advisory gate the 2026-08-10 audit found missing (V-682). It reads
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# the published database over the network, so it is not part of `test`, which
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# has to pass on a box with no route out. Run it before a toolchain or
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# dependency bump lands, because that is what it grades: on 2026-08-11 the
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# pinned Go 1.25.5 and x/text 0.14.0 carried 20 reachable advisories and the
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# bumped pair carries none.
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#
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# govulncheck is a tool and not a dependency, so it is installed into deps/ like
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# the toolchain rather than added to go.mod. The version is pinned here for the
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# same reason GO_VERSION is: a gate that moves on its own is not a gate.
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GOVULNCHECK_VERSION := v1.6.0
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GOVULNCHECK := $(shell pwd)/deps/bin/govulncheck
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deps-vuln: deps-sentinel
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@mkdir -p deps/bin
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GOTOOLCHAIN=local GOBIN=$(shell pwd)/deps/bin \
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$(GO) install golang.org/x/vuln/cmd/govulncheck@$(GOVULNCHECK_VERSION)
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# The CGO env is the same one `test` carries: govulncheck loads the packages,
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# and the four CGO daemons do not load without it.
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vuln: deps-vuln
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CGO_CFLAGS="$(CGO_CFLAGS)" CGO_LDFLAGS="$(CGO_LDFLAGS)" LD_LIBRARY_PATH="$(shell pwd)/deps/lib" \
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PATH="$(shell pwd)/deps/go/go/bin:$$PATH" GOTOOLCHAIN=local $(GOVULNCHECK) ./...
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# lint and deadcode — the other two analyzers the 2026-08-10 audit asked for
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# (V-694). They are not part of `test` for the same reason `vuln` is not: they
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# install over the network, and they are slow enough that a change to one Go
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# file should not pay for them.
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#
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# Neither reports zero, so neither fails on its own output. The accepted set
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# lives in scripts/analyzers/*.baseline and scripts/analyzer-gate.sh decides.
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# What is new fails, and so does a baseline entry whose finding is gone.
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#
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# deadcode runs with -test, so a test file is a root. Without it the report is
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# 172 lines, most of internal/router/eval, and none of it is a mistake.
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STATICCHECK_VERSION := v0.7.0
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DEADCODE_VERSION := v0.48.0
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STATICCHECK := $(shell pwd)/deps/bin/staticcheck
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DEADCODE := $(shell pwd)/deps/bin/deadcode
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deps-lint: deps-sentinel
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@mkdir -p deps/bin
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GOTOOLCHAIN=local GOBIN=$(shell pwd)/deps/bin \
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$(GO) install honnef.co/go/tools/cmd/staticcheck@$(STATICCHECK_VERSION)
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GOTOOLCHAIN=local GOBIN=$(shell pwd)/deps/bin \
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$(GO) install golang.org/x/tools/cmd/deadcode@$(DEADCODE_VERSION)
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# Both load the packages, so both carry the CGO env `test` carries. Without it
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# the four CGO daemons do not load and the analyzer reports a build error
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# instead of a finding -- which analyzer-gate.sh fails on rather than filters.
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ANALYZER_ENV = CGO_CFLAGS="$(CGO_CFLAGS)" CGO_LDFLAGS="$(CGO_LDFLAGS)" \
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LD_LIBRARY_PATH="$(shell pwd)/deps/lib" \
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PATH="$(shell pwd)/deps/go/go/bin:$$PATH" GOTOOLCHAIN=local
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lint: deps-lint
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@$(ANALYZER_ENV) $(STATICCHECK) ./... | scripts/analyzer-gate.sh staticcheck
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deadcode: deps-lint
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@$(ANALYZER_ENV) $(DEADCODE) -test ./... | scripts/analyzer-gate.sh deadcode
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# Every static gate in one command. Not `check`, because it is not the thing to
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# run before a commit: vuln reads the network and all three are slow.
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analyze: lint deadcode vuln
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# Run the tidy the sentinel makes possible. Not part of `test`: it rewrites
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# go.mod, and a build target that edits the module file is a surprise.
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# vendor/ is committed, so a tidy that drops a requirement must be followed by
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# a re-vendor or the next build fails on "inconsistent vendoring".
