166 lines
3.8 KiB
C++
166 lines
3.8 KiB
C++
#include "pyc_numeric.h"
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#include "pyc_module.h"
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#include "data.h"
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#include <cstring>
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#ifdef _MSC_VER
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#define snprintf sprintf_s
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#endif
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/* PycInt */
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void PycInt::load(PycData* stream, PycModule*)
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{
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m_value = stream->get32();
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}
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/* PycLong */
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void PycLong::load(PycData* stream, PycModule*)
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{
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if (type() == TYPE_INT64) {
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int lo = stream->get32();
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int hi = stream->get32();
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m_value.push_back((lo ) & 0xFFFF);
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m_value.push_back((lo >> 16) & 0xFFFF);
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m_value.push_back((hi ) & 0xFFFF);
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m_value.push_back((hi >> 16) & 0xFFFF);
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m_size = (hi & 0x80000000) != 0 ? -4 : 4;
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} else {
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m_size = stream->get32();
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int actualSize = m_size >= 0 ? m_size : -m_size;
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for (int i=0; i<actualSize; i++)
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m_value.push_back(stream->get16());
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}
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}
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bool PycLong::isEqual(PycRef<PycObject> obj) const
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{
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if (type() != obj->type())
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return false;
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PycRef<PycLong> longObj = obj.cast<PycLong>();
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if (m_size != longObj->m_size)
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return false;
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std::list<int>::const_iterator it1 = m_value.begin();
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std::list<int>::const_iterator it2 = longObj->m_value.begin();
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while (it1 != m_value.end()) {
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if (*it1 != *it2)
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return false;
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++it1, ++it2;
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}
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return true;
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}
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std::string PycLong::repr() const
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{
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// Longs are printed as hex, since it's easier (and faster) to convert
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// arbitrary-length integers to a power of two than an arbitrary base
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if (m_size == 0)
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return "0x0L";
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// Realign to 32 bits, since Python uses only 15
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std::list<unsigned> bits;
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std::list<int>::const_iterator bit;
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int shift = 0, temp = 0;
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for (bit = m_value.begin(); bit != m_value.end(); ++bit) {
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temp |= *bit << shift;
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shift += 15;
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if (shift >= 32) {
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bits.push_back(temp);
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shift -= 32;
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temp = *bit >> (15 - shift);
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}
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}
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if (temp)
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bits.push_back(temp);
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std::string accum;
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accum.resize(3 + (bits.size() * 8) + 2);
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char* aptr = &accum[0];
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if (m_size < 0)
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*aptr++ = '-';
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*aptr++ = '0';
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*aptr++ = 'x';
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std::list<unsigned>::const_reverse_iterator iter = bits.rbegin();
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aptr += snprintf(aptr, 9, "%X", *iter++);
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while (iter != bits.rend())
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aptr += snprintf(aptr, 9, "%08X", *iter++);
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*aptr++ = 'L';
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*aptr++ = 0;
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return accum;
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}
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/* PycFloat */
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void PycFloat::load(PycData* stream, PycModule*)
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{
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int len = stream->getByte();
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if (m_value)
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delete[] m_value;
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if (len > 0) {
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m_value = new char[len+1];
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stream->getBuffer(len, m_value);
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m_value[len] = 0;
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} else {
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m_value = 0;
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}
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}
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bool PycFloat::isEqual(PycRef<PycObject> obj) const
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{
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if (type() != obj->type())
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return false;
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PycRef<PycFloat> floatObj = obj.cast<PycFloat>();
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if (m_value == floatObj->m_value)
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return true;
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return (strcmp(m_value, floatObj->m_value) == 0);
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}
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/* PycComplex */
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void PycComplex::load(PycData* stream, PycModule* mod)
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{
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PycFloat::load(stream, mod);
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int len = stream->getByte();
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if (m_imag)
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delete[] m_imag;
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if (len > 0) {
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m_imag = new char[len+1];
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stream->getBuffer(len, m_imag);
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m_imag[len] = 0;
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} else {
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m_imag = 0;
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}
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}
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bool PycComplex::isEqual(PycRef<PycObject> obj) const
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{
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if (!PycFloat::isEqual(obj))
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return false;
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PycRef<PycComplex> floatObj = obj.cast<PycComplex>();
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if (m_imag == floatObj->m_imag)
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return true;
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return (strcmp(m_imag, floatObj->m_imag) == 0);
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}
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/* PycCFloat */
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void PycCFloat::load(PycData* stream, PycModule*)
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{
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m_value_i64 = stream->get64();
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}
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/* PycCComplex */
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void PycCComplex::load(PycData* stream, PycModule* mod)
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{
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PycCFloat::load(stream, mod);
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m_imag_i64 = stream->get64();
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}
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