mirror of https://github.com/python/cpython
771 lines
21 KiB
C
771 lines
21 KiB
C
/*[clinic input]
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preserve
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[clinic start generated code]*/
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#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
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# include "pycore_gc.h" // PyGC_Head
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# include "pycore_runtime.h" // _Py_ID()
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#endif
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#include "pycore_modsupport.h" // _PyArg_UnpackKeywords()
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PyDoc_STRVAR(binascii_a2b_uu__doc__,
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"a2b_uu($module, data, /)\n"
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"--\n"
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"\n"
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"Decode a line of uuencoded data.");
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#define BINASCII_A2B_UU_METHODDEF \
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{"a2b_uu", (PyCFunction)binascii_a2b_uu, METH_O, binascii_a2b_uu__doc__},
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static PyObject *
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binascii_a2b_uu_impl(PyObject *module, Py_buffer *data);
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static PyObject *
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binascii_a2b_uu(PyObject *module, PyObject *arg)
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{
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PyObject *return_value = NULL;
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Py_buffer data = {NULL, NULL};
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if (!ascii_buffer_converter(arg, &data)) {
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goto exit;
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}
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return_value = binascii_a2b_uu_impl(module, &data);
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exit:
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/* Cleanup for data */
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if (data.obj)
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PyBuffer_Release(&data);
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return return_value;
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}
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PyDoc_STRVAR(binascii_b2a_uu__doc__,
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"b2a_uu($module, data, /, *, backtick=False)\n"
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"--\n"
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"\n"
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"Uuencode line of data.");
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#define BINASCII_B2A_UU_METHODDEF \
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{"b2a_uu", _PyCFunction_CAST(binascii_b2a_uu), METH_FASTCALL|METH_KEYWORDS, binascii_b2a_uu__doc__},
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static PyObject *
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binascii_b2a_uu_impl(PyObject *module, Py_buffer *data, int backtick);
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static PyObject *
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binascii_b2a_uu(PyObject *module, PyObject *const *args, Py_ssize_t nargs, PyObject *kwnames)
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{
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PyObject *return_value = NULL;
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#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
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#define NUM_KEYWORDS 1
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static struct {
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PyGC_Head _this_is_not_used;
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PyObject_VAR_HEAD
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PyObject *ob_item[NUM_KEYWORDS];
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} _kwtuple = {
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.ob_base = PyVarObject_HEAD_INIT(&PyTuple_Type, NUM_KEYWORDS)
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.ob_item = { &_Py_ID(backtick), },
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};
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#undef NUM_KEYWORDS
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#define KWTUPLE (&_kwtuple.ob_base.ob_base)
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#else // !Py_BUILD_CORE
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# define KWTUPLE NULL
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#endif // !Py_BUILD_CORE
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static const char * const _keywords[] = {"", "backtick", NULL};
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static _PyArg_Parser _parser = {
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.keywords = _keywords,
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.fname = "b2a_uu",
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.kwtuple = KWTUPLE,
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};
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#undef KWTUPLE
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PyObject *argsbuf[2];
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Py_ssize_t noptargs = nargs + (kwnames ? PyTuple_GET_SIZE(kwnames) : 0) - 1;
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Py_buffer data = {NULL, NULL};
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int backtick = 0;
