1 | #include "EXTERN.h" |
1 | #include "EXTERN.h" |
2 | #include "perl.h" |
2 | #include "perl.h" |
3 | #include "XSUB.h" |
3 | #include "XSUB.h" |
4 | |
4 | |
5 | // C99 required |
5 | // C99 required! |
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6 | // this is not just for comments, but also for |
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7 | // integer constant semantics, |
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8 | // sscanf format modifiers and more. |
6 | |
9 | |
7 | enum { |
10 | enum { |
8 | // ASN_TAG |
11 | // ASN_TAG |
9 | ASN_BOOLEAN = 0x01, |
12 | ASN_BOOLEAN = 0x01, |
10 | ASN_INTEGER32 = 0x02, |
13 | ASN_INTEGER = 0x02, |
11 | ASN_BIT_STRING = 0x03, |
14 | ASN_BIT_STRING = 0x03, |
12 | ASN_OCTET_STRING = 0x04, |
15 | ASN_OCTET_STRING = 0x04, |
13 | ASN_NULL = 0x05, |
16 | ASN_NULL = 0x05, |
14 | ASN_OBJECT_IDENTIFIER = 0x06, |
17 | ASN_OBJECT_IDENTIFIER = 0x06, |
15 | ASN_OID = 0x06, //X |
18 | ASN_OID = 0x06, |
16 | ASN_OBJECT_DESCRIPTOR = 0x07, //X |
19 | ASN_OBJECT_DESCRIPTOR = 0x07, |
17 | ASN_EXTERNAL = 0x08, //X |
20 | ASN_EXTERNAL = 0x08, |
18 | ASN_REAL = 0x09, //X |
21 | ASN_REAL = 0x09, |
19 | ASN_ENUMERATED = 0x0a, //X |
22 | ASN_ENUMERATED = 0x0a, |
20 | ASN_EMBEDDED_PDV = 0x0b, //X |
23 | ASN_EMBEDDED_PDV = 0x0b, |
21 | ASN_UTF8_STRING = 0x0c, //X |
24 | ASN_UTF8_STRING = 0x0c, |
22 | ASN_RELATIVE_OID = 0x0d, //X |
25 | ASN_RELATIVE_OID = 0x0d, |
23 | ASN_SEQUENCE = 0x10, |
26 | ASN_SEQUENCE = 0x10, |
24 | ASN_SET = 0x11, //X |
27 | ASN_SET = 0x11, |
25 | ASN_NUMERIC_STRING = 0x12, //X |
28 | ASN_NUMERIC_STRING = 0x12, |
26 | ASN_PRINTABLE_STRING = 0x13, //X |
29 | ASN_PRINTABLE_STRING = 0x13, |
27 | ASN_TELETEX_STRING = 0x14, //X |
30 | ASN_TELETEX_STRING = 0x14, |
28 | ASN_T61_STRING = 0x14, //X |
31 | ASN_T61_STRING = 0x14, |
29 | ASN_VIDEOTEX_STRING = 0x15, //X |
32 | ASN_VIDEOTEX_STRING = 0x15, |
30 | ASN_IA5_STRING = 0x16, //X |
33 | ASN_IA5_STRING = 0x16, |
31 | ASN_ASCII_STRING = 0x16, //X |
34 | ASN_ASCII_STRING = 0x16, |
32 | ASN_UTC_TIME = 0x17, //X |
35 | ASN_UTC_TIME = 0x17, |
33 | ASN_GENERALIZED_TIME = 0x18, //X |
36 | ASN_GENERALIZED_TIME = 0x18, |
34 | ASN_GRAPHIC_STRING = 0x19, //X |
37 | ASN_GRAPHIC_STRING = 0x19, |
35 | ASN_VISIBLE_STRING = 0x1a, //X |
38 | ASN_VISIBLE_STRING = 0x1a, |
36 | ASN_ISO646_STRING = 0x1a, //X |
39 | ASN_ISO646_STRING = 0x1a, |
37 | ASN_GENERAL_STRING = 0x1b, //X |
40 | ASN_GENERAL_STRING = 0x1b, |
38 | ASN_UNIVERSAL_STRING = 0x1c, //X |
41 | ASN_UNIVERSAL_STRING = 0x1c, |
39 | ASN_CHARACTER_STRING = 0x1d, //X |
42 | ASN_CHARACTER_STRING = 0x1d, |
40 | ASN_BMPSTRING = 0x1e, //X |
43 | ASN_BMP_STRING = 0x1e, |
41 | |
44 | |
42 | ASN_TAG_BER = 0x1f, |
45 | ASN_TAG_BER = 0x1f, |
43 | ASN_TAG_MASK = 0x1f, |
46 | ASN_TAG_MASK = 0x1f, |
44 | |
47 | |
45 | // primitive/constructed |
48 | // primitive/constructed |
46 | ASN_CONSTRUCTED = 0x20, |
49 | ASN_CONSTRUCTED = 0x20, |
47 | |
50 | |
48 | // ASN_CLASS |
51 | // ASN_CLASS |
49 | ASN_UNIVERSAL = 0x00, |
52 | ASN_UNIVERSAL = 0x00, |
50 | ASN_APPLICATION = 0x40, |
53 | ASN_APPLICATION = 0x01, |
51 | ASN_CONTEXT = 0x80, |
54 | ASN_CONTEXT = 0x02, |
52 | ASN_PRIVATE = 0xc0, |
55 | ASN_PRIVATE = 0x03, |
53 | |
56 | |
54 | ASN_CLASS_MASK = 0xc0, |
57 | ASN_CLASS_MASK = 0xc0, |
55 | ASN_CLASS_SHIFT = 6, |
58 | ASN_CLASS_SHIFT = 6, |
56 | |
59 | |
57 | // ASN_APPLICATION SNMP |
60 | // ASN_APPLICATION SNMP |
58 | SNMP_IPADDRESS = 0x00, |
61 | SNMP_IPADDRESS = 0x00, |
59 | SNMP_COUNTER32 = 0x01, |
62 | SNMP_COUNTER32 = 0x01, |
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63 | SNMP_GAUGE32 = 0x02, |
60 | SNMP_UNSIGNED32 = 0x02, |
64 | SNMP_UNSIGNED32 = 0x02, |
61 | SNMP_TIMETICKS = 0x03, |
65 | SNMP_TIMETICKS = 0x03, |
62 | SNMP_OPAQUE = 0x04, |
66 | SNMP_OPAQUE = 0x04, |
63 | SNMP_COUNTER64 = 0x06, |
67 | SNMP_COUNTER64 = 0x06, |
64 | }; |
68 | }; |
65 | |
69 | |
66 | enum { |
70 | enum { |
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71 | BER_TYPE_BYTES, |
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72 | BER_TYPE_UTF8, |
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73 | BER_TYPE_UCS2, |
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74 | BER_TYPE_UCS4, |
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75 | BER_TYPE_INT, |
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76 | BER_TYPE_OID, |
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77 | BER_TYPE_RELOID, |
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78 | BER_TYPE_NULL, |
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79 | BER_TYPE_BOOL, |
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80 | BER_TYPE_REAL, |
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81 | BER_TYPE_IPADDRESS, |
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82 | BER_TYPE_CROAK, |
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83 | }; |
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84 | |
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85 | enum { |
67 | BER_CLASS = 0, |
86 | BER_CLASS = 0, |
68 | BER_TAG = 1, |
87 | BER_TAG = 1, |
69 | BER_CONSTRUCTED = 2, |
88 | BER_FLAGS = 2, |
70 | BER_DATA = 3, |
89 | BER_DATA = 3, |
71 | BER_ARRAYSIZE |
90 | BER_ARRAYSIZE |
72 | }; |
91 | }; |
73 | |
92 | |
74 | #define MAX_OID_STRLEN 4096 |
93 | #define MAX_OID_STRLEN 4096 |
75 | |
94 | |
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95 | typedef void profile_type; |
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96 | |
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97 | static profile_type *cur_profile, *default_profile; |
76 | static SV *buf_sv; // encoding buffer |
98 | static SV *buf_sv; // encoding buffer |
77 | static U8 *buf, *cur, *end; // buffer start, current, end |
99 | static U8 *buf, *cur, *end; // buffer start, current, end |
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100 | |
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101 | #if PERL_VERSION < 18 |
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102 | # define utf8_to_uvchr_buf(s,e,l) utf8_to_uvchr (s, l) |
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103 | #endif |
78 | |
104 | |
79 | #if __GNUC__ >= 3 |
105 | #if __GNUC__ >= 3 |
80 | # define expect(expr,value) __builtin_expect ((expr), (value)) |
106 | # define expect(expr,value) __builtin_expect ((expr), (value)) |
81 | # define INLINE static inline |
107 | # define INLINE static inline |
82 | #else |
108 | #else |
… | |
… | |
85 | #endif |
111 | #endif |
86 | |
112 | |
87 | #define expect_false(expr) expect ((expr) != 0, 0) |
113 | #define expect_false(expr) expect ((expr) != 0, 0) |
88 | #define expect_true(expr) expect ((expr) != 0, 1) |
114 | #define expect_true(expr) expect ((expr) != 0, 1) |
89 | |
115 | |
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116 | ///////////////////////////////////////////////////////////////////////////// |
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117 | |
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118 | static SV *sviv_cache[32]; |
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119 | |
90 | // for "small" integers, return a readonly sv, otherwise create a new one |
120 | // for "small" integers, return a readonly sv, otherwise create a new one |
91 | static SV *newSVcacheint (int val) |
121 | static SV *newSVcacheint (int val) |
92 | { |
122 | { |
93 | static SV *cache[32]; |
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94 | |
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95 | if (expect_false (val < 0 || val >= sizeof (cache))) |
123 | if (expect_false (val < 0 || val >= sizeof (sviv_cache))) |
96 | return newSViv (val); |
124 | return newSViv (val); |
97 | |
125 | |
98 | if (expect_false (!cache [val])) |
126 | if (expect_false (!sviv_cache [val])) |
99 | { |
127 | { |
100 | cache [val] = newSVuv (val); |
128 | sviv_cache [val] = newSVuv (val); |
101 | SvREADONLY_on (cache [val]); |
129 | SvREADONLY_on (sviv_cache [val]); |
102 | } |
130 | } |
103 | |
131 | |
104 | return SvREFCNT_inc_NN (cache [val]); |
132 | return SvREFCNT_inc_NN (sviv_cache [val]); |
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133 | } |
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134 | |
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135 | ///////////////////////////////////////////////////////////////////////////// |
