/opt/imh/python3.13/include/python3.13/internal
NameSizeModeActions
mimalloc/-0755rm
pycore_abstract.h19150644editdlrm
pycore_asdl.h30350644editdlrm
pycore_ast.h315200644editdlrm
pycore_ast_state.h67790644editdlrm
pycore_atexit.h14330644editdlrm
pycore_backoff.h39020644editdlrm
pycore_bitutils.h60260644editdlrm
pycore_blocks_output_buffer.h87720644editdlrm
pycore_brc.h21020644editdlrm
pycore_bytesobject.h50990644editdlrm
pycore_bytes_methods.h39330644editdlrm
pycore_call.h61350644editdlrm
pycore_capsule.h3970644editdlrm
pycore_cell.h10570644editdlrm
pycore_ceval.h111620644editdlrm
pycore_ceval_state.h39210644editdlrm
pycore_code.h198640644editdlrm
pycore_codecs.h24650644editdlrm
pycore_compile.h37500644editdlrm
pycore_complexobject.h5880644editdlrm
pycore_condvar.h27040644editdlrm
pycore_context.h11820644editdlrm
pycore_critical_section.h79680644editdlrm
pycore_crossinterp.h121280644editdlrm
pycore_descrobject.h5430644editdlrm
pycore_dict.h122640644editdlrm
pycore_dict_state.h7320644editdlrm
pycore_dtoa.h17270644editdlrm
pycore_emscripten_signal.h6850644editdlrm
pycore_emscripten_trampoline.h31800644editdlrm
pycore_exceptions.h9000644editdlrm
pycore_faulthandler.h22450644editdlrm
pycore_fileutils.h94680644editdlrm
pycore_fileutils_windows.h27130644editdlrm
pycore_floatobject.h14950644editdlrm
pycore_flowgraph.h14890644editdlrm
pycore_format.h4800644editdlrm
pycore_frame.h108750644editdlrm
pycore_freelist.h48100644editdlrm
pycore_function.h15380644editdlrm
pycore_gc.h129670644editdlrm
pycore_genobject.h8590644editdlrm
pycore_getopt.h4900644editdlrm
pycore_gil.h21960644editdlrm
pycore_global_objects.h30900644editdlrm
pycore_global_objects_fini_generated.h1178040644editdlrm
pycore_global_strings.h267060644editdlrm
pycore_hamt.h37420644editdlrm
pycore_hashtable.h43610644editdlrm
pycore_identifier.h5150644editdlrm
pycore_import.h77310644editdlrm
pycore_importdl.h40550644editdlrm
pycore_initconfig.h63750644editdlrm
pycore_instruction_sequence.h21610644editdlrm
pycore_instruments.h23310644editdlrm
pycore_interp.h150630644editdlrm
pycore_intrinsics.h17560644editdlrm
pycore_jit.h5270644editdlrm
pycore_list.h18590644editdlrm
pycore_llist.h24200644editdlrm
pycore_lock.h85380644editdlrm
pycore_long.h99660644editdlrm
pycore_memoryobject.h4270644editdlrm
pycore_mimalloc.h16370644editdlrm
pycore_modsupport.h33510644editdlrm
pycore_moduleobject.h15720644editdlrm
pycore_namespace.h4350644editdlrm
pycore_object.h279360644editdlrm
pycore_object_alloc.h21760644editdlrm
pycore_object_stack.h23840644editdlrm
pycore_object_state.h9420644editdlrm
pycore_obmalloc.h274180644editdlrm
pycore_obmalloc_init.h19350644editdlrm
pycore_opcode_metadata.h847220644editdlrm
pycore_opcode_utils.h21220644editdlrm
pycore_optimizer.h83030644editdlrm
pycore_parking_lot.h33510644editdlrm
pycore_parser.h20890644editdlrm
pycore_pathconfig.h6580644editdlrm
pycore_pyarena.h28620644editdlrm
pycore_pyatomic_ft_wrappers.h80560644editdlrm
pycore_pybuffer.h5100644editdlrm
pycore_pyerrors.h49600644editdlrm
pycore_pyhash.h28130644editdlrm
pycore_pylifecycle.h44650644editdlrm
pycore_pymath.h86000644editdlrm
pycore_pymem.h44850644editdlrm
pycore_pymem_init.h35200644editdlrm
pycore_pystate.h99640644editdlrm
pycore_pystats.h4200644editdlrm
pycore_pythonrun.h7580644editdlrm
pycore_pythread.h54310644editdlrm
