eris/eris.c

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C
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/*
* simple httpd to be started from tcpserver
*/
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#define _FILE_OFFSET_BITS 64
#include <stdlib.h>
#include <unistd.h>
#include <ctype.h>
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#include <sys/types.h>
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#include <sys/stat.h>
#include <fcntl.h>
#include <time.h>
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#include <stdio.h>
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#include <string.h>
#include <signal.h>
#include <sys/wait.h>
#include <grp.h>
#include <errno.h>
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#include <sys/select.h>
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#include <sys/socket.h>
#include <netinet/in.h>
#include <netinet/tcp.h>
#include <dirent.h>
#include <limits.h>
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#ifdef __linux__
# include <sys/sendfile.h>
#else
# define sendfile(a, b, c, d) -1
#endif
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#ifndef min
#define min(a,b) ((a)<(b)?(a):(b))
#endif
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/*
* Some things I use for debugging
*/
#define DUMPf(fmt, args...) fprintf(stderr, "%s:%s:%d " fmt "\n", __FILE__, __FUNCTION__, __LINE__, ##args)
#define DUMP() DUMPf("")
#define DUMP_d(v) DUMPf("%s = %d", #v, v)
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#define DUMP_u(v) DUMPf("%s = %u", #v, v)
#define DUMP_x(v) DUMPf("%s = 0x%x", #v, v)
#define DUMP_s(v) DUMPf("%s = %s", #v, v)
#define DUMP_c(v) DUMPf("%s = %c", #v, v)
#define DUMP_p(v) DUMPf("%s = %p", #v, v)
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#define DUMP_buf(v, l) DUMPf("%s = %.*s", #v, (int)(l), v)
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/* Wait this long (seconds) for a valid HTTP request */
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#define READTIMEOUT 2
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/* Wait this long trying to write out the response */
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#define WRITETIMEOUT 20
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/* Wait this long for CGI to complete */
#define CGI_TIMEOUT (5*60)
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/* Maximum size of a request header (the whole block) */
#define MAXHEADERLEN 8192
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/* Maximum size of a request line */
#define MAXREQUESTLEN 2048
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/* Maximum number of header fields */
#define MAXHEADERFIELDS 60
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/*
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* Options
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*/
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int doauth = 0;
int docgi = 0;
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int doidx = 0;
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int redirect = 0;
int portappend = 0;
/* Variables that persist between requests */
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int cwd;
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int keepalive = 0;
char *remote_ip = NULL;
char *remote_port = NULL;
char *remote_ident = NULL;
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/*
* Things that are really super convenient to have globally.
* These could be put into a struct for a threading version
* of eris.
*/
enum { GET, POST, HEAD } method;
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char *host;
char *user_agent;
char *refer;
char *path;
int http_version;
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char *content_type;
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size_t content_length;
off_t range_start, range_end;
time_t ims = 0;
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#define BUFFER_SIZE 8192
char stdout_buf[BUFFER_SIZE];
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#include "strings.c"
#include "mime.c"
#include "time.c"
#include "cgi.c"
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/*
* TCP_CORK is a Linux extension to work around a TCP problem.
* http://www.baus.net/on-tcp_cork has a good description.
* XXX: Since we do our own buffering, TCP_CORK may not be helping
* with anything. This needs testing.
