forked from TrueCloudLab/neoneo-go
03ff2976ed
goal is to be consistent with C# implementation. For writing []byte WriteBytes used and for byte - WriteVarByte.
359 lines
9 KiB
Go
359 lines
9 KiB
Go
package server
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import (
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"context"
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"fmt"
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"os"
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"os/signal"
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"github.com/CityOfZion/neo-go/config"
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"github.com/CityOfZion/neo-go/pkg/core"
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"github.com/CityOfZion/neo-go/pkg/core/storage"
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"github.com/CityOfZion/neo-go/pkg/io"
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"github.com/CityOfZion/neo-go/pkg/network"
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"github.com/CityOfZion/neo-go/pkg/network/metrics"
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"github.com/CityOfZion/neo-go/pkg/rpc"
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"github.com/pkg/errors"
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log "github.com/sirupsen/logrus"
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"github.com/urfave/cli"
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)
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// NewCommands returns 'node' command.
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func NewCommands() []cli.Command {
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var cfgFlags = []cli.Flag{
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cli.StringFlag{Name: "config-path"},
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cli.BoolFlag{Name: "privnet, p"},
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cli.BoolFlag{Name: "mainnet, m"},
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cli.BoolFlag{Name: "testnet, t"},
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cli.BoolFlag{Name: "debug, d"},
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}
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var cfgWithCountFlags = make([]cli.Flag, len(cfgFlags))
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copy(cfgWithCountFlags, cfgFlags)
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cfgWithCountFlags = append(cfgWithCountFlags,
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cli.UintFlag{
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Name: "count, c",
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Usage: "number of blocks to be processed (default or 0: all chain)",
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},
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cli.UintFlag{
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Name: "skip, s",
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Usage: "number of blocks to skip (default: 0)",
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},
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)
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var cfgCountOutFlags = make([]cli.Flag, len(cfgWithCountFlags))
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copy(cfgCountOutFlags, cfgWithCountFlags)
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cfgCountOutFlags = append(cfgCountOutFlags, cli.StringFlag{
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Name: "out, o",
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Usage: "Output file (stdout if not given)",
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})
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var cfgCountInFlags = make([]cli.Flag, len(cfgWithCountFlags))
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copy(cfgCountInFlags, cfgWithCountFlags)
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cfgCountInFlags = append(cfgCountInFlags, cli.StringFlag{
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Name: "in, i",
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Usage: "Input file (stdin if not given)",
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})
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return []cli.Command{
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{
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Name: "node",
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Usage: "start a NEO node",
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Action: startServer,
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Flags: cfgFlags,
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},
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{
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Name: "db",
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Usage: "database manipulations",
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Subcommands: []cli.Command{
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{
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Name: "dump",
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Usage: "dump blocks (starting with block #1) to the file",
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Action: dumpDB,
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Flags: cfgCountOutFlags,
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},
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{
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Name: "restore",
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Usage: "restore blocks from the file",
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Action: restoreDB,
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Flags: cfgCountInFlags,
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},
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},
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},
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}
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}
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func newGraceContext() context.Context {
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ctx, cancel := context.WithCancel(context.Background())
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stop := make(chan os.Signal, 1)
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signal.Notify(stop, os.Interrupt)
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go func() {
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<-stop
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cancel()
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}()
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return ctx
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}
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// getConfigFromContext looks at path and mode flags in the given config and
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// returns appropriate config.
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func getConfigFromContext(ctx *cli.Context) (config.Config, error) {
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var net = config.ModePrivNet
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if ctx.Bool("testnet") {
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net = config.ModeTestNet
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}
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if ctx.Bool("mainnet") {
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net = config.ModeMainNet
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}
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configPath := "./config"
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if argCp := ctx.String("config-path"); argCp != "" {
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configPath = argCp
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}
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return config.Load(configPath, net)
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}
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// handleLoggingParams reads logging parameters.
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// If user selected debug level -- function enables it.
