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[/] [openarty/] [trunk/] [sw/] [host/] [wbsettime.cpp] - Blame information for rev 51

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1 4 dgisselq
////////////////////////////////////////////////////////////////////////////////
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//
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// Filename:    wbsettime.cpp
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//
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// Project:     OpenArty, an entirely open SoC based upon the Arty platform
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//
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// Purpose:     To give a user access, via a command line program, to set the
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//              real time clock within the FPGA.  Note, however, that the RTC
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//      clock device only sets the subseconds field when you program it at the
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//      top of a minute.  This program, therefore, will wait 'til the top of a 
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//      minute to set the clock.  It can be annoying, but ... it works.
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//
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//
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// Creator:     Dan Gisselquist, Ph.D.
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//              Gisselquist Technology, LLC
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//
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////////////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2015-2017, Gisselquist Technology, LLC
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//
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// This program is free software (firmware): you can redistribute it and/or
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// modify it under the terms of  the GNU General Public License as published
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// by the Free Software Foundation, either version 3 of the License, or (at
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// your option) any later version.
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//
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// This program is distributed in the hope that it will be useful, but WITHOUT
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// ANY WARRANTY; without even the implied warranty of MERCHANTIBILITY or
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// FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
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// for more details.
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//
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// You should have received a copy of the GNU General Public License along
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// with this program.  (It's in the $(ROOT)/doc directory.  Run make with no
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// target there if the PDF file isn't present.)  If not, see
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// <http://www.gnu.org/licenses/> for a copy.
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//
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// License:     GPL, v3, as defined and found on www.gnu.org,
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//              http://www.gnu.org/licenses/gpl.html
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//
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//
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////////////////////////////////////////////////////////////////////////////////
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//
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//
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#include <stdio.h>
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#include <stdlib.h>
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#include <unistd.h>
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#include <strings.h>
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#include <ctype.h>
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#include <string.h>
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#include <signal.h>
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#include <assert.h>
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#include <time.h>
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#include "port.h"
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#include "llcomms.h"
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#include "regdefs.h"
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DEVBUS  *m_fpga;
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void    closeup(int v) {
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        m_fpga->kill();
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        exit(0);
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}
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int main(int argc, char **argv) {
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        bool    set_time = true, read_hack = false;
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        FPGAOPEN(m_fpga);
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        signal(SIGSTOP, closeup);
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        signal(SIGHUP, closeup);
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        time_t  now, then;
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        // We first wait for a second change, because we don't know how
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        // much time this will take.
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        DEVBUS::BUSW    clockword = 0l, dateword = 0l;
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        clockword = m_fpga->readio(R_CLOCK);
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        now = time(NULL);
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        while(time(NULL) == now)
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                ;
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        if (set_time) {
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                // Now, we have one second to set the time
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                struct  tm      *tmp;
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                int             sleepv = 0;
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                then = now+1;
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                tmp = localtime(&then);
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                clockword &= ~0x03fffff;
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                if (tmp->tm_sec != 0) {
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                        // printf("THEN SECONDS = %d, ADDING %d\n",
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                                // tmp->tm_sec, 60-tmp->tm_sec);
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                        if (tmp->tm_sec < 58)
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                                sleepv = 59 - tmp->tm_sec;
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                        then += 60 - tmp->tm_sec;
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                        tmp = localtime(&then);
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                        // printf("Sleeping %d seconds (THEN->SEC = %d)\n", sleepv, tmp->tm_sec);
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                }
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                // printf("ORIGINAL : %02d:%02d:%02d\n", tmp->tm_hour, tmp->tm_min, tmp->tm_sec);
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                // Seconds
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                clockword |= (((tmp->tm_sec)%10)&0x0f);
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                clockword |= (((tmp->tm_sec)/10)&0x0f)<< 4;
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                // Minutes
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                clockword |= (((tmp->tm_min)%10)&0x0f)<< 8;
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                clockword |= (((tmp->tm_min)/10)&0x0f)<<12;
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                // Hours
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                clockword |= (((tmp->tm_hour)%10)&0x0f)<<16;
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                clockword |= (((tmp->tm_hour)/10)&0x0f)<<20;
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                // Years
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                dateword   = 0x00000000;
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                dateword  |= (((tmp->tm_year+1900)/1000)&0x0f)<<28;
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                dateword  |=((((tmp->tm_year+1900)/100 )%10)&0x0f)<<24;
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                dateword  |=((((tmp->tm_year+1900)/10  )%10)&0x0f)<<20;
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                dateword  |=((((tmp->tm_year+1900)     )%10)&0x0f)<<16;
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                dateword  |= (((tmp->tm_mon +1)/10)&0x0f)<<12;
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                dateword  |= (((tmp->tm_mon +1)%10)&0x0f)<< 8;
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                dateword  |= (((tmp->tm_mday  )/10)&0x0f)<< 4;
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                dateword  |= (((tmp->tm_mday  )%10)&0x0f);
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                if (sleepv > 0)
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                        sleep(sleepv);
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                while(time(NULL) < then)
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                        ;
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                m_fpga->writeio(R_CLOCK, clockword);
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                printf("Time set to   %06x\n", clockword & 0x03fffff);
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#ifdef R_DATE   // If we have the date capability
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                m_fpga->writeio(R_DATE, dateword);
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                printf("Date set to %08x\n", dateword);
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                printf("(Now reads %08x)\n", m_fpga->readio(R_DATE));
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#endif // R_DATE
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                now = then;
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        } if (read_hack) {
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                then = time(NULL) + 5;
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                while(time(NULL) < then)
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                        ;
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                clockword = m_fpga->readio(R_CLOCK);
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        }
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        if (m_fpga->poll())
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                printf("FPGA was interrupted\n");
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        delete  m_fpga;
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}
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