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args = _PyArg_UnpackKeywords(args, nargs, NULL, kwnames, &_parser, 1, 1, 0, argsbuf);
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if (!args) {
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goto exit;
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}
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if (PyObject_GetBuffer(args[0], &data, PyBUF_SIMPLE) != 0) {
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goto exit;
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}
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if (!noptargs) {
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goto skip_optional_kwonly;
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}
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backtick = PyObject_IsTrue(args[1]);
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if (backtick < 0) {
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goto exit;
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}
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skip_optional_kwonly:
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return_value = binascii_b2a_uu_impl(module, &data, backtick);
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exit:
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/* Cleanup for data */
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if (data.obj) {
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PyBuffer_Release(&data);
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}
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return return_value;
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}
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PyDoc_STRVAR(binascii_a2b_base64__doc__,
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"a2b_base64($module, data, /, *, strict_mode=False)\n"
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"--\n"
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"\n"
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"Decode a line of base64 data.\n"
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"\n"
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" strict_mode\n"
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" When set to True, bytes that are not part of the base64 standard are not allowed.\n"
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" The same applies to excess data after padding (= / ==).");
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#define BINASCII_A2B_BASE64_METHODDEF \
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{"a2b_base64", _PyCFunction_CAST(binascii_a2b_base64), METH_FASTCALL|METH_KEYWORDS, binascii_a2b_base64__doc__},
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static PyObject *
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binascii_a2b_base64_impl(PyObject *module, Py_buffer *data, int strict_mode);
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static PyObject *
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binascii_a2b_base64(PyObject *module, PyObject *const *args, Py_ssize_t nargs, PyObject *kwnames)
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{
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PyObject *return_value = NULL;
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#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
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#define NUM_KEYWORDS 1
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static struct {
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PyGC_Head _this_is_not_used;
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PyObject_VAR_HEAD
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PyObject *ob_item[NUM_KEYWORDS];
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} _kwtuple = {
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.ob_base = PyVarObject_HEAD_INIT(&PyTuple_Type, NUM_KEYWORDS)
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.ob_item = { &_Py_ID(strict_mode), },
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};
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#undef NUM_KEYWORDS
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#define KWTUPLE (&_kwtuple.ob_base.ob_base)
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#else // !Py_BUILD_CORE
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# define KWTUPLE NULL
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#endif // !Py_BUILD_CORE
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static const char * const _keywords[] = {"", "strict_mode", NULL};
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static _PyArg_Parser _parser = {
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.keywords = _keywords,
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.fname = "a2b_base64",
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.kwtuple = KWTUPLE,
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};
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#undef KWTUPLE
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PyObject *argsbuf[2];
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Py_ssize_t noptargs = nargs + (kwnames ? PyTuple_GET_SIZE(kwnames) : 0) - 1;
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Py_buffer data = {NULL, NULL};
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int strict_mode = 0;
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args = _PyArg_UnpackKeywords(args, nargs, NULL, kwnames, &_parser, 1, 1, 0, argsbuf);
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if (!args) {
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goto exit;
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}
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if (!ascii_buffer_converter(args[0], &data)) {
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goto exit;
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}
