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* ⬆️ Update mudler/vllm.cpp Signed-off-by: github-actions[bot] <41898282+github-actions[bot]@users.noreply.github.com> * fix(vllm-cpp): track ABI v21 The updated engine exposes ABI v21 after extending its speech API. The Go backend does not bind that API, so its existing mirrors remain valid. The qwen3.5 warning fix is now present upstream, so the old patch no longer applies. Assisted-by: Codex:gpt-5 --------- Signed-off-by: github-actions[bot] <41898282+github-actions[bot]@users.noreply.github.com> Co-authored-by: mudler <2420543+mudler@users.noreply.github.com> Co-authored-by: localai-org-maint-bot <306269227+localai-org-maint-bot@users.noreply.github.com>
411 lines
17 KiB
Go
411 lines
17 KiB
Go
package main
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import (
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"os"
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"path/filepath"
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"testing"
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"unsafe"
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pb "github.com/mudler/LocalAI/pkg/grpc/proto"
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. "github.com/onsi/ginkgo/v2"
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. "github.com/onsi/gomega"
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)
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func TestVllmCpp(t *testing.T) {
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RegisterFailHandler(Fail)
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RunSpecs(t, "vllm-cpp suite")
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}
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// The Go POD mirrors must match the C struct layout of vllm.h (ABI v21)
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// byte-for-byte: these offsets are the C offsets on LP64 (linux/darwin
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// amd64+arm64). A failure here means govllmcpp.go drifted from vllm.h.
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var _ = Describe("C ABI struct mirrors", func() {
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It("declares the ABI version the pinned engine reports", func() {
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// VLLM_ABI_VERSION in the vllm.h of VLLM_CPP_VERSION (Makefile).
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// Moving the pin past this without growing the mirrors below ships a
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// backend that refuses every load at startup (issue #11379).
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Expect(abiVersion).To(Equal(21))
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})
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It("cModelParams matches vllm_model_params", func() {
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var p cModelParams
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Expect(unsafe.Offsetof(p.ModelPath)).To(Equal(uintptr(0)))
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Expect(unsafe.Offsetof(p.TokenizerConfigPath)).To(Equal(uintptr(8)))
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Expect(unsafe.Offsetof(p.BlockSize)).To(Equal(uintptr(16)))
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Expect(unsafe.Offsetof(p.NumBlocks)).To(Equal(uintptr(20)))
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Expect(unsafe.Offsetof(p.MaxModelLen)).To(Equal(uintptr(24)))
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Expect(unsafe.Offsetof(p.MaxNumSeqs)).To(Equal(uintptr(28)))
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Expect(unsafe.Offsetof(p.ToolParser)).To(Equal(uintptr(32)))
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Expect(unsafe.Offsetof(p.ReasoningParser)).To(Equal(uintptr(40)))
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Expect(unsafe.Offsetof(p.SpeculativeConfig)).To(Equal(uintptr(48)))
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Expect(unsafe.Offsetof(p.EnablePrefixCaching)).To(Equal(uintptr(56)))
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Expect(unsafe.Offsetof(p.MaxNumBatchedTokens)).To(Equal(uintptr(60)))
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Expect(unsafe.Offsetof(p.SchedulingPolicy)).To(Equal(uintptr(64)))
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Expect(unsafe.Offsetof(p.KVTransferConfig)).To(Equal(uintptr(72)))
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Expect(unsafe.Offsetof(p.OffloadConfig)).To(Equal(uintptr(80)))
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Expect(unsafe.Offsetof(p.EnableJumpForward)).To(Equal(uintptr(88)))
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Expect(unsafe.Offsetof(p.Device)).To(Equal(uintptr(92)))
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// 96: gpu_memory_utilization is a double, so it takes the next
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// 8-aligned slot after the int32 pair. Go pads identically.