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136 | |
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137 | static HV *profile_stash; |
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138 | |
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139 | static profile_type * |
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140 | SvPROFILE (SV *profile) |
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141 | { |
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142 | if (!SvOK (profile)) |
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143 | return default_profile; |
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144 | |
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145 | if (!SvROK (profile)) |
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146 | croak ("invalid profile"); |
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147 | |
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148 | profile = SvRV (profile); |
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149 | |
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150 | if (SvSTASH (profile) != profile_stash) |
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151 | croak ("invalid profile object"); |
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152 | |
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153 | return (void *)profile; |
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154 | } |
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155 | |
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156 | static int |
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157 | profile_lookup (profile_type *profile, int klass, int tag) |
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158 | { |
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159 | SV *sv = (SV *)profile; |
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160 | U32 idx = (tag << 2) + klass; |
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161 | |
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162 | if (expect_false (idx >= SvCUR (sv))) |
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163 | return BER_TYPE_BYTES; |
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164 | |
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165 | return SvPVX (sv)[idx]; |
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166 | } |
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167 | |
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168 | static void |
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169 | profile_set (profile_type *profile, int klass, int tag, int type) |
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170 | { |
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171 | SV *sv = (SV *)profile; |
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172 | U32 idx = (tag << 2) + klass; |
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173 | STRLEN oldlen = SvCUR (sv); |
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174 | STRLEN newlen = idx + 2; |
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175 | |
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176 | if (idx >= oldlen) |
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177 | { |
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178 | sv_grow (sv, newlen); |
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179 | memset (SvPVX (sv) + oldlen, BER_TYPE_BYTES, newlen - oldlen); |
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180 | SvCUR_set (sv, newlen); |
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181 | } |
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182 | |
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183 | SvPVX (sv)[idx] = type; |
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184 | } |
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185 | |
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186 | static SV * |
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187 | profile_new (void) |
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188 | { |
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189 | SV *sv = newSVpvn ("", 0); |
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190 | |
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191 | static const struct { |
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192 | int klass; |
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193 | int tag; |
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194 | int type; |
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195 | } *celem, default_map[] = { |
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196 | { ASN_UNIVERSAL, ASN_BOOLEAN , BER_TYPE_BOOL }, |
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197 | { ASN_UNIVERSAL, ASN_INTEGER , BER_TYPE_INT }, |
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198 | { ASN_UNIVERSAL, ASN_NULL , BER_TYPE_NULL }, |
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199 | { ASN_UNIVERSAL, ASN_OBJECT_IDENTIFIER, BER_TYPE_OID }, |
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200 | { ASN_UNIVERSAL, ASN_RELATIVE_OID , BER_TYPE_RELOID }, |
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201 | { ASN_UNIVERSAL, ASN_REAL , BER_TYPE_REAL }, |
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202 | { ASN_UNIVERSAL, ASN_ENUMERATED , BER_TYPE_INT }, |
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203 | { ASN_UNIVERSAL, ASN_UTF8_STRING , BER_TYPE_UTF8 }, |
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204 | { ASN_UNIVERSAL, ASN_BMP_STRING , BER_TYPE_UCS2 }, |
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205 | { ASN_UNIVERSAL, ASN_UNIVERSAL_STRING , BER_TYPE_UCS4 }, |
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206 | }; |
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207 | |
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208 | for (celem = default_map + sizeof (default_map) / sizeof (default_map [0]); celem-- > default_map; ) |
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209 | profile_set ((profile_type *)sv, celem->klass, celem->tag, celem->type); |
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210 | |
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211 | return sv_bless (newRV_noinc (sv), profile_stash); |
105 | } |
212 | } |
106 | |
213 | |
107 | ///////////////////////////////////////////////////////////////////////////// |
214 | ///////////////////////////////////////////////////////////////////////////// |
108 | // decoder |
215 | // decoder |
109 | |
216 | |
… | |
… | |
142 | |
249 | |
143 | return *cur++; |
250 | return *cur++; |
144 | } |
251 | } |
145 | |
252 | |
146 | // get ber-encoded integer (i.e. pack "w") |
253 | // get ber-encoded integer (i.e. pack "w") |
147 | static U32 |
254 | static UV |
148 | get_w (void) |
255 | get_w (void) |
149 | { |
256 | { |
150 | U32 res = 0; |
257 | UV res = 0; |
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258 | U8 c = get_u8 (); |
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259 | |
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260 | if (expect_false (c == 0x80)) |
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261 | error ("illegal BER padding (X.690 8.1.2.4.2, 8.19.2)"); |
151 | |
262 | |
152 | for (;;) |
263 | for (;;) |
153 | { |
264 | { |
154 | U8 c = get_u8 (); |
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155 | res = (res << 7) | (c & 0x7f); |
265 | res = (res << 7) | (c & 0x7f); |
156 | |
266 | |
157 | if (!(c & 0x80)) |
267 | if (!(c & 0x80)) |
158 | return res; |
268 | return res; |
159 | } |
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160 | } |
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161 | |
269 | |
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270 | c = get_u8 (); |
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271 | } |
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272 | } |
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273 | |
162 | static U32 |
274 | static UV |
163 | get_length (void) |
275 | get_length (void) |
164 | { |
276 | { |
165 | U32 res = get_u8 (); |
277 | UV res = get_u8 (); |
166 | |
278 | |
