Spade
Mini Shell
�
p�Wc@s�ddlZddlZddlmZyeWn*ek
r\ddlmZd�ZnXyeWnek
r~e ZnXde
fd��YZde
fd ��YZd
e
fd��YZd�Zd
�Zd�ZdS(i����Ni(t
allocate_lock(tCallablecCs
t|t�S(N(t
isinstanceR(tx((s./usr/lib64/python2.7/site-packages/cffi/api.pyt<lambda> stFFIErrorcBseZRS((t__name__t
__module__(((s./usr/lib64/python2.7/site-packages/cffi/api.pyRst CDefErrorcBseZd�ZRS(cCsVyd|jdjjf}Wn
tttfk
r@d}nXd||jdfS(Ns line %d:
its%s%si(targstcoordtlinetAttributeErrort TypeErrort
IndexError(tselfR((s./usr/lib64/python2.7/site-packages/cffi/api.pyt__str__s
(RRR(((s./usr/lib64/python2.7/site-packages/cffi/api.pyRstFFIcBseZdZd5d�Zeed�Zed�Zed�Zdd�Z d�Z
ed�Zd �Zd
�Z
d�Zd�Zd5d
�Zd5d5ed�Zd�Zdd�Zd�Zdd�Zd�Zd�Zd5d5d5d�Zdd�Zd�Zd�Zdd5d�Zd�Zd�Ze
eed5d�Z!dd�Z"d
�Z#d!�Z$d"�Z%d#�Z&d$�Z'd%�Z(d&�Z)d'�Z*d(�Z+d)d*�Z,d+ed,�Z-d-�Z.d.�Z/d/dd5d0�Z0d1�Z1d2�Z2d3�Z3d4�Z4RS(6s�
The main top-level class that you instantiate once, or once per module.
Example usage:
ffi = FFI()
ffi.cdef("""
int printf(const char *, ...);
""")
C = ffi.dlopen(None) # standard library
-or-
C = ffi.verify() # use a C compiler: verify the decl above is
right
C.printf("hello, %s!\n", ffi.new("char[]",
"world"))
cCs+ddlm}m}|dkriddl}ddlm}|j|ksitd|j|f��n||_t�|_ |j
�|_i|_t
jd�j|_t
jd�j|_g|_g|_g|_g|_d|_i|_d|_d|_t|d �r'|j|�nx<|jD]1}|jd
�r1t||t||��q1q1W|j �/|j|j
�|_!|j|j"�|_#WdQXt$|t
j�r�tt%d�s'|j&|j!d�t%_'|j(�\t%_)t%_*q'n0|j&|j!d�|_'|j(�\|_)|_*dS(
s{Create
an FFI instance. The 'backend' argument is used to
select a non-default backend, mostly for tests.
i(tcparsertmodeli����N(t__version__sversion
mismatch, %s !=
%stparsed_typest new_typestset_ffitRTLD_tNULLi(+R RRtNonet
_cffi_backendRtAssertionErrort_backendRt_locktParsert_parsert_cached_btypesttypest
ModuleTypet__dict__t
_parsed_typest
_new_typest_function_cachest
_librariest_cdefsourcest_included_ffist_windows_unicodet_init_once_cachet
_cdef_versiont
_embeddingthasattrRt
startswithtsetattrtgetattrt_get_cached_btypet
voidp_typetBVoidPtchar_array_typetBCharARRtcastRt
_get_typestCDatatCType(RtbackendRRRtname((s./usr/lib64/python2.7/site-packages/cffi/api.pyt__init__0sD
cCs|j|d|d|�dS(s�Parse the given C source.
This registers all declared functions,
types, and global variables. The functions and global variables
can
then be accessed via either 'ffi.dlopen()' or
'ffi.verify()'.
The types can be used in 'ffi.new()' and other functions.
