C 为什么我的Fork子进程不从管道中读取?

C 为什么我的Fork子进程不从管道中读取?,c,pipe,fork,C,Pipe,Fork,我正在尝试使用fork()创建一个单独的“logger”进程,它将在收到消息时将消息记录到一个文件中。然而,我有一个问题,子进程似乎在一个字符串后“放弃” 我甚至不确定这是否是一个拥有日志进程的好方法——但这里是输出和代码 任何想法或帮助将不胜感激-谢谢 评论中的正确诊断 正如在A中正确诊断的那样,最直接的问题是在消息的中间接收了空字节,但是尝试把消息当作字符串来处理。这切断了信息 你也从一家公司得到了明智的建议 不要发送空字节 最简单的修复方法是不向子级发送空字节。然后,子进程如何分割读取并

我正在尝试使用fork()创建一个单独的“logger”进程,它将在收到消息时将消息记录到一个文件中。然而,我有一个问题,子进程似乎在一个字符串后“放弃”

我甚至不确定这是否是一个拥有日志进程的好方法——但这里是输出和代码

任何想法或帮助将不胜感激-谢谢

评论中的正确诊断 正如在A中正确诊断的那样,最直接的问题是在消息的中间接收了空字节,但是尝试把消息当作字符串来处理。这切断了信息

你也从一家公司得到了明智的建议

不要发送空字节 最简单的修复方法是不向子级发送空字节。然后,子进程如何分割读取并不重要,除非它将向日志打印添加信息(例如时间信息)。下面是一个例子:

#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/wait.h>
#include <unistd.h>

static void wait_for(pid_t pid)
{
    int corpse;
    int status;
    while ((corpse = wait(&status)) > 0)
    {
        printf("%d: PID %d exit status 0x%.4X\n", (int)getpid(), corpse, status);
        if (corpse == pid)
            break;
    }
}

static void write_log(int fd, const char *msg)
{
    ssize_t len = strlen(msg);
    if (write(fd, msg, len) != len)
    {
        fprintf(stderr, "%d: failed to write message to logger\n", (int)getpid());
        exit(EXIT_FAILURE);
    }
    printf("%d: Wrote: %zd [%s]\n", (int)getpid(), len, msg);
}

int main(void)
{
    int pipefd[2];
    pid_t pid;
    char szLogtest1[] = "Log Event: Blah blah blah\n";
    char szLogtest2[] = "Log Event: Blah blah 2\n";

    pipe(pipefd);

    if ((pid = fork()) == -1)
    {
        fprintf(stderr, "Fork error!\n");
        exit(1);
    }
    else if (pid == 0)
    {
        printf("%d: I am child!\n", (int)getpid());
        close(pipefd[1]);     // close the write end of pipe

        while (1)
        {
            char readbuffer[512];
            int nbytes = read(pipefd[0], readbuffer, sizeof(readbuffer));
            if (nbytes <= 0)
            {
                close(pipefd[0]);
                printf("EOF on pipe -exiting\n");
                exit(EXIT_SUCCESS);
            }
            printf("%d: Logging string: %d [%s]\n", (int)getpid(), nbytes, readbuffer);
        }
    }
    else
    {
        printf("%d: I am parent!\n", (int)getpid());
        close(pipefd[0]);     // close read end of pipe

        write_log(pipefd[1], szLogtest1);
        write_log(pipefd[1], szLogtest2);
        close(pipefd[1]);
        wait_for(pid);
    }

    return 0;
}
为消息添加长度前缀 另一个简单(但不是很简单)的修复方法是将消息分成不超过255个字节的块,然后写入一个1字节的长度,后跟这么多字节的数据。然后,子级读取1字节的长度和那么多字节的数据。此代码创建了一个与
write\u log()
函数并行的
read\u log()
函数,并且
write\u log()
函数也被修改

