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[/] [dblclockfft/] [trunk/] [bench/] [cpp/] [butterfly_tb.cpp] - Blame information for rev 23

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1 6 dgisselq
////////////////////////////////////////////////////////////////////////////
2
//
3
// Filename:    butterfly_tb.cpp
4
//
5
// Project:     A Doubletime Pipelined FFT
6
//
7
// Purpose:     A test-bench for the butterfly.v subfile of the double
8
//              clocked FFT.  This file may be run autonomously.  If so,
9
//              the last line output will either read "SUCCESS" on success,
10
//              or some other failure message otherwise.
11
//
12
//              This file depends upon verilator to both compile, run, and
13
//              therefore test butterfly.v
14
//
15
// Creator:     Dan Gisselquist, Ph.D.
16
//              Gisselquist Tecnology, LLC
17
//
18
///////////////////////////////////////////////////////////////////////////
19
//
20
// Copyright (C) 2015, Gisselquist Technology, LLC
21
//
22
// This program is free software (firmware): you can redistribute it and/or
23
// modify it under the terms of  the GNU General Public License as published
24
// by the Free Software Foundation, either version 3 of the License, or (at
25
// your option) any later version.
26
//
27
// This program is distributed in the hope that it will be useful, but WITHOUT
28
// ANY WARRANTY; without even the implied warranty of MERCHANTIBILITY or
29
// FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
30
// for more details.
31
//
32
// You should have received a copy of the GNU General Public License along
33
// with this program.  (It's in the $(ROOT)/doc directory, run make with no
34
// target there if the PDF file isn't present.)  If not, see
35
// <http://www.gnu.org/licenses/> for a copy.
36
//
37
// License:     GPL, v3, as defined and found on www.gnu.org,
38
//              http://www.gnu.org/licenses/gpl.html
39
//
40
//
41
///////////////////////////////////////////////////////////////////////////
42 3 dgisselq
#include <stdio.h>
43
#include <stdint.h>
44
 
45
#include "Vbutterfly.h"
46
#include "verilated.h"
47 23 dgisselq
#include "twoc.h"
48 3 dgisselq
 
49 15 dgisselq
 
50 5 dgisselq
class   BFLY_TB {
51
public:
52
        Vbutterfly      *m_bfly;
53
        unsigned long   m_left[64], m_right[64];
54 6 dgisselq
        bool            m_aux[64];
55 13 dgisselq
        int             m_addr, m_lastaux, m_offset;
56 23 dgisselq
        bool            m_syncd, m_waiting_for_sync_input;
57 3 dgisselq
 
58 5 dgisselq
        BFLY_TB(void) {
59
                m_bfly = new Vbutterfly;
60
                m_addr = 0;
61 6 dgisselq
                m_syncd = 0;
62 23 dgisselq
                m_waiting_for_sync_input = true;
63 5 dgisselq
        }
64 3 dgisselq
 
65 5 dgisselq
        void    tick(void) {
66
                m_lastaux = m_bfly->o_aux;
67
                m_bfly->i_clk = 0;
68
                m_bfly->eval();
69
                m_bfly->i_clk = 1;
70
                m_bfly->eval();
71 6 dgisselq
 
72 13 dgisselq
                if ((!m_syncd)&&(m_bfly->o_aux))
73
                        m_offset = m_addr;
74 6 dgisselq
                m_syncd = (m_syncd) || (m_bfly->o_aux);
75 5 dgisselq
        }
76
 
77
        void    reset(void) {
78
                m_bfly->i_ce    = 0;
79 6 dgisselq
                m_bfly->i_rst   = 1;
80 5 dgisselq
                m_bfly->i_coef  = 0l;
81
                m_bfly->i_left  = 0;
82
                m_bfly->i_right = 0;
83
                tick();
84 6 dgisselq
                m_bfly->i_rst = 0;
85 5 dgisselq
                m_bfly->i_ce  = 1;
86 6 dgisselq
                //
87
                // Let's run a RESET test here, forcing the whole butterfly
88
                // to be filled with aux=1.  If the reset works right,
89
                // we'll never get an aux=1 output.
90
                //
91
                m_bfly->i_rst = 1;
92
                m_bfly->i_ce  = 1;
93 5 dgisselq
                m_bfly->i_aux = 1;
94 6 dgisselq
                for(int i=0; i<200; i++)
95
                        tick();
96 5 dgisselq
 
97 6 dgisselq
                // Now here's the RESET line, so let's see what the test does
98
                m_bfly->i_rst = 1;
99
                m_bfly->i_ce  = 1;
100
                m_bfly->i_aux = 1;
101 5 dgisselq
                tick();
102 6 dgisselq
                m_bfly->i_rst = 0;
103
                m_syncd = 0;
104 23 dgisselq
 
