Files
junegunn--fzf/src/options_test.go
T
Junegunn Choi fa5b58968e Add alternative execute notation that does not require closing char
This can be used to avoid parse errors that can happen when the command
contains the closing character. Since the command does not finish at
a certain character, the key binding should be the last one in the
group. Suggested by @tiziano88. (#265)

  e.g. fzf --bind "ctrl-m:execute=COMMAND..." --bind ctrl-j:accept
2015-06-15 23:00:38 +09:00

245 lines
7.0 KiB
Go

package fzf
import (
"fmt"
"testing"
"github.com/junegunn/fzf/src/curses"
)
func TestDelimiterRegex(t *testing.T) {
rx := delimiterRegexp("*")
tokens := rx.FindAllString("-*--*---**---", -1)
if tokens[0] != "-*" || tokens[1] != "--*" || tokens[2] != "---*" ||
tokens[3] != "*" || tokens[4] != "---" {
t.Errorf("%s %s %d", rx, tokens, len(tokens))
}
}
func TestSplitNth(t *testing.T) {
{
ranges := splitNth("..")
if len(ranges) != 1 ||
ranges[0].begin != rangeEllipsis ||
ranges[0].end != rangeEllipsis {
t.Errorf("%s", ranges)
}
}
{
ranges := splitNth("..3,1..,2..3,4..-1,-3..-2,..,2,-2,2..-2,1..-1")
if len(ranges) != 10 ||
ranges[0].begin != rangeEllipsis || ranges[0].end != 3 ||
ranges[1].begin != rangeEllipsis || ranges[1].end != rangeEllipsis ||
ranges[2].begin != 2 || ranges[2].end != 3 ||
ranges[3].begin != 4 || ranges[3].end != rangeEllipsis ||
ranges[4].begin != -3 || ranges[4].end != -2 ||
ranges[5].begin != rangeEllipsis || ranges[5].end != rangeEllipsis ||
ranges[6].begin != 2 || ranges[6].end != 2 ||
ranges[7].begin != -2 || ranges[7].end != -2 ||
ranges[8].begin != 2 || ranges[8].end != -2 ||
ranges[9].begin != rangeEllipsis || ranges[9].end != rangeEllipsis {
t.Errorf("%s", ranges)
}
}
}
func TestIrrelevantNth(t *testing.T) {
{
opts := defaultOptions()
words := []string{"--nth", "..", "-x"}
parseOptions(opts, words)
if len(opts.Nth) != 0 {
t.Errorf("nth should be empty: %s", opts.Nth)
}
}
for _, words := range [][]string{[]string{"--nth", "..,3"}, []string{"--nth", "3,1.."}, []string{"--nth", "..-1,1"}} {
{
opts := defaultOptions()
parseOptions(opts, words)
if len(opts.Nth) != 0 {
t.Errorf("nth should be empty: %s", opts.Nth)
}
}
{
opts := defaultOptions()
words = append(words, "-x")
parseOptions(opts, words)
if len(opts.Nth) != 2 {
t.Errorf("nth should not be empty: %s", opts.Nth)
}
}
}
}
func TestParseKeys(t *testing.T) {
keys := parseKeyChords("ctrl-z,alt-z,f2,@,Alt-a,!,ctrl-G,J,g", "", false)
check := func(key int, expected int) {
if key != expected {
t.Errorf("%d != %d", key, expected)
}
}
check(len(keys), 9)
check(keys[0], curses.CtrlZ)
check(keys[1], curses.AltZ)
check(keys[2], curses.F2)
check(keys[3], curses.AltZ+'@')
check(keys[4], curses.AltA)
check(keys[5], curses.AltZ+'!')
check(keys[6], curses.CtrlA+'g'-'a')
check(keys[7], curses.AltZ+'J')
check(keys[8], curses.AltZ+'g')
// Synonyms
keys = parseKeyChords("enter,return,space,tab,btab,esc,up,down,left,right", "", true)
check(len(keys), 10)
check(keys[0], curses.CtrlM)
check(keys[1], curses.CtrlM)
check(keys[2], curses.AltZ+' ')
check(keys[3], curses.Tab)
check(keys[4], curses.BTab)
check(keys[5], curses.ESC)
check(keys[6], curses.Up)
check(keys[7], curses.Down)
check(keys[8], curses.Left)
check(keys[9], curses.Right)
}
func TestParseKeysWithComma(t *testing.T) {
check := func(key int, expected int) {
if key != expected {
t.Errorf("%d != %d", key, expected)
}
}
keys := parseKeyChords(",", "", false)
check(len(keys), 1)
check(keys[0], curses.AltZ+',')
keys = parseKeyChords(",,a,b", "", false)
check(len(keys), 3)
check(keys[0], curses.AltZ+'a')
check(keys[1], curses.AltZ+'b')
check(keys[2], curses.AltZ+',')