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tidy: deps-sentinel
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GOTOOLCHAIN=local GOFLAGS=-mod=mod $(GO) mod tidy
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GOTOOLCHAIN=local GOFLAGS=-mod=mod $(GO) mod vendor
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# fmt-check fails if any file needs gofmt. docs/design.md has always said `make
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# test` gates on gofmt and vet; it did not, so nine files quietly drifted.
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# Run `gofmt -w` on whatever this prints.
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fmt-check:
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@bad=$$(gofmt -l internal cmd); \
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if [ -n "$$bad" ]; then \
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echo "these files need gofmt:"; echo "$$bad"; exit 1; \
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fi
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vet:
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CGO_CFLAGS="$(CGO_CFLAGS)" CGO_LDFLAGS="$(CGO_LDFLAGS)" LD_LIBRARY_PATH="$(shell pwd)/deps/lib" \
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$(GO) vet ./internal/... ./cmd/...
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# simulate — replay every scripted day under cmd/mavend/testdata/scenarios
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# through the real router, store, tick loop and intake journal, on a fake clock
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# (Vikunja #284). Verbose so the transcript of each scenario lands in the
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# terminal. Also runs as part of `make test`; this target is for reading it.
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simulate:
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CGO_CFLAGS="$(CGO_CFLAGS)" CGO_LDFLAGS="$(CGO_LDFLAGS)" LD_LIBRARY_PATH="$(shell pwd)/deps/lib" \
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$(GO) test -v -count=1 -run TestSimulator ./cmd/mavend/
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test-cw2-config:
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python3 -m unittest discover -s deploy/cw2 -p 'test_*.py'
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test: fmt-check vet test-cw2-config
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CGO_CFLAGS="$(CGO_CFLAGS)" CGO_LDFLAGS="$(CGO_LDFLAGS)" LD_LIBRARY_PATH="$(shell pwd)/deps/lib" \
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$(GO) test -race -coverprofile=coverage.out ./internal/... ./cmd/...
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# t — run ONE package or ONE test with the toolchain env already wired. This is
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# the iteration target; `test` is the gate. Reach for it instead of pasting the
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# CGO_CFLAGS/CGO_LDFLAGS/LD_LIBRARY_PATH preamble by hand, which is how it was
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# done ~390 times across past sessions and is where the shell-quoting failures
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# came from -- the interactive shell here is zsh, and an unquoted `-run Test*`
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# or `--include=*.go` dies on "no matches found" before go ever starts.
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#
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# make t # whole tree (same scope as `test`)
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# make t PKG=./internal/router/
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# make t PKG=./cmd/mavend/ RUN=TestSimulator
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# make t PKG=./internal/router/eval/ RUN='TestONNX' V=1
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# make t PKG=./internal/store/ RACE=0 # drop -race when iterating hot
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#
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# -race is on by default so a green `make t` cannot turn red under `make test`.
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# -count=1 because a cached PASS from before your edit is worse than no answer.
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# MAVEN_ONNX_LIB is set for the same reason: the four TestONNX* measurements
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# self-skip when it is unset, so a targeted eval run would otherwise report the
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# deterministic hash ratchet and look like it scored the real embedder.
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PKG ?= ./internal/... ./cmd/...
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RUN ?=
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V ?=
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RACE ?= 1
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t:
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CGO_CFLAGS="$(CGO_CFLAGS)" CGO_LDFLAGS="$(CGO_LDFLAGS)" LD_LIBRARY_PATH="$(shell pwd)/deps/lib" \
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MAVEN_ONNX_LIB="$(MAVEN_ONNX_LIB)" \
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$(GO) test $(if $(V),-v,) $(if $(filter-out 0,$(RACE)),-race,) -count=1 \
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$(if $(RUN),-run '$(RUN)',) $(PKG)
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# eval-router — score the held-out RU routing fixture (internal/router/eval).
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# Verbose so the report tables land in the terminal. MAVEN_ONNX_LIB points the
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# prod-representative baseline at the vendored runtime; override it or set it
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# empty to run only the deterministic hash ratchet. This is the measurement
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# Vikunja #319 compares before #320 flips the route decider. With a non-empty
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# runtime path the package must prove that at least two model gates executed;
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# a constructor skip after the first process-global initialization is a failure.