If 'packed' is specified as True, all structs declared
inside this
cdef are packed, i.e. laid out without any field alignment at all.
toverridetpackedN(t_cdef(RtcsourceR@RA((s./usr/lib64/python2.7/site-packages/cffi/api.pytcdefascCs8|j|d|dt�|jdkr4d|_ndS(NRAt dllexportR (RBtTrueR/R(RRCRA((s./usr/lib64/python2.7/site-packages/cffi/api.pyt
embedding_apiksc Ks�t|t�s?t|t�s-td��n|jd�}n|j��t�|_|jj |d||�|j
j|�|r�x|jD]}|j
�q�Wn|jj}|r�g|j_x!|D]}|j||�q�WnWdQXdS(Ns
cdef() argument must be a stringtasciiR@(Rtstrt
basestringRtencodeRtobjectR.R!tparseR*tappendR(tcleart_recompletetfinish_backend_type(RRCR@toptionstcachet
finishlistttp((s./usr/lib64/python2.7/site-packages/cffi/api.pyRBps
ic Csmt|t�s!|dks!t�|j�=t|||�\}}|jj|�|jj|�WdQX|S(sHLoad
and return a dynamic library identified by 'name'.
The standard C library can be loaded by passing None.
Note that functions and types declared by 'ffi.cdef()'
are not
linked to a particular library, just like C headers; in the
library we only look for the actual (untyped) symbols.
N( RRJRRRt_make_ffi_libraryR(RNR)(RR>tflagstlibtfunction_cache((s./usr/lib64/python2.7/site-packages/cffi/api.pytdlopen�s!
cCs�|}||jkr
|j|St|t�sA|jd�}n|jj|�}|j}|rq|j�}n|j|�}||f}||j|<|S(NRH( R&RRIRKR!t
parse_typetis_raw_functiontas_function_pointerR4(Rtcdecltkeyttypetreally_a_function_typetbtypetresult((s./usr/lib64/python2.7/site-packages/cffi/api.pyt_typeof_locked�s
cCswy|j|}Wn0tk
rC|j�|j|�}WdQXnX|\}}|rs|rstd|f��n|S(Ns>the
type %r is a function type, not a pointer-to-function
type(R&tKeyErrorRRdR(RR^tconsider_function_as_funcptrRcRbRa((s./usr/lib64/python2.7/site-packages/cffi/api.pyt_typeof�s
cCs�t|t�r|j|�St||j�r>|jj|�St|tj�rot|�}|dk ro|Snt|tj
�r�t|d�r�|j�|j
|j�SWdQXntt|���dS(s�Parse
the C type given as a string and return the
corresponding <ctype> object.
It can also be used on 'cdata' instance to get its C
type.
t_cffi_base_typeN(RRJRgR;RttypeofR#tBuiltinFunctionTypet_builtin_function_typeRtFunctionTypeR0RR4RhRR`(RR^tres((s./usr/lib64/python2.7/site-packages/cffi/api.pyRi�s
cCsBt|t�r.|j|�}|jj|�S|jj|�SdS(svReturn the
size in bytes of the argument. It can be a
string naming a C type, or a 'cdata' instance.
N(RRJRgRtsizeof(RR^tBType((s./usr/lib64/python2.7/site-packages/cffi/api.pyRn�scCs1t|t�r!|j|�}n|jj|�S(s\Return
the natural alignment size in bytes of the C type
given as a string.
(RRJRgRtalignof(RR^((s./usr/lib64/python2.7/site-packages/cffi/api.pyRp�scGs5t|t�r!|j|�}n|j||�dS(s5Return
the offset of the named field inside the given
structure or array, which must be given as a C type name.
You can give several field names in case of nested structures.
