mirror of
https://github.com/mudler/LocalAI.git
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3c3050f68e
* feat(backends): Drop bert.cpp use llama.cpp 3.2 as a drop-in replacement for bert.cpp Signed-off-by: Ettore Di Giacinto <mudler@localai.io> * chore(tests): make test more robust Signed-off-by: Ettore Di Giacinto <mudler@localai.io> --------- Signed-off-by: Ettore Di Giacinto <mudler@localai.io>
554 lines
18 KiB
Go
554 lines
18 KiB
Go
package model
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import (
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"context"
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"errors"
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"fmt"
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"os"
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"path/filepath"
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"slices"
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"strings"
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"time"
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"github.com/klauspost/cpuid/v2"
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grpc "github.com/mudler/LocalAI/pkg/grpc"
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"github.com/mudler/LocalAI/pkg/library"
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"github.com/mudler/LocalAI/pkg/utils"
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"github.com/mudler/LocalAI/pkg/xsysinfo"
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"github.com/phayes/freeport"
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"github.com/rs/zerolog/log"
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"github.com/elliotchance/orderedmap/v2"
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)
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var Aliases map[string]string = map[string]string{
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"go-llama": LLamaCPP,
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"llama": LLamaCPP,
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"embedded-store": LocalStoreBackend,
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"langchain-huggingface": LCHuggingFaceBackend,
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}
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var AutoDetect = os.Getenv("DISABLE_AUTODETECT") != "true"
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const (
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LlamaGGML = "llama-ggml"
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LLamaCPP = "llama-cpp"
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LLamaCPPAVX2 = "llama-cpp-avx2"
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LLamaCPPAVX = "llama-cpp-avx"
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LLamaCPPFallback = "llama-cpp-fallback"
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LLamaCPPCUDA = "llama-cpp-cuda"
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LLamaCPPHipblas = "llama-cpp-hipblas"
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LLamaCPPSycl16 = "llama-cpp-sycl_16"
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LLamaCPPSycl32 = "llama-cpp-sycl_32"
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LLamaCPPGRPC = "llama-cpp-grpc"
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WhisperBackend = "whisper"
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StableDiffusionBackend = "stablediffusion"
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TinyDreamBackend = "tinydream"
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PiperBackend = "piper"
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LCHuggingFaceBackend = "huggingface"
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LocalStoreBackend = "local-store"
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)
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func backendPath(assetDir, backend string) string {
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return filepath.Join(assetDir, "backend-assets", "grpc", backend)
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}
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// backendsInAssetDir returns the list of backends in the asset directory
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// that should be loaded
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func backendsInAssetDir(assetDir string) (map[string][]string, error) {
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// Exclude backends from automatic loading
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excludeBackends := []string{LocalStoreBackend}
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entry, err := os.ReadDir(backendPath(assetDir, ""))
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if err != nil {
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return nil, err
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}
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backends := make(map[string][]string)
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ENTRY:
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for _, e := range entry {
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for _, exclude := range excludeBackends {
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if e.Name() == exclude {
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continue ENTRY
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}
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}
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if e.IsDir() {
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continue
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}
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if strings.HasSuffix(e.Name(), ".log") {
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continue
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}
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// Skip the llama.cpp variants if we are autoDetecting
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// But we always load the fallback variant if it exists
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if strings.Contains(e.Name(), LLamaCPP) && !strings.Contains(e.Name(), LLamaCPPFallback) && AutoDetect {
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continue
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}
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backends[e.Name()] = []string{}
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}
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// if we are autoDetecting, we want to show the llama.cpp variants as a single backend
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if AutoDetect {
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// if we find the llama.cpp variants, show them of as a single backend (llama-cpp) as later we are going to pick that up
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// when starting the service
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foundLCPPAVX, foundLCPPAVX2, foundLCPPFallback, foundLCPPGRPC, foundLCPPCuda, foundLCPPHipblas, foundSycl16, foundSycl32 := false, false, false, false, false, false, false, false
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if _, ok := backends[LLamaCPP]; !ok {
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for _, e := range entry {
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if strings.Contains(e.Name(), LLamaCPPAVX2) && !foundLCPPAVX2 {
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backends[LLamaCPP] = append(backends[LLamaCPP], LLamaCPPAVX2)