167 | if (res & 0x80) |
279 | if (res & 0x80) |
168 | { |
280 | { |
169 | int cnt = res & 0x7f; |
281 | int cnt = res & 0x7f; |
170 | res = 0; |
282 | res = 0; |
171 | |
283 | |
172 | switch (cnt) |
284 | switch (cnt) |
173 | { |
285 | { |
174 | case 0: |
286 | case 0: |
175 | error ("indefinite ASN.1 lengths not supported"); |
287 | error ("indefinite ASN.1 lengths not supported"); |
176 | return 0; |
288 | |
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289 | case 0x7f: |
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290 | error ("ASN.1 reserved value in length (X.690 8.1.3.5)"); |
177 | |
291 | |
178 | default: |
292 | default: |
179 | error ("ASN.1 length too long"); |
293 | error ("ASN.1 length too long (only up to 2**64 octets supported)"); |
180 | return 0; |
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181 | |
294 | |
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295 | case 8: res = (res << 8) | get_u8 (); |
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296 | case 7: res = (res << 8) | get_u8 (); |
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297 | case 6: res = (res << 8) | get_u8 (); |
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298 | case 5: res = (res << 8) | get_u8 (); |
182 | case 4: res = (res << 8) | get_u8 (); |
299 | case 4: res = (res << 8) | get_u8 (); |
183 | case 3: res = (res << 8) | get_u8 (); |
300 | case 3: res = (res << 8) | get_u8 (); |
184 | case 2: res = (res << 8) | get_u8 (); |
301 | case 2: res = (res << 8) | get_u8 (); |
185 | case 1: res = (res << 8) | get_u8 (); |
302 | case 1: res = (res << 8) | get_u8 (); |
186 | } |
303 | } |
187 | } |
304 | } |
188 | |
305 | |
189 | return res; |
306 | return res; |
190 | } |
307 | } |
191 | |
308 | |
192 | static U32 |
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193 | get_integer32 (void) |
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194 | { |
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195 | U32 length = get_length (); |
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196 | |
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197 | if (length <= 0) |
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198 | { |
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199 | error ("INTEGER32 length equal to zero"); |
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200 | return 0; |
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201 | } |
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202 | |
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203 | U8 *data = get_n (length); |
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204 | |
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205 | if (length > 5 || (length > 4 && data [0])) |
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206 | { |
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207 | error ("INTEGER32 length too long"); |
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208 | return 0; |
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209 | } |
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210 | |
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211 | U32 res = data [0] & 0x80 ? 0xffffffff : 0; |
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212 | |
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213 | while (length--) |
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214 | res = (res << 8) | *data++; |
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215 | |
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216 | return res; |
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217 | } |
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218 | |
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219 | static SV * |
309 | static SV * |
220 | decode_integer32 (void) |
310 | decode_int (void) |
221 | { |
311 | { |
222 | return newSViv ((I32)get_integer32 ()); |
312 | UV len = get_length (); |
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313 | |
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314 | if (!len) |
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315 | error ("invalid integer length equal to zero (X.690 8.3.1)"); |
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316 | |
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317 | U8 *data = get_n (len); |
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318 | |
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319 | if (expect_false (len > 1)) |
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320 | { |
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321 | U16 mask = (data [0] << 8) | data [1] & 0xff80; |
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322 | |
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323 | if (expect_false (mask == 0xff80 || mask == 0x0000)) |
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324 | error ("illegal padding in integer (X.690 8.3.2)"); |
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325 | } |
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326 | |
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327 | int negative = data [0] & 0x80; |
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328 | |
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329 | UV val = negative ? -1 : 0; // copy signbit to all bits |
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330 | |
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331 | do |
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332 | val = (val << 8) | *data++; |
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333 | while (--len); |
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334 | |
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335 | // the cast to IV relies on implementation-defined behaviour (two's complement cast) |
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336 | // but that's ok, as perl relies on it as well. |
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337 | return negative ? newSViv ((IV)val) : newSVuv (val); |
223 | } |
338 | } |
224 | |
339 | |
225 | static SV * |
340 | static SV * |
226 | decode_unsigned32 (void) |
341 | decode_data (void) |
227 | { |
342 | { |
228 | return newSVuv ((U32)get_integer32 ()); |
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229 | } |
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230 | |
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231 | #if IVSIZE >= 8 |
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232 | |
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233 | static U64TYPE |
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234 | get_integer64 (void) |
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235 | { |
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236 | U32 length = get_length (); |
343 | UV len = get_length (); |
237 | |
344 | return newSVpvn ((char *)get_n (len), len); |
238 | if (length <= 0) |
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239 | { |
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240 | error ("INTEGER64 length equal to zero"); |
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241 | return 0; |
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242 | } |
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243 | |
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244 | U8 *data = get_n (length); |
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245 | |
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246 | if (length > 9 || (length > 8 && data [0])) |
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247 | { |
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248 | error ("INTEGER64 length too long"); |
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249 | return 0; |
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250 | } |
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251 | |
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252 | U64TYPE res = data [0] & 0x80 ? 0xffffffffffffffff : 0; |
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253 | |
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254 | while (length--) |
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255 | res = (res << 8) | *data++; |