You can also give numeric values which correspond to array
items, in case of an array type.
i(RRJRgt
_typeoffsetof(RR^tfields_or_indexes((s./usr/lib64/python2.7/site-packages/cffi/api.pytoffsetof�scCs4t|t�r!|j|�}n|jj||�S(s�Allocate
an instance according to the specified C type and
return a pointer to it. The specified C type must be either a
pointer or an array: ``new('X *')`` allocates an X and
returns
a pointer to it, whereas ``new('X[n]')`` allocates an
array of
n X'es and returns an array referencing it (which works
mostly like a pointer, like in C). You can also use
``new('X[]', n)`` to allocate an array of a non-constant
length n.
The memory is initialized following the rules of declaring a
global variable in C: by default it is zero-initialized, but
an explicit initializer can be given which can be used to
fill all or part of the memory.
When the returned <cdata> object goes out of scope, the
memory
is freed. In other words the returned <cdata> object has
ownership of the value of type 'cdecl' that it points to.
This
means that the raw data can be used as long as this object is
kept alive, but must not be used for a longer time. Be careful
about that when copying the pointer to the memory somewhere
else, e.g. into another structure.
(RRJRgRtnewp(RR^tinit((s./usr/lib64/python2.7/site-packages/cffi/api.pytnew�scs=�jj�}|j|||��d��fd�}|S(s�Return
a new allocator, i.e. a function that behaves like ffi.new()
but uses the provided low-level 'alloc' and
'free' functions.
'alloc' is called with the size as argument. If it
returns NULL, a
MemoryError is raised. 'free' is called with the result
of 'alloc'
as argument. Both can be either Python function or directly C
functions. If 'free' is None, then no free function is
called.
If both 'alloc' and 'free' are None, the
default is used.
If 'should_clear_after_alloc' is set to False, then the
memory
returned by 'alloc' is assumed to be already cleared (or
you are
fine with garbage); otherwise CFFI will clear it.
cs.t|t�r!�j|�}n�||�S(N(RRJRg(R^Ru(t allocatorR(s./usr/lib64/python2.7/site-packages/cffi/api.pytallocate
sN(RRt
new_allocatorR(Rtalloctfreetshould_clear_after_alloctcompiled_ffiRx((RwRs./usr/lib64/python2.7/site-packages/cffi/api.pyRy�s
cCs4t|t�r!|j|�}n|jj||�S(s�Similar to a C
cast: returns an instance of the named C
type initialized with the given 'source'. The source is
casted between integers or pointers of any type.
(RRJRgRR9(RR^tsource((s./usr/lib64/python2.7/site-packages/cffi/api.pyR9si����cCs|jj||�S(s�Return
a Python string (or unicode string) from the 'cdata'.
If 'cdata' is a pointer or array of characters or bytes,
returns
the null-terminated string. The returned string extends until
the first null character, or at most 'maxlen' characters.
If
'cdata' is an array then 'maxlen' defaults to
its length.
If 'cdata' is a pointer or array of wchar_t, returns a
unicode
string following the same rules.
If 'cdata' is a single character or byte or a wchar_t,
returns
it as a string or unicode string.
If 'cdata' is an enum, returns the value of the
enumerator as a
string, or 'NUMBER' if the value is out of range.
(Rtstring(Rtcdatatmaxlen((s./usr/lib64/python2.7/site-packages/cffi/api.pyRscCs|jj||�S(sMUnpack
an array of C data of the given length,
returning a Python string/unicode/list.
If 'cdata' is a pointer to 'char', returns a
byte string.
It does not stop at the first null. This is equivalent to:
ffi.buffer(cdata, length)[:]
If 'cdata' is a pointer to 'wchar_t', returns a
unicode string.
'length' is measured in wchar_t's; it is not the
size in bytes.
