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Line 36... Line 36...
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#include <arch.h>
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#include <arch.h>
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#include <arch/arch.h>
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#include <arch/arch.h>
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#define THREADS     150
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#define THREADS   150
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#define ATTEMPTS    100
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#define ATTEMPTS  100
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#define E_10e8  271828182
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#define E_10e8   271828182
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#define PI_10e8 314159265
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#define PI_10e8  314159265
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-
 
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#ifdef KERN_ia32_ARCH_H_
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static inline double sqrt(double x)
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{
-
 
51
    double v;
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    asm (
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        "fsqrt\n"
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        : "=t" (v)
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        : "0" (x)
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    );
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-
 
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    return v;
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}
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#endif
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#ifdef KERN_amd64_ARCH_H_
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static inline double sqrt(double x)
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static inline double sqrt(double x)
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{
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{
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    double v;
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    double v;
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    asm (
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    asm (
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        : "0" (x)
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        : "0" (x)
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    );
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    );
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    return v;
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    return v;
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}
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}
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#endif
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#ifdef KERN_ia64_ARCH_H_
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#undef PI_10e8  
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#define PI_10e8 3141592
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static inline long double sqrt(long double a)
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{  
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    long double x = 1;
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    long double lx = 0;
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    if (a < 0.00000000000000001)
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        return 0;
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-
 
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    while(x != lx) {
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        lx = x;
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        x = (x + (a / x)) / 2;
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94
    }
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95
   
-
 
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    return x;
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}
-
 
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#endif
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static atomic_t threads_ok;
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static atomic_t threads_ok;
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static atomic_t threads_fault;
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static atomic_t threads_fault;
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static waitq_t can_start;
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static waitq_t can_start;
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static bool sh_quiet;
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static bool sh_quiet;
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static void e(void *data)
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static void e(void *data)
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{
66
{
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    int i;
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    int i;
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    double e, d, le, f;
68
    double e, d, le, f;
110
 
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111
    thread_detach(THREAD);
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    thread_detach(THREAD);
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71
   
113
    waitq_sleep(&can_start);
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    waitq_sleep(&can_start);
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115
    for (i = 0; i<ATTEMPTS; i++) {
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    for (i = 0; i<ATTEMPTS; i++) {
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        le = -1;
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        le = -1;
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        e = 0;
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        e = 0;
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        f = 1;
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        f = 1;
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        for (d = 1; e != le; d *= f, f += 1) {
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        for (d = 1; e != le; d *= f, f += 1) {
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            le = e;
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            le = e;
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            e = e + 1 / d;
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            e = e + 1 / d;
123
        }
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        }
124
 
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        if ((int) (100000000 * e) != E_10e8) {
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        if ((int) (100000000 * e) != E_10e8) {
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            if (!sh_quiet)
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            if (!sh_quiet)
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                printf("tid%" PRIu64 ": e*10e8=%zd should be %" PRIun "\n", THREAD->tid, (unative_t) (100000000 * e), (unative_t) E_10e8);
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                printf("tid%" PRIu64 ": e*10e8=%zd should be %" PRIun "\n", THREAD->tid, (unative_t) (100000000 * e), (unative_t) E_10e8);
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            atomic_inc(&threads_fault);
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            atomic_inc(&threads_fault);
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            break;
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            break;
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    int i;
96
    int i;
138
    double lpi, pi;
97
    double lpi, pi;
139
    double n, ab, ad;
98
    double n, ab, ad;
140
   
99
   
141
    thread_detach(THREAD);
100
    thread_detach(THREAD);
142
 
101
   
143
    waitq_sleep(&can_start);
102
    waitq_sleep(&can_start);
144
 
103
   
145
    for (i = 0; i < ATTEMPTS; i++) {
104
    for (i = 0; i < ATTEMPTS; i++) {
146
        lpi = -1;
105
        lpi = -1;
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        pi = 0;
106
        pi = 0;
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107
       
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        for (n = 2, ab = sqrt(2); lpi != pi; n *= 2, ab = ad) {
108
        for (n = 2, ab = sqrt(2); lpi != pi; n *= 2, ab = ad) {
150
            double sc, cd;
109
            double sc, cd;
151
 
110
           
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            sc = sqrt(1 - (ab * ab / 4));
111
            sc = sqrt(1 - (ab * ab / 4));
153
            cd = 1 - sc;
112
            cd = 1 - sc;
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            ad = sqrt(ab * ab / 4 + cd * cd);
113
            ad = sqrt(ab * ab / 4 + cd * cd);
155
            lpi = pi;
114
            lpi = pi;
156
            pi = 2 * n * ad;
115
            pi = 2 * n * ad;
157
        }
116
        }
158
 
-
 
159
#ifdef KERN_ia64_ARCH_H_
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160
        if ((int) (1000000 * pi) != PI_10e8) {
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161
            if (!sh_quiet)
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162
                printf("tid%" PRIu64 ": pi*10e8=%zd should be %" PRIun "\n", THREAD->tid, (unative_t) (1000000 * pi), (unative_t) (PI_10e8 / 100));
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            atomic_inc(&threads_fault);
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            break;
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165
        }
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#else
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167
        if ((int) (100000000 * pi) != PI_10e8) {
118
        if ((int) (100000000 * pi) != PI_10e8) {
168
            if (!sh_quiet)
119
            if (!sh_quiet)
169
                printf("tid%" PRIu64 ": pi*10e8=%zd should be %" PRIun "\n", THREAD->tid, (unative_t) (100000000 * pi), (unative_t) PI_10e8);
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                printf("tid%" PRIu64 ": pi*10e8=%zd should be %" PRIun "\n", THREAD->tid, (unative_t) (100000000 * pi), (unative_t) PI_10e8);
170
            atomic_inc(&threads_fault);
121
            atomic_inc(&threads_fault);
171
            break;
122
            break;
172
        }
123
        }
173
#endif
-
 
174
    }
124
    }
175
    atomic_inc(&threads_ok);
125
    atomic_inc(&threads_ok);
176
}
126
}
177
 
127
 
178
char * test_fpu1(bool quiet)
128
char * test_fpu1(bool quiet)
179
{
129
{
180
    unsigned int i, total = 0;
130
    unsigned int i, total = 0;
181
    sh_quiet = quiet;
131
    sh_quiet = quiet;
182
 
132
   
183
    waitq_initialize(&can_start);
133
    waitq_initialize(&can_start);
184
    atomic_set(&threads_ok, 0);
134
    atomic_set(&threads_ok, 0);
185
    atomic_set(&threads_fault, 0);
135
    atomic_set(&threads_fault, 0);
186
   
136
   
187
    if (!quiet)
137
    if (!quiet)
188
        printf("Creating %u threads... ", 2 * THREADS);
138
        printf("Creating %u threads... ", 2 * THREADS);
189
 
139
   
190
    for (i = 0; i < THREADS; i++) {  
140
    for (i = 0; i < THREADS; i++) {  
191
        thread_t *t;
141
        thread_t *t;
192
       
142
       
193
        if (!(t = thread_create(e, NULL, TASK, 0, "e", false))) {
143
        if (!(t = thread_create(e, NULL, TASK, 0, "e", false))) {
194
            if (!quiet)
144
            if (!quiet)