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Expect(unsafe.Offsetof(p.GPUMemoryUtil)).To(Equal(uintptr(96)))
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Expect(unsafe.Offsetof(p.KVCacheMemoryBytes)).To(Equal(uintptr(104)))
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Expect(unsafe.Offsetof(p.LanguageModelOnly)).To(Equal(uintptr(112)))
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Expect(unsafe.Offsetof(p.LimitMMPerPrompt)).To(Equal(uintptr(120)))
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Expect(unsafe.Sizeof(p)).To(Equal(uintptr(128)))
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})
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It("cSamplingParams matches vllm_sampling_params (ABI v8)", func() {
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var p cSamplingParams
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Expect(unsafe.Offsetof(p.Temperature)).To(Equal(uintptr(0)))
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Expect(unsafe.Offsetof(p.TopP)).To(Equal(uintptr(4)))
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Expect(unsafe.Offsetof(p.TopK)).To(Equal(uintptr(8)))
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Expect(unsafe.Offsetof(p.MinP)).To(Equal(uintptr(12)))
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Expect(unsafe.Offsetof(p.MaxTokens)).To(Equal(uintptr(16)))
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Expect(unsafe.Offsetof(p.Seed)).To(Equal(uintptr(24)))
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Expect(unsafe.Offsetof(p.HasSeed)).To(Equal(uintptr(32)))
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Expect(unsafe.Offsetof(p.PresencePenalty)).To(Equal(uintptr(36)))
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Expect(unsafe.Offsetof(p.FrequencyPenalty)).To(Equal(uintptr(40)))
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Expect(unsafe.Offsetof(p.RepetitionPenalty)).To(Equal(uintptr(44)))
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Expect(unsafe.Offsetof(p.MinTokens)).To(Equal(uintptr(48)))
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Expect(unsafe.Offsetof(p.IgnoreEOS)).To(Equal(uintptr(52)))
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Expect(unsafe.Offsetof(p.Stop)).To(Equal(uintptr(56)))
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Expect(unsafe.Offsetof(p.NStop)).To(Equal(uintptr(64)))
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Expect(unsafe.Offsetof(p.StructuredJSON)).To(Equal(uintptr(72)))
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Expect(unsafe.Offsetof(p.StructuredRegex)).To(Equal(uintptr(80)))
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Expect(unsafe.Offsetof(p.StructuredChoice)).To(Equal(uintptr(88)))
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Expect(unsafe.Offsetof(p.NStructuredChoice)).To(Equal(uintptr(96)))
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Expect(unsafe.Offsetof(p.StructuredGrammar)).To(Equal(uintptr(104)))
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Expect(unsafe.Offsetof(p.StructuredJSONObject)).To(Equal(uintptr(112)))
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Expect(unsafe.Offsetof(p.LogitsProcessor)).To(Equal(uintptr(120)))
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Expect(unsafe.Offsetof(p.LogitsProcessorUserData)).To(Equal(uintptr(128)))
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Expect(unsafe.Sizeof(p)).To(Equal(uintptr(136)))
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})
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It("cCompletion matches vllm_completion", func() {
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var c cCompletion
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Expect(unsafe.Offsetof(c.Text)).To(Equal(uintptr(0)))
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Expect(unsafe.Offsetof(c.FinishReason)).To(Equal(uintptr(8)))
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Expect(unsafe.Offsetof(c.PromptTokens)).To(Equal(uintptr(16)))
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Expect(unsafe.Offsetof(c.CompletionTokens)).To(Equal(uintptr(20)))
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Expect(unsafe.Sizeof(c)).To(Equal(uintptr(24)))
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})
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})
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// Pin/mirror skew is the failure mode this backend is most exposed to: the Go
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// PODs above are hand-written against one VLLM_ABI_VERSION, and the Makefile
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// pins the vllm.cpp commit that produces it. This spec catches drift without
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// needing model weights - set VLLM_CPP_LIBRARY to a built libvllm and it binds
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// every symbol and compares the library's reported ABI against the mirrors'.