#include <assert.h>
#include <limits.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/wait.h>
#include <unistd.h>

static void wait_for(pid_t pid)
{
    int corpse;
    int status;
    while ((corpse = wait(&status)) > 0)
    {
        printf("%d: PID %d exit status 0x%.4X\n", (int)getpid(), corpse, status);
        if (corpse == pid)
            break;
    }
}

static void write_log(int fd, const char *msg)
{
    ssize_t len = strlen(msg);
    unsigned char byte = len;
    assert(len > 0 && len <= UCHAR_MAX);

    if (write(fd, &byte, sizeof(byte)) != sizeof(byte) ||
        write(fd, msg, len) != len)
    {
        fprintf(stderr, "%d: failed to write message to logger\n", (int)getpid());
        exit(EXIT_FAILURE);
    }
    printf("%d: Wrote: %zd [%s]\n", (int)getpid(), len, msg);
}

static int read_log(int fd, size_t buflen, char buffer[buflen])
{
    unsigned char byte;
    if (read(fd, &byte, sizeof(byte)) != sizeof(byte))
    {
        fprintf(stderr, "%d: EOF on file descriptor %d\n", (int)getpid(), fd);
        return 0;
    }
    if (buflen < (size_t)(byte + 1))        // avoid signed/unsigned comparison
    {
        fprintf(stderr, "%d: buffer length %zu cannot hold %d bytes\n",
                (int)getpid(), buflen, byte + 1);
        exit(EXIT_FAILURE);
    }
    if (read(fd, buffer, byte) != byte)
    {
        fprintf(stderr, "%d: failed to read %d bytes from file descriptor %d\n",
                (int)getpid(), byte, fd);
        exit(EXIT_FAILURE);
    }
    buffer[byte] = '\0';
    return byte;
}

int main(void)
{
    int pipefd[2];
    pid_t pid;
    char szLogtest1[] = "Log Event: Blah blah blah\n";
    char szLogtest2[] = "Log Event: Blah blah 2\n";

    pipe(pipefd);

    if ((pid = fork()) == -1)
    {
        fprintf(stderr, "Fork error!\n");
        exit(1);
    }
    else if (pid == 0)
    {
        printf("%d: I am child!\n", (int)getpid());
        close(pipefd[1]);     // close the write end of pipe

        char readbuffer[512];
        int nbytes;
        while ((nbytes = read_log(pipefd[0], sizeof(readbuffer), readbuffer)) > 0)
        {
            printf("%d: Logging string: %d [%s]\n", (int)getpid(), nbytes, readbuffer);
        }
        close(pipefd[0]);
        printf("EOF on pipe -exiting\n");
        exit(EXIT_SUCCESS);
    }
    else
    {
        printf("%d: I am parent!\n", (int)getpid());
        close(pipefd[0]);     // close read end of pipe

        write_log(pipefd[1], szLogtest1);
        write_log(pipefd[1], szLogtest2);
        close(pipefd[1]);
        wait_for(pid);
    }

    return 0;
}
如您所见,与第一个示例中的联合消息不同,单独的消息是单独记录的

对超长消息进行编码 如果将长消息作为一个单元来处理非常重要,但它们非常罕见,则可以发送1..254作为单个单元消息的长度,并发送255以指示“254字节块在后面,但不完整”。或者,实际上,您可以发送1..255来表示最长为255字节的完整消息,发送0来表示“这是超过255字节的消息的下一个255字节部分”。(请注意,您必须只发送255个字节,以便有至少1个字节的后续消息。)这将修改
write_log()
read_log()
函数,但主代码不必更改-除非有必要测试多块功能