keys = parseKeyChords("a,b,,", "", false)
check(len(keys), 3)
check(keys[0], curses.AltZ+'a')
check(keys[1], curses.AltZ+'b')
check(keys[2], curses.AltZ+',')
keys = parseKeyChords("a,,,b", "", false)
check(len(keys), 3)
check(keys[0], curses.AltZ+'a')
check(keys[1], curses.AltZ+'b')
check(keys[2], curses.AltZ+',')
keys = parseKeyChords("a,,,b,c", "", false)
check(len(keys), 4)
check(keys[0], curses.AltZ+'a')
check(keys[1], curses.AltZ+'b')
check(keys[2], curses.AltZ+'c')
check(keys[3], curses.AltZ+',')
keys = parseKeyChords(",,,", "", false)
check(len(keys), 1)
check(keys[0], curses.AltZ+',')
}
func TestBind(t *testing.T) {
check := func(action actionType, expected actionType) {
if action != expected {
t.Errorf("%d != %d", action, expected)
}
}
checkString := func(action string, expected string) {
if action != expected {
t.Errorf("%d != %d", action, expected)
}
}
keymap := defaultKeymap()
execmap := make(map[int]string)
check(actBeginningOfLine, keymap[curses.CtrlA])
keymap, execmap, toggleSort :=
parseKeymap(keymap, execmap, false,
"ctrl-a:kill-line,ctrl-b:toggle-sort,c:page-up,alt-z:page-down,"+
"f1:execute(ls {}),f2:execute/echo {}, {}, {}/,f3:execute[echo '({})'],f4:execute:less {}:,"+
"alt-a:execute@echo (,),[,],/,:,;,%,{}@,alt-b:execute;echo (,),[,],/,:,@,%,{};"+
",X:execute=foobar,Y:execute(baz)")
if !toggleSort {
t.Errorf("toggleSort not set")
}
check(actKillLine, keymap[curses.CtrlA])
check(actToggleSort, keymap[curses.CtrlB])
check(actPageUp, keymap[curses.AltZ+'c'])
check(actPageDown, keymap[curses.AltZ])
check(actExecute, keymap[curses.F1])
check(actExecute, keymap[curses.F2])
check(actExecute, keymap[curses.F3])
check(actExecute, keymap[curses.F4])
checkString("ls {}", execmap[curses.F1])
checkString("echo {}, {}, {}", execmap[curses.F2])
checkString("echo '({})'", execmap[curses.F3])
checkString("less {}", execmap[curses.F4])
checkString("echo (,),[,],/,:,;,%,{}", execmap[curses.AltA])
checkString("echo (,),[,],/,:,@,%,{}", execmap[curses.AltB])
checkString("foobar,Y:execute(baz)", execmap[curses.AltZ+'X'])
for idx, char := range []rune{'~', '!', '@', '#', '$', '%', '^', '&', '*', '|', ':', ';', '/'} {
keymap, execmap, toggleSort =
parseKeymap(keymap, execmap, false, fmt.Sprintf("%d:execute%cfoobar%c", idx%10, char, char))
checkString("foobar", execmap[curses.AltZ+int([]rune(fmt.Sprintf("%d", idx%10))[0])])
}
keymap, execmap, toggleSort = parseKeymap(keymap, execmap, false, "f1:abort")
if toggleSort {
t.Errorf("toggleSort set")
}
check(actAbort, keymap[curses.F1])
}
func TestColorSpec(t *testing.T) {
theme := curses.Dark256
dark := parseTheme(theme, "dark")
if *dark != *theme {
t.Errorf("colors should be equivalent")
}
if dark == theme {
t.Errorf("point should not be equivalent")
}
light := parseTheme(theme, "dark,light")
if *light == *theme {
t.Errorf("should not be equivalent")
}
if *light != *curses.Light256 {
t.Errorf("colors should be equivalent")
}
if light == theme {
t.Errorf("point should not be equivalent")
}
customized := parseTheme(theme, "fg:231,bg:232")
if customized.Fg != 231 || customized.Bg != 232 {
t.Errorf("color not customized")
}
if *curses.Dark256 == *customized {
t.Errorf("colors should not be equivalent")
}
customized.Fg = curses.Dark256.Fg
customized.Bg = curses.Dark256.Bg
if *curses.Dark256 == *customized {
t.Errorf("colors should now be equivalent")
}
customized = parseTheme(theme, "fg:231,dark,bg:232")
if customized.Fg != curses.Dark256.Fg || customized.Bg == curses.Dark256.Bg {
t.Errorf("color not customized")
}
if customized.UseDefault {
t.Errorf("not using default colors")
}
if !curses.Dark256.UseDefault {
t.Errorf("using default colors")
}
}