If 'cdata' is a pointer to anything else, returns a list
of
'length' items. This is a faster equivalent to:
[cdata[i] for i in range(length)]
(Rtunpack(RR�tlength((s./usr/lib64/python2.7/site-packages/cffi/api.pyR�.scCs|jj||�S(s�Return
a read-write buffer object that references the raw C data
pointed to by the given 'cdata'. The 'cdata'
must be a pointer or
an array. Can be passed to functions expecting a buffer, or
directly
manipulated with:
buf[:] get a copy of it in a regular string, or
buf[idx] as a single character
buf[:] = ...
buf[idx] = ... change the content
(Rtbuffer(RR�tsize((s./usr/lib64/python2.7/site-packages/cffi/api.pyR�?scCs|jj|j|�S(s�Return
a <cdata 'char[]'> that points to the data of the
given Python object, which must support the buffer interface.
Note that this is not meant to be used on the built-in types str,
unicode, or bytearray (you can build 'char[]' arrays
explicitly)
but only on objects containing large quantities of raw data
in some other format, like 'array.array' or numpy arrays.
(Rtfrom_bufferR8(Rt
python_buffer((s./usr/lib64/python2.7/site-packages/cffi/api.pyR�LscCs|jj|||�S(s_ffi.memmove(dest,
src, n) copies n bytes of memory from src to dest.
Like the C function memmove(), the memory areas may overlap;
apart from that it behaves like the C function memcpy().
'src' can be any cdata ptr or array, or any Python buffer
object.
'dest' can be any cdata ptr or array, or a writable
Python buffer
object. The size to copy, 'n', is always measured in
bytes.
Unlike other methods, this one supports all Python buffer including
byte strings and bytearrays---but it still does not support
non-contiguous buffers.
(Rtmemmove(Rtdesttsrctn((s./usr/lib64/python2.7/site-packages/cffi/api.pyR�Vscs]����fd�}t�t�r?�j�dt��n|dkrO|S||�SdS(s�Return
a callback object or a decorator making such a
callback object. 'cdecl' must name a C function pointer
type.
The callback invokes the specified 'python_callable'
(which may
be provided either directly or via a decorator). Important: the
callback object must be manually kept alive for as long as the
callback may be invoked from the C level.
cs4t|�std��n�jj�|���S(Ns.the
'python_callable' argument is not
callable(tcallableRRtcallback(tpython_callable(R^terrortonerrorR(s./usr/lib64/python2.7/site-packages/cffi/api.pytcallback_decorator_wrapnsRfN(RRJRgRFR(RR^R�R�R�R�((R^R�R�Rs./usr/lib64/python2.7/site-packages/cffi/api.pyR�fsR cCs�t|t�r!|j|�}n|j�}|jd�rdd|jj|d�krdd|}n#|r�|ddkr�d|}n|jj||�S(s.Return
a string giving the C type 'cdecl', which may be itself
a string or a <ctype> object. If 'replace_with' is
given, it gives
extra text to append (or insert for more complicated C types), like
a variable name, or '*' to get actually the C type
'pointer-to-cdecl'.
t*s&[t&s(%s)is[(t
(RRJRgtstripR1Rtgetcname(RR^treplace_with((s./usr/lib64/python2.7/site-packages/cffi/api.pytgetctype{s
c Cs�y|jj}Wntk
r#nX|||�S|j�Yy
|j}Wn4tk
r~ddlm}||�}|_nX|j||�SWdQXdS(s�Return a new
cdata object that points to the same
data. Later, when this new cdata object is garbage-collected,
'destructor(old_cdata_object)' will be called.
i(t
GcWeakrefsN(RtgcpR
Rtgc_weakrefst
gc_weakrefR�tbuild(RR�t
destructorR�R�R�((s./usr/lib64/python2.7/site-packages/cffi/api.pytgc�s
cCs�|jjt�tkst�y|j|}WnJtk
r{g}|j||�}x"|D]}|j||�q^WnX|S(N(RtacquiretFalseRR"Retget_cached_btypeRQ(RR`RoRT((s./usr/lib64/python2.7/site-packages/cffi/api.pyR4�s
cKsyddlm}m}|jr/|j|�n|p;|�}|||||�|_|jj�}|jj|�|S(s�Verify
that the current ffi signatures compile on this
machine, and return a dynamic library object. The dynamic
library can be used to call functions and access global
variables declared in this 'ffi'. The library is
compiled
by the C compiler: it gives you C-level API compatibility
(including calling macros). This is unlike
'ffi.dlopen()',
which requires binary compatibility in the signatures.
