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led1642gw.c
38
led1642gw.c
@ -209,27 +209,25 @@ void led1642gw_flush(void)
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uint8_t ic;
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// for each of the first 15 channels, do the following:
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for (channel=0; channel<NUM_LED1642GW_CHANNELS-1; channel++) {
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// shift data throught the first n-1 ICs with write_no_command
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for (ic=0; ic<(NUM_LED1642GW_ICs-1); ic++) {
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write_no_command(ledbuffer[channel+(NUM_LED1642GW_CHANNELS*ic)]);
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}
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// then, when the brightness data has propagated through the
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// shift registers, write all data into the DATA LATCH of
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// all of the ICs.
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write_data_latch(ledbuffer[channel+(NUM_LED1642GW_CHANNELS*ic)]);
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for (channel=0; channel<NUM_LED1642GW_CHANNELS; channel++) {
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// shift data throught the first n-1 ICs with write_no_command
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for (ic=0; ic<(NUM_LED1642GW_ICs-1); ic++) {
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write_no_command(ledbuffer[channel+(NUM_LED1642GW_CHANNELS*ic)]);
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}
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// then, when the brightness data has propagated through the
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// shift registers, write all data into the DATA LATCH of
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// all of the ICs.
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// for the 16th channel, we don't write to the DATA LATCH, but
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// to the CLOBAL data latch.
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// once more, we do the trick with write_no_command, to
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// shift data through all the ICs
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if (channel <= NUM_LED1642GW_CHANNELS-1) {
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write_data_latch(ledbuffer[channel+(NUM_LED1642GW_CHANNELS*ic)]);
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}
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else {
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write_global_latch(ledbuffer[(ic*NUM_LED1642GW_CHANNELS)-1]);
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}
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}
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// for the 16th channel, we don't write to the DATA LATCH, but
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// to the CLOBAL data latch.
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// once more, we do the trick with write_no_command, to
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// shift data through all the ICs
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for (ic=1; ic<NUM_LED1642GW_ICs; ic++) {
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write_no_command(ledbuffer[(ic*NUM_LED1642GW_CHANNELS)-1]);
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}
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// than, at last, write data to the global latch, to force
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// the ICs to update their brightness data from the DATA LATCHES.
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write_global_latch(ledbuffer[(ic*NUM_LED1642GW_CHANNELS)-1]);
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}
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