1/*
2 * idct BlackFin
3 *
4 * Copyright (C) 2007 Marc Hoffman <marc.hoffman@analog.com>
5 *
6 * This file is part of FFmpeg.
7 *
8 * FFmpeg is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Lesser General Public
10 * License as published by the Free Software Foundation; either
11 * version 2.1 of the License, or (at your option) any later version.
12 *
13 * FFmpeg is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
16 * Lesser General Public License for more details.
17 *
18 * You should have received a copy of the GNU Lesser General Public
19 * License along with FFmpeg; if not, write to the Free Software
20 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
21 */
22/*
23   This blackfin DSP code implements an 8x8 inverse type II DCT.
24
25Prototype       : void ff_bfin_idct(DCTELEM *in)
26
27Registers Used  : A0, A1, R0-R7, I0-I3, B0, B2, B3, M0-M2, L0-L3, P0-P5, LC0.
28
29Performance     :
30                    Code Size   : 498 Bytes.
31                    Cycle Count : 417 Cycles
32
33
34-----------------------------------------------------------
35FFMPEG conformance testing results
36-----------------------------------------------------------
37
38dct-test: modified with the following
39            dct_error("BFINidct", 1, ff_bfin_idct, idct, test);
40produces the following output
41
42root:/u/ffmpeg/bhead/libavcodec> ./dct-test -i
43ffmpeg DCT/IDCT test
44
45    8    15    -2    21    24    17     0    10
46    2   -10    -5    -5    -3     7   -14    -3
47    2   -13   -10   -19    18    -6     6    -2
48    9     4    16    -3     9    12    10    15
49   15    -9    -2    10     1    16     0   -15
50  -15     5     7     3    13     0    13    20
51   -6   -15    24     9   -18     1     9   -22
52   -8    25    23     2    -7     0    30    13
53IDCT BFINidct: err_inf=1 err2=0.01002344 syserr=0.00150000 maxout=266 blockSumErr=64
54IDCT BFINidct: 88.3 kdct/s
55
56*/
57
58#include "config_bfin.h"
59
60#ifdef __FDPIC__
61.section .l1.data.B,"aw",@progbits
62#else
63.data
64#endif
65
66.align 4;
67coefs:
68.short 0x5a82;           //  C4
69.short 0x5a82;           //  C4
70.short 0x30FC;           //cos(3pi/8)  C6
71.short 0x7642;           //cos(pi/8)   C2
72.short 0x18F9;           //cos(7pi/16)
73.short 0x7D8A;           //cos(pi/16)
74.short 0x471D;           //cos(5pi/16)
75.short 0x6A6E;           //cos(3pi/16)
76.short 0x18F9;           //cos(7pi/16)
77.short 0x7D8A;           //cos(pi/16)
78
79#ifdef __FDPIC__
80.section .l1.data.A,"aw",@progbits
81#endif
82
83vtmp: .space 256
84
85#define TMP0 FP-8
86#define TMP1 FP-12
87#define TMP2 FP-16
88
89
90.text
91DEFUN(idct,mL1,
92        (DCTELEM *block)):
93
94/********************** Function Prologue *********************************/
95    link 16;
96    [--SP] = (R7:4, P5:3);   // Push the registers onto the stack.
97    B0 = R0;                 // Pointer to Input matrix
98    RELOC(R1, P3, coefs);    // Pointer to Coefficients
99    RELOC(R2, P3, vtmp);     // Pointer to Temporary matrix
100    B3 = R1;
101    B2 = R2;
102    L3 = 20;                // L3 is used for making the coefficient array
103                            // circular.
104                            // MUST BE RESTORED TO ZERO at function exit.
105    M1 = 16 (X);            // All these registers are initialized for
106    M3 = 8(X);              // modifying address offsets.
107
108    I0 = B0;                // I0 points to Input Element (0, 0).
109    I2 = B0;                // I2 points to Input Element (0, 0).
110    I2 += M3 || R0.H = W[I0];
111                            // Element 0 is read into R0.H
112    I1 = I2;                // I1 points to input Element (0, 6).
113    I1 += 4  || R0.L = W[I2++];
114                            // I2 points to input Element (0, 4).