i(tVerifiert_caller_dir_pycache(tverifierR�R�R,t_apply_windows_unicodetload_libraryR)RN(RR~ttmpdirtkwargsR�R�RX((s./usr/lib64/python2.7/site-packages/cffi/api.pytverify�s cCs
|jj�S(N(Rt get_errno(R((s./usr/lib64/python2.7/site-packages/cffi/api.pyt
_get_errno�scCs|jj|�dS(N(Rt set_errno(Rterrno((s./usr/lib64/python2.7/site-packages/cffi/api.pyt
_set_errno�ss(the value of 'errno' from/to the C
callscCs|jj|�S(N(Rtgetwinerror(Rtcode((s./usr/lib64/python2.7/site-packages/cffi/api.pyR��scCs4ddlm}|j�|j||�SWdQXdS(Ni(R(R RRt
pointer_cache(RtctypeR((s./usr/lib64/python2.7/site-packages/cffi/api.pyt_pointer_to�s
cGs||jj|�}|r3|j||�\}}n$|jdkrQtd��nd}|j|�}|jj|||�S(s�Return
the address of a <cdata 'struct-or-union'>.
If 'fields_or_indexes' are given, returns the address of
that
field or array item in the structure or array, recursively in
case of nested structures.
tpointersaddressof(pointer)i(RRiRqtkindRR�trawaddressof(RR�RrR�toffsettctypeptr((s./usr/lib64/python2.7/site-packages/cffi/api.pyt addressof�scGs^|jj||�\}}x6|D].}|jj||d�\}}||7}q"W||fS(Ni(Rttypeoffsetof(RR�tfield_or_indexRrR�tfield1toffset1((s./usr/lib64/python2.7/site-packages/cffi/api.pyRq�s
c
Cs�t|t�s.tdt|�jf��n||krItd��n|j�k|j�[|jj|j�|j j
d�|j j|j �|j j
d�|jj
|�WdQXWdQXdS(s�Includes the typedefs, structs, unions and enums
defined
in another FFI instance. Usage is similar to a #include in C,
where a part of the program might include types defined in
another part for its own usage. Note that the include()
method has no effect on functions, constants and global
variables, which must anyway be accessed directly from the
lib object returned by the original FFI instance.
sGffi.include() expects an argument that is also of type cffi.FFI,
not %rsself.include(self)t[t]N(
RRRR`Rt
ValueErrorRR!tincludeR*RNtextendR+(Rtffi_to_include((s./usr/lib64/python2.7/site-packages/cffi/api.pyR��s
cCs|jj|j|�S(N(Rtnewp_handleR6(RR((s./usr/lib64/python2.7/site-packages/cffi/api.pyt
new_handlescCs|jj|�S(N(Rtfrom_handle(RR((s./usr/lib64/python2.7/site-packages/cffi/api.pyR� scCsZ|jdk rtd��nt|�}|r@|jd�n
|jd�||_dS(scWindows:
if 'enabled_flag' is True, enable the UNICODE and
_UNICODE defines in C, and declare the types like TCHAR and LPTCSTR
to be (pointers to) wchar_t. If 'enabled_flag' is False,
declare these types to be (pointers to) plain 8-bit characters.