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var _ = Describe("real library ABI handshake", func() {
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It("binds every symbol and reports the ABI the mirrors were written against", func() {
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lib := os.Getenv("VLLM_CPP_LIBRARY")
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if lib == "" {
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Skip("VLLM_CPP_LIBRARY not set; skipping the real-library handshake")
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}
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Expect(registerLib(lib)).To(Succeed())
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Expect(vllmABIVersion()).To(Equal(int32(abiVersion)))
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Expect(vllmVersion()).NotTo(BeEmpty())
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})
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})
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var _ = Describe("parseOptions", func() {
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It("extracts the engine sizing knobs", func() {
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lo := parseOptions(&pb.ModelOptions{Options: []string{
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"block_size:64", "num_blocks:512", "max_num_seqs:32", "unknown:ignored",
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}})
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Expect(lo.blockSize).To(Equal(int32(64)))
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Expect(lo.numBlocks).To(Equal(int32(512)))
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Expect(lo.maxNumSeqs).To(Equal(int32(32)))
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})
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It("ignores malformed and non-positive values", func() {
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lo := parseOptions(&pb.ModelOptions{Options: []string{
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"block_size:abc", "num_blocks:-1", "max_num_seqs", "block_size:0",
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}})
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Expect(lo).To(Equal(loadOptions{}))
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})
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It("carries a speculative_config JSON value through the legacy options list", func() {
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// strings.Cut splits on the FIRST colon only, so a JSON object value
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// survives the "key:value" spelling intact.
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lo := parseOptions(&pb.ModelOptions{Options: []string{
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`speculative_config:{"method":"mtp","num_speculative_tokens":1}`,
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}})
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Expect(lo.speculativeConfig).To(Equal(`{"method":"mtp","num_speculative_tokens":1}`))
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})
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})
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var _ = Describe("engine_args", func() {
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It("maps every load knob onto the C model params", func() {
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lo := parseOptions(&pb.ModelOptions{EngineArgs: `{
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"block_size": 64,
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"num_blocks": 1024,
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"max_model_len": 16384,
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"max_num_seqs": 32,
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"max_num_batched_tokens": 8192,
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"enable_prefix_caching": true,
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"scheduling_policy": "lpm",
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"tool_parser": "qwen3",
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"reasoning_parser": "deepseek_r1",
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"tokenizer_config": "/models/tok/tokenizer_config.json"
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}`})
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Expect(lo.blockSize).To(Equal(int32(64)))
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Expect(lo.numBlocks).To(Equal(int32(1024)))
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Expect(lo.maxModelLen).To(Equal(int32(16384)))
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Expect(lo.maxNumSeqs).To(Equal(int32(32)))
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Expect(lo.maxNumBatchedTokens).To(Equal(int32(8192)))
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Expect(lo.enablePrefixCaching).To(Equal(int32(1)))
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Expect(lo.schedulingPolicy).To(Equal("lpm"))
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Expect(lo.toolParser).To(Equal("qwen3"))
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Expect(lo.reasoningParser).To(Equal("deepseek_r1"))
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Expect(lo.tokenizerConfigPath).To(Equal("/models/tok/tokenizer_config.json"))
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})
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It("re-marshals a nested speculative_config object to JSON for the engine", func() {
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lo := parseOptions(&pb.ModelOptions{EngineArgs: `{
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"speculative_config": {"method": "mtp", "num_speculative_tokens": 1}
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}`})
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Expect(lo.speculativeConfig).To(MatchJSON(`{"method":"mtp","num_speculative_tokens":1}`))
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})
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It("re-marshals a nested kv_transfer_config object (LMCache) to JSON", func() {
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lo := parseOptions(&pb.ModelOptions{EngineArgs: `{
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"kv_transfer_config": {
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"kv_connector": "LMCacheConnector",
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"kv_role": "kv_both",
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"kv_connector_extra_config": {"host": "127.0.0.1", "port": 65432}
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}
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}`})
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Expect(lo.kvTransferConfig).To(MatchJSON(`{
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"kv_connector":"LMCacheConnector",
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"kv_role":"kv_both",
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"kv_connector_extra_config":{"host":"127.0.0.1","port":65432}
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}`))
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})
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It("accepts a pre-encoded JSON string for the object-valued knobs", func() {
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// A config written by hand (or round-tripped through a flat store) may
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// carry the object as a string; both spellings reach the engine the same.
