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166 lines
4.2 KiB
166 lines
4.2 KiB
/* Poor-man's template. Macros used: |
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TESTNAME name of the test (like test_long_api_inner) |
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TYPENAME the signed type (like long) |
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F_S_TO_PY convert signed to pylong; TYPENAME -> PyObject* |
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F_PY_TO_S convert pylong to signed; PyObject* -> TYPENAME |
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F_U_TO_PY convert unsigned to pylong; unsigned TYPENAME -> PyObject* |
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F_PY_TO_U convert pylong to unsigned; PyObject* -> unsigned TYPENAME |
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*/ |
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|
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static PyObject * |
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TESTNAME(PyObject *error(const char*)) |
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{ |
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const int NBITS = sizeof(TYPENAME) * 8; |
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unsigned TYPENAME base; |
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PyObject *pyresult; |
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int i; |
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/* Note: This test lets PyObjects leak if an error is raised. Since |
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an error should never be raised, leaks are impossible <wink>. */ |
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|
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/* Test native -> PyLong -> native roundtrip identity. |
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* Generate all powers of 2, and test them and their negations, |
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* plus the numbers +-1 off from them. |
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*/ |
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base = 1; |
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for (i = 0; |
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i < NBITS + 1; /* on last, base overflows to 0 */ |
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++i, base <<= 1) |
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{ |
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int j; |
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for (j = 0; j < 6; ++j) { |
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TYPENAME in, out; |
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unsigned TYPENAME uin, uout; |
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/* For 0, 1, 2 use base; for 3, 4, 5 use -base */ |
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uin = j < 3 ? base |
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: (unsigned TYPENAME)(-(TYPENAME)base); |
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/* For 0 & 3, subtract 1. |
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* For 1 & 4, leave alone. |
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* For 2 & 5, add 1. |
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*/ |
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uin += (unsigned TYPENAME)(TYPENAME)(j % 3 - 1); |
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pyresult = F_U_TO_PY(uin); |
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if (pyresult == NULL) |
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return error( |
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"unsigned unexpected null result"); |
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uout = F_PY_TO_U(pyresult); |
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if (uout == (unsigned TYPENAME)-1 && PyErr_Occurred()) |
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return error( |
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"unsigned unexpected -1 result"); |
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if (uout != uin) |
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return error( |
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"unsigned output != input"); |
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UNBIND(pyresult); |
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in = (TYPENAME)uin; |
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pyresult = F_S_TO_PY(in); |
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if (pyresult == NULL) |
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return error( |
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"signed unexpected null result"); |
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out = F_PY_TO_S(pyresult); |
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if (out == (TYPENAME)-1 && PyErr_Occurred()) |
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return error( |
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"signed unexpected -1 result"); |
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if (out != in) |
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return error( |
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"signed output != input"); |
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UNBIND(pyresult); |
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} |
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} |
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/* Overflow tests. The loop above ensured that all limit cases that |
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* should not overflow don't overflow, so all we need to do here is |
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* provoke one-over-the-limit cases (not exhaustive, but sharp). |
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*/ |
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{ |
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PyObject *one, *x, *y; |
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TYPENAME out; |
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unsigned TYPENAME uout; |
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one = PyLong_FromLong(1); |
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if (one == NULL) |
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return error( |
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"unexpected NULL from PyLong_FromLong"); |
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/* Unsigned complains about -1? */ |
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x = PyNumber_Negative(one); |
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if (x == NULL) |
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return error( |
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"unexpected NULL from PyNumber_Negative"); |
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uout = F_PY_TO_U(x); |
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if (uout != (unsigned TYPENAME)-1 || !PyErr_Occurred()) |
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return error( |
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"PyLong_AsUnsignedXXX(-1) didn't complain"); |
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PyErr_Clear(); |
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UNBIND(x); |
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/* Unsigned complains about 2**NBITS? */ |
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y = PyLong_FromLong((long)NBITS); |
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if (y == NULL) |
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return error( |
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"unexpected NULL from PyLong_FromLong"); |
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x = PyNumber_Lshift(one, y); /* 1L << NBITS, == 2**NBITS */ |
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UNBIND(y); |
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if (x == NULL) |
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return error( |
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"unexpected NULL from PyNumber_Lshift"); |
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uout = F_PY_TO_U(x); |
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if (uout != (unsigned TYPENAME)-1 || !PyErr_Occurred()) |
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return error( |
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"PyLong_AsUnsignedXXX(2**NBITS) didn't " |
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"complain"); |
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PyErr_Clear(); |
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/* Signed complains about 2**(NBITS-1)? |
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x still has 2**NBITS. */ |
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y = PyNumber_Rshift(x, one); /* 2**(NBITS-1) */ |
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UNBIND(x); |
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if (y == NULL) |
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return error( |
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"unexpected NULL from PyNumber_Rshift"); |
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out = F_PY_TO_S(y); |
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if (out != (TYPENAME)-1 || !PyErr_Occurred()) |
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return error( |
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"PyLong_AsXXX(2**(NBITS-1)) didn't " |
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"complain"); |
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PyErr_Clear(); |
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/* Signed complains about -2**(NBITS-1)-1?; |
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y still has 2**(NBITS-1). */ |
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x = PyNumber_Negative(y); /* -(2**(NBITS-1)) */ |
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UNBIND(y); |
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if (x == NULL) |
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return error( |
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"unexpected NULL from PyNumber_Negative"); |
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y = PyNumber_Subtract(x, one); /* -(2**(NBITS-1))-1 */ |
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UNBIND(x); |
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if (y == NULL) |
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return error( |
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"unexpected NULL from PyNumber_Subtract"); |
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out = F_PY_TO_S(y); |
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if (out != (TYPENAME)-1 || !PyErr_Occurred()) |
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return error( |
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"PyLong_AsXXX(-2**(NBITS-1)-1) didn't " |
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"complain"); |
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PyErr_Clear(); |
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UNBIND(y); |
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Py_XDECREF(x); |
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Py_XDECREF(y); |
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Py_DECREF(one); |
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} |
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Py_INCREF(Py_None); |
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return Py_None; |
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}
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