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if (!noptargs) {
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goto skip_optional_kwonly;
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}
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strict_mode = PyObject_IsTrue(args[1]);
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if (strict_mode < 0) {
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goto exit;
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}
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skip_optional_kwonly:
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return_value = binascii_a2b_base64_impl(module, &data, strict_mode);
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exit:
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/* Cleanup for data */
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if (data.obj)
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PyBuffer_Release(&data);
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return return_value;
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}
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PyDoc_STRVAR(binascii_b2a_base64__doc__,
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"b2a_base64($module, data, /, *, newline=True)\n"
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"--\n"
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"\n"
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"Base64-code line of data.");
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#define BINASCII_B2A_BASE64_METHODDEF \
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{"b2a_base64", _PyCFunction_CAST(binascii_b2a_base64), METH_FASTCALL|METH_KEYWORDS, binascii_b2a_base64__doc__},
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static PyObject *
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binascii_b2a_base64_impl(PyObject *module, Py_buffer *data, int newline);
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static PyObject *
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binascii_b2a_base64(PyObject *module, PyObject *const *args, Py_ssize_t nargs, PyObject *kwnames)
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{
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PyObject *return_value = NULL;
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#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
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#define NUM_KEYWORDS 1
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static struct {
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PyGC_Head _this_is_not_used;
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PyObject_VAR_HEAD
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PyObject *ob_item[NUM_KEYWORDS];
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} _kwtuple = {
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.ob_base = PyVarObject_HEAD_INIT(&PyTuple_Type, NUM_KEYWORDS)
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.ob_item = { &_Py_ID(newline), },
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};
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#undef NUM_KEYWORDS
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#define KWTUPLE (&_kwtuple.ob_base.ob_base)
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#else // !Py_BUILD_CORE
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# define KWTUPLE NULL
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#endif // !Py_BUILD_CORE
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static const char * const _keywords[] = {"", "newline", NULL};
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static _PyArg_Parser _parser = {
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.keywords = _keywords,
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.fname = "b2a_base64",
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.kwtuple = KWTUPLE,
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};
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#undef KWTUPLE
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PyObject *argsbuf[2];
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Py_ssize_t noptargs = nargs + (kwnames ? PyTuple_GET_SIZE(kwnames) : 0) - 1;
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Py_buffer data = {NULL, NULL};
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int newline = 1;
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args = _PyArg_UnpackKeywords(args, nargs, NULL, kwnames, &_parser, 1, 1, 0, argsbuf);
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if (!args) {
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goto exit;
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}
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if (PyObject_GetBuffer(args[0], &data, PyBUF_SIMPLE) != 0) {
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goto exit;
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}
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if (!noptargs) {
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goto skip_optional_kwonly;
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}
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newline = PyObject_IsTrue(args[1]);
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if (newline < 0) {
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goto exit;
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}
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skip_optional_kwonly:
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return_value = binascii_b2a_base64_impl(module, &data, newline);
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exit:
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/* Cleanup for data */
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if (data.obj) {
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PyBuffer_Release(&data);
