xref: /trunk/main/registry/source/reflcnst.hxx (revision 1ecadb572e7010ff3b3382ad9bf179dbc6efadbb)
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27 
28 #ifndef _REFLCNST_HXX_
29 #define _REFLCNST_HXX_
30 
31 #include <registry/refltype.hxx>
32 #include <sal/macros.h>
33 
34 #include <string.h>
35 
36 #define REGTYPE_IEEE_NATIVE 1
37 
38 extern const sal_uInt32 magic;
39 extern const sal_uInt16 minorVersion;
40 extern const sal_uInt16 majorVersion;
41 
42 #define OFFSET_MAGIC                0
43 #define OFFSET_SIZE                 (OFFSET_MAGIC + sizeof(magic))
44 #define OFFSET_MINOR_VERSION        (OFFSET_SIZE + sizeof(sal_uInt32))
45 #define OFFSET_MAJOR_VERSION        (OFFSET_MINOR_VERSION + sizeof(minorVersion))
46 #define OFFSET_N_ENTRIES            (OFFSET_MAJOR_VERSION + sizeof(sal_uInt16))
47 #define OFFSET_TYPE_SOURCE          (OFFSET_N_ENTRIES + sizeof(sal_uInt16))
48 #define OFFSET_TYPE_CLASS           (OFFSET_TYPE_SOURCE + sizeof(sal_uInt16))
49 #define OFFSET_THIS_TYPE            (OFFSET_TYPE_CLASS + sizeof(sal_uInt16))
50 #define OFFSET_UIK                  (OFFSET_THIS_TYPE + sizeof(sal_uInt16))
51 #define OFFSET_DOKU                 (OFFSET_UIK + sizeof(sal_uInt16))
52 #define OFFSET_FILENAME             (OFFSET_DOKU + sizeof(sal_uInt16))
53 
54 #define OFFSET_N_SUPERTYPES         (OFFSET_FILENAME + sizeof(sal_uInt16))
55 #define OFFSET_SUPERTYPES           (OFFSET_N_SUPERTYPES + sizeof(sal_uInt16))
56 
57 #define OFFSET_CP_SIZE              (OFFSET_SUPERTYPES + sizeof(sal_uInt16))
58 #define OFFSET_CP                   (OFFSET_CP_SIZE + sizeof(sal_uInt16))
59 
60 #define CP_OFFSET_ENTRY_SIZE        0
61 #define CP_OFFSET_ENTRY_TAG         (CP_OFFSET_ENTRY_SIZE + sizeof(sal_uInt32))
62 #define CP_OFFSET_ENTRY_DATA        (CP_OFFSET_ENTRY_TAG + sizeof(sal_uInt16))
63 #define CP_OFFSET_ENTRY_UIK1        CP_OFFSET_ENTRY_DATA
64 #define CP_OFFSET_ENTRY_UIK2        (CP_OFFSET_ENTRY_UIK1 + sizeof(sal_uInt32))
65 #define CP_OFFSET_ENTRY_UIK3        (CP_OFFSET_ENTRY_UIK2 + sizeof(sal_uInt16))
66 #define CP_OFFSET_ENTRY_UIK4        (CP_OFFSET_ENTRY_UIK3 + sizeof(sal_uInt16))
67 #define CP_OFFSET_ENTRY_UIK5        (CP_OFFSET_ENTRY_UIK4 + sizeof(sal_uInt32))
68 
69 #define FIELD_OFFSET_ACCESS         0
70 #define FIELD_OFFSET_NAME           (FIELD_OFFSET_ACCESS + sizeof(sal_uInt16))
71 #define FIELD_OFFSET_TYPE           (FIELD_OFFSET_NAME + sizeof(sal_uInt16))
72 #define FIELD_OFFSET_VALUE          (FIELD_OFFSET_TYPE + sizeof(sal_uInt16))
73 #define FIELD_OFFSET_DOKU           (FIELD_OFFSET_VALUE + sizeof(sal_uInt16))
74 #define FIELD_OFFSET_FILENAME       (FIELD_OFFSET_DOKU + sizeof(sal_uInt16))
75 //#define FIELD_ENTRY_SIZE          (FIELD_OFFSET_FILENAME + sizeof(sal_uInt16))
76 
77 #define PARAM_OFFSET_TYPE           0
78 #define PARAM_OFFSET_MODE           (PARAM_OFFSET_TYPE + sizeof(sal_uInt16))
79 #define PARAM_OFFSET_NAME           (PARAM_OFFSET_MODE + sizeof(sal_uInt16))
80 //#define PARAM_ENTRY_SIZE          (PARAM_OFFSET_NAME + sizeof(sal_uInt16))
81 
82 #define METHOD_OFFSET_SIZE          0
83 #define METHOD_OFFSET_MODE          (METHOD_OFFSET_SIZE + sizeof(sal_uInt16))
84 #define METHOD_OFFSET_NAME          (METHOD_OFFSET_MODE + sizeof(sal_uInt16))
85 #define METHOD_OFFSET_RETURN        (METHOD_OFFSET_NAME + sizeof(sal_uInt16))
