mirror of
https://github.com/jesseduffield/lazygit.git
synced 2024-12-12 11:15:00 +02:00
346 lines
8.0 KiB
Go
346 lines
8.0 KiB
Go
package utils
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import (
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"encoding/json"
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"fmt"
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"log"
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"os"
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"path/filepath"
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"regexp"
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"strconv"
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"strings"
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"time"
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"github.com/fatih/color"
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)
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// SplitLines takes a multiline string and splits it on newlines
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// currently we are also stripping \r's which may have adverse effects for
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// windows users (but no issues have been raised yet)
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func SplitLines(multilineString string) []string {
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multilineString = strings.Replace(multilineString, "\r", "", -1)
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if multilineString == "" || multilineString == "\n" {
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return make([]string, 0)
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}
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lines := strings.Split(multilineString, "\n")
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if lines[len(lines)-1] == "" {
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return lines[:len(lines)-1]
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}
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return lines
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}
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// WithPadding pads a string as much as you want
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func WithPadding(str string, padding int) string {
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uncoloredStr := Decolorise(str)
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if padding < len(uncoloredStr) {
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return str
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}
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return str + strings.Repeat(" ", padding-len(uncoloredStr))
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}
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// ColoredString takes a string and a colour attribute and returns a colored
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// string with that attribute
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func ColoredString(str string, colorAttributes ...color.Attribute) string {
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colour := color.New(colorAttributes...)
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return ColoredStringDirect(str, colour)
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}
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// ColoredStringDirect used for aggregating a few color attributes rather than
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// just sending a single one
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func ColoredStringDirect(str string, colour *color.Color) string {
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return colour.SprintFunc()(fmt.Sprint(str))
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}
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// GetCurrentRepoName gets the repo's base name
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func GetCurrentRepoName() string {
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pwd, err := os.Getwd()
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if err != nil {
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log.Fatalln(err.Error())
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}
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return filepath.Base(pwd)
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}
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// TrimTrailingNewline - Trims the trailing newline
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// TODO: replace with `chomp` after refactor
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func TrimTrailingNewline(str string) string {
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if strings.HasSuffix(str, "\n") {
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return str[:len(str)-1]
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}
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return str
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}
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// NormalizeLinefeeds - Removes all Windows and Mac style line feeds
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func NormalizeLinefeeds(str string) string {
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str = strings.Replace(str, "\r\n", "\n", -1)
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str = strings.Replace(str, "\r", "", -1)
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return str
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}
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// GetProjectRoot returns the path to the root of the project. Only to be used
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// in testing contexts, as with binaries it's unlikely this path will exist on
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// the machine
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func GetProjectRoot() string {
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dir, err := os.Getwd()
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if err != nil {
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panic(err)
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}
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return strings.Split(dir, "lazygit")[0] + "lazygit"
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}
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// Loader dumps a string to be displayed as a loader
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func Loader() string {
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characters := "|/-\\"
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now := time.Now()
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nanos := now.UnixNano()
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index := nanos / 50000000 % int64(len(characters))
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return characters[index : index+1]
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}
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// ResolvePlaceholderString populates a template with values
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func ResolvePlaceholderString(str string, arguments map[string]string) string {
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for key, value := range arguments {
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str = strings.Replace(str, "{{"+key+"}}", value, -1)
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}
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return str
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}
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// Min returns the minimum of two integers
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func Min(x, y int) int {
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if x < y {
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return x
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}
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return y
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}
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func RenderDisplayStrings(displayStringsArr [][]string) string {
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padWidths := getPadWidths(displayStringsArr)
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paddedDisplayStrings := getPaddedDisplayStrings(displayStringsArr, padWidths)
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return strings.Join(paddedDisplayStrings, "\n")
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}
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// Decolorise strips a string of color
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func Decolorise(str string) string {
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re := regexp.MustCompile(`\x1B\[([0-9]{1,2}(;[0-9]{1,2})?)?[m|K]`)
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return re.ReplaceAllString(str, "")
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}
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func getPadWidths(stringArrays [][]string) []int {
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maxWidth := 0
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for _, stringArray := range stringArrays {
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if len(stringArray) > maxWidth {
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maxWidth = len(stringArray)
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}
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}
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if maxWidth-1 < 0 {
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return []int{}
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}
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padWidths := make([]int, maxWidth-1)
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for i := range padWidths {
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for _, strings := range stringArrays {
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uncoloredString := Decolorise(strings[i])
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if len(uncoloredString) > padWidths[i] {
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padWidths[i] = len(uncoloredString)
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}
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}
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}
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return padWidths
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}
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func getPaddedDisplayStrings(stringArrays [][]string, padWidths []int) []string {
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paddedDisplayStrings := make([]string, len(stringArrays))
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for i, stringArray := range stringArrays {
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if len(stringArray) == 0 {
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continue
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}
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for j, padWidth := range padWidths {
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if len(stringArray)-1 < j {
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continue
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}
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paddedDisplayStrings[i] += WithPadding(stringArray[j], padWidth) + " "
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}
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if len(stringArray)-1 < len(padWidths) {
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continue
