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lib/math/test_div64: Correct the spelling of "dividend"
The word is spelt with a final "d" of course. What a massive messup! Signed-off-by: Maciej W. Rozycki <macro@orcam.me.uk> Signed-off-by: Thomas Bogendoerfer <tsbogend@alpha.franken.de>
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@ -16,7 +16,7 @@
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#define TEST_DIV64_N_ITER 1024
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static const u64 test_div64_dividents[] = {
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static const u64 test_div64_dividends[] = {
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0x00000000ab275080,
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0x0000000fe73c1959,
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0x000000e54c0a74b1,
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@ -27,7 +27,7 @@ static const u64 test_div64_dividents[] = {
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0x0842f488162e2284,
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0xf66745411d8ab063,
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};
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#define SIZE_DIV64_DIVIDENTS ARRAY_SIZE(test_div64_dividents)
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#define SIZE_DIV64_DIVIDENDS ARRAY_SIZE(test_div64_dividends)
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#define TEST_DIV64_DIVISOR_0 0x00000009
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#define TEST_DIV64_DIVISOR_1 0x0000007c
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@ -55,7 +55,7 @@ static const u32 test_div64_divisors[] = {
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static const struct {
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u64 quotient;
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u32 remainder;
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} test_div64_results[SIZE_DIV64_DIVISORS][SIZE_DIV64_DIVIDENTS] = {
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} test_div64_results[SIZE_DIV64_DIVISORS][SIZE_DIV64_DIVIDENDS] = {
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{
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{ 0x0000000013045e47, 0x00000001 },
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{ 0x000000000161596c, 0x00000030 },
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@ -160,16 +160,16 @@ static inline bool test_div64_verify(u64 quotient, u32 remainder, int i, int j)
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* to do constant propagation, and `do_div' may take a different path for
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* constants, so we do want to verify that as well.
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*/
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#define test_div64_one(divident, divisor, i, j) ({ \
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#define test_div64_one(dividend, divisor, i, j) ({ \
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bool result = true; \
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u64 quotient; \
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u32 remainder; \
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\
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quotient = divident; \
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quotient = dividend; \
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remainder = do_div(quotient, divisor); \
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if (!test_div64_verify(quotient, remainder, i, j)) { \
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pr_err("ERROR: %016llx / %08x => %016llx,%08x\n", \
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divident, divisor, quotient, remainder); \
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dividend, divisor, quotient, remainder); \
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pr_err("ERROR: expected value => %016llx,%08x\n",\
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test_div64_results[i][j].quotient, \
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test_div64_results[i][j].remainder); \
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@ -185,31 +185,31 @@ static inline bool test_div64_verify(u64 quotient, u32 remainder, int i, int j)
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*/
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static bool __init test_div64(void)
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{
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u64 divident;
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u64 dividend;
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int i, j;
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for (i = 0; i < SIZE_DIV64_DIVIDENTS; i++) {
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divident = test_div64_dividents[i];
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if (!test_div64_one(divident, TEST_DIV64_DIVISOR_0, i, 0))
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for (i = 0; i < SIZE_DIV64_DIVIDENDS; i++) {
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dividend = test_div64_dividends[i];
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if (!test_div64_one(dividend, TEST_DIV64_DIVISOR_0, i, 0))
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return false;
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if (!test_div64_one(divident, TEST_DIV64_DIVISOR_1, i, 1))
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if (!test_div64_one(dividend, TEST_DIV64_DIVISOR_1, i, 1))
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return false;
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if (!test_div64_one(divident, TEST_DIV64_DIVISOR_2, i, 2))
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if (!test_div64_one(dividend, TEST_DIV64_DIVISOR_2, i, 2))
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return false;
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if (!test_div64_one(divident, TEST_DIV64_DIVISOR_3, i, 3))
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if (!test_div64_one(dividend, TEST_DIV64_DIVISOR_3, i, 3))
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return false;
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if (!test_div64_one(divident, TEST_DIV64_DIVISOR_4, i, 4))
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if (!test_div64_one(dividend, TEST_DIV64_DIVISOR_4, i, 4))
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return false;
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if (!test_div64_one(divident, TEST_DIV64_DIVISOR_5, i, 5))
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if (!test_div64_one(dividend, TEST_DIV64_DIVISOR_5, i, 5))
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return false;
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if (!test_div64_one(divident, TEST_DIV64_DIVISOR_6, i, 6))
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if (!test_div64_one(dividend, TEST_DIV64_DIVISOR_6, i, 6))
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return false;
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if (!test_div64_one(divident, TEST_DIV64_DIVISOR_7, i, 7))
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if (!test_div64_one(dividend, TEST_DIV64_DIVISOR_7, i, 7))
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return false;
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if (!test_div64_one(divident, TEST_DIV64_DIVISOR_8, i, 8))
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if (!test_div64_one(dividend, TEST_DIV64_DIVISOR_8, i, 8))
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return false;
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for (j = 0; j < SIZE_DIV64_DIVISORS; j++) {
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if (!test_div64_one(divident, test_div64_divisors[j],
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if (!test_div64_one(dividend, test_div64_divisors[j],
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i, j))
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return false;
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}
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