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cmd_sabuhash_test.cc
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// cmd_sabuhash_test.cc-- test sabuhash (nucleotide string hashing)
#include <string>
#include <cstdlib>
#include <cstdint>
#include <iostream>
#include "utilities.h"
#include "hash.h"
#include "jelly_kmers.h"
#include "support.h"
#include "commands.h"
#include "cmd_sabuhash_test.h"
using std::string;
using std::vector;
using std::cin;
using std::cout;
using std::cerr;
using std::endl;
#define u32 std::uint32_t
#define u64 std::uint64_t
void SabuhashTestCommand::short_description
(std::ostream& s)
{
s << commandName << "-- test the sabuhash nucleotide-string hashing function" << endl;
}
void SabuhashTestCommand::usage
(std::ostream& s,
const string& message)
{
if (!message.empty())
{
s << message << endl;
s << endl;
}
short_description(s);
s << "usage: [cat <dna_strings> |] " << commandName << " <filename> [<filename>..] [options]" << endl;
// 123456789-123456789-123456789-123456789-123456789-123456789-123456789-123456789
s << " <dna_strings> nucleotide strings to hash; only used if no filenames are" << endl;
s << " provided" << endl;
s << " <filename> (cumulative) a sequence file, e.g. fasta or fastq" << endl;
s << " --k=<N> kmer size; applies only when input is from sequence files" << endl;
s << " (default is " << defaultKmerSize << ")" << endl;
s << " --strings hash strings instead of bits; applies only when input is" << endl;
s << " from sequence files" << endl;
s << " (by default kmers are hashed in 2-bit encoded form)" << endl;
s << " --negate negate hash values; replace values by their ones-complement" << endl;
s << " --modulus=<M> set the hash modulus" << endl;
s << " (by default, the hash values have no modulus)" << endl;
s << " --seed=<number> set the hash function's 32-bit seed" << endl;
s << " (the default seed is 0)" << endl;
}
void SabuhashTestCommand::debug_help
(std::ostream& s)
{
s << "--debug= options" << endl;
s << " jellybits" << endl;
s << " input" << endl;
}
void SabuhashTestCommand::parse
(int _argc,
char** _argv)
{
int argc;
char** argv;
vector<string> tempBvFilenames;
// defaults
kmerSize = defaultKmerSize;
useStringKmers = false;
negateHash = false;
modulus = 0;
hashSeed = 0;
#ifdef useJellyHash
hashSeed = JellyHashSeed;
#endif
// skip command name
argv = _argv+1; argc = _argc - 1;
if (argc <= 0) chastise ();
//////////
// scan arguments
//////////
for (int argIx=0 ; argIx<argc ; argIx++)
{
string arg = argv[argIx];
string argVal;
if (arg.empty()) continue;
string::size_type argValIx = arg.find('=');
if (argValIx == string::npos) argVal = "";
else argVal = arg.substr(argValIx+1);
// --help, etc.
if ((arg == "--help")
|| (arg == "-help")
|| (arg == "--h")
|| (arg == "-h")
|| (arg == "?")
|| (arg == "-?")
|| (arg == "--?"))