86 #define METHOD_OFFSET_DOKU          (METHOD_OFFSET_RETURN + sizeof(sal_uInt16))
87 #define METHOD_OFFSET_PARAM_COUNT   (METHOD_OFFSET_DOKU + sizeof(sal_uInt16))
88 //#define METHOD_OFFSET_PARAM(i)        (METHOD_OFFSET_PARAM_COUNT + sizeof(sal_uInt16) + (i * PARAM_ENTRY_SIZE))
89 
90 #define REFERENCE_OFFSET_TYPE       0
91 #define REFERENCE_OFFSET_NAME       (REFERENCE_OFFSET_TYPE + sizeof(sal_uInt16))
92 #define REFERENCE_OFFSET_DOKU       (REFERENCE_OFFSET_NAME + sizeof(sal_uInt16))
93 #define REFERENCE_OFFSET_ACCESS     (REFERENCE_OFFSET_DOKU + sizeof(sal_uInt16))
94 //#define REFERENCE_ENTRY_SIZE      (REFERENCE_OFFSET_ACCESS + sizeof(sal_uInt16))
95 
96 enum CPInfoTag
97 {
98     CP_TAG_INVALID = RT_TYPE_NONE,
99     CP_TAG_CONST_BOOL = RT_TYPE_BOOL,
100     CP_TAG_CONST_BYTE  = RT_TYPE_BYTE,
101     CP_TAG_CONST_INT16 = RT_TYPE_INT16,
102     CP_TAG_CONST_UINT16 = RT_TYPE_UINT16,
103     CP_TAG_CONST_INT32 = RT_TYPE_INT32,
104     CP_TAG_CONST_UINT32 = RT_TYPE_UINT32,
105     CP_TAG_CONST_INT64 = RT_TYPE_INT64,
106     CP_TAG_CONST_UINT64 = RT_TYPE_UINT64,
107     CP_TAG_CONST_FLOAT = RT_TYPE_FLOAT,
108     CP_TAG_CONST_DOUBLE = RT_TYPE_DOUBLE,
109     CP_TAG_CONST_STRING = RT_TYPE_STRING,
110     CP_TAG_UTF8_NAME,
111     CP_TAG_UIK
112 };
113 
114 inline sal_uInt32 writeBYTE(sal_uInt8* buffer, sal_uInt8 v)
115 {
116     buffer[0] = v;
117 
118     return sizeof(sal_uInt8);
119 }
120 
121 inline sal_uInt16 readBYTE(const sal_uInt8* buffer, sal_uInt8& v)
122 {
123     v = buffer[0];
124 
125     return sizeof(sal_uInt8);
126 }
127 
128 inline sal_uInt32 writeINT16(sal_uInt8* buffer, sal_Int16 v)
129 {
130     buffer[0] = (sal_uInt8)((v >> 8) & 0xFF);
131     buffer[1] = (sal_uInt8)((v >> 0) & 0xFF);
132 
133     return sizeof(sal_Int16);
134 }
135 
136 inline sal_uInt32 readINT16(const sal_uInt8* buffer, sal_Int16& v)
137 {
138     v = ((buffer[0] << 8) | (buffer[1] << 0));
139 
140     return sizeof(sal_Int16);
141 }
142 
143 inline sal_uInt32 writeUINT16(sal_uInt8* buffer, sal_uInt16 v)
144 {
145     buffer[0] = (sal_uInt8)((v >> 8) & 0xFF);
146     buffer[1] = (sal_uInt8)((v >> 0) & 0xFF);
147 
148     return sizeof(sal_uInt16);
149 }
150 
151 inline sal_uInt32 readUINT16(const sal_uInt8* buffer, sal_uInt16& v)
152 {
153     v = ((buffer[0] << 8) | (buffer[1] << 0));
154 
155     return sizeof(sal_uInt16);
156 }
157 
158 inline sal_uInt32 writeINT32(sal_uInt8* buffer, sal_Int32 v)
159 {
160     buffer[0] = (sal_uInt8)((v >> 24) & 0xFF);
161     buffer[1] = (sal_uInt8)((v >> 16) & 0xFF);
162     buffer[2] = (sal_uInt8)((v >> 8) & 0xFF);
163     buffer[3] = (sal_uInt8)((v >> 0) & 0xFF);
164 
165     return sizeof(sal_Int32);
166 }
167 
168 inline sal_uInt32 readINT32(const sal_uInt8* buffer, sal_Int32& v)
169 {
170     v = (
171             (buffer[0] << 24) |
172             (buffer[1] << 16) |
173             (buffer[2] << 8)  |
174             (buffer[3] << 0)
175         );
176 
177     return sizeof(sal_Int32);
178 }
179 
180 inline sal_uInt32 writeUINT32(sal_uInt8* buffer, sal_uInt32 v)
181 {
182     buffer[0] = (sal_uInt8)((v >> 24) & 0xFF);
183     buffer[1] = (sal_uInt8)((v >> 16) & 0xFF);
184     buffer[2] = (sal_uInt8)((v >> 8) & 0xFF);
185     buffer[3] = (sal_uInt8)((v >> 0) & 0xFF);
186 
187     return sizeof(sal_uInt32);
188 }