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// If logPath is configured -- function creates dir and file for logging.
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func handleLoggingParams(ctx *cli.Context, cfg config.ApplicationConfiguration) error {
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if ctx.Bool("debug") {
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log.SetLevel(log.DebugLevel)
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}
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if logPath := cfg.LogPath; logPath != "" {
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if err := io.MakeDirForFile(logPath, "logger"); err != nil {
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return err
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}
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f, err := os.Create(logPath)
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if err != nil {
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return err
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}
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log.SetOutput(f)
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}
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return nil
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}
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func getCountAndSkipFromContext(ctx *cli.Context) (uint32, uint32) {
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count := uint32(ctx.Uint("count"))
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skip := uint32(ctx.Uint("skip"))
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return count, skip
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}
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func dumpDB(ctx *cli.Context) error {
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cfg, err := getConfigFromContext(ctx)
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if err != nil {
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return cli.NewExitError(err, 1)
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}
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if err := handleLoggingParams(ctx, cfg.ApplicationConfiguration); err != nil {
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return cli.NewExitError(err, 1)
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}
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count, skip := getCountAndSkipFromContext(ctx)
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var outStream = os.Stdout
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if out := ctx.String("out"); out != "" {
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outStream, err = os.Create(out)
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if err != nil {
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return cli.NewExitError(err, 1)
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}
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}
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defer outStream.Close()
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writer := io.NewBinWriterFromIO(outStream)
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chain, err := initBlockChain(cfg)
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if err != nil {
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return cli.NewExitError(err, 1)
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}
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go chain.Run()
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chainHeight := chain.BlockHeight()
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if skip+count > chainHeight {
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return cli.NewExitError(fmt.Errorf("chain is not that high (%d) to dump %d blocks starting from %d", chainHeight, count, skip), 1)
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}
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if count == 0 {
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count = chainHeight - skip
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}
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writer.WriteLE(count)
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for i := skip + 1; i <= skip+count; i++ {
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bh := chain.GetHeaderHash(int(i))
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b, err := chain.GetBlock(bh)
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if err != nil {
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return cli.NewExitError(fmt.Errorf("failed to get block %d: %s", i, err), 1)
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}
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buf := io.NewBufBinWriter()
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b.EncodeBinary(buf.BinWriter)
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bytes := buf.Bytes()
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writer.WriteVarBytes(bytes)
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if writer.Err != nil {
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return cli.NewExitError(err, 1)
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}
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}
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chain.Close()
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return nil
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}
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func restoreDB(ctx *cli.Context) error {
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cfg, err := getConfigFromContext(ctx)
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if err != nil {
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return err
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}
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if err := handleLoggingParams(ctx, cfg.ApplicationConfiguration); err != nil {
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return cli.NewExitError(err, 1)
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}
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count, skip := getCountAndSkipFromContext(ctx)
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var inStream = os.Stdin
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if in := ctx.String("in"); in != "" {
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inStream, err = os.Open(in)
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if err != nil {
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return cli.NewExitError(err, 1)
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}
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}
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defer inStream.Close()
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reader := io.NewBinReaderFromIO(inStream)
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chain, err := initBlockChain(cfg)
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if err != nil {
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return err
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}
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go chain.Run()
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var allBlocks uint32
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reader.ReadLE(&allBlocks)
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if reader.Err != nil {
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return cli.NewExitError(err, 1)
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}
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if skip+count > allBlocks {
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return cli.NewExitError(fmt.Errorf("input file has only %d blocks, can't read %d starting from %d", allBlocks, count, skip), 1)
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}
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if count == 0 {
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count = allBlocks
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}
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i := uint32(0)
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for ; i < skip; i++ {
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_, err := readBlock(reader)
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if err != nil {
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return cli.NewExitError(err, 1)
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}
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}
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for ; i < skip+count; i++ {
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bytes, err := readBlock(reader)
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block := &core.Block{}
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newReader := io.NewBinReaderFromBuf(bytes)
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block.DecodeBinary(newReader)
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if err != nil {
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return cli.NewExitError(err, 1)
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}
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err = chain.AddBlock(block)
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if err != nil {
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return cli.NewExitError(fmt.Errorf("failed to add block %d: %s", i, err), 1)
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}
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}
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chain.Close()
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return nil
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}
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// readBlock performs reading of block size and then bytes with the length equal to that size.