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256 | |
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257 | return res; |
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258 | } |
345 | } |
259 | |
346 | |
260 | static SV * |
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261 | decode_integer64 (void) |
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262 | { |
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263 | return newSViv ((I64TYPE)get_integer64 ()); |
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264 | } |
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265 | |
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266 | static SV * |
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267 | decode_unsigned64 (void) |
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268 | { |
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269 | return newSVuv ((U64TYPE)get_integer64 ()); |
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270 | } |
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271 | |
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272 | #endif |
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273 | |
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274 | static SV * |
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275 | decode_octet_string (void) |
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276 | { |
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277 | U32 length = get_length (); |
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278 | U8 *data = get_n (length); |
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279 | return newSVpvn (data, length); |
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280 | } |
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281 | |
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282 | // gelper for decode_object_identifier |
347 | // helper for decode_object_identifier |
283 | static char * |
348 | static char * |
284 | write_uv (char *buf, U32 u) |
349 | write_uv (char *buf, UV u) |
285 | { |
350 | { |
286 | // the one-digit case is absolutely predominant, so this pays off (hopefully) |
351 | // the one-digit case is absolutely predominant, so this pays off (hopefully) |
287 | if (u < 10) |
352 | if (expect_true (u < 10)) |
288 | *buf++ = u + '0'; |
353 | *buf++ = u + '0'; |
289 | else |
354 | else |
290 | { |
355 | { |
|
|
356 | // this *could* be done much faster using branchless fixed-point arithmetics |
291 | char *beg = buf; |
357 | char *beg = buf; |
292 | |
358 | |
293 | do |
359 | do |
294 | { |
360 | { |
295 | *buf++ = u % 10 + '0'; |
361 | *buf++ = u % 10 + '0'; |
296 | u /= 10; |
362 | u /= 10; |
297 | } |
363 | } |
298 | while (u); |
364 | while (u); |
299 | |
365 | |
300 | // reverse digits |
366 | // reverse digits |
301 | for (char *ptr = buf; --ptr != beg; ++beg) |
367 | char *ptr = buf; |
|
|
368 | while (--ptr > beg) |
302 | { |
369 | { |
303 | char c = *ptr; |
370 | char c = *ptr; |
304 | *ptr = *beg; |
371 | *ptr = *beg; |
305 | *beg = c; |
372 | *beg = c; |
|
|
373 | ++beg; |
306 | } |
374 | } |
307 | } |
375 | } |
308 | |
376 | |
309 | return buf; |
377 | return buf; |
310 | } |
378 | } |
311 | |
379 | |
312 | static SV * |
380 | static SV * |
313 | decode_object_identifier (void) |
381 | decode_oid (int relative) |
314 | { |
382 | { |
315 | U32 length = get_length (); |
383 | UV len = get_length (); |
316 | |
384 | |
317 | if (length <= 0) |
385 | if (len <= 0) |
318 | { |
386 | { |
319 | error ("OBJECT IDENTIFIER length equal to zero"); |
387 | error ("OBJECT IDENTIFIER length equal to zero"); |
320 | return &PL_sv_undef; |
388 | return &PL_sv_undef; |
321 | } |
389 | } |
322 | |
390 | |
323 | U8 *end = cur + length; |
391 | U8 *end = cur + len; |
324 | U32 w = get_w (); |
392 | UV w = get_w (); |
325 | |
393 | |
326 | static char oid[MAX_OID_STRLEN]; // must be static |
394 | static char oid[MAX_OID_STRLEN]; // static, becaueds too large for stack |
327 | char *app = oid; |
395 | char *app = oid; |
328 | |
396 | |
|
|
397 | if (relative) |
|
|
398 | app = write_uv (app, w); |
|
|
399 | else if (w < 2 * 40) |
|
|
400 | { |
329 | app = write_uv (app, (U8)w / 40); |
401 | app = write_uv (app, (U8)w / 40); |
330 | *app++ = '.'; |
402 | *app++ = '.'; |
331 | app = write_uv (app, (U8)w % 40); |
403 | app = write_uv (app, (U8)w % 40); |
|
|
404 | } |
|
|
405 | else |
|
|
406 | { |
|
|
407 | app = write_uv (app, 2); |
|
|
408 | *app++ = '.'; |
|
|
409 | app = write_uv (app, w - 2 * 40); |
|
|
410 | } |
332 | |
411 | |
|
|
412 | while (cur < end) |
|
|
413 | { |
333 | // we assume an oid component is never > 64 bytes |
414 | // we assume an oid component is never > 64 digits |
334 | while (cur < end && oid + sizeof (oid) - app > 64) |
415 | if (oid + sizeof (oid) - app < 64) |
335 | { |
416 | croak ("BER_TYPE_OID to long to decode"); |
|
|
417 | |
336 | w = get_w (); |
418 | w = get_w (); |
337 | *app++ = '.'; |
419 | *app++ = '.'; |
338 | app = write_uv (app, w); |
420 | app = write_uv (app, w); |
339 | } |
421 | } |
340 | |
422 | |
341 | return newSVpvn (oid, app - oid); |
423 | return newSVpvn (oid, app - oid); |
342 | } |
424 | } |
343 | |
425 | |
|
|
426 | // TODO: this is unacceptably slow |
344 | static SV * |
427 | static SV * |
|
|
428 | decode_ucs (int chrsize) |
|
|
429 | { |
|
|
430 | SV *res = NEWSV (0, 0); |
|
|
431 | |
|
|
432 | UV len = get_length (); |
|
|
433 | |
|
|
434 | if (len & (chrsize - 1)) |
|
|
435 | croak ("BER_TYPE_UCS has an invalid number of octets (%d)", len); |
|
|
436 | |
|
|
437 | while (len) |
|
|
438 | { |
|
|
439 | U8 b1 = get_u8 (); |
|
|
440 | U8 b2 = get_u8 (); |
|
|
441 | U32 chr = (b1 << 8) | b2; |
|
|
442 | |
|
|
443 | if (chrsize == 4) |
|
|
444 | { |
|
|
445 | U8 b3 = get_u8 (); |
|
|
446 | U8 b4 = get_u8 (); |
|
|
447 | chr = (chr << 16) | (b3 << 8) | b4; |
|
|
448 | } |
|
|
449 | |
|
|
450 | U8 uchr [UTF8_MAXBYTES]; |
|
|
451 | int uclen = uvuni_to_utf8 (uchr, chr) - uchr; |
|
|
452 | |
|
|
453 | sv_catpvn (res, (const char *)uchr, uclen); |
|
|
454 | len -= chrsize; |
|
|
455 | } |
|
|
456 | |
|
|
457 | SvUTF8_on (res); |
|
|
458 | |
|
|
459 | return res; |
|
|
460 | } |
|
|
461 | |
|
|
462 | static SV * |
345 | decode_ber () |
463 | decode_ber (void) |
346 | { |
464 | { |
347 | int identifier = get_u8 (); |
465 | int identifier = get_u8 (); |
348 | |
466 | |
349 | SV *res; |
467 | SV *res; |
350 | |
468 | |
351 | int constructed = identifier & ASN_CONSTRUCTED; |
469 | int constructed = identifier & ASN_CONSTRUCTED; |
352 | int klass = identifier & ASN_CLASS_MASK; |
470 | int klass = (identifier & ASN_CLASS_MASK) >> ASN_CLASS_SHIFT; |
353 | int tag = identifier & ASN_TAG_MASK; |
471 | int tag = identifier & ASN_TAG_MASK; |
354 | |
472 | |
355 | if (tag == ASN_TAG_BER) |
473 | if (tag == ASN_TAG_BER) |
356 | tag = get_w (); |
474 | tag = get_w (); |
357 | |
475 | |
358 | if (tag == ASN_TAG_BER) |
|
|
359 | tag = get_w (); |
|
|
360 | |
|
|
361 | if (constructed) |
476 | if (constructed) |
362 | { |
477 | { |
363 | U32 len = get_length (); |
478 | UV len = get_length (); |
364 | U32 seqend = (cur - buf) + len; |
479 | UV seqend = (cur - buf) + len; |
365 | AV *av = (AV *)sv_2mortal ((SV *)newAV ()); |
480 | AV *av = (AV *)sv_2mortal ((SV *)newAV ()); |
366 | |
481 | |
367 | while (cur < buf + seqend) |
482 | while (cur < buf + seqend) |
368 | av_push (av, decode_ber ()); |
483 | av_push (av, decode_ber ()); |
369 | |
484 | |
370 | if (cur > buf + seqend) |
485 | if (cur > buf + seqend) |
371 | croak ("constructed type %02x overflow (%x %x)\n", identifier, cur - buf, seqend); |
486 | croak ("constructed type %02x length overflow (0x%x 0x%x)\n", identifier, (int)(cur - buf), (int)seqend); |
372 | |
487 | |
373 | res = newRV_inc ((SV *)av); |
488 | res = newRV_inc ((SV *)av); |
374 | } |
489 | } |
375 | else |
490 | else |
376 | switch (identifier) |
491 | switch (profile_lookup (cur_profile, klass, tag)) |
377 | { |
492 | { |
378 | case ASN_NULL: |
493 | case BER_TYPE_NULL: |
|
|
494 | { |
|
|
495 | UV len = get_length (); |
|
|
496 | |
|
|
497 | if (len) |
|
|
498 | croak ("BER_TYPE_NULL value with non-zero length %d encountered (X.690 8.8.2)", len); |
|
|
499 | |
379 | res = &PL_sv_undef; |
500 | res = &PL_sv_undef; |
|
|
501 | } |
380 | break; |
502 | break; |
