mirror of
https://github.com/bol-van/zapret.git
synced 2024-12-23 14:53:18 +00:00
389 lines
12 KiB
C
389 lines
12 KiB
C
#define _GNU_SOURCE
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#include "tamper.h"
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#include "params.h"
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#include "hostlist.h"
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#include "protocol.h"
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#include "helpers.h"
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#include <string.h>
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#include <stdio.h>
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// segment buffer has at least 5 extra bytes to extend data block
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void tamper_out(t_ctrack *ctrack, uint8_t *segment,size_t segment_buffer_size,size_t *size, size_t *split_pos, uint8_t *split_flags)
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{
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uint8_t *p, *pp, *pHost = NULL;
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size_t method_len = 0, pos;
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const char *method;
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bool bBypass = false, bHaveHost = false, bHostExcluded = false;
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char bRemovedHostSpace = 0;
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char *pc, Host[256];
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DBGPRINT("tamper_out")
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*split_pos=0;
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*split_flags=0;
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if ((method = HttpMethod(segment,*size)))
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{
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method_len = strlen(method)-2;
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VPRINT("Data block looks like http request start : %s", method)
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if (!ctrack->l7proto) ctrack->l7proto=HTTP;
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// cpu saving : we search host only if and when required. we do not research host every time we need its position
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if ((params.hostlist || params.hostlist_exclude) && HttpFindHost(&pHost,segment,*size))
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{
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p = pHost + 5;
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while (p < (segment + *size) && (*p == ' ' || *p == '\t')) p++;
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pp = p;
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while (pp < (segment + *size) && (pp - p) < (sizeof(Host) - 1) && *pp != '\r' && *pp != '\n') pp++;
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memcpy(Host, p, pp - p);
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Host[pp - p] = '\0';
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bHaveHost = true;
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VPRINT("Requested Host is : %s", Host)
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for(pc = Host; *pc; pc++) *pc=tolower(*pc);
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bBypass = !HostlistCheck(Host, &bHostExcluded);
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}
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if (!bBypass)
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{
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if (params.unixeol)
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{
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p = pp = segment;
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while ((p = memmem(p, segment + *size - p, "\r\n", 2)))
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{
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*p = '\n'; p++;
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memmove(p, p + 1, segment + *size - p - 1);
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(*size)--;
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if (pp == (p - 1))
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{
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// probably end of http headers
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VPRINT("Found double EOL at pos %td. Stop replacing.", pp - segment)
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break;
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}
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pp = p;
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}
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pHost = NULL; // invalidate
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}
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if (params.methodeol && (*size+1+!params.unixeol)<=segment_buffer_size)
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{
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VPRINT("Adding EOL before method")
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if (params.unixeol)
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{
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memmove(segment + 1, segment, *size);
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(*size)++;;
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segment[0] = '\n';
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}
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else
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{
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memmove(segment + 2, segment, *size);
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*size += 2;
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segment[0] = '\r';
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segment[1] = '\n';
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}
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pHost = NULL; // invalidate
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}
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if (params.methodspace && *size<segment_buffer_size)
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{
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// we only work with data blocks looking as HTTP query, so method is at the beginning
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VPRINT("Adding extra space after method")
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p = segment + method_len + 1;
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pos = method_len + 1;
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memmove(p + 1, p, *size - pos);
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*p = ' '; // insert extra space
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(*size)++; // block will grow by 1 byte
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if (pHost) pHost++; // Host: position will move by 1 byte
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}
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if ((params.hostdot || params.hosttab) && *size<segment_buffer_size && HttpFindHost(&pHost,segment,*size))
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{
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p = pHost + 5;
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while (p < (segment + *size) && *p != '\r' && *p != '\n') p++;
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if (p < (segment + *size))
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{
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pos = p - segment;
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VPRINT("Adding %s to host name at pos %zu", params.hostdot ? "dot" : "tab", pos)
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memmove(p + 1, p, *size - pos);
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*p = params.hostdot ? '.' : '\t'; // insert dot or tab
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(*size)++; // block will grow by 1 byte
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}
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}
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if (params.domcase && HttpFindHost(&pHost,segment,*size))
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{
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p = pHost + 5;
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pos = p - segment;
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VPRINT("Mixing domain case at pos %zu",pos)
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for (; p < (segment + *size) && *p != '\r' && *p != '\n'; p++)
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*p = (((size_t)p) & 1) ? tolower(*p) : toupper(*p);
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}
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if (params.hostnospace && HttpFindHost(&pHost,segment,*size) && (pHost+5)<(segment+*size) && pHost[5] == ' ')
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{
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p = pHost + 6;
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pos = p - segment;
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VPRINT("Removing space before host name at pos %zu", pos)
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memmove(p - 1, p, *size - pos);
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(*size)--; // block will shrink by 1 byte
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bRemovedHostSpace = 1;
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}
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if (params.hostcase && HttpFindHost(&pHost,segment,*size))
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{