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lo := parseOptions(&pb.ModelOptions{EngineArgs: `{
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"speculative_config": "{\"method\":\"ngram\",\"num_speculative_tokens\":4}"
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}`})
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Expect(lo.speculativeConfig).To(MatchJSON(`{"method":"ngram","num_speculative_tokens":4}`))
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})
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It("maps enable_prefix_caching false onto the force-OFF tri-state", func() {
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// The C ABI tri-state is 0=model default, 1=on, 2=off, so an explicit
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// `false` must NOT collapse to the 0 that means "let the model decide".
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lo := parseOptions(&pb.ModelOptions{EngineArgs: `{"enable_prefix_caching": false}`})
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Expect(lo.enablePrefixCaching).To(Equal(int32(2)))
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})
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It("leaves the prefix-caching tri-state at the model default when unset", func() {
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lo := parseOptions(&pb.ModelOptions{EngineArgs: `{"max_num_seqs": 4}`})
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Expect(lo.enablePrefixCaching).To(Equal(int32(0)))
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})
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It("accepts the radix-attention alias upstream documents for prefix caching", func() {
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lo := parseOptions(&pb.ModelOptions{EngineArgs: `{"enable_radix_attention": true}`})
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Expect(lo.enablePrefixCaching).To(Equal(int32(1)))
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})
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It("maps enable_jump_forward onto its own tri-state", func() {
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// ABI v10. Same tri-state shape as prefix caching, and the same trap:
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// an explicit false must be force-OFF (2), not the 0 that defers to the
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// environment.
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on := parseOptions(&pb.ModelOptions{EngineArgs: `{"enable_jump_forward": true}`})
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Expect(on.enableJumpForward).To(Equal(int32(1)))
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off := parseOptions(&pb.ModelOptions{EngineArgs: `{"enable_jump_forward": false}`})
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Expect(off.enableJumpForward).To(Equal(int32(2)))
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unset := parseOptions(&pb.ModelOptions{EngineArgs: `{"max_num_seqs": 4}`})
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Expect(unset.enableJumpForward).To(Equal(int32(0)))
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})
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It("reads enable_jump_forward from the legacy options list too", func() {
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lo := parseOptions(&pb.ModelOptions{Options: []string{"enable_jump_forward:true"}})
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Expect(lo.enableJumpForward).To(Equal(int32(1)))
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})
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It("lets engine_args override the legacy options list", func() {
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lo := parseOptions(&pb.ModelOptions{
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Options: []string{"max_num_seqs:8", "block_size:16"},
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EngineArgs: `{"max_num_seqs": 64}`,
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})
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Expect(lo.maxNumSeqs).To(Equal(int32(64))) // engine_args wins
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Expect(lo.blockSize).To(Equal(int32(16))) // untouched keys survive
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})
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It("ignores malformed engine_args rather than failing the load", func() {
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lo := parseOptions(&pb.ModelOptions{
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Options: []string{"max_num_seqs:8"},
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EngineArgs: `{not json`,
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})
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Expect(lo.maxNumSeqs).To(Equal(int32(8)))
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})
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It("ignores unknown keys", func() {
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lo := parseOptions(&pb.ModelOptions{EngineArgs: `{"gpu_memory_utilization": 0.9}`})
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Expect(lo).To(Equal(loadOptions{}))