此代码比以前的版本更复杂。 它显示了一些已注释掉的调试打印

/* SO 4481-0272 */
/* Variant 3 - handle long messages */
#include <assert.h>
#include <limits.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/wait.h>
#include <unistd.h>

static void wait_for(pid_t pid)
{
    int corpse;
    int status;
    while ((corpse = wait(&status)) > 0)
    {
        printf("%d: PID %d exit status 0x%.4X\n", (int)getpid(), corpse, status);
        if (corpse == pid)
            break;
    }
}

static void write_log_segment(int fd, size_t lencode, size_t length, const char *msg)
{
    unsigned char byte = lencode;
    assert(lencode == length || (lencode == 0 && length == UCHAR_MAX));

    if (write(fd, &byte, sizeof(byte)) != sizeof(byte) ||
        write(fd, msg, length) != (ssize_t)length)    // avoid signed/unsigned comparison
    {
        fprintf(stderr, "%d: failed to write message to logger\n", (int)getpid());
        exit(EXIT_FAILURE);
    }
    //printf("%d: Wrote segment: %zu (code %zu) [%s]\n", (int)getpid(), length, lencode, msg);
}

static void write_log(int fd, const char *msg)
{
    size_t len = strlen(msg);
    printf("%d: Write buffer: %zu [%s]\n", (int)getpid(), len, msg);
    while (len > 0)
    {
        size_t lencode = (len <= UCHAR_MAX) ? len : 0;
        size_t length  = (len <= UCHAR_MAX) ? len : UCHAR_MAX;
        write_log_segment(fd, lencode, length, msg);
        len -= length;
        msg += length;
    }
    //printf("%d: Buffer complete\n", (int)getpid());
}

/*
** This code could encounter:
** 1.  EOF (or a read error) - return EOF.
** 2.  A regular complete message in a single segment - return message
**     length (1..255).
** 3.  A partial message with more segments to follow - return MSG_SEGMENT.
** Partial segments with more to follow are of length 255, but it is
** possible to have a regular complete message of length 255.
*/
enum { MSG_SEGMENT = -2 };
static_assert(MSG_SEGMENT != EOF, "EOF is not distinct from MSG_SEGMENT");

static int read_log_segment(int fd, size_t buflen, char buffer[buflen])
{
    unsigned char byte;
    if (read(fd, &byte, sizeof(byte)) != sizeof(byte))
    {
        fprintf(stderr, "%d: EOF on file descriptor %d\n", (int)getpid(), fd);
        return EOF;
    }
    size_t length = byte;
    if (length == 0)
        length = UCHAR_MAX;
    if (buflen < (size_t)(byte + 1))        // avoid signed/unsigned comparison
    {
        fprintf(stderr, "%d: buffer length %zu cannot hold %d bytes\n",
                (int)getpid(), buflen, byte + 1);
        exit(EXIT_FAILURE);
    }
    if (read(fd, buffer, length) != (ssize_t)length)    // avoid signed/unsigned comparison
    {
        fprintf(stderr, "%d: failed to read %zu bytes from file descriptor %d\n",
                (int)getpid(), length, fd);
        exit(EXIT_FAILURE);
    }
    buffer[length] = '\0';
    return (byte == 0) ? MSG_SEGMENT : byte;
}

static size_t read_log(int fd, size_t buflen, char buffer[buflen])
{
    //printf("%d: reading %zu\n", (int)getpid(), buflen);
    char *msg = buffer;
    size_t len = buflen;
    int nbytes;
    int tbytes = 0;
    while (len > 0 && (nbytes = read_log_segment(fd, len, msg)) != EOF)
    {
        if (nbytes != MSG_SEGMENT)
        {
            tbytes += nbytes;
            break;
        }
        nbytes = UCHAR_MAX;
        //printf("%d: segment %d [%s] (%zu: %d: %zu)\n", (int)getpid(), nbytes, msg, buflen, tbytes, len);
        msg += nbytes;
        len -= nbytes;
        tbytes += nbytes;
    }
    /* This disguises a read error or EOF as success when a long message is truncated */
    //if (tbytes != 0)
    //    printf("%d: logging %d [%s]\n", (int)getpid(), tbytes, buffer);
    //else
    //    printf("%d: EOF\n", (int)getpid());
    return tbytes;
}

