mirror of
https://github.com/ceph/ceph-csi.git
synced 2025-06-14 10:53:34 +00:00
build: move e2e dependencies into e2e/go.mod
Several packages are only used while running the e2e suite. These packages are less important to update, as the they can not influence the final executable that is part of the Ceph-CSI container-image. By moving these dependencies out of the main Ceph-CSI go.mod, it is easier to identify if a reported CVE affects Ceph-CSI, or only the testing (like most of the Kubernetes CVEs). Signed-off-by: Niels de Vos <ndevos@ibm.com>
This commit is contained in:
committed by
mergify[bot]
parent
15da101b1b
commit
bec6090996
31
e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/utilities/BUILD.bazel
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e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/utilities/BUILD.bazel
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load("@io_bazel_rules_go//go:def.bzl", "go_library", "go_test")
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package(default_visibility = ["//visibility:public"])
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go_library(
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name = "utilities",
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srcs = [
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"doc.go",
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"pattern.go",
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"readerfactory.go",
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"string_array_flag.go",
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"trie.go",
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],
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importpath = "github.com/grpc-ecosystem/grpc-gateway/v2/utilities",
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)
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go_test(
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name = "utilities_test",
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size = "small",
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srcs = [
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"string_array_flag_test.go",
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"trie_test.go",
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],
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deps = [":utilities"],
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)
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alias(
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name = "go_default_library",
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actual = ":utilities",
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visibility = ["//visibility:public"],
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)
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2
e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/utilities/doc.go
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e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/utilities/doc.go
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// Package utilities provides members for internal use in grpc-gateway.
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package utilities
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22
e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/utilities/pattern.go
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e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/utilities/pattern.go
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package utilities
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// An OpCode is a opcode of compiled path patterns.
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type OpCode int
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// These constants are the valid values of OpCode.
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const (
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// OpNop does nothing
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OpNop = OpCode(iota)
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// OpPush pushes a component to stack
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OpPush
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// OpLitPush pushes a component to stack if it matches to the literal
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OpLitPush
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// OpPushM concatenates the remaining components and pushes it to stack
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OpPushM
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// OpConcatN pops N items from stack, concatenates them and pushes it back to stack
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OpConcatN
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// OpCapture pops an item and binds it to the variable
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OpCapture
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// OpEnd is the least positive invalid opcode.
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OpEnd
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)
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19
e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/utilities/readerfactory.go
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e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/utilities/readerfactory.go
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package utilities
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import (
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"bytes"
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"io"
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)
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// IOReaderFactory takes in an io.Reader and returns a function that will allow you to create a new reader that begins
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// at the start of the stream
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func IOReaderFactory(r io.Reader) (func() io.Reader, error) {
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b, err := io.ReadAll(r)
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if err != nil {
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return nil, err
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}
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return func() io.Reader {
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return bytes.NewReader(b)
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}, nil
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}
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33
e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/utilities/string_array_flag.go
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e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/utilities/string_array_flag.go
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package utilities
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import (
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"flag"
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"strings"
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)
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// flagInterface is an cut down interface to `flag`
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type flagInterface interface {
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Var(value flag.Value, name string, usage string)
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}
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// StringArrayFlag defines a flag with the specified name and usage string.
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// The return value is the address of a `StringArrayFlags` variable that stores the repeated values of the flag.
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func StringArrayFlag(f flagInterface, name string, usage string) *StringArrayFlags {
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value := &StringArrayFlags{}
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f.Var(value, name, usage)
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return value
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}
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// StringArrayFlags is a wrapper of `[]string` to provider an interface for `flag.Var`
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type StringArrayFlags []string
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// String returns a string representation of `StringArrayFlags`
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func (i *StringArrayFlags) String() string {
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return strings.Join(*i, ",")
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}
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// Set appends a value to `StringArrayFlags`
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func (i *StringArrayFlags) Set(value string) error {
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*i = append(*i, value)
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return nil
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}
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174
e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/utilities/trie.go
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e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/utilities/trie.go
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package utilities
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import (
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"sort"
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)
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// DoubleArray is a Double Array implementation of trie on sequences of strings.
