MZ@ !L!This program cannot be run in DOS mode. $PEL_Gr# 8Rnpc H.textPR``.data p V@.rdatab@@.bss.edataHf@@.idatah@.relocn@BUWVS } |$]M\$ $5Kƃ 1t[ctEc 9rtЋc9st&$8J1҉c$JucuF1t&e[^_] t&$JctlcKK&cv'9rtЋc9st&$1I=c$tIoI 1_'UccET$L$$IɃÍUccEL$T$$HÐU]KUWVSӋE} t&BuE9}MMA9M|X[^_]ÐUEWVSlE7cEEEED$E؉D$ EԉD$\$E $tc1҅& L$Eԉ$ c  4$ c@\$ 1ҹT$|$L$D$Eԉ$ ct$ 11T$ 11҉|$1 cL$|$T$SL$T$P$tC@UECT$SR$UeEE UEt@ H<$ c0ƒl[^_]þ Es ٞv cU\$ EȉT$D$E\$UT$ ED$GD$C$v^E@: L$Eԉ$ c  4$ c@\$ 1ҹT$|$L$D$Eԉ$ ct$ 11T$ 11҉|$1 cL$|$T$SL$T$P$t8C@UECT$SR$UMEE UEth 3H<$ c0ƒl[^_]þ cc\$$ct&1҃l[^_]Ít&Es ٞv ȀcU\$ EȉT$D$E\$UT$ ED$GD$C$6 output Description: Implement a smoothing IIR filter with mirror-symmetric boundary conditions using a cascade of second-order sections. The second section uses a reversed sequence. This implements the following transfer function: cs^2 H(z) = --------------------------------------- (1 - a2/z - a3/z^2) (1 - a2 z - a3 z^2 ) where a2 = (2 r cos omega) a3 = - r^2 cs = 1 - 2 r cos omega + r^2 Inputs: input -- the input signal. r, omega -- parameters in the transfer function. precision -- specifies the precision for calculating initial conditions of the recursive filter based on mirror-symmetric input. Output: output -- filtered signal. symiirorder1(input, c0, z1 {, precision}) -> output Description: Implement a smoothing IIR filter with mirror-symmetric boundary conditions using a cascade of first-order sections. The second section uses a reversed sequence. This implements a system with the following transfer function and mirror-symmetric boundary conditions. c0 H(z) = --------------------- (1-z1/z) (1 - z1 z) The resulting signal will have mirror symmetric boundary conditions as well. Inputs: input -- the input signal. c0, z1 -- parameters in the transfer function. precision -- specifies the precision for calculating initial conditions of the recursive filter based on mirror-symmetric input. Output: output -- filtered signal. sepfir2d(input, hrow, hcol) -> output Description: Convolve the rank-2 input array with the separable filter defined by the rank-1 arrays hrow, and hcol. Mirror symmetric boundary conditions are assumed. This function can be used to find an image given its B-spline representation.qspline2d(input {, lambda, precision}) -> qk Description: Return the second-order B-spline coefficients over a regularly spaced input grid for the two-dimensional input image. The lambda argument specifies the amount of smoothing. The precision argument allows specifying the precision used when computing the infinite sum needed to apply mirror- symmetric boundary conditions. cspline2d(input {, lambda, precision}) -> ck Description: Return the third-order B-spline coefficients over a regularly spacedi input grid for the two-dimensional input image. The lambda argument specifies the amount of smoothing. The precision argument allows specifying the precision used when computing the infinite sum needed to apply mirror- symmetric boundary conditions. `ccspline2dqspline2dsepfir2dsymiirorder1symiirorder2O|ddProblem occured inside routinePrecision too high. Error did not converge.MbP?ư>Smoothing spline not yet implemented.MbP?ư>OOOIncorrect type.Problem occured inside routine.ODD|dUnknown error.Sum to find symmetric boundary conditions did not converge.Could not allocate enough memory.|z1| must be less than 1.0ư>dy=Odd|dư>dy=splinenumpy.core.multiarray_ARRAY_APInumpy.core.multiarray failed to importmodule compiled against version %x of C-API but this version of numpy is %x__version__0.2can't initialize module array-DT! @?-DT! @?qq|?X͞^&ѿ-DT! @?-DT! @?qq|?X͞^&ѿ0C ?@@BA@B?b@-LIBGCCW32-EH-3-SJLJ-GTHR-MINGW32w32_sharedptr->size == sizeof(W32_EH_SHARED)../../gcc-3.4.5/gcc/config/i386/w32-shared-ptr.cGetAtomNameA (atom, s, sizeof(s)) != 0_G2(,0$=spline.pydinitsplineh|,(D`ȰtȱԱ$0<DLT\hp|Բ0H\t̳ȱԱ$0<DLT\hp|Բ0H\t̳AddAtomAFindAtomAGetAtomNameA8__dllonexit_errnoUatan`coskfflushzfreemallocmemmovepowsinsqrttano_assertabortzmemsetPyArg_ParseTuplePyCObject_AsVoidPtr$PyCObject_Type_PyDict_SetItemStringlPyErr_FormatqPyErr_OccurredrPyErr_PrintPyErr_SetStringPyExc_ImportErrorPyExc_RuntimeErrorPyExc_ValueError PyImport_ImportModuleePyModule_GetDictPyObject_GetAttrString2PyString_FromStringPy_FatalErrorPy_InitModule4KERNEL32.dllmsvcr71.dll(((msvcrt.dll<<<<<<<<<<<<<<<<<python25.dllC0M0q0000001,1b1l11142r2222 333,454@445)5r5555"666667l7u777B88888 99N9^999g:p:{:<<=N=l====R>[>f> ?? li000$11111 2)2B2x22 333p33 444444444 5,565;5D5O5e5j5z55555555 66)6/6<=2>0 033/44=>>@0<4R44'56Q7Pk9q9999::::::::;;";2;B;R;w;;;;;;;; <<<3<=G>L>X>g>p>x>>>>>>>>>>? ??!?,?4?>?Q?r???????` 0p(00 0000 0$0,00040<0@0D0L0;.filegdllcrt1.c (_atexit` __onexit .text.data.bss .filegcrtstuff.c5 .text .data.bss .file1gsplinemodule.cE] l`{ `      P      .textst.data .bss .rdata.fileGgS_bspline_util.cP ' 5P K [0 s _S_hc` _S_hs  # % .textP$.data .bss0.rdata4.file]gD_bspline_util.c@' ' @( (  0* $, _D_hc`- _D_hs`. 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