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foundLCPPAVX2 = true
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}
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if strings.Contains(e.Name(), LLamaCPPAVX) && !foundLCPPAVX {
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backends[LLamaCPP] = append(backends[LLamaCPP], LLamaCPPAVX)
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foundLCPPAVX = true
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}
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if strings.Contains(e.Name(), LLamaCPPFallback) && !foundLCPPFallback {
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backends[LLamaCPP] = append(backends[LLamaCPP], LLamaCPPFallback)
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foundLCPPFallback = true
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}
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if strings.Contains(e.Name(), LLamaCPPGRPC) && !foundLCPPGRPC {
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backends[LLamaCPP] = append(backends[LLamaCPP], LLamaCPPGRPC)
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foundLCPPGRPC = true
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}
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if strings.Contains(e.Name(), LLamaCPPCUDA) && !foundLCPPCuda {
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backends[LLamaCPP] = append(backends[LLamaCPP], LLamaCPPCUDA)
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foundLCPPCuda = true
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}
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if strings.Contains(e.Name(), LLamaCPPHipblas) && !foundLCPPHipblas {
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backends[LLamaCPP] = append(backends[LLamaCPP], LLamaCPPHipblas)
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foundLCPPHipblas = true
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}
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if strings.Contains(e.Name(), LLamaCPPSycl16) && !foundSycl16 {
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backends[LLamaCPP] = append(backends[LLamaCPP], LLamaCPPSycl16)
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foundSycl16 = true
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}
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if strings.Contains(e.Name(), LLamaCPPSycl32) && !foundSycl32 {
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backends[LLamaCPP] = append(backends[LLamaCPP], LLamaCPPSycl32)
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foundSycl32 = true
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}
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}
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}
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}
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return backends, nil
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}
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func orderBackends(backends map[string][]string) ([]string, error) {
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// order backends from the asset directory.
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// as we scan for backends, we want to keep some order which backends are tried of.
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// for example, llama.cpp should be tried first, and we want to keep the huggingface backend at the last.
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// sets a priority list - first has more priority
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priorityList := []string{
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// First llama.cpp(variants) and llama-ggml to follow.
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// We keep the fallback to prevent that if the llama.cpp variants
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// that depends on shared libs if breaks have still a safety net.
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LLamaCPP, LlamaGGML, LLamaCPPFallback,
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}
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toTheEnd := []string{
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// last has to be huggingface
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LCHuggingFaceBackend,
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}
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// create an ordered map
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orderedBackends := orderedmap.NewOrderedMap[string, any]()
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// add priorityList first
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for _, p := range priorityList {
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if _, ok := backends[p]; ok {
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orderedBackends.Set(p, backends[p])
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}
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}
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for k, v := range backends {
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if !slices.Contains(toTheEnd, k) {
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if _, ok := orderedBackends.Get(k); !ok {
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orderedBackends.Set(k, v)
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}
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}
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}
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for _, t := range toTheEnd {
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if _, ok := backends[t]; ok {
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orderedBackends.Set(t, backends[t])
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}
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}
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return orderedBackends.Keys(), nil
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}
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// selectGRPCProcessByHostCapabilities selects the GRPC process to start based on system capabilities
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// Note: this is now relevant only for llama.cpp
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func selectGRPCProcessByHostCapabilities(backend, assetDir string, f16 bool) string {
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foundCUDA := false
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foundAMDGPU := false
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foundIntelGPU := false
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var grpcProcess string
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// Select backend now just for llama.cpp
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if backend != LLamaCPP {
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return ""
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}
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// Note: This environment variable is read by the LocalAI's llama.cpp grpc-server
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if os.Getenv("LLAMACPP_GRPC_SERVERS") != "" {
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log.Info().Msgf("[%s] attempting to load with GRPC variant", LLamaCPPGRPC)
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return backendPath(assetDir, LLamaCPPGRPC)
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}
