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36.file "aes-i586-asm.S"
37.text
38
39#include <linux/linkage.h>
40#include <asm/asm-offsets.h>
41
42#define tlen 1024
43
44
45#define ctx 8
46#define out_blk 12
47#define in_blk 16
48
49
50#define klen (480)
51#define ekey (0)
52#define dkey (240)
53
54
55
56#define r0 eax
57#define r1 ebx
58#define r2 ecx
59#define r3 edx
60#define r4 esi
61#define r5 edi
62
63#define eaxl al
64#define eaxh ah
65#define ebxl bl
66#define ebxh bh
67#define ecxl cl
68#define ecxh ch
69#define edxl dl
70#define edxh dh
71
72#define _h(reg) reg
73#define h(reg) _h(reg)
74
75#define _l(reg) reg
76#define l(reg) _l(reg)
77
78
79
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83
84
85
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89
90
91
92
93#define do_col(table, a1,a2,a3,a4, idx, tmp) \
94 movzx %l(idx),%tmp; \
95 xor table(,%tmp,4),%a1; \
96 movzx %h(idx),%tmp; \
97 shr $16,%idx; \
98 xor table+tlen(,%tmp,4),%a2; \
99 movzx %l(idx),%tmp; \
100 movzx %h(idx),%idx; \
101 xor table+2*tlen(,%tmp,4),%a3; \
102 xor table+3*tlen(,%idx,4),%a4;
103
104
105
106
107#define do_fcol(table, a1,a2,a3,a4, idx, tmp, sched) \
108 mov 0 sched,%a1; \
109 movzx %l(idx),%tmp; \
110 mov 12 sched,%a2; \
111 xor table(,%tmp,4),%a1; \
112 mov 4 sched,%a4; \
113 movzx %h(idx),%tmp; \
114 shr $16,%idx; \
115 xor table+tlen(,%tmp,4),%a2; \
116 movzx %l(idx),%tmp; \
117 movzx %h(idx),%idx; \
118 xor table+3*tlen(,%idx,4),%a4; \
119 mov %a3,%idx; \
120 mov 8 sched,%a3; \
121 xor table+2*tlen(,%tmp,4),%a3;
122
123
124
125
126#define do_icol(table, a1,a2,a3,a4, idx, tmp, sched) \
127 mov 0 sched,%a1; \
128 movzx %l(idx),%tmp; \
129 mov 4 sched,%a2; \
130 xor table(,%tmp,4),%a1; \
131 mov 12 sched,%a4; \
132 movzx %h(idx),%tmp; \
133 shr $16,%idx; \
134 xor table+tlen(,%tmp,4),%a2; \
135 movzx %l(idx),%tmp; \
136 movzx %h(idx),%idx; \
137 xor table+3*tlen(,%idx,4),%a4; \
138 mov %a3,%idx; \
139 mov 8 sched,%a3; \
140 xor table+2*tlen(,%tmp,4),%a3;
141
142
143
144#define save(a1, a2) \
145 mov %a2,4*a1(%esp)
146
147#define restore(a1, a2) \
148 mov 4*a2(%esp),%a1
149
150
151
152
153
154
155
156
157
158#define fwd_rnd1(arg, table) \
159 save (0,r1); \
160 save (1,r5); \
161 \
162 \
163 do_fcol(table, r2,r5,r4,r1, r0,r3, arg); \
164 do_col (table, r4,r1,r2,r5, r0,r3); \
165 restore(r0,0); \
166 do_col (table, r1,r2,r5,r4, r0,r3); \
167 restore(r0,1); \
168 do_col (table, r5,r4,r1,r2, r0,r3);
169
170
171
172
173#define fwd_rnd2(arg, table) \
174 save (0,r1); \
175 save (1,r5); \
176 \
177 \
178 do_fcol(table, r0,r5,r4,r1, r2,r3, arg); \
179 do_col (table, r4,r1,r0,r5, r2,r3); \
180 restore(r2,0); \
181 do_col (table, r1,r0,r5,r4, r2,r3); \
182 restore(r2,1); \
183 do_col (table, r5,r4,r1,r0, r2,r3);
184
185
186
187
188
189
190
191
192
193#define inv_rnd1(arg, table) \
194 save (0,r1); \
195 save (1,r5); \
196 \
197 \
198 do_icol(table, r2,r1,r4,r5, r0,r3, arg); \
199 do_col (table, r4,r5,r2,r1, r0,r3); \
200 restore(r0,0); \
201 do_col (table, r1,r4,r5,r2, r0,r3); \
202 restore(r0,1); \