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})
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})
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var _ = Describe("samplingFromPredict", func() {
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It("maps the sampling fields onto the C POD", func() {
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sp, _ := samplingFromPredict(&pb.PredictOptions{
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Temperature: 0.7,
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TopP: 0.9,
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TopK: 40,
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MinP: 0.05,
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Tokens: 128,
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Seed: 42,
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Penalty: 1.1,
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PresencePenalty: 0.5,
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FrequencyPenalty: 0.25,
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IgnoreEOS: true,
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})
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Expect(sp.Temperature).To(BeNumerically("~", 0.7, 1e-6))
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Expect(sp.TopP).To(BeNumerically("~", 0.9, 1e-6))
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Expect(sp.TopK).To(Equal(int32(40)))
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Expect(sp.MinP).To(BeNumerically("~", 0.05, 1e-6))
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Expect(sp.MaxTokens).To(Equal(int32(128)))
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Expect(sp.HasSeed).To(Equal(int32(1)))
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Expect(sp.Seed).To(Equal(uint64(42)))
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Expect(sp.RepetitionPenalty).To(BeNumerically("~", 1.1, 1e-6))
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Expect(sp.PresencePenalty).To(BeNumerically("~", 0.5, 1e-6))
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Expect(sp.FrequencyPenalty).To(BeNumerically("~", 0.25, 1e-6))
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Expect(sp.IgnoreEOS).To(Equal(int32(1)))
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})
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It("keeps the engine defaults for unset fields and stays unseeded", func() {
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sp, keep := samplingFromPredict(&pb.PredictOptions{})
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Expect(sp.TopP).To(BeNumerically("~", 1.0, 1e-6))
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Expect(sp.RepetitionPenalty).To(BeNumerically("~", 1.0, 1e-6))
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Expect(sp.MaxTokens).To(Equal(int32(0))) // unbounded, engine-capped.
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Expect(sp.HasSeed).To(Equal(int32(0)))
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Expect(sp.Stop).To(Equal(uintptr(0)))
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Expect(sp.StructuredGrammar).To(Equal(uintptr(0)))
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Expect(keep).To(BeEmpty())
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})
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It("wires stop prompts and the grammar constraint", func() {
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sp, keep := samplingFromPredict(&pb.PredictOptions{
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StopPrompts: []string{"</s>", "\n\n"},
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Grammar: "root ::= \"yes\" | \"no\"",
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})
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Expect(sp.NStop).To(Equal(int32(2)))
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Expect(sp.Stop).NotTo(Equal(uintptr(0)))
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Expect(sp.StructuredGrammar).NotTo(Equal(uintptr(0)))
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Expect(keep).NotTo(BeEmpty())
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})
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})
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// The engine resolves speculative_config.model against a local directory or
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// ~/.cache/huggingface/hub ONLY - it never downloads. LocalAI keeps models in
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// its own directory, so a bare repo id would miss the HF cache and fail deep in
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// the load with a confusing "draft checkpoint not found". Resolve it here.
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var _ = Describe("resolveDraftModelPath", func() {
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var modelsDir string
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BeforeEach(func() {
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modelsDir = GinkgoT().TempDir()
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})
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// draftDir creates a plausible draft checkpoint under models/.
