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Copy pathfullJustify.go
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140 lines (120 loc) · 3.34 KB
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/* https://leetcode.com/problems/text-justification/
Given an array of words and a width maxWidth,
format the text such that each line has exactly maxWidth characters and
is fully (left and right) justified.
You should pack your words in a greedy approach;
that is, pack as many words as you can in each line.
Pad extra spaces ' ' when necessary so that
each line has exactly maxWidth characters.
Extra spaces between words should be distributed as evenly as possible.
If the number of spaces on a line do not divide evenly between words,
the empty slots on the left will be assigned more spaces than
the slots on the right.
For the last line of text, it should be left justified and no extra space
is inserted between words.
Note:
A word is defined as a character sequence consisting of
non-space characters only.
Each word's length is guaranteed to be greater than 0 and
not exceed maxWidth.
The input array words contains at least one word.
Example 1:
Input:
words = ["This", "is", "an", "example", "of", "text", "justification."]
maxWidth = 16
Output:
[
"This is an",
"example of text",
"justification. "
]
Example 2:
Input:
words = ["What","must","be","acknowledgment","shall","be"]
maxWidth = 16
Output:
[
"What must be",
"acknowledgment ",
"shall be "
]
Explanation: Note that the last line is "shall be " instead of
"shall be",
because the last line must be left-justified instead of
fully-justified.
Note that the second line is also left-justified becase
it contains only one word.
Example 3:
Input:
words = ["Science","is","what","we","understand","well","enough","to","explain",
"to","a","computer.","Art","is","everything","else","we","do"]
maxWidth = 20
Output:
[
"Science is what we",
"understand well",
"enough to explain to",
"a computer. Art is",
"everything else we",
"do "
]
*/
package lstring
func fullJustify(words []string, maxWidth int) []string {
trans2line := func(start, end int, length int, isLastLine bool) string {
tmp := make([]byte, maxWidth)
// length 单词长度和
count := end - start - 1 // 需要填充的空间数量 == word个数-1
needFills := make([]int, count)
// the last line must be left-justified instead of fully-justified
if !isLastLine {
needFill := maxWidth - length - count
if count > 0 {
idx := 0
for i := 0; i < needFill; i++ {
needFills[idx]++
idx++
idx = idx % count
}
}
}
// filling
idx := 0
for i := start; i < end; i++ {
word := words[i]
for j := 0; j < len(word); j++ {
tmp[idx] = word[j]
idx++
}
if idx < maxWidth {
tmp[idx] = ' '
idx++
for j := 0; idx < maxWidth && i-start < len(needFills) && j < needFills[i-start]; j++ {
tmp[idx] = ' '
idx++
}
}
}
for ; idx < maxWidth; idx++ {
tmp[idx] = ' '
}
return string(tmp)
}
res := []string{}
lineStartIdx, length := 0, len(words[0])
for i := 1; i < len(words); i++ {
word := words[i]
length += len(word)
if curLength := length + (i - lineStartIdx); curLength > maxWidth {
// 处理上一行
line := trans2line(lineStartIdx, i, length-len(word), false)
res = append(res, line)
lineStartIdx, length = i, len(word)
continue
}
}
// last line
line := trans2line(lineStartIdx, len(words), length, true)
res = append(res, line)
return res
}