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func readBlock(reader *io.BinReader) ([]byte, error) {
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var size uint32
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reader.ReadLE(&size)
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bytes := make([]byte, size)
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reader.ReadLE(bytes)
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if reader.Err != nil {
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return nil, reader.Err
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}
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return bytes, nil
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}
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func startServer(ctx *cli.Context) error {
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cfg, err := getConfigFromContext(ctx)
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if err != nil {
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return err
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}
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if err := handleLoggingParams(ctx, cfg.ApplicationConfiguration); err != nil {
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return err
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}
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grace, cancel := context.WithCancel(newGraceContext())
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defer cancel()
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serverConfig := network.NewServerConfig(cfg)
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chain, err := initBlockChain(cfg)
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if err != nil {
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return err
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}
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configureAddresses(cfg.ApplicationConfiguration)
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server := network.NewServer(serverConfig, chain)
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rpcServer := rpc.NewServer(chain, cfg.ApplicationConfiguration.RPC, server)
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errChan := make(chan error)
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monitoring := metrics.NewMetricsService(cfg.ApplicationConfiguration.Monitoring)
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go chain.Run()
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go server.Start(errChan)
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go rpcServer.Start(errChan)
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go monitoring.Start()
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fmt.Println(logo())
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fmt.Println(server.UserAgent)
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fmt.Println()
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var shutdownErr error
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Main:
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for {
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select {
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case err := <-errChan:
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shutdownErr = errors.Wrap(err, "Error encountered by server")
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cancel()
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case <-grace.Done():
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server.Shutdown()
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if serverErr := rpcServer.Shutdown(); serverErr != nil {
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shutdownErr = errors.Wrap(serverErr, "Error encountered whilst shutting down server")
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}
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monitoring.ShutDown()
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chain.Close()
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break Main
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}
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}
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if shutdownErr != nil {
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return cli.NewExitError(shutdownErr, 1)
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}
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return nil
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}
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// configureAddresses sets up addresses for RPC and Monitoring depending from the provided config.
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// In case RPC or Monitoring Address provided each of them will use it.
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// In case global Address (of the node) provided and RPC/Monitoring don't have configured addresses they will
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// use global one. So Node and RPC and Monitoring will run on one address.
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func configureAddresses(cfg config.ApplicationConfiguration) {
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if cfg.Address != "" {
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if cfg.RPC.Address == "" {
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cfg.RPC.Address = cfg.Address
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}
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if cfg.Monitoring.Address == "" {
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cfg.Monitoring.Address = cfg.Address
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}
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}
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}
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// initBlockChain initializes BlockChain with preselected DB.
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func initBlockChain(cfg config.Config) (*core.Blockchain, error) {
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store, err := storage.NewStore(cfg.ApplicationConfiguration.DBConfiguration)
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if err != nil {
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return nil, cli.NewExitError(fmt.Errorf("could not initialize storage: %s", err), 1)
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}
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chain, err := core.NewBlockchain(store, cfg.ProtocolConfiguration)
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if err != nil {
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return nil, cli.NewExitError(fmt.Errorf("could not initialize blockchain: %s", err), 1)
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}
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return chain, nil
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}
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func logo() string {
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return `
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_ ____________ __________
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/ | / / ____/ __ \ / ____/ __ \
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/ |/ / __/ / / / /_____/ / __/ / / /
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/ /| / /___/ /_/ /_____/ /_/ / /_/ /
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/_/ |_/_____/\____/ \____/\____/
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`
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}
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