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type DoubleArray struct {
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// Encoding keeps an encoding from string to int
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Encoding map[string]int
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// Base is the base array of Double Array
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Base []int
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// Check is the check array of Double Array
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Check []int
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}
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// NewDoubleArray builds a DoubleArray from a set of sequences of strings.
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func NewDoubleArray(seqs [][]string) *DoubleArray {
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da := &DoubleArray{Encoding: make(map[string]int)}
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if len(seqs) == 0 {
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return da
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}
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encoded := registerTokens(da, seqs)
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sort.Sort(byLex(encoded))
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root := node{row: -1, col: -1, left: 0, right: len(encoded)}
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addSeqs(da, encoded, 0, root)
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for i := len(da.Base); i > 0; i-- {
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if da.Check[i-1] != 0 {
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da.Base = da.Base[:i]
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da.Check = da.Check[:i]
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break
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}
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}
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return da
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}
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func registerTokens(da *DoubleArray, seqs [][]string) [][]int {
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var result [][]int
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for _, seq := range seqs {
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encoded := make([]int, 0, len(seq))
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for _, token := range seq {
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if _, ok := da.Encoding[token]; !ok {
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da.Encoding[token] = len(da.Encoding)
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}
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encoded = append(encoded, da.Encoding[token])
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}
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result = append(result, encoded)
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}
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for i := range result {
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result[i] = append(result[i], len(da.Encoding))
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}
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return result
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}
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type node struct {
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row, col int
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left, right int
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}
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func (n node) value(seqs [][]int) int {
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return seqs[n.row][n.col]
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}
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func (n node) children(seqs [][]int) []*node {
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var result []*node
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lastVal := int(-1)
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last := new(node)
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for i := n.left; i < n.right; i++ {
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if lastVal == seqs[i][n.col+1] {
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continue
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}
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last.right = i
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last = &node{
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row: i,
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col: n.col + 1,
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left: i,
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}
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result = append(result, last)
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}
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last.right = n.right
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return result
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}
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func addSeqs(da *DoubleArray, seqs [][]int, pos int, n node) {
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ensureSize(da, pos)
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children := n.children(seqs)
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var i int
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for i = 1; ; i++ {
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ok := func() bool {
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for _, child := range children {
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code := child.value(seqs)
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j := i + code
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ensureSize(da, j)
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if da.Check[j] != 0 {
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return false
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}
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}
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return true
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}()
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if ok {
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break
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}
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}
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da.Base[pos] = i
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for _, child := range children {
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code := child.value(seqs)
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j := i + code
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da.Check[j] = pos + 1
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}
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terminator := len(da.Encoding)
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for _, child := range children {
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code := child.value(seqs)
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if code == terminator {
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continue
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}
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j := i + code
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addSeqs(da, seqs, j, *child)
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}
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}
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func ensureSize(da *DoubleArray, i int) {
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for i >= len(da.Base) {
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da.Base = append(da.Base, make([]int, len(da.Base)+1)...)
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da.Check = append(da.Check, make([]int, len(da.Check)+1)...)
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}
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}
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type byLex [][]int
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func (l byLex) Len() int { return len(l) }
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func (l byLex) Swap(i, j int) { l[i], l[j] = l[j], l[i] }
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func (l byLex) Less(i, j int) bool {
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si := l[i]
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sj := l[j]
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var k int
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for k = 0; k < len(si) && k < len(sj); k++ {
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if si[k] < sj[k] {
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return true
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}
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if si[k] > sj[k] {
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return false
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}
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}
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return k < len(sj)
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}
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// HasCommonPrefix determines if any sequence in the DoubleArray is a prefix of the given sequence.
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func (da *DoubleArray) HasCommonPrefix(seq []string) bool {
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if len(da.Base) == 0 {
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return false
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}
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var i int
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for _, t := range seq {
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code, ok := da.Encoding[t]
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if !ok {
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break
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}
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j := da.Base[i] + code
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if len(da.Check) <= j || da.Check[j] != i+1 {
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break
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}
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i = j
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}
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j := da.Base[i] + len(da.Encoding)
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if len(da.Check) <= j || da.Check[j] != i+1 {
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return false
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}
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return true
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}
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