105
                m_waiting_for_sync_input = true;
106 5 dgisselq
        }
107
 
108
        void    test(const int n, const int k, const unsigned long cof,
109
                        const unsigned lft, const unsigned rht, const int aux) {
110
 
111
                m_bfly->i_coef  = cof & (~(-1l << 40));
112
                m_bfly->i_left  = lft;
113
                m_bfly->i_right = rht;
114
                m_bfly->i_aux   = aux & 1;
115 23 dgisselq
                if ((m_waiting_for_sync_input)&&(aux&1)) {
116
                        m_waiting_for_sync_input = false;
117
                        m_addr = 0;
118
                }
119 5 dgisselq
 
120
                tick();
121
 
122
                if ((m_bfly->o_aux)&&(!m_lastaux))
123
                        printf("\n");
124
                printf("n,k=%d,%3d: COEF=%010lx, LFT=%08x, RHT=%08x, A=%d, OLFT =%09lx, ORHT=%09lx, AUX=%d\n",
125
                        n,k,
126
                        m_bfly->i_coef & (~(-1l<<40)),
127
                        m_bfly->i_left,
128
                        m_bfly->i_right,
129
                        m_bfly->i_aux,
130
                        m_bfly->o_left,
131
                        m_bfly->o_right,
132
                        m_bfly->o_aux);
133
                /*
134
                printf("\tFI=%010lx",
135
                        ((((long)m_bfly->v__DOT__r_aux_2)&1l)<<34)
136
                        |((((long)m_bfly->v__DOT__r_sum_r)&0x01ffffl)<<17)
137
                        |(((long)m_bfly->v__DOT__r_sum_i)&0x01ffffl));
138
                printf("\tFO=%010lx SUMR=%05x SUMI=%05x A=%d",
139
                        m_bfly->v__DOT__fifo_read,
140
                        m_bfly->v__DOT__r_sum_r,
141
                        m_bfly->v__DOT__r_sum_i,
142
                        m_bfly->v__DOT__r_aux_2);
143
                printf("\tML=%09lx, MR=%09lx, ",
144
                        m_left[ (m_addr-23)&(64-1)],
145
                        m_right[(m_addr-23)&(64-1)]);
146
                */
147
                /*
148
                printf("\tBLFTR=%10lx BLFTI=%10lx",
149
                        m_bfly->v__DOT__b_left_r & (~(-1l<<40)),
150
                        m_bfly->v__DOT__b_left_i & (~(-1l<<40)));
151
                printf("\tMPYR=%10lx MPYI=%10lx",
152
                        m_bfly->v__DOT__mpy_r & (~(-1l<<40)),
153
                        m_bfly->v__DOT__mpy_i & (~(-1l<<40)));
154
                printf("\n");
155
                */
156
 
157 13 dgisselq
                if ((m_syncd)&&(m_left[(m_addr-m_offset)&(64-1)] != m_bfly->o_left)) {
158 23 dgisselq
                        fprintf(stderr, "WRONG O_LEFT! (%lx(exp) != %lx(sut))\n",
159 15 dgisselq
                                m_left[(m_addr-m_offset)&(64-1)],
160
                                m_bfly->o_left);
161 5 dgisselq
                        exit(-1);
162
                }
163
 
164 13 dgisselq
                if ((m_syncd)&&(m_right[(m_addr-m_offset)&(64-1)] != m_bfly->o_right)) {
165 23 dgisselq
                        fprintf(stderr, "WRONG O_RIGHT (%lx(exp) != (%lx(sut))!\n",
166
                                m_right[(m_addr-m_offset)&(64-1)], m_bfly->o_right);
167 5 dgisselq
                        exit(-1);
168
                }
169
 
170 13 dgisselq
                if ((m_syncd)&&(m_aux[(m_addr-m_offset)&(64-1)] != m_bfly->o_aux)) {
171 6 dgisselq
                        fprintf(stderr, "FAILED AUX CHANNEL TEST (i.e. the SYNC)\n");
172
                        exit(-1);
173
                }
174
 
175 23 dgisselq
                if ((m_addr > 28)&&(!m_syncd)) {
176 6 dgisselq
                        fprintf(stderr, "NO SYNC PULSE!\n");
177
                        exit(-1);
178
                }
179
 
180 5 dgisselq
                // Now, let's calculate an "expected" result ...
181
                long    rlft, ilft;
182
 
183
                // Extract left and right values ...
184 15 dgisselq
                rlft = sbits(m_bfly->i_left >> 16, 16);
185
                ilft = sbits(m_bfly->i_left      , 16);
186 5 dgisselq
 