381 | |
503 | |
382 | case ASN_OBJECT_IDENTIFIER: |
504 | case BER_TYPE_BOOL: |
|
|
505 | { |
|
|
506 | UV len = get_length (); |
|
|
507 | |
|
|
508 | if (len != 1) |
|
|
509 | croak ("BER_TYPE_BOOLEAN value with invalid length %d encountered (X.690 8.2.1)", len); |
|
|
510 | |
|
|
511 | res = newSVcacheint (!!get_u8 ()); |
|
|
512 | } |
|
|
513 | break; |
|
|
514 | |
|
|
515 | case BER_TYPE_OID: |
383 | res = decode_object_identifier (); |
516 | res = decode_oid (0); |
384 | break; |
517 | break; |
385 | |
518 | |
386 | case ASN_INTEGER32: |
519 | case BER_TYPE_RELOID: |
|
|
520 | res = decode_oid (1); |
|
|
521 | break; |
|
|
522 | |
|
|
523 | case BER_TYPE_INT: |
387 | res = decode_integer32 (); |
524 | res = decode_int (); |
388 | break; |
525 | break; |
389 | |
526 | |
390 | case ASN_APPLICATION | SNMP_UNSIGNED32: |
527 | case BER_TYPE_UTF8: |
391 | case ASN_APPLICATION | SNMP_COUNTER32: |
528 | res = decode_data (); |
392 | case ASN_APPLICATION | SNMP_TIMETICKS: |
529 | SvUTF8_on (res); |
|
|
530 | break; |
|
|
531 | |
|
|
532 | case BER_TYPE_BYTES: |
|
|
533 | res = decode_data (); |
|
|
534 | break; |
|
|
535 | |
|
|
536 | case BER_TYPE_IPADDRESS: |
|
|
537 | { |
|
|
538 | UV len = get_length (); |
|
|
539 | |
|
|
540 | if (len != 4) |
|
|
541 | croak ("BER_TYPE_IPADDRESS type with invalid length %d encountered (RFC 2578 7.1.5)", len); |
|
|
542 | |
|
|
543 | U8 c1 = get_u8 (); |
|
|
544 | U8 c2 = get_u8 (); |
|
|
545 | U8 c3 = get_u8 (); |
|
|
546 | U8 c4 = get_u8 (); |
|
|
547 | |
|
|
548 | res = newSVpvf ("%d.%d.%d.%d", c1, c2, c3, c4); |
|
|
549 | } |
|
|
550 | break; |
|
|
551 | |
|
|
552 | case BER_TYPE_UCS2: |
|
|
553 | res = decode_ucs (2); |
|
|
554 | break; |
|
|
555 | |
|
|
556 | case BER_TYPE_UCS4: |
393 | res = decode_unsigned32 (); |
557 | res = decode_ucs (4); |
394 | break; |
558 | break; |
395 | |
559 | |
396 | #if 0 // handled by default case |
560 | case BER_TYPE_REAL: |
397 | case ASN_OCTET_STRING: |
561 | case BER_TYPE_CROAK: |
398 | case ASN_APPLICATION | ASN_IPADDRESS: |
|
|
399 | case ASN_APPLICATION | ASN_OPAQUE: |
|
|
400 | res = decode_octet_string (); |
|
|
401 | break; |
|
|
402 | #endif |
|
|
403 | |
|
|
404 | case ASN_APPLICATION | SNMP_COUNTER64: |
|
|
405 | res = decode_integer64 (); |
|
|
406 | break; |
|
|
407 | |
|
|
408 | default: |
562 | default: |
409 | res = decode_octet_string (); |
563 | croak ("unconfigured/unsupported class/tag %d/%d", klass, tag); |
410 | break; |
|
|
411 | } |
564 | } |
412 | |
565 | |
413 | AV *av = newAV (); |
566 | AV *av = newAV (); |
414 | av_fill (av, BER_ARRAYSIZE - 1); |
567 | av_fill (av, BER_ARRAYSIZE - 1); |
415 | AvARRAY (av)[BER_CLASS ] = newSVcacheint (klass >> ASN_CLASS_SHIFT); |
568 | AvARRAY (av)[BER_CLASS] = newSVcacheint (klass); |
416 | AvARRAY (av)[BER_TAG ] = newSVcacheint (tag); |
569 | AvARRAY (av)[BER_TAG ] = newSVcacheint (tag); |
417 | AvARRAY (av)[BER_CONSTRUCTED] = newSVcacheint (constructed ? 1 : 0); |
570 | AvARRAY (av)[BER_FLAGS] = newSVcacheint (constructed ? 1 : 0); |
418 | AvARRAY (av)[BER_DATA ] = res; |
571 | AvARRAY (av)[BER_DATA ] = res; |
419 | |
572 | |
420 | return newRV_noinc ((SV *)av); |
573 | return newRV_noinc ((SV *)av); |
421 | } |
574 | } |
422 | |
575 | |
423 | ///////////////////////////////////////////////////////////////////////////// |
576 | ///////////////////////////////////////////////////////////////////////////// |
… | |
… | |
428 | strlen_sum (STRLEN l1, STRLEN l2) |
581 | strlen_sum (STRLEN l1, STRLEN l2) |
429 | { |
582 | { |
430 | size_t sum = l1 + l2; |
583 | size_t sum = l1 + l2; |
431 | |
584 | |
432 | if (sum < (size_t)l2 || sum != (size_t)(STRLEN)sum) |
585 | if (sum < (size_t)l2 || sum != (size_t)(STRLEN)sum) |
433 | croak ("JSON::XS: string size overflow"); |
586 | croak ("Convert::BER::XS: string size overflow"); |
434 | |
587 | |
435 | return sum; |
588 | return sum; |
436 | } |
589 | } |
437 | |
590 | |
438 | static void |
591 | static void |
439 | set_buf (SV *sv) |
592 | set_buf (SV *sv) |
440 | { |
593 | { |
441 | STRLEN len; |
594 | STRLEN len; |
442 | buf_sv = sv; |
595 | buf_sv = sv; |
443 | buf = SvPVbyte (buf_sv, len); |
596 | buf = (U8 *)SvPVbyte (buf_sv, len); |
444 | cur = buf; |
597 | cur = buf; |
445 | end = buf + len; |
598 | end = buf + len; |
446 | } |
599 | } |
447 | |
600 | |
448 | /* similar to SvGROW, but somewhat safer and guarantees exponential realloc strategy */ |
601 | /* similar to SvGROW, but somewhat safer and guarantees exponential realloc strategy */ |
… | |
… | |
462 | need (STRLEN len) |
615 | need (STRLEN len) |
463 | { |
616 | { |
464 | if (expect_false ((uintptr_t)(end - cur) < len)) |
617 | if (expect_false ((uintptr_t)(end - cur) < len)) |
465 | { |
618 | { |
466 | STRLEN pos = cur - buf; |
619 | STRLEN pos = cur - buf; |
467 | buf = my_sv_grow (buf_sv, pos, len); |
620 | buf = (U8 *)my_sv_grow (buf_sv, pos, len); |
468 | cur = buf + pos; |
621 | cur = buf + pos; |
469 | end = buf + SvLEN (buf_sv) - 1; |
622 | end = buf + SvLEN (buf_sv) - 1; |
470 | } |
623 | } |
471 | } |
624 | } |
472 | |
625 | |
… | |
… | |
476 | need (1); |
629 | need (1); |
477 | *cur++ = val; |
630 | *cur++ = val; |
478 | } |
631 | } |
479 | |
632 | |
480 | static void |
633 | static void |
481 | put_w_nocheck (U32 val) |
634 | put_w_nocheck (UV val) |
482 | { |
635 | { |
|
|
636 | #if UVSIZE > 4 |
|
|
637 | *cur = (val >> 7 * 9) | 0x80; cur += val >= ((UV)1 << (7 * 9)); |
|
|
638 | *cur = (val >> 7 * 8) | 0x80; cur += val >= ((UV)1 << (7 * 8)); |
|
|
639 | *cur = (val >> 7 * 7) | 0x80; cur += val >= ((UV)1 << (7 * 7)); |
|
|
640 | *cur = (val >> 7 * 6) | 0x80; cur += val >= ((UV)1 << (7 * 6)); |
|
|
641 | *cur = (val >> 7 * 5) | 0x80; cur += val >= ((UV)1 << (7 * 5)); |
|
|
642 | #endif |
483 | *cur = (val >> 7 * 4) | 0x80; cur += val >= (1 << (7 * 4)); |
643 | *cur = (val >> 7 * 4) | 0x80; cur += val >= ((UV)1 << (7 * 4)); |
484 | *cur = (val >> 7 * 3) | 0x80; cur += val >= (1 << (7 * 3)); |
644 | *cur = (val >> 7 * 3) | 0x80; cur += val >= ((UV)1 << (7 * 3)); |
485 | *cur = (val >> 7 * 2) | 0x80; cur += val >= (1 << (7 * 2)); |
645 | *cur = (val >> 7 * 2) | 0x80; cur += val >= ((UV)1 << (7 * 2)); |
486 | *cur = (val >> 7 * 1) | 0x80; cur += val >= (1 << (7 * 1)); |
646 | *cur = (val >> 7 * 1) | 0x80; cur += val >= ((UV)1 << (7 * 1)); |
487 | *cur = val & 0x7f; cur += 1; |
647 | *cur = val & 0x7f; cur += 1; |
488 | } |
648 | } |
489 | |
649 | |
490 | static void |
650 | static void |
491 | put_w (U32 val) |
651 | put_w (UV val) |
492 | { |
652 | { |
493 | need (5); // we only handle up to 5 bytes |
653 | need (5); // we only handle up to 5 bytes |
494 | |
654 | |
495 | put_w_nocheck (val); |
655 | put_w_nocheck (val); |
496 | } |
656 | } |
497 | |
657 | |
498 | static U8 * |
658 | static U8 * |
499 | put_length_at (U32 val, U8 *cur) |
659 | put_length_at (UV val, U8 *cur) |
500 | { |
660 | { |
501 | if (val < 0x7fU) |
661 | if (val < 0x7fU) |
502 | *cur++ = val; |
662 | *cur++ = val; |
503 | else |
663 | else |
504 | { |
664 | { |
505 | U8 *lenb = cur++; |
665 | U8 *lenb = cur++; |
506 | |
666 | |
|
|
667 | #if UVSIZE > 4 |
|
|
668 | *cur = val >> 56; cur += *cur > 0; |
|
|
669 | *cur = val >> 48; cur += *cur > 0; |
|
|
670 | *cur = val >> 40; cur += *cur > 0; |
|
|
671 | *cur = val >> 32; cur += *cur > 0; |
|
|
672 | #endif |
507 | *cur = val >> 24; cur += *cur > 0; |
673 | *cur = val >> 24; cur += *cur > 0; |
508 | *cur = val >> 16; cur += *cur > 0; |
674 | *cur = val >> 16; cur += *cur > 0; |
509 | *cur = val >> 8; cur += *cur > 0; |
675 | *cur = val >> 8; cur += *cur > 0; |
510 | *cur = val ; cur += 1; |
676 | *cur = val ; cur += 1; |
511 | |
677 | |
… | |
… | |
514 | |
680 | |
515 | return cur; |
681 | return cur; |
516 | } |
682 | } |
517 | |
683 | |
518 | static void |
684 | static void |
519 | put_length (U32 val) |
685 | put_length (UV val) |
520 | { |
686 | { |
521 | need (5); |
687 | need (5 + val); |
522 | cur = put_length_at (val, cur); |
688 | cur = put_length_at (val, cur); |
523 | } |
689 | } |
524 | |
690 | |
525 | // return how many bytes the encoded length requires |
691 | // return how many bytes the encoded length requires |
526 | static int length_length (U32 val) |
692 | static int length_length (UV val) |
527 | { |
693 | { |
528 | return val < 0x7fU |
694 | return val < 0x7fU |
529 | ? 1 |
