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@@ -56,6 +56,7 @@ |
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#include <stdarg.h> |
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#include <stdarg.h> |
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#include <stdint.h> |
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#include <stdint.h> |
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#include <stdlib.h> |
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#include <stdlib.h> |
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#include <math.h> |
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#include <ctype.h> |
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#include <ctype.h> |
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#include <poll.h> |
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#include <poll.h> |
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#include <unistd.h> |
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#include <unistd.h> |
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@@ -578,7 +579,10 @@ static uint8_t gpioToPwmPort [] = |
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// for clocks 0 and 1 respectively, however I'll include the full |
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// for clocks 0 and 1 respectively, however I'll include the full |
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// list for completeness - maybe one day... |
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// list for completeness - maybe one day... |
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#define GPIO_CLOCK_SOURCE 1 |
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#define CLOCK_INTOSC_SRC 1 |
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#define CLOCK_PLLD_SRC 6 |
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#define CLOCK_INTOSC_FREQ 19200000 |
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#define CLOCK_PLLD_FREQ 500000000 |
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// gpioToGpClkALT0: |
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// gpioToGpClkALT0: |
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@@ -1191,7 +1195,8 @@ void pwmSetClock (int divisor) |
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void gpioClockSet (int pin, int freq) |
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void gpioClockSet (int pin, int freq) |
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{ |
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{ |
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int divi, divr, divf ; |
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int divi, divr, divf, mash ; |
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int clock_source, clock_frequency ; |
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pin &= 63 ; |
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pin &= 63 ; |
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@@ -1201,20 +1206,61 @@ void gpioClockSet (int pin, int freq) |
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pin = physToGpio [pin] ; |
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pin = physToGpio [pin] ; |
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else if (wiringPiMode != WPI_MODE_GPIO) |
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else if (wiringPiMode != WPI_MODE_GPIO) |
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return ; |
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return ; |
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divi = 19200000 / freq ; |
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divr = 19200000 % freq ; |
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divf = (int)((double)divr * 4096.0 / 19200000.0) ; |
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if (divi > 4095) |
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divi = 4095 ; |
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mash = 0; // experimental |
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if (freq > CLOCK_PLLD_FREQ / 4096) |
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{ |
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clock_source = CLOCK_PLLD_SRC ; |
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clock_frequency = CLOCK_PLLD_FREQ ; |
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} |
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else |
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{ |
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clock_source = CLOCK_INTOSC_SRC ; |
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clock_frequency = CLOCK_INTOSC_FREQ ; |
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} |
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if (freq > 25000000) mash = 0 ; |
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if (mash) { |
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divi = clock_frequency / freq ; |
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divr = clock_frequency % freq ; |
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divf = (int)((double)divr * 1024.0 / freq) ; |
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} |
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else |
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{ |
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divi = rint((double) clock_frequency / freq) ; |
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divf = 0 ; |
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} |
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if (divi < 0) divi = 1 ; |
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if (divi > 4095) divi = 4095 ; |
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if (mash == 1 && divi < 2) divi = 2 ; |
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if (mash == 2 && divi < 3) divi = 3 ; |
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if (mash == 3 && divi < 5) divi = 5 ; |
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if (divf > 1023) divf = 1023 ; |
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//printf("DIVI: %d, DIVF: %d, Freq: %.2f\n", |
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// divi, divf, (float) clock_frequency / divi ); |
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//if (mash) { |
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// printf("MASH: %d, Freq: %.2f - %.2f - %.2f\n", |
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// mash, |
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// (float) clock_frequency / (divi + 1), |
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// (float) clock_frequency / (divi + divf/1024.0), |
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// (float) clock_frequency / (divi) |
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// ); |
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//} |
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*(clk + gpioToClkCon [pin]) = BCM_PASSWORD | GPIO_CLOCK_SOURCE ; // Stop GPIO Clock |
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*(clk + gpioToClkCon [pin]) = BCM_PASSWORD | clock_source ; // Stop GPIO Clock |
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while ((*(clk + gpioToClkCon [pin]) & 0x80) != 0) // ... and wait |
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while ((*(clk + gpioToClkCon [pin]) & 0x80) != 0) // ... and wait |
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; |
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; |
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*(clk + gpioToClkDiv [pin]) = BCM_PASSWORD | (divi << 12) | divf ; // Set dividers |
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*(clk + gpioToClkCon [pin]) = BCM_PASSWORD | 0x10 | GPIO_CLOCK_SOURCE ; // Start Clock |
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*(clk + gpioToClkDiv [pin]) = BCM_PASSWORD | (divi << 12) | divf ; // Set dividers |
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*(clk + gpioToClkCon [pin]) = BCM_PASSWORD | (mash << 9) | 0x10 | clock_source ; // Start Clock |
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} |
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} |
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