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}
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return return_value;
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}
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PyDoc_STRVAR(binascii_crc_hqx__doc__,
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"crc_hqx($module, data, crc, /)\n"
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"--\n"
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"\n"
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"Compute CRC-CCITT incrementally.");
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#define BINASCII_CRC_HQX_METHODDEF \
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{"crc_hqx", _PyCFunction_CAST(binascii_crc_hqx), METH_FASTCALL, binascii_crc_hqx__doc__},
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static PyObject *
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binascii_crc_hqx_impl(PyObject *module, Py_buffer *data, unsigned int crc);
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static PyObject *
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binascii_crc_hqx(PyObject *module, PyObject *const *args, Py_ssize_t nargs)
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{
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PyObject *return_value = NULL;
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Py_buffer data = {NULL, NULL};
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unsigned int crc;
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if (!_PyArg_CheckPositional("crc_hqx", nargs, 2, 2)) {
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goto exit;
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}
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if (PyObject_GetBuffer(args[0], &data, PyBUF_SIMPLE) != 0) {
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goto exit;
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}
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crc = (unsigned int)PyLong_AsUnsignedLongMask(args[1]);
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if (crc == (unsigned int)-1 && PyErr_Occurred()) {
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goto exit;
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}
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return_value = binascii_crc_hqx_impl(module, &data, crc);
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exit:
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/* Cleanup for data */
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if (data.obj) {
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PyBuffer_Release(&data);
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}
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return return_value;
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}
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PyDoc_STRVAR(binascii_crc32__doc__,
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"crc32($module, data, crc=0, /)\n"
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"--\n"
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"\n"
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"Compute CRC-32 incrementally.");
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#define BINASCII_CRC32_METHODDEF \
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{"crc32", _PyCFunction_CAST(binascii_crc32), METH_FASTCALL, binascii_crc32__doc__},
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static unsigned int
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binascii_crc32_impl(PyObject *module, Py_buffer *data, unsigned int crc);
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static PyObject *
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binascii_crc32(PyObject *module, PyObject *const *args, Py_ssize_t nargs)
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{
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PyObject *return_value = NULL;
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Py_buffer data = {NULL, NULL};
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unsigned int crc = 0;
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unsigned int _return_value;
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if (!_PyArg_CheckPositional("crc32", nargs, 1, 2)) {
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goto exit;
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}
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if (PyObject_GetBuffer(args[0], &data, PyBUF_SIMPLE) != 0) {
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goto exit;
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}
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if (nargs < 2) {
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goto skip_optional;
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}
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crc = (unsigned int)PyLong_AsUnsignedLongMask(args[1]);
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if (crc == (unsigned int)-1 && PyErr_Occurred()) {
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goto exit;
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}
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skip_optional:
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_return_value = binascii_crc32_impl(module, &data, crc);
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if ((_return_value == (unsigned int)-1) && PyErr_Occurred()) {
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goto exit;
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}
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return_value = PyLong_FromUnsignedLong((unsigned long)_return_value);
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exit:
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/* Cleanup for data */
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if (data.obj) {
