mirror of https://github.com/python/cpython
Changes for Lee Busby's SIGFPE patch set.
Surround various f.p. operations with PyFPE_{START,END}_PROTECT macros.
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@ -364,7 +364,11 @@ complex_add(v, w)
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complexobject *v;
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complexobject *w;
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{
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return newcomplexobject(c_sum(v->cval,w->cval));
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Py_complex result;
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PyFPE_START_PROTECT("complex_add", return 0)
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result = c_sum(v->cval,w->cval);
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PyFPE_END_PROTECT
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return newcomplexobject(result);
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}
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static object *
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@ -372,7 +376,11 @@ complex_sub(v, w)
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complexobject *v;
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complexobject *w;
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{
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return newcomplexobject(c_diff(v->cval,w->cval));
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Py_complex result;
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PyFPE_START_PROTECT("complex_sub", return 0)
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result = c_diff(v->cval,w->cval);
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PyFPE_END_PROTECT
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return newcomplexobject(result);
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}
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static object *
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@ -380,7 +388,11 @@ complex_mul(v, w)
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complexobject *v;
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complexobject *w;
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{
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return newcomplexobject(c_prod(v->cval,w->cval));
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Py_complex result;
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PyFPE_START_PROTECT("complex_mul", return 0)
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result = c_prod(v->cval,w->cval);
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PyFPE_END_PROTECT
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return newcomplexobject(result);
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}
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static object *
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@ -389,8 +401,10 @@ complex_div(v, w)
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complexobject *w;
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{
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Py_complex quot;
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PyFPE_START_PROTECT("complex_div", return 0)
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c_error = 0;
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quot = c_quot(v->cval,w->cval);
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PyFPE_END_PROTECT
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if (c_error == 1) {
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err_setstr(ZeroDivisionError, "complex division");
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return NULL;
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@ -457,6 +471,7 @@ complex_pow(v, w, z)
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return NULL;
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}
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PyFPE_START_PROTECT("complex_pow", return 0)
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c_error = 0;
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exponent = ((complexobject*)w)->cval;
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int_exponent = (long)exponent.real;
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@ -465,6 +480,7 @@ complex_pow(v, w, z)
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else
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p = c_pow(v->cval,exponent);
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PyFPE_END_PROTECT
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if (c_error == 2) {
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err_setstr(ValueError, "0.0 to a negative or complex power");
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return NULL;
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@ -495,7 +511,11 @@ static object *
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complex_abs(v)
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complexobject *v;
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{
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return newfloatobject(hypot(v->cval.real,v->cval.imag));
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double result;
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PyFPE_START_PROTECT("complex_abs", return 0)
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result = hypot(v->cval.real,v->cval.imag);
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PyFPE_END_PROTECT
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return newfloatobject(result);
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}
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static int
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@ -257,7 +257,11 @@ float_add(v, w)
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floatobject *v;
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floatobject *w;
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{
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return newfloatobject(v->ob_fval + w->ob_fval);
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double result;
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PyFPE_START_PROTECT("add", return 0)
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result = v->ob_fval + w->ob_fval;
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PyFPE_END_PROTECT
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return newfloatobject(result);
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}
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static object *
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@ -265,7 +269,11 @@ float_sub(v, w)
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floatobject *v;
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floatobject *w;
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{
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return newfloatobject(v->ob_fval - w->ob_fval);
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double result;
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PyFPE_START_PROTECT("subtract", return 0)
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result = v->ob_fval - w->ob_fval;
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PyFPE_END_PROTECT
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return newfloatobject(result);
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}
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static object *
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@ -273,7 +281,12 @@ float_mul(v, w)
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floatobject *v;
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floatobject *w;
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{
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return newfloatobject(v->ob_fval * w->ob_fval);
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double result;
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PyFPE_START_PROTECT("multiply", return 0)
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result = v->ob_fval * w->ob_fval;
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PyFPE_END_PROTECT
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return newfloatobject(result);
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}
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static object *