This is mostly for backward compatibility; you usually want True.
s%set_unicode() can only be called onces�typedef wchar_t
TBYTE;typedef wchar_t TCHAR;typedef const wchar_t *LPCTSTR;typedef const
wchar_t *PCTSTR;typedef wchar_t *LPTSTR;typedef wchar_t *PTSTR;typedef
TBYTE *PTBYTE;typedef TCHAR *PTCHAR;s�typedef char TBYTE;typedef char
TCHAR;typedef const char *LPCTSTR;typedef const char *PCTSTR;typedef char
*LPTSTR;typedef char *PTSTR;typedef TBYTE *PTBYTE;typedef TCHAR
*PTCHAR;N(R,RR�tboolRD(Rtenabled_flag((s./usr/lib64/python2.7/site-packages/cffi/api.pytset_unicodes
cCsZ|jdd�}t|ttf�s6td��nt|�ddg}||d<dS( Nt
define_macross''define_macros'
must be a list or
tupletUNICODEt1t_UNICODE((sUNICODER�(R�R�(tgetRtlistttupleR(Rtkwdst defmacros((s./usr/lib64/python2.7/site-packages/cffi/api.pyR�*s
cs��fd�}dtjkr�ddl}tjdkrsd}ttd�r�|d|jjtjd��q�n7d }ttd�r�|d|jjtjd
��nttd�r�|d|jjtjdd��q�n�tjdkrd
}ttd�rt|d7}qtn_yddl}Wn!t k
rHddl
m}nXd}|jd�rt||jd�7}n|tjd?tjd?d@f}ttd�r�|tj
7}n|d|�tjdkr�|dd�ndS(Ncs2�j|g�}||kr.|j|�ndS(N(t
setdefaultRN(R_tvaluetlst(R�(s./usr/lib64/python2.7/site-packages/cffi/api.pytensure4st__pypy__i����twin32tpython27tprefixtlibrary_dirstlibsspypy-ctbintpypytgoals
python%d%dtgettotalrefcountt_d(t sysconfigspython%d.%dt DEBUG_EXTiii�tabiflagst librariestextra_link_argss /MANIFEST(tsystbuiltin_module_namestostplatformR0tpathtjoinR�R�tImportErrort distutilstget_config_vart
hexversionR�(RR�R�R�t pythonlibttemplateR�((R�s./usr/lib64/python2.7/site-packages/cffi/api.pyt_apply_embedding_fix2s<%"(
s.ccKs[t|d�rtd��nt|t�s<td��nt|�|||f|_dS(Nt_assigned_sources:set_source()
cannot be called several times per ffi objects'module_name' must
be a
string(R0R�RRJRRIR�(Rtmodule_nameR~tsource_extensionR�((s./usr/lib64/python2.7/site-packages/cffi/api.pyt
set_sourceasR�c
Csddlm}ddlm}t|d�sZt|d�rK|jj�Std��n|j\}}}}|dkr�t
d��n||�||||d |d
|d|dt|�\} }
|r|
r�tj
jd
| jdf�qtj
jd| jdf�n| S(Ni����(tmkpathi(t recompileR�R�s8set_source()
must be called before distutils_extension()sadistutils_extension() is only
for C extension modules, not for dlopen()-style pure Python
modulesR�textradirR�tcall_c_compilersregenerated: %r
isnot modified: %r
(tdistutils.dir_utilR�t
recompilerR�R0R�t
get_extensionR�R�RRR�R�tstderrtwritetsources(RR�tverboseR�R�R�R~R�R�texttupdated((s./usr/lib64/python2.7/site-packages/cffi/api.pytdistutils_extensionjs&
!!c Cs�ddlm}t|d�s.td��n|j\}}}}|dkr^td��n||||d|dt|�dS(Ni(R�R�s0set_source()
must be called before emit_c_code()sYemit_c_code() is only for C extension
modules, not for dlopen()-style pure Python
modulestc_fileR�(R�R�R0R�R�RRR�(RtfilenameR�R�R~R�R�((s./usr/lib64/python2.7/site-packages/cffi/api.pytemit_c_code�sc Cs�ddlm}t|d�s.td��n|j\}}}}|dk r^td��n||||d|dt|�dS(Ni(R�R�s0set_source()
must be called before emit_c_code()s^emit_python_code() is only for
dlopen()-style pure Python modules, not for C extension
modulesRR�(R�R�R0R�R�RRR�(RRR�R�R~R�R�((s./usr/lib64/python2.7/site-packages/cffi/api.pytemit_python_code�st.c
Csnddlm}t|d�s.td��n|j\}}}}||||d|d|d|d||�S( s�The
'target' argument gives the final file name of the
compiled DLL. Use '*' to force distutils' choice,
suitable for
regular CPython C API modules. Use a file name ending in
'.*'
to ask for the system's default extension for dynamic
libraries
(.so/.dll/.dylib).
