author | Michael Krelin <hacker@klever.net> | 2009-04-05 13:32:09 (UTC) |
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committer | Michael Krelin <hacker@klever.net> | 2009-04-05 13:32:09 (UTC) |
commit | 878315238f71307b5b62ed314096f4a7c465bf3e (patch) (side-by-side diff) | |
tree | dad1579d95b1f7189dc6be5cbd66c36cf340cb94 /src/eyetil.cc | |
parent | 01eedb36de69f92fc896c525047df78b34f87324 (diff) | |
download | iii-878315238f71307b5b62ed314096f4a7c465bf3e.zip iii-878315238f71307b5b62ed314096f4a7c465bf3e.tar.gz iii-878315238f71307b5b62ed314096f4a7c465bf3e.tar.bz2 |
integrity digest calculation
implemented integrity digest calculation for uploaded files,
thanks to cdavies of eye-fi forums.
Signed-off-by: Michael Krelin <hacker@klever.net>
-rw-r--r-- | src/eyetil.cc | 29 |
1 files changed, 28 insertions, 1 deletions
diff --git a/src/eyetil.cc b/src/eyetil.cc index 2fbd687..fe816a6 100644 --- a/src/eyetil.cc +++ b/src/eyetil.cc @@ -1,35 +1,36 @@ #include <stdlib.h> #include <sys/stat.h> #include <syslog.h> #include <iostream> #include <cassert> #include <stdexcept> +#include <algorithm> +#include <numeric> #include <openssl/md5.h> #include "eyetil.h" binary_t& binary_t::from_hex(const std::string& h) { - /* TODO: algorithmize */ std::string::size_type hs = h.length(); if(hs&1) throw std::runtime_error("odd number of characters in hexadecimal number"); int rvs = hs>>1; resize(rvs); const unsigned char *hp = (const unsigned char*)h.data(); iterator oi=begin(); char t[3] = { 0,0,0 }; for(int i=0;i<rvs;++i) { t[0]=*(hp++); t[1]=*(hp++); *(oi++) = strtol(t,0,16); } return *this; } binary_t& binary_t::from_data(const void *d,size_t s) { resize(s); std::copy((const unsigned char*)d,(const unsigned char *)d+s, begin() ); return *this; } std::string binary_t::hex() const { std::string rv; @@ -96,24 +97,50 @@ tarchive_t::tarchive_t(void *p,size_t s) : a(archive_read_new()), e(0) { if(archive_read_open_memory(a,p,s)) { archive_read_finish(a); throw std::runtime_error("failed to archive_read_open_memory()"); } } tarchive_t::~tarchive_t() { assert(a); archive_read_finish(a); } bool tarchive_t::read_next_header() { assert(a); return archive_read_next_header(a,&e)==ARCHIVE_OK; } std::string tarchive_t::entry_pathname() { assert(a); assert(e); return archive_entry_pathname(e); } bool tarchive_t::read_data_into_fd(int fd) { assert(a); return archive_read_data_into_fd(a,fd)==ARCHIVE_OK; } + +#pragma pack(1) +struct block512_t { + enum { words = 512 / sizeof(uint16_t) }; + uint16_t data[words]; + + static uint16_t tcpcksum(block512_t& data) { + uint32_t sum = std::accumulate(data.data,data.data+words,0); + while(uint32_t hw = sum>>16) sum = (sum&0xffff)+hw; + return ~sum; + } + +}; +#pragma pack() + +binary_t integrity_digest(const void *ptr,size_t size,const std::string& ukey) { + binary_t key; key.from_hex(ukey); + std::vector<uint16_t> blksums; blksums.reserve(size/sizeof(block512_t)); + block512_t *db = (block512_t*)ptr, + *de = db + size/sizeof(block512_t); + std::transform( db, de, std::back_inserter(blksums), block512_t::tcpcksum ); + binary_t subject; + subject.from_data((void*)&(blksums.front()),blksums.size()*sizeof(uint16_t)); + std::copy( key.begin(), key.end(), std::back_inserter(subject) ); + return subject.md5(); +} |