mirror of
https://github.com/jesseduffield/lazygit.git
synced 2024-12-12 11:15:00 +02:00
267 lines
5.6 KiB
Go
267 lines
5.6 KiB
Go
package terminfo
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import (
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"sort"
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)
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const (
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// maxFileLength is the max file length.
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maxFileLength = 4096
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// magic is the file magic for terminfo files.
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magic = 0432
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// magicExtended is the file magic for terminfo files with the extended number format.
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magicExtended = 01036
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)
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// header fields.
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const (
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fieldMagic = iota
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fieldNameSize
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fieldBoolCount
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fieldNumCount
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fieldStringCount
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fieldTableSize
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)
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// header extended fields.
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const (
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fieldExtBoolCount = iota
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fieldExtNumCount
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fieldExtStringCount
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fieldExtOffsetCount
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fieldExtTableSize
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)
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// hasInvalidCaps determines if the capabilities in h are invalid.
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func hasInvalidCaps(h []int) bool {
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return h[fieldBoolCount] > CapCountBool ||
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h[fieldNumCount] > CapCountNum ||
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h[fieldStringCount] > CapCountString
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}
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// capLength returns the total length of the capabilities in bytes.
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func capLength(h []int) int {
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return h[fieldNameSize] +
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h[fieldBoolCount] +
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(h[fieldNameSize]+h[fieldBoolCount])%2 + // account for word align
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h[fieldNumCount]*2 +
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h[fieldStringCount]*2 +
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h[fieldTableSize]
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}
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// hasInvalidExtOffset determines if the extended offset field is valid.
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func hasInvalidExtOffset(h []int) bool {
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return h[fieldExtBoolCount]+
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h[fieldExtNumCount]+
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h[fieldExtStringCount]*2 != h[fieldExtOffsetCount]
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}
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// extCapLength returns the total length of extended capabilities in bytes.
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func extCapLength(h []int, numWidth int) int {
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return h[fieldExtBoolCount] +
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h[fieldExtBoolCount]%2 + // account for word align
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h[fieldExtNumCount]*(numWidth/8) +
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h[fieldExtOffsetCount]*2 +
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h[fieldExtTableSize]
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}
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// findNull finds the position of null in buf.
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func findNull(buf []byte, i int) int {
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for ; i < len(buf); i++ {
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if buf[i] == 0 {
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return i
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}
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}
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return -1
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}
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// readStrings decodes n strings from string data table buf using the indexes in idx.
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func readStrings(idx []int, buf []byte, n int) (map[int][]byte, int, error) {
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var last int
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m := make(map[int][]byte)
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for i := 0; i < n; i++ {
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start := idx[i]
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if start < 0 {
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continue
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}
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if end := findNull(buf, start); end != -1 {
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m[i], last = buf[start:end], end+1
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} else {
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return nil, 0, ErrInvalidStringTable
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}
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}
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return m, last, nil
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}
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// decoder holds state info while decoding a terminfo file.
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type decoder struct {
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buf []byte
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pos int
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len int
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}
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// readBytes reads the next n bytes of buf, incrementing pos by n.
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func (d *decoder) readBytes(n int) ([]byte, error) {
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if d.len < d.pos+n {
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return nil, ErrUnexpectedFileEnd
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}
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n, d.pos = d.pos, d.pos+n
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return d.buf[n:d.pos], nil
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}
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// readInts reads n number of ints with width w.
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func (d *decoder) readInts(n, w int) ([]int, error) {
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w /= 8
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l := n * w
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buf, err := d.readBytes(l)
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if err != nil {
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return nil, err
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}
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// align
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d.pos += d.pos % 2
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z := make([]int, n)
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for i, j := 0, 0; i < l; i, j = i+w, j+1 {
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switch w {
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case 1:
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z[i] = int(buf[i])
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case 2:
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z[j] = int(int16(buf[i+1])<<8 | int16(buf[i]))
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case 4:
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z[j] = int(buf[i+3])<<24 | int(buf[i+2])<<16 | int(buf[i+1])<<8 | int(buf[i])
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}
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}
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return z, nil
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}
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// readBools reads the next n bools.
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func (d *decoder) readBools(n int) (map[int]bool, map[int]bool, error) {
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buf, err := d.readInts(n, 8)
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if err != nil {
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return nil, nil, err
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}
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// process
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bools, boolsM := make(map[int]bool), make(map[int]bool)
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for i, b := range buf {
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bools[i] = b == 1
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if int8(b) == -2 {
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boolsM[i] = true
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}
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}
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return bools, boolsM, nil
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}
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// readNums reads the next n nums.
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func (d *decoder) readNums(n, w int) (map[int]int, map[int]bool, error) {
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buf, err := d.readInts(n, w)
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if err != nil {
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return nil, nil, err
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}
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// process
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nums, numsM := make(map[int]int), make(map[int]bool)
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for i := 0; i < n; i++ {
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nums[i] = buf[i]
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if buf[i] == -2 {
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numsM[i] = true
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}
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}
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return nums, numsM, nil
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}
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// readStringTable reads the string data for n strings and the accompanying data
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// table of length sz.
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func (d *decoder) readStringTable(n, sz int) ([][]byte, []int, error) {
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buf, err := d.readInts(n, 16)
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if err != nil {
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return nil, nil, err
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}
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// read string data table
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data, err := d.readBytes(sz)
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if err != nil {
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return nil, nil, err
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}
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// align
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d.pos += d.pos % 2
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// process
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s := make([][]byte, n)
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var m []int
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for i := 0; i < n; i++ {
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start := buf[i]
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if start == -2 {
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m = append(m, i)
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} else if start >= 0 {
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if end := findNull(data, start); end != -1 {
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s[i] = data[start:end]
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} else {
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return nil, nil, ErrInvalidStringTable
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}
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}
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}
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return s, m, nil
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}
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// readStrings reads the next n strings and processes the string data table of
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// length sz.
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func (d *decoder) readStrings(n, sz int) (map[int][]byte, map[int]bool, error) {
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s, m, err := d.readStringTable(n, sz)
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if err != nil {
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return nil, nil, err
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}
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strs := make(map[int][]byte)
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for k, v := range s {
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if k == AcsChars {
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v = canonicalizeAscChars(v)
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}
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strs[k] = v
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}
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strsM := make(map[int]bool, len(m))
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for _, k := range m {
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strsM[k] = true
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}
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return strs, strsM, nil
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}
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// canonicalizeAscChars reorders chars to be unique, in order.
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//
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// see repair_ascc in ncurses-6.0/progs/dump_entry.c
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func canonicalizeAscChars(z []byte) []byte {
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var c chars
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enc := make(map[byte]byte, len(z)/2)
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for i := 0; i < len(z); i += 2 {
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if _, ok := enc[z[i]]; !ok {
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a, b := z[i], z[i+1]
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//log.Printf(">>> a: %d %c, b: %d %c", a, a, b, b)
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c, enc[a] = append(c, b), b
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}
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}
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sort.Sort(c)
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r := make([]byte, 2*len(c))
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for i := 0; i < len(c); i++ {
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r[i*2], r[i*2+1] = c[i], enc[c[i]]
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}
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return r
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}
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type chars []byte
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func (c chars) Len() int { return len(c) }
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func (c chars) Swap(i, j int) { c[i], c[j] = c[j], c[i] }
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func (c chars) Less(i, j int) bool { return c[i] < c[j] }
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