The default is '*' when building a non-embedded C API
extension,
and (module_name + '.*') when building an embedded
library.
i(R�R�s,set_source() must be called before
compile()R�ttargetR�tcompiler_verbose(R�R�R0R�R�( RR�RRR�R�R~R�R�((s./usr/lib64/python2.7/site-packages/cffi/api.pytcompile�s
cCs�y|j|}Wn/tk
rB|jj|tt�f�}nX|drU|dS|d�@|j|}|dr|dS|�}t|f|j|<WdQX|S(Nii(R-ReR�R�RRF(RtfuncttagRRc((s./usr/lib64/python2.7/site-packages/cffi/api.pyt init_once�s
"
cCs2|jrtd��nddl}|jd|�}|rO||j�}n|j�padg}|jd|d�j�}xVtdt|��D]?}||}|j �r�x
|j
|�s�|d
}q�Wq�q�Wt|�}g|D]}||d^q�}dj|�}t|d d
�||_dS(Ns-embedding_init_code() can only be called
oncei����s\s*\nR s\s*iis
t cffi_inittexec(
R/R�tretmatchtendt
splitlinestgrouptrangetlentrstripR1R�R(RtpysourceRRtlinesR�tiR((s./usr/lib64/python2.7/site-packages/cffi/api.pytembedding_init_code�s$
!cOstd��dS(Ns:ffi.def_extern() is only available
on API-mode FFI objects(R�(RR
R�((s./usr/lib64/python2.7/site-packages/cffi/api.pyt
def_extern�scCs�g}g}g}x}|jjD]o}|jd�rH|j|d�q|jd�rk|j|d�q|jd�r|j|d�qqW|j�|j�|j�|||fS(s�Returns
the user type names known to this FFI instance.
This returns a tuple containing three lists of names:
(typedef_names, names_of_structs, names_of_unions)
stypedef isstruct isunion
i(R!t
_declarationsR1RNtsort(RttypedefststructstunionsR_((s./usr/lib64/python2.7/site-packages/cffi/api.pyt
list_types�s
N(5RRt__doc__RR?R�RDRGRBRZRdRgRiRnRpRsRvRFRyR9RR�R�R�R�R�R�R�R4R�R�R�tpropertyR�R�R�R�RqR�R�R�R�R�R�R�RR R
RRRR
R&(((s./usr/lib64/python2.7/site-packages/cffi/api.pyRsb1
/ cCs�|dkr4tjdkr+|jd|�Sd}nyBd|kred|kretd|f��n|j||�SWnNtk
r�ddl}|jj|�}|dkr��n|j||�SXdS(NR�tcRt/slibrary
not found:
%ri����(RR�R�R�tOSErrortctypes.utiltutiltfind_library(R=R>RWtctypesR�((s./usr/lib64/python2.7/site-packages/cffi/api.pyt_load_backend_lib�s
csJddl}�j}t|||����� fd�����fd��d���� fd��i�tg��������� fd������ �fd��
dtf���
�fd ��Y�|dk r4y2t|t�s|jd
�}nd|�_ Wq4t
k
r0q4Xn��� � � jfS(Ni����cs�d|}�jj|\}}�j|�}y�j||�}Wn)tk
rp}td||f��nX|�j|<dS(Ns function s%s:
%s(R!R!R4t
load_functionReR
R%(R>R_RUt_RoR�te(t
backendlibtffitlibrary(s./usr/lib64/python2.7/site-packages/cffi/api.pytaccessor_functions
cs|d�}�jj|\}}�j|���j��j�t��t���fd����fd���dS(Ns variable