static void gen_msg(size_t size, char *buffer)
{
    enum { CHUNK_SIZE = 64 };
    //char *obuffer = buffer;     // DEBUG
    //size_t osize = size;        // DEBUG
    char c = 'a';
    while (size >= CHUNK_SIZE)
    {
        memset(buffer, c, CHUNK_SIZE - 1);
        buffer[CHUNK_SIZE - 1] = '\n';
        size -= CHUNK_SIZE;
        buffer += CHUNK_SIZE;
        if (++c > 'z')
            c = 'a';
    }
    if (size > 0)
    {
        if (size > 1)
            memset(buffer, '@', size - 1);
        buffer[size - 1] = '\n';
        buffer += size;
    }
    buffer[0] = '\0';
    //printf("GM: Buffer %zu (%zu) [%s]\n", osize, strlen(obuffer), obuffer);   // DEBUG
}

int main(void)
{
    int pipefd[2];
    pid_t pid;
    char szLogtest1[] = "Log Event: Blah blah blah\n";
    char szLogtest2[] = "Log Event: Blah blah 2\n";

    pipe(pipefd);

    if ((pid = fork()) == -1)
    {
        fprintf(stderr, "Fork error!\n");
        exit(1);
    }
    else if (pid == 0)
    {
        printf("%d: I am child!\n", (int)getpid());
        close(pipefd[1]);     // close the write end of pipe

        char readbuffer[1200];
        int nbytes;
        while ((nbytes = read_log(pipefd[0], sizeof(readbuffer), readbuffer)) > 0)
        {
            printf("%d: Logging string: %d [%s]\n", (int)getpid(), nbytes, readbuffer);
        }
        close(pipefd[0]);
        printf("%d: EOF on pipe - exiting\n", (int)getpid());
        exit(EXIT_SUCCESS);
    }
    else
    {
        printf("%d: I am parent!\n", (int)getpid());
        close(pipefd[0]);     // close read end of pipe

        write_log(pipefd[1], szLogtest1);
        write_log(pipefd[1], szLogtest2);
        char buffer[1100];
        gen_msg(290, buffer);
        write_log(pipefd[1], buffer);
        gen_msg(842, buffer);
        write_log(pipefd[1], buffer);
        //int multiplier = 4;
        //for (int i = 64; i <= 1024; i *= multiplier)
        //{
        //    char buffer[1100];
        //    //for (int j = i - multiplier; j <= i + multiplier; j++)
        //    for (int j = i - 1; j <= i + 1; j++)
        //    {
        //        gen_msg(j, buffer);
        //        write_log(pipefd[1], buffer);
        //    }
        //}
        close(pipefd[1]);
        wait_for(pid);
    }

    return 0;
}

你应该捕捉孩子什么时候退出,这样你就可以看到它结束时的退出代码/信号。如果你在父对象中添加
而(1){sleep(1);}
会发生什么?会产生完全相同的输出,而且Chris,孩子永远不应该退出;这是一个无限循环,子循环接收51个字节,这两个字节都是消息,包括两端的空终止字符。但是您的孩子只打印到第一个空终止符。您可以对写入和读取使用固定长度的消息,这样孩子将准确读取写入的字节数。如果您的邮件在大多数情况下都比固定长度短,那么这是低效的。您还可以向子级添加一些smarts,以解析接收缓冲区,查找多条消息(如此处所示),并处理完整的消息。如果所有消息都是文本,请使用空字符作为分隔符。如果你发送二进制文件,你需要设计一些协议来帧消息。谢谢你的回复,但我想出了一个解决方案,只需将缓冲区的剩余部分转换为字符串(同时还有数据剩余)
#include <assert.h>
#include <limits.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/wait.h>
#include <unistd.h>

static void wait_for(pid_t pid)
{
    int corpse;
    int status;
    while ((corpse = wait(&status)) > 0)
    {
        printf("%d: PID %d exit status 0x%.4X\n", (int)getpid(), corpse, status);
        if (corpse == pid)
            break;
    }
}