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// Check for GPU-binaries that are shipped with single binary releases
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gpus, err := xsysinfo.GPUs()
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if err == nil {
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for _, gpu := range gpus {
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if strings.Contains(gpu.String(), "nvidia") {
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p := backendPath(assetDir, LLamaCPPCUDA)
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if _, err := os.Stat(p); err == nil {
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log.Info().Msgf("[%s] attempting to load with CUDA variant", backend)
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grpcProcess = p
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foundCUDA = true
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} else {
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log.Debug().Msgf("Nvidia GPU device found, no embedded CUDA variant found. You can ignore this message if you are using container with CUDA support")
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}
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}
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if strings.Contains(gpu.String(), "amd") {
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p := backendPath(assetDir, LLamaCPPHipblas)
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if _, err := os.Stat(p); err == nil {
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log.Info().Msgf("[%s] attempting to load with HIPBLAS variant", backend)
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grpcProcess = p
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foundAMDGPU = true
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} else {
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log.Debug().Msgf("AMD GPU device found, no embedded HIPBLAS variant found. You can ignore this message if you are using container with HIPBLAS support")
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}
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}
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if strings.Contains(gpu.String(), "intel") {
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backend := LLamaCPPSycl16
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if !f16 {
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backend = LLamaCPPSycl32
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}
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p := backendPath(assetDir, backend)
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if _, err := os.Stat(p); err == nil {
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log.Info().Msgf("[%s] attempting to load with Intel variant", backend)
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grpcProcess = p
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foundIntelGPU = true
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} else {
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log.Debug().Msgf("Intel GPU device found, no embedded SYCL variant found. You can ignore this message if you are using container with SYCL support")
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}
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}
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}
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}
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if foundCUDA || foundAMDGPU || foundIntelGPU {
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return grpcProcess
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}
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// No GPU found or no specific binaries found, try to load the CPU variant(s)
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// Select a binary based on availability/capability
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selectedProcess := ""
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// Check if we have a native build (llama-cpp) and use that
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if _, err := os.Stat(backendPath(assetDir, LLamaCPPFallback)); err == nil {
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log.Debug().Msgf("[%s] %s variant available", LLamaCPPFallback, backend)
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selectedProcess = backendPath(assetDir, LLamaCPPFallback)
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}
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// Check if we have a native build (llama-cpp) and use that instead
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// As a reminder, we do ultimately attempt again with the fallback variant
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// If things fail with what we select here
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if _, err := os.Stat(backendPath(assetDir, LLamaCPP)); err == nil {
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log.Debug().Msgf("[%s] attempting to load with native variant", backend)
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selectedProcess = backendPath(assetDir, LLamaCPP)
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}
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// IF we find any optimized binary, we use that
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if xsysinfo.HasCPUCaps(cpuid.AVX2) {
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p := backendPath(assetDir, LLamaCPPAVX2)
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if _, err := os.Stat(p); err == nil {
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log.Info().Msgf("[%s] attempting to load with AVX2 variant", backend)
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selectedProcess = p
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}
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} else if xsysinfo.HasCPUCaps(cpuid.AVX) {
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p := backendPath(assetDir, LLamaCPPAVX)
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if _, err := os.Stat(p); err == nil {
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log.Info().Msgf("[%s] attempting to load with AVX variant", backend)
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selectedProcess = p
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}
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}
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// Safety measure: check if the binary exists otherwise return empty string
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if _, err := os.Stat(selectedProcess); err == nil {
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return selectedProcess
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}
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return ""
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}
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func attemptLoadingOnFailure(backend string, ml *ModelLoader, o *Options, err error) (*Model, error) {
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// XXX: This is too backend specific(llama-cpp), remove this bit or generalize further
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// We failed somehow starting the binary. For instance, could be that we are missing
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// some libraries if running in binary-only mode.
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// In this case, we attempt to load the model with the fallback variant.
