修复HexUtil.format在处理长度小于2的字符串会抛异常,在处理长度为奇数的字符串时最后一个字符会被忽略的问题 修复SplitIter.computeNext递归调用可能导致栈溢出风险

This commit is contained in:
Looly 2025-11-30 16:51:40 +08:00
parent 9a775ef3cf
commit 2369beed81
4 changed files with 109 additions and 38 deletions

View File

@ -16,7 +16,6 @@
package cn.hutool.v7.core.codec.binary;
import cn.hutool.v7.core.text.CharUtil;
import cn.hutool.v7.core.text.StrUtil;
import java.awt.Color;
@ -249,16 +248,42 @@ public class HexUtil extends Hex {
* @param prefix 自定义前缀如0x
* @return 格式化后的字符串
*/
public static String format(final String hexStr, String prefix) {
public static String format(final String hexStr, final String prefix) {
return format(hexStr, prefix, StrUtil.SPACE);
}
/**
* 格式化Hex字符串结果为每2位加一个空格类似于
* <pre>
* e8 8c 67 03 80 cb 22 00 95 26 8f
* </pre>
*
* @param hexStr Hex字符串
* @param prefix 自定义前缀如0x
* @param separator 自定义分隔符如空格
* @return 格式化后的字符串
*/
public static String format(final String hexStr, String prefix, String separator) {
if (StrUtil.isEmpty(hexStr)) {
return StrUtil.EMPTY;
}
if (null == prefix) {
prefix = StrUtil.EMPTY;
}
if (null == separator) {
separator = StrUtil.SPACE;
}
final int length = hexStr.length();
final StringBuilder builder = StrUtil.builder(length + length / 2 + (length / 2 * prefix.length()));
builder.append(prefix).append(hexStr.charAt(0)).append(hexStr.charAt(1));
for (int i = 2; i < length - 1; i += 2) {
builder.append(CharUtil.SPACE).append(prefix).append(hexStr.charAt(i)).append(hexStr.charAt(i + 1));
for (int i = 0; i < length; i++) {
if (i % 2 == 0) {
if (i != 0) {
builder.append(separator);
}
builder.append(prefix);
}
builder.append(hexStr.charAt(i));
}
return builder.toString();
}

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@ -89,12 +89,15 @@ public class SplitIter extends ComputeIter<String> implements Serializable {
return text.substring(offset);
}
final int start = finder.start(offset);
String result;
int start;
do {
start = finder.start(offset);
// 无分隔符结束
if (start < 0) {
// 如果不再有分隔符但是遗留了字符则单独作为一个段
if (offset <= text.length()) {
final String result = text.substring(offset);
result = text.substring(offset);
if (!ignoreEmpty || !result.isEmpty()) {
// 返回非空串
offset = Integer.MAX_VALUE;
@ -105,13 +108,9 @@ public class SplitIter extends ComputeIter<String> implements Serializable {
}
// 找到新的分隔符位置
final String result = text.substring(offset, start);
result = text.substring(offset, start);
offset = finder.end(start);
if (ignoreEmpty && result.isEmpty()) {
// 发现空串且需要忽略时跳过之
return computeNext();
}
} while (ignoreEmpty && result.isEmpty()); // 空串则继续循环
count++;
return result;

View File

@ -23,9 +23,12 @@ import cn.hutool.v7.core.text.finder.StrFinder;
import org.junit.jupiter.api.Assertions;
import org.junit.jupiter.api.Test;
import java.util.Collections;
import java.util.List;
import java.util.regex.Pattern;
import static org.junit.jupiter.api.Assertions.assertEquals;
public class SplitIterTest {
@Test
@ -38,7 +41,7 @@ public class SplitIterTest {
Integer.MAX_VALUE,
false
);
Assertions.assertEquals(6, splitIter.toList(false).size());
assertEquals(6, splitIter.toList(false).size());
}
@Test
@ -51,7 +54,7 @@ public class SplitIterTest {
Integer.MAX_VALUE,
false
);
Assertions.assertEquals(4, splitIter.toList(false).size());
assertEquals(4, splitIter.toList(false).size());
}
@Test
@ -65,7 +68,7 @@ public class SplitIterTest {
);
final List<String> strings = splitIter.toList(false);
Assertions.assertEquals(4, strings.size());
assertEquals(4, strings.size());
}
@Test
@ -79,10 +82,10 @@ public class SplitIterTest {
);
final List<String> strings = splitIter.toList(true);
Assertions.assertEquals(3, strings.size());
Assertions.assertEquals("a", strings.get(0));
Assertions.assertEquals("efedsfs", strings.get(1));
Assertions.assertEquals("ddf", strings.get(2));
assertEquals(3, strings.size());
assertEquals("a", strings.get(0));
assertEquals("efedsfs", strings.get(1));
assertEquals("ddf", strings.get(2));
}
@Test
@ -96,7 +99,7 @@ public class SplitIterTest {
);
final List<String> strings = splitIter.toList(false);
Assertions.assertEquals(3, strings.size());
assertEquals(3, strings.size());
}
@Test
@ -110,7 +113,7 @@ public class SplitIterTest {
);
final List<String> strings = splitIter.toList(false);
Assertions.assertEquals(3, strings.size());
assertEquals(3, strings.size());
}
@Test
@ -123,7 +126,7 @@ public class SplitIterTest {
);
final List<String> strings = splitIter.toList(false);
Assertions.assertEquals(4, strings.size());
assertEquals(4, strings.size());
}
@Test
@ -136,7 +139,7 @@ public class SplitIterTest {
);
final List<String> strings = splitIter.toList(false);
Assertions.assertEquals(3, strings.size());
assertEquals(3, strings.size());
}
@Test
@ -149,7 +152,7 @@ public class SplitIterTest {
);
final List<String> strings = splitIter.toList(false);
Assertions.assertEquals(1, strings.size());
assertEquals(1, strings.size());
}
// 切割字符串是空字符串时报错
@ -164,7 +167,21 @@ public class SplitIterTest {
);
final List<String> strings = splitIter.toList(false);
Assertions.assertEquals(1, strings.size());
assertEquals(1, strings.size());
});
}
@Test
public void issue4169Test() {
final StringBuilder sb = new StringBuilder();
for (int i = 0; i < 20000; i++) { // 1万次连续分隔符模拟递归深度风险场景
sb.append(",");
}
sb.append("test");
final SplitIter iter = new SplitIter(sb.toString(), new StrFinder(",",false), 0, true);
final List<String> result = iter.toList(false);
assertEquals(Collections.singletonList("test"), result);
}
}

View File

@ -135,4 +135,34 @@ public class HexUtilTest {
final String hex3 = "#FF";
assertEquals(new BigInteger("FF", 16), HexUtil.toBigInteger(hex3));
}
@Test
public void testFormatEmpty() {
final String result = HexUtil.format("");
assertEquals("", result);
}
@Test
public void testFormatSingleChar() {
final String result = HexUtil.format("1");
assertEquals("1", result);
}
@Test
public void testFormatOddLength() {
final String result = HexUtil.format("123");
assertEquals("12 3", result);
}
@Test
public void testFormatWithPrefixSingleChar() {
final String result = HexUtil.format("1", "0x");
assertEquals("0x1", result);
}
@Test
public void testFormatWithPrefixOddLength() {
final String result = HexUtil.format("123", "0x");
assertEquals("0x12 0x3", result);
}
}