189 
190 inline sal_uInt32 readUINT32(const sal_uInt8* buffer, sal_uInt32& v)
191 {
192     v = (
193             (buffer[0] << 24) |
194             (buffer[1] << 16) |
195             (buffer[2] << 8)  |
196             (buffer[3] << 0)
197         );
198 
199     return sizeof(sal_uInt32);
200 }
201 
202 inline sal_uInt32 writeINT64(sal_uInt8* buffer, sal_Int64 v)
203 {
204     buffer[0] = (sal_uInt8)((v >> 56) & 0xFF);
205     buffer[1] = (sal_uInt8)((v >> 48) & 0xFF);
206     buffer[2] = (sal_uInt8)((v >> 40) & 0xFF);
207     buffer[3] = (sal_uInt8)((v >> 32) & 0xFF);
208     buffer[4] = (sal_uInt8)((v >> 24) & 0xFF);
209     buffer[5] = (sal_uInt8)((v >> 16) & 0xFF);
210     buffer[6] = (sal_uInt8)((v >> 8) & 0xFF);
211     buffer[7] = (sal_uInt8)((v >> 0) & 0xFF);
212 
213     return sizeof(sal_Int64);
214 }
215 
216 inline sal_uInt32 readINT64(const sal_uInt8* buffer, sal_Int64& v)
217 {
218     v = (
219             ((sal_Int64)buffer[0] << 56) |
220             ((sal_Int64)buffer[1] << 48) |
221             ((sal_Int64)buffer[2] << 40) |
222             ((sal_Int64)buffer[3] << 32) |
223             ((sal_Int64)buffer[4] << 24) |
224             ((sal_Int64)buffer[5] << 16) |
225             ((sal_Int64)buffer[6] << 8)  |
226             ((sal_Int64)buffer[7] << 0)
227         );
228 
229     return sizeof(sal_Int64);
230 }
231 
232 inline sal_uInt32 writeUINT64(sal_uInt8* buffer, sal_uInt64 v)
233 {
234     buffer[0] = (sal_uInt8)((v >> 56) & 0xFF);
235     buffer[1] = (sal_uInt8)((v >> 48) & 0xFF);
236     buffer[2] = (sal_uInt8)((v >> 40) & 0xFF);
237     buffer[3] = (sal_uInt8)((v >> 32) & 0xFF);
238     buffer[4] = (sal_uInt8)((v >> 24) & 0xFF);
239     buffer[5] = (sal_uInt8)((v >> 16) & 0xFF);
240     buffer[6] = (sal_uInt8)((v >> 8) & 0xFF);
241     buffer[7] = (sal_uInt8)((v >> 0) & 0xFF);
242 
243     return sizeof(sal_uInt64);
244 }
245 
246 inline sal_uInt32 readUINT64(const sal_uInt8* buffer, sal_uInt64& v)
247 {
248     v = (
249             ((sal_uInt64)buffer[0] << 56) |
250             ((sal_uInt64)buffer[1] << 48) |
251             ((sal_uInt64)buffer[2] << 40) |
252             ((sal_uInt64)buffer[3] << 32) |
253             ((sal_uInt64)buffer[4] << 24) |
254             ((sal_uInt64)buffer[5] << 16) |
255             ((sal_uInt64)buffer[6] << 8)  |
256             ((sal_uInt64)buffer[7] << 0)
257         );
258 
259     return sizeof(sal_uInt64);
260 }
261 
262 inline sal_uInt32 writeUtf8(sal_uInt8* buffer, const sal_Char* v)
263 {
264     sal_uInt32 size = strlen(v) + 1;
265 
266     memcpy(buffer, v, size);
267 
268     return (size);
269 }
270 
271 inline sal_uInt32 readUtf8(const sal_uInt8* buffer, sal_Char* v, sal_uInt32 maxSize)
272 {
273     sal_uInt32 size = SAL_MIN(strlen((const sal_Char*) buffer) + 1, maxSize);
274 
275     memcpy(v, buffer, size);
276 
277     if (size == maxSize) v[size - 1] = '\0';
278 
279     return (size);
280 }
281 
282 
283 sal_uInt32 writeFloat(sal_uInt8* buffer, float v);
284 sal_uInt32 writeDouble(sal_uInt8* buffer, double v);
285 sal_uInt32 writeString(sal_uInt8* buffer, const sal_Unicode* v);
286 sal_uInt32 readString(const sal_uInt8* buffer, sal_Unicode* v, sal_uInt32 maxSize);
287 
288 sal_uInt32 UINT16StringLen(const sal_uInt8* wstring);
289 
290 #endif
291 
292 
293 
294 
295 
296