[app][tests] add test vectors to the floating point test
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@@ -10,6 +10,7 @@
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#include <stdio.h>
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#include <stdio.h>
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#include <inttypes.h>
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#include <inttypes.h>
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#include <rand.h>
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#include <rand.h>
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#include <string.h>
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#include <lk/err.h>
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#include <lk/err.h>
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#include <lk/console_cmd.h>
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#include <lk/console_cmd.h>
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#include <app/tests.h>
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#include <app/tests.h>
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@@ -70,12 +71,31 @@ static void arm_float_instruction_trap_test(void) {
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}
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}
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#endif
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#endif
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static int float_tests(int argc, const console_cmd_args *argv) {
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static void float_test(void) {
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printf("floating point test:\n");
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/* test lazy fpu load on separate thread */
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/* test lazy fpu load on separate thread */
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thread_t *t[8];
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thread_t *t[8];
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volatile FLOAT val[countof(t)];
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volatile FLOAT val[countof(t)];
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const uint32_t test_results_32[8] = {
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0x473aced4,
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0x47b3c703,
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0x481aaab3,
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0x48304325,
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0x4845da0c,
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};
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const uint64_t test_results_64[8] = {
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0x40e7570fc8092db9,
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0x40f1117b2a41e1dc,
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0x40f6776e707f2b8a,
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0x4100a1aa7e7cdfa2,
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0x410354a4219b8561,
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0x4108ba9767d8cf09,
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};
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printf("creating %zu floating point threads\n", countof(t));
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printf("creating %zu floating point threads\n", countof(t));
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for (uint i = 0; i < countof(t); i++) {
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for (uint i = 0; i < countof(t); i++) {
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@@ -89,11 +109,36 @@ static int float_tests(int argc, const console_cmd_args *argv) {
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int res;
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int res;
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for (uint i = 0; i < countof(t); i++) {
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for (uint i = 0; i < countof(t); i++) {
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thread_join(t[i], &res, INFINITE_TIME);
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thread_join(t[i], &res, INFINITE_TIME);
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double result = (double)val[i];
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printf("float thread %u returns %d, hex val %a\n", i, res, result);
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if (sizeof(FLOAT) == 4) {
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//hexdump8(&result, 8);
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float result = val[i];
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uint32_t result_u32;
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memcpy(&result_u32, &result, sizeof(result_u32));
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printf("float thread %u returns %d, hex val %a, uint32 %#" PRIx32, i, res, (double)result, result_u32);
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if (result_u32 != test_results_32[i]) {
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printf("\nfloat thread %u failed, expected %#" PRIx32 "\n", i, test_results_32[i]);
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} else {
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printf(" (ok)\n");
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}
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} else {
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double result = val[i];
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uint64_t result_u64;
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memcpy(&result_u64, &result, sizeof(result_u64));
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printf("float thread %u returns %d, hex val %a, uint64 %#" PRIx64, i, res, result, result_u64);
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if (result_u64 != test_results_64[i]) {
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printf("\nfloat thread %u failed, expected %#" PRIx64 "\n", i, test_results_64[i]);
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} else {
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printf(" (ok)\n");
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}
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//hexdump8(&result, 8);
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}
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}
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}
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printf("the above values should be valid and generally increasing, but close\n");
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}
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static int float_tests(int argc, const console_cmd_args *argv) {
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printf("floating point test:\n");
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float_test();
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#if ARCH_ARM && !ARM_ISA_ARMV7M
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#if ARCH_ARM && !ARM_ISA_ARMV7M
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/* test all the instruction traps */
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/* test all the instruction traps */
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