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VPRINT("Changing 'Host:' => '%c%c%c%c:' at pos %td", params.hostspell[0], params.hostspell[1], params.hostspell[2], params.hostspell[3], pHost - segment)
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memcpy(pHost, params.hostspell, 4);
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}
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if (params.hostpad && HttpFindHost(&pHost,segment,*size))
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{
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// add : XXXXX: <padding?[\r\n|\n]
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char s[8];
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size_t hsize = params.unixeol ? 8 : 9;
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size_t hostpad = params.hostpad<hsize ? hsize : params.hostpad;
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if ((hsize+*size)>segment_buffer_size)
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VPRINT("could not add host padding : buffer too small")
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else
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{
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if ((hostpad+*size)>segment_buffer_size)
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{
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hostpad=segment_buffer_size-*size;
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VPRINT("host padding reduced to %zu bytes : buffer too small", hostpad)
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}
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else
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VPRINT("host padding with %zu bytes", hostpad)
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p = pHost;
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pos = p - segment;
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memmove(p + hostpad, p, *size - pos);
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(*size) += hostpad;
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while(hostpad)
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{
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#define MAX_HDR_SIZE 2048
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size_t padsize = hostpad > hsize ? hostpad-hsize : 0;
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if (padsize>MAX_HDR_SIZE) padsize=MAX_HDR_SIZE;
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// if next header would be too small then add extra padding to the current one
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if ((hostpad-padsize-hsize)<hsize) padsize+=hostpad-padsize-hsize;
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snprintf(s,sizeof(s),"%c%04x: ", 'a'+rand()%('z'-'a'+1), rand() & 0xFFFF);
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memcpy(p,s,7);
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p+=7;
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memset(p,'a'+rand()%('z'-'a'+1),padsize);
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p+=padsize;
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if (params.unixeol)
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*p++='\n';
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else
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{
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*p++='\r';
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*p++='\n';
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}
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hostpad-=hsize+padsize;
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}
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pHost = NULL; // invalidate
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}
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}
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*split_pos = HttpPos(params.split_http_req, params.split_pos, segment, *size);
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if (params.disorder_http) *split_flags |= SPLIT_FLAG_DISORDER;
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if (params.oob_http) *split_flags |= SPLIT_FLAG_OOB;
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}
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else
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{
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VPRINT("Not acting on this request")
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}
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}
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else if (IsTLSClientHello(segment,*size,false))
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{
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size_t tpos=0,spos=0;
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const uint8_t *ext;
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if (!ctrack->l7proto) ctrack->l7proto=TLS;
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VPRINT("packet contains TLS ClientHello")
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// we need host only if hostlist is present
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if ((params.hostlist || params.hostlist_exclude) && TLSHelloExtractHost((uint8_t*)segment,*size,Host,sizeof(Host),false))
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{
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VPRINT("hostname: %s",Host)
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bHaveHost = true;
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bBypass = !HostlistCheck(Host, &bHostExcluded);
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}
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if (bBypass)
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{
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VPRINT("Not acting on this request")
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}
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else
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{
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spos = TLSPos(params.split_tls, params.split_pos, segment, *size, 0);
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if ((5+*size)<=segment_buffer_size)
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{
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tpos = TLSPos(params.tlsrec, params.tlsrec_pos+5, segment, *size, 0);
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if (tpos>5)
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{
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// construct 2 TLS records from one
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uint16_t l = pntoh16(segment+3); // length
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if (l>=2)
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{
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// length is checked in IsTLSClientHello and cannot exceed buffer size
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if ((tpos-5)>=l) tpos=5+1;
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VPRINT("making 2 TLS records at pos %zu",tpos)
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memmove(segment+tpos+5,segment+tpos,*size-tpos);
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segment[tpos] = segment[0];
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segment[tpos+1] = segment[1];
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segment[tpos+2] = segment[2];
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phton16(segment+tpos+3,l-(tpos-5));
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phton16(segment+3,tpos-5);
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*size += 5;
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// split pos present and it is not before tlsrec split. increase split pos by tlsrec header size (5 bytes)
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if (spos && spos>=tpos) spos+=5;
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}
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}
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}
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if (spos && spos < *size)
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{
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VPRINT("split pos %zu",spos);
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*split_pos = spos;
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}
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if (params.disorder_tls) *split_flags |= SPLIT_FLAG_DISORDER;
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if (params.oob_tls) *split_flags |= SPLIT_FLAG_OOB;
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}
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}
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else if (params.split_any_protocol && params.split_pos < *size)
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*split_pos = params.split_pos;
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if (bHaveHost && bBypass && !bHostExcluded && *params.hostlist_auto_filename)
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{
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DBGPRINT("tamper_out put hostname : %s", Host)
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if (ctrack->hostname) free(ctrack->hostname);
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ctrack->hostname=strdup(Host);
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}
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if (params.disorder) *split_flags |= SPLIT_FLAG_DISORDER;
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if (params.oob) *split_flags |= SPLIT_FLAG_OOB;
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}
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static void auto_hostlist_reset_fail_counter(const char *hostname)
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{