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MAVEN_ONNX_LIB ?= $(shell pwd)/deps/onnxruntime-linux-x64-1.26.0/lib/libonnxruntime.so
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eval-router:
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MAVEN_ONNX_LIB="$(MAVEN_ONNX_LIB)" \
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MAVEN_ONNX_REQUIRED_GATES="$(if $(MAVEN_ONNX_LIB),2,0)" \
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$(GO) test -v -count=1 ./internal/router/eval/
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# eval-reach — score the held-out ecosystem reach fixture (internal/router/eval,
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# ru_ecosystem_v1.json). Answers "does a real Russian utterance actually arrive
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# at Praxis or Hexis", which routing accuracy alone does not say. Same
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# MAVEN_ONNX_LIB deal as eval-router; without it only the deterministic hash
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# ratchet runs. Vikunja #405.
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eval-reach:
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MAVEN_ONNX_LIB="$(MAVEN_ONNX_LIB)" $(GO) test -v -count=1 -run 'Reach|Praxis' ./internal/router/eval/
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# eval-recall — score the held-out note-recall fixture (internal/memory/recalleval).
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# Answers "can she find the note again when it matters": recall@1, recall@3,
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# false recall and the query_min_score sweep. Same MAVEN_ONNX_LIB deal as
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# eval-router; without it only the deterministic hash ratchet runs.
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eval-recall:
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MAVEN_ONNX_LIB="$(MAVEN_ONNX_LIB)" $(GO) test -v -count=1 ./internal/memory/recalleval/
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# eval-phrasing -- score nudge phrasing AND the conversational paths (chat,
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# query, general knowledge) in internal/phraser/eval. Verbose so the
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# report and every generated message land in the terminal. With no environment
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# it scores the deterministic Stub only, which is what CI runs. Set
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# MAVEN_LLM_URL to add the resident model:
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# MAVEN_LLM_URL=http://127.0.0.1:18099 make eval-phrasing
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# The model run is slow (minutes) -- the timeout is raised to match. It covers
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# two fixtures now (15 nudges + 27 conversational cases, and the chat replies are
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# the long ones), hence 90m rather than 40m.
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eval-phrasing:
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$(GO) test -v -count=1 -timeout 90m ./internal/phraser/eval/
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# eval-models — score ONE llama-server against the same fixture, for the
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# resident-model bake-off (#278, #250). Start a server with the gguf you want,
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# then:
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#
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# make eval-models MAVEN_LLM_URL=http://127.0.0.1:18100
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#
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# The report names carry the model llama-server reports, so runs from two
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# checkpoints stay apart. Only the LLM test runs — the classifier baselines do
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# not depend on the model and take the ONNX runtime with them.
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MAVEN_LLM_URL ?= http://127.0.0.1:18099
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eval-models:
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MAVEN_LLM_URL="$(MAVEN_LLM_URL)" $(GO) test -v -count=1 -timeout 60m \
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-run TestLLMRouterBaseline ./internal/router/eval/
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# stt-fixtures — regenerate the golden STT audio in cmd/mavsttd/testdata from
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# the piper voices (#288). The committed WAVs are synthesised, never recorded,
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# so this is the only way they should ever change. The spoken text is read out
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# of testdata/golden_v1.json, so edit the transcript there and rerun this.
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#
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# test-stt-golden runs both golden tests: TestGoldenAudioTranscription, which
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# scores the fixtures against ggml-small and self-skips when the model is
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# absent, and TestGoldenFixturesAreCanonical, which checks the committed audio
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# and the manifest with no model at all.
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# audit — the repo inventory: LOC per package, open TODOs, real stubs, living-doc
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# staleness, test shape, packages with no test. Read-only, prints, writes nothing.
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# Run it instead of rebuilding the same greps by hand; past sessions spent 93 of
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# them on this before their first edit. SECTION=loc|todo|stubs|docs|tests|gaps
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# narrows it.