203 do_col (table, r5,r2,r1,r4, r0,r3);
204
205
206
207
208#define inv_rnd2(arg, table) \
209 save (0,r1); \
210 save (1,r5); \
211 \
212 \
213 do_icol(table, r0,r1,r4,r5, r2,r3, arg); \
214 do_col (table, r4,r5,r0,r1, r2,r3); \
215 restore(r2,0); \
216 do_col (table, r1,r4,r5,r0, r2,r3); \
217 restore(r2,1); \
218 do_col (table, r5,r0,r1,r4, r2,r3);
219
220
221
222
223.extern crypto_ft_tab
224.extern crypto_fl_tab
225
226ENTRY(aes_enc_blk)
227 push %ebp
228 mov ctx(%esp),%ebp
229
230
231
232
2331: push %ebx
234 mov in_blk+4(%esp),%r2
235 push %esi
236 mov klen(%ebp),%r3
237 push %edi
238
239 lea ekey(%ebp),%ebp
240#endif
241
242
243
244 mov (%r2),%r0
245 mov 4(%r2),%r1
246 mov 8(%r2),%r4
247 mov 12(%r2),%r5
248 xor (%ebp),%r0
249 xor 4(%ebp),%r1
250 xor 8(%ebp),%r4
251 xor 12(%ebp),%r5
252
253 sub $8,%esp
254 add $16,%ebp
255 cmp $24,%r3
256 jb 4f
257 lea 32(%ebp),%ebp
258 je 3f
259 lea 32(%ebp),%ebp
260
2612: fwd_rnd1( -64(%ebp), crypto_ft_tab)
262 fwd_rnd2( -48(%ebp), crypto_ft_tab)
2633: fwd_rnd1( -32(%ebp), crypto_ft_tab)
264 fwd_rnd2( -16(%ebp), crypto_ft_tab)
2654: fwd_rnd1( (%ebp), crypto_ft_tab)
266 fwd_rnd2( +16(%ebp), crypto_ft_tab)
267 fwd_rnd1( +32(%ebp), crypto_ft_tab)
268 fwd_rnd2( +48(%ebp), crypto_ft_tab)
269 fwd_rnd1( +64(%ebp), crypto_ft_tab)
270 fwd_rnd2( +80(%ebp), crypto_ft_tab)
271 fwd_rnd1( +96(%ebp), crypto_ft_tab)
272 fwd_rnd2(+112(%ebp), crypto_ft_tab)
273 fwd_rnd1(+128(%ebp), crypto_ft_tab)
274 fwd_rnd2(+144(%ebp), crypto_fl_tab)
275
276
277
278
279 add $8,%esp
280 mov out_blk+12(%esp),%ebp
281 mov %r5,12(%ebp)
282 pop %edi
283 mov %r4,8(%ebp)
284 pop %esi
285 mov %r1,4(%ebp)
286 pop %ebx
287 mov %r0,(%ebp)
288 pop %ebp
289 ret
290ENDPROC(aes_enc_blk)
291
292
293
294
295.extern crypto_it_tab
296.extern crypto_il_tab
297
298ENTRY(aes_dec_blk)
299 push %ebp
300 mov ctx(%esp),%ebp
301
302
303
304
3051: push %ebx
306 mov in_blk+4(%esp),%r2
307 push %esi
308 mov klen(%ebp),%r3
309 push %edi
310
311 lea dkey(%ebp),%ebp
312#endif
313
314
315
316 mov (%r2),%r0
317 mov 4(%r2),%r1
318 mov 8(%r2),%r4
319 mov 12(%r2),%r5
320 xor (%ebp),%r0
321 xor 4(%ebp),%r1
322 xor 8(%ebp),%r4
323 xor 12(%ebp),%r5
324
325 sub $8,%esp
326 add $16,%ebp
327 cmp $24,%r3
328 jb 4f
329 lea 32(%ebp),%ebp
330 je 3f
331 lea 32(%ebp),%ebp
332
3332: inv_rnd1( -64(%ebp), crypto_it_tab)
334 inv_rnd2( -48(%ebp), crypto_it_tab)
3353: inv_rnd1( -32(%ebp), crypto_it_tab)
336 inv_rnd2( -16(%ebp), crypto_it_tab)
3374: inv_rnd1( (%ebp), crypto_it_tab)
338 inv_rnd2( +16(%ebp), crypto_it_tab)
339 inv_rnd1( +32(%ebp), crypto_it_tab)
340 inv_rnd2( +48(%ebp), crypto_it_tab)
341 inv_rnd1( +64(%ebp), crypto_it_tab)
342 inv_rnd2( +80(%ebp), crypto_it_tab)
343 inv_rnd1( +96(%ebp), crypto_it_tab)
344 inv_rnd2(+112(%ebp), crypto_it_tab)
345 inv_rnd1(+128(%ebp), crypto_it_tab)
346 inv_rnd2(+144(%ebp), crypto_il_tab)
347
348
349
350
351 add $8,%esp
352 mov out_blk+12(%esp),%ebp
353 mov %r5,12(%ebp)
354 pop %edi
355 mov %r4,8(%ebp)
356 pop %esi
357 mov %r1,4(%ebp)
358 pop %ebx
359 mov %r0,(%ebp)
360 pop %ebp
361 ret
362ENDPROC(aes_dec_blk)
363