695 | ? 1 |
530 | : 2 + (val > 0xffU) + (val > 0xffffU) + (val > 0xffffffU); |
696 | : 2 |
|
|
697 | + (val > 0xffU) |
|
|
698 | + (val > 0xffffU) |
|
|
699 | + (val > 0xffffffU) |
|
|
700 | #if UVSIZE > 4 |
|
|
701 | + (val > 0xffffffffU) |
|
|
702 | + (val > 0xffffffffffU) |
|
|
703 | + (val > 0xffffffffffffU) |
|
|
704 | + (val > 0xffffffffffffffU) |
|
|
705 | #endif |
|
|
706 | ; |
531 | } |
707 | } |
532 | |
708 | |
533 | static void |
709 | static void |
534 | encode_octet_string (SV *sv) |
710 | encode_data (const char *ptr, STRLEN len) |
535 | { |
711 | { |
536 | STRLEN len; |
|
|
537 | char *ptr = SvPVbyte (sv, len); |
|
|
538 | |
|
|
539 | put_length (len); |
712 | put_length (len); |
540 | need (len); |
|
|
541 | memcpy (cur, ptr, len); |
713 | memcpy (cur, ptr, len); |
542 | cur += len; |
714 | cur += len; |
543 | } |
715 | } |
544 | |
716 | |
545 | static void |
717 | static void |
546 | encode_integer32 (IV iv) |
718 | encode_uv (UV uv) |
547 | { |
719 | { |
548 | need (5); |
720 | } |
|
|
721 | |
|
|
722 | static void |
|
|
723 | encode_int (SV *sv) |
|
|
724 | { |
|
|
725 | need (8 + 1 + 1); // 64 bit + length + extra 0 |
|
|
726 | |
|
|
727 | if (expect_false (!SvIOK (sv))) |
|
|
728 | sv_2iv_flags (sv, 0); |
549 | |
729 | |
550 | U8 *lenb = cur++; |
730 | U8 *lenb = cur++; |
551 | |
731 | |
552 | if (iv < 0) |
732 | if (SvIOK_notUV (sv)) |
553 | { |
733 | { |
|
|
734 | IV iv = SvIVX (sv); |
|
|
735 | |
|
|
736 | if (expect_false (iv < 0)) |
|
|
737 | { |
554 | // get two's complement bit pattern - works even on hypthetical non-2c machines |
738 | // get two's complement bit pattern - works even on hypothetical non-2c machines |
555 | U32 uv = iv; |
739 | UV uv = iv; |
556 | |
740 | |
|
|
741 | #if UVSIZE > 4 |
|
|
742 | *cur = uv >> 56; cur += !!(~uv & 0xff80000000000000U); |
|
|
743 | *cur = uv >> 48; cur += !!(~uv & 0xffff800000000000U); |
|
|
744 | *cur = uv >> 40; cur += !!(~uv & 0xffffff8000000000U); |
|
|
745 | *cur = uv >> 32; cur += !!(~uv & 0xffffffff80000000U); |
|
|
746 | #endif |
557 | *cur = uv >> 24; cur += !!(~uv & 0xff800000U); |
747 | *cur = uv >> 24; cur += !!(~uv & 0xffffffffff800000U); |
558 | *cur = uv >> 16; cur += !!(~uv & 0xffff8000U); |
748 | *cur = uv >> 16; cur += !!(~uv & 0xffffffffffff8000U); |
559 | *cur = uv >> 8; cur += !!(~uv & 0xffffff80U); |
749 | *cur = uv >> 8; cur += !!(~uv & 0xffffffffffffff80U); |
560 | *cur = uv ; cur += 1; |
750 | *cur = uv ; cur += 1; |
561 | } |
751 | |
562 | else |
752 | *lenb = cur - lenb - 1; |
|
|
753 | |
|
|
754 | return; |
|
|
755 | } |
563 | { |
756 | } |
564 | *cur = iv >> 24; cur += *cur > 0; |
757 | |
565 | *cur = iv >> 16; cur += *cur > 0; |
758 | UV uv = SvUV (sv); |
566 | *cur = iv >> 8; cur += *cur > 0; |
759 | |
|
|
760 | // prepend an extra 0 if the high bit is 1 |
|
|
761 | *cur = 0; cur += !!(uv & ((UV)1 << (UVSIZE * 8 - 1))); |
|
|
762 | |
|
|
763 | #if UVSIZE > 4 |
|
|
764 | *cur = uv >> 56; cur += !!(uv & 0xff80000000000000U); |
|
|
765 | *cur = uv >> 48; cur += !!(uv & 0xffff800000000000U); |
|
|
766 | *cur = uv >> 40; cur += !!(uv & 0xffffff8000000000U); |
|
|
767 | *cur = uv >> 32; cur += !!(uv & 0xffffffff80000000U); |
|
|
768 | #endif |
|
|
769 | *cur = uv >> 24; cur += !!(uv & 0xffffffffff800000U); |
|
|
770 | *cur = uv >> 16; cur += !!(uv & 0xffffffffffff8000U); |
|
|
771 | *cur = uv >> 8; cur += !!(uv & 0xffffffffffffff80U); |
567 | *cur = iv ; cur += 1; |
772 | *cur = uv ; cur += 1; |
568 | } |
|
|
569 | |
773 | |
570 | *lenb = cur - lenb - 1; |
774 | *lenb = cur - lenb - 1; |
571 | } |
775 | } |
572 | |
776 | |
573 | static void |
|
|
574 | encode_unsigned64 (U64TYPE uv) |
|
|
575 | { |
|
|
576 | need (9); |
|
|
577 | |
|
|
578 | U8 *lenb = cur++; |
|
|
579 | |
|
|
580 | *cur = uv >> 56; cur += *cur > 0; |
|
|
581 | *cur = uv >> 48; cur += *cur > 0; |
|
|
582 | *cur = uv >> 40; cur += *cur > 0; |
|
|
583 | *cur = uv >> 32; cur += *cur > 0; |
|
|
584 | *cur = uv >> 24; cur += *cur > 0; |
|
|
585 | *cur = uv >> 16; cur += *cur > 0; |
|
|
586 | *cur = uv >> 8; cur += *cur > 0; |
|
|
587 | *cur = uv ; cur += 1; |
|
|
588 | |
|
|
589 | *lenb = cur - lenb - 1; |
|
|
590 | } |
|
|
591 | |
|
|
592 | // we don't know the length yet, so we optimistically |
777 | // we don't know the length yet, so we optimistically |
593 | // assume the length will need one octet later. if that |
778 | // assume the length will need one octet later. If that |
594 | // turns out to be wrong, we memove as needed. |
779 | // turns out to be wrong, we memmove as needed. |
595 | // mark the beginning |
780 | // mark the beginning |
596 | static STRLEN |
781 | static STRLEN |
597 | len_fixup_mark () |
782 | len_fixup_mark (void) |
598 | { |
783 | { |
599 | return cur++ - buf; |
784 | return cur++ - buf; |
600 | } |
785 | } |
601 | |
786 | |
602 | // patch up the length |
787 | // patch up the length |
… | |
… | |
631 | |
816 | |
632 | return str; |
817 | return str; |
633 | } |
818 | } |
634 | |
819 | |
635 | static void |
820 | static void |
636 | encode_object_identifier (SV *oid) |
821 | encode_oid (SV *oid, int relative) |
637 | { |
822 | { |
638 | STRLEN slen; |
823 | STRLEN len; |
639 | char *ptr = SvPV (oid, slen); // utf8 vs. bytes does not matter |
824 | char *ptr = SvPV (oid, len); // utf8 vs. bytes does not matter |
640 | |
825 | |
641 | // we need at most as many octets as the string form |
826 | // we need at most as many octets as the string form |
642 | need (slen + 1); |
827 | need (len + 1); |
643 | STRLEN mark = len_fixup_mark (); |
828 | STRLEN mark = len_fixup_mark (); |
644 | |
829 | |
645 | UV w1, w2; |
830 | UV w1, w2; |
646 | |
831 | |
|
|
832 | if (!relative) |
|
|
833 | { |
647 | ptr = read_uv (ptr, &w1); |
834 | ptr = read_uv (ptr, &w1); |
648 | ptr = read_uv (ptr, &w2); |
835 | ptr = read_uv (ptr, &w2); |
649 | |
836 | |
650 | put_w_nocheck (w1 * 40 + w2); |
837 | put_w_nocheck (w1 * 40 + w2); |
|
|
838 | } |
651 | |
839 | |
652 | while (*ptr) |
840 | while (*ptr) |
653 | { |
841 | { |
654 | ptr = read_uv (ptr, &w1); |
842 | ptr = read_uv (ptr, &w1); |
655 | put_w_nocheck (w1); |
843 | put_w_nocheck (w1); |
656 | } |
844 | } |
657 | |
845 | |
658 | len_fixup (mark); |
846 | len_fixup (mark); |
659 | } |
847 | } |
660 | |
848 | |
|
|
849 | // check whether an SV is a BER tuple and returns its AV * |
|
|
850 | static AV * |
|
|
851 | ber_tuple (SV *tuple) |
|
|
852 | { |
|
|
853 | SV *rv; |
|
|
854 | |
|
|
855 | if (expect_false (!SvROK (tuple) || SvTYPE ((rv = SvRV (tuple))) != SVt_PVAV)) |
|
|
856 | croak ("BER tuple must be array-reference"); |
|
|
857 | |
|
|
858 | if (expect_false (SvRMAGICAL (rv))) |
|
|
859 | croak ("BER tuple must not be tied"); |
|
|
860 | |
|
|
861 | if (expect_false (AvFILL ((AV *)rv) != BER_ARRAYSIZE - 1)) |
|
|
862 | croak ("BER tuple must contain exactly %d elements, not %d", BER_ARRAYSIZE, AvFILL ((AV *)rv) + 1); |
|
|
863 | |
|
|
864 | return (AV *)rv; |
|
|
865 | } |
|
|
866 | |
|
|
867 | static void |
|
|
868 | encode_ucs (SV *data, int chrsize) |
|
|
869 | { |
|
|
870 | STRLEN uchars = sv_len_utf8 (data); |
|
|
871 | STRLEN len;; |
|
|
872 | char *ptr = SvPVutf8 (data, len); |
|
|
873 | |
|
|
874 | put_length (uchars * chrsize); |
|
|
875 | |
|
|
876 | while (uchars--) |
|
|
877 | { |
|
|
878 | STRLEN uclen; |
|
|
879 | UV uchr = utf8_to_uvchr_buf ((U8 *)ptr, (U8 *)ptr + len, &uclen); |
|
|
880 | |
|
|
881 | ptr += uclen; |
|
|
882 | len -= uclen; |
|
|
883 | |
|
|
884 | if (chrsize == 4) |
|
|
885 | { |
|
|
886 | *cur++ = uchr >> 24; |
|
|
887 | *cur++ = uchr >> 16; |
|
|
888 | } |
|
|
889 | |
|
|
890 | *cur++ = uchr >> 8; |
|
|
891 | *cur++ = uchr; |
|
|
892 | } |
|
|
893 | } |
661 | static void |
894 | static void |
662 | encode_ber (SV *tuple) |
895 | encode_ber (SV *tuple) |
663 | { |
896 | { |
664 | if (expect_false (!SvROK (tuple) || SvTYPE (SvRV (tuple)) != SVt_PVAV)) |
897 | AV *av = ber_tuple (tuple); |
665 | croak ("BER tuple must be array-reference"); |
|
|
666 | |
|
|
667 | AV *av = (AV *)SvRV (tuple); |
|
|
668 | |
|
|
669 | if (expect_false (SvRMAGICAL (av))) |
|
|
670 | croak ("BER tuple must not be tied"); |
|
|
671 | |
|
|
672 | if (expect_false (AvFILL (av) != BER_ARRAYSIZE - 1)) |
|
|
673 | croak ("BER tuple must contain exactly %d elements, not %d", BER_ARRAYSIZE, AvFILL (av) + 1); |
|
|
674 | |