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SECTION ?= all
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audit:
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@SECTION="$(SECTION)" ./scripts/audit.sh
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stt-fixtures:
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./scripts/gen-stt-fixtures.sh
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test-stt-golden:
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CGO_CFLAGS="$(CGO_CFLAGS)" CGO_LDFLAGS="$(CGO_LDFLAGS)" LD_LIBRARY_PATH="$(shell pwd)/deps/lib" \
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$(GO) test -v -count=1 -run TestGolden ./cmd/mavsttd/
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run-stt: build-stt
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LD_LIBRARY_PATH="$(shell pwd)/deps/lib" \
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./mavsttd -socket /tmp/maven/stt.sock -model $(WHISPER_MODEL)
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run-tts: build-tts
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LD_LIBRARY_PATH="$(shell pwd)/deps/piper" \
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./mavttsd -socket /tmp/maven/tts.sock \
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-piper $(PIPER_BIN) -model $(PIPER_MODEL) -espeak_data $(PIPER_ESPEAK)
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deps: deps-sentinel deps-whisper deps-piper
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deps-whisper:
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cd deps/whisper.cpp && cmake -B build -DCMAKE_BUILD_TYPE=Release \
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-DWHISPER_BUILD_TESTS=OFF -DWHISPER_BUILD_SERVER=OFF && \
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cmake --build build --config Release -j$$(nproc)
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cp deps/whisper.cpp/build/bin/libwhisper.so* deps/lib/
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cp deps/whisper.cpp/build/bin/libggml*.so* deps/lib/
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cp deps/whisper.cpp/build/bin/libparakeet.so* deps/lib/
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deps-piper:
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mkdir -p deps/
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curl -sL "https://github.com/rhasspy/piper/releases/download/2023.11.14-2/piper_linux_x86_64.tar.gz" \
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-o /tmp/piper.tar.gz
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tar -xzf /tmp/piper.tar.gz -C deps/
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# multilingual-e5-small: an asymmetric retrieval model. It is trained to match
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# a short question against a longer passage, which is what note recall is.
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# The quantized file is the one we download, deploy and measure — see
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# docs/evals/2026-08-04-recall-e5-small.md for what the swap bought.
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EMBEDDER_DIR := $(shell pwd)/models/embedder/multilingual-e5-small
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EMBEDDER_MODEL_URL := https://huggingface.co/Xenova/multilingual-e5-small/resolve/main/onnx/model_quantized.onnx
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EMBEDDER_TOKENIZER_URL := https://huggingface.co/Xenova/multilingual-e5-small/resolve/main/tokenizer.json
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download-embedder:
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mkdir -p $(EMBEDDER_DIR)
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curl -sL "$(EMBEDDER_MODEL_URL)" -o "$(EMBEDDER_DIR)/model_quantized.onnx"
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curl -sL "$(EMBEDDER_TOKENIZER_URL)" -o "$(EMBEDDER_DIR)/tokenizer.json"
|
|
@echo ""
|
|
@echo "embedder model downloaded to $(EMBEDDER_DIR)/"
|
|
@echo "To use it, add to mavend.json:"
|
|
@echo ' "voice": {'
|
|
@echo ' ...'
|
|
@echo ' "embedder": {'
|
|
@echo ' "model_path": "$(EMBEDDER_DIR)/model_quantized.onnx",'
|
|
@echo ' "tokenizer_path": "$(EMBEDDER_DIR)/tokenizer.json",'
|
|
@echo ' "lib_path": "/path/to/libonnxruntime.so"'
|
|
@echo ' }'
|
|
@echo ' }'
|
|
@echo ""
|
|
@echo "Install libonnxruntime.so from: https://github.com/microsoft/onnxruntime/releases"
|
|
@echo "e.g. on x86_64 Linux:"
|
|
@echo ' curl -sL "https://github.com/microsoft/onnxruntime/releases/download/v1.15.1/onnxruntime-linux-x64-1.15.1.tgz" | tar xz'
|
|
@echo ' sudo cp onnxruntime-linux-x64-1.15.1/lib/libonnxruntime.so* /usr/local/lib/'
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|
|
|
clean:
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|
rm -f mavend mavenclient mavsttd mavttsd mavweb mavpoll mavcaldav mavwaked mavmaild
|