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@ -281,11 +294,15 @@ float_div(v, w)
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floatobject *v;
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floatobject *w;
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{
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double result;
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if (w->ob_fval == 0) {
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err_setstr(ZeroDivisionError, "float division");
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return NULL;
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}
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return newfloatobject(v->ob_fval / w->ob_fval);
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PyFPE_START_PROTECT("divide", return 0)
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result = v->ob_fval / w->ob_fval;
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PyFPE_END_PROTECT
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return newfloatobject(result);
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}
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static object *
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@ -300,6 +317,7 @@ float_rem(v, w)
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err_setstr(ZeroDivisionError, "float modulo");
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return NULL;
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}
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PyFPE_START_PROTECT("modulo", return 0)
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vx = v->ob_fval;
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mod = fmod(vx, wx);
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/* div = (vx - mod) / wx; */
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@ -307,6 +325,7 @@ float_rem(v, w)
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mod += wx;
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/* div -= 1.0; */
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}
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PyFPE_END_PROTECT
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return newfloatobject(mod);
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}
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@ -322,6 +341,7 @@ float_divmod(v, w)
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err_setstr(ZeroDivisionError, "float divmod()");
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return NULL;
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}
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PyFPE_START_PROTECT("divmod", return 0)
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vx = v->ob_fval;
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mod = fmod(vx, wx);
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div = (vx - mod) / wx;
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@ -329,6 +349,7 @@ float_divmod(v, w)
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mod += wx;
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div -= 1.0;
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}
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PyFPE_END_PROTECT
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return mkvalue("(dd)", div, mod);
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}
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@ -367,18 +388,22 @@ float_pow(v, w, z)
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if (iw == intw && -10000 < intw && intw < 10000) {
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/* Sort out special cases here instead of relying on pow() */
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if (intw == 0) { /* x**0 is 1, even 0**0 */
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PyFPE_START_PROTECT("pow", return 0)
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if ((object *)z!=None) {
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ix=fmod(1.0, z->ob_fval);
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if (ix!=0 && z->ob_fval<0) ix+=z->ob_fval;
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}
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else ix=1.0;
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PyFPE_END_PROTECT
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return newfloatobject(ix);
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}
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errno = 0;
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PyFPE_START_PROTECT("pow", return 0)
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if (intw > 0)
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ix = powu(iv, intw);
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else
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ix = 1./powu(iv, -intw);
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PyFPE_END_PROTECT
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}
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else {
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/* Sort out special cases here instead of relying on pow() */
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@ -396,7 +421,9 @@ float_pow(v, w, z)
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return NULL;
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}
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errno = 0;
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PyFPE_START_PROTECT("pow", return 0)
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ix = pow(iv, iw);
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PyFPE_END_PROTECT
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}
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CHECK(ix);
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if (errno != 0) {
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@ -405,11 +432,13 @@ float_pow(v, w, z)
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return NULL;
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}
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if ((object *)z!=None) {
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PyFPE_START_PROTECT("pow", return 0)
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ix=fmod(ix, z->ob_fval); /* XXX To Be Rewritten */
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if ( ix!=0 &&
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((iv<0 && z->ob_fval>0) || (iv>0 && z->ob_fval<0) )) {
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ix+=z->ob_fval;
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}
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PyFPE_END_PROTECT
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}
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return newfloatobject(ix);
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}
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@ -237,7 +237,7 @@ PyLong_AsUnsignedLong(vv)
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return x;
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}
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/* Get a C double from a long int object. No overflow check. */
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/* Get a C double from a long int object. */
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double
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dgetlongvalue(vv)
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@ -1418,7 +1418,11 @@ static object *
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long_float(v)
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object *v;
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{
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return newfloatobject(dgetlongvalue(v));
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double result;
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PyFPE_START_PROTECT("long_float", return 0)
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result = dgetlongvalue(v);
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PyFPE_END_PROTECT
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return newfloatobject(result);
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}
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static object *
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