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PyBuffer_Release(&data);
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}
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return return_value;
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}
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PyDoc_STRVAR(binascii_b2a_hex__doc__,
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"b2a_hex($module, /, data, sep=<unrepresentable>, bytes_per_sep=1)\n"
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"--\n"
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"\n"
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"Hexadecimal representation of binary data.\n"
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"\n"
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" sep\n"
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" An optional single character or byte to separate hex bytes.\n"
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" bytes_per_sep\n"
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" How many bytes between separators. Positive values count from the\n"
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" right, negative values count from the left.\n"
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"\n"
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"The return value is a bytes object. This function is also\n"
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"available as \"hexlify()\".\n"
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"\n"
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"Example:\n"
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">>> binascii.b2a_hex(b\'\\xb9\\x01\\xef\')\n"
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"b\'b901ef\'\n"
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">>> binascii.hexlify(b\'\\xb9\\x01\\xef\', \':\')\n"
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"b\'b9:01:ef\'\n"
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">>> binascii.b2a_hex(b\'\\xb9\\x01\\xef\', b\'_\', 2)\n"
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"b\'b9_01ef\'");
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#define BINASCII_B2A_HEX_METHODDEF \
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{"b2a_hex", _PyCFunction_CAST(binascii_b2a_hex), METH_FASTCALL|METH_KEYWORDS, binascii_b2a_hex__doc__},
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static PyObject *
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binascii_b2a_hex_impl(PyObject *module, Py_buffer *data, PyObject *sep,
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int bytes_per_sep);
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static PyObject *
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binascii_b2a_hex(PyObject *module, PyObject *const *args, Py_ssize_t nargs, PyObject *kwnames)
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{
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PyObject *return_value = NULL;
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#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
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#define NUM_KEYWORDS 3
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static struct {
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PyGC_Head _this_is_not_used;
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PyObject_VAR_HEAD
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PyObject *ob_item[NUM_KEYWORDS];
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} _kwtuple = {
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.ob_base = PyVarObject_HEAD_INIT(&PyTuple_Type, NUM_KEYWORDS)
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.ob_item = { &_Py_ID(data), &_Py_ID(sep), &_Py_ID(bytes_per_sep), },
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};
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#undef NUM_KEYWORDS
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#define KWTUPLE (&_kwtuple.ob_base.ob_base)
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#else // !Py_BUILD_CORE
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# define KWTUPLE NULL
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#endif // !Py_BUILD_CORE
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static const char * const _keywords[] = {"data", "sep", "bytes_per_sep", NULL};
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static _PyArg_Parser _parser = {
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.keywords = _keywords,
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.fname = "b2a_hex",
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.kwtuple = KWTUPLE,
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};
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#undef KWTUPLE
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PyObject *argsbuf[3];
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Py_ssize_t noptargs = nargs + (kwnames ? PyTuple_GET_SIZE(kwnames) : 0) - 1;
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Py_buffer data = {NULL, NULL};
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PyObject *sep = NULL;
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int bytes_per_sep = 1;
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args = _PyArg_UnpackKeywords(args, nargs, NULL, kwnames, &_parser, 1, 3, 0, argsbuf);
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if (!args) {
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goto exit;
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}
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|
if (PyObject_GetBuffer(args[0], &data, PyBUF_SIMPLE) != 0) {
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goto exit;
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|
}
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|
if (!noptargs) {
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goto skip_optional_pos;
