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[test] Add tests for 64-bit division

On a 32-bit system, 64-bit division is implemented using the libgcc
functions provided in __udivmoddi4.c etc.  Calls to these functions
are generated automatically by gcc, with a calling convention that is
somewhat empirical in nature.  Add these self-tests primarily as a
check that we are using the correct calling convention.

Signed-off-by: Michael Brown <mcb30@ipxe.org>
This commit is contained in:
Michael Brown 2014-04-25 00:04:25 +01:00
parent dce7107fc0
commit ad7d5af5e1

View File

@ -43,6 +43,54 @@ __attribute__ (( noinline )) int flsl_var ( long value ) {
return flsl ( value );
}
/**
* Force a use of runtime 64-bit unsigned integer division
*
* @v dividend Dividend
* @v divisor Divisor
* @ret quotient Quotient
*/
__attribute__ (( noinline )) uint64_t u64div_var ( uint64_t dividend,
uint64_t divisor ) {
return ( dividend / divisor );
}
/**
* Force a use of runtime 64-bit unsigned integer modulus
*
* @v dividend Dividend
* @v divisor Divisor
* @ret remainder Remainder
*/
__attribute__ (( noinline )) uint64_t u64mod_var ( uint64_t dividend,
uint64_t divisor ) {
return ( dividend % divisor );
}
/**
* Force a use of runtime 64-bit signed integer division
*
* @v dividend Dividend
* @v divisor Divisor
* @ret quotient Quotient
*/
__attribute__ (( noinline )) int64_t s64div_var ( int64_t dividend,
int64_t divisor ) {
return ( dividend / divisor );
}
/**
* Force a use of runtime 64-bit unsigned integer modulus
*
* @v dividend Dividend
* @v divisor Divisor
* @ret remainder Remainder
*/
__attribute__ (( noinline )) int64_t s64mod_var ( int64_t dividend,
int64_t divisor ) {
return ( dividend % divisor );
}
/**
* Report a flsl() test result
*
@ -62,6 +110,60 @@ flsl_okx ( long value, int msb, const char *file, unsigned int line ) {
}
#define flsl_ok( value, msb ) flsl_okx ( value, msb, __FILE__, __LINE__ )
/**
* Report a 64-bit unsigned integer division test result
*
* @v dividend Dividend
* @v divisor Divisor
* @v quotient Quotient
* @v remainder Remainder
* @v file Test code file
* @v line Test code line
*/
static void u64divmod_okx ( uint64_t dividend, uint64_t divisor,
uint64_t quotient, uint64_t remainder,
const char *file, unsigned int line ) {
/* Sanity check */
okx ( ( ( divisor * quotient ) + remainder ) == dividend, file, line );
/* Check division */
okx ( u64div_var ( dividend, divisor ) == quotient, file, line );
/* Check modulus */
okx ( u64mod_var ( dividend, divisor ) == remainder, file, line );
}
#define u64divmod_ok( dividend, divisor, quotient, remainder ) \
u64divmod_okx ( dividend, divisor, quotient, remainder, \
__FILE__, __LINE__ )
/**
* Report a 64-bit signed integer division test result
*
* @v dividend Dividend
* @v divisor Divisor
* @v quotient Quotient
* @v remainder Remainder
* @v file Test code file
* @v line Test code line
*/
static void s64divmod_okx ( int64_t dividend, int64_t divisor,
int64_t quotient, int64_t remainder,
const char *file, unsigned int line ) {
/* Sanity check */
okx ( ( ( divisor * quotient ) + remainder ) == dividend, file, line );
/* Check division */
okx ( s64div_var ( dividend, divisor ) == quotient, file, line );
/* Check modulus */
okx ( s64mod_var ( dividend, divisor ) == remainder, file, line );
}
#define s64divmod_ok( dividend, divisor, quotient, remainder ) \
s64divmod_okx ( dividend, divisor, quotient, remainder, \
__FILE__, __LINE__ )
/**
* Perform mathematical self-tests
*
@ -77,6 +179,26 @@ static void math_test_exec ( void ) {
flsl_ok ( 0x69505845, 31 );
flsl_ok ( -1U, ( 8 * sizeof ( int ) ) );
flsl_ok ( -1UL, ( 8 * sizeof ( long ) ) );
/* Test 64-bit arithmetic
*
* On a 64-bit machine, these tests are fairly meaningless.
*
* On a 32-bit machine, these tests verify the correct
* operation of our libgcc functions __udivmoddi4()
* etc. (including checking that the implicit calling
* convention assumed by gcc matches our expectations).
*/
u64divmod_ok ( 0x2b90ddccf699f765ULL, 0xed9f5e73ULL,
0x2eef6ab4ULL, 0x0e12f089ULL );
s64divmod_ok ( 0x2b90ddccf699f765ULL, 0xed9f5e73ULL,
0x2eef6ab4ULL, 0x0e12f089ULL );
u64divmod_ok ( 0xc09e00dcb9e34b54ULL, 0x35968185cdc744f3ULL,
3, 0x1fda7c4b508d7c7bULL );
s64divmod_ok ( -0x3f61ff23461cb4acLL, 0x35968185cdc744f3ULL,
-1LL, -0x9cb7d9d78556fb9LL );
u64divmod_ok ( 0, 0x5b2f2737f4ffULL, 0, 0 );
s64divmod_ok ( 0, 0xbb00ded72766207fULL, 0, 0 );
}
/** Mathematical self-tests */