pycore_qsbr.h55240644editdlrm
pycore_range.h3460644editdlrm
pycore_runtime.h131650644editdlrm
pycore_runtime_init.h130450644editdlrm
pycore_runtime_init_generated.h468200644editdlrm
pycore_semaphore.h17310644editdlrm
pycore_setobject.h9510644editdlrm
pycore_signal.h29310644editdlrm
pycore_sliceobject.h3690644editdlrm
pycore_stackref.h51860644editdlrm
pycore_strhex.h10130644editdlrm
pycore_structseq.h9630644editdlrm
pycore_symtable.h86710644editdlrm
pycore_sysmodule.h11770644editdlrm
pycore_time.h117940644editdlrm
pycore_token.h30010644editdlrm
pycore_traceback.h36290644editdlrm
pycore_tracemalloc.h45330644editdlrm
pycore_tstate.h13540644editdlrm
pycore_tuple.h8200644editdlrm
pycore_typeobject.h88770644editdlrm
pycore_typevarobject.h9240644editdlrm
pycore_ucnhash.h9580644editdlrm
pycore_unicodeobject.h132700644editdlrm
pycore_unicodeobject_generated.h1321400644editdlrm
pycore_unionobject.h7420644editdlrm
pycore_uop_ids.h102670644editdlrm
pycore_uop_metadata.h394690644editdlrm
pycore_warnings.h8400644editdlrm
pycore_weakref.h38890644editdlrm
Edit: /opt/imh/python3.13/include/python3.13/internal/pycore_bitutils.h (6026B)
/* Bit and bytes utilities. Bytes swap functions, reverse order of bytes: - _Py_bswap16(uint16_t) - _Py_bswap32(uint32_t) - _Py_bswap64(uint64_t) */ #ifndef Py_INTERNAL_BITUTILS_H #define Py_INTERNAL_BITUTILS_H #ifdef __cplusplus extern "C" { #endif #ifndef Py_BUILD_CORE # error "this header requires Py_BUILD_CORE define" #endif #if defined(__GNUC__) \ && ((__GNUC__ >= 5) || (__GNUC__ == 4) && (__GNUC_MINOR__ >= 8)) /* __builtin_bswap16() is available since GCC 4.8, __builtin_bswap32() is available since GCC 4.3, __builtin_bswap64() is available since GCC 4.3. */ # define _PY_HAVE_BUILTIN_BSWAP #endif #ifdef _MSC_VER # include // _byteswap_uint64() #endif static inline uint16_t _Py_bswap16(uint16_t word) { #if defined(_PY_HAVE_BUILTIN_BSWAP) || _Py__has_builtin(__builtin_bswap16) return __builtin_bswap16(word); #elif defined(_MSC_VER) Py_BUILD_ASSERT(sizeof(word) == sizeof(unsigned short)); return _byteswap_ushort(word); #else // Portable implementation which doesn't rely on circular bit shift return ( ((word & UINT16_C(0x00FF)) << 8) | ((word & UINT16_C(0xFF00)) >> 8)); #endif } static inline uint32_t _Py_bswap32(uint32_t word) { #if defined(_PY_HAVE_BUILTIN_BSWAP) || _Py__has_builtin(__builtin_bswap32) return __builtin_bswap32(word); #elif defined(_MSC_VER) Py_BUILD_ASSERT(sizeof(word) == sizeof(unsigned long)); return _byteswap_ulong(word); #else // Portable implementation which doesn't rely on circular bit shift return ( ((word & UINT32_C(0x000000FF)) << 24) | ((word & UINT32_C(0x0000FF00)) << 8) | ((word & UINT32_C(0x00FF0000)) >> 8) | ((word & UINT32_C(0xFF000000)) >> 24)); #endif } static inline uint64_t _Py_bswap64(uint64_t word) { #if defined(_PY_HAVE_BUILTIN_BSWAP) || _Py__has_builtin(__builtin_bswap64) return __builtin_bswap64(word); #elif defined(_MSC_VER) return _byteswap_uint64(word); #else // Portable implementation which doesn't rely on circular bit shift return ( ((word & UINT64_C(0x00000000000000FF)) << 56) | ((word & UINT64_C(0x000000000000FF00)) << 40) | ((word & UINT64_C(0x0000000000FF0000)) << 24) | ((word & UINT64_C(0x00000000FF000000)) << 8) | ((word & UINT64_C(0x000000FF00000000)) >> 8) | ((word & UINT64_C(0x0000FF0000000000)) >> 