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if (hostname)
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{
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hostfail_pool *fail_counter;
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fail_counter = HostFailPoolFind(params.hostlist_auto_fail_counters, hostname);
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if (fail_counter)
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{
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HostFailPoolDel(¶ms.hostlist_auto_fail_counters, fail_counter);
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VPRINT("auto hostlist : %s : fail counter reset. website is working.", hostname);
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HOSTLIST_DEBUGLOG_APPEND("%s : fail counter reset. website is working.", hostname);
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}
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}
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}
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static void auto_hostlist_failed(const char *hostname)
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{
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hostfail_pool *fail_counter;
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fail_counter = HostFailPoolFind(params.hostlist_auto_fail_counters, hostname);
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if (!fail_counter)
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{
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fail_counter = HostFailPoolAdd(¶ms.hostlist_auto_fail_counters, hostname, params.hostlist_auto_fail_time);
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if (!fail_counter)
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{
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fprintf(stderr, "HostFailPoolAdd: out of memory\n");
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return;
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}
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}
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fail_counter->counter++;
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VPRINT("auto hostlist : %s : fail counter %d/%d", hostname, fail_counter->counter, params.hostlist_auto_fail_threshold);
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HOSTLIST_DEBUGLOG_APPEND("%s : fail counter %d/%d", hostname, fail_counter->counter, params.hostlist_auto_fail_threshold);
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if (fail_counter->counter >= params.hostlist_auto_fail_threshold)
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{
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VPRINT("auto hostlist : fail threshold reached. adding %s to auto hostlist", hostname);
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HostFailPoolDel(¶ms.hostlist_auto_fail_counters, fail_counter);
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VPRINT("auto hostlist : rechecking %s to avoid duplicates", hostname);
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bool bExcluded=false;
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if (!HostlistCheck(hostname, &bExcluded) && !bExcluded)
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{
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VPRINT("auto hostlist : adding %s", hostname);
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HOSTLIST_DEBUGLOG_APPEND("%s : adding", hostname);
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if (!StrPoolAddStr(¶ms.hostlist, hostname))
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{
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fprintf(stderr, "StrPoolAddStr out of memory\n");
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return;
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}
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if (!append_to_list_file(params.hostlist_auto_filename, hostname))
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{
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perror("write to auto hostlist:");
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return;
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}
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params.hostlist_auto_mod_time = file_mod_time(params.hostlist_auto_filename);
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}
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else
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{
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VPRINT("auto hostlist : NOT adding %s", hostname);
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HOSTLIST_DEBUGLOG_APPEND("%s : NOT adding, duplicate detected", hostname);
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}
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}
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}
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void tamper_in(t_ctrack *ctrack, uint8_t *segment,size_t segment_buffer_size,size_t *size)
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{
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bool bFail=false;
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DBGPRINT("tamper_in hostname=%s", ctrack->hostname)
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if (*params.hostlist_auto_filename)
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{
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HostFailPoolPurgeRateLimited(¶ms.hostlist_auto_fail_counters);
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if (ctrack->l7proto==HTTP && ctrack->hostname)
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{
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if (IsHttpReply(segment,*size))
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{
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VPRINT("incoming HTTP reply detected for hostname %s", ctrack->hostname);
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bFail = HttpReplyLooksLikeDPIRedirect(segment, *size, ctrack->hostname);
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if (bFail)
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{
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VPRINT("redirect to another domain detected. possibly DPI redirect.")
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HOSTLIST_DEBUGLOG_APPEND("%s : redirect to another domain", ctrack->hostname);
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}
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else
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VPRINT("local or in-domain redirect detected. it's not a DPI redirect.")
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}
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else
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{
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// received not http reply. do not monitor this connection anymore
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VPRINT("incoming unknown HTTP data detected for hostname %s", ctrack->hostname);
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}
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if (bFail) auto_hostlist_failed(ctrack->hostname);
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}
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if (!bFail) auto_hostlist_reset_fail_counter(ctrack->hostname);
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}
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ctrack->bTamperInCutoff = true;
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}
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void rst_in(t_ctrack *ctrack)
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{
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DBGPRINT("rst_in hostname=%s", ctrack->hostname)
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if (!*params.hostlist_auto_filename) return;
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HostFailPoolPurgeRateLimited(¶ms.hostlist_auto_fail_counters);
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if (!ctrack->bTamperInCutoff && ctrack->hostname)
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{
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VPRINT("incoming RST detected for hostname %s", ctrack->hostname);
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HOSTLIST_DEBUGLOG_APPEND("%s : incoming RST", ctrack->hostname);
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auto_hostlist_failed(ctrack->hostname);
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}
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}
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void hup_out(t_ctrack *ctrack)
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{
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DBGPRINT("hup_out hostname=%s", ctrack->hostname)
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if (!*params.hostlist_auto_filename) return;
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HostFailPoolPurgeRateLimited(¶ms.hostlist_auto_fail_counters);
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if (!ctrack->bTamperInCutoff && ctrack->hostname)
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{
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// local leg dropped connection after first request. probably due to timeout.
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VPRINT("local leg closed connection after first request (timeout ?). hostname: %s", ctrack->hostname);
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HOSTLIST_DEBUGLOG_APPEND("%s : client closed connection without server reply", ctrack->hostname);
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auto_hostlist_failed(ctrack->hostname);
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}
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}
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