115                            // Element 4 is read into R0.L.
116    P2 = 8 (X);
117    P3 = 32 (X);
118    P4 = -32 (X);
119    P5 = 98 (X);
120    R7 = 0x8000(Z);
121    I3 = B3;                // I3 points to Coefficients
122    P0 = B2;                // P0 points to array Element (0, 0) of temp
123    P1 = B2;
124    R7 = [I3++] || [TMP2]=R7;            // Coefficient C4 is read into R7.H and R7.L.
125    MNOP;
126    NOP;
127
128    /*
129     *   A1 =      Y0 * cos(pi/4)
130     *   A0 =      Y0 * cos(pi/4)
131     *   A1 = A1 + Y4 * cos(pi/4)
132     *   A0 = A0 - Y4 * cos(pi/4)
133     *   load:
134     *     R1=(Y2,Y6)
135     *     R7=(C2,C6)
136     *   res:
137     *     R3=Y0, R2=Y4
138     */
139    A1=R7.H*R0.H,       A0=R7.H*R0.H (IS)       || I0+= 4       || R1.L=W[I1++];
140    R3=(A1+=R7.H*R0.L), R2=(A0-=R7.H*R0.L) (IS) || R1.H=W[I0--] || R7=[I3++];
141
142    LSETUP (.0, .1) LC0 = P2; // perform 8 1d idcts
143
144    P2 = 112 (X);
145    P1 = P1 + P2;           // P1 points to element (7, 0) of temp buffer.
146    P2 = -94(X);
147
148.0:
149       /*
150        *   A1 =      Y2 * cos(3pi/8)
151        *   A0 =      Y2 * cos(pi/8)
152        *   A1 = A1 - Y6 * cos(pi/8)
153        *   A0 = A0 + Y6 * cos(3pi/8)
154        *      R5 = (Y1,Y7)
155        *      R7 = (C1,C7)
156        *   res:
157        *      R1=Y2, R0=Y6
158        */
159        A1=R7.L*R1.H,       A0=R7.H*R1.H (IS)        || I0+=4        || R5.H=W[I0];
160        R1=(A1-=R7.H*R1.L), R0=(A0+=R7.L*R1.L) (IS)  || R5.L=W[I1--] || R7=[I3++];
161        /*
162        *   Y0 = Y0 + Y6.
163        *   Y4 = Y4 + Y2.
164        *   Y2 = Y4 - Y2.
165        *   Y6 = Y0 - Y6.
166        *     R3 is saved
167        *     R6.l=Y3
168        * note: R3: Y0, R2: Y4, R1: Y2, R0: Y6
169        */
170        R3=R3+R0, R0=R3-R0;
171        R2=R2+R1, R1=R2-R1 || [TMP0]=R3 || R6.L=W[I0--];
172        /*
173         *  Compute the odd portion (1,3,5,7) even is done.
174         *
175         *  Y1 = C7 * Y1 - C1 * Y7 + C3 * Y5 - C5 * Y3.
176         *  Y7 = C1 * Y1 + C7 * Y7 + C5 * Y5 + C3 * Y3.
177         *  Y5 = C5 * Y1 + C3 * Y7 + C7 * Y5 - C1 * Y3.
178         *  Y3 = C3 * Y1 - C5 * Y7 - C1 * Y5 - C7 * Y3.