{ usage (cerr); std::exit (EXIT_SUCCESS); }
if ((arg == "--help=debug")
|| (arg == "--help:debug")
|| (arg == "?debug"))
{ debug_help(cerr); std::exit (EXIT_SUCCESS); }
// --k=<N>
if ((is_prefix_of (arg, "K="))
|| (is_prefix_of (arg, "--K="))
|| (is_prefix_of (arg, "k="))
|| (is_prefix_of (arg, "--k="))
|| (is_prefix_of (arg, "--kmer="))
|| (is_prefix_of (arg, "--kmersize=")))
{
kmerSize = string_to_u32(argVal);
if (kmerSize == 0)
chastise ("(in \"" + arg + "\") kmer size cannot be zero");
continue;
}
// --strings
if (arg == "--strings")
{ useStringKmers = true; continue; }
// --negate
if (arg == "--negate")
{ negateHash = true; continue; }
// --modulus=<M>
if ((is_prefix_of (arg, "--modulus="))
|| (is_prefix_of (arg, "M="))
|| (is_prefix_of (arg, "--M=")))
{ modulus = string_to_unitized_u32(argVal); continue; }
// --seed=<number>
if ((is_prefix_of (arg, "--seed="))
|| (is_prefix_of (arg, "S="))
|| (is_prefix_of (arg, "--S=")))
{ hashSeed = string_to_u64 (argVal); continue; }
// (unadvertised) debug options
if (arg == "--debug")
{ debug.insert ("debug"); continue; }
if (is_prefix_of (arg, "--debug="))
{
for (const auto& field : parse_comma_list(argVal))
debug.insert(to_lower(field));
continue;
}
// unrecognized --option
if (is_prefix_of (arg, "--"))
chastise ("unrecognized option: \"" + arg + "\"");
// <filename>
seqFilenames.emplace_back(strip_blank_ends(arg));
}
return;
}
SabuhashTestCommand::~SabuhashTestCommand()
{
if (hasher != nullptr) delete hasher;
}
int SabuhashTestCommand::execute()
{
// $$$ add trackMemory to hash constructor/destructor
hasher = new HashCanonical(kmerSize,hashSeed);
// if the user gave us sequence files, process kmers from those files
if (not seqFilenames.empty())
{
// create the hash table, with jellyfish defaults
const u64 hashSize = 10*1000*1000;
const u32 numReprobes = 126;
const u32 counterLen = 7;
unsigned int savedKmerSize = jellyfish::mer_dna::k();
jellyfish::mer_dna::k(kmerSize);
int numThreads = 1;
mer_hash_type merHash (hashSize, kmerSize*2, counterLen, numThreads, numReprobes);
// process the kmers
// $$$ make a version of sabuhash that works on 2-bit-encoded strings,
// .. using keyValuePair.first.data()[0] and making sure that k<=32
MerCounter counter(numThreads, merHash, seqFilenames.begin(), seqFilenames.end());
counter.exec_join (numThreads);
const auto jfAry = merHash.ary();
const auto end = jfAry->end();
for (auto kmer=jfAry->begin() ; kmer!=end ; ++kmer)
{
auto& keyValuePair = *kmer;
string merStr = keyValuePair.first.to_str();
if (useStringKmers)
{
if (contains(debug,"jellybits"))
{
u64* merData = (u64*) keyValuePair.first.data();
int merWords = (2*kmerSize + 63) / 64;
cerr << merStr;
for (int jIx=0 ; jIx<merWords ; jIx++)
cout << " " << std::setfill('0') << std::setw(16) << std::hex << std::uppercase << merData[jIx];
cout << endl;
}
perform_hash_test (merStr);
}
else
{
u64* merData = (u64*) keyValuePair.first.data();
perform_hash_test (merStr, merData);
}
}
jellyfish::mer_dna::k(savedKmerSize); // restore jellyfish kmer size
}
// otherwise, just process whole sequences from stdin
else
{
string seq;
while (std::getline (cin, seq))
perform_hash_test (seq);
}
return EXIT_SUCCESS;
}
void SabuhashTestCommand::perform_hash_test
(const string& seq,
const u64* data)
{
u32 h, hr;
u64 h64, h64r;
bool isMatch;
h64 = h64r = 0; // placate compiler
string revCompSeq = reverse_complement (seq);
if (contains(debug,"input"))
cerr << seq << " , " << revCompSeq << endl;
if (data != nullptr)
{
h64 = hasher->hash(data);
h64r = hasher->hash(revCompSeq);
}
else
{
h64 = hasher->hash(seq);
h64r = hasher->hash(revCompSeq);
}
if (negateHash)
{
h64 = ~h64;
h64r = ~h64r;
}
if (modulus == 0)
isMatch = (h64 == h64r);
else
{
h = h64 % modulus; hr = h64r % modulus;
isMatch = (h == hr);
}
std::ios::fmtflags saveCoutFlags(cout.flags());
if (isMatch)
{
if (modulus == 0)
cout << std::setfill('0') << std::setw(16) << std::hex << std::uppercase << h64 << " " << seq << endl;
else
{
size_t w = std::to_string(modulus-1).length();
cout << std::setw(w) << h << " " << seq << endl;
}
}
else
{
if (modulus == 0)
cout << "x " << std::setfill('0') << std::setw(16) << std::hex << std::uppercase << h64
<< " " << std::setfill('0') << std::setw(16) << std::hex << std::uppercase << h64r
<< " " << seq
<< " " << revCompSeq << endl;
else
{
size_t w = std::to_string(modulus-1).length();
cout << "x " << std::setw(w) << h
<< " " << std::setw(w) << hr
<< " " << seq
<< " " << revCompSeq << endl;
}
}
cout.flags(saveCoutFlags);
}