staging: sm750fb: Fix for statement style
This patch fixes the checkpatch.pl warnings: ERROR: spaces required around that '=' (ctx:VxV) ERROR: spaces required around that '<=' (ctx:VxV) ERROR: spaces required around that '>' (ctx:VxV) ERROR: space required before the open parenthesis '(' ERROR: space required after that ';' (ctx:VxV) Signed-off-by: Helen Fornazier <helen.fornazier@gmail.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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@ -39,7 +39,7 @@ inline unsigned int twoToPowerOfx(unsigned long x)
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unsigned long i;
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unsigned long result = 1;
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for (i=1; i<=x; i++)
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for (i = 1; i <= x; i++)
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result *= 2;
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return result;
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}
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@ -453,14 +453,14 @@ unsigned int calcPllValue(unsigned int request_orig,pll_value_t *pll)
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}
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for(N = 15;N>1;N--) {
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for (N = 15; N > 1; N--) {
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/* RN will not exceed maximum long if @request <= 285 MHZ (for 32bit cpu) */
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RN = N * request;
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quo = RN / input;
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rem = RN % input;/* rem always small than 14318181 */
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fl_quo = (rem * 10000 /input);
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for(d = xcnt - 1;d >= 0;d--) {
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for (d = xcnt - 1; d >= 0; d--) {
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X = xparm[d].value;
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M = quo*X;
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M += fl_quo * X / 10000;
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@ -508,7 +508,7 @@ pll_value_t *pPLL /* Structure to hold the value to be set in PLL */
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#ifndef VALIDATION_CHIP
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/* The maximum of post divider is 8. */
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for (POD=0; POD<=3; POD++)
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for (POD = 0; POD <= 3; POD++)
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#endif
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{
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@ -522,7 +522,7 @@ pll_value_t *pPLL /* Structure to hold the value to be set in PLL */
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podPower = twoToPowerOfx(POD);
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/* OD has only 2 bits [15:14] and its value must between 0 to 3 */
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for (OD=0; OD<=3; OD++) {
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for (OD = 0; OD <= 3; OD++) {
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/* Work out 2 to the power of OD */
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odPower = twoToPowerOfx(OD);
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@ -535,7 +535,7 @@ pll_value_t *pPLL /* Structure to hold the value to be set in PLL */
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/* N has 4 bits [11:8] and its value must between 2 and 15.
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The N == 1 will behave differently --> Result is not correct. */
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for (N=2; N<=15; N++) {
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for (N = 2; N <= 15; N++) {
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/* The formula for PLL is ulRequestClk = inputFreq * M / N / (2^OD)
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In the following steps, we try to work out a best M value given the others are known.
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To avoid decimal calculation, we use 1000 as multiplier for up to 3 decimal places of accuracy.
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