# C generation import datetime import os import time datestring = datetime.datetime.utcfromtimestamp(int(os.environ.get('SOURCE_DATE_EPOCH', time.time()))) input_filename = 'inputfil' top_boilerplate = '''\ /* * VLIB API definitions {datestring} * Input file: {input_filename} * Automatically generated: please edit the input file NOT this file! */ #if defined(vl_msg_id)||defined(vl_union_id) \\ || defined(vl_printfun) ||defined(vl_endianfun) \\ || defined(vl_api_version)||defined(vl_typedefs) \\ || defined(vl_msg_name)||defined(vl_msg_name_crc_list) \\ || defined(vl_api_version_tuple) /* ok, something was selected */ #else #warning no content included from {input_filename} #endif #define VL_API_PACKED(x) x __attribute__ ((packed)) ''' bottom_boilerplate = '''\ /****** API CRC (whole file) *****/ #ifdef vl_api_version vl_api_version({input_filename}, {file_crc:#08x}) #endif ''' def msg_ids(s): output = '''\ /****** Message ID / handler enum ******/ #ifdef vl_msg_id ''' for t in s['Define']: output += "vl_msg_id(VL_API_%s, vl_api_%s_t_handler)\n" % \ (t.name.upper(), t.name) output += "#endif" return output def msg_names(s): output = '''\ /****** Message names ******/ #ifdef vl_msg_name ''' for t in s['Define']: dont_trace = 0 if t.dont_trace else 1 output += "vl_msg_name(vl_api_%s_t, %d)\n" % (t.name, dont_trace) output += "#endif" return output def msg_name_crc_list(s, suffix): output = '''\ /****** Message name, crc list ******/ #ifdef vl_msg_name_crc_list ''' output += "#define foreach_vl_msg_name_crc_%s " % suffix for t in s['Define']: output += "\\\n_(VL_API_%s, %s, %08x) " % \ (t.name.upper(), t.name, t.crc) output += "\n#endif" return output def duplicate_wrapper_head(name): s = "#ifndef defined_%s\n" % name s += "#define defined_%s\n" % name return s def duplicate_wrapper_tail(): return '#endif\n\n' def typedefs(objs, aliases, filename): name = filename.replace('.', '_') output = '''\ /****** Typedefs ******/ #ifdef vl_typedefs #ifndef included_{module} #define included_{module} ''' output = output.format(module=name) for k, v in aliases.items(): output += duplicate_wrapper_head(k) if 'length' in v: output += 'typedef %s vl_api_%s_t[%s];\n' % (v['type'], k, v['length']) else: output += 'typedef %s vl_api_%s_t;\n' % (v['type'], k) output += duplicate_wrapper_tail() for o in objs: tname = o.__class__.__name__ output += duplicate_wrapper_head(o.name) if tname == 'Enum': output += "typedef enum {\n" for b in o.block: output += " %s = %s,\n" % (b[0], b[1]) output += '} vl_api_%s_t;\n' % o.name else: if tname == 'Union': output += "typedef VL_API_PACKED(union _vl_api_%s {\n" % o.name else: output += "typedef VL_API_PACKED(struct _vl_api_%s {\n" % o.name for b in o.block: if b.type == 'Field': output += " %s %s;\n" % (b.fieldtype, b.fieldname) elif b.type == 'Array': if b.lengthfield: output += " %s %s[0];\n" % (b.fieldtype, b.fieldname) else: output += " %s %s[%s];\n" % (b.fieldtype, b.fieldname, b.length) else: raise ValueError("Error in processing array type %s" % b) output += '}) vl_api_%s_t;\n' % o.name output += duplicate_wrapper_tail() output += "\n#endif" output += "\n#endif\n\n" return output format_strings = {'u8': '%u', 'i8': '%d', 'u16': '%u', 'i16': '%d', 'u32': '%u', 'i32': '%ld', 'u64': '%llu', 'i64': '%llu', 'f64': '%.2f', } def printfun(objs): output = '''\ /****** Print functions *****/ #ifdef vl_printfun #ifdef LP64 #define _uword_fmt \"%lld\" #define _uword_cast (long long) #else #define _uword_fmt \"%ld\" #define _uword_cast long #endif ''' for t in objs: if t.__class__.__name__ == 'Enum': continue if t.manual_print: output += "/***** manual: vl_api_%s_t_print *****/\n\n" % t.name continue output += duplicate_wrapper_head(t.name + '_t_print') output += "static inline void *vl_api_%s_t_print (vl_api_%s_t *a," % \ (t.name, t.name) output += "void *handle)\n{\n" output += " vl_print(handle, \"vl_api_%s_t:\\n\");\n" % t.name for o in t.block: if o.type != 'Field': continue if o.fieldtype in format_strings: output += " vl_print(handle, \"%s: %s\\n\", a->%s);\n" % \ (o.fieldname, format_strings[o.fieldtype], o.fieldname) output += ' return handle;\n' output += '}\n\n' output += duplicate_wrapper_tail() output += "\n#endif /* vl_printfun */\n" return output endian_strings = { 'u16': 'clib_net_to_host_u16', 'u32': 'clib_net_to_host_u32', 'u64': 'clib_net_to_host_u64', 'i16': 'clib_net_to_host_u16', 'i32': 'clib_net_to_host_u32', 'i64': 'clib_net_to_host_u64', } def endianfun(objs): output = '''\ /****** Endian swap functions *****/\n\ #ifdef vl_endianfun #undef clib_net_to_host_uword #ifdef LP64 #define clib_net_to_host_uword clib_net_to_host_u64 #else #define clib_net_to_host_uword clib_net_to_host_u32 #endif ''' for t in objs: if t.__class__.__name__ == 'Enum': continue if t.manual_endian: output += "/***** manual: vl_api_%s_t_endian *****/\n\n" % t.name continue output += duplicate_wrapper_head(t.name + '_t_endian') output += "static inline void vl_api_%s_t_endian (vl_api_%s_t *a)" % \ (t.name, t.name) output += "\n{\n" for o in t.block: if o.type != 'Field': continue if o.fieldtype in endian_strings: output += " a->%s = %s(a->%s);\n" % \ (o.fieldname, endian_strings[o.fieldtype], o.fieldname) else: output += " /* a->%s = a->%s (no-op) */\n" % \ (o.fieldname, o.fieldname) output += '}\n\n' output += duplicate_wrapper_tail() output += "\n#endif /* vl_endianfun */\n\n" return output def version_tuple(s, module): output = '''\ /****** Version tuple *****/ #ifdef vl_api_version_tuple ''' if 'version' in s['Option']: v = s['Option']['version'] (major, minor, patch) = v.split('.') output += "vl_api_version_tuple(%s, %s, %s, %s)\n" % \ (module, major, minor, patch) output += "\n#endif /* vl_api_version_tuple */\n\n" return output # # Plugin entry point # def run(input_filename, s, file_crc): basename = os.path.basename(input_filename) filename, file_extension = os.path.splitext(basename) output = top_boilerplate.format(datestring=datestring, input_filename=basename) output += msg_ids(s) output += msg_names(s) output += msg_name_crc_list(s, filename) output += typedefs(s['types'] + s['Define'], s['Alias'], filename + file_extension) output += printfun(s['types'] + s['Define']) output += endianfun(s['types'] + s['Define']) output += version_tuple(s, basename) output += bottom_boilerplate.format(input_filename=basename, file_crc=file_crc) return output