179         */
180        //  R5=(Y1,Y7)  R6=(Y5,Y3)                                                   // R7=(C1,C7)
181        A1 =R7.L*R5.H,       A0 =R7.H*R5.H (IS)       || [TMP1]=R2 || R6.H=W[I2--];
182        A1-=R7.H*R5.L,       A0+=R7.L*R5.L (IS)       || I0-=4     || R7=[I3++];
183        A1+=R7.H*R6.H,       A0+=R7.L*R6.H (IS)       || I0+=M1;                     // R7=(C3,C5)
184        R3 =(A1-=R7.L*R6.L), R2 =(A0+=R7.H*R6.L) (IS);
185        A1 =R7.L*R5.H,       A0 =R7.H*R5.H (IS)       || R4=[TMP0];
186        A1+=R7.H*R5.L,       A0-=R7.L*R5.L (IS)       || I1+=M1    || R7=[I3++];     // R7=(C1,C7)
187        A1+=R7.L*R6.H,       A0-=R7.H*R6.H (IS);
188        R7 =(A1-=R7.H*R6.L), R6 =(A0-=R7.L*R6.L) (IS) || I2+=M1;
189        // R3=Y1, R2=Y7, R7=Y5, R6=Y3
190
191        /* Transpose write column. */
192        R5.H=R4+R2 (RND12);                                   // Y0=Y0+Y7
193        R5.L=R4-R2 (RND12) || R4 = [TMP1];                    // Y7=Y7-Y0
194        R2.H=R1+R7 (RND12) || W[P0++P3]=R5.H;                 // Y2=Y2+Y5 st Y0
195        R2.L=R1-R7 (RND12) || W[P1++P4]=R5.L || R7=[I3++];    // Y5=Y2-Y5 st Y7
196        R5.H=R0-R3 (RND12) || W[P0++P3]=R2.H || R1.L=W[I1++]; // Y1=Y6-Y1 st Y2
197        R5.L=R0+R3 (RND12) || W[P1++P4]=R2.L || R0.H=W[I0++]; // Y6=Y6+Y1 st Y5
198        R3.H=R4-R6 (RND12) || W[P0++P3]=R5.H || R0.L=W[I2++]; // Y3=Y3-Y4 st Y1
199        R3.L=R4+R6 (RND12) || W[P1++P4]=R5.L || R1.H=W[I0++]; // Y4=Y3+Y4 st Y6
200
201        /* pipeline loop start, + drain Y3, Y4 */
202        A1=R7.H*R0.H,       A0=R7.H*R0.H (IS)       || W[P0++P2]= R3.H || R1.H = W[I0--];
203.1:     R3=(A1+=R7.H*R0.L), R2=(A0-=R7.H*R0.L) (IS) || W[P1++P5]= R3.L || R7 = [I3++];
204
205
206
207    I0 = B2;                // I0 points to Input Element (0, 0)
208    I2 = B2;                // I2 points to Input Element (0, 0)
209    I2 += M3 || R0.H = W[I0];
210                            // Y0 is read in R0.H
211    I1 = I2;                // I1 points to input Element (0, 6)
212    I1 += 4  || R0.L = W[I2++];
213                            // I2 points to input Element (0, 4)
214                            // Y4 is read in R0.L
215    P2 = 8 (X);
216    I3 = B3;                // I3 points to Coefficients
217    P0 = B0;                // P0 points to array Element (0, 0) for writing
218                            // output
219    P1 = B0;
220    R7 = [I3++];            // R7.H = C4 and R7.L = C4
221    NOP;
222
223    /*
224     *   A1 =      Y0 * cos(pi/4)
225     *   A0 =      Y0 * cos(pi/4)
226     *   A1 = A1 + Y4 * cos(pi/4)
227     *   A0 = A0 - Y4 * cos(pi/4)
228     *   load:
229     *     R1=(Y2,Y6)
230     *     R7=(C2,C6)
231     *   res:
232     *     R3=Y0, R2=Y4
233     */
234    A1=R7.H*R0.H,       A0=R7.H*R0.H (IS)       || I0+=4        || R1.L=W[I1++];
235    R3=(A1+=R7.H*R0.L), R2=(A0-=R7.H*R0.L) (IS) || R1.H=W[I0--] || R7=[I3++];
236
237    LSETUP (.2, .3) LC0 = P2; // peform 8 1d idcts
238    P2 = 112 (X);
239    P1 = P1 + P2;
240    P2 = -94(X);
241
242.2:
243        /*
244         *   A1 =      Y2 * cos(3pi/8)
245         *   A0 =      Y2 * cos(pi/8)
246         *   A1 = A1 - Y6 * cos(pi/8)
247         *   A0 = A0 + Y6 * cos(3pi/8)
248         *      R5 = (Y1,Y7)
249         *      R7 = (C1,C7)
250         *   res:
251         *      R1=Y2, R0=Y6
252         */
253        A1=R7.L*R1.H,       A0=R7.H*R1.H (IS)        || I0+=4        || R5.H=W[I0];
254        R1=(A1-=R7.H*R1.L), R0=(A0+=R7.L*R1.L) (IS)  || R5.L=W[I1--] || R7=[I3++];
255        /*
256        *   Y0 = Y0 + Y6.