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}
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paddedDisplayStrings[i] += stringArray[len(padWidths)]
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}
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return paddedDisplayStrings
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}
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// displayArraysAligned returns true if every string array returned from our
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// list of displayables has the same length
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func displayArraysAligned(stringArrays [][]string) bool {
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for _, strings := range stringArrays {
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if len(strings) != len(stringArrays[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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// IncludesString if the list contains the string
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func IncludesString(list []string, a string) bool {
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for _, b := range list {
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if b == a {
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return true
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}
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}
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return false
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}
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// IncludesInt if the list contains the Int
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func IncludesInt(list []int, a int) bool {
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for _, b := range list {
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if b == a {
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return true
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}
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}
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return false
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}
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// NextIndex returns the index of the element that comes after the given number
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func NextIndex(numbers []int, currentNumber int) int {
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for index, number := range numbers {
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if number > currentNumber {
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return index
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}
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}
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return len(numbers) - 1
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}
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// PrevIndex returns the index that comes before the given number, cycling if we reach the end
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func PrevIndex(numbers []int, currentNumber int) int {
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end := len(numbers) - 1
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for i := end; i >= 0; i-- {
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if numbers[i] < currentNumber {
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return i
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}
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}
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return 0
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}
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func AsJson(i interface{}) string {
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bytes, _ := json.MarshalIndent(i, "", " ")
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return string(bytes)
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}
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// UnionInt returns the union of two int arrays
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func UnionInt(a, b []int) []int {
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m := make(map[int]bool)
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for _, item := range a {
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m[item] = true
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}
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for _, item := range b {
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if _, ok := m[item]; !ok {
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// this does not mutate the original a slice
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// though it does mutate the backing array I believe
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// but that doesn't matter because if you later want to append to the
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// original a it must see that the backing array has been changed
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// and create a new one
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a = append(a, item)
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}
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}
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return a
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}
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// DifferenceInt returns the difference of two int arrays
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func DifferenceInt(a, b []int) []int {
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result := []int{}
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m := make(map[int]bool)
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for _, item := range b {
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m[item] = true
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}
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for _, item := range a {
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if _, ok := m[item]; !ok {
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result = append(result, item)
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}
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}
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return result
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}
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// used to keep a number n between 0 and max, allowing for wraparounds
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func ModuloWithWrap(n, max int) int {
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if n >= max {
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return n % max
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} else if n < 0 {
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return max + n
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} else {
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return n
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}
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}
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// NextIntInCycle returns the next int in a slice, returning to the first index if we've reached the end
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func NextIntInCycle(sl []int, current int) int {
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for i, val := range sl {
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if val == current {
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if i == len(sl)-1 {
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return sl[0]
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}
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return sl[i+1]
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}
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}
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return sl[0]
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}
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// PrevIntInCycle returns the prev int in a slice, returning to the first index if we've reached the end
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func PrevIntInCycle(sl []int, current int) int {
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for i, val := range sl {
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if val == current {
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if i > 0 {
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return sl[i-1]
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}
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return sl[len(sl)-1]
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}
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}
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return sl[len(sl)-1]
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}
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// TruncateWithEllipsis returns a string, truncated to a certain length, with an ellipsis
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func TruncateWithEllipsis(str string, limit int) string {
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if limit == 1 && len(str) > 1 {
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return "."
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}
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if limit == 2 && len(str) > 2 {
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return ".."
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}
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ellipsis := "..."
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if len(str) <= limit {
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return str
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}
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remainingLength := limit - len(ellipsis)
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return str[0:remainingLength] + "..."
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}
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func FindStringSubmatch(str string, regexpStr string) (bool, []string) {
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re := regexp.MustCompile(regexpStr)
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match := re.FindStringSubmatch(str)
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return len(match) > 0, match
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}
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func StringArraysOverlap(strArrA []string, strArrB []string) bool {
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for _, first := range strArrA {
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for _, second := range strArrB {
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if first == second {
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return true
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}
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}
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}
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return false
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}
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func MustConvertToInt(s string) int {
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i, err := strconv.Atoi(s)
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if err != nil {
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panic(err)
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}
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return i
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}
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