// REQUIRES: arm-target-arch || armv6m-target-arch // RUN: %clang_builtins %s %librt -o %t && %run %t #include "int_lib.h" #include #if __arm__ // Based on divmodsi4_test.c extern du_int __aeabi_idivmod(si_int a, si_int b); int test__aeabi_idivmod(si_int a, si_int b, si_int expected_result, si_int expected_rem) { si_int rem; du_int ret = __aeabi_idivmod(a, b); // __aeabi_idivmod actually returns a struct { quotient; remainder; } using // value_in_regs calling convention. Due to the ABI rules, struct fields // come in the same order regardless of endianness. However since the // result is received here as a 64-bit integer, in which endianness does // matter, the position of each component (quotient and remainder) varies // depending on endianness. # if _YUGA_BIG_ENDIAN rem = ret & 0xFFFFFFFF; si_int result = ret >> 32; # else rem = ret >> 32; si_int result = ret & 0xFFFFFFFF; # endif if (result != expected_result) { printf("error in __aeabi_idivmod: %d / %d = %d, expected %d\n", a, b, result, expected_result); return 1; } if (rem != expected_rem) { printf("error in __aeabi_idivmod: %d mod %d = %d, expected %d\n", a, b, rem, expected_rem); return 1; } return 0; } #endif int main() { #if __arm__ if (test__aeabi_idivmod(0, 1, 0, 0)) return 1; if (test__aeabi_idivmod(0, -1, 0, 0)) return 1; if (test__aeabi_idivmod(2, 1, 2, 0)) return 1; if (test__aeabi_idivmod(2, -1, -2, 0)) return 1; if (test__aeabi_idivmod(-2, 1, -2, 0)) return 1; if (test__aeabi_idivmod(-2, -1, 2, 0)) return 1; if (test__aeabi_idivmod(7, 5, 1, 2)) return 1; if (test__aeabi_idivmod(-7, 5, -1, -2)) return 1; if (test__aeabi_idivmod(19, 5, 3, 4)) return 1; if (test__aeabi_idivmod(19, -5, -3, 4)) return 1; if (test__aeabi_idivmod(0x80000000, 8, 0xf0000000, 0)) return 1; if (test__aeabi_idivmod(0x80000007, 8, 0xf0000001, -1)) return 1; #else printf("skipped\n"); #endif return 0; }