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|
}
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if (args[1]) {
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sep = args[1];
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|
if (!--noptargs) {
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goto skip_optional_pos;
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}
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}
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bytes_per_sep = PyLong_AsInt(args[2]);
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|
if (bytes_per_sep == -1 && PyErr_Occurred()) {
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goto exit;
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}
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skip_optional_pos:
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return_value = binascii_b2a_hex_impl(module, &data, sep, bytes_per_sep);
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exit:
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|
/* Cleanup for data */
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|
if (data.obj) {
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PyBuffer_Release(&data);
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}
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return return_value;
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}
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PyDoc_STRVAR(binascii_hexlify__doc__,
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"hexlify($module, /, data, sep=<unrepresentable>, bytes_per_sep=1)\n"
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|
"--\n"
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"\n"
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"Hexadecimal representation of binary data.\n"
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"\n"
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|
" sep\n"
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|
" An optional single character or byte to separate hex bytes.\n"
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|
" bytes_per_sep\n"
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|
" How many bytes between separators. Positive values count from the\n"
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|
" right, negative values count from the left.\n"
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|
"\n"
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"The return value is a bytes object. This function is also\n"
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"available as \"b2a_hex()\".");
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|
|
#define BINASCII_HEXLIFY_METHODDEF \
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|
{"hexlify", _PyCFunction_CAST(binascii_hexlify), METH_FASTCALL|METH_KEYWORDS, binascii_hexlify__doc__},
|
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|
|
static PyObject *
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binascii_hexlify_impl(PyObject *module, Py_buffer *data, PyObject *sep,
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int bytes_per_sep);
|
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|
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static PyObject *
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|
binascii_hexlify(PyObject *module, PyObject *const *args, Py_ssize_t nargs, PyObject *kwnames)
|
|
{
|
|
PyObject *return_value = NULL;
|
|
#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
|
|
|
|
#define NUM_KEYWORDS 3
|
|
static struct {
|
|
PyGC_Head _this_is_not_used;
|
|
PyObject_VAR_HEAD
|
|
PyObject *ob_item[NUM_KEYWORDS];
|
|
} _kwtuple = {
|
|
.ob_base = PyVarObject_HEAD_INIT(&PyTuple_Type, NUM_KEYWORDS)
|
|
.ob_item = { &_Py_ID(data), &_Py_ID(sep), &_Py_ID(bytes_per_sep), },
|
|
};
|
|
#undef NUM_KEYWORDS
|
|
#define KWTUPLE (&_kwtuple.ob_base.ob_base)
|
|
|
|
#else // !Py_BUILD_CORE
|
|
# define KWTUPLE NULL
|
|
#endif // !Py_BUILD_CORE
|
|
|
|
static const char * const _keywords[] = {"data", "sep", "bytes_per_sep", NULL};
|
|
static _PyArg_Parser _parser = {
|
|
.keywords = _keywords,
|
|
.fname = "hexlify",
|
|
.kwtuple = KWTUPLE,
|
|
};
|
|
#undef KWTUPLE
|
|
PyObject *argsbuf[3];
|
|
Py_ssize_t noptargs = nargs + (kwnames ? PyTuple_GET_SIZE(kwnames) : 0) - 1;
|
|
Py_buffer data = {NULL, NULL};
|
|
PyObject *sep = NULL;
|
|
int bytes_per_sep = 1;
|
|
|
|
args = _PyArg_UnpackKeywords(args, nargs, NULL, kwnames, &_parser, 1, 3, 0, argsbuf);
|
|
if (!args) {
|
|
goto exit;
|
|
}
|
|
if (PyObject_GetBuffer(args[0], &data, PyBUF_SIMPLE) != 0) {
|
|
goto exit;
|
|
}
|
|
if (!noptargs) {
|
|
goto skip_optional_pos;
|
|
}
|
|
if (args[1]) {
|
|
sep = args[1];
|
|
if (!--noptargs) {
|
|
goto skip_optional_pos;
|
|
}
|
|
}
|
|
bytes_per_sep = PyLong_AsInt(args[2]);
|
|
if (bytes_per_sep == -1 && PyErr_Occurred()) {
|
|
goto exit;
|
|
}
|
|
skip_optional_pos:
|
|
return_value = binascii_hexlify_impl(module, &data, sep, bytes_per_sep);
|
|
|
|
exit:
|
|
/* Cleanup for data */
|
|
if (data.obj) {
|
|
PyBuffer_Release(&data);
|
|
}
|
|
|
|
return return_value;
|
|
}
|
|
|
|
PyDoc_STRVAR(binascii_a2b_hex__doc__,
|
|
"a2b_hex($module, hexstr, /)\n"
|
|
"--\n"
|
|
"\n"
|
|
"Binary data of hexadecimal representation.\n"
|
|
"\n"
|
|
"hexstr must contain an even number of hex digits (upper or lower case).\n"
|
|
"This function is also available as \"unhexlify()\".");
|
|
|
|
#define BINASCII_A2B_HEX_METHODDEF \
|
|
{"a2b_hex", (PyCFunction)binascii_a2b_hex, METH_O, binascii_a2b_hex__doc__},
|
|
|
|
static PyObject *
|
|
binascii_a2b_hex_impl(PyObject *module, Py_buffer *hexstr);
|
|
|
|
static PyObject *
|
|
binascii_a2b_hex(PyObject *module, PyObject *arg)
|
|
{
|
|
PyObject *return_value = NULL;
|
|
Py_buffer hexstr = {NULL, NULL};
|
|
|
|
if (!ascii_buffer_converter(arg, &hexstr)) {
|
|
goto exit;
|
