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Miller assumes 64-bit integers, but in Go, the int type varies in size depending on the architecture: 32-bit architectures have int equivalent to int32. As a result, the supported range of integer values is greatly reduced on 32-bit architectures compared to what is suggested by the documentation. This patch explicitly uses int64 wherever 64-bit integers are assumed. Test cases affected by the behaviour of the random generator are updated to reflect the new values (the existing seed doesn't produce the same behaviour since the way random values are generated has changed). Signed-off-by: Stephen Kitt <steve@sk2.org>
199 lines
5.1 KiB
Go
199 lines
5.1 KiB
Go
package transformers
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import (
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"container/list"
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"fmt"
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"os"
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"strings"
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"github.com/johnkerl/miller/internal/pkg/cli"
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"github.com/johnkerl/miller/internal/pkg/mlrval"
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"github.com/johnkerl/miller/internal/pkg/types"
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)
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// ----------------------------------------------------------------
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const verbNameGap = "gap"
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var GapSetup = TransformerSetup{
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Verb: verbNameGap,
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UsageFunc: transformerGapUsage,
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ParseCLIFunc: transformerGapParseCLI,
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IgnoresInput: false,
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}
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func transformerGapUsage(
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o *os.File,
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doExit bool,
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exitCode int,
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) {
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fmt.Fprintf(o, "Usage: %s %s [options]\n", "mlr", verbNameGap)
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fmt.Fprint(o, "Emits an empty record every n records, or when certain values change.\n")
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fmt.Fprintf(o, "Options:\n")
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fmt.Fprintf(o, "Emits an empty record every n records, or when certain values change.\n")
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fmt.Fprintf(o, "-g {a,b,c} Print a gap whenever values of these fields (e.g. a,b,c) changes.\n")
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fmt.Fprintf(o, "-n {n} Print a gap every n records.\n")
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fmt.Fprintf(o, "One of -f or -g is required.\n")
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fmt.Fprintf(o, "-n is ignored if -g is present.\n")
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fmt.Fprintf(o, "-h|--help Show this message.\n")
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if doExit {
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os.Exit(exitCode)
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}
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}
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func transformerGapParseCLI(
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pargi *int,
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argc int,
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args []string,
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_ *cli.TOptions,
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doConstruct bool, // false for first pass of CLI-parse, true for second pass
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) IRecordTransformer {
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// Skip the verb name from the current spot in the mlr command line
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argi := *pargi
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verb := args[argi]
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argi++
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gapCount := int64(-1)
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var groupByFieldNames []string = nil
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for argi < argc /* variable increment: 1 or 2 depending on flag */ {
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opt := args[argi]
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if !strings.HasPrefix(opt, "-") {
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break // No more flag options to process
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}
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if args[argi] == "--" {
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break // All transformers must do this so main-flags can follow verb-flags
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}
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argi++
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if opt == "-h" || opt == "--help" {
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transformerGapUsage(os.Stdout, true, 0)
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} else if opt == "-n" {
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gapCount = cli.VerbGetIntArgOrDie(verb, opt, args, &argi, argc)
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} else if opt == "-g" {
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groupByFieldNames = cli.VerbGetStringArrayArgOrDie(verb, opt, args, &argi, argc)
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} else {
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transformerGapUsage(os.Stderr, true, 1)
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}
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}
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if gapCount == -1 && groupByFieldNames == nil {
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transformerGapUsage(os.Stderr, true, 1)
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}
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*pargi = argi
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if !doConstruct { // All transformers must do this for main command-line parsing
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return nil
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}
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transformer, err := NewTransformerGap(
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gapCount,
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groupByFieldNames,
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)
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if err != nil {
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fmt.Fprintln(os.Stderr, err)
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os.Exit(1)
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}
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return transformer
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}
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// ----------------------------------------------------------------
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type TransformerGap struct {
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// input
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gapCount int64
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groupByFieldNames []string
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// state
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recordTransformerFunc RecordTransformerFunc
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recordCount int64
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previousGroupingKey string
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}
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func NewTransformerGap(
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gapCount int64,
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groupByFieldNames []string,
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) (*TransformerGap, error) {
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tr := &TransformerGap{
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gapCount: gapCount,
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groupByFieldNames: groupByFieldNames,
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recordCount: 0,
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previousGroupingKey: "",
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}
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if groupByFieldNames == nil {
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tr.recordTransformerFunc = tr.transformUnkeyed
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} else {
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tr.recordTransformerFunc = tr.transformKeyed
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}
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return tr, nil
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}
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// ----------------------------------------------------------------
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func (tr *TransformerGap) Transform(
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inrecAndContext *types.RecordAndContext,
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outputRecordsAndContexts *list.List, // list of *types.RecordAndContext
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inputDownstreamDoneChannel <-chan bool,
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outputDownstreamDoneChannel chan<- bool,
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) {
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HandleDefaultDownstreamDone(inputDownstreamDoneChannel, outputDownstreamDoneChannel)
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tr.recordTransformerFunc(inrecAndContext, outputRecordsAndContexts, inputDownstreamDoneChannel, outputDownstreamDoneChannel)
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}
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func (tr *TransformerGap) transformUnkeyed(
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inrecAndContext *types.RecordAndContext,
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outputRecordsAndContexts *list.List, // list of *types.RecordAndContext
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inputDownstreamDoneChannel <-chan bool,
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outputDownstreamDoneChannel chan<- bool,
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) {
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if !inrecAndContext.EndOfStream {
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if tr.recordCount > 0 && tr.recordCount%tr.gapCount == 0 {
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newrec := mlrval.NewMlrmapAsRecord()
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outputRecordsAndContexts.PushBack(types.NewRecordAndContext(newrec, &inrecAndContext.Context))
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}
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outputRecordsAndContexts.PushBack(inrecAndContext)
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tr.recordCount++
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} else {
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outputRecordsAndContexts.PushBack(inrecAndContext)
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}
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}
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func (tr *TransformerGap) transformKeyed(
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inrecAndContext *types.RecordAndContext,
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outputRecordsAndContexts *list.List, // list of *types.RecordAndContext
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inputDownstreamDoneChannel <-chan bool,
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outputDownstreamDoneChannel chan<- bool,
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) {
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if !inrecAndContext.EndOfStream {
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inrec := inrecAndContext.Record
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groupingKey, ok := inrec.GetSelectedValuesJoined(tr.groupByFieldNames)
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if !ok {
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groupingKey = ""
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}
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if groupingKey != tr.previousGroupingKey && tr.recordCount > 0 {
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newrec := mlrval.NewMlrmapAsRecord()
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outputRecordsAndContexts.PushBack(types.NewRecordAndContext(newrec, &inrecAndContext.Context))
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}
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outputRecordsAndContexts.PushBack(inrecAndContext)
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tr.previousGroupingKey = groupingKey
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tr.recordCount++
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} else {
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outputRecordsAndContexts.PushBack(inrecAndContext)
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}
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}
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