898 | |
675 | int klass = SvIV (AvARRAY (av)[BER_CLASS]); |
899 | int klass = SvIV (AvARRAY (av)[BER_CLASS]); |
676 | int tag = SvIV (AvARRAY (av)[BER_TAG]); |
900 | int tag = SvIV (AvARRAY (av)[BER_TAG]); |
677 | int constructed = SvIV (AvARRAY (av)[BER_CONSTRUCTED]) ? ASN_CONSTRUCTED : 0; |
901 | int constructed = SvIV (AvARRAY (av)[BER_FLAGS]) & 1 ? ASN_CONSTRUCTED : 0; |
678 | SV *data = AvARRAY (av)[BER_DATA]; |
902 | SV *data = AvARRAY (av)[BER_DATA]; |
679 | |
903 | |
680 | int identifier = (klass << ASN_CLASS_SHIFT) | constructed; |
904 | int identifier = (klass << ASN_CLASS_SHIFT) | constructed; |
681 | |
905 | |
682 | if (expect_false (tag >= ASN_TAG_BER)) |
906 | if (expect_false (tag >= ASN_TAG_BER)) |
… | |
… | |
701 | int fill = AvFILL (av); |
925 | int fill = AvFILL (av); |
702 | |
926 | |
703 | if (expect_false (SvRMAGICAL (av))) |
927 | if (expect_false (SvRMAGICAL (av))) |
704 | croak ("BER constructed data must not be tied"); |
928 | croak ("BER constructed data must not be tied"); |
705 | |
929 | |
|
|
930 | int i; |
706 | for (int i = 0; i <= fill; ++i) |
931 | for (i = 0; i <= fill; ++i) |
707 | encode_ber (AvARRAY (av)[i]); |
932 | encode_ber (AvARRAY (av)[i]); |
708 | |
933 | |
709 | len_fixup (mark); |
934 | len_fixup (mark); |
710 | } |
935 | } |
711 | else |
936 | else |
712 | switch (identifier | tag) |
937 | switch (profile_lookup (cur_profile, klass, tag)) |
713 | { |
938 | { |
714 | case ASN_NULL: |
939 | case BER_TYPE_NULL: |
715 | put_length (0); |
940 | put_length (0); |
716 | break; |
941 | break; |
717 | |
942 | |
718 | case ASN_OBJECT_IDENTIFIER: |
943 | case BER_TYPE_BOOL: |
|
|
944 | put_length (1); |
|
|
945 | *cur++ = SvTRUE (data) ? 0xff : 0x00; // 0xff = DER/CER |
|
|
946 | break; |
|
|
947 | |
|
|
948 | case BER_TYPE_OID: |
719 | encode_object_identifier (data); |
949 | encode_oid (data, 0); |
720 | break; |
950 | break; |
721 | |
951 | |
722 | case ASN_INTEGER32: |
952 | case BER_TYPE_RELOID: |
|
|
953 | encode_oid (data, 1); |
|
|
954 | break; |
|
|
955 | |
|
|
956 | case BER_TYPE_INT: |
723 | encode_integer32 (SvIV (data)); |
957 | encode_int (data); |
724 | break; |
958 | break; |
725 | |
959 | |
726 | case ASN_APPLICATION | SNMP_UNSIGNED32: |
960 | case BER_TYPE_BYTES: |
727 | case ASN_APPLICATION | SNMP_COUNTER32: |
961 | { |
728 | case ASN_APPLICATION | SNMP_TIMETICKS: |
962 | STRLEN len; |
729 | case ASN_APPLICATION | SNMP_COUNTER64: |
963 | const char *ptr = SvPVbyte (data, len); |
730 | encode_unsigned64 (SvUV (data)); |
964 | encode_data (ptr, len); |
|
|
965 | } |
731 | break; |
966 | break; |
732 | |
967 | |
|
|
968 | case BER_TYPE_UTF8: |
|
|
969 | { |
|
|
970 | STRLEN len; |
|
|
971 | const char *ptr = SvPVutf8 (data, len); |
|
|
972 | encode_data (ptr, len); |
|
|
973 | } |
|
|
974 | break; |
|
|
975 | |
|
|
976 | case BER_TYPE_IPADDRESS: |
|
|
977 | { |
|
|
978 | U8 ip[4]; |
|
|
979 | sscanf (SvPV_nolen (data), "%hhu.%hhu.%hhu.%hhu", ip + 0, ip + 1, ip + 2, ip + 3); |
|
|
980 | encode_data ((const char *)ip, sizeof (ip)); |
|
|
981 | } |
|
|
982 | break; |
|
|
983 | |
|
|
984 | case BER_TYPE_UCS2: |
|
|
985 | encode_ucs (data, 2); |
|
|
986 | break; |
|
|
987 | |
|
|
988 | case BER_TYPE_UCS4: |
|
|
989 | encode_ucs (data, 4); |
|
|
990 | break; |
|
|
991 | |
|
|
992 | case BER_TYPE_REAL: |
|
|
993 | case BER_TYPE_CROAK: |
733 | default: |
994 | default: |
734 | encode_octet_string (data); |
995 | croak ("unconfigured/unsupported class/tag %d/%d", klass, tag); |
735 | break; |
|
|
736 | } |
996 | } |
737 | |
997 | |
738 | } |
998 | } |
739 | |
999 | |
740 | ///////////////////////////////////////////////////////////////////////////// |
1000 | ///////////////////////////////////////////////////////////////////////////// |
… | |
… | |
744 | PROTOTYPES: ENABLE |
1004 | PROTOTYPES: ENABLE |
745 | |
1005 | |
746 | BOOT: |
1006 | BOOT: |
747 | { |
1007 | { |
748 | HV *stash = gv_stashpv ("Convert::BER::XS", 1); |
1008 | HV *stash = gv_stashpv ("Convert::BER::XS", 1); |
|
|
1009 | |
|
|
1010 | profile_stash = gv_stashpv ("Convert::BER::XS::Profile", 1); |
749 | |
1011 | |
750 | static const struct { |
1012 | static const struct { |
751 | const char *name; |
1013 | const char *name; |
752 | IV iv; |
1014 | IV iv; |
753 | } *civ, const_iv[] = { |
1015 | } *civ, const_iv[] = { |
754 | { "ASN_BOOLEAN", ASN_BOOLEAN }, |
1016 | #define const_iv(name) { # name, name }, |
755 | { "ASN_INTEGER32", ASN_INTEGER32 }, |
1017 | const_iv (ASN_BOOLEAN) |
756 | { "ASN_BIT_STRING", ASN_BIT_STRING }, |
1018 | const_iv (ASN_INTEGER) |
757 | { "ASN_OCTET_STRING", ASN_OCTET_STRING }, |
1019 | const_iv (ASN_BIT_STRING) |
758 | { "ASN_NULL", ASN_NULL }, |
1020 | const_iv (ASN_OCTET_STRING) |
759 | { "ASN_OBJECT_IDENTIFIER", ASN_OBJECT_IDENTIFIER }, |
1021 | const_iv (ASN_NULL) |
760 | { "ASN_TAG_BER", ASN_TAG_BER }, |
1022 | const_iv (ASN_OBJECT_IDENTIFIER) |
761 | { "ASN_TAG_MASK", ASN_TAG_MASK }, |
1023 | const_iv (ASN_OBJECT_DESCRIPTOR) |
762 | { "ASN_CONSTRUCTED", ASN_CONSTRUCTED }, |
1024 | const_iv (ASN_OID) |
763 | { "ASN_UNIVERSAL", ASN_UNIVERSAL >> ASN_CLASS_SHIFT }, |
1025 | const_iv (ASN_EXTERNAL) |
764 | { "ASN_APPLICATION", ASN_APPLICATION >> ASN_CLASS_SHIFT }, |
1026 | const_iv (ASN_REAL) |
765 | { "ASN_CONTEXT", ASN_CONTEXT >> ASN_CLASS_SHIFT }, |
1027 | const_iv (ASN_SEQUENCE) |
766 | { "ASN_PRIVATE", ASN_PRIVATE >> ASN_CLASS_SHIFT }, |
1028 | const_iv (ASN_ENUMERATED) |
767 | { "ASN_CLASS_MASK", ASN_CLASS_MASK }, |
1029 | const_iv (ASN_EMBEDDED_PDV) |
768 | { "ASN_CLASS_SHIFT", ASN_CLASS_SHIFT }, |
1030 | const_iv (ASN_UTF8_STRING) |
769 | { "ASN_SEQUENCE", ASN_SEQUENCE }, |
1031 | const_iv (ASN_RELATIVE_OID) |
770 | { "SNMP_IPADDRESS", SNMP_IPADDRESS }, |
1032 | const_iv (ASN_SET) |
771 | { "SNMP_COUNTER32", SNMP_COUNTER32 }, |
1033 | const_iv (ASN_NUMERIC_STRING) |
772 | { "SNMP_UNSIGNED32", SNMP_UNSIGNED32 }, |
1034 | const_iv (ASN_PRINTABLE_STRING) |
773 | { "SNMP_TIMETICKS", SNMP_TIMETICKS }, |
1035 | const_iv (ASN_TELETEX_STRING) |
774 | { "SNMP_OPAQUE", SNMP_OPAQUE }, |
1036 | const_iv (ASN_T61_STRING) |
775 | { "SNMP_COUNTER64", SNMP_COUNTER64 }, |
1037 | const_iv (ASN_VIDEOTEX_STRING) |
|
|
1038 | const_iv (ASN_IA5_STRING) |
|
|
1039 | const_iv (ASN_ASCII_STRING) |
|
|
1040 | const_iv (ASN_UTC_TIME) |
|
|
1041 | const_iv (ASN_GENERALIZED_TIME) |
|
|
1042 | const_iv (ASN_GRAPHIC_STRING) |
|
|
1043 | const_iv (ASN_VISIBLE_STRING) |
|
|
1044 | const_iv (ASN_ISO646_STRING) |
|
|
1045 | const_iv (ASN_GENERAL_STRING) |
|
|
1046 | const_iv (ASN_UNIVERSAL_STRING) |
|
|
1047 | const_iv (ASN_CHARACTER_STRING) |
|
|
1048 | const_iv (ASN_BMP_STRING) |
776 | |
1049 | |
777 | { "BER_CLASS" , BER_CLASS }, |
1050 | const_iv (ASN_UNIVERSAL) |
778 | { "BER_TAG" , BER_TAG }, |
1051 | const_iv (ASN_APPLICATION) |
779 | { "BER_CONSTRUCTED", BER_CONSTRUCTED }, |
1052 | const_iv (ASN_CONTEXT) |
780 | { "BER_DATA" , BER_DATA }, |
1053 | const_iv (ASN_PRIVATE) |
|
|
1054 | |
|
|
1055 | const_iv (BER_CLASS) |
|
|
1056 | const_iv (BER_TAG) |
|
|
1057 | const_iv (BER_FLAGS) |
|
|
1058 | const_iv (BER_DATA) |
|
|
1059 | |
|
|
1060 | const_iv (BER_TYPE_BYTES) |
|
|
1061 | const_iv (BER_TYPE_UTF8) |
|
|
1062 | const_iv (BER_TYPE_UCS2) |
|
|
1063 | const_iv (BER_TYPE_UCS4) |
|
|
1064 | const_iv (BER_TYPE_INT) |
|
|
1065 | const_iv (BER_TYPE_OID) |
|
|
1066 | const_iv (BER_TYPE_RELOID) |
|
|
1067 | const_iv (BER_TYPE_NULL) |
|
|
1068 | const_iv (BER_TYPE_BOOL) |
|
|
1069 | const_iv (BER_TYPE_REAL) |
|
|
1070 | const_iv (BER_TYPE_IPADDRESS) |
|
|
1071 | const_iv (BER_TYPE_CROAK) |
|
|
1072 | |
|
|
1073 | const_iv (SNMP_IPADDRESS) |
|
|
1074 | const_iv (SNMP_COUNTER32) |
|
|
1075 | const_iv (SNMP_GAUGE32) |
|
|
1076 | const_iv (SNMP_UNSIGNED32) |
|
|
1077 | const_iv (SNMP_TIMETICKS) |
|
|
1078 | const_iv (SNMP_OPAQUE) |
|
|
1079 | const_iv (SNMP_COUNTER64) |
781 | }; |
1080 | }; |
782 | |
1081 | |
783 | for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ > const_iv; civ--) |
1082 | for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ > const_iv; civ--) |
784 | newCONSTSUB (stash, (char *)civ[-1].name, newSViv (civ[-1].iv)); |
1083 | newCONSTSUB (stash, (char *)civ[-1].name, newSViv (civ[-1].iv)); |
785 | } |
1084 | } |
786 | |
1085 | |
787 | SV * |
1086 | SV * |
788 | ber_decode (SV *ber) |
1087 | ber_decode (SV *ber, SV *profile = &PL_sv_undef) |