|
}
|
|
return_value = binascii_a2b_hex_impl(module, &hexstr);
|
|
|
|
exit:
|
|
/* Cleanup for hexstr */
|
|
if (hexstr.obj)
|
|
PyBuffer_Release(&hexstr);
|
|
|
|
return return_value;
|
|
}
|
|
|
|
PyDoc_STRVAR(binascii_unhexlify__doc__,
|
|
"unhexlify($module, hexstr, /)\n"
|
|
"--\n"
|
|
"\n"
|
|
"Binary data of hexadecimal representation.\n"
|
|
"\n"
|
|
"hexstr must contain an even number of hex digits (upper or lower case).");
|
|
|
|
#define BINASCII_UNHEXLIFY_METHODDEF \
|
|
{"unhexlify", (PyCFunction)binascii_unhexlify, METH_O, binascii_unhexlify__doc__},
|
|
|
|
static PyObject *
|
|
binascii_unhexlify_impl(PyObject *module, Py_buffer *hexstr);
|
|
|
|
static PyObject *
|
|
binascii_unhexlify(PyObject *module, PyObject *arg)
|
|
{
|
|
PyObject *return_value = NULL;
|
|
Py_buffer hexstr = {NULL, NULL};
|
|
|
|
if (!ascii_buffer_converter(arg, &hexstr)) {
|
|
goto exit;
|
|
}
|
|
return_value = binascii_unhexlify_impl(module, &hexstr);
|
|
|
|
exit:
|
|
/* Cleanup for hexstr */
|
|
if (hexstr.obj)
|
|
PyBuffer_Release(&hexstr);
|
|
|
|
return return_value;
|
|
}
|
|
|
|
PyDoc_STRVAR(binascii_a2b_qp__doc__,
|
|
"a2b_qp($module, /, data, header=False)\n"
|
|
"--\n"
|
|
"\n"
|
|
"Decode a string of qp-encoded data.");
|
|
|
|
#define BINASCII_A2B_QP_METHODDEF \
|
|
{"a2b_qp", _PyCFunction_CAST(binascii_a2b_qp), METH_FASTCALL|METH_KEYWORDS, binascii_a2b_qp__doc__},
|
|
|
|
static PyObject *
|
|
binascii_a2b_qp_impl(PyObject *module, Py_buffer *data, int header);
|
|
|
|
static PyObject *
|
|
binascii_a2b_qp(PyObject *module, PyObject *const *args, Py_ssize_t nargs, PyObject *kwnames)
|
|
{
|
|
PyObject *return_value = NULL;
|
|
#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
|
|
|
|
#define NUM_KEYWORDS 2
|
|
static struct {
|
|
PyGC_Head _this_is_not_used;
|
|
PyObject_VAR_HEAD
|
|
PyObject *ob_item[NUM_KEYWORDS];
|
|
} _kwtuple = {
|
|
.ob_base = PyVarObject_HEAD_INIT(&PyTuple_Type, NUM_KEYWORDS)
|
|
.ob_item = { &_Py_ID(data), &_Py_ID(header), },
|
|
};
|
|
#undef NUM_KEYWORDS
|
|
#define KWTUPLE (&_kwtuple.ob_base.ob_base)
|
|
|
|
#else // !Py_BUILD_CORE
|
|
# define KWTUPLE NULL
|
|
#endif // !Py_BUILD_CORE
|
|
|
|
static const char * const _keywords[] = {"data", "header", NULL};
|
|
static _PyArg_Parser _parser = {
|
|
.keywords = _keywords,
|
|
.fname = "a2b_qp",
|
|
.kwtuple = KWTUPLE,
|
|
};
|
|
#undef KWTUPLE
|
|
PyObject *argsbuf[2];
|
|
Py_ssize_t noptargs = nargs + (kwnames ? PyTuple_GET_SIZE(kwnames) : 0) - 1;
|
|
Py_buffer data = {NULL, NULL};
|
|
int header = 0;
|
|
|
|
args = _PyArg_UnpackKeywords(args, nargs, NULL, kwnames, &_parser, 1, 2, 0, argsbuf);
|
|
if (!args) {
|
|
goto exit;
|
|
}
|
|
if (!ascii_buffer_converter(args[0], &data)) {
|
|
goto exit;
|
|
}
|
|
if (!noptargs) {
|
|
goto skip_optional_pos;
|
|
}
|
|
header = PyObject_IsTrue(args[1]);
|
|
if (header < 0) {
|
|
goto exit;
|
|
}
|
|
skip_optional_pos:
|
|
return_value = binascii_a2b_qp_impl(module, &data, header);
|
|
|
|
exit:
|
|
/* Cleanup for data */
|
|
if (data.obj)
|
|
PyBuffer_Release(&data);
|
|
|
|
return return_value;
|
|
}
|
|
|
|
PyDoc_STRVAR(binascii_b2a_qp__doc__,
|
|
"b2a_qp($module, /, data, quotetabs=False, istext=True, header=False)\n"
|
|
"--\n"
|
|
"\n"
|
|
"Encode a string using quoted-printable encoding.\n"
|
|
"\n"
|
|
"On encoding, when istext is set, newlines are not encoded, and white\n"
|
|
"space at end of lines is. When istext is not set, \\r and \\n (CR/LF)\n"
|
|
"are both encoded. When quotetabs is set, space and tabs are encoded.");
|
|
|
|
#define BINASCII_B2A_QP_METHODDEF \
|
|
{"b2a_qp", _PyCFunction_CAST(binascii_b2a_qp), METH_FASTCALL|METH_KEYWORDS, binascii_b2a_qp__doc__},
|
|
|
|
static PyObject *
|
|
binascii_b2a_qp_impl(PyObject *module, Py_buffer *data, int quotetabs,
|
|
int istext, int header);
|
|
|
|
static PyObject *
|
|
binascii_b2a_qp(PyObject *module, PyObject *const *args, Py_ssize_t nargs, PyObject *kwnames)
|
|
{
|
|
PyObject *return_value = NULL;
|
|
#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
|
|
|
|
#define NUM_KEYWORDS 4
|
|
static struct {
|
|
PyGC_Head _this_is_not_used;
|
|
PyObject_VAR_HEAD
|
|
PyObject *ob_item[NUM_KEYWORDS];
|
|
} _kwtuple = {
|
|
.ob_base = PyVarObject_HEAD_INIT(&PyTuple_Type, NUM_KEYWORDS)
|
|
.ob_item = { &_Py_ID(data), &_Py_ID(quotetabs), &_Py_ID(istext), &_Py_ID(header), },
|
|
};
|
|
#undef NUM_KEYWORDS
|
|
#define KWTUPLE (&_kwtuple.ob_base.ob_base)
|
|
|
|
#else // !Py_BUILD_CORE
|
|
# define KWTUPLE NULL
|
|
#endif // !Py_BUILD_CORE
|
|
|
|
static const char * const _keywords[] = {"data", "quotetabs", "istext", "header", NULL};
|
|
static _PyArg_Parser _parser = {
|
|
.keywords = _keywords,
|
|
.fname = "b2a_qp",
|
|
.kwtuple = KWTUPLE,
|
|
};
|
|
#undef KWTUPLE
|
|
PyObject *argsbuf[4];
|
|
Py_ssize_t noptargs = nargs + (kwnames ? PyTuple_GET_SIZE(kwnames) : 0) - 1;
|
|
Py_buffer data = {NULL, NULL};
|
|
int quotetabs = 0;
|
|
int istext = 1;
|
|
int header = 0;
|
|
|
|
args = _PyArg_UnpackKeywords(args, nargs, NULL, kwnames, &_parser, 1, 4, 0, argsbuf);
|
|
if (!args) {
|
|
goto exit;
|
|
}
|
|
if (PyObject_GetBuffer(args[0], &data, PyBUF_SIMPLE) != 0) {
|
|
goto exit;
|
|
}
|
|
if (!noptargs) {
|
|
goto skip_optional_pos;
|
|
}
|
|
if (args[1]) {
|
|
quotetabs = PyObject_IsTrue(args[1]);
|
|
if (quotetabs < 0) {
|
|
goto exit;
|
|
}
|
|
if (!--noptargs) {
|
|
goto skip_optional_pos;
|
|
}
|
|
}
|
|
if (args[2]) {
|
|
istext = PyObject_IsTrue(args[2]);
|
|
if (istext < 0) {
|
|
goto exit;
|
|
}
|
|
if (!--noptargs) {
|
|
goto skip_optional_pos;
|
|
}
|
|
}
|
|
header = PyObject_IsTrue(args[3]);
|
|
if (header < 0) {
|
|
goto exit;
|
|
}
|
|
skip_optional_pos:
|
|
return_value = binascii_b2a_qp_impl(module, &data, quotetabs, istext, header);
|
|
|
|
exit:
|
|
/* Cleanup for data */
|
|
if (data.obj) {
|
|
PyBuffer_Release(&data);
|
|
}
|
|
|
|
return return_value;
|
|
}
|
|
/*[clinic end generated code: output=968767b663ed889d input=a9049054013a1b77]*/
|