static void write_log(int fd, const char *msg)
{
    ssize_t len = strlen(msg);
    unsigned char byte = len;
    assert(len > 0 && len <= UCHAR_MAX);

    if (write(fd, &byte, sizeof(byte)) != sizeof(byte) ||
        write(fd, msg, len) != len)
    {
        fprintf(stderr, "%d: failed to write message to logger\n", (int)getpid());
        exit(EXIT_FAILURE);
    }
    printf("%d: Wrote: %zd [%s]\n", (int)getpid(), len, msg);
}

static int read_log(int fd, size_t buflen, char buffer[buflen])
{
    unsigned char byte;
    if (read(fd, &byte, sizeof(byte)) != sizeof(byte))
    {
        fprintf(stderr, "%d: EOF on file descriptor %d\n", (int)getpid(), fd);
        return 0;
    }
    if (buflen < (size_t)(byte + 1))        // avoid signed/unsigned comparison
    {
        fprintf(stderr, "%d: buffer length %zu cannot hold %d bytes\n",
                (int)getpid(), buflen, byte + 1);
        exit(EXIT_FAILURE);
    }
    if (read(fd, buffer, byte) != byte)
    {
        fprintf(stderr, "%d: failed to read %d bytes from file descriptor %d\n",
                (int)getpid(), byte, fd);
        exit(EXIT_FAILURE);
    }
    buffer[byte] = '\0';
    return byte;
}

int main(void)
{
    int pipefd[2];
    pid_t pid;
    char szLogtest1[] = "Log Event: Blah blah blah\n";
    char szLogtest2[] = "Log Event: Blah blah 2\n";

    pipe(pipefd);

    if ((pid = fork()) == -1)
    {
        fprintf(stderr, "Fork error!\n");
        exit(1);
    }
    else if (pid == 0)
    {
        printf("%d: I am child!\n", (int)getpid());
        close(pipefd[1]);     // close the write end of pipe

        char readbuffer[512];
        int nbytes;
        while ((nbytes = read_log(pipefd[0], sizeof(readbuffer), readbuffer)) > 0)
        {
            printf("%d: Logging string: %d [%s]\n", (int)getpid(), nbytes, readbuffer);
        }
        close(pipefd[0]);
        printf("EOF on pipe -exiting\n");
        exit(EXIT_SUCCESS);
    }
    else
    {
        printf("%d: I am parent!\n", (int)getpid());
        close(pipefd[0]);     // close read end of pipe

        write_log(pipefd[1], szLogtest1);
        write_log(pipefd[1], szLogtest2);
        close(pipefd[1]);
        wait_for(pid);
    }

    return 0;
}
$ ./log59
48993: I am parent!
48993: Wrote: 26 [Log Event: Blah blah blah
]
48993: Wrote: 23 [Log Event: Blah blah 2
]
48994: I am child!
48994: Logging string: 26 [Log Event: Blah blah blah
]
48994: Logging string: 23 [Log Event: Blah blah 2
]
48994: EOF on file descriptor 3
EOF on pipe -exiting
48993: PID 48994 exit status 0x0000
$
/* SO 4481-0272 */
/* Variant 3 - handle long messages */
#include <assert.h>
#include <limits.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/wait.h>
#include <unistd.h>

static void wait_for(pid_t pid)
{
    int corpse;
    int status;
    while ((corpse = wait(&status)) > 0)
    {
        printf("%d: PID %d exit status 0x%.4X\n", (int)getpid(), corpse, status);
        if (corpse == pid)
            break;
    }
}

static void write_log_segment(int fd, size_t lencode, size_t length, const char *msg)
{
    unsigned char byte = lencode;
    assert(lencode == length || (lencode == 0 && length == UCHAR_MAX));