cs
����S(N((R(RoR>t
read_variable(s./usr/lib64/python2.7/site-packages/cffi/api.pyR!scs���|�S(N((RR�(RoR>twrite_variable(s./usr/lib64/python2.7/site-packages/cffi/api.pyR"s(R!R!R4R8R9R2R((R>R_RUR2(t
FFILibraryR4R5(RoR>R8R9s./usr/lib64/python2.7/site-packages/cffi/api.pytaccessor_variables
cSstd|f��dS(NsDnon-integer constant
'%s' cannot be accessed from a dlopen()
library(tNotImplementedError(R>((s./usr/lib64/python2.7/site-packages/cffi/api.pytaccessor_constant$scs�jj|�j|<dS(N(R!t_int_constantsR%(R>(R5R6(s./usr/lib64/python2.7/site-packages/cffi/api.pytaccessor_int_constant(sc s?�d�jkrdSddlm}x��jjj�D]�\}\}}t||j�s�|jdd�\}}|dkr���|<q|dkr���|<q|dkr��|<qq:x<t |j
�D]+\}}||�fd�}|�|<q�Wq:Wx$�jjD]}�j|��qW�j�d<dS( Nii(RR�tfunctiontvariabletconstantcs"|j�|j|�j|<dS(N(tcheck_not_partialt
enumvaluesR%(R>RUR(R6(s./usr/lib64/python2.7/site-packages/cffi/api.pyt
accessor_enum>s
(
R.R RR!R!titemsRtEnumTypetsplitt enumeratetenumeratorsR>R�( RR_RUR2RR>RtenumnameRE(R=R7R?R;t accessorstaccessors_versionR5R6(s./usr/lib64/python2.7/site-packages/cffi/api.pytupdate_accessors.s$%
csu�j�f|�jks(|�jkr,dS|�kr]��|�kr]t|��q]n�||�WdQXdS(N(RR%R
(R>(R:RLR5R6RN(s./usr/lib64/python2.7/site-packages/cffi/api.pyt
make_accessorFs
R:cs;eZ�fd�Z�fd�Z���fd�ZRS(cs�|�t||�S(N(R3(RR>(RO(s./usr/lib64/python2.7/site-packages/cffi/api.pyt__getattr__Qs
csXyt|j|�}Wn+tk
rC�|�t|||�nX|j||�dS(N(R3t __class__R
R2t__set__(RR>R�R((RO(s./usr/lib64/python2.7/site-packages/cffi/api.pyt__setattr__Ts
cs%�j����j�SWdQXdS(N(Rtkeys(R(RLR5RN(s./usr/lib64/python2.7/site-packages/cffi/api.pyt__dir__\s
(RRRPRSRU((RLR5RORN(s./usr/lib64/python2.7/site-packages/cffi/api.pyR:Pssutf-8s
FFILibrary_%s(R�RR0R�RLRRRIRKRtUnicodeErrorR%(R5tlibnameRWR�R=((R:R=R7R?R;RLRMR4R5R6RORNs./usr/lib64/python2.7/site-packages/cffi/api.pyRVs*
$
%
cCs{ddl}y0|j|j}|j}|j}||}Wntttfk
rYdSX|j �|j
|�SWdQXdS(Ni����(R�tmodulesRt_cffi_original_ffit_cffi_types_of_builtin_funcsReR
RRRR4(RR�tmoduleR5ttypes_of_builtin_funcsRU((s./usr/lib64/python2.7/site-packages/cffi/api.pyRkks
(R�R#tlockRR�t NameErrortcollectionsRRJRIt ExceptionRRRLRR0RVRk(((s./usr/lib64/python2.7/site-packages/cffi/api.pyt<module>s$
��� `