187
                // Now repeat for the right hand value ...
188
                long    rrht, irht;
189
                // Extract left and right values ...
190 15 dgisselq
                rrht = sbits(m_bfly->i_right >> 16, 16);
191
                irht = sbits(m_bfly->i_right      , 16);
192 5 dgisselq
 
193
                // and again for the coefficients
194
                long    rcof, icof;
195
                // Extract left and right values ...
196 15 dgisselq
                rcof = sbits(m_bfly->i_coef >> 20, 20);
197
                icof = sbits(m_bfly->i_coef      , 20);
198 5 dgisselq
 
199
                // Now, let's do the butterfly ourselves ...
200
                long sumi, sumr, difi, difr;
201
                sumr = rlft + rrht;
202
                sumi = ilft + irht;
203
                difr = rlft - rrht;
204
                difi = ilft - irht;
205
 
206
        /*
207
                printf("L=%5lx+%5lx,R=%5lx+%5lx,S=%5lx+%5lx,D=%5lx+%5lx, ",
208
                        rlft & 0x02ffffl,
209
                        ilft & 0x02ffffl,
210
                        rrht & 0x02ffffl,
211
                        irht & 0x02ffffl,
212
                        sumr & 0x02ffffl,
213
                        sumi & 0x02ffffl,
214
                        difr & 0x02ffffl,
215
                        difi & 0x02ffffl);
216
        */
217
                long p1, p2, p3, mpyr, mpyi;
218
                p1 = difr * rcof;
219
                p2 = difi * icof;
220
                p3 = (difr + difi) * (rcof + icof);
221
 
222 15 dgisselq
                mpyr = p1-p2 + (1<<17);
223
                mpyi = p3-p1-p2 + (1<<17);
224 5 dgisselq
 
225
        /*
226
                printf("RC=%lx, IC=%lx, ", rcof, icof);
227
                printf("P1=%lx,P2=%lx,P3=%lx, ", p1,p2,p3);
228
                printf("MPYr = %lx, ", mpyr);
229
                printf("MPYi = %lx, ", mpyi);
230
        */
231
 
232
                long    o_left_r, o_left_i, o_right_r, o_right_i;
233
                unsigned long   o_left, o_right;
234
 
235
                o_left_r = sumr & 0x01ffff; o_left_i = sumi & 0x01ffff;
236
                o_left = (o_left_r << 17) | (o_left_i);
237
 
238
                o_right_r = (mpyr>>18) & 0x01ffff;
239
                o_right_i = (mpyi>>18) & 0x01ffff;
240
                o_right = (o_right_r << 17) | (o_right_i);
241
        /*
242
                printf("oR_r = %lx, ", o_right_r);
243
                printf("oR_i = %lx\n", o_right_i);
244
        */
245
 
246
                m_left[ m_addr&(64-1)] = o_left;
247
                m_right[m_addr&(64-1)] = o_right;
248 6 dgisselq
                m_aux[  m_addr&(64-1)] = aux;
249 5 dgisselq
 
250
                m_addr++;
251
        }
252
};
253
 
254 3 dgisselq
int     main(int argc, char **argv, char **envp) {
255
        Verilated::commandArgs(argc, argv);
256 5 dgisselq
        BFLY_TB *bfly = new BFLY_TB;
257 3 dgisselq
        int16_t         ir0, ii0, lstr, lsti;
258
        int32_t         sumr, sumi, difr, difi;
259
        int32_t         smr, smi, dfr, dfi;
260
        int             rnd = 0;
261
 
262 5 dgisselq
        const int       TESTSZ = 256;
263 3 dgisselq
 
264 5 dgisselq
        bfly->reset();
265 3 dgisselq
 
266 23 dgisselq
        // Test whether or not the aux channel starts clear, like its supposed to
267
        bfly->test(9,0,0x4000000000l,0x000f0000,0x000f0000, 0);
268
        bfly->test(9,1,0x4000000000l,0x000f0000,0xfff10000, 0);
269
        bfly->test(9,2,0x4000000000l,0x0000000f,0x0000fff1, 0);
270
        bfly->test(9,3,0x4000000000l,0x0000000f,0x0000000f, 0);
271
 
272 5 dgisselq
        bfly->test(9,0,0x4000000000l,0x7fff0000,0x7fff0000, 1);
273
        bfly->test(9,1,0x4000000000l,0x7fff0000,0x80010000, 0);
274
        bfly->test(9,2,0x4000000000l,0x00007fff,0x00008001, 0);
275
        bfly->test(9,3,0x4000000000l,0x00007fff,0x00007fff, 0);
276 3 dgisselq
 
277 5 dgisselq
        bfly->test(8,0,0x4000000000l,0x80010000,0x80010000, 1);
278
        bfly->test(8,1,0x4000000000l,0x00008001,0x00008001, 0);
279 3 dgisselq
 