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// If not llama-cpp backend, return the error immediately
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if backend != LLamaCPP {
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return nil, err
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}
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log.Error().Msgf("[%s] Failed loading model, trying with fallback '%s', error: %s", backend, LLamaCPPFallback, err.Error())
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return ml.LoadModel(o.modelID, o.model, ml.grpcModel(LLamaCPPFallback, false, o))
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}
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// starts the grpcModelProcess for the backend, and returns a grpc client
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// It also loads the model
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func (ml *ModelLoader) grpcModel(backend string, autodetect bool, o *Options) func(string, string, string) (*Model, error) {
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return func(modelID, modelName, modelFile string) (*Model, error) {
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log.Debug().Msgf("Loading Model %s with gRPC (file: %s) (backend: %s): %+v", modelID, modelFile, backend, *o)
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var client *Model
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getFreeAddress := func() (string, error) {
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port, err := freeport.GetFreePort()
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if err != nil {
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return "", fmt.Errorf("failed allocating free ports: %s", err.Error())
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}
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return fmt.Sprintf("127.0.0.1:%d", port), nil
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}
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// If no specific model path is set for transformers/HF, set it to the model path
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for _, env := range []string{"HF_HOME", "TRANSFORMERS_CACHE", "HUGGINGFACE_HUB_CACHE"} {
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if os.Getenv(env) == "" {
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err := os.Setenv(env, ml.ModelPath)
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if err != nil {
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log.Error().Err(err).Str("name", env).Str("modelPath", ml.ModelPath).Msg("unable to set environment variable to modelPath")
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}
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}
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}
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// Check if the backend is provided as external
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if uri, ok := o.externalBackends[backend]; ok {
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log.Debug().Msgf("Loading external backend: %s", uri)
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// check if uri is a file or a address
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if fi, err := os.Stat(uri); err == nil {
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log.Debug().Msgf("external backend is file: %+v", fi)
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serverAddress, err := getFreeAddress()
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if err != nil {
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return nil, fmt.Errorf("failed allocating free ports: %s", err.Error())
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}
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// Make sure the process is executable
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process, err := ml.startProcess(uri, modelID, serverAddress)
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if err != nil {
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log.Error().Err(err).Str("path", uri).Msg("failed to launch ")
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return nil, err
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}
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log.Debug().Msgf("GRPC Service Started")
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client = NewModel(modelID, serverAddress, process)
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} else {
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log.Debug().Msg("external backend is a uri")
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// address
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client = NewModel(modelID, uri, nil)
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}
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} else {
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grpcProcess := backendPath(o.assetDir, backend)
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if err := utils.VerifyPath(grpcProcess, o.assetDir); err != nil {
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return nil, fmt.Errorf("refering to a backend not in asset dir: %s", err.Error())
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}
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if autodetect {
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// autoDetect GRPC process to start based on system capabilities
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if selectedProcess := selectGRPCProcessByHostCapabilities(backend, o.assetDir, o.gRPCOptions.F16Memory); selectedProcess != "" {
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grpcProcess = selectedProcess
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}
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}
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// Check if the file exists
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if _, err := os.Stat(grpcProcess); os.IsNotExist(err) {
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return nil, fmt.Errorf("backend not found: %s", grpcProcess)
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}
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serverAddress, err := getFreeAddress()
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if err != nil {
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return nil, fmt.Errorf("failed allocating free ports: %s", err.Error())
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}
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args := []string{}
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// Load the ld.so if it exists
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args, grpcProcess = library.LoadLDSO(o.assetDir, args, grpcProcess)
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// Make sure the process is executable in any circumstance
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process, err := ml.startProcess(grpcProcess, modelID, serverAddress, args...)
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if err != nil {
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return nil, err
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}
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log.Debug().Msgf("GRPC Service Started")
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client = NewModel(modelID, serverAddress, process)
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}
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log.Debug().Msgf("Wait for the service to start up")
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// Wait for the service to start up
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ready := false
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for i := 0; i < o.grpcAttempts; i++ {
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alive, err := client.GRPC(o.parallelRequests, ml.wd).HealthCheck(context.Background())
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if alive {
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log.Debug().Msgf("GRPC Service Ready")
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ready = true
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break
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}
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if err != nil && i == o.grpcAttempts-1 {
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log.Error().Err(err).Msg("failed starting/connecting to the gRPC service")
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}
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time.Sleep(time.Duration(o.grpcAttemptsDelay) * time.Second)
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}
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if !ready {
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log.Debug().Msgf("GRPC Service NOT ready")
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if process := client.Process(); process != nil {
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process.Stop()
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}
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return nil, fmt.Errorf("grpc service not ready")
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}
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options := *o.gRPCOptions
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options.Model = modelName
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options.ModelFile = modelFile
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options.ModelPath = ml.ModelPath
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log.Debug().Msgf("GRPC: Loading model with options: %+v", options)
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res, err := client.GRPC(o.parallelRequests, ml.wd).LoadModel(o.context, &options)
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if err != nil {
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if process := client.Process(); process != nil {
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process.Stop()
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}
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return nil, fmt.Errorf("could not load model: %w", err)
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}
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if !res.Success {
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if process := client.Process(); process != nil {
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process.Stop()
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}
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return nil, fmt.Errorf("could not load model (no success): %s", res.Message)
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}
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return client, nil
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}
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}
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func (ml *ModelLoader) ListAvailableBackends(assetdir string) ([]string, error) {
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backends, err := backendsInAssetDir(assetdir)
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if err != nil {
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return nil, err
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}
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return orderBackends(backends)
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}
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func (ml *ModelLoader) backendLoader(opts ...Option) (client grpc.Backend, err error) {
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o := NewOptions(opts...)