789 | CODE: |
1088 | CODE: |
790 | { |
1089 | { |
|
|
1090 | cur_profile = SvPROFILE (profile); |
791 | STRLEN len; |
1091 | STRLEN len; |
792 | |
|
|
793 | buf = SvPVbyte (ber, len); |
1092 | buf = (U8 *)SvPVbyte (ber, len); |
794 | cur = buf; |
1093 | cur = buf; |
795 | end = buf + len; |
1094 | end = buf + len; |
796 | |
1095 | |
797 | RETVAL = decode_ber (); |
1096 | RETVAL = decode_ber (); |
798 | } |
1097 | } |
799 | OUTPUT: RETVAL |
1098 | OUTPUT: RETVAL |
800 | |
1099 | |
801 | void |
1100 | void |
802 | ber_is (SV *tuple, SV *klass = &PL_sv_undef, SV *tag = &PL_sv_undef, SV *constructed = &PL_sv_undef, SV *data = &PL_sv_undef) |
1101 | ber_is (SV *tuple, SV *klass = &PL_sv_undef, SV *tag = &PL_sv_undef, SV *flags = &PL_sv_undef, SV *data = &PL_sv_undef) |
803 | PROTOTYPE: $;$$$ |
|
|
804 | PPCODE: |
1102 | PPCODE: |
805 | { |
1103 | { |
806 | if (!SvOK (tuple)) |
1104 | if (!SvOK (tuple)) |
807 | XSRETURN_NO; |
1105 | XSRETURN_NO; |
808 | |
1106 | |
809 | if (!SvROK (tuple) || SvTYPE (SvRV (tuple)) != SVt_PVAV) |
1107 | if (!SvROK (tuple) || SvTYPE (SvRV (tuple)) != SVt_PVAV) |
810 | croak ("ber_seq: tuple must be ber tuple (array-ref)"); |
1108 | croak ("ber_is: tuple must be BER tuple (array-ref)"); |
811 | |
1109 | |
812 | AV *av = (AV *)SvRV (tuple); |
1110 | AV *av = (AV *)SvRV (tuple); |
813 | |
1111 | |
814 | XPUSHs ( |
1112 | XPUSHs ( |
815 | (!SvOK (klass) || SvIV (AvARRAY (av)[BER_CLASS ]) == SvIV (klass)) |
1113 | (!SvOK (klass) || SvIV (AvARRAY (av)[BER_CLASS]) == SvIV (klass)) |
816 | && (!SvOK (tag) || SvIV (AvARRAY (av)[BER_TAG ]) == SvIV (tag)) |
1114 | && (!SvOK (tag) || SvIV (AvARRAY (av)[BER_TAG ]) == SvIV (tag)) |
817 | && (!SvOK (constructed) || !SvIV (AvARRAY (av)[BER_CONSTRUCTED]) == !SvIV (constructed)) |
1115 | && (!SvOK (flags) || !SvIV (AvARRAY (av)[BER_FLAGS]) == !SvIV (flags)) |
818 | && (!SvOK (data) || sv_eq (AvARRAY (av)[BER_DATA ], data)) |
1116 | && (!SvOK (data) || sv_eq (AvARRAY (av)[BER_DATA ], data)) |
819 | ? &PL_sv_yes : &PL_sv_no); |
1117 | ? &PL_sv_yes : &PL_sv_undef); |
820 | } |
1118 | } |
821 | |
1119 | |
822 | void |
1120 | void |
823 | ber_is_seq (SV *tuple) |
1121 | ber_is_seq (SV *tuple) |
824 | PPCODE: |
1122 | PPCODE: |
825 | { |
1123 | { |
826 | if (!SvOK (tuple)) |
1124 | if (!SvOK (tuple)) |
827 | XSRETURN_UNDEF; |
1125 | XSRETURN_UNDEF; |
828 | |
1126 | |
829 | if (!SvROK (tuple) || SvTYPE (SvRV (tuple)) != SVt_PVAV) |
1127 | AV *av = ber_tuple (tuple); |
830 | croak ("ber_seq: tuple must be ber tuple (array-ref)"); |
|
|
831 | |
|
|
832 | AV *av = (AV *)SvRV (tuple); |
|
|
833 | |
1128 | |
834 | XPUSHs ( |
1129 | XPUSHs ( |
835 | SvIV (AvARRAY (av)[BER_CLASS ]) == ASN_UNIVERSAL |
1130 | SvIV (AvARRAY (av)[BER_CLASS]) == ASN_UNIVERSAL |
836 | && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_SEQUENCE |
1131 | && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_SEQUENCE |
837 | && SvIV (AvARRAY (av)[BER_CONSTRUCTED]) |
1132 | && SvIV (AvARRAY (av)[BER_FLAGS]) |
838 | ? AvARRAY (av)[BER_DATA] : &PL_sv_undef); |
1133 | ? AvARRAY (av)[BER_DATA] : &PL_sv_undef); |
839 | } |
1134 | } |
840 | |
1135 | |
841 | void |
1136 | void |
842 | ber_is_i32 (SV *tuple, IV value) |
1137 | ber_is_int (SV *tuple, SV *value = &PL_sv_undef) |
843 | PPCODE: |
1138 | PPCODE: |
844 | { |
1139 | { |
845 | if (!SvOK (tuple)) |
1140 | if (!SvOK (tuple)) |
846 | XSRETURN_NO; |
1141 | XSRETURN_NO; |
847 | |
1142 | |
848 | if (!SvROK (tuple) || SvTYPE (SvRV (tuple)) != SVt_PVAV) |
1143 | AV *av = ber_tuple (tuple); |
849 | croak ("ber_seq: tuple must be ber tuple (array-ref)"); |
|
|
850 | |
1144 | |
851 | AV *av = (AV *)SvRV (tuple); |
1145 | UV data = SvUV (AvARRAY (av)[BER_DATA]); |
852 | |
1146 | |
853 | XPUSHs ( |
1147 | XPUSHs ( |
854 | SvIV (AvARRAY (av)[BER_CLASS ]) == ASN_UNIVERSAL |
1148 | SvIV (AvARRAY (av)[BER_CLASS]) == ASN_UNIVERSAL |
855 | && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_INTEGER32 |
1149 | && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_INTEGER |
856 | && !SvIV (AvARRAY (av)[BER_CONSTRUCTED]) |
1150 | && !SvIV (AvARRAY (av)[BER_FLAGS]) |
857 | && SvIV (AvARRAY (av)[BER_DATA ]) == value |
1151 | && (!SvOK (value) || data == SvUV (value)) |
858 | ? &PL_sv_yes : &PL_sv_no); |
1152 | ? sv_2mortal (data ? newSVsv (AvARRAY (av)[BER_DATA]) : newSVpv ("0 but true", 0)) |
|
|
1153 | : &PL_sv_undef); |
859 | } |
1154 | } |
860 | |
1155 | |
861 | void |
1156 | void |
862 | ber_is_oid (SV *tuple, SV *oid) |
1157 | ber_is_oid (SV *tuple, SV *oid = &PL_sv_undef) |
863 | PPCODE: |
1158 | PPCODE: |
864 | { |
1159 | { |
865 | if (!SvOK (tuple)) |
1160 | if (!SvOK (tuple)) |
866 | XSRETURN_NO; |
1161 | XSRETURN_NO; |
867 | |
1162 | |
868 | if (!SvROK (tuple) || SvTYPE (SvRV (tuple)) != SVt_PVAV) |
1163 | AV *av = ber_tuple (tuple); |
869 | croak ("ber_seq: tuple must be ber tuple (array-ref)"); |
|
|
870 | |
|
|
871 | AV *av = (AV *)SvRV (tuple); |
|
|
872 | |
1164 | |
873 | XPUSHs ( |
1165 | XPUSHs ( |
874 | SvIV (AvARRAY (av)[BER_CLASS ]) == ASN_UNIVERSAL |
1166 | SvIV (AvARRAY (av)[BER_CLASS]) == ASN_UNIVERSAL |
875 | && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_OBJECT_IDENTIFIER |
1167 | && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_OBJECT_IDENTIFIER |
876 | && !SvIV (AvARRAY (av)[BER_CONSTRUCTED]) |
1168 | && !SvIV (AvARRAY (av)[BER_FLAGS]) |
877 | && sv_eq (AvARRAY (av)[BER_DATA], oid) |
1169 | && (!SvOK (oid) || sv_eq (AvARRAY (av)[BER_DATA], oid)) |
878 | ? &PL_sv_yes : &PL_sv_no); |
1170 | ? newSVsv (AvARRAY (av)[BER_DATA]) : &PL_sv_undef); |
879 | } |
1171 | } |
880 | |
1172 | |
881 | ############################################################################# |
1173 | ############################################################################# |
882 | |
1174 | |
883 | void |
1175 | void |
884 | ber_encode (SV *tuple) |
1176 | ber_encode (SV *tuple, SV *profile = &PL_sv_undef) |
885 | PPCODE: |
1177 | PPCODE: |
886 | { |
1178 | { |
|
|
1179 | cur_profile = SvPROFILE (profile); |
887 | buf_sv = sv_2mortal (NEWSV (0, 256)); |
1180 | buf_sv = sv_2mortal (NEWSV (0, 256)); |
888 | SvPOK_only (buf_sv); |
1181 | SvPOK_only (buf_sv); |
889 | set_buf (buf_sv); |
1182 | set_buf (buf_sv); |
890 | |
1183 | |
891 | encode_ber (tuple); |
1184 | encode_ber (tuple); |
892 | |
1185 | |
893 | SvCUR_set (buf_sv, cur - buf); |
1186 | SvCUR_set (buf_sv, cur - buf); |
894 | XPUSHs (buf_sv); |
1187 | XPUSHs (buf_sv); |
895 | } |
1188 | } |
896 | |
1189 | |
|
|
1190 | SV * |
|
|
1191 | ber_int (SV *sv) |
|
|
1192 | CODE: |
|
|
1193 | { |
|
|
1194 | AV *av = newAV (); |
|
|
1195 | av_fill (av, BER_ARRAYSIZE - 1); |
|
|
1196 | AvARRAY (av)[BER_CLASS] = newSVcacheint (ASN_UNIVERSAL); |
|
|
1197 | AvARRAY (av)[BER_TAG ] = newSVcacheint (ASN_INTEGER); |
|
|
1198 | AvARRAY (av)[BER_FLAGS] = newSVcacheint (0); |
|
|
1199 | AvARRAY (av)[BER_DATA ] = newSVsv (sv); |
|
|
1200 | RETVAL = newRV_noinc ((SV *)av); |
|
|
1201 | } |
|
|
1202 | OUTPUT: RETVAL |
|
|
1203 | |
|
|
1204 | # TODO: not arrayref, but elements? |
|
|
1205 | SV * |
|
|
1206 | ber_seq (SV *arrayref) |
|
|
1207 | CODE: |
|
|
1208 | { |
|
|
1209 | AV *av = newAV (); |
|
|
1210 | av_fill (av, BER_ARRAYSIZE - 1); |
|
|
1211 | AvARRAY (av)[BER_CLASS] = newSVcacheint (ASN_UNIVERSAL); |
|
|
1212 | AvARRAY (av)[BER_TAG ] = newSVcacheint (ASN_SEQUENCE); |
|
|
1213 | AvARRAY (av)[BER_FLAGS] = newSVcacheint (1); |
|
|
1214 | AvARRAY (av)[BER_DATA ] = newSVsv (arrayref); |
|
|
1215 | RETVAL = newRV_noinc ((SV *)av); |
|
|
1216 | } |
|
|
1217 | OUTPUT: RETVAL |
|
|
1218 | |
|
|
1219 | MODULE = Convert::BER::XS PACKAGE = Convert::BER::XS::Profile |
|
|
1220 | |
|
|
1221 | SV * |
|
|
1222 | new (SV *klass) |
|
|
1223 | CODE: |
|
|
1224 | RETVAL = profile_new (); |
|
|
1225 | OUTPUT: RETVAL |
|
|
1226 | |
|
|
1227 | void |
|
|
1228 | set (SV *profile, int klass, int tag, int type) |
|
|
1229 | CODE: |
|
|
1230 | profile_set (SvPROFILE (profile), klass, tag, type); |
|
|
1231 | |
|
|
1232 | IV |
|
|
1233 | get (SV *profile, int klass, int tag) |
|
|
1234 | CODE: |
|
|
1235 | RETVAL = profile_lookup (SvPROFILE (profile), klass, tag); |
|
|
1236 | OUTPUT: RETVAL |
|
|
1237 | |
|
|
1238 | void |
|
|
1239 | _set_default (SV *profile) |
|
|
1240 | CODE: |
|
|
1241 | default_profile = SvPROFILE (profile); |
|
|
1242 | |
|
|
1243 | |