24) | ((word & UINT64_C(0x00FF000000000000)) >> 40) | ((word & UINT64_C(0xFF00000000000000)) >> 56)); #endif } // Population count: count the number of 1's in 'x' // (number of bits set to 1), also known as the hamming weight. // // Implementation note. CPUID is not used, to test if x86 POPCNT instruction // can be used, to keep the implementation simple. For example, Visual Studio // __popcnt() is not used this reason. The clang and GCC builtin function can // use the x86 POPCNT instruction if the target architecture has SSE4a or // newer. static inline int _Py_popcount32(uint32_t x) { #if (defined(__clang__) || defined(__GNUC__)) #if SIZEOF_INT >= 4 Py_BUILD_ASSERT(sizeof(x) <= sizeof(unsigned int)); return __builtin_popcount(x); #else // The C standard guarantees that unsigned long will always be big enough // to hold a uint32_t value without losing information. Py_BUILD_ASSERT(sizeof(x) <= sizeof(unsigned long)); return __builtin_popcountl(x); #endif #else // 32-bit SWAR (SIMD Within A Register) popcount // Binary: 0 1 0 1 ... const uint32_t M1 = 0x55555555; // Binary: 00 11 00 11. .. const uint32_t M2 = 0x33333333; // Binary: 0000 1111 0000 1111 ... const uint32_t M4 = 0x0F0F0F0F; // Put count of each 2 bits into those 2 bits x = x - ((x >> 1) & M1); // Put count of each 4 bits into those 4 bits x = (x & M2) + ((x >> 2) & M2); // Put count of each 8 bits into those 8 bits x = (x + (x >> 4)) & M4; // Sum of the 4 byte counts. // Take care when considering changes to the next line. Portability and // correctness are delicate here, thanks to C's "integer promotions" (C99 // §6.3.1.1p2). On machines where the `int` type has width greater than 32 // bits, `x` will be promoted to an `int`, and following C's "usual // arithmetic conversions" (C99 §6.3.1.8), the multiplication will be // performed as a multiplication of two `unsigned int` operands. In this // case it's critical that we cast back to `uint32_t` in order to keep only // the least significant 32 bits. On machines where the `int` type has // width no greater than 32, the multiplication is of two 32-bit unsigned // integer types, and the (uint32_t) cast is a no-op. In both cases, we // avoid the risk of undefined behaviour due to overflow of a // multiplication of signed integer types. return (uint32_t)(x * 0x01010101U) >> 24; #endif } // Return the index of the most significant 1 bit in 'x'. This is the smallest // integer k such that x < 2**k. Equivalent to floor(log2(x)) + 1 for x != 0. static inline int _Py_bit_length(unsigned long x) { #if (defined(__clang__) || defined(__GNUC__)) if (x != 0) { // __builtin_clzl() is available since GCC 3.4. // Undefined behavior for x == 0. return (int)sizeof(unsigned long) * 8 - __builtin_clzl(x); } else { return 0; } #elif defined(_MSC_VER) // _BitScanReverse() is documented to search 32 bits. Py_BUILD_ASSERT(sizeof(unsigned long) <= 4); unsigned long msb; if (_BitScanReverse(&msb, x)) { return (int)msb + 1; } else { return 0; } #else const int BIT_LENGTH_TABLE[32] = { 0, 1, 2, 2, 3, 3, 3, 3, 4, 4, 4, 4, 4, 4, 4, 4, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5 }; int msb = 0; while (x >= 32) { msb += 6; x >>= 6; } msb += BIT_LENGTH_TABLE[x]; return msb; #endif } #ifdef __cplusplus } #endif #endif /* !Py_INTERNAL_BITUTILS_H */