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log.Info().Msgf("Loading model '%s' with backend %s", o.modelID, o.backendString)
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backend := strings.ToLower(o.backendString)
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if realBackend, exists := Aliases[backend]; exists {
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backend = realBackend
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log.Debug().Msgf("%s is an alias of %s", backend, realBackend)
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}
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ml.stopActiveBackends(o.modelID, o.singleActiveBackend)
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var backendToConsume string
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switch backend {
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case PiperBackend:
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o.gRPCOptions.LibrarySearchPath = filepath.Join(o.assetDir, "backend-assets", "espeak-ng-data")
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backendToConsume = PiperBackend
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default:
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backendToConsume = backend
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}
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|
model, err := ml.LoadModel(o.modelID, o.model, ml.grpcModel(backendToConsume, AutoDetect, o))
|
|
if err != nil {
|
|
model, err = attemptLoadingOnFailure(backend, ml, o, err)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
}
|
|
|
|
return model.GRPC(o.parallelRequests, ml.wd), nil
|
|
}
|
|
|
|
func (ml *ModelLoader) stopActiveBackends(modelID string, singleActiveBackend bool) {
|
|
// If we can have only one backend active, kill all the others (except external backends)
|
|
if singleActiveBackend {
|
|
log.Debug().Msgf("Stopping all backends except '%s'", modelID)
|
|
err := ml.StopGRPC(allExcept(modelID))
|
|
if err != nil {
|
|
log.Error().Err(err).Str("keptModel", modelID).Msg("error while shutting down all backends except for the keptModel - greedyloader continuing")
|
|
}
|
|
}
|
|
}
|
|
|
|
func (ml *ModelLoader) Load(opts ...Option) (grpc.Backend, error) {
|
|
o := NewOptions(opts...)
|
|
|
|
// Return earlier if we have a model already loaded
|
|
// (avoid looping through all the backends)
|
|
if m := ml.CheckIsLoaded(o.modelID); m != nil {
|
|
log.Debug().Msgf("Model '%s' already loaded", o.modelID)
|
|
|
|
return m.GRPC(o.parallelRequests, ml.wd), nil
|
|
}
|
|
|
|
ml.stopActiveBackends(o.modelID, o.singleActiveBackend)
|
|
|
|
if o.backendString != "" {
|
|
return ml.backendLoader(opts...)
|
|
}
|
|
|
|
var err error
|
|
|
|
// get backends embedded in the binary
|
|
autoLoadBackends, err := ml.ListAvailableBackends(o.assetDir)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
// append externalBackends supplied by the user via the CLI
|
|
for _, b := range o.externalBackends {
|
|
autoLoadBackends = append(autoLoadBackends, b)
|
|
}
|
|
|
|
log.Debug().Msgf("Loading from the following backends (in order): %+v", autoLoadBackends)
|
|
|
|
log.Info().Msgf("Trying to load the model '%s' with the backend '%s'", o.modelID, autoLoadBackends)
|
|
|
|
for _, key := range autoLoadBackends {
|
|
log.Info().Msgf("[%s] Attempting to load", key)
|
|
options := append(opts, []Option{
|
|
WithBackendString(key),
|
|
}...)
|
|
|
|
model, modelerr := ml.backendLoader(options...)
|
|
if modelerr == nil && model != nil {
|
|
log.Info().Msgf("[%s] Loads OK", key)
|
|
return model, nil
|
|
} else if modelerr != nil {
|
|
err = errors.Join(err, fmt.Errorf("[%s]: %w", key, modelerr))
|
|
log.Info().Msgf("[%s] Fails: %s", key, modelerr.Error())
|
|
} else if model == nil {
|
|
err = errors.Join(err, fmt.Errorf("backend %s returned no usable model", key))
|
|
log.Info().Msgf("[%s] Fails: %s", key, "backend returned no usable model")
|
|
}
|
|
}
|
|
|
|
return nil, fmt.Errorf("could not load model - all backends returned error: %s", err.Error())
|
|
}
|