    if (write(fd, &byte, sizeof(byte)) != sizeof(byte) ||
        write(fd, msg, length) != (ssize_t)length)    // avoid signed/unsigned comparison
    {
        fprintf(stderr, "%d: failed to write message to logger\n", (int)getpid());
        exit(EXIT_FAILURE);
    }
    //printf("%d: Wrote segment: %zu (code %zu) [%s]\n", (int)getpid(), length, lencode, msg);
}

static void write_log(int fd, const char *msg)
{
    size_t len = strlen(msg);
    printf("%d: Write buffer: %zu [%s]\n", (int)getpid(), len, msg);
    while (len > 0)
    {
        size_t lencode = (len <= UCHAR_MAX) ? len : 0;
        size_t length  = (len <= UCHAR_MAX) ? len : UCHAR_MAX;
        write_log_segment(fd, lencode, length, msg);
        len -= length;
        msg += length;
    }
    //printf("%d: Buffer complete\n", (int)getpid());
}

/*
** This code could encounter:
** 1.  EOF (or a read error) - return EOF.
** 2.  A regular complete message in a single segment - return message
**     length (1..255).
** 3.  A partial message with more segments to follow - return MSG_SEGMENT.
** Partial segments with more to follow are of length 255, but it is
** possible to have a regular complete message of length 255.
*/
enum { MSG_SEGMENT = -2 };
static_assert(MSG_SEGMENT != EOF, "EOF is not distinct from MSG_SEGMENT");

static int read_log_segment(int fd, size_t buflen, char buffer[buflen])
{
    unsigned char byte;
    if (read(fd, &byte, sizeof(byte)) != sizeof(byte))
    {
        fprintf(stderr, "%d: EOF on file descriptor %d\n", (int)getpid(), fd);
        return EOF;
    }
    size_t length = byte;
    if (length == 0)
        length = UCHAR_MAX;
    if (buflen < (size_t)(byte + 1))        // avoid signed/unsigned comparison
    {
        fprintf(stderr, "%d: buffer length %zu cannot hold %d bytes\n",
                (int)getpid(), buflen, byte + 1);
        exit(EXIT_FAILURE);
    }
    if (read(fd, buffer, length) != (ssize_t)length)    // avoid signed/unsigned comparison
    {
        fprintf(stderr, "%d: failed to read %zu bytes from file descriptor %d\n",
                (int)getpid(), length, fd);
        exit(EXIT_FAILURE);
    }
    buffer[length] = '\0';
    return (byte == 0) ? MSG_SEGMENT : byte;
}

static size_t read_log(int fd, size_t buflen, char buffer[buflen])
{
    //printf("%d: reading %zu\n", (int)getpid(), buflen);
    char *msg = buffer;
    size_t len = buflen;
    int nbytes;
    int tbytes = 0;
    while (len > 0 && (nbytes = read_log_segment(fd, len, msg)) != EOF)
    {
        if (nbytes != MSG_SEGMENT)
        {
            tbytes += nbytes;
            break;
        }
        nbytes = UCHAR_MAX;
        //printf("%d: segment %d [%s] (%zu: %d: %zu)\n", (int)getpid(), nbytes, msg, buflen, tbytes, len);
        msg += nbytes;
        len -= nbytes;
        tbytes += nbytes;
    }
    /* This disguises a read error or EOF as success when a long message is truncated */
    //if (tbytes != 0)
    //    printf("%d: logging %d [%s]\n", (int)getpid(), tbytes, buffer);
    //else
    //    printf("%d: EOF\n", (int)getpid());
    return tbytes;
}

static void gen_msg(size_t size, char *buffer)
{
    enum { CHUNK_SIZE = 64 };
    //char *obuffer = buffer;     // DEBUG
    //size_t osize = size;        // DEBUG
    char c = 'a';
    while (size >= CHUNK_SIZE)
    {
        memset(buffer, c, CHUNK_SIZE - 1);
        buffer[CHUNK_SIZE - 1] = '\n';
        size -= CHUNK_SIZE;
        buffer += CHUNK_SIZE;
        if (++c > 'z')
            c = 'a';
    }
    if (size > 0)
    {
        if (size > 1)
            memset(buffer, '@', size - 1);
        buffer[size - 1] = '\n';
        buffer += size;
    }
    buffer[0] = '\0';
    //printf("GM: Buffer %zu (%zu) [%s]\n", osize, strlen(obuffer), obuffer);   // DEBUG
}