*/
void
cork(int enable)
{
#ifdef TCP_CORK
static int corked = 0;
if (enable != corked) {
setsockopt(1, IPPROTO_TCP, TCP_CORK, &enable, sizeof(enable));
corked = enable;
}
#endif
}
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/** Log a request */
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static void
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dolog(int code, off_t len)
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{ /* write a log line to stderr */
sanitize(host);
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sanitize(user_agent);
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sanitize(refer);
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fprintf(stderr, "%s %d %lu %s %s %s %s\n",
remote_ip, code, (unsigned long) len, host, user_agent, refer, path);
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}
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void
header(unsigned int code, const char *httpcomment)
{
printf("HTTP/1.%d %u %s\r\n", http_version, code, httpcomment);
printf("Server: " FNORD "\r\n");
printf("Connection: %s\r\n", keepalive?"keep-alive":"close");
}
void
eoh()
{
printf("\r\n");
}
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/*
* output an error message and exit
*/
static void
badrequest(long code, const char *httpcomment, const char *message)
{
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size_t msglen = 0;
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keepalive = 0;
header(code, httpcomment);
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if (message) {
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msglen = (strlen(message) * 2) + 15;
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printf("Content-Length: %lu\r\nContent-Type: text/html\r\n",
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(unsigned long) msglen);
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printf("<title>%s</title>%s", message, message);
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}
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printf("\r\n");
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fflush(stdout);
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dolog(code, msglen);
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exit(0);
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}
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void
not_found()
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{
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char msg[] = "The requested URL does not exist here.";
header(404, "Not Found");
printf("Content-Type: text/html\r\n");
printf("Content-Length: %d\r\n", sizeof msg);
printf("\r\n");
printf("%s\n", msg); /* sizeof msg includes the NULL */
dolog(404, sizeof msg);
fflush(stdout);
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}
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void
get_ucspi_env()
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{
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char *ucspi = getenv("PROTO");
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if (ucspi) {
int protolen = strlen(ucspi);
char buf[80];
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if (protolen > 20) {
return;
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}
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strcpy(buf, ucspi);
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strcpy(buf + protolen, "REMOTEIP");
remote_ip = getenv(buf);
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strcpy(buf + protolen, "REMOTEPORT");
remote_port = getenv(buf);
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strcpy(buf + protolen, "REMOTEINFO");
remote_ident = getenv(buf);
}
}
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void
parse_options(int argc, char *argv[])
{
int opt;
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while (-1 != (opt = getopt(argc, argv, "acdhkprv"))) {
switch (opt) {
case 'a':
doauth = 1;
break;
case 'c':
docgi = 1;
break;
case 'd':
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doidx = 1;
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break;
case 'p':
portappend = 1;
break;
case 'r':
redirect = 1;
break;
case 'v':
printf(FNORD "\n");
exit(0);
default:
fprintf(stderr, "Usage: %s [OPTIONS]\n",
argv[0]);
fprintf(stderr, "\n");
fprintf(stderr, "-a Enable authentication\n");
fprintf(stderr, "-c Enable CGI\n");
fprintf(stderr, "-d Enable directory listing\n");
fprintf(stderr, "-p Append port to hostname directory\n");
fprintf(stderr, "-r Enable symlink redirection\n");
fprintf(stderr, "-v Print version and exit\n");
exit(69);
}
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}
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}
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void
fake_sendfile(int out_fd, int in_fd, off_t *offset, size_t count)
{
char buf[BUFFER_SIZE];
ssize_t l, m;
/* is mmap quicker? does it matter? */
if (-1 == lseek(in_fd, *offset, SEEK_SET)) {
/* We're screwed. The most helpful thing we can do now is die. */
fprintf(stderr, "Unable to seek. Dying.\n");
exit(0);
}
l = read(in_fd, buf, min(count, sizeof buf));
if (-1 == l) {
/* Also screwed. */
fprintf(stderr, "Unable to read an open file. Dying.\n");
exit(0);
}
*offset += l;
while (l) {
m = write(out_fd, buf, l);
if (-1 == m) {
/* ALSO screwed. */
fprintf(stderr, "Unable to write to client. Dying.\n");
exit(0);
}
l -= m;
}
}
void
serve_file(int fd, char *filename, struct stat *st)
{
off_t len, remain;
if (method == POST) {
badrequest(405, "Method Not Supported", "POST is not supported by this URL");
}
if (st->st_mtime < ims) {
header(304, "Not Changed");
eoh();
return;
}
header(200, "OK");
printf("Content-Type: %s\r\n", getmimetype(filename));
if ((range_end == 0) || (range_end > st->st_size)) {
range_end = st->st_size;
}
len = range_end - range_start;
printf("Content-Length: %llu\r\n", (unsigned long long) len);
{
struct tm *tp;
char buf[40];
tp = gmtime(&(st->st_mtime));
strftime(buf, sizeof buf, "%a, %d %b %Y %H:%M:%S GMT", tp);
printf("Last-Modified: %s\r\n", buf);
}
eoh();
fflush(stdout);
if (method == HEAD) {
return;
}
for (remain = len; remain; ) {
size_t count = min(remain, SIZE_MAX);
ssize_t sent;
sent = sendfile(1, fd, &range_start, count);
if (-1 == sent) {
fake_sendfile(1, fd, &range_start, count);
}
remain -= sent;
}
dolog(200, len);
}
void
serve_idx(int fd, char *path)
{
DIR *d = fdopendir(fd);
struct dirent *de;
if (method == POST) {
badrequest(405, "Method Not Supported", "POST is not supported by this URL");
}
keepalive = 0;
header(200, "OK");
printf("Content-Type: text/html\r\n");
eoh();
printf("<!DOCTYPE html>\r<html><head><title>");
html_esc(stdout, path);
printf("</title></head><body><h1>Directory Listing: ");
html_esc(stdout, path);
printf("</h1><pre>");
if (path[1]) {
printf("<a href=\"../\">Parent Directory</a>\n");
}
while ((de = readdir(d))) {
char *name = de->d_name;
char symlink[PATH_MAX];
struct stat st;
if (name[0] == '.') {
continue; /* hidden files -> skip */
}
if (lstat(name, &st)) {
continue; /* can't stat -> skip */
}
if (S_ISDIR(st.st_mode)) {
printf("[DIR] ");
} else if (S_ISLNK(st.st_mode)) {
ssize_t len = readlink(de->d_name, symlink, (sizeof symlink) - 1);
if (len < 1) {
continue;
}
name = symlink;
printf("[LNK] "); /* symlink */
} else if (S_ISREG(st.st_mode)) {
printf("[ ] %10llu", (unsigned long long)st.st_size);
} else {
continue; /* not a file we can provide -> skip */
}
/*
* write a href
*/
printf(" <a href=\"");
url_esc(stdout, name);
if (S_ISDIR(st.st_mode)) {
printf("/");
}
printf("\">");
url_esc(stdout, name);
printf("</a>\n");
}
printf("</pre></body></html>");
fflush(stdout);
}
void
serve_cgi(char *path)
{
DUMP_s(path);
}
void
find_serve_file(char *relpath)
{
int fd;
struct stat st;
/* Open fspath. If that worked, */
if ((fd = open(relpath, O_RDONLY)) > -1) {
fstat(fd, &st);
/* If it is a directory, */
if (S_ISDIR(st.st_mode)) {
char path2[PATH_MAX];
int fd2;
/* Redirect if it doesn't end with / */
if (! endswith(path, "/")) {
header(301, "Redirect");
printf("Location: %s/", path);
eoh();
return;
}
/* Open relpath + "index.html". If that worked,*/
snprintf(path2, sizeof path2, "%sindex.html", relpath);
if ((fd2 = open(path2, O_RDONLY)) > -1) {
/* serve that file and return. */
fstat(fd2, &st);
serve_file(fd2, path2, &st);
close(fd2);
close(fd);
return;
} else {
if (docgi) {
snprintf(path2, sizeof path2, "%sindex.cgi", relpath);
if (! stat(path2, &st)) {
return serve_cgi(path2);
}
}
if (doidx) {
serve_idx(fd, relpath + 1);
close(fd);
return;
}
return not_found();
}
} else {
if (docgi && endswith(relpath, ".cgi")) {
close(fd);
return serve_cgi(relpath);
}
serve_file(fd, relpath, &st);
}
} else {
if (docgi && (errno == ENOTDIR)) {
char *p;
if ((p = strstr(relpath, ".cgi"))) {
p += 4;
setenv("PATH_INFO", p, 1);
*p = 0;
if (! stat(relpath, &st)) {
close(fd);
return serve_cgi(relpath);
}
}
}
return not_found();
}
}
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void
handle_request()
{
char request[MAXREQUESTLEN];
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char fspath[PATH_MAX];
char buf[MAXHEADERLEN];
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char *p;
host = NULL;
user_agent = NULL;
refer = NULL;
path = NULL;
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range_start = 0;
range_end = 0;
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content_type = NULL;
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content_length = 0;
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alarm(READTIMEOUT);
/* Read request line first */
request[0] = 0;
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if (NULL == fgets(request, sizeof request, stdin)) {
/* They must have hung up! */
exit(0);
}
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if (!strncmp(request, "GET /", 5)) {
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method = GET;
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p = request + 5;
} else if (!strncmp(request, "POST /", 6)) {
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method = POST;
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p = request + 6;
} else if (!strncmp(request, "HEAD /", 6)) {
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method = HEAD;
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p = request + 6;
} else {
/* This also handles the case where fgets does nothing */
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badrequest(405, "Method Not Allowed", "Unsupported HTTP method.");
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}
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if (docgi) {
p[-2] = 0;
setenv("REQUEST_METHOD", p, 1);
}
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/* Interpret path into fspath. */
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path = p - 1;
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{
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FILE *f = fmemopen(fspath, sizeof fspath, "w");
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char *query_string = NULL;
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fprintf(f, "./");
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for (; *p != ' '; p += 1) {
if (! query_string) {
char c = *p;
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switch (c) {
case 0:
badrequest(413, "Request Entity Too Large", "The HTTP request was too long");
case '\n':
badrequest(505, "Version Not Supported", "HTTP/0.9 not supported");
case '?':
query_string = p + 1;
break;
case '.':
if (p[-1] == '/') {
c = ':';
}
break;
case '%':
if (p[1] && p[2]) {
int a = fromhex(p[1]);
int b = fromhex(p[2]);
if ((a >= 0) && (b >= 0)) {
c = (a << 4) | b;
p += 2;
}
}
break;
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}
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fputc(c, f);
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}
}
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fputc(0, f);
fclose(f);
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*(p++) = 0; /* NULL-terminate path */
if (docgi && query_string) {
setenv("QUERY_STRING", query_string, 1);
}
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}
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http_version = -1;
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if (! strncmp(p, "HTTP/1.", 7) && p[8] && ((p[8] == '\r') || (p[8] == '\n'))) {
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http_version = p[7] - '0';
}
if (! ((http_version == 0) || (http_version == 1))) {
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http_version = 0;
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badrequest(505, "Version Not Supported", "HTTP version not supported");
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}
if (http_version == 1) {
keepalive = 1;
} else {
keepalive = 0;
}
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if (docgi) {
setenv("SERVER_PROTOCOL", p, 1);
}
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/* Read header fields */
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{
char *base = buf;
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int nheaders = 0;
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while (1) {
char *cgi_name = base;
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char *p;
int plen = (sizeof buf) - (base - buf);
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char *name, *val;
size_t len;
/* 40 is totally arbitrary here. */
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if (plen < 40) {
badrequest(431, "Request Header Too Large", "The HTTP header block was too large");
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}
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if (nheaders++ >= MAXHEADERFIELDS) {
badrequest(431, "Request Header Too Large", "Too many HTTP Headers");
}
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strcpy(cgi_name, "HTTP_");
plen -= 5;
p = cgi_name + 5;
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if (NULL == fgets(p, plen, stdin)) {
badrequest(500, "OS Error", "OS error reading headers");
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}
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len = extract_header_field(p, &val, 1);
if (! len) {
/* blank line */
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break;
}
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name = p;
if (! val) {
badrequest(400, "Invalid header", "Unable to parse header block");
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}
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/* Set up CGI environment variables */
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if (docgi) {
setenv(cgi_name, val, 1);
}
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/* By default, re-use buffer space */
base = cgi_name;
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/* Handle special header fields */
if (! strcmp(name, "HOST")) {
host = val;
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base = name + len + 1;
} else if (! strcmp(name, "USER_AGENT")) {
user_agent = val;
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base = name + len + 1;
} else if (! strcmp(name, "REFERER")) {
refer = val;
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base = name + len + 1;
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} else if (! strcmp(name, "CONTENT_TYPE")) {
content_type = val;
base = name + len + 1;
} else if (! strcmp(name, "CONTENT_LENGTH")) {
content_length = (size_t) strtoull(val, NULL, 10);
} else if (! strcmp(name, "CONNECTION")) {
if (! strcasecmp(val, "keep-alive")) {
keepalive = 1;
} else {
keepalive = 0;
}
} else if (! strcmp(name, "IF_MODIFIED_SINCE")) {
ims = timerfc(val);
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} else if (! strcmp(name, "RANGE")) {
/* Range: bytes=17-23 */
/* Range: bytes=23- */
if (! strncmp(val, "bytes=", 6)) {
p = val + 6;
range_start = (off_t) strtoull(p, &p, 10);
if (*p == '-') {
range_end = (off_t) strtoull(p+1, NULL, 10);
} else {
range_end = 0;
}
}
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}
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}
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}
/* Try to change into the appropriate directory */
{
char fn[PATH_MAX];
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if (host) {
strncpy(fn, host, sizeof fn);
} else {
fn[0] = 0;
}
if (fn[0] == '.') {
fn[0] = ':';
}
for (p = fn; *p; p += 1) {
switch (*p) {
case '/':
*p = ':';
break;
case ':':
*p = 0;
break;
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case 'A'...'Z':
*p ^= ' ';
break;
}
}
if ((-1 == chdir(fn)) && (-1 == chdir("default"))) {
badrequest(404, "Not Found", "This host is not served here");
}
}
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/* Serve the file */
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cork(1);
find_serve_file(fspath);
cork(0);
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return;
}
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int
main(int argc, char *argv[], const char *const *envp)
{
parse_options(argc, argv);
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cwd = open(".", O_RDONLY);
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setbuffer(stdout, stdout_buf, sizeof stdout_buf);
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signal(SIGPIPE, SIG_IGN);
get_ucspi_env();
while (1) {
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handle_request();
if (! keepalive) {
break;
}
fchdir(cwd);
}
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return 0;
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}