257        *   Y4 = Y4 + Y2.
258        *   Y2 = Y4 - Y2.
259        *   Y6 = Y0 - Y6.
260        *     R3 is saved
261        *     R6.l=Y3
262        * note: R3: Y0, R2: Y4, R1: Y2, R0: Y6
263        */
264        R3=R3+R0, R0=R3-R0;
265        R2=R2+R1, R1=R2-R1 || [TMP0]=R3 || R6.L=W[I0--];
266        /*
267         *  Compute the odd portion (1,3,5,7) even is done.
268         *
269         *  Y1 = C7 * Y1 - C1 * Y7 + C3 * Y5 - C5 * Y3.
270         *  Y7 = C1 * Y1 + C7 * Y7 + C5 * Y5 + C3 * Y3.
271         *  Y5 = C5 * Y1 + C3 * Y7 + C7 * Y5 - C1 * Y3.
272         *  Y3 = C3 * Y1 - C5 * Y7 - C1 * Y5 - C7 * Y3.
273         */
274        //  R5=(Y1,Y7)  R6=(Y5,Y3)                                                   // R7=(C1,C7)
275        A1 =R7.L*R5.H,       A0 =R7.H*R5.H (IS)       || [TMP1]=R2 || R6.H=W[I2--];
276        A1-=R7.H*R5.L,       A0+=R7.L*R5.L (IS)       || I0-=4     || R7=[I3++];
277        A1+=R7.H*R6.H,       A0+=R7.L*R6.H (IS)       || I0+=M1;                     // R7=(C3,C5)
278        R3 =(A1-=R7.L*R6.L), R2 =(A0+=R7.H*R6.L) (IS);
279        A1 =R7.L*R5.H,       A0 =R7.H*R5.H (IS)       || R4=[TMP0];
280        A1+=R7.H*R5.L,       A0-=R7.L*R5.L (IS)       || I1+=M1    || R7=[I3++];     // R7=(C1,C7)
281        A1+=R7.L*R6.H,       A0-=R7.H*R6.H (IS);
282        R7 =(A1-=R7.H*R6.L), R6 =(A0-=R7.L*R6.L) (IS) || I2+=M1;
283        // R3=Y1, R2=Y7, R7=Y5, R6=Y3
284
285        /* Transpose write column. */
286        R5.H=R4+R2 (RND20);                                   // Y0=Y0+Y7
287        R5.L=R4-R2 (RND20) || R4 = [TMP1];                    // Y7=Y7-Y0
288        R2.H=R1+R7 (RND20) || W[P0++P3]=R5.H;                 // Y2=Y2+Y5 st Y0
289        R2.L=R1-R7 (RND20) || W[P1++P4]=R5.L || R7=[I3++];    // Y5=Y2-Y5 st Y7
290        R5.H=R0-R3 (RND20) || W[P0++P3]=R2.H || R1.L=W[I1++]; // Y1=Y6-Y1 st Y2
291        R5.L=R0+R3 (RND20) || W[P1++P4]=R2.L || R0.H=W[I0++]; // Y6=Y6+Y1 st Y5
292        R3.H=R4-R6 (RND20) || W[P0++P3]=R5.H || R0.L=W[I2++]; // Y3=Y3-Y4 st Y1
293        R3.L=R4+R6 (RND20) || W[P1++P4]=R5.L || R1.H=W[I0++]; // Y4=Y3+Y4 st Y6
294
295        /* pipeline loop start, + drain Y3, Y4 */
296        A1=R7.H*R0.H,       A0=R7.H*R0.H (IS)       || W[P0++P2]= R3.H || R1.H = W[I0--];
297.3:     R3=(A1+=R7.H*R0.L), R2=(A0-=R7.H*R0.L) (IS) || W[P1++P5]= R3.L || R7 = [I3++];
298
299    L3 = 0;
300    (R7:4,P5:3)=[SP++];
301    unlink;
302    RTS;
303DEFUN_END(idct)
304
305
306