int main(void)
{
    int pipefd[2];
    pid_t pid;
    char szLogtest1[] = "Log Event: Blah blah blah\n";
    char szLogtest2[] = "Log Event: Blah blah 2\n";

    pipe(pipefd);

    if ((pid = fork()) == -1)
    {
        fprintf(stderr, "Fork error!\n");
        exit(1);
    }
    else if (pid == 0)
    {
        printf("%d: I am child!\n", (int)getpid());
        close(pipefd[1]);     // close the write end of pipe

        char readbuffer[1200];
        int nbytes;
        while ((nbytes = read_log(pipefd[0], sizeof(readbuffer), readbuffer)) > 0)
        {
            printf("%d: Logging string: %d [%s]\n", (int)getpid(), nbytes, readbuffer);
        }
        close(pipefd[0]);
        printf("%d: EOF on pipe - exiting\n", (int)getpid());
        exit(EXIT_SUCCESS);
    }
    else
    {
        printf("%d: I am parent!\n", (int)getpid());
        close(pipefd[0]);     // close read end of pipe

        write_log(pipefd[1], szLogtest1);
        write_log(pipefd[1], szLogtest2);
        char buffer[1100];
        gen_msg(290, buffer);
        write_log(pipefd[1], buffer);
        gen_msg(842, buffer);
        write_log(pipefd[1], buffer);
        //int multiplier = 4;
        //for (int i = 64; i <= 1024; i *= multiplier)
        //{
        //    char buffer[1100];
        //    //for (int j = i - multiplier; j <= i + multiplier; j++)
        //    for (int j = i - 1; j <= i + 1; j++)
        //    {
        //        gen_msg(j, buffer);
        //        write_log(pipefd[1], buffer);
        //    }
        //}
        close(pipefd[1]);
        wait_for(pid);
    }

    return 0;
}
50183: I am parent!
50183: Write buffer: 26 [Log Event: Blah blah blah
]
50183: Write buffer: 23 [Log Event: Blah blah 2
]
50183: Write buffer: 290 [aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa
bbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbb
ccccccccccccccccccccccccccccccccccccccccccccccccccccccccccccccc
ddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddd
@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@
]
50183: Write buffer: 842 [aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa
bbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbb
ccccccccccccccccccccccccccccccccccccccccccccccccccccccccccccccc
ddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddd
eeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeee
fffffffffffffffffffffffffffffffffffffffffffffffffffffffffffffff
ggggggggggggggggggggggggggggggggggggggggggggggggggggggggggggggg
hhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhh
iiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiii
jjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjj
kkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkk
lllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllll
mmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmm
@@@@@@@@@
]
50184: I am child!
50184: Logging string: 26 [Log Event: Blah blah blah
]
50184: Logging string: 23 [Log Event: Blah blah 2
]
50184: Logging string: 290 [aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa
bbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbb
ccccccccccccccccccccccccccccccccccccccccccccccccccccccccccccccc
ddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddd
@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@
]
50184: Logging string: 842 [aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa
bbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbb
ccccccccccccccccccccccccccccccccccccccccccccccccccccccccccccccc
ddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddd
eeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeee
fffffffffffffffffffffffffffffffffffffffffffffffffffffffffffffff
ggggggggggggggggggggggggggggggggggggggggggggggggggggggggggggggg
hhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhh
iiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiiii
jjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjjj
kkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkkk
lllllllllllllllllllllllllllllllllllllllllllllllllllllllllllllll
mmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmm
@@@@@@@@@
]
50184: EOF on file descriptor 3
50184: EOF on pipe - exiting
50183: PID 50184 exit status 0x0000