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draftDir := func(name string) string {
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d := filepath.Join(modelsDir, name)
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Expect(os.MkdirAll(d, 0o750)).To(Succeed())
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Expect(os.WriteFile(filepath.Join(d, "config.json"), []byte("{}"), 0o600)).To(Succeed())
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return d
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}
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It("rewrites a repo id to the matching directory in the models dir", func() {
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want := draftDir("Qwen3.6-27B-DFlash")
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spec := `{"method":"dflash","model":"z-lab/Qwen3.6-27B-DFlash"}`
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out, err := resolveDraftModelPath(spec, modelsDir)
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Expect(err).ToNot(HaveOccurred())
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Expect(out).To(MatchJSON(`{"method":"dflash","model":"` + want + `"}`))
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})
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It("rewrites a models-dir-relative path", func() {
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want := draftDir("drafts__dflash")
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spec := `{"method":"dflash","model":"drafts__dflash"}`
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out, err := resolveDraftModelPath(spec, modelsDir)
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Expect(err).ToNot(HaveOccurred())
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Expect(out).To(ContainSubstring(want))
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})
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It("leaves an absolute path that already resolves alone", func() {
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abs := draftDir("elsewhere")
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spec := `{"method":"dflash","model":"` + abs + `"}`
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out, err := resolveDraftModelPath(spec, modelsDir)
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Expect(err).ToNot(HaveOccurred())
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Expect(out).To(MatchJSON(spec))
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})
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It("fails with an actionable error when the draft is nowhere on disk", func() {
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// Silently passing the repo id through would surface as an HF-cache
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// miss inside the engine, which reads as "your model is broken".
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spec := `{"method":"dflash","model":"z-lab/Not-Downloaded"}`
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_, err := resolveDraftModelPath(spec, modelsDir)
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Expect(err).To(HaveOccurred())
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Expect(err.Error()).To(ContainSubstring("z-lab/Not-Downloaded"))
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Expect(err.Error()).To(ContainSubstring(modelsDir))
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})
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It("requires a model key for dflash", func() {
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_, err := resolveDraftModelPath(`{"method":"dflash"}`, modelsDir)
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Expect(err).To(HaveOccurred())
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Expect(err.Error()).To(ContainSubstring("model"))
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})
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It("leaves mtp and ngram configs untouched", func() {
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// Neither has a separate draft checkpoint to resolve.
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for _, spec := range []string{
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`{"method":"mtp"}`,
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`{"method":"ngram","num_speculative_tokens":4}`,
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} {
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out, err := resolveDraftModelPath(spec, modelsDir)
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Expect(err).ToNot(HaveOccurred())
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Expect(out).To(MatchJSON(spec))
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}
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})
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It("passes a malformed document through for the engine to reject", func() {
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// The engine owns config validation and produces the better message.
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out, err := resolveDraftModelPath(`{not json`, modelsDir)
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Expect(err).ToNot(HaveOccurred())
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Expect(out).To(Equal(`{not json`))
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})
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It("is a no-op on an empty config", func() {
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out, err := resolveDraftModelPath("", modelsDir)
|
|
Expect(err).ToNot(HaveOccurred())
|
|
Expect(out).To(BeEmpty())
|
|
})
|
|
})
|
|
|
|
var _ = Describe("validModelPath", func() {
|
|
It("accepts a .gguf file", func() {
|
|
dir := GinkgoT().TempDir()
|
|
p := filepath.Join(dir, "model.gguf")
|
|
Expect(os.WriteFile(p, []byte("GGUF"), 0o600)).To(Succeed())
|
|
Expect(validModelPath(p)).To(Succeed())
|
|
})
|
|
It("accepts a directory with config.json", func() {
|
|
dir := GinkgoT().TempDir()
|
|
Expect(os.WriteFile(filepath.Join(dir, "config.json"), []byte("{}"), 0o600)).To(Succeed())
|
|
Expect(validModelPath(dir)).To(Succeed())
|
|
})
|
|
It("refuses a directory without config.json (greedy-probe rule)", func() {
|
|
Expect(validModelPath(GinkgoT().TempDir())).NotTo(Succeed())
|
|
})
|
|
It("refuses a non-gguf file", func() {
|
|
dir := GinkgoT().TempDir()
|
|
p := filepath.Join(dir, "weights.bin")
|
|
Expect(os.WriteFile(p, []byte("x"), 0o600)).To(Succeed())
|
|
Expect(validModelPath(p)).NotTo(Succeed())
|
|
})
|
|
It("refuses a missing path", func() {
|
|
Expect(validModelPath("/nonexistent/model.gguf")).NotTo(Succeed())
|
|
})
|
|
})
|