280 5 dgisselq
        bfly->test(9,0,0x4000000000l,0x40000000,0xc0000000, 1);
281
        bfly->test(9,1,0x4000000000l,0x40000000,0x40000000, 0);
282
        bfly->test(9,2,0x4000000000l,0x00004000,0x0000c000, 0);
283
        bfly->test(9,3,0x4000000000l,0x00004000,0x00004000, 0);
284 3 dgisselq
 
285 5 dgisselq
        bfly->test(9,0,0x4000000000l,0x20000000,0xe0000000, 1);
286
        bfly->test(9,1,0x4000000000l,0x20000000,0x20000000, 0);
287
        bfly->test(9,2,0x4000000000l,0x00002000,0x0000e000, 0);
288
        bfly->test(9,3,0x4000000000l,0x00002000,0x00002000, 0);
289 3 dgisselq
 
290 5 dgisselq
        bfly->test(9,0,0x4000000000l,0x00080000,0xfff80000, 1);
291
        bfly->test(9,1,0x4000000000l,0x00080000,0x00080000, 0);
292
        bfly->test(9,2,0x4000000000l,0x00000008,0x0000fff8, 0);
293
        bfly->test(9,3,0x4000000000l,0x00000008,0x00000008, 0);
294 3 dgisselq
 
295 8 dgisselq
        bfly->test(7,0,0x3fffbff9b9l,0xfffe0000,0x00000000, 1);
296
        bfly->test(7,1,0x3ffd4fed28l,0xfffc0000,0x00020000, 0);
297
        bfly->test(7,2,0x3ff85fe098l,0xfff80000,0x00060000, 0);
298
        bfly->test(7,3,0x3ff0efd409l,0xfff00000,0x000e0000, 0);
299
        bfly->test(7,4,0x3fe70fc77cl,0xffe60000,0x00180000, 0);
300
        bfly->test(7,5,0x3fdabfbaf1l,0xffda0000,0x00240000, 0);
301
        bfly->test(7,6,0x3fcbefae69l,0xffca0000,0x00340000, 0);
302
        bfly->test(7,7,0x3fbaafa1e4l,0xffba0000,0x00440000, 0);
303
 
304
        /*
305
        // Special tests
306 5 dgisselq
        bfly->test(9,0,0x4000000000l,0x00010000,0xffff0000, 1);
307
        bfly->test(9,1,0x4000000000l,0x00010000,0x00010000, 0);
308
        bfly->test(9,2,0x4000000000l,0x00000001,0x0000ffff, 0);
309
        bfly->test(9,3,0x4000000000l,0x00000001,0x00000001, 0);
310 8 dgisselq
        */
311 3 dgisselq
 
312 5 dgisselq
        for(int n=0; n<4; n++) for(int k=0; k<TESTSZ; k++) {
313
                long    iv, rv;
314
                unsigned long   lft, rht, cof;
315
                double  c, s, W;
316
                bool    inv = 1;
317
                int     aux;
318 3 dgisselq
 
319 5 dgisselq
                W = ((inv)?-1:1) * 2.0 * M_PI * (2*k) / TESTSZ * 64;
320
                c = cos(W); s = sin(W);
321
                rv = (long)((double)(1l<<(16-2-n))*c+0.5);
322
                iv = (long)((double)(1l<<(16-2-n))*s+0.5);
323 3 dgisselq
 
324 5 dgisselq
                rv = (rv << 16) | (iv & (~(-1<<16)));
325
                lft = rv;
326 3 dgisselq
 
327 5 dgisselq
                W = ((inv)?-1:1) * 2.0 * M_PI * (2*k+1) / TESTSZ * 64;
328
                c = cos(W); s = sin(W);
329
                rv = (long)((double)(1l<<(16-2-n))*c+0.5);
330
                iv = (long)((double)(1l<<(16-2-n))*s+0.5);
331
 
332
                rv = (rv << 16) | (iv & (~(-1<<16)));
333
                rht = rv;
334
 
335
 
336
                // Switch the sign of W
337
                W = ((inv)?1:-1) * 2.0 * M_PI * (2*k) / TESTSZ;
338
                c = cos(W); s = sin(W);
339
                rv = (long)((double)(1l<<(20-2))*c+0.5); // Keep 20-2 bits for
340
                iv = (long)((double)(1l<<(20-2))*s+0.5); // coefficients
341
 
342
                rv = (rv << 20) | (iv & (~(-1<<20)));
343
                cof = rv;
344
 
345
                aux = ((k&(TESTSZ-1))==0);
346
 
347
                bfly->test(n,k, cof, lft, rht, aux);
348 3 dgisselq
        }
349
 
350
        delete  bfly;
351
 
352 4 dgisselq
        printf("SUCCESS!\n");
353 3 dgisselq
        exit(0);
354
}

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