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#include "socket.h"
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#include "io.h"
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#include "buffer.h"
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#include "ip6.h"
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#include "array.h"
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#include "case.h"
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#include "fmt.h"
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#include "iob.h"
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#include "str.h"
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#include <string.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <unistd.h>
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#include <stdlib.h>
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#include <errno.h>
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static void carp(const char* routine) {
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buffer_puts(buffer_2,routine);
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buffer_puts(buffer_2,": ");
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buffer_puterror(buffer_2);
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buffer_putnlflush(buffer_2);
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}
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static void panic(const char* routine) {
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carp(routine);
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exit(111);
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}
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struct http_data {
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array r;
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io_batch iob;
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char* hdrbuf;
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int hlen;
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char ip[16];
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};
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int header_complete(struct http_data* r)
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{
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long i;
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long l = array_bytes(&r->r);
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const char* c = array_start(&r->r);
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for (i=0; i+1<l; ++i)
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{
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if (c[i]=='\n' && c[i+1]=='\n')
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return i+2;
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if (i+3<l && c[i]=='\r' && c[i+1]=='\n' && c[i+2]=='\r' && c[i+3]=='\n')
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return i+4;
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}
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return 0;
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}
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void httperror(struct http_data* r,const char* title,const char* message)
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{
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char* c;
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c=r->hdrbuf=(char*)malloc(strlen(message)+strlen(title)+200);
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if (!c)
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{
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r->hdrbuf="HTTP/1.0 500 internal error\r\nContent-Type: text/plain\r\nConnection: close\r\n\r\nout of memory\n";
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r->hlen=strlen(r->hdrbuf);
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}
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else
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{
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c+=fmt_str(c,"HTTP/1.0 ");
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c+=fmt_str(c,title);
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c+=fmt_str(c,"\r\nContent-Type: text/html\r\nConnection: close\r\nContent-Length: ");
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c+=fmt_ulong(c,strlen(message)+strlen(title)+16-4);
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c+=fmt_str(c,"\r\n\r\n<title>");
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c+=fmt_str(c,title+4);
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c+=fmt_str(c,"</title>\n");
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r->hlen=c - r->hdrbuf;
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}
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iob_addbuf(&r->iob,r->hdrbuf,r->hlen);
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}
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// bestimmten http parameter auslesen und adresse zurueckgeben
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const char* http_header(struct http_data* r,const char* h)
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{
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long i;
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long l = array_bytes(&r->r);
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long sl = strlen(h);
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const char* c = array_start(&r->r);
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for (i=0; i+sl+2<l; ++i)
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{
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if (c[i]=='\n' && case_equalb(c+i+1,sl,h) && c[i+sl+1]==':')
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{
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c+=i+sl+1;
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if (*c==' ' || *c=='\t') ++c;
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return c;
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}
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return 0;
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}
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}
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void httpresponse(struct http_data* h,int64 s)
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{
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char* c;
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array_cat0(&h->r);
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c = array_start(&h->r);
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if (byte_diff(c,4,"GET "))
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{
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e400:
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httperror(h,"400 Invalid Request","This server only understands GET.");
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}
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else
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{
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char *d;
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int64 fd;
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struct stat s;
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// expect 'GET /uri?nnbjhg HTTP/1.*'
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c+=4;
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for (d=c; *d!=' '&&*d!='\t'&&*d!='\n'&&*d!='\r'; ++d) ;
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if (*d!=' ') goto e400;
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*d=0;
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if (c[0]!='/') goto e404;
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while (c[1]=='/') ++c;
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if (!byte_diff(c,9,"announce?"))
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{
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// info_hash, left, port, numwant, compact
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struct ot_peer peer;
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ot_hash hash;
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byte_copy( peer.ip, h->ip, 4);
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peer.port = 6881;
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c+=9;
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while( *c!=' ' ) {
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if(!byte_diff(c,10,"info_hash="))
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{
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size_t destlen = 20;
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// String is expected to be URL encoded, so expect
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// (%[0-9A-F][0-9A-F]){20}
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int s = scan_urlencoded( c+10, hash, &destlen);
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if( c[s+10] != '&' )
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goto e_parse;
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}
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else if(!byte_diff(c,8,"numwant="))
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{
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}
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else if(!byte_diff(c,8,"compact="))
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{
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}
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else if(!byte_diff(c,5,"port="))
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{
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}
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else if(!byte_diff(c,5,"left="))
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{
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}
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while( *++c!=' ' && *c!='&');
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}
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}
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else if (!byte_diff(c,7,"scrape?"))
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{
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}
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else
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{
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httperror(h,"404 Not Found","No such file or directory.");
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goto e404;
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}
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c=h->hdrbuf=(char*)malloc(500);
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c+=fmt_str(c,"HTTP/1.1 Coming Up\r\nContent-Type: text/plain");
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c+=fmt_str(c,"\r\nContent-Length: ");
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/* ANSWER SIZE*/
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c+=fmt_ulonglong(c,s.st_size);
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c+=fmt_str(c,"\r\nLast-Modified: ");
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/* MODIFY DATE */
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c+=fmt_httpdate(c,s.st_mtime);
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c+=fmt_str(c,"\r\nConnection: close\r\n\r\n");
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iob_addbuf(&h->iob,h->hdrbuf,c - h->hdrbuf);
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iob_addbuf(&h->iob,tracker_answer, tzracker_answer_size);
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}
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e404:
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io_dontwantread(s);
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io_wantwrite(s);
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}
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int main()
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{
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int s=socket_tcp6();
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uint32 scope_id;
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char ip[16];
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uint16 port;
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if (socket_bind6_reuse(s,V6any,8000,0)==-1)
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panic("socket_bind6_reuse");
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if (socket_listen(s,16)==-1)
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panic("socket_listen");
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if (!io_fd(s))
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panic("io_fd");
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io_wantread(s);
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for (;;)
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{
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int64 i;
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io_wait();
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while ((i=io_canread())!=-1)
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{
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if (i==s) // ist es der serversocket?
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{
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int n;
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while ((n=socket_accept6(s,ip,&port,&scope_id))!=-1)
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{
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if (io_fd(n))
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{
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struct http_data* h=(struct http_data*)malloc(sizeof(struct http_data));
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io_wantread(n);
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if (h)
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{
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byte_zero(h,sizeof(struct http_data));
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byte_copy(h->ip,ip,sizeof(ip));
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io_setcookie(n,h);
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} else
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io_close(n);
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} else
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io_close(n);
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buffer_putnlflush(buffer_2);
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}
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if (errno==EAGAIN)
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io_eagain(s);
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else
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carp("socket_accept6");
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}
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else
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{
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char buf[8192];
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struct http_data* h=io_getcookie(i);
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int l=io_tryread(i,buf,sizeof buf);
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if (l<=0)
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{
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if (h)
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{
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array_reset(&h->r);
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iob_reset(&h->iob);
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free(h->hdrbuf); h->hdrbuf=0;
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}
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io_close(i);
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}
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else
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{
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array_catb(&h->r,buf,l);
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if (array_failed(&h->r))
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{
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httperror(h,"500 Server Error","request too long.");
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emerge:
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io_dontwantread(i);
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io_wantwrite(i);
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}
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else if (array_bytes(&h->r)>8192)
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{
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httperror(h,"500 request too long","You sent too much headers");
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goto emerge;
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}
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else if ((l=header_complete(h)))
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{
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httpresponse(h,i);
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}
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}
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}
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}
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while ((i=io_canwrite())!=-1)
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{
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struct http_data* h=io_getcookie(i);
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int64 r=iob_send(i,&h->iob);
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if (r==-1)
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io_eagain(i);
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else
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if (r<=0)
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{
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array_trunc(&h->r);
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iob_reset(&h->iob);
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free(h->hdrbuf); h->hdrbuf=